xref: /sqlite-3.40.0/src/sqliteInt.h (revision d2490904)
175897234Sdrh /*
2b19a2bc6Sdrh ** 2001 September 15
375897234Sdrh **
4b19a2bc6Sdrh ** The author disclaims copyright to this source code.  In place of
5b19a2bc6Sdrh ** a legal notice, here is a blessing:
675897234Sdrh **
7b19a2bc6Sdrh **    May you do good and not evil.
8b19a2bc6Sdrh **    May you find forgiveness for yourself and forgive others.
9b19a2bc6Sdrh **    May you share freely, never taking more than you give.
1075897234Sdrh **
1175897234Sdrh *************************************************************************
1275897234Sdrh ** Internal interface definitions for SQLite.
1375897234Sdrh **
1475897234Sdrh */
15e3026636Sdanielk1977 #ifndef _SQLITEINT_H_
16e3026636Sdanielk1977 #define _SQLITEINT_H_
1771674ce9Sdrh 
18bd0ae111Smlcreech /*
192210dcc6Sdrh ** These #defines should enable >2GB file support on POSIX if the
202210dcc6Sdrh ** underlying operating system supports it.  If the OS lacks
212210dcc6Sdrh ** large file support, or if the OS is windows, these should be no-ops.
222210dcc6Sdrh **
232210dcc6Sdrh ** Ticket #2739:  The _LARGEFILE_SOURCE macro must appear before any
242210dcc6Sdrh ** system #includes.  Hence, this block of code must be the very first
252210dcc6Sdrh ** code in all source files.
262210dcc6Sdrh **
272210dcc6Sdrh ** Large file support can be disabled using the -DSQLITE_DISABLE_LFS switch
282210dcc6Sdrh ** on the compiler command line.  This is necessary if you are compiling
292210dcc6Sdrh ** on a recent machine (ex: Red Hat 7.2) but you want your code to work
302210dcc6Sdrh ** on an older machine (ex: Red Hat 6.0).  If you compile on Red Hat 7.2
312210dcc6Sdrh ** without this option, LFS is enable.  But LFS does not exist in the kernel
322210dcc6Sdrh ** in Red Hat 6.0, so the code won't work.  Hence, for maximum binary
332210dcc6Sdrh ** portability you should omit LFS.
342210dcc6Sdrh **
35dddf6978Sdrh ** The previous paragraph was written in 2005.  (This paragraph is written
36dddf6978Sdrh ** on 2008-11-28.) These days, all Linux kernels support large files, so
37dddf6978Sdrh ** you should probably leave LFS enabled.  But some embedded platforms might
38dddf6978Sdrh ** lack LFS in which case the SQLITE_DISABLE_LFS macro might still be useful.
39dddf6978Sdrh **
402210dcc6Sdrh ** Similar is true for Mac OS X.  LFS is only supported on Mac OS X 9 and later.
412210dcc6Sdrh */
422210dcc6Sdrh #ifndef SQLITE_DISABLE_LFS
432210dcc6Sdrh # define _LARGE_FILE       1
442210dcc6Sdrh # ifndef _FILE_OFFSET_BITS
452210dcc6Sdrh #   define _FILE_OFFSET_BITS 64
462210dcc6Sdrh # endif
472210dcc6Sdrh # define _LARGEFILE_SOURCE 1
482210dcc6Sdrh #endif
492210dcc6Sdrh 
502210dcc6Sdrh /*
51a7b3b635Smistachkin ** For MinGW, check to see if we can include the header file containing its
52a7b3b635Smistachkin ** version information, among other things.  Normally, this internal MinGW
53a7b3b635Smistachkin ** header file would [only] be included automatically by other MinGW header
54a7b3b635Smistachkin ** files; however, the contained version information is now required by this
55a7b3b635Smistachkin ** header file to work around binary compatibility issues (see below) and
56a7b3b635Smistachkin ** this is the only known way to reliably obtain it.  This entire #if block
57a7b3b635Smistachkin ** would be completely unnecessary if there was any other way of detecting
58a7b3b635Smistachkin ** MinGW via their preprocessor (e.g. if they customized their GCC to define
59a7b3b635Smistachkin ** some MinGW-specific macros).  When compiling for MinGW, either the
60a7b3b635Smistachkin ** _HAVE_MINGW_H or _HAVE__MINGW_H (note the extra underscore) macro must be
61a7b3b635Smistachkin ** defined; otherwise, detection of conditions specific to MinGW will be
62a7b3b635Smistachkin ** disabled.
63a7b3b635Smistachkin */
64a7b3b635Smistachkin #if defined(_HAVE_MINGW_H)
65a7b3b635Smistachkin # include "mingw.h"
66a7b3b635Smistachkin #elif defined(_HAVE__MINGW_H)
67a7b3b635Smistachkin # include "_mingw.h"
68a7b3b635Smistachkin #endif
69a7b3b635Smistachkin 
70a7b3b635Smistachkin /*
71a7b3b635Smistachkin ** For MinGW version 4.x (and higher), check to see if the _USE_32BIT_TIME_T
72a7b3b635Smistachkin ** define is required to maintain binary compatibility with the MSVC runtime
73a7b3b635Smistachkin ** library in use (e.g. for Windows XP).
74a7b3b635Smistachkin */
75a7b3b635Smistachkin #if !defined(_USE_32BIT_TIME_T) && !defined(_USE_64BIT_TIME_T) && \
76a7b3b635Smistachkin     defined(_WIN32) && !defined(_WIN64) && \
7765acf373Smistachkin     defined(__MINGW_MAJOR_VERSION) && __MINGW_MAJOR_VERSION >= 4 && \
78a7b3b635Smistachkin     defined(__MSVCRT__)
79a7b3b635Smistachkin # define _USE_32BIT_TIME_T
80a7b3b635Smistachkin #endif
81a7b3b635Smistachkin 
825e990beaSdrh /* The public SQLite interface.  The _FILE_OFFSET_BITS macro must appear
830d71d121Smistachkin ** first in QNX.  Also, the _USE_32BIT_TIME_T macro must appear first for
840d71d121Smistachkin ** MinGW.
855e990beaSdrh */
865e990beaSdrh #include "sqlite3.h"
875e990beaSdrh 
88bd0ae111Smlcreech /*
891e12d43bSmlcreech ** Include the configuration header output by 'configure' if we're using the
901e12d43bSmlcreech ** autoconf-based build
91bd0ae111Smlcreech */
921e12d43bSmlcreech #ifdef _HAVE_SQLITE_CONFIG_H
9398dc4b1aSmlcreech #include "config.h"
941e12d43bSmlcreech #endif
951e12d43bSmlcreech 
96bb4957f8Sdrh #include "sqliteLimit.h"
9798dc4b1aSmlcreech 
98e2965827Sdrh /* Disable nuisance warnings on Borland compilers */
99e2965827Sdrh #if defined(__BORLANDC__)
100e2965827Sdrh #pragma warn -rch /* unreachable code */
101e2965827Sdrh #pragma warn -ccc /* Condition is always true or false */
102e2965827Sdrh #pragma warn -aus /* Assigned value is never used */
103e2965827Sdrh #pragma warn -csu /* Comparing signed and unsigned */
104467bcf36Sshane #pragma warn -spa /* Suspicious pointer arithmetic */
105e2965827Sdrh #endif
106e2965827Sdrh 
10798dc4b1aSmlcreech /* Needed for various definitions... */
10860323418Sdrh #ifndef _GNU_SOURCE
10998dc4b1aSmlcreech # define _GNU_SOURCE
11060323418Sdrh #endif
11198dc4b1aSmlcreech 
112881bd792Sdan #if defined(__OpenBSD__) && !defined(_BSD_SOURCE)
113881bd792Sdan # define _BSD_SOURCE
114881bd792Sdan #endif
115881bd792Sdan 
11698dc4b1aSmlcreech /*
11706af763eSdrh ** Include standard header files as necessary
11806af763eSdrh */
11906af763eSdrh #ifdef HAVE_STDINT_H
12006af763eSdrh #include <stdint.h>
12106af763eSdrh #endif
12206af763eSdrh #ifdef HAVE_INTTYPES_H
12306af763eSdrh #include <inttypes.h>
12406af763eSdrh #endif
12506af763eSdrh 
126a2460e07Sdrh /*
127c05a9a8aSdrh ** The following macros are used to cast pointers to integers and
128c05a9a8aSdrh ** integers to pointers.  The way you do this varies from one compiler
129c05a9a8aSdrh ** to the next, so we have developed the following set of #if statements
130c05a9a8aSdrh ** to generate appropriate macros for a wide range of compilers.
131875e9e7dSdrh **
132c05a9a8aSdrh ** The correct "ANSI" way to do this is to use the intptr_t type.
133c05a9a8aSdrh ** Unfortunately, that typedef is not available on all compilers, or
134c05a9a8aSdrh ** if it is available, it requires an #include of specific headers
135c92271c5Sdrh ** that vary from one machine to the next.
136875e9e7dSdrh **
137875e9e7dSdrh ** Ticket #3860:  The llvm-gcc-4.2 compiler from Apple chokes on
138875e9e7dSdrh ** the ((void*)&((char*)0)[X]) construct.  But MSVC chokes on ((void*)(X)).
1395e49edcaSdrh ** So we have to define the macros in different ways depending on the
140875e9e7dSdrh ** compiler.
1411fc4129dSshane */
142c05a9a8aSdrh #if defined(__PTRDIFF_TYPE__)  /* This case should work for GCC */
143c05a9a8aSdrh # define SQLITE_INT_TO_PTR(X)  ((void*)(__PTRDIFF_TYPE__)(X))
144c05a9a8aSdrh # define SQLITE_PTR_TO_INT(X)  ((int)(__PTRDIFF_TYPE__)(X))
145c05a9a8aSdrh #elif !defined(__GNUC__)       /* Works for compilers other than LLVM */
146c05a9a8aSdrh # define SQLITE_INT_TO_PTR(X)  ((void*)&((char*)0)[X])
147c05a9a8aSdrh # define SQLITE_PTR_TO_INT(X)  ((int)(((char*)X)-(char*)0))
148c05a9a8aSdrh #elif defined(HAVE_STDINT_H)   /* Use this case if we have ANSI headers */
149367882c2Sdrh # define SQLITE_INT_TO_PTR(X)  ((void*)(intptr_t)(X))
150367882c2Sdrh # define SQLITE_PTR_TO_INT(X)  ((int)(intptr_t)(X))
151c05a9a8aSdrh #else                          /* Generates a warning - but it always works */
152875e9e7dSdrh # define SQLITE_INT_TO_PTR(X)  ((void*)(X))
153875e9e7dSdrh # define SQLITE_PTR_TO_INT(X)  ((int)(X))
154367882c2Sdrh #endif
15571674ce9Sdrh 
156e5e7a901Sdrh /*
15738c67c36Sdrh ** The SQLITE_THREADSAFE macro must be defined as 0, 1, or 2.
15838c67c36Sdrh ** 0 means mutexes are permanently disable and the library is never
15938c67c36Sdrh ** threadsafe.  1 means the library is serialized which is the highest
160f7b5496eSdrh ** level of threadsafety.  2 means the library is multithreaded - multiple
16138c67c36Sdrh ** threads can use SQLite as long as no two threads try to use the same
16238c67c36Sdrh ** database connection at the same time.
16338c67c36Sdrh **
164e5e7a901Sdrh ** Older versions of SQLite used an optional THREADSAFE macro.
16538c67c36Sdrh ** We support that for legacy.
166e5e7a901Sdrh */
167e5e7a901Sdrh #if !defined(SQLITE_THREADSAFE)
168e5e7a901Sdrh # if defined(THREADSAFE)
169e5e7a901Sdrh #   define SQLITE_THREADSAFE THREADSAFE
170e5e7a901Sdrh # else
17138c67c36Sdrh #   define SQLITE_THREADSAFE 1 /* IMP: R-07272-22309 */
172e5e7a901Sdrh # endif
173e5e7a901Sdrh #endif
174e5e7a901Sdrh 
17567080617Sdrh /*
176cb15f35fSdrh ** Powersafe overwrite is on by default.  But can be turned off using
177cb15f35fSdrh ** the -DSQLITE_POWERSAFE_OVERWRITE=0 command-line option.
178cb15f35fSdrh */
179cb15f35fSdrh #ifndef SQLITE_POWERSAFE_OVERWRITE
180cb15f35fSdrh # define SQLITE_POWERSAFE_OVERWRITE 1
181cb15f35fSdrh #endif
182cb15f35fSdrh 
183cb15f35fSdrh /*
1840a732f59Sdanielk1977 ** The SQLITE_DEFAULT_MEMSTATUS macro must be defined as either 0 or 1.
1850a732f59Sdanielk1977 ** It determines whether or not the features related to
186467bcf36Sshane ** SQLITE_CONFIG_MEMSTATUS are available by default or not. This value can
1870a732f59Sdanielk1977 ** be overridden at runtime using the sqlite3_config() API.
1880a732f59Sdanielk1977 */
1890a732f59Sdanielk1977 #if !defined(SQLITE_DEFAULT_MEMSTATUS)
1900a732f59Sdanielk1977 # define SQLITE_DEFAULT_MEMSTATUS 1
1910a732f59Sdanielk1977 #endif
1920a732f59Sdanielk1977 
1930a732f59Sdanielk1977 /*
1940d18020bSdrh ** Exactly one of the following macros must be defined in order to
1950d18020bSdrh ** specify which memory allocation subsystem to use.
1960d18020bSdrh **
1970d18020bSdrh **     SQLITE_SYSTEM_MALLOC          // Use normal system malloc()
1981b186a99Smistachkin **     SQLITE_WIN32_MALLOC           // Use Win32 native heap API
199d1b0afc3Sdrh **     SQLITE_ZERO_MALLOC            // Use a stub allocator that always fails
2000d18020bSdrh **     SQLITE_MEMDEBUG               // Debugging version of system malloc()
201a2460e07Sdrh **
202753c5444Smistachkin ** On Windows, if the SQLITE_WIN32_MALLOC_VALIDATE macro is defined and the
203753c5444Smistachkin ** assert() macro is enabled, each call into the Win32 native heap subsystem
204753c5444Smistachkin ** will cause HeapValidate to be called.  If heap validation should fail, an
205753c5444Smistachkin ** assertion will be triggered.
206753c5444Smistachkin **
2070d18020bSdrh ** If none of the above are defined, then set SQLITE_SYSTEM_MALLOC as
2080d18020bSdrh ** the default.
2090d18020bSdrh */
210d1b0afc3Sdrh #if defined(SQLITE_SYSTEM_MALLOC) \
211d1b0afc3Sdrh   + defined(SQLITE_WIN32_MALLOC) \
212d1b0afc3Sdrh   + defined(SQLITE_ZERO_MALLOC) \
213d1b0afc3Sdrh   + defined(SQLITE_MEMDEBUG)>1
214d1b0afc3Sdrh # error "Two or more of the following compile-time configuration options\
21520b1ff07Smistachkin  are defined but at most one is allowed:\
216d1b0afc3Sdrh  SQLITE_SYSTEM_MALLOC, SQLITE_WIN32_MALLOC, SQLITE_MEMDEBUG,\
217d1b0afc3Sdrh  SQLITE_ZERO_MALLOC"
2180d18020bSdrh #endif
219d1b0afc3Sdrh #if defined(SQLITE_SYSTEM_MALLOC) \
220d1b0afc3Sdrh   + defined(SQLITE_WIN32_MALLOC) \
221d1b0afc3Sdrh   + defined(SQLITE_ZERO_MALLOC) \
222d1b0afc3Sdrh   + defined(SQLITE_MEMDEBUG)==0
2230d18020bSdrh # define SQLITE_SYSTEM_MALLOC 1
2240d18020bSdrh #endif
2250d18020bSdrh 
2260d18020bSdrh /*
2278a1e594cSdrh ** If SQLITE_MALLOC_SOFT_LIMIT is not zero, then try to keep the
228eee4c8caSdrh ** sizes of memory allocations below this value where possible.
229eee4c8caSdrh */
2308a1e594cSdrh #if !defined(SQLITE_MALLOC_SOFT_LIMIT)
231eee4c8caSdrh # define SQLITE_MALLOC_SOFT_LIMIT 1024
232eee4c8caSdrh #endif
233eee4c8caSdrh 
234eee4c8caSdrh /*
23567080617Sdrh ** We need to define _XOPEN_SOURCE as follows in order to enable
23640b521f8Sdrh ** recursive mutexes on most Unix systems and fchmod() on OpenBSD.
23740b521f8Sdrh ** But _XOPEN_SOURCE define causes problems for Mac OS X, so omit
23840b521f8Sdrh ** it.
23967080617Sdrh */
24040b521f8Sdrh #if !defined(_XOPEN_SOURCE) && !defined(__DARWIN__) && !defined(__APPLE__)
24140b521f8Sdrh #  define _XOPEN_SOURCE 600
24267080617Sdrh #endif
243e3026636Sdanielk1977 
2447d10d5a6Sdrh /*
2451b28b893Sdrh ** NDEBUG and SQLITE_DEBUG are opposites.  It should always be true that
2461b28b893Sdrh ** defined(NDEBUG)==!defined(SQLITE_DEBUG).  If this is not currently true,
2471b28b893Sdrh ** make it true by defining or undefining NDEBUG.
2481b28b893Sdrh **
249443dbcf5Sdrh ** Setting NDEBUG makes the code smaller and faster by disabling the
250443dbcf5Sdrh ** assert() statements in the code.  So we want the default action
2511b28b893Sdrh ** to be for NDEBUG to be set and NDEBUG to be undefined only if SQLITE_DEBUG
2521b28b893Sdrh ** is set.  Thus NDEBUG becomes an opt-in rather than an opt-out
2534b529d97Sdrh ** feature.
2544b529d97Sdrh */
255289ab076Sdrh #if !defined(NDEBUG) && !defined(SQLITE_DEBUG)
2564b529d97Sdrh # define NDEBUG 1
2574b529d97Sdrh #endif
2581b28b893Sdrh #if defined(NDEBUG) && defined(SQLITE_DEBUG)
2591b28b893Sdrh # undef NDEBUG
2601b28b893Sdrh #endif
2614b529d97Sdrh 
2626402250eSdrh /*
263c7379ce4Sdrh ** Enable SQLITE_ENABLE_EXPLAIN_COMMENTS if SQLITE_DEBUG is turned on.
264c7379ce4Sdrh */
265c7379ce4Sdrh #if !defined(SQLITE_ENABLE_EXPLAIN_COMMENTS) && defined(SQLITE_DEBUG)
266c7379ce4Sdrh # define SQLITE_ENABLE_EXPLAIN_COMMENTS 1
267c7379ce4Sdrh #endif
268c7379ce4Sdrh 
269c7379ce4Sdrh /*
27047c3b3e0Sdrh ** The testcase() macro is used to aid in coverage testing.  When
27147c3b3e0Sdrh ** doing coverage testing, the condition inside the argument to
27247c3b3e0Sdrh ** testcase() must be evaluated both true and false in order to
27347c3b3e0Sdrh ** get full branch coverage.  The testcase() macro is inserted
27447c3b3e0Sdrh ** to help ensure adequate test coverage in places where simple
27547c3b3e0Sdrh ** condition/decision coverage is inadequate.  For example, testcase()
27647c3b3e0Sdrh ** can be used to make sure boundary values are tested.  For
27747c3b3e0Sdrh ** bitmask tests, testcase() can be used to make sure each bit
27847c3b3e0Sdrh ** is significant and used at least once.  On switch statements
27947c3b3e0Sdrh ** where multiple cases go to the same block of code, testcase()
28047c3b3e0Sdrh ** can insure that all cases are evaluated.
28147c3b3e0Sdrh **
28247c3b3e0Sdrh */
28347c3b3e0Sdrh #ifdef SQLITE_COVERAGE_TEST
28447c3b3e0Sdrh   void sqlite3Coverage(int);
28547c3b3e0Sdrh # define testcase(X)  if( X ){ sqlite3Coverage(__LINE__); }
28647c3b3e0Sdrh #else
28747c3b3e0Sdrh # define testcase(X)
2888f941bc7Sdrh #endif
2898f941bc7Sdrh 
2908f941bc7Sdrh /*
2918f941bc7Sdrh ** The TESTONLY macro is used to enclose variable declarations or
2928f941bc7Sdrh ** other bits of code that are needed to support the arguments
2938f941bc7Sdrh ** within testcase() and assert() macros.
2948f941bc7Sdrh */
2958f941bc7Sdrh #if !defined(NDEBUG) || defined(SQLITE_COVERAGE_TEST)
2968f941bc7Sdrh # define TESTONLY(X)  X
2978f941bc7Sdrh #else
29847c3b3e0Sdrh # define TESTONLY(X)
29947c3b3e0Sdrh #endif
30047c3b3e0Sdrh 
30147c3b3e0Sdrh /*
3026149526cSdrh ** Sometimes we need a small amount of code such as a variable initialization
3036149526cSdrh ** to setup for a later assert() statement.  We do not want this code to
3046149526cSdrh ** appear when assert() is disabled.  The following macro is therefore
3056149526cSdrh ** used to contain that setup code.  The "VVA" acronym stands for
3066149526cSdrh ** "Verification, Validation, and Accreditation".  In other words, the
3076149526cSdrh ** code within VVA_ONLY() will only run during verification processes.
3086149526cSdrh */
3096149526cSdrh #ifndef NDEBUG
3106149526cSdrh # define VVA_ONLY(X)  X
3116149526cSdrh #else
3126149526cSdrh # define VVA_ONLY(X)
3136149526cSdrh #endif
3146149526cSdrh 
3156149526cSdrh /*
31647c3b3e0Sdrh ** The ALWAYS and NEVER macros surround boolean expressions which
31747c3b3e0Sdrh ** are intended to always be true or false, respectively.  Such
31847c3b3e0Sdrh ** expressions could be omitted from the code completely.  But they
31947c3b3e0Sdrh ** are included in a few cases in order to enhance the resilience
32047c3b3e0Sdrh ** of SQLite to unexpected behavior - to make the code "self-healing"
32147c3b3e0Sdrh ** or "ductile" rather than being "brittle" and crashing at the first
32247c3b3e0Sdrh ** hint of unplanned behavior.
32347c3b3e0Sdrh **
32447c3b3e0Sdrh ** In other words, ALWAYS and NEVER are added for defensive code.
32547c3b3e0Sdrh **
32647c3b3e0Sdrh ** When doing coverage testing ALWAYS and NEVER are hard-coded to
327443dbcf5Sdrh ** be true and false so that the unreachable code they specify will
32847c3b3e0Sdrh ** not be counted as untested code.
32947c3b3e0Sdrh */
33047c3b3e0Sdrh #if defined(SQLITE_COVERAGE_TEST)
33147c3b3e0Sdrh # define ALWAYS(X)      (1)
33247c3b3e0Sdrh # define NEVER(X)       (0)
33347c3b3e0Sdrh #elif !defined(NDEBUG)
3342de80f4cSdrh # define ALWAYS(X)      ((X)?1:(assert(0),0))
3352de80f4cSdrh # define NEVER(X)       ((X)?(assert(0),1):0)
33647c3b3e0Sdrh #else
33747c3b3e0Sdrh # define ALWAYS(X)      (X)
33847c3b3e0Sdrh # define NEVER(X)       (X)
33947c3b3e0Sdrh #endif
34047c3b3e0Sdrh 
34147c3b3e0Sdrh /*
3423e8e7ecbSdrh ** Return true (non-zero) if the input is a integer that is too large
3433e8e7ecbSdrh ** to fit in 32-bits.  This macro is used inside of various testcase()
3443e8e7ecbSdrh ** macros to verify that we have tested SQLite for large-file support.
3453e8e7ecbSdrh */
346b31a6afaSdan #define IS_BIG_INT(X)  (((X)&~(i64)0xffffffff)!=0)
3473e8e7ecbSdrh 
3483e8e7ecbSdrh /*
34947c3b3e0Sdrh ** The macro unlikely() is a hint that surrounds a boolean
35047c3b3e0Sdrh ** expression that is usually false.  Macro likely() surrounds
351443dbcf5Sdrh ** a boolean expression that is usually true.  These hints could,
352443dbcf5Sdrh ** in theory, be used by the compiler to generate better code, but
353443dbcf5Sdrh ** currently they are just comments for human readers.
35447c3b3e0Sdrh */
355443dbcf5Sdrh #define likely(X)    (X)
356443dbcf5Sdrh #define unlikely(X)  (X)
35747c3b3e0Sdrh 
358beae3194Sdrh #include "hash.h"
35975897234Sdrh #include "parse.h"
36075897234Sdrh #include <stdio.h>
36175897234Sdrh #include <stdlib.h>
36275897234Sdrh #include <string.h>
36375897234Sdrh #include <assert.h>
36452370e2cSdrh #include <stddef.h>
36575897234Sdrh 
366967e8b73Sdrh /*
367b37df7b9Sdrh ** If compiling for a processor that lacks floating point support,
368b37df7b9Sdrh ** substitute integer for floating-point
369b37df7b9Sdrh */
370b37df7b9Sdrh #ifdef SQLITE_OMIT_FLOATING_POINT
371b37df7b9Sdrh # define double sqlite_int64
3728b307fbfSdrh # define float sqlite_int64
373b37df7b9Sdrh # define LONGDOUBLE_TYPE sqlite_int64
374d1167393Sdrh # ifndef SQLITE_BIG_DBL
375cdaca55eSdrh #   define SQLITE_BIG_DBL (((sqlite3_int64)1)<<50)
376d1167393Sdrh # endif
377b37df7b9Sdrh # define SQLITE_OMIT_DATETIME_FUNCS 1
378b37df7b9Sdrh # define SQLITE_OMIT_TRACE 1
379110daac9Sdrh # undef SQLITE_MIXED_ENDIAN_64BIT_FLOAT
3800b3bf924Sdrh # undef SQLITE_HAVE_ISNAN
381b37df7b9Sdrh #endif
382d1167393Sdrh #ifndef SQLITE_BIG_DBL
383d1167393Sdrh # define SQLITE_BIG_DBL (1e99)
384d1167393Sdrh #endif
385b37df7b9Sdrh 
386b37df7b9Sdrh /*
38753c0f748Sdanielk1977 ** OMIT_TEMPDB is set to 1 if SQLITE_OMIT_TEMPDB is defined, or 0
38853c0f748Sdanielk1977 ** afterward. Having this macro allows us to cause the C compiler
38953c0f748Sdanielk1977 ** to omit code used by TEMP tables without messy #ifndef statements.
39053c0f748Sdanielk1977 */
39153c0f748Sdanielk1977 #ifdef SQLITE_OMIT_TEMPDB
39253c0f748Sdanielk1977 #define OMIT_TEMPDB 1
39353c0f748Sdanielk1977 #else
39453c0f748Sdanielk1977 #define OMIT_TEMPDB 0
39553c0f748Sdanielk1977 #endif
39653c0f748Sdanielk1977 
39753c0f748Sdanielk1977 /*
398d946db00Sdrh ** The "file format" number is an integer that is incremented whenever
399d946db00Sdrh ** the VDBE-level file format changes.  The following macros define the
400d946db00Sdrh ** the default file format for new databases and the maximum file format
401d946db00Sdrh ** that the library can read.
402d946db00Sdrh */
403d946db00Sdrh #define SQLITE_MAX_FILE_FORMAT 4
404d946db00Sdrh #ifndef SQLITE_DEFAULT_FILE_FORMAT
405bf3f5f8dSdrh # define SQLITE_DEFAULT_FILE_FORMAT 4
406d946db00Sdrh #endif
407d946db00Sdrh 
408a2460e07Sdrh /*
409a2460e07Sdrh ** Determine whether triggers are recursive by default.  This can be
410a2460e07Sdrh ** changed at run-time using a pragma.
411a2460e07Sdrh */
4125bde73c4Sdan #ifndef SQLITE_DEFAULT_RECURSIVE_TRIGGERS
4135bde73c4Sdan # define SQLITE_DEFAULT_RECURSIVE_TRIGGERS 0
4145bde73c4Sdan #endif
4155bde73c4Sdan 
416d946db00Sdrh /*
417b06a0b67Sdanielk1977 ** Provide a default value for SQLITE_TEMP_STORE in case it is not specified
41849766d6cSdrh ** on the command-line
41949766d6cSdrh */
420b06a0b67Sdanielk1977 #ifndef SQLITE_TEMP_STORE
421b06a0b67Sdanielk1977 # define SQLITE_TEMP_STORE 1
422d16d0bc5Sdrh # define SQLITE_TEMP_STORE_xc 1  /* Exclude from ctime.c */
42349766d6cSdrh #endif
42449766d6cSdrh 
42549766d6cSdrh /*
426f1974846Sdrh ** GCC does not define the offsetof() macro so we'll have to do it
427f1974846Sdrh ** ourselves.
428f1974846Sdrh */
429f1974846Sdrh #ifndef offsetof
430f1974846Sdrh #define offsetof(STRUCTURE,FIELD) ((int)((char*)&((STRUCTURE*)0)->FIELD))
431f1974846Sdrh #endif
432f1974846Sdrh 
433f1974846Sdrh /*
434e1e2e9acSdrh ** Macros to compute minimum and maximum of two numbers.
435e1e2e9acSdrh */
436e1e2e9acSdrh #define MIN(A,B) ((A)<(B)?(A):(B))
437e1e2e9acSdrh #define MAX(A,B) ((A)>(B)?(A):(B))
438e1e2e9acSdrh 
439e1e2e9acSdrh /*
4409b8f447bSdrh ** Check to see if this machine uses EBCDIC.  (Yes, believe it or
4419b8f447bSdrh ** not, there are still machines out there that use EBCDIC.)
4429b8f447bSdrh */
4439b8f447bSdrh #if 'A' == '\301'
4449b8f447bSdrh # define SQLITE_EBCDIC 1
4459b8f447bSdrh #else
4469b8f447bSdrh # define SQLITE_ASCII 1
4479b8f447bSdrh #endif
4489b8f447bSdrh 
4499b8f447bSdrh /*
4505a2c2c20Sdrh ** Integers of known sizes.  These typedefs might change for architectures
4515a2c2c20Sdrh ** where the sizes very.  Preprocessor macros are available so that the
4525a2c2c20Sdrh ** types can be conveniently redefined at compile-type.  Like this:
4535a2c2c20Sdrh **
4545a2c2c20Sdrh **         cc '-DUINTPTR_TYPE=long long int' ...
45541a2b48bSdrh */
4565a2c2c20Sdrh #ifndef UINT32_TYPE
457dda5b68cSmlcreech # ifdef HAVE_UINT32_T
458dda5b68cSmlcreech #  define UINT32_TYPE uint32_t
459dda5b68cSmlcreech # else
4605a2c2c20Sdrh #  define UINT32_TYPE unsigned int
4615a2c2c20Sdrh # endif
462dda5b68cSmlcreech #endif
4635a2c2c20Sdrh #ifndef UINT16_TYPE
464dda5b68cSmlcreech # ifdef HAVE_UINT16_T
465dda5b68cSmlcreech #  define UINT16_TYPE uint16_t
466dda5b68cSmlcreech # else
4675a2c2c20Sdrh #  define UINT16_TYPE unsigned short int
4685a2c2c20Sdrh # endif
469dda5b68cSmlcreech #endif
470939a16d6Sdrh #ifndef INT16_TYPE
471dda5b68cSmlcreech # ifdef HAVE_INT16_T
472dda5b68cSmlcreech #  define INT16_TYPE int16_t
473dda5b68cSmlcreech # else
474939a16d6Sdrh #  define INT16_TYPE short int
475939a16d6Sdrh # endif
476dda5b68cSmlcreech #endif
4775a2c2c20Sdrh #ifndef UINT8_TYPE
478dda5b68cSmlcreech # ifdef HAVE_UINT8_T
479dda5b68cSmlcreech #  define UINT8_TYPE uint8_t
480dda5b68cSmlcreech # else
4815a2c2c20Sdrh #  define UINT8_TYPE unsigned char
4825a2c2c20Sdrh # endif
483dda5b68cSmlcreech #endif
484905793e2Sdrh #ifndef INT8_TYPE
485dda5b68cSmlcreech # ifdef HAVE_INT8_T
486dda5b68cSmlcreech #  define INT8_TYPE int8_t
487dda5b68cSmlcreech # else
488905793e2Sdrh #  define INT8_TYPE signed char
489905793e2Sdrh # endif
490dda5b68cSmlcreech #endif
491efad9995Sdrh #ifndef LONGDOUBLE_TYPE
492efad9995Sdrh # define LONGDOUBLE_TYPE long double
493efad9995Sdrh #endif
494efad9995Sdrh typedef sqlite_int64 i64;          /* 8-byte signed integer */
49527436af7Sdrh typedef sqlite_uint64 u64;         /* 8-byte unsigned integer */
4965a2c2c20Sdrh typedef UINT32_TYPE u32;           /* 4-byte unsigned integer */
4975a2c2c20Sdrh typedef UINT16_TYPE u16;           /* 2-byte unsigned integer */
498939a16d6Sdrh typedef INT16_TYPE i16;            /* 2-byte signed integer */
4995a2c2c20Sdrh typedef UINT8_TYPE u8;             /* 1-byte unsigned integer */
50070a8ca3cSdrh typedef INT8_TYPE i8;              /* 1-byte signed integer */
5015a2c2c20Sdrh 
5025a2c2c20Sdrh /*
50335cd643cSdrh ** SQLITE_MAX_U32 is a u64 constant that is the maximum u64 value
50435cd643cSdrh ** that can be stored in a u32 without loss of data.  The value
50535cd643cSdrh ** is 0x00000000ffffffff.  But because of quirks of some compilers, we
50635cd643cSdrh ** have to specify the value in the less intuitive manner shown:
50735cd643cSdrh */
50835cd643cSdrh #define SQLITE_MAX_U32  ((((u64)1)<<32)-1)
50935cd643cSdrh 
51035cd643cSdrh /*
511faacf17cSdrh ** The datatype used to store estimates of the number of rows in a
512faacf17cSdrh ** table or index.  This is an unsigned integer type.  For 99.9% of
513faacf17cSdrh ** the world, a 32-bit integer is sufficient.  But a 64-bit integer
514faacf17cSdrh ** can be used at compile-time if desired.
515faacf17cSdrh */
516faacf17cSdrh #ifdef SQLITE_64BIT_STATS
517faacf17cSdrh  typedef u64 tRowcnt;    /* 64-bit only if requested at compile-time */
518faacf17cSdrh #else
519faacf17cSdrh  typedef u32 tRowcnt;    /* 32-bit is the default */
520faacf17cSdrh #endif
521faacf17cSdrh 
522faacf17cSdrh /*
523bf539c4dSdrh ** Estimated quantities used for query planning are stored as 16-bit
524bf539c4dSdrh ** logarithms.  For quantity X, the value stored is 10*log2(X).  This
525bf539c4dSdrh ** gives a possible range of values of approximately 1.0e986 to 1e-986.
526bf539c4dSdrh ** But the allowed values are "grainy".  Not every value is representable.
527bf539c4dSdrh ** For example, quantities 16 and 17 are both represented by a LogEst
528bf539c4dSdrh ** of 40.  However, since LogEst quantatites are suppose to be estimates,
529bf539c4dSdrh ** not exact values, this imprecision is not a problem.
530bf539c4dSdrh **
531bf539c4dSdrh ** "LogEst" is short for "Logarithimic Estimate".
532bf539c4dSdrh **
533bf539c4dSdrh ** Examples:
534bf539c4dSdrh **      1 -> 0              20 -> 43          10000 -> 132
535bf539c4dSdrh **      2 -> 10             25 -> 46          25000 -> 146
536bf539c4dSdrh **      3 -> 16            100 -> 66        1000000 -> 199
537bf539c4dSdrh **      4 -> 20           1000 -> 99        1048576 -> 200
538bf539c4dSdrh **     10 -> 33           1024 -> 100    4294967296 -> 320
539bf539c4dSdrh **
540bf539c4dSdrh ** The LogEst can be negative to indicate fractional values.
541bf539c4dSdrh ** Examples:
542bf539c4dSdrh **
543bf539c4dSdrh **    0.5 -> -10           0.1 -> -33        0.0625 -> -40
544bf539c4dSdrh */
545bf539c4dSdrh typedef INT16_TYPE LogEst;
546bf539c4dSdrh 
547bf539c4dSdrh /*
548bbd42a6dSdrh ** Macros to determine whether the machine is big or little endian,
549bbd42a6dSdrh ** evaluated at runtime.
550bbd42a6dSdrh */
55146c99e0fSdrh #ifdef SQLITE_AMALGAMATION
552b3190c15Sdrh const int sqlite3one = 1;
55346c99e0fSdrh #else
554bbd42a6dSdrh extern const int sqlite3one;
55546c99e0fSdrh #endif
556189077f3Sdrh #if defined(i386) || defined(__i386__) || defined(_M_IX86)\
557189077f3Sdrh                              || defined(__x86_64) || defined(__x86_64__)
55838def054Sdrh # define SQLITE_BIGENDIAN    0
55938def054Sdrh # define SQLITE_LITTLEENDIAN 1
56038def054Sdrh # define SQLITE_UTF16NATIVE  SQLITE_UTF16LE
56138def054Sdrh #else
5629c054830Sdrh # define SQLITE_BIGENDIAN    (*(char *)(&sqlite3one)==0)
5639c054830Sdrh # define SQLITE_LITTLEENDIAN (*(char *)(&sqlite3one)==1)
56438def054Sdrh # define SQLITE_UTF16NATIVE (SQLITE_BIGENDIAN?SQLITE_UTF16BE:SQLITE_UTF16LE)
56538def054Sdrh #endif
566bbd42a6dSdrh 
567bbd42a6dSdrh /*
5680f050353Sdrh ** Constants for the largest and smallest possible 64-bit signed integers.
5690f050353Sdrh ** These macros are designed to work correctly on both 32-bit and 64-bit
5700f050353Sdrh ** compilers.
5710f050353Sdrh */
5720f050353Sdrh #define LARGEST_INT64  (0xffffffff|(((i64)0x7fffffff)<<32))
5730f050353Sdrh #define SMALLEST_INT64 (((i64)-1) - LARGEST_INT64)
5740f050353Sdrh 
5750f050353Sdrh /*
576be229650Sdanielk1977 ** Round up a number to the next larger multiple of 8.  This is used
577be229650Sdanielk1977 ** to force 8-byte alignment on 64-bit architectures.
578be229650Sdanielk1977 */
579bc73971dSdanielk1977 #define ROUND8(x)     (((x)+7)&~7)
580bc73971dSdanielk1977 
581bc73971dSdanielk1977 /*
582bc73971dSdanielk1977 ** Round down to the nearest multiple of 8
583bc73971dSdanielk1977 */
584bc73971dSdanielk1977 #define ROUNDDOWN8(x) ((x)&~7)
585be229650Sdanielk1977 
586be229650Sdanielk1977 /*
5878e14c596Sdrh ** Assert that the pointer X is aligned to an 8-byte boundary.  This
5888e14c596Sdrh ** macro is used only within assert() to verify that the code gets
5898e14c596Sdrh ** all alignment restrictions correct.
5908e14c596Sdrh **
5918e14c596Sdrh ** Except, if SQLITE_4_BYTE_ALIGNED_MALLOC is defined, then the
5928e14c596Sdrh ** underlying malloc() implemention might return us 4-byte aligned
5938e14c596Sdrh ** pointers.  In that case, only verify 4-byte alignment.
594ea598cbdSdrh */
5958e14c596Sdrh #ifdef SQLITE_4_BYTE_ALIGNED_MALLOC
5968e14c596Sdrh # define EIGHT_BYTE_ALIGNMENT(X)   ((((char*)(X) - (char*)0)&3)==0)
5978e14c596Sdrh #else
598ea598cbdSdrh # define EIGHT_BYTE_ALIGNMENT(X)   ((((char*)(X) - (char*)0)&7)==0)
5998e14c596Sdrh #endif
600ea598cbdSdrh 
601188d4884Sdrh /*
6029b4c59faSdrh ** Disable MMAP on platforms where it is known to not work
603188d4884Sdrh */
604188d4884Sdrh #if defined(__OpenBSD__) || defined(__QNXNTO__)
6059b4c59faSdrh # undef SQLITE_MAX_MMAP_SIZE
6069b4c59faSdrh # define SQLITE_MAX_MMAP_SIZE 0
607188d4884Sdrh #endif
608188d4884Sdrh 
6099b4c59faSdrh /*
6109b4c59faSdrh ** Default maximum size of memory used by memory-mapped I/O in the VFS
6119b4c59faSdrh */
6129b4c59faSdrh #ifdef __APPLE__
6139b4c59faSdrh # include <TargetConditionals.h>
6149b4c59faSdrh # if TARGET_OS_IPHONE
6159b4c59faSdrh #   undef SQLITE_MAX_MMAP_SIZE
6169b4c59faSdrh #   define SQLITE_MAX_MMAP_SIZE 0
6179b4c59faSdrh # endif
6189b4c59faSdrh #endif
6199b4c59faSdrh #ifndef SQLITE_MAX_MMAP_SIZE
6209b4c59faSdrh # if defined(__linux__) \
6219b4c59faSdrh   || defined(_WIN32) \
6229b4c59faSdrh   || (defined(__APPLE__) && defined(__MACH__)) \
6239b4c59faSdrh   || defined(__sun)
6242bba8c24Sdrh #   define SQLITE_MAX_MMAP_SIZE 0x7fff0000  /* 2147418112 */
6259b4c59faSdrh # else
6269b4c59faSdrh #   define SQLITE_MAX_MMAP_SIZE 0
6279b4c59faSdrh # endif
628d16d0bc5Sdrh # define SQLITE_MAX_MMAP_SIZE_xc 1 /* exclude from ctime.c */
6299b4c59faSdrh #endif
6309b4c59faSdrh 
6319b4c59faSdrh /*
6329b4c59faSdrh ** The default MMAP_SIZE is zero on all platforms.  Or, even if a larger
6339b4c59faSdrh ** default MMAP_SIZE is specified at compile-time, make sure that it does
6349b4c59faSdrh ** not exceed the maximum mmap size.
6359b4c59faSdrh */
6369b4c59faSdrh #ifndef SQLITE_DEFAULT_MMAP_SIZE
6379b4c59faSdrh # define SQLITE_DEFAULT_MMAP_SIZE 0
638d16d0bc5Sdrh # define SQLITE_DEFAULT_MMAP_SIZE_xc 1  /* Exclude from ctime.c */
6399b4c59faSdrh #endif
6409b4c59faSdrh #if SQLITE_DEFAULT_MMAP_SIZE>SQLITE_MAX_MMAP_SIZE
6419b4c59faSdrh # undef SQLITE_DEFAULT_MMAP_SIZE
6429b4c59faSdrh # define SQLITE_DEFAULT_MMAP_SIZE SQLITE_MAX_MMAP_SIZE
6439b4c59faSdrh #endif
644e7b34707Sdrh 
645ea598cbdSdrh /*
6461435a9a1Sdrh ** Only one of SQLITE_ENABLE_STAT3 or SQLITE_ENABLE_STAT4 can be defined.
6471435a9a1Sdrh ** Priority is given to SQLITE_ENABLE_STAT4.  If either are defined, also
6481435a9a1Sdrh ** define SQLITE_ENABLE_STAT3_OR_STAT4
6491435a9a1Sdrh */
6501435a9a1Sdrh #ifdef SQLITE_ENABLE_STAT4
6511435a9a1Sdrh # undef SQLITE_ENABLE_STAT3
6521435a9a1Sdrh # define SQLITE_ENABLE_STAT3_OR_STAT4 1
6531435a9a1Sdrh #elif SQLITE_ENABLE_STAT3
6541435a9a1Sdrh # define SQLITE_ENABLE_STAT3_OR_STAT4 1
6551435a9a1Sdrh #elif SQLITE_ENABLE_STAT3_OR_STAT4
6561435a9a1Sdrh # undef SQLITE_ENABLE_STAT3_OR_STAT4
6571435a9a1Sdrh #endif
6581435a9a1Sdrh 
6591435a9a1Sdrh /*
66090f5ecb3Sdrh ** An instance of the following structure is used to store the busy-handler
66190f5ecb3Sdrh ** callback for a given sqlite handle.
66290f5ecb3Sdrh **
66390f5ecb3Sdrh ** The sqlite.busyHandler member of the sqlite struct contains the busy
66490f5ecb3Sdrh ** callback for the database handle. Each pager opened via the sqlite
66590f5ecb3Sdrh ** handle is passed a pointer to sqlite.busyHandler. The busy-handler
66690f5ecb3Sdrh ** callback is currently invoked only from within pager.c.
66790f5ecb3Sdrh */
66890f5ecb3Sdrh typedef struct BusyHandler BusyHandler;
66990f5ecb3Sdrh struct BusyHandler {
67090f5ecb3Sdrh   int (*xFunc)(void *,int);  /* The busy callback */
67190f5ecb3Sdrh   void *pArg;                /* First arg to busy callback */
672a4afb65cSdrh   int nBusy;                 /* Incremented with each busy call */
67390f5ecb3Sdrh };
67490f5ecb3Sdrh 
67590f5ecb3Sdrh /*
67675897234Sdrh ** Name of the master database table.  The master database table
67775897234Sdrh ** is a special table that holds the names and attributes of all
67875897234Sdrh ** user tables and indices.
67975897234Sdrh */
68075897234Sdrh #define MASTER_NAME       "sqlite_master"
681e0bc4048Sdrh #define TEMP_MASTER_NAME  "sqlite_temp_master"
68275897234Sdrh 
68375897234Sdrh /*
6848e150818Sdanielk1977 ** The root-page of the master database table.
6858e150818Sdanielk1977 */
6868e150818Sdanielk1977 #define MASTER_ROOT       1
6878e150818Sdanielk1977 
6888e150818Sdanielk1977 /*
689ed6c8671Sdrh ** The name of the schema table.
690ed6c8671Sdrh */
69153c0f748Sdanielk1977 #define SCHEMA_TABLE(x)  ((!OMIT_TEMPDB)&&(x==1)?TEMP_MASTER_NAME:MASTER_NAME)
692ed6c8671Sdrh 
693ed6c8671Sdrh /*
69475897234Sdrh ** A convenience macro that returns the number of elements in
69575897234Sdrh ** an array.
69675897234Sdrh */
69723432976Sdanielk1977 #define ArraySize(X)    ((int)(sizeof(X)/sizeof(X[0])))
69875897234Sdrh 
69975897234Sdrh /*
7007a5bcc0fSdrh ** Determine if the argument is a power of two
7017a5bcc0fSdrh */
7027a5bcc0fSdrh #define IsPowerOfTwo(X) (((X)&((X)-1))==0)
7037a5bcc0fSdrh 
7047a5bcc0fSdrh /*
705633e6d57Sdrh ** The following value as a destructor means to use sqlite3DbFree().
706aa538a58Sdrh ** The sqlite3DbFree() routine requires two parameters instead of the
707aa538a58Sdrh ** one parameter that destructors normally want.  So we have to introduce
708aa538a58Sdrh ** this magic value that the code knows to handle differently.  Any
709aa538a58Sdrh ** pointer will work here as long as it is distinct from SQLITE_STATIC
710aa538a58Sdrh ** and SQLITE_TRANSIENT.
711633e6d57Sdrh */
712aa538a58Sdrh #define SQLITE_DYNAMIC   ((sqlite3_destructor_type)sqlite3MallocSize)
713633e6d57Sdrh 
71478f82d1eSdrh /*
71578f82d1eSdrh ** When SQLITE_OMIT_WSD is defined, it means that the target platform does
71678f82d1eSdrh ** not support Writable Static Data (WSD) such as global and static variables.
71778f82d1eSdrh ** All variables must either be on the stack or dynamically allocated from
71878f82d1eSdrh ** the heap.  When WSD is unsupported, the variable declarations scattered
71978f82d1eSdrh ** throughout the SQLite code must become constants instead.  The SQLITE_WSD
72078f82d1eSdrh ** macro is used for this purpose.  And instead of referencing the variable
72178f82d1eSdrh ** directly, we use its constant as a key to lookup the run-time allocated
72278f82d1eSdrh ** buffer that holds real variable.  The constant is also the initializer
72378f82d1eSdrh ** for the run-time allocated buffer.
72478f82d1eSdrh **
7252479de3aSshane ** In the usual case where WSD is supported, the SQLITE_WSD and GLOBAL
72678f82d1eSdrh ** macros become no-ops and have zero performance impact.
72778f82d1eSdrh */
728075c23afSdanielk1977 #ifdef SQLITE_OMIT_WSD
729075c23afSdanielk1977   #define SQLITE_WSD const
730075c23afSdanielk1977   #define GLOBAL(t,v) (*(t*)sqlite3_wsd_find((void*)&(v), sizeof(v)))
731075c23afSdanielk1977   #define sqlite3GlobalConfig GLOBAL(struct Sqlite3Config, sqlite3Config)
732d1d38488Sdrh   int sqlite3_wsd_init(int N, int J);
733d1d38488Sdrh   void *sqlite3_wsd_find(void *K, int L);
734075c23afSdanielk1977 #else
735075c23afSdanielk1977   #define SQLITE_WSD
736075c23afSdanielk1977   #define GLOBAL(t,v) v
737075c23afSdanielk1977   #define sqlite3GlobalConfig sqlite3Config
738075c23afSdanielk1977 #endif
739075c23afSdanielk1977 
740f3d3c27aSdanielk1977 /*
741f3d3c27aSdanielk1977 ** The following macros are used to suppress compiler warnings and to
742f3d3c27aSdanielk1977 ** make it clear to human readers when a function parameter is deliberately
743f3d3c27aSdanielk1977 ** left unused within the body of a function. This usually happens when
744f3d3c27aSdanielk1977 ** a function is called via a function pointer. For example the
745f3d3c27aSdanielk1977 ** implementation of an SQL aggregate step callback may not use the
746f3d3c27aSdanielk1977 ** parameter indicating the number of arguments passed to the aggregate,
747f3d3c27aSdanielk1977 ** if it knows that this is enforced elsewhere.
748f3d3c27aSdanielk1977 **
749f3d3c27aSdanielk1977 ** When a function parameter is not used at all within the body of a function,
750f3d3c27aSdanielk1977 ** it is generally named "NotUsed" or "NotUsed2" to make things even clearer.
751f3d3c27aSdanielk1977 ** However, these macros may also be used to suppress warnings related to
752f3d3c27aSdanielk1977 ** parameters that may or may not be used depending on compilation options.
753f3d3c27aSdanielk1977 ** For example those parameters only used in assert() statements. In these
754f3d3c27aSdanielk1977 ** cases the parameters are named as per the usual conventions.
755f3d3c27aSdanielk1977 */
75662c14b34Sdanielk1977 #define UNUSED_PARAMETER(x) (void)(x)
757f3d3c27aSdanielk1977 #define UNUSED_PARAMETER2(x,y) UNUSED_PARAMETER(x),UNUSED_PARAMETER(y)
75862c14b34Sdanielk1977 
759633e6d57Sdrh /*
76075897234Sdrh ** Forward references to structures
76175897234Sdrh */
76213449892Sdrh typedef struct AggInfo AggInfo;
763fe05af87Sdrh typedef struct AuthContext AuthContext;
7640b9f50d8Sdrh typedef struct AutoincInfo AutoincInfo;
765f5e7bb51Sdrh typedef struct Bitvec Bitvec;
766fe05af87Sdrh typedef struct CollSeq CollSeq;
7677020f651Sdrh typedef struct Column Column;
768fe05af87Sdrh typedef struct Db Db;
769e501b89aSdanielk1977 typedef struct Schema Schema;
77075897234Sdrh typedef struct Expr Expr;
77175897234Sdrh typedef struct ExprList ExprList;
772b7916a78Sdrh typedef struct ExprSpan ExprSpan;
773c2eef3b3Sdrh typedef struct FKey FKey;
774d2199f0fSdan typedef struct FuncDestructor FuncDestructor;
775fe05af87Sdrh typedef struct FuncDef FuncDef;
77670a8ca3cSdrh typedef struct FuncDefHash FuncDefHash;
777fe05af87Sdrh typedef struct IdList IdList;
778fe05af87Sdrh typedef struct Index Index;
77902fa4696Sdan typedef struct IndexSample IndexSample;
7808d059845Sdanielk1977 typedef struct KeyClass KeyClass;
781d3d39e93Sdrh typedef struct KeyInfo KeyInfo;
782633e6d57Sdrh typedef struct Lookaside Lookaside;
783633e6d57Sdrh typedef struct LookasideSlot LookasideSlot;
784d1ab1ba5Sdanielk1977 typedef struct Module Module;
785626a879aSdrh typedef struct NameContext NameContext;
786fe05af87Sdrh typedef struct Parse Parse;
787a5c1416dSdrh typedef struct PrintfArguments PrintfArguments;
788a2460e07Sdrh typedef struct RowSet RowSet;
789fd7f0452Sdanielk1977 typedef struct Savepoint Savepoint;
790fe05af87Sdrh typedef struct Select Select;
791634d81deSdrh typedef struct SelectDest SelectDest;
792fe05af87Sdrh typedef struct SrcList SrcList;
793ade86483Sdrh typedef struct StrAccum StrAccum;
794fe05af87Sdrh typedef struct Table Table;
795c00da105Sdanielk1977 typedef struct TableLock TableLock;
796fe05af87Sdrh typedef struct Token Token;
797a2460e07Sdrh typedef struct Trigger Trigger;
7982832ad42Sdan typedef struct TriggerPrg TriggerPrg;
799fe05af87Sdrh typedef struct TriggerStep TriggerStep;
800e63d9991Sdrh typedef struct UnpackedRecord UnpackedRecord;
801595a523aSdanielk1977 typedef struct VTable VTable;
802b061d058Sdan typedef struct VtabCtx VtabCtx;
8037d10d5a6Sdrh typedef struct Walker Walker;
804fe05af87Sdrh typedef struct WhereInfo WhereInfo;
8057d562dbeSdan typedef struct With With;
806d3d39e93Sdrh 
8072dca4ac1Sdanielk1977 /*
8082dca4ac1Sdanielk1977 ** Defer sourcing vdbe.h and btree.h until after the "u8" and
8092dca4ac1Sdanielk1977 ** "BusyHandler" typedefs. vdbe.h also requires a few of the opaque
8102dca4ac1Sdanielk1977 ** pointer types (i.e. FuncDef) defined above.
8112dca4ac1Sdanielk1977 */
8122dca4ac1Sdanielk1977 #include "btree.h"
8132dca4ac1Sdanielk1977 #include "vdbe.h"
8142dca4ac1Sdanielk1977 #include "pager.h"
8158c0a791aSdanielk1977 #include "pcache.h"
8162dca4ac1Sdanielk1977 
8171cc5ed81Sdanielk1977 #include "os.h"
818c7ce76afSdrh #include "mutex.h"
8191cc5ed81Sdanielk1977 
820eee4c8caSdrh 
821001bbcbbSdrh /*
822001bbcbbSdrh ** Each database file to be accessed by the system is an instance
823001bbcbbSdrh ** of the following structure.  There are normally two of these structures
824001bbcbbSdrh ** in the sqlite.aDb[] array.  aDb[0] is the main database file and
825a69d9168Sdrh ** aDb[1] is the database file used to hold temporary tables.  Additional
826a69d9168Sdrh ** databases may be attached.
827001bbcbbSdrh */
828001bbcbbSdrh struct Db {
829001bbcbbSdrh   char *zName;         /* Name of this database */
830001bbcbbSdrh   Btree *pBt;          /* The B*Tree structure for this database file */
831467bcf36Sshane   u8 safety_level;     /* How aggressive at syncing data to disk */
832e501b89aSdanielk1977   Schema *pSchema;     /* Pointer to database schema (possibly shared) */
833da184236Sdanielk1977 };
834da184236Sdanielk1977 
835da184236Sdanielk1977 /*
836da184236Sdanielk1977 ** An instance of the following structure stores a database schema.
8372120608eSdrh **
8382120608eSdrh ** Most Schema objects are associated with a Btree.  The exception is
8392120608eSdrh ** the Schema for the TEMP databaes (sqlite3.aDb[1]) which is free-standing.
8402120608eSdrh ** In shared cache mode, a single Schema object can be shared by multiple
8412120608eSdrh ** Btrees that refer to the same underlying BtShared object.
8422120608eSdrh **
8432120608eSdrh ** Schema objects are automatically deallocated when the last Btree that
8442120608eSdrh ** references them is destroyed.   The TEMP Schema is manually freed by
8452120608eSdrh ** sqlite3_close().
8462120608eSdrh *
8472120608eSdrh ** A thread must be holding a mutex on the corresponding Btree in order
8482120608eSdrh ** to access Schema content.  This implies that the thread must also be
8492120608eSdrh ** holding a mutex on the sqlite3 connection pointer that owns the Btree.
85055a0959aSdrh ** For a TEMP Schema, only the connection mutex is required.
851da184236Sdanielk1977 */
852e501b89aSdanielk1977 struct Schema {
853001bbcbbSdrh   int schema_cookie;   /* Database schema version number for this file */
854c2a75551Sdrh   int iGeneration;     /* Generation counter.  Incremented with each change */
855d24cc427Sdrh   Hash tblHash;        /* All tables indexed by name */
856d24cc427Sdrh   Hash idxHash;        /* All (named) indices indexed by name */
857d24cc427Sdrh   Hash trigHash;       /* All triggers indexed by name */
8581da40a38Sdan   Hash fkeyHash;       /* All foreign keys by referenced table name */
8594794f735Sdrh   Table *pSeqTab;      /* The sqlite_sequence table used by AUTOINCREMENT */
860da184236Sdanielk1977   u8 file_format;      /* Schema format version for this file */
8618079a0d3Sdrh   u8 enc;              /* Text encoding used by this database */
862da184236Sdanielk1977   u16 flags;           /* Flags associated with this schema */
86314db2665Sdanielk1977   int cache_size;      /* Number of pages to use in the cache */
864001bbcbbSdrh };
86575897234Sdrh 
86675897234Sdrh /*
8678bf8dc92Sdrh ** These macros can be used to test, set, or clear bits in the
868a2460e07Sdrh ** Db.pSchema->flags field.
8698bf8dc92Sdrh */
870da184236Sdanielk1977 #define DbHasProperty(D,I,P)     (((D)->aDb[I].pSchema->flags&(P))==(P))
871da184236Sdanielk1977 #define DbHasAnyProperty(D,I,P)  (((D)->aDb[I].pSchema->flags&(P))!=0)
872da184236Sdanielk1977 #define DbSetProperty(D,I,P)     (D)->aDb[I].pSchema->flags|=(P)
873da184236Sdanielk1977 #define DbClearProperty(D,I,P)   (D)->aDb[I].pSchema->flags&=~(P)
8748bf8dc92Sdrh 
8758bf8dc92Sdrh /*
876a2460e07Sdrh ** Allowed values for the DB.pSchema->flags field.
8778bf8dc92Sdrh **
8788bf8dc92Sdrh ** The DB_SchemaLoaded flag is set after the database schema has been
8798bf8dc92Sdrh ** read into internal hash tables.
8808bf8dc92Sdrh **
8818bf8dc92Sdrh ** DB_UnresetViews means that one or more views have column names that
8828bf8dc92Sdrh ** have been filled out.  If the schema changes, these column names might
8838bf8dc92Sdrh ** changes and so the view will need to be reset.
8848bf8dc92Sdrh */
885124b27e6Sdrh #define DB_SchemaLoaded    0x0001  /* The schema has been loaded */
886124b27e6Sdrh #define DB_UnresetViews    0x0002  /* Some views have defined column names */
887b82e7edaSdanielk1977 #define DB_Empty           0x0004  /* The file is empty (length 0 bytes) */
8888bf8dc92Sdrh 
889caa639f4Sdrh /*
890caa639f4Sdrh ** The number of different kinds of things that can be limited
891caa639f4Sdrh ** using the sqlite3_limit() interface.
892caa639f4Sdrh */
893417168adSdrh #define SQLITE_N_LIMIT (SQLITE_LIMIT_TRIGGER_DEPTH+1)
8948bf8dc92Sdrh 
8958bf8dc92Sdrh /*
896633e6d57Sdrh ** Lookaside malloc is a set of fixed-size buffers that can be used
897467bcf36Sshane ** to satisfy small transient memory allocation requests for objects
898633e6d57Sdrh ** associated with a particular database connection.  The use of
899633e6d57Sdrh ** lookaside malloc provides a significant performance enhancement
900633e6d57Sdrh ** (approx 10%) by avoiding numerous malloc/free requests while parsing
901633e6d57Sdrh ** SQL statements.
902633e6d57Sdrh **
903633e6d57Sdrh ** The Lookaside structure holds configuration information about the
904633e6d57Sdrh ** lookaside malloc subsystem.  Each available memory allocation in
905633e6d57Sdrh ** the lookaside subsystem is stored on a linked list of LookasideSlot
906633e6d57Sdrh ** objects.
907d9da78a2Sdrh **
908d9da78a2Sdrh ** Lookaside allocations are only allowed for objects that are associated
909d9da78a2Sdrh ** with a particular database connection.  Hence, schema information cannot
910d9da78a2Sdrh ** be stored in lookaside because in shared cache mode the schema information
911d9da78a2Sdrh ** is shared by multiple database connections.  Therefore, while parsing
912d9da78a2Sdrh ** schema information, the Lookaside.bEnabled flag is cleared so that
913d9da78a2Sdrh ** lookaside allocations are not used to construct the schema objects.
914633e6d57Sdrh */
915633e6d57Sdrh struct Lookaside {
916633e6d57Sdrh   u16 sz;                 /* Size of each buffer in bytes */
917d9da78a2Sdrh   u8 bEnabled;            /* False to disable new lookaside allocations */
918e9d1c720Sdrh   u8 bMalloced;           /* True if pStart obtained from sqlite3_malloc() */
919633e6d57Sdrh   int nOut;               /* Number of buffers currently checked out */
920633e6d57Sdrh   int mxOut;              /* Highwater mark for nOut */
9210b12e7f8Sdrh   int anStat[3];          /* 0: hits.  1: size misses.  2: full misses */
9227d10d5a6Sdrh   LookasideSlot *pFree;   /* List of available buffers */
923633e6d57Sdrh   void *pStart;           /* First byte of available memory space */
924633e6d57Sdrh   void *pEnd;             /* First byte past end of available space */
925633e6d57Sdrh };
926633e6d57Sdrh struct LookasideSlot {
927633e6d57Sdrh   LookasideSlot *pNext;    /* Next buffer in the list of free buffers */
928633e6d57Sdrh };
929633e6d57Sdrh 
930633e6d57Sdrh /*
93170a8ca3cSdrh ** A hash table for function definitions.
93270a8ca3cSdrh **
93370a8ca3cSdrh ** Hash each FuncDef structure into one of the FuncDefHash.a[] slots.
93470a8ca3cSdrh ** Collisions are on the FuncDef.pHash chain.
93570a8ca3cSdrh */
93670a8ca3cSdrh struct FuncDefHash {
93770a8ca3cSdrh   FuncDef *a[23];       /* Hash table for functions */
93870a8ca3cSdrh };
93970a8ca3cSdrh 
94070a8ca3cSdrh /*
941a2460e07Sdrh ** Each database connection is an instance of the following structure.
94275897234Sdrh */
9439bb575fdSdrh struct sqlite3 {
94490f6a5beSdrh   sqlite3_vfs *pVfs;            /* OS Interface */
945a451017dSdrh   struct Vdbe *pVdbe;           /* List of active virtual machines */
946a451017dSdrh   CollSeq *pDfltColl;           /* The default collating sequence (BINARY) */
947a451017dSdrh   sqlite3_mutex *mutex;         /* Connection mutex */
948001bbcbbSdrh   Db *aDb;                      /* All backends */
949a451017dSdrh   int nDb;                      /* Number of backends currently in use */
950467bcf36Sshane   int flags;                    /* Miscellaneous flags. See below */
951a451017dSdrh   i64 lastRowid;                /* ROWID of most recent insert (see above) */
9529b4c59faSdrh   i64 szMmap;                   /* Default mmap_size setting */
953522c26fbSdrh   unsigned int openFlags;       /* Flags passed to sqlite3_vfs.xOpen() */
954fcd35c7bSdrh   int errCode;                  /* Most recent error code (SQLITE_*) */
9554ac285a1Sdrh   int errMask;                  /* & result codes with this before returning */
956a5759677Sdrh   u16 dbOptFlags;               /* Flags to enable/disable optimizations */
957fcd35c7bSdrh   u8 autoCommit;                /* The auto-commit flag. */
95890f5ecb3Sdrh   u8 temp_store;                /* 1: file 2: memory 0: default */
95917435752Sdrh   u8 mallocFailed;              /* True if we have seen a malloc failure */
9603b02013eSdrh   u8 dfltLockMode;              /* Default locking-mode for attached dbs */
96198757157Sdrh   signed char nextAutovac;      /* Autovac setting after VACUUM if >=0 */
962a7564663Sdrh   u8 suppressErr;               /* Do not issue error messages if true */
963b061d058Sdan   u8 vtabOnConflict;            /* Value to return for s3_vtab_on_conflict() */
964a451017dSdrh   u8 isTransactionSavepoint;    /* True if the outermost savepoint is a TS */
965f653d782Sdanielk1977   int nextPagesize;             /* Pagesize after VACUUM if >0 */
96664202cfeSdanielk1977   u32 magic;                    /* Magic number for detect library misuse */
967b28af71aSdanielk1977   int nChange;                  /* Value returned by sqlite3_changes() */
968b28af71aSdanielk1977   int nTotalChange;             /* Value returned by sqlite3_total_changes() */
969caa639f4Sdrh   int aLimit[SQLITE_N_LIMIT];   /* Limits */
9704adee20fSdanielk1977   struct sqlite3InitInfo {      /* Information used during initialization */
9711d85d931Sdrh     int newTnum;                /* Rootpage of table being initialized */
972a451017dSdrh     u8 iDb;                     /* Which db file is being initialized */
9731d85d931Sdrh     u8 busy;                    /* TRUE if currently initializing */
9743d5f74b2Sdrh     u8 orphanTrigger;           /* Last statement is orphaned TEMP trigger */
9751d85d931Sdrh   } init;
9761713afb0Sdrh   int nVdbeActive;              /* Number of VDBEs currently running */
9774f7d3a5fSdrh   int nVdbeRead;                /* Number of active VDBEs that read or write */
9784f7d3a5fSdrh   int nVdbeWrite;               /* Number of active VDBEs that read and write */
9794f7d3a5fSdrh   int nVdbeExec;                /* Number of nested calls to VdbeExec() */
980a451017dSdrh   int nExtension;               /* Number of loaded extensions */
981a451017dSdrh   void **aExtension;            /* Array of shared library handles */
98218de4824Sdrh   void (*xTrace)(void*,const char*);        /* Trace function */
98318de4824Sdrh   void *pTraceArg;                          /* Argument to the trace function */
98419e2d37fSdrh   void (*xProfile)(void*,const char*,u64);  /* Profiling function */
98519e2d37fSdrh   void *pProfileArg;                        /* Argument to profile function */
986fcd35c7bSdrh   void *pCommitArg;                 /* Argument to xCommitCallback() */
987fcd35c7bSdrh   int (*xCommitCallback)(void*);    /* Invoked at every commit. */
98871fd80bfSdanielk1977   void *pRollbackArg;               /* Argument to xRollbackCallback() */
98971fd80bfSdanielk1977   void (*xRollbackCallback)(void*); /* Invoked at every commit. */
99094eb6a14Sdanielk1977   void *pUpdateArg;
99194eb6a14Sdanielk1977   void (*xUpdateCallback)(void*,int, const char*,const char*,sqlite_int64);
9925cf53537Sdan #ifndef SQLITE_OMIT_WAL
9937ed91f23Sdrh   int (*xWalCallback)(void *, sqlite3 *, const char *, int);
9947ed91f23Sdrh   void *pWalArg;
9955cf53537Sdan #endif
996fcd35c7bSdrh   void(*xCollNeeded)(void*,sqlite3*,int eTextRep,const char*);
997fcd35c7bSdrh   void(*xCollNeeded16)(void*,sqlite3*,int eTextRep,const void*);
998fcd35c7bSdrh   void *pCollNeededArg;
999fcd35c7bSdrh   sqlite3_value *pErr;          /* Most recent error message */
1000881feaa0Sdrh   union {
100139001e75Sdrh     volatile int isInterrupted; /* True if sqlite3_interrupt has been called */
1002881feaa0Sdrh     double notUsed1;            /* Spacer */
1003881feaa0Sdrh   } u1;
1004633e6d57Sdrh   Lookaside lookaside;          /* Lookaside malloc configuration */
1005ed6c8671Sdrh #ifndef SQLITE_OMIT_AUTHORIZATION
1006e22a334bSdrh   int (*xAuth)(void*,int,const char*,const char*,const char*,const char*);
1007e22a334bSdrh                                 /* Access authorization function */
1008ed6c8671Sdrh   void *pAuthArg;               /* 1st argument to the access auth function */
1009ed6c8671Sdrh #endif
1010348bb5d6Sdanielk1977 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK
1011348bb5d6Sdanielk1977   int (*xProgress)(void *);     /* The progress callback */
1012348bb5d6Sdanielk1977   void *pProgressArg;           /* Argument to the progress callback */
10138f8c65f7Sdrh   unsigned nProgressOps;        /* Number of opcodes for progress callback */
1014348bb5d6Sdanielk1977 #endif
1015b9bb7c18Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
1016a451017dSdrh   int nVTrans;                  /* Allocated size of aVTrans */
1017b9bb7c18Sdrh   Hash aModule;                 /* populated by sqlite3_create_module() */
1018b061d058Sdan   VtabCtx *pVtabCtx;            /* Context for active vtab connect/create */
1019595a523aSdanielk1977   VTable **aVTrans;             /* Virtual tables with open transactions */
1020595a523aSdanielk1977   VTable *pDisconnect;    /* Disconnect these in next sqlite3_prepare() */
10216b456a2bSdanielk1977 #endif
102270a8ca3cSdrh   FuncDefHash aFunc;            /* Hash table of connection functions */
1023fcd35c7bSdrh   Hash aCollSeq;                /* All collating sequences */
1024fcd35c7bSdrh   BusyHandler busyHandler;      /* Busy callback */
1025fcd35c7bSdrh   Db aDbStatic[2];              /* Static space for the 2 default backends */
1026fd7f0452Sdanielk1977   Savepoint *pSavepoint;        /* List of active savepoints */
1027a451017dSdrh   int busyTimeout;              /* Busy handler timeout, in msec */
1028fd7f0452Sdanielk1977   int nSavepoint;               /* Number of non-transaction savepoints */
1029bd43455cSdanielk1977   int nStatement;               /* Number of nested statement-transactions  */
10301da40a38Sdan   i64 nDeferredCons;            /* Net deferred constraints this transaction. */
1031648e2643Sdrh   i64 nDeferredImmCons;         /* Net deferred immediate constraints */
1032d46def77Sdan   int *pnBytesFreed;            /* If not NULL, increment this in DbFree() */
1033404ca075Sdanielk1977 
1034404ca075Sdanielk1977 #ifdef SQLITE_ENABLE_UNLOCK_NOTIFY
1035404ca075Sdanielk1977   /* The following variables are all protected by the STATIC_MASTER
1036404ca075Sdanielk1977   ** mutex, not by sqlite3.mutex. They are used by code in notify.c.
103765a73badSdrh   **
103865a73badSdrh   ** When X.pUnlockConnection==Y, that means that X is waiting for Y to
103965a73badSdrh   ** unlock so that it can proceed.
104065a73badSdrh   **
104165a73badSdrh   ** When X.pBlockingConnection==Y, that means that something that X tried
104265a73badSdrh   ** tried to do recently failed with an SQLITE_LOCKED error due to locks
104365a73badSdrh   ** held by Y.
1044404ca075Sdanielk1977   */
1045404ca075Sdanielk1977   sqlite3 *pBlockingConnection; /* Connection that caused SQLITE_LOCKED */
1046404ca075Sdanielk1977   sqlite3 *pUnlockConnection;           /* Connection to watch for unlock */
1047404ca075Sdanielk1977   void *pUnlockArg;                     /* Argument to xUnlockNotify */
1048404ca075Sdanielk1977   void (*xUnlockNotify)(void **, int);  /* Unlock notify callback */
1049404ca075Sdanielk1977   sqlite3 *pNextBlocked;        /* Next in list of all blocked connections */
1050404ca075Sdanielk1977 #endif
105175897234Sdrh };
105275897234Sdrh 
105303b808a6Sdrh /*
105403b808a6Sdrh ** A macro to discover the encoding of a database.
105503b808a6Sdrh */
105614db2665Sdanielk1977 #define ENC(db) ((db)->aDb[0].pSchema->enc)
105714db2665Sdanielk1977 
105875897234Sdrh /*
105907096f68Sdrh ** Possible values for the sqlite3.flags.
106075897234Sdrh */
10617e5418e4Sdrh #define SQLITE_VdbeTrace      0x00000001  /* True to trace VDBE execution */
10627e5418e4Sdrh #define SQLITE_InternChanges  0x00000002  /* Uncommitted Hash table changes */
106340c3941cSdrh #define SQLITE_FullFSync      0x00000004  /* Use full fsync on the backend */
106440c3941cSdrh #define SQLITE_CkptFullFSync  0x00000008  /* Use full fsync for checkpoint */
106540c3941cSdrh #define SQLITE_CacheSpill     0x00000010  /* OK to spill pager cache */
106640c3941cSdrh #define SQLITE_FullColNames   0x00000020  /* Show full column names on SELECT */
106740c3941cSdrh #define SQLITE_ShortColNames  0x00000040  /* Show short columns names */
106840c3941cSdrh #define SQLITE_CountRows      0x00000080  /* Count rows changed by INSERT, */
10691bee3d7bSdrh                                           /*   DELETE, or UPDATE and return */
10701bee3d7bSdrh                                           /*   the count using a callback. */
107140c3941cSdrh #define SQLITE_NullCallback   0x00000100  /* Invoke the callback once if the */
10726a535340Sdrh                                           /*   result set is empty */
107340c3941cSdrh #define SQLITE_SqlTrace       0x00000200  /* Debug print SQL as it executes */
107440c3941cSdrh #define SQLITE_VdbeListing    0x00000400  /* Debug listings of VDBE programs */
107540c3941cSdrh #define SQLITE_WriteSchema    0x00000800  /* OK to update SQLITE_MASTER */
107640c3941cSdrh #define SQLITE_VdbeAddopTrace 0x00001000  /* Trace sqlite3VdbeAddOp() calls */
107740c3941cSdrh #define SQLITE_IgnoreChecks   0x00002000  /* Do not enforce check constraints */
107840c3941cSdrh #define SQLITE_ReadUncommitted 0x0004000  /* For shared-cache mode */
107940c3941cSdrh #define SQLITE_LegacyFileFmt  0x00008000  /* Create new databases in format 1 */
108040c3941cSdrh #define SQLITE_RecoveryMode   0x00010000  /* Ignore schema errors */
108140c3941cSdrh #define SQLITE_ReverseOrder   0x00020000  /* Reverse unordered SELECTs */
108240c3941cSdrh #define SQLITE_RecTriggers    0x00040000  /* Enable recursive triggers */
108340c3941cSdrh #define SQLITE_ForeignKeys    0x00080000  /* Enforce foreign key constraints  */
108440c3941cSdrh #define SQLITE_AutoIndex      0x00100000  /* Enable automatic indexes */
108540c3941cSdrh #define SQLITE_PreferBuiltin  0x00200000  /* Preference to built-in funcs */
108640c3941cSdrh #define SQLITE_LoadExtension  0x00400000  /* Enable load_extension */
108740c3941cSdrh #define SQLITE_EnableTrigger  0x00800000  /* True to enable triggers */
108840c3941cSdrh #define SQLITE_DeferFKs       0x01000000  /* Defer all FK constraints */
108940c3941cSdrh #define SQLITE_QueryOnly      0x02000000  /* Disable database changes */
109084e55a80Sdrh #define SQLITE_VdbeEQP        0x04000000  /* Debug EXPLAIN QUERY PLAN */
1091b1eaa718Sdrh 
109207096f68Sdrh 
109307096f68Sdrh /*
10947e5418e4Sdrh ** Bits of the sqlite3.dbOptFlags field that are used by the
10957e5418e4Sdrh ** sqlite3_test_control(SQLITE_TESTCTRL_OPTIMIZATIONS,...) interface to
10967e5418e4Sdrh ** selectively disable various optimizations.
109707096f68Sdrh */
10987e5418e4Sdrh #define SQLITE_QueryFlattener 0x0001   /* Query flattening */
10997e5418e4Sdrh #define SQLITE_ColumnCache    0x0002   /* Column cache */
11007e5418e4Sdrh #define SQLITE_GroupByOrder   0x0004   /* GROUPBY cover of ORDERBY */
11017e5418e4Sdrh #define SQLITE_FactorOutConst 0x0008   /* Constant factoring */
1102762c1c40Sdrh /*                not used    0x0010   // Was: SQLITE_IdxRealAsInt */
11037e5418e4Sdrh #define SQLITE_DistinctOpt    0x0020   /* DISTINCT using indexes */
11047e5418e4Sdrh #define SQLITE_CoverIdxScan   0x0040   /* Covering index scans */
1105a9e3fc05Sdrh #define SQLITE_OrderByIdxJoin 0x0080   /* ORDER BY of joins via index */
1106a5759677Sdrh #define SQLITE_SubqCoroutine  0x0100   /* Evaluate subqueries as coroutines */
1107eb5bc926Sdrh #define SQLITE_Transitive     0x0200   /* Transitive constraints */
11081031bd99Sdrh #define SQLITE_OmitNoopJoin   0x0400   /* Omit unused tables in joins */
110940aa936fSdrh #define SQLITE_Stat3          0x0800   /* Use the SQLITE_STAT3 table */
1110add5ce30Sdrh #define SQLITE_AdjustOutEst   0x1000   /* Adjust output estimates using WHERE */
1111a5759677Sdrh #define SQLITE_AllOpts        0xffff   /* All optimizations */
11127e5418e4Sdrh 
11137e5418e4Sdrh /*
11147e5418e4Sdrh ** Macros for testing whether or not optimizations are enabled or disabled.
11157e5418e4Sdrh */
11167e5418e4Sdrh #ifndef SQLITE_OMIT_BUILTIN_TEST
11177e5418e4Sdrh #define OptimizationDisabled(db, mask)  (((db)->dbOptFlags&(mask))!=0)
11187e5418e4Sdrh #define OptimizationEnabled(db, mask)   (((db)->dbOptFlags&(mask))==0)
11197e5418e4Sdrh #else
11207e5418e4Sdrh #define OptimizationDisabled(db, mask)  0
11217e5418e4Sdrh #define OptimizationEnabled(db, mask)   1
11227e5418e4Sdrh #endif
112334c68fbaSdanielk1977 
112458b9576bSdrh /*
1125d9f158e7Sdrh ** Return true if it OK to factor constant expressions into the initialization
1126d9f158e7Sdrh ** code. The argument is a Parse object for the code generator.
1127d9f158e7Sdrh */
1128aceb31b1Sdrh #define ConstFactorOk(P) ((P)->okConstFactor)
1129d9f158e7Sdrh 
1130d9f158e7Sdrh /*
1131247be43dSdrh ** Possible values for the sqlite.magic field.
1132247be43dSdrh ** The numbers are obtained at random and have no special meaning, other
1133247be43dSdrh ** than being distinct from one another.
1134247be43dSdrh */
1135247be43dSdrh #define SQLITE_MAGIC_OPEN     0xa029a697  /* Database is open */
1136247be43dSdrh #define SQLITE_MAGIC_CLOSED   0x9f3c2d33  /* Database is closed */
11377e8b848aSdrh #define SQLITE_MAGIC_SICK     0x4b771290  /* Error and awaiting close */
1138247be43dSdrh #define SQLITE_MAGIC_BUSY     0xf03b7906  /* Database currently in use */
1139247be43dSdrh #define SQLITE_MAGIC_ERROR    0xb5357930  /* An SQLITE_MISUSE error occurred */
11404245c405Sdrh #define SQLITE_MAGIC_ZOMBIE   0x64cffc7f  /* Close with last statement close */
1141247be43dSdrh 
1142247be43dSdrh /*
11430bce8354Sdrh ** Each SQL function is defined by an instance of the following
11440bce8354Sdrh ** structure.  A pointer to this structure is stored in the sqlite.aFunc
11458e0a2f90Sdrh ** hash table.  When multiple functions have the same name, the hash table
11468e0a2f90Sdrh ** points to a linked list of these structures.
11472803757aSdrh */
11480bce8354Sdrh struct FuncDef {
1149e82f5d04Sdrh   i16 nArg;            /* Number of arguments.  -1 means unlimited */
1150d36e1041Sdrh   u16 funcFlags;       /* Some combination of SQLITE_FUNC_* */
11511350b030Sdrh   void *pUserData;     /* User data parameter */
11520bce8354Sdrh   FuncDef *pNext;      /* Next function with same name */
1153f9b596ebSdrh   void (*xFunc)(sqlite3_context*,int,sqlite3_value**); /* Regular function */
1154f9b596ebSdrh   void (*xStep)(sqlite3_context*,int,sqlite3_value**); /* Aggregate step */
1155467bcf36Sshane   void (*xFinalize)(sqlite3_context*);                /* Aggregate finalizer */
11568c0a791aSdanielk1977   char *zName;         /* SQL name of the function. */
115770a8ca3cSdrh   FuncDef *pHash;      /* Next with a different name but the same hash */
1158d2199f0fSdan   FuncDestructor *pDestructor;   /* Reference counted destructor function */
1159d2199f0fSdan };
1160d2199f0fSdan 
1161d2199f0fSdan /*
1162d2199f0fSdan ** This structure encapsulates a user-function destructor callback (as
1163d2199f0fSdan ** configured using create_function_v2()) and a reference counter. When
1164d2199f0fSdan ** create_function_v2() is called to create a function with a destructor,
1165d2199f0fSdan ** a single object of this type is allocated. FuncDestructor.nRef is set to
1166d2199f0fSdan ** the number of FuncDef objects created (either 1 or 3, depending on whether
1167d2199f0fSdan ** or not the specified encoding is SQLITE_ANY). The FuncDef.pDestructor
1168d2199f0fSdan ** member of each of the new FuncDef objects is set to point to the allocated
1169d2199f0fSdan ** FuncDestructor.
1170d2199f0fSdan **
1171d2199f0fSdan ** Thereafter, when one of the FuncDef objects is deleted, the reference
1172d2199f0fSdan ** count on this object is decremented. When it reaches 0, the destructor
1173d2199f0fSdan ** is invoked and the FuncDestructor structure freed.
1174d2199f0fSdan */
1175d2199f0fSdan struct FuncDestructor {
1176d2199f0fSdan   int nRef;
1177d2199f0fSdan   void (*xDestroy)(void *);
1178d2199f0fSdan   void *pUserData;
11798e0a2f90Sdrh };
11802803757aSdrh 
11812803757aSdrh /*
1182a748fdccSdrh ** Possible values for FuncDef.flags.  Note that the _LENGTH and _TYPEOF
1183a748fdccSdrh ** values must correspond to OPFLAG_LENGTHARG and OPFLAG_TYPEOFARG.  There
1184a748fdccSdrh ** are assert() statements in the code to verify this.
11857d10d5a6Sdrh */
1186d36e1041Sdrh #define SQLITE_FUNC_ENCMASK  0x003 /* SQLITE_UTF8, SQLITE_UTF16BE or UTF16LE */
1187d36e1041Sdrh #define SQLITE_FUNC_LIKE     0x004 /* Candidate for the LIKE optimization */
1188d36e1041Sdrh #define SQLITE_FUNC_CASE     0x008 /* Case-sensitive LIKE-type function */
1189d36e1041Sdrh #define SQLITE_FUNC_EPHEM    0x010 /* Ephemeral.  Delete with VDBE */
1190d36e1041Sdrh #define SQLITE_FUNC_NEEDCOLL 0x020 /* sqlite3GetFuncCollSeq() might be called */
1191d36e1041Sdrh #define SQLITE_FUNC_LENGTH   0x040 /* Built-in length() function */
1192d36e1041Sdrh #define SQLITE_FUNC_TYPEOF   0x080 /* Built-in typeof() function */
1193d36e1041Sdrh #define SQLITE_FUNC_COUNT    0x100 /* Built-in count(*) aggregate */
1194d36e1041Sdrh #define SQLITE_FUNC_COALESCE 0x200 /* Built-in coalesce() or ifnull() */
1195d36e1041Sdrh #define SQLITE_FUNC_UNLIKELY 0x400 /* Built-in unlikely() function */
1196b1fba286Sdrh #define SQLITE_FUNC_CONSTANT 0x800 /* Constant inputs give a constant output */
11977d10d5a6Sdrh 
11987d10d5a6Sdrh /*
1199777c5386Sdrh ** The following three macros, FUNCTION(), LIKEFUNC() and AGGREGATE() are
1200777c5386Sdrh ** used to create the initializers for the FuncDef structures.
1201777c5386Sdrh **
1202777c5386Sdrh **   FUNCTION(zName, nArg, iArg, bNC, xFunc)
1203777c5386Sdrh **     Used to create a scalar function definition of a function zName
1204777c5386Sdrh **     implemented by C function xFunc that accepts nArg arguments. The
1205777c5386Sdrh **     value passed as iArg is cast to a (void*) and made available
1206777c5386Sdrh **     as the user-data (sqlite3_user_data()) for the function. If
1207f7bca574Sdrh **     argument bNC is true, then the SQLITE_FUNC_NEEDCOLL flag is set.
1208777c5386Sdrh **
1209b1fba286Sdrh **   VFUNCTION(zName, nArg, iArg, bNC, xFunc)
1210b1fba286Sdrh **     Like FUNCTION except it omits the SQLITE_FUNC_CONSTANT flag.
1211b1fba286Sdrh **
1212777c5386Sdrh **   AGGREGATE(zName, nArg, iArg, bNC, xStep, xFinal)
1213777c5386Sdrh **     Used to create an aggregate function definition implemented by
1214777c5386Sdrh **     the C functions xStep and xFinal. The first four parameters
1215777c5386Sdrh **     are interpreted in the same way as the first 4 parameters to
1216777c5386Sdrh **     FUNCTION().
1217777c5386Sdrh **
1218777c5386Sdrh **   LIKEFUNC(zName, nArg, pArg, flags)
1219777c5386Sdrh **     Used to create a scalar function definition of a function zName
1220777c5386Sdrh **     that accepts nArg arguments and is implemented by a call to C
1221777c5386Sdrh **     function likeFunc. Argument pArg is cast to a (void *) and made
1222777c5386Sdrh **     available as the function user-data (sqlite3_user_data()). The
1223777c5386Sdrh **     FuncDef.flags variable is set to the value passed as the flags
1224777c5386Sdrh **     parameter.
1225777c5386Sdrh */
1226777c5386Sdrh #define FUNCTION(zName, nArg, iArg, bNC, xFunc) \
1227b1fba286Sdrh   {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \
1228b1fba286Sdrh    SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, #zName, 0, 0}
1229b1fba286Sdrh #define VFUNCTION(zName, nArg, iArg, bNC, xFunc) \
1230d36e1041Sdrh   {nArg, SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \
1231a748fdccSdrh    SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, #zName, 0, 0}
1232a748fdccSdrh #define FUNCTION2(zName, nArg, iArg, bNC, xFunc, extraFlags) \
1233b1fba286Sdrh   {nArg,SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL)|extraFlags,\
12346ac78a0dSdrh    SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, #zName, 0, 0}
123521717ed6Sdrh #define STR_FUNCTION(zName, nArg, pArg, bNC, xFunc) \
1236b1fba286Sdrh   {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \
12376ac78a0dSdrh    pArg, 0, xFunc, 0, 0, #zName, 0, 0}
1238777c5386Sdrh #define LIKEFUNC(zName, nArg, arg, flags) \
1239b1fba286Sdrh   {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|flags, \
1240b1fba286Sdrh    (void *)arg, 0, likeFunc, 0, 0, #zName, 0, 0}
1241777c5386Sdrh #define AGGREGATE(zName, nArg, arg, nc, xStep, xFinal) \
1242d36e1041Sdrh   {nArg, SQLITE_UTF8|(nc*SQLITE_FUNC_NEEDCOLL), \
12436ac78a0dSdrh    SQLITE_INT_TO_PTR(arg), 0, 0, xStep,xFinal,#zName,0,0}
1244777c5386Sdrh 
1245fd7f0452Sdanielk1977 /*
1246fd7f0452Sdanielk1977 ** All current savepoints are stored in a linked list starting at
1247fd7f0452Sdanielk1977 ** sqlite3.pSavepoint. The first element in the list is the most recently
1248fd7f0452Sdanielk1977 ** opened savepoint. Savepoints are added to the list by the vdbe
1249fd7f0452Sdanielk1977 ** OP_Savepoint instruction.
1250fd7f0452Sdanielk1977 */
1251fd7f0452Sdanielk1977 struct Savepoint {
1252fd7f0452Sdanielk1977   char *zName;                        /* Savepoint name (nul-terminated) */
1253fcb9f7adSdrh   i64 nDeferredCons;                  /* Number of deferred fk violations */
1254648e2643Sdrh   i64 nDeferredImmCons;               /* Number of deferred imm fk. */
1255fd7f0452Sdanielk1977   Savepoint *pNext;                   /* Parent savepoint (if any) */
1256fd7f0452Sdanielk1977 };
1257fd7f0452Sdanielk1977 
1258fd7f0452Sdanielk1977 /*
1259fd7f0452Sdanielk1977 ** The following are used as the second parameter to sqlite3Savepoint(),
1260fd7f0452Sdanielk1977 ** and as the P1 argument to the OP_Savepoint instruction.
1261fd7f0452Sdanielk1977 */
1262fd7f0452Sdanielk1977 #define SAVEPOINT_BEGIN      0
1263fd7f0452Sdanielk1977 #define SAVEPOINT_RELEASE    1
1264fd7f0452Sdanielk1977 #define SAVEPOINT_ROLLBACK   2
1265fd7f0452Sdanielk1977 
1266777c5386Sdrh 
1267777c5386Sdrh /*
1268d1ab1ba5Sdanielk1977 ** Each SQLite module (virtual table definition) is defined by an
1269d1ab1ba5Sdanielk1977 ** instance of the following structure, stored in the sqlite3.aModule
1270d1ab1ba5Sdanielk1977 ** hash table.
1271d1ab1ba5Sdanielk1977 */
1272d1ab1ba5Sdanielk1977 struct Module {
1273d1ab1ba5Sdanielk1977   const sqlite3_module *pModule;       /* Callback pointers */
1274d1ab1ba5Sdanielk1977   const char *zName;                   /* Name passed to create_module() */
1275d1ab1ba5Sdanielk1977   void *pAux;                          /* pAux passed to create_module() */
1276832a58a6Sdanielk1977   void (*xDestroy)(void *);            /* Module destructor function */
1277d1ab1ba5Sdanielk1977 };
1278d1ab1ba5Sdanielk1977 
1279d1ab1ba5Sdanielk1977 /*
1280967e8b73Sdrh ** information about each column of an SQL table is held in an instance
12817020f651Sdrh ** of this structure.
12827020f651Sdrh */
12837020f651Sdrh struct Column {
12847020f651Sdrh   char *zName;     /* Name of this column */
12857977a17fSdanielk1977   Expr *pDflt;     /* Default value of this column */
1286b7916a78Sdrh   char *zDflt;     /* Original text of the default value */
1287382c0247Sdrh   char *zType;     /* Data type for this column */
1288b3bf556eSdanielk1977   char *zColl;     /* Collating sequence.  If NULL, use the default */
1289a371ace4Sdrh   u8 notNull;      /* An OE_ code for handling a NOT NULL constraint */
1290a37cdde0Sdanielk1977   char affinity;   /* One of the SQLITE_AFF_... values */
1291fdaac671Sdrh   u8 szEst;        /* Estimated size of this column.  INT==1 */
1292fdaac671Sdrh   u8 colFlags;     /* Boolean properties.  See COLFLAG_ defines below */
12937020f651Sdrh };
12947020f651Sdrh 
1295a371ace4Sdrh /* Allowed values for Column.colFlags:
1296a371ace4Sdrh */
1297a371ace4Sdrh #define COLFLAG_PRIMKEY  0x0001    /* Column is part of the primary key */
1298a371ace4Sdrh #define COLFLAG_HIDDEN   0x0002    /* A hidden column in a virtual table */
1299a371ace4Sdrh 
13007020f651Sdrh /*
1301a9fd84b0Sdrh ** A "Collating Sequence" is defined by an instance of the following
13020202b29eSdanielk1977 ** structure. Conceptually, a collating sequence consists of a name and
13030202b29eSdanielk1977 ** a comparison routine that defines the order of that sequence.
1304a9fd84b0Sdrh **
1305e6f1e760Sdrh ** If CollSeq.xCmp is NULL, it means that the
13060202b29eSdanielk1977 ** collating sequence is undefined.  Indices built on an undefined
13070202b29eSdanielk1977 ** collating sequence may not be read or written.
1308a9fd84b0Sdrh */
1309a9fd84b0Sdrh struct CollSeq {
13100202b29eSdanielk1977   char *zName;          /* Name of the collating sequence, UTF-8 encoded */
1311466be56bSdanielk1977   u8 enc;               /* Text encoding handled by xCmp() */
1312a9fd84b0Sdrh   void *pUser;          /* First argument to xCmp() */
13130202b29eSdanielk1977   int (*xCmp)(void*,int, const void*, int, const void*);
1314a9808b31Sdanielk1977   void (*xDel)(void*);  /* Destructor for pUser */
1315a9fd84b0Sdrh };
1316a9fd84b0Sdrh 
1317a9fd84b0Sdrh /*
1318d3d39e93Sdrh ** A sort order can be either ASC or DESC.
13198e2ca029Sdrh */
13208e2ca029Sdrh #define SQLITE_SO_ASC       0  /* Sort in ascending order */
1321d3d39e93Sdrh #define SQLITE_SO_DESC      1  /* Sort in ascending order */
13228e2ca029Sdrh 
13238e2ca029Sdrh /*
1324a37cdde0Sdanielk1977 ** Column affinity types.
13258a51256cSdrh **
13268a51256cSdrh ** These used to have mnemonic name like 'i' for SQLITE_AFF_INTEGER and
13278a51256cSdrh ** 't' for SQLITE_AFF_TEXT.  But we can save a little space and improve
13287d10d5a6Sdrh ** the speed a little by numbering the values consecutively.
13298a51256cSdrh **
13308a51256cSdrh ** But rather than start with 0 or 1, we begin with 'a'.  That way,
13318a51256cSdrh ** when multiple affinity types are concatenated into a string and
133266a5167bSdrh ** used as the P4 operand, they will be more readable.
13338a51256cSdrh **
13348a51256cSdrh ** Note also that the numeric types are grouped together so that testing
13358a51256cSdrh ** for a numeric type is a single comparison.
1336a37cdde0Sdanielk1977 */
13378a51256cSdrh #define SQLITE_AFF_TEXT     'a'
13388a51256cSdrh #define SQLITE_AFF_NONE     'b'
13398a51256cSdrh #define SQLITE_AFF_NUMERIC  'c'
13408a51256cSdrh #define SQLITE_AFF_INTEGER  'd'
13418a51256cSdrh #define SQLITE_AFF_REAL     'e'
1342a37cdde0Sdanielk1977 
13438a51256cSdrh #define sqlite3IsNumericAffinity(X)  ((X)>=SQLITE_AFF_NUMERIC)
1344a37cdde0Sdanielk1977 
1345a37cdde0Sdanielk1977 /*
134635573356Sdrh ** The SQLITE_AFF_MASK values masks off the significant bits of an
134735573356Sdrh ** affinity value.
134835573356Sdrh */
134935573356Sdrh #define SQLITE_AFF_MASK     0x67
135035573356Sdrh 
135135573356Sdrh /*
135235573356Sdrh ** Additional bit values that can be ORed with an affinity without
135335573356Sdrh ** changing the affinity.
13543d77dee9Sdrh **
13553d77dee9Sdrh ** The SQLITE_NOTNULL flag is a combination of NULLEQ and JUMPIFNULL.
13563d77dee9Sdrh ** It causes an assert() to fire if either operand to a comparison
13573d77dee9Sdrh ** operator is NULL.  It is added to certain comparison operators to
13583d77dee9Sdrh ** prove that the operands are always NOT NULL.
135935573356Sdrh */
136035573356Sdrh #define SQLITE_JUMPIFNULL   0x08  /* jumps if either operand is NULL */
136193a960a0Sdrh #define SQLITE_STOREP2      0x10  /* Store result in reg[P2] rather than jump */
13626a2fe093Sdrh #define SQLITE_NULLEQ       0x80  /* NULL=NULL */
13633d77dee9Sdrh #define SQLITE_NOTNULL      0x88  /* Assert that operands are never NULL */
136435573356Sdrh 
136535573356Sdrh /*
1366595a523aSdanielk1977 ** An object of this type is created for each virtual table present in
1367595a523aSdanielk1977 ** the database schema.
1368595a523aSdanielk1977 **
1369595a523aSdanielk1977 ** If the database schema is shared, then there is one instance of this
1370595a523aSdanielk1977 ** structure for each database connection (sqlite3*) that uses the shared
1371595a523aSdanielk1977 ** schema. This is because each database connection requires its own unique
1372595a523aSdanielk1977 ** instance of the sqlite3_vtab* handle used to access the virtual table
1373595a523aSdanielk1977 ** implementation. sqlite3_vtab* handles can not be shared between
1374595a523aSdanielk1977 ** database connections, even when the rest of the in-memory database
1375595a523aSdanielk1977 ** schema is shared, as the implementation often stores the database
1376595a523aSdanielk1977 ** connection handle passed to it via the xConnect() or xCreate() method
1377595a523aSdanielk1977 ** during initialization internally. This database connection handle may
13789bbc2e28Sdrh ** then be used by the virtual table implementation to access real tables
1379595a523aSdanielk1977 ** within the database. So that they appear as part of the callers
1380595a523aSdanielk1977 ** transaction, these accesses need to be made via the same database
1381595a523aSdanielk1977 ** connection as that used to execute SQL operations on the virtual table.
1382595a523aSdanielk1977 **
1383595a523aSdanielk1977 ** All VTable objects that correspond to a single table in a shared
1384595a523aSdanielk1977 ** database schema are initially stored in a linked-list pointed to by
1385595a523aSdanielk1977 ** the Table.pVTable member variable of the corresponding Table object.
1386595a523aSdanielk1977 ** When an sqlite3_prepare() operation is required to access the virtual
1387595a523aSdanielk1977 ** table, it searches the list for the VTable that corresponds to the
1388595a523aSdanielk1977 ** database connection doing the preparing so as to use the correct
1389595a523aSdanielk1977 ** sqlite3_vtab* handle in the compiled query.
1390595a523aSdanielk1977 **
1391595a523aSdanielk1977 ** When an in-memory Table object is deleted (for example when the
1392595a523aSdanielk1977 ** schema is being reloaded for some reason), the VTable objects are not
1393595a523aSdanielk1977 ** deleted and the sqlite3_vtab* handles are not xDisconnect()ed
1394595a523aSdanielk1977 ** immediately. Instead, they are moved from the Table.pVTable list to
1395595a523aSdanielk1977 ** another linked list headed by the sqlite3.pDisconnect member of the
1396595a523aSdanielk1977 ** corresponding sqlite3 structure. They are then deleted/xDisconnected
1397595a523aSdanielk1977 ** next time a statement is prepared using said sqlite3*. This is done
1398595a523aSdanielk1977 ** to avoid deadlock issues involving multiple sqlite3.mutex mutexes.
1399595a523aSdanielk1977 ** Refer to comments above function sqlite3VtabUnlockList() for an
1400595a523aSdanielk1977 ** explanation as to why it is safe to add an entry to an sqlite3.pDisconnect
1401595a523aSdanielk1977 ** list without holding the corresponding sqlite3.mutex mutex.
1402595a523aSdanielk1977 **
1403595a523aSdanielk1977 ** The memory for objects of this type is always allocated by
1404595a523aSdanielk1977 ** sqlite3DbMalloc(), using the connection handle stored in VTable.db as
1405595a523aSdanielk1977 ** the first argument.
1406595a523aSdanielk1977 */
1407595a523aSdanielk1977 struct VTable {
1408595a523aSdanielk1977   sqlite3 *db;              /* Database connection associated with this table */
1409595a523aSdanielk1977   Module *pMod;             /* Pointer to module implementation */
1410595a523aSdanielk1977   sqlite3_vtab *pVtab;      /* Pointer to vtab instance */
1411595a523aSdanielk1977   int nRef;                 /* Number of pointers to this structure */
1412b061d058Sdan   u8 bConstraint;           /* True if constraints are supported */
1413addd8f87Sdrh   int iSavepoint;           /* Depth of the SAVEPOINT stack */
1414595a523aSdanielk1977   VTable *pNext;            /* Next in linked list (see above) */
1415595a523aSdanielk1977 };
1416595a523aSdanielk1977 
1417595a523aSdanielk1977 /*
141822f70c32Sdrh ** Each SQL table is represented in memory by an instance of the
141922f70c32Sdrh ** following structure.
142022f70c32Sdrh **
1421d24cc427Sdrh ** Table.zName is the name of the table.  The case of the original
142222f70c32Sdrh ** CREATE TABLE statement is stored, but case is not significant for
142322f70c32Sdrh ** comparisons.
142422f70c32Sdrh **
1425d24cc427Sdrh ** Table.nCol is the number of columns in this table.  Table.aCol is a
142622f70c32Sdrh ** pointer to an array of Column structures, one for each column.
142722f70c32Sdrh **
1428d24cc427Sdrh ** If the table has an INTEGER PRIMARY KEY, then Table.iPKey is the index of
1429d24cc427Sdrh ** the column that is that key.   Otherwise Table.iPKey is negative.  Note
143022f70c32Sdrh ** that the datatype of the PRIMARY KEY must be INTEGER for this field to
143122f70c32Sdrh ** be set.  An INTEGER PRIMARY KEY is used as the rowid for each row of
143222f70c32Sdrh ** the table.  If a table has no INTEGER PRIMARY KEY, then a random rowid
14337d10d5a6Sdrh ** is generated for each row of the table.  TF_HasPrimaryKey is set if
143422f70c32Sdrh ** the table has any PRIMARY KEY, INTEGER or otherwise.
143522f70c32Sdrh **
1436d24cc427Sdrh ** Table.tnum is the page number for the root BTree page of the table in the
1437d24cc427Sdrh ** database file.  If Table.iDb is the index of the database table backend
1438d24cc427Sdrh ** in sqlite.aDb[].  0 is for the main database and 1 is for the file that
14397d10d5a6Sdrh ** holds temporary tables and indices.  If TF_Ephemeral is set
14407d10d5a6Sdrh ** then the table is stored in a file that is automatically deleted
1441d24cc427Sdrh ** when the VDBE cursor to the table is closed.  In this case Table.tnum
144222f70c32Sdrh ** refers VDBE cursor number that holds the table open, not to the root
144322f70c32Sdrh ** page number.  Transient tables are used to hold the results of a
144422f70c32Sdrh ** sub-query that appears instead of a real table name in the FROM clause
144522f70c32Sdrh ** of a SELECT statement.
144675897234Sdrh */
144775897234Sdrh struct Table {
14487d10d5a6Sdrh   char *zName;         /* Name of the table or view */
14497020f651Sdrh   Column *aCol;        /* Information about each column */
1450967e8b73Sdrh   Index *pIndex;       /* List of SQL indexes on this table. */
1451a76b5dfcSdrh   Select *pSelect;     /* NULL for tables.  Points to definition if a view. */
1452c2eef3b3Sdrh   FKey *pFKey;         /* Linked list of all foreign keys in this table */
14533d1bfeaaSdanielk1977   char *zColAff;       /* String defining the affinity of each column */
1454ffe07b2dSdrh #ifndef SQLITE_OMIT_CHECK
14552938f924Sdrh   ExprList *pCheck;    /* All CHECK constraints */
1456ffe07b2dSdrh #endif
1457d815f17dSdrh   tRowcnt nRowEst;     /* Estimated rows in table - from sqlite_stat1 table */
1458d815f17dSdrh   int tnum;            /* Root BTree node for this table (see note above) */
1459d815f17dSdrh   i16 iPKey;           /* If not negative, use aCol[iPKey] as the primary key */
1460d815f17dSdrh   i16 nCol;            /* Number of columns in this table */
1461d815f17dSdrh   u16 nRef;            /* Number of pointers to this Table */
1462bf539c4dSdrh   LogEst szTabRow;     /* Estimated size of each table row in bytes */
1463d815f17dSdrh   u8 tabFlags;         /* Mask of TF_* values */
1464d815f17dSdrh   u8 keyConf;          /* What to do in case of uniqueness conflict on iPKey */
146519a8e7e8Sdanielk1977 #ifndef SQLITE_OMIT_ALTERTABLE
14667d10d5a6Sdrh   int addColOffset;    /* Offset in CREATE TABLE stmt to add a new column */
146719a8e7e8Sdanielk1977 #endif
1468e09daa90Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
1469b9bb7c18Sdrh   int nModuleArg;      /* Number of arguments to the module */
1470b9bb7c18Sdrh   char **azModuleArg;  /* Text of all module args. [0] is module name */
1471d815f17dSdrh   VTable *pVTable;     /* List of VTable objects. */
1472e09daa90Sdrh #endif
14732f886d1dSdanielk1977   Trigger *pTrigger;   /* List of triggers stored in pSchema */
1474728b5779Sdrh   Schema *pSchema;     /* Schema that contains this table */
1475588a9a1aSdrh   Table *pNextZombie;  /* Next on the Parse.pZombieTab list */
147675897234Sdrh };
147775897234Sdrh 
147875897234Sdrh /*
14798ce7184bSdan ** Allowed values for Table.tabFlags.
14807d10d5a6Sdrh */
14817d10d5a6Sdrh #define TF_Readonly        0x01    /* Read-only system table */
1482467bcf36Sshane #define TF_Ephemeral       0x02    /* An ephemeral table */
14837d10d5a6Sdrh #define TF_HasPrimaryKey   0x04    /* Table has a primary key */
14847d10d5a6Sdrh #define TF_Autoincrement   0x08    /* Integer primary key is autoincrement */
14857d10d5a6Sdrh #define TF_Virtual         0x10    /* Is a virtual table */
148681eba73eSdrh #define TF_WithoutRowid    0x20    /* No rowid used. PRIMARY KEY is the key */
14877d10d5a6Sdrh 
14887d10d5a6Sdrh 
14897d10d5a6Sdrh /*
14904cbdda9eSdrh ** Test to see whether or not a table is a virtual table.  This is
14914cbdda9eSdrh ** done as a macro so that it will be optimized out when virtual
14924cbdda9eSdrh ** table support is omitted from the build.
14934cbdda9eSdrh */
14944cbdda9eSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
14957d10d5a6Sdrh #  define IsVirtual(X)      (((X)->tabFlags & TF_Virtual)!=0)
1496a371ace4Sdrh #  define IsHiddenColumn(X) (((X)->colFlags & COLFLAG_HIDDEN)!=0)
14974cbdda9eSdrh #else
14984cbdda9eSdrh #  define IsVirtual(X)      0
1499034ca14fSdanielk1977 #  define IsHiddenColumn(X) 0
15004cbdda9eSdrh #endif
15014cbdda9eSdrh 
1502ec95c441Sdrh /* Does the table have a rowid */
1503ec95c441Sdrh #define HasRowid(X)     (((X)->tabFlags & TF_WithoutRowid)==0)
1504ec95c441Sdrh 
15054cbdda9eSdrh /*
1506c2eef3b3Sdrh ** Each foreign key constraint is an instance of the following structure.
1507c2eef3b3Sdrh **
1508c2eef3b3Sdrh ** A foreign key is associated with two tables.  The "from" table is
1509c2eef3b3Sdrh ** the table that contains the REFERENCES clause that creates the foreign
1510c2eef3b3Sdrh ** key.  The "to" table is the table that is named in the REFERENCES clause.
1511c2eef3b3Sdrh ** Consider this example:
1512c2eef3b3Sdrh **
1513c2eef3b3Sdrh **     CREATE TABLE ex1(
1514c2eef3b3Sdrh **       a INTEGER PRIMARY KEY,
1515c2eef3b3Sdrh **       b INTEGER CONSTRAINT fk1 REFERENCES ex2(x)
1516c2eef3b3Sdrh **     );
1517c2eef3b3Sdrh **
1518c2eef3b3Sdrh ** For foreign key "fk1", the from-table is "ex1" and the to-table is "ex2".
1519bd50a926Sdrh ** Equivalent names:
1520bd50a926Sdrh **
1521bd50a926Sdrh **     from-table == child-table
1522bd50a926Sdrh **       to-table == parent-table
1523c2eef3b3Sdrh **
1524c2eef3b3Sdrh ** Each REFERENCES clause generates an instance of the following structure
1525c2eef3b3Sdrh ** which is attached to the from-table.  The to-table need not exist when
1526e61922a6Sdrh ** the from-table is created.  The existence of the to-table is not checked.
1527bd50a926Sdrh **
1528bd50a926Sdrh ** The list of all parents for child Table X is held at X.pFKey.
1529bd50a926Sdrh **
1530bd50a926Sdrh ** A list of all children for a table named Z (which might not even exist)
1531bd50a926Sdrh ** is held in Schema.fkeyHash with a hash key of Z.
1532c2eef3b3Sdrh */
1533c2eef3b3Sdrh struct FKey {
15341f638cebSdrh   Table *pFrom;     /* Table containing the REFERENCES clause (aka: Child) */
1535bd50a926Sdrh   FKey *pNextFrom;  /* Next FKey with the same in pFrom. Next parent of pFrom */
15361f638cebSdrh   char *zTo;        /* Name of table that the key points to (aka: Parent) */
1537bd50a926Sdrh   FKey *pNextTo;    /* Next with the same zTo. Next child of zTo. */
1538bd50a926Sdrh   FKey *pPrevTo;    /* Previous with the same zTo */
1539c2eef3b3Sdrh   int nCol;         /* Number of columns in this key */
15404c429839Sdrh   /* EV: R-30323-21917 */
1541c2eef3b3Sdrh   u8 isDeferred;       /* True if constraint checking is deferred till COMMIT */
15428099ce6fSdan   u8 aAction[2];        /* ON DELETE and ON UPDATE actions, respectively */
15438099ce6fSdan   Trigger *apTrigger[2];/* Triggers for aAction[] actions */
1544e61922a6Sdrh   struct sColMap {      /* Mapping of columns in pFrom to columns in zTo */
1545e61922a6Sdrh     int iFrom;            /* Index of column in pFrom */
1546bd50a926Sdrh     char *zCol;           /* Name of column in zTo.  If NULL use PRIMARY KEY */
1547e61922a6Sdrh   } aCol[1];            /* One entry for each of nCol columns */
1548c2eef3b3Sdrh };
1549c2eef3b3Sdrh 
1550c2eef3b3Sdrh /*
1551aaa40c1cSdanielk1977 ** SQLite supports many different ways to resolve a constraint
155222f70c32Sdrh ** error.  ROLLBACK processing means that a constraint violation
15530bd1f4eaSdrh ** causes the operation in process to fail and for the current transaction
15541c92853dSdrh ** to be rolled back.  ABORT processing means the operation in process
15551c92853dSdrh ** fails and any prior changes from that one operation are backed out,
15561c92853dSdrh ** but the transaction is not rolled back.  FAIL processing means that
15571c92853dSdrh ** the operation in progress stops and returns an error code.  But prior
15581c92853dSdrh ** changes due to the same operation are not backed out and no rollback
15591c92853dSdrh ** occurs.  IGNORE means that the particular row that caused the constraint
15601c92853dSdrh ** error is not inserted or updated.  Processing continues and no error
15611c92853dSdrh ** is returned.  REPLACE means that preexisting database rows that caused
15621c92853dSdrh ** a UNIQUE constraint violation are removed so that the new insert or
15631c92853dSdrh ** update can proceed.  Processing continues and no error is reported.
15641c92853dSdrh **
1565c2eef3b3Sdrh ** RESTRICT, SETNULL, and CASCADE actions apply only to foreign keys.
1566c2eef3b3Sdrh ** RESTRICT is the same as ABORT for IMMEDIATE foreign keys and the
1567c2eef3b3Sdrh ** same as ROLLBACK for DEFERRED keys.  SETNULL means that the foreign
1568c2eef3b3Sdrh ** key is set to NULL.  CASCADE means that a DELETE or UPDATE of the
1569c2eef3b3Sdrh ** referenced table row is propagated into the row that holds the
1570c2eef3b3Sdrh ** foreign key.
1571c2eef3b3Sdrh **
1572968af52aSdrh ** The following symbolic values are used to record which type
15731c92853dSdrh ** of action to take.
15749cfcf5d4Sdrh */
15759cfcf5d4Sdrh #define OE_None     0   /* There is no constraint to check */
15761c92853dSdrh #define OE_Rollback 1   /* Fail the operation and rollback the transaction */
15771c92853dSdrh #define OE_Abort    2   /* Back out changes but do no rollback transaction */
15781c92853dSdrh #define OE_Fail     3   /* Stop the operation but leave all prior changes */
15791c92853dSdrh #define OE_Ignore   4   /* Ignore the error. Do not do the INSERT or UPDATE */
15801c92853dSdrh #define OE_Replace  5   /* Delete existing record, then do INSERT or UPDATE */
1581c2eef3b3Sdrh 
1582c2eef3b3Sdrh #define OE_Restrict 6   /* OE_Abort for IMMEDIATE, OE_Rollback for DEFERRED */
1583c2eef3b3Sdrh #define OE_SetNull  7   /* Set the foreign key value to NULL */
1584c2eef3b3Sdrh #define OE_SetDflt  8   /* Set the foreign key value to its default */
1585c2eef3b3Sdrh #define OE_Cascade  9   /* Cascade the changes */
1586c2eef3b3Sdrh 
1587c28c4e50Sdrh #define OE_Default  10  /* Do whatever the default action is */
15889cfcf5d4Sdrh 
1589d3d39e93Sdrh 
1590d3d39e93Sdrh /*
1591d3d39e93Sdrh ** An instance of the following structure is passed as the first
1592d3d39e93Sdrh ** argument to sqlite3VdbeKeyCompare and is used to control the
1593d3d39e93Sdrh ** comparison of the two index keys.
1594323df790Sdrh **
1595323df790Sdrh ** Note that aSortOrder[] and aColl[] have nField+1 slots.  There
1596323df790Sdrh ** are nField slots for the columns of an index then one extra slot
1597323df790Sdrh ** for the rowid at the end.
1598d3d39e93Sdrh */
1599d3d39e93Sdrh struct KeyInfo {
16002ec2fb22Sdrh   u32 nRef;           /* Number of references to this KeyInfo object */
16019b8d0272Sdrh   u8 enc;             /* Text encoding - one of the SQLITE_UTF* values */
1602ad124329Sdrh   u16 nField;         /* Number of key columns in the index */
1603ad124329Sdrh   u16 nXField;        /* Number of columns beyond the key columns */
16042ec2fb22Sdrh   sqlite3 *db;        /* The database connection */
1605323df790Sdrh   u8 *aSortOrder;     /* Sort order for each column. */
1606d3d39e93Sdrh   CollSeq *aColl[1];  /* Collating sequence for each term of the key */
1607d3d39e93Sdrh };
1608d3d39e93Sdrh 
16099cfcf5d4Sdrh /*
1610e63d9991Sdrh ** An instance of the following structure holds information about a
1611e63d9991Sdrh ** single index record that has already been parsed out into individual
1612e63d9991Sdrh ** values.
1613e63d9991Sdrh **
1614e63d9991Sdrh ** A record is an object that contains one or more fields of data.
1615e63d9991Sdrh ** Records are used to store the content of a table row and to store
1616e63d9991Sdrh ** the key of an index.  A blob encoding of a record is created by
1617467bcf36Sshane ** the OP_MakeRecord opcode of the VDBE and is disassembled by the
1618e63d9991Sdrh ** OP_Column opcode.
1619e63d9991Sdrh **
1620e63d9991Sdrh ** This structure holds a record that has already been disassembled
1621467bcf36Sshane ** into its constituent fields.
16223833e934Sdan **
16233833e934Sdan ** The r1 and r2 member variables are only used by the optimized comparison
16243833e934Sdan ** functions vdbeRecordCompareInt() and vdbeRecordCompareString().
1625e63d9991Sdrh */
1626e63d9991Sdrh struct UnpackedRecord {
1627e63d9991Sdrh   KeyInfo *pKeyInfo;  /* Collation and sort-order information */
1628e63d9991Sdrh   u16 nField;         /* Number of entries in apMem[] */
1629a9e0aeb5Sdrh   i8 default_rc;      /* Comparison result if keys are equal */
1630a1f7c0a2Sdrh   u8 isCorrupt;       /* Corruption detected by xRecordCompare() */
1631e63d9991Sdrh   Mem *aMem;          /* Values */
16323833e934Sdan   int r1;             /* Value to return if (lhs > rhs) */
16333833e934Sdan   int r2;             /* Value to return if (rhs < lhs) */
1634e63d9991Sdrh };
1635e63d9991Sdrh 
1636e63d9991Sdrh 
1637e63d9991Sdrh /*
163866b89c8fSdrh ** Each SQL index is represented in memory by an
163975897234Sdrh ** instance of the following structure.
1640967e8b73Sdrh **
1641967e8b73Sdrh ** The columns of the table that are to be indexed are described
1642967e8b73Sdrh ** by the aiColumn[] field of this structure.  For example, suppose
1643967e8b73Sdrh ** we have the following table and index:
1644967e8b73Sdrh **
1645967e8b73Sdrh **     CREATE TABLE Ex1(c1 int, c2 int, c3 text);
1646967e8b73Sdrh **     CREATE INDEX Ex2 ON Ex1(c3,c1);
1647967e8b73Sdrh **
1648967e8b73Sdrh ** In the Table structure describing Ex1, nCol==3 because there are
1649967e8b73Sdrh ** three columns in the table.  In the Index structure describing
1650967e8b73Sdrh ** Ex2, nColumn==2 since 2 of the 3 columns of Ex1 are indexed.
1651967e8b73Sdrh ** The value of aiColumn is {2, 0}.  aiColumn[0]==2 because the
1652967e8b73Sdrh ** first column to be indexed (c3) has an index of 2 in Ex1.aCol[].
1653967e8b73Sdrh ** The second column to be indexed (c1) has an index of 0 in
1654967e8b73Sdrh ** Ex1.aCol[], hence Ex2.aiColumn[1]==0.
1655ea1ba17cSdrh **
1656ea1ba17cSdrh ** The Index.onError field determines whether or not the indexed columns
1657ea1ba17cSdrh ** must be unique and what to do if they are not.  When Index.onError=OE_None,
1658ea1ba17cSdrh ** it means this is not a unique index.  Otherwise it is a unique index
1659ea1ba17cSdrh ** and the value of Index.onError indicate the which conflict resolution
1660ea1ba17cSdrh ** algorithm to employ whenever an attempt is made to insert a non-unique
1661ea1ba17cSdrh ** element.
166275897234Sdrh */
166375897234Sdrh struct Index {
166475897234Sdrh   char *zName;             /* Name of this index */
1665bbbdc83bSdrh   i16 *aiColumn;           /* Which columns are used by this index.  1st is 0 */
1666b376daebSdrh   tRowcnt *aiRowEst;       /* From ANALYZE: Est. rows selected by each column */
1667967e8b73Sdrh   Table *pTable;           /* The SQL table being indexed */
1668a37cdde0Sdanielk1977   char *zColAff;           /* String defining the affinity of each column */
166975897234Sdrh   Index *pNext;            /* The next index associated with the same table */
1670b3bf556eSdanielk1977   Schema *pSchema;         /* Schema containing this index */
1671b376daebSdrh   u8 *aSortOrder;          /* for each column: True==DESC, False==ASC */
1672b3bf556eSdanielk1977   char **azColl;           /* Array of collation sequence names for index */
16731fe0537eSdrh   Expr *pPartIdxWhere;     /* WHERE clause for partial indices */
16742ec2fb22Sdrh   KeyInfo *pKeyInfo;       /* A KeyInfo object suitable for this index */
1675b376daebSdrh   int tnum;                /* DB Page containing root of this index */
1676bf539c4dSdrh   LogEst szIdxRow;         /* Estimated average row size in bytes */
1677bbbdc83bSdrh   u16 nKeyCol;             /* Number of columns forming the key */
1678bbbdc83bSdrh   u16 nColumn;             /* Number of columns stored in the index */
1679bf539c4dSdrh   u8 onError;              /* OE_Abort, OE_Ignore, OE_Replace, or OE_None */
1680b376daebSdrh   unsigned autoIndex:2;    /* 1==UNIQUE, 2==PRIMARY KEY, 0==CREATE INDEX */
1681b376daebSdrh   unsigned bUnordered:1;   /* Use this index for == or IN queries only */
16827699d1c4Sdrh   unsigned uniqNotNull:1;  /* True if UNIQUE and NOT NULL for all columns */
16837f9c5dbfSdrh   unsigned isResized:1;    /* True if resizeIndexObject() has been called */
1684ec95c441Sdrh   unsigned isCovering:1;   /* True if this is a covering index */
16851435a9a1Sdrh #ifdef SQLITE_ENABLE_STAT3_OR_STAT4
16862b9cf669Sdrh   int nSample;             /* Number of elements in aSample[] */
16878ad169abSdan   int nSampleCol;          /* Size of IndexSample.anEq[] and so on */
1688eea568d6Sdan   tRowcnt *aAvgEq;         /* Average nEq values for keys not in aSample */
1689faacf17cSdrh   IndexSample *aSample;    /* Samples of the left-most key */
1690faacf17cSdrh #endif
169102fa4696Sdan };
169202fa4696Sdan 
169302fa4696Sdan /*
169474e7c8f5Sdrh ** Each sample stored in the sqlite_stat3 table is represented in memory
169574e7c8f5Sdrh ** using a structure of this type.  See documentation at the top of the
169674e7c8f5Sdrh ** analyze.c source file for additional information.
169702fa4696Sdan */
169802fa4696Sdan struct IndexSample {
1699f52bb8d3Sdan   void *p;          /* Pointer to sampled record */
1700f52bb8d3Sdan   int n;            /* Size of record in bytes */
1701f52bb8d3Sdan   tRowcnt *anEq;    /* Est. number of rows where the key equals this sample */
1702f52bb8d3Sdan   tRowcnt *anLt;    /* Est. number of rows where key is less than this sample */
1703f52bb8d3Sdan   tRowcnt *anDLt;   /* Est. number of distinct keys less than this sample */
170475897234Sdrh };
170575897234Sdrh 
170675897234Sdrh /*
170775897234Sdrh ** Each token coming out of the lexer is an instance of
17084b59ab5eSdrh ** this structure.  Tokens are also used as part of an expression.
17094efc4754Sdrh **
17104efc4754Sdrh ** Note if Token.z==0 then Token.dyn and Token.n are undefined and
1711467bcf36Sshane ** may contain random values.  Do not make any assumptions about Token.dyn
17124efc4754Sdrh ** and Token.n when Token.z==0.
171375897234Sdrh */
171475897234Sdrh struct Token {
1715b7916a78Sdrh   const char *z;     /* Text of the token.  Not NULL-terminated! */
1716b7916a78Sdrh   unsigned int n;    /* Number of characters in this token */
171775897234Sdrh };
171875897234Sdrh 
171975897234Sdrh /*
172013449892Sdrh ** An instance of this structure contains information needed to generate
172113449892Sdrh ** code for a SELECT that contains aggregate functions.
172213449892Sdrh **
172313449892Sdrh ** If Expr.op==TK_AGG_COLUMN or TK_AGG_FUNCTION then Expr.pAggInfo is a
172413449892Sdrh ** pointer to this structure.  The Expr.iColumn field is the index in
172513449892Sdrh ** AggInfo.aCol[] or AggInfo.aFunc[] of information needed to generate
172613449892Sdrh ** code for that node.
172713449892Sdrh **
172813449892Sdrh ** AggInfo.pGroupBy and AggInfo.aFunc.pExpr point to fields within the
172913449892Sdrh ** original Select structure that describes the SELECT statement.  These
173013449892Sdrh ** fields do not need to be freed when deallocating the AggInfo structure.
173113449892Sdrh */
173213449892Sdrh struct AggInfo {
173313449892Sdrh   u8 directMode;          /* Direct rendering mode means take data directly
173413449892Sdrh                           ** from source tables rather than from accumulators */
173513449892Sdrh   u8 useSortingIdx;       /* In direct mode, reference the sorting index rather
173613449892Sdrh                           ** than the source table */
173713449892Sdrh   int sortingIdx;         /* Cursor number of the sorting index */
17385134d135Sdan   int sortingIdxPTab;     /* Cursor number of pseudo-table */
173913449892Sdrh   int nSortingColumn;     /* Number of columns in the sorting index */
17407e61d18eSdrh   int mnReg, mxReg;       /* Range of registers allocated for aCol and aFunc */
1741a451017dSdrh   ExprList *pGroupBy;     /* The group by clause */
174213449892Sdrh   struct AggInfo_col {    /* For each column used in source tables */
17430817d0dfSdanielk1977     Table *pTab;             /* Source table */
174413449892Sdrh     int iTable;              /* Cursor number of the source table */
174513449892Sdrh     int iColumn;             /* Column number within the source table */
174613449892Sdrh     int iSorterColumn;       /* Column number in the sorting index */
174713449892Sdrh     int iMem;                /* Memory location that acts as accumulator */
17485774b806Sdrh     Expr *pExpr;             /* The original expression */
174913449892Sdrh   } *aCol;
175013449892Sdrh   int nColumn;            /* Number of used entries in aCol[] */
175113449892Sdrh   int nAccumulator;       /* Number of columns that show through to the output.
175213449892Sdrh                           ** Additional columns are used only as parameters to
175313449892Sdrh                           ** aggregate functions */
175413449892Sdrh   struct AggInfo_func {   /* For each aggregate function */
175513449892Sdrh     Expr *pExpr;             /* Expression encoding the function */
175613449892Sdrh     FuncDef *pFunc;          /* The aggregate function implementation */
175713449892Sdrh     int iMem;                /* Memory location that acts as accumulator */
1758467bcf36Sshane     int iDistinct;           /* Ephemeral table used to enforce DISTINCT */
175913449892Sdrh   } *aFunc;
176013449892Sdrh   int nFunc;              /* Number of entries in aFunc[] */
176113449892Sdrh };
176213449892Sdrh 
176313449892Sdrh /*
17648677d308Sdrh ** The datatype ynVar is a signed integer, either 16-bit or 32-bit.
17658677d308Sdrh ** Usually it is 16-bits.  But if SQLITE_MAX_VARIABLE_NUMBER is greater
17668677d308Sdrh ** than 32767 we have to make it 32-bit.  16-bit is preferred because
17678677d308Sdrh ** it uses less memory in the Expr object, which is a big memory user
17688677d308Sdrh ** in systems with lots of prepared statements.  And few applications
17698677d308Sdrh ** need more than about 10 or 20 variables.  But some extreme users want
17708677d308Sdrh ** to have prepared statements with over 32767 variables, and for them
17718677d308Sdrh ** the option is available (at compile-time).
17728677d308Sdrh */
17738677d308Sdrh #if SQLITE_MAX_VARIABLE_NUMBER<=32767
1774481aa74eSdrh typedef i16 ynVar;
17758677d308Sdrh #else
17768677d308Sdrh typedef int ynVar;
17778677d308Sdrh #endif
17788677d308Sdrh 
17798677d308Sdrh /*
178075897234Sdrh ** Each node of an expression in the parse tree is an instance
178122f70c32Sdrh ** of this structure.
178222f70c32Sdrh **
178322f70c32Sdrh ** Expr.op is the opcode. The integer parser token codes are reused
178422f70c32Sdrh ** as opcodes here. For example, the parser defines TK_GE to be an integer
178522f70c32Sdrh ** code representing the ">=" operator. This same integer code is reused
178622f70c32Sdrh ** to represent the greater-than-or-equal-to operator in the expression
178722f70c32Sdrh ** tree.
178822f70c32Sdrh **
17896ab3a2ecSdanielk1977 ** If the expression is an SQL literal (TK_INTEGER, TK_FLOAT, TK_BLOB,
17906ab3a2ecSdanielk1977 ** or TK_STRING), then Expr.token contains the text of the SQL literal. If
17916ab3a2ecSdanielk1977 ** the expression is a variable (TK_VARIABLE), then Expr.token contains the
17926ab3a2ecSdanielk1977 ** variable name. Finally, if the expression is an SQL function (TK_FUNCTION),
17936ab3a2ecSdanielk1977 ** then Expr.token contains the name of the function.
179422f70c32Sdrh **
17956ab3a2ecSdanielk1977 ** Expr.pRight and Expr.pLeft are the left and right subexpressions of a
17966ab3a2ecSdanielk1977 ** binary operator. Either or both may be NULL.
17976ab3a2ecSdanielk1977 **
17986ab3a2ecSdanielk1977 ** Expr.x.pList is a list of arguments if the expression is an SQL function,
17996ab3a2ecSdanielk1977 ** a CASE expression or an IN expression of the form "<lhs> IN (<y>, <z>...)".
18006ab3a2ecSdanielk1977 ** Expr.x.pSelect is used if the expression is a sub-select or an expression of
18016ab3a2ecSdanielk1977 ** the form "<lhs> IN (SELECT ...)". If the EP_xIsSelect bit is set in the
18026ab3a2ecSdanielk1977 ** Expr.flags mask, then Expr.x.pSelect is valid. Otherwise, Expr.x.pList is
18036ab3a2ecSdanielk1977 ** valid.
180422f70c32Sdrh **
180522f70c32Sdrh ** An expression of the form ID or ID.ID refers to a column in a table.
180622f70c32Sdrh ** For such expressions, Expr.op is set to TK_COLUMN and Expr.iTable is
180722f70c32Sdrh ** the integer cursor number of a VDBE cursor pointing to that table and
180822f70c32Sdrh ** Expr.iColumn is the column number for the specific column.  If the
180922f70c32Sdrh ** expression is used as a result in an aggregate SELECT, then the
181022f70c32Sdrh ** value is also stored in the Expr.iAgg column in the aggregate so that
181122f70c32Sdrh ** it can be accessed after all aggregates are computed.
181222f70c32Sdrh **
18136ab3a2ecSdanielk1977 ** If the expression is an unbound variable marker (a question mark
18146ab3a2ecSdanielk1977 ** character '?' in the original SQL) then the Expr.iTable holds the index
18156ab3a2ecSdanielk1977 ** number for that variable.
181622f70c32Sdrh **
18171398ad36Sdrh ** If the expression is a subquery then Expr.iColumn holds an integer
18181398ad36Sdrh ** register number containing the result of the subquery.  If the
18191398ad36Sdrh ** subquery gives a constant result, then iTable is -1.  If the subquery
18201398ad36Sdrh ** gives a different answer at different times during statement processing
18211398ad36Sdrh ** then iTable is the address of a subroutine that computes the subquery.
18221398ad36Sdrh **
1823aee18ef8Sdanielk1977 ** If the Expr is of type OP_Column, and the table it is selecting from
1824aee18ef8Sdanielk1977 ** is a disk table or the "old.*" pseudo-table, then pTab points to the
1825aee18ef8Sdanielk1977 ** corresponding table definition.
18266ab3a2ecSdanielk1977 **
18276ab3a2ecSdanielk1977 ** ALLOCATION NOTES:
18286ab3a2ecSdanielk1977 **
182912ffee8cSdrh ** Expr objects can use a lot of memory space in database schema.  To
183012ffee8cSdrh ** help reduce memory requirements, sometimes an Expr object will be
183112ffee8cSdrh ** truncated.  And to reduce the number of memory allocations, sometimes
183212ffee8cSdrh ** two or more Expr objects will be stored in a single memory allocation,
183333e619fcSdrh ** together with Expr.zToken strings.
18346ab3a2ecSdanielk1977 **
1835b7916a78Sdrh ** If the EP_Reduced and EP_TokenOnly flags are set when
183612ffee8cSdrh ** an Expr object is truncated.  When EP_Reduced is set, then all
183712ffee8cSdrh ** the child Expr objects in the Expr.pLeft and Expr.pRight subtrees
183812ffee8cSdrh ** are contained within the same memory allocation.  Note, however, that
183912ffee8cSdrh ** the subtrees in Expr.x.pList or Expr.x.pSelect are always separately
184012ffee8cSdrh ** allocated, regardless of whether or not EP_Reduced is set.
184175897234Sdrh */
184275897234Sdrh struct Expr {
18431cc093c2Sdrh   u8 op;                 /* Operation performed by this node */
1844a9fd84b0Sdrh   char affinity;         /* The affinity of the column or 0 if not a column */
1845c5cd1249Sdrh   u32 flags;             /* Various flags.  EP_* See below */
184633e619fcSdrh   union {
1847b7916a78Sdrh     char *zToken;          /* Token value. Zero terminated and dequoted */
1848d50ffc41Sdrh     int iValue;            /* Non-negative integer value if EP_IntValue */
184933e619fcSdrh   } u;
18506ab3a2ecSdanielk1977 
18516ab3a2ecSdanielk1977   /* If the EP_TokenOnly flag is set in the Expr.flags mask, then no
18526ab3a2ecSdanielk1977   ** space is allocated for the fields below this point. An attempt to
18536ab3a2ecSdanielk1977   ** access them will result in a segfault or malfunction.
18546ab3a2ecSdanielk1977   *********************************************************************/
18556ab3a2ecSdanielk1977 
18566ab3a2ecSdanielk1977   Expr *pLeft;           /* Left subnode */
18576ab3a2ecSdanielk1977   Expr *pRight;          /* Right subnode */
18586ab3a2ecSdanielk1977   union {
1859c5cd1249Sdrh     ExprList *pList;     /* op = IN, EXISTS, SELECT, CASE, FUNCTION, BETWEEN */
1860c5cd1249Sdrh     Select *pSelect;     /* EP_xIsSelect and op = IN, EXISTS, SELECT */
18616ab3a2ecSdanielk1977   } x;
18626ab3a2ecSdanielk1977 
18636ab3a2ecSdanielk1977   /* If the EP_Reduced flag is set in the Expr.flags mask, then no
18646ab3a2ecSdanielk1977   ** space is allocated for the fields below this point. An attempt to
18656ab3a2ecSdanielk1977   ** access them will result in a segfault or malfunction.
18666ab3a2ecSdanielk1977   *********************************************************************/
18676ab3a2ecSdanielk1977 
18686ec65491Sdrh #if SQLITE_MAX_EXPR_DEPTH>0
18696ec65491Sdrh   int nHeight;           /* Height of the tree headed by this node */
18706ec65491Sdrh #endif
1871b7916a78Sdrh   int iTable;            /* TK_COLUMN: cursor number of table holding column
18722832ad42Sdan                          ** TK_REGISTER: register number
1873cca9f3d2Sdrh                          ** TK_TRIGGER: 1 -> new, 0 -> old
1874a4c3c87eSdrh                          ** EP_Unlikely:  1000 times likelihood */
18758677d308Sdrh   ynVar iColumn;         /* TK_COLUMN: column index.  -1 for rowid.
1876937d0deaSdan                          ** TK_VARIABLE: variable number (always >= 1). */
1877b7916a78Sdrh   i16 iAgg;              /* Which entry in pAggInfo->aCol[] or ->aFunc[] */
1878b7916a78Sdrh   i16 iRightJoinTable;   /* If EP_FromJoin, the right table of the join */
1879030796dfSdrh   u8 op2;                /* TK_REGISTER: original value of Expr.op
1880030796dfSdrh                          ** TK_COLUMN: the value of p5 for OP_Column
1881030796dfSdrh                          ** TK_AGG_FUNCTION: nesting depth */
188213449892Sdrh   AggInfo *pAggInfo;     /* Used by TK_AGG_COLUMN and TK_AGG_FUNCTION */
18837d10d5a6Sdrh   Table *pTab;           /* Table for TK_COLUMN expressions. */
188475897234Sdrh };
188575897234Sdrh 
188675897234Sdrh /*
18871f16230bSdrh ** The following are the meanings of bits in the Expr.flags field.
18881f16230bSdrh */
1889c5cd1249Sdrh #define EP_FromJoin  0x000001 /* Originated in ON or USING clause of a join */
1890c5cd1249Sdrh #define EP_Agg       0x000002 /* Contains one or more aggregate functions */
1891c5cd1249Sdrh #define EP_Resolved  0x000004 /* IDs have been resolved to COLUMNs */
1892c5cd1249Sdrh #define EP_Error     0x000008 /* Expression contains one or more errors */
1893c5cd1249Sdrh #define EP_Distinct  0x000010 /* Aggregate function with DISTINCT keyword */
1894c5cd1249Sdrh #define EP_VarSelect 0x000020 /* pSelect is correlated, not constant */
1895c5cd1249Sdrh #define EP_DblQuoted 0x000040 /* token.z was originally in "..." */
1896c5cd1249Sdrh #define EP_InfixFunc 0x000080 /* True for an infix function: LIKE, GLOB, etc */
1897fbb24d10Sdrh #define EP_Collate   0x000100 /* Tree contains a TK_COLLATE operator */
1898fbb24d10Sdrh #define EP_Generic   0x000200 /* Ignore COLLATE or affinity on this tree */
1899c5cd1249Sdrh #define EP_IntValue  0x000400 /* Integer value contained in u.iValue */
1900c5cd1249Sdrh #define EP_xIsSelect 0x000800 /* x.pSelect is valid (otherwise x.pList is) */
1901a4c3c87eSdrh #define EP_Skip      0x001000 /* COLLATE, AS, or UNLIKELY */
1902c5cd1249Sdrh #define EP_Reduced   0x002000 /* Expr struct EXPR_REDUCEDSIZE bytes only */
1903c5cd1249Sdrh #define EP_TokenOnly 0x004000 /* Expr struct EXPR_TOKENONLYSIZE bytes only */
1904c5cd1249Sdrh #define EP_Static    0x008000 /* Held in memory not obtained from malloc() */
1905c5cd1249Sdrh #define EP_MemToken  0x010000 /* Need to sqlite3DbFree() Expr.zToken */
1906ebb6a65dSdrh #define EP_NoReduce  0x020000 /* Cannot EXPRDUP_REDUCE this Expr */
1907a4c3c87eSdrh #define EP_Unlikely  0x040000 /* unlikely() or likelihood() function */
1908b1fba286Sdrh #define EP_Constant  0x080000 /* Node is a constant */
190933e619fcSdrh 
191033e619fcSdrh /*
19111f16230bSdrh ** These macros can be used to test, set, or clear bits in the
19121f16230bSdrh ** Expr.flags field.
19131f16230bSdrh */
1914c5cd1249Sdrh #define ExprHasProperty(E,P)     (((E)->flags&(P))!=0)
1915c5cd1249Sdrh #define ExprHasAllProperty(E,P)  (((E)->flags&(P))==(P))
19161f16230bSdrh #define ExprSetProperty(E,P)     (E)->flags|=(P)
19171f16230bSdrh #define ExprClearProperty(E,P)   (E)->flags&=~(P)
19181f16230bSdrh 
1919ebb6a65dSdrh /* The ExprSetVVAProperty() macro is used for Verification, Validation,
1920ebb6a65dSdrh ** and Accreditation only.  It works like ExprSetProperty() during VVA
1921ebb6a65dSdrh ** processes but is a no-op for delivery.
1922ebb6a65dSdrh */
1923ebb6a65dSdrh #ifdef SQLITE_DEBUG
1924ebb6a65dSdrh # define ExprSetVVAProperty(E,P)  (E)->flags|=(P)
1925ebb6a65dSdrh #else
1926ebb6a65dSdrh # define ExprSetVVAProperty(E,P)
1927ebb6a65dSdrh #endif
1928ebb6a65dSdrh 
19291f16230bSdrh /*
19306ab3a2ecSdanielk1977 ** Macros to determine the number of bytes required by a normal Expr
19316ab3a2ecSdanielk1977 ** struct, an Expr struct with the EP_Reduced flag set in Expr.flags
19326ab3a2ecSdanielk1977 ** and an Expr struct with the EP_TokenOnly flag set.
19336ab3a2ecSdanielk1977 */
193412ffee8cSdrh #define EXPR_FULLSIZE           sizeof(Expr)           /* Full size */
193512ffee8cSdrh #define EXPR_REDUCEDSIZE        offsetof(Expr,iTable)  /* Common features */
1936b7916a78Sdrh #define EXPR_TOKENONLYSIZE      offsetof(Expr,pLeft)   /* Fewer features */
19376ab3a2ecSdanielk1977 
19386ab3a2ecSdanielk1977 /*
19396ab3a2ecSdanielk1977 ** Flags passed to the sqlite3ExprDup() function. See the header comment
19406ab3a2ecSdanielk1977 ** above sqlite3ExprDup() for details.
19416ab3a2ecSdanielk1977 */
194212ffee8cSdrh #define EXPRDUP_REDUCE         0x0001  /* Used reduced-size Expr nodes */
19436ab3a2ecSdanielk1977 
19446ab3a2ecSdanielk1977 /*
194575897234Sdrh ** A list of expressions.  Each expression may optionally have a
194675897234Sdrh ** name.  An expr/name combination can be used in several ways, such
194775897234Sdrh ** as the list of "expr AS ID" fields following a "SELECT" or in the
194875897234Sdrh ** list of "ID = expr" items in an UPDATE.  A list of expressions can
1949ad3cab52Sdrh ** also be used as the argument to a function, in which case the a.zName
195075897234Sdrh ** field is not used.
19510dde4739Sdrh **
19520dde4739Sdrh ** By default the Expr.zSpan field holds a human-readable description of
19530dde4739Sdrh ** the expression that is used in the generation of error messages and
19540dde4739Sdrh ** column labels.  In this case, Expr.zSpan is typically the text of a
19550dde4739Sdrh ** column expression as it exists in a SELECT statement.  However, if
19560dde4739Sdrh ** the bSpanIsTab flag is set, then zSpan is overloaded to mean the name
19573e3f1a5bSdrh ** of the result column in the form: DATABASE.TABLE.COLUMN.  This later
19583e3f1a5bSdrh ** form is used for name resolution with nested FROM clauses.
195975897234Sdrh */
196075897234Sdrh struct ExprList {
196175897234Sdrh   int nExpr;             /* Number of expressions on the list */
1962d872bb18Sdrh   struct ExprList_item { /* For each expression in the list */
196375897234Sdrh     Expr *pExpr;            /* The list of expressions */
196475897234Sdrh     char *zName;            /* Token associated with this expression */
1965b7916a78Sdrh     char *zSpan;            /* Original text of the expression */
19668e2ca029Sdrh     u8 sortOrder;           /* 1 for DESC or 0 for ASC */
19670dde4739Sdrh     unsigned done :1;       /* A flag to indicate when processing is finished */
19683e3f1a5bSdrh     unsigned bSpanIsTab :1; /* zSpan holds DB.TABLE.COLUMN */
1969d673cddaSdrh     unsigned reusable :1;   /* Constant expression is reusable */
1970c2acc4e4Sdrh     union {
1971c2acc4e4Sdrh       struct {
19724b3ac73cSdrh         u16 iOrderByCol;      /* For ORDER BY, column number in result set */
19738b213899Sdrh         u16 iAlias;           /* Index into Parse.aAlias[] for zName */
1974c2acc4e4Sdrh       } x;
1975c2acc4e4Sdrh       int iConstExprReg;      /* Register in which Expr value is cached */
1976c2acc4e4Sdrh     } u;
1977d872bb18Sdrh   } *a;                  /* Alloc a power of two greater or equal to nExpr */
197875897234Sdrh };
197975897234Sdrh 
198075897234Sdrh /*
1981b7916a78Sdrh ** An instance of this structure is used by the parser to record both
1982b7916a78Sdrh ** the parse tree for an expression and the span of input text for an
1983b7916a78Sdrh ** expression.
1984b7916a78Sdrh */
1985b7916a78Sdrh struct ExprSpan {
1986b7916a78Sdrh   Expr *pExpr;          /* The expression parse tree */
1987b7916a78Sdrh   const char *zStart;   /* First character of input text */
1988b7916a78Sdrh   const char *zEnd;     /* One character past the end of input text */
1989b7916a78Sdrh };
1990b7916a78Sdrh 
1991b7916a78Sdrh /*
1992ad3cab52Sdrh ** An instance of this structure can hold a simple list of identifiers,
1993ad3cab52Sdrh ** such as the list "a,b,c" in the following statements:
1994ad3cab52Sdrh **
1995ad3cab52Sdrh **      INSERT INTO t(a,b,c) VALUES ...;
1996ad3cab52Sdrh **      CREATE INDEX idx ON t(a,b,c);
1997ad3cab52Sdrh **      CREATE TRIGGER trig BEFORE UPDATE ON t(a,b,c) ...;
1998ad3cab52Sdrh **
1999ad3cab52Sdrh ** The IdList.a.idx field is used when the IdList represents the list of
2000ad3cab52Sdrh ** column names after a table name in an INSERT statement.  In the statement
2001ad3cab52Sdrh **
2002ad3cab52Sdrh **     INSERT INTO t(a,b,c) ...
2003ad3cab52Sdrh **
2004ad3cab52Sdrh ** If "a" is the k-th column of table "t", then IdList.a[0].idx==k.
200575897234Sdrh */
200675897234Sdrh struct IdList {
20076d4abfbeSdrh   struct IdList_item {
2008ad3cab52Sdrh     char *zName;      /* Name of the identifier */
2009967e8b73Sdrh     int idx;          /* Index in some Table.aCol[] of a column named zName */
2010ad3cab52Sdrh   } *a;
201113449892Sdrh   int nId;         /* Number of identifiers on the list */
2012ad3cab52Sdrh };
2013ad3cab52Sdrh 
2014ad3cab52Sdrh /*
201551669863Sdrh ** The bitmask datatype defined below is used for various optimizations.
2016ca83ac51Sdrh **
2017ca83ac51Sdrh ** Changing this from a 64-bit to a 32-bit type limits the number of
2018ca83ac51Sdrh ** tables in a join to 32 instead of 64.  But it also reduces the size
2019ca83ac51Sdrh ** of the library by 738 bytes on ix86.
202051669863Sdrh */
2021ca83ac51Sdrh typedef u64 Bitmask;
202251669863Sdrh 
202351669863Sdrh /*
202400e13613Sdanielk1977 ** The number of bits in a Bitmask.  "BMS" means "BitMask Size".
202500e13613Sdanielk1977 */
202600e13613Sdanielk1977 #define BMS  ((int)(sizeof(Bitmask)*8))
202700e13613Sdanielk1977 
202800e13613Sdanielk1977 /*
20297699d1c4Sdrh ** A bit in a Bitmask
20307699d1c4Sdrh */
20317699d1c4Sdrh #define MASKBIT(n)   (((Bitmask)1)<<(n))
2032693e6719Sdrh #define MASKBIT32(n) (((unsigned int)1)<<(n))
20337699d1c4Sdrh 
20347699d1c4Sdrh /*
2035ad3cab52Sdrh ** The following structure describes the FROM clause of a SELECT statement.
2036ad3cab52Sdrh ** Each table or subquery in the FROM clause is a separate element of
2037ad3cab52Sdrh ** the SrcList.a[] array.
2038d24cc427Sdrh **
2039d24cc427Sdrh ** With the addition of multiple database support, the following structure
2040d24cc427Sdrh ** can also be used to describe a particular table such as the table that
2041d24cc427Sdrh ** is modified by an INSERT, DELETE, or UPDATE statement.  In standard SQL,
2042d24cc427Sdrh ** such a table must be a simple name: ID.  But in SQLite, the table can
2043d24cc427Sdrh ** now be identified by a database name, a dot, then the table name: ID.ID.
2044c49de5d9Sdrh **
2045c49de5d9Sdrh ** The jointype starts out showing the join type between the current table
2046c49de5d9Sdrh ** and the next table on the list.  The parser builds the list this way.
2047c49de5d9Sdrh ** But sqlite3SrcListShiftJoinType() later shifts the jointypes so that each
2048c49de5d9Sdrh ** jointype expresses the join between the table and the previous table.
20492a6a7eebSdrh **
20502a6a7eebSdrh ** In the colUsed field, the high-order bit (bit 63) is set if the table
20512a6a7eebSdrh ** contains more than 63 columns and the 64-th or later column is used.
2052ad3cab52Sdrh */
2053ad3cab52Sdrh struct SrcList {
20546d1626ebSdrh   int nSrc;        /* Number of tables or subqueries in the FROM clause */
20556d1626ebSdrh   u32 nAlloc;      /* Number of entries allocated in a[] below */
2056ad3cab52Sdrh   struct SrcList_item {
205741fb5cd1Sdan     Schema *pSchema;  /* Schema to which this item is fixed */
2058113088ecSdrh     char *zDatabase;  /* Name of database holding this table */
2059ad3cab52Sdrh     char *zName;      /* Name of the table */
2060ad3cab52Sdrh     char *zAlias;     /* The "B" part of a "A AS B" phrase.  zName is the "A" */
2061daffd0e5Sdrh     Table *pTab;      /* An SQL table corresponding to zName */
2062daffd0e5Sdrh     Select *pSelect;  /* A SELECT statement used in place of a table name */
20635b6a9ed4Sdrh     int addrFillSub;  /* Address of subroutine to manifest a subquery */
20645b6a9ed4Sdrh     int regReturn;    /* Register holding return address of addrFillSub */
20655f612295Sdrh     int regResult;    /* Registers holding results of a co-routine */
2066c49de5d9Sdrh     u8 jointype;      /* Type of join between this able and the previous */
206721172c4cSdrh     unsigned notIndexed :1;    /* True if there is a NOT INDEXED clause */
206821172c4cSdrh     unsigned isCorrelated :1;  /* True if sub-query is correlated */
206921172c4cSdrh     unsigned viaCoroutine :1;  /* Implemented as a co-routine */
2070f43fe6e9Sdan     unsigned isRecursive :1;   /* True for recursive reference in WITH */
2071ce7e189dSdan #ifndef SQLITE_OMIT_EXPLAIN
2072ce7e189dSdan     u8 iSelectId;     /* If pSelect!=0, the id of the sub-select in EQP */
2073ce7e189dSdan #endif
2074e68fbe79Sdrh     int iCursor;      /* The VDBE cursor number used to access this table */
2075ad3cab52Sdrh     Expr *pOn;        /* The ON clause of a join */
2076ad3cab52Sdrh     IdList *pUsing;   /* The USING clause of a join */
2077cd38d520Sdanielk1977     Bitmask colUsed;  /* Bit N (1<<N) set if column N of pTab is used */
207885574e31Sdanielk1977     char *zIndex;     /* Identifier from "INDEXED BY <zIndex>" clause */
207985574e31Sdanielk1977     Index *pIndex;    /* Index structure corresponding to zIndex, if any */
2080113088ecSdrh   } a[1];             /* One entry for each identifier on the list */
208175897234Sdrh };
208275897234Sdrh 
208375897234Sdrh /*
208401f3f253Sdrh ** Permitted values of the SrcList.a.jointype field
208501f3f253Sdrh */
208601f3f253Sdrh #define JT_INNER     0x0001    /* Any kind of inner or cross join */
20873dec223cSdrh #define JT_CROSS     0x0002    /* Explicit use of the CROSS keyword */
20883dec223cSdrh #define JT_NATURAL   0x0004    /* True for a "natural" join */
20893dec223cSdrh #define JT_LEFT      0x0008    /* Left outer join */
20903dec223cSdrh #define JT_RIGHT     0x0010    /* Right outer join */
20913dec223cSdrh #define JT_OUTER     0x0020    /* The "OUTER" keyword is present */
20923dec223cSdrh #define JT_ERROR     0x0040    /* unknown or unsupported join type */
209301f3f253Sdrh 
2094111a6a7dSdrh 
2095111a6a7dSdrh /*
2096336a5300Sdrh ** Flags appropriate for the wctrlFlags parameter of sqlite3WhereBegin()
2097336a5300Sdrh ** and the WhereInfo.wctrlFlags member.
209808c88eb0Sdrh */
20996df2acd2Sdrh #define WHERE_ORDERBY_NORMAL   0x0000 /* No-op */
21006df2acd2Sdrh #define WHERE_ORDERBY_MIN      0x0001 /* ORDER BY processing for min() func */
21016df2acd2Sdrh #define WHERE_ORDERBY_MAX      0x0002 /* ORDER BY processing for max() func */
21026df2acd2Sdrh #define WHERE_ONEPASS_DESIRED  0x0004 /* Want to do one-pass UPDATE/DELETE */
2103336a5300Sdrh #define WHERE_DUPLICATES_OK    0x0008 /* Ok to return a row more than once */
21049ef61f4fSdrh #define WHERE_OMIT_OPEN_CLOSE  0x0010 /* Table cursors are already open */
21059ef61f4fSdrh #define WHERE_FORCE_TABLE      0x0020 /* Do not use an index-only search */
21069ef61f4fSdrh #define WHERE_ONETABLE_ONLY    0x0040 /* Only code the 1st table in pTabList */
21079ef61f4fSdrh #define WHERE_AND_ONLY         0x0080 /* Don't use indices for OR terms */
2108319f677dSdrh #define WHERE_GROUPBY          0x0100 /* pOrderBy is really a GROUP BY */
21094f402f26Sdrh #define WHERE_DISTINCTBY       0x0200 /* pOrderby is really a DISTINCT clause */
21106457a353Sdrh #define WHERE_WANT_DISTINCT    0x0400 /* All output needs to be distinct */
2111a9d1ccb9Sdanielk1977 
21124f402f26Sdrh /* Allowed return values from sqlite3WhereIsDistinct()
21134f402f26Sdrh */
2114e8e4af76Sdrh #define WHERE_DISTINCT_NOOP      0  /* DISTINCT keyword not used */
2115ae651d61Sdrh #define WHERE_DISTINCT_UNIQUE    1  /* No duplicates */
2116ae651d61Sdrh #define WHERE_DISTINCT_ORDERED   2  /* All duplicates are adjacent */
2117e8e4af76Sdrh #define WHERE_DISTINCT_UNORDERED 3  /* Duplicates are scattered */
211838cc40c2Sdan 
211975897234Sdrh /*
2120b3bce662Sdanielk1977 ** A NameContext defines a context in which to resolve table and column
2121b3bce662Sdanielk1977 ** names.  The context consists of a list of tables (the pSrcList) field and
2122b3bce662Sdanielk1977 ** a list of named expression (pEList).  The named expression list may
2123b3bce662Sdanielk1977 ** be NULL.  The pSrc corresponds to the FROM clause of a SELECT or
2124b3bce662Sdanielk1977 ** to the table being operated on by INSERT, UPDATE, or DELETE.  The
2125b3bce662Sdanielk1977 ** pEList corresponds to the result set of a SELECT and is NULL for
2126b3bce662Sdanielk1977 ** other statements.
2127b3bce662Sdanielk1977 **
2128b3bce662Sdanielk1977 ** NameContexts can be nested.  When resolving names, the inner-most
2129b3bce662Sdanielk1977 ** context is searched first.  If no match is found, the next outer
2130b3bce662Sdanielk1977 ** context is checked.  If there is still no match, the next context
2131b3bce662Sdanielk1977 ** is checked.  This process continues until either a match is found
2132b3bce662Sdanielk1977 ** or all contexts are check.  When a match is found, the nRef member of
2133b3bce662Sdanielk1977 ** the context containing the match is incremented.
2134b3bce662Sdanielk1977 **
2135b3bce662Sdanielk1977 ** Each subquery gets a new NameContext.  The pNext field points to the
2136b3bce662Sdanielk1977 ** NameContext in the parent query.  Thus the process of scanning the
2137b3bce662Sdanielk1977 ** NameContext list corresponds to searching through successively outer
2138b3bce662Sdanielk1977 ** subqueries looking for a match.
2139b3bce662Sdanielk1977 */
2140b3bce662Sdanielk1977 struct NameContext {
2141b3bce662Sdanielk1977   Parse *pParse;       /* The parser */
2142b3bce662Sdanielk1977   SrcList *pSrcList;   /* One or more tables used to resolve names */
214326080d92Sdrh   ExprList *pEList;    /* Optional list of result-set columns */
214413449892Sdrh   AggInfo *pAggInfo;   /* Information about aggregates at this level */
2145b3bce662Sdanielk1977   NameContext *pNext;  /* Next outer name context.  NULL for outermost */
2146a51009b2Sdrh   int nRef;            /* Number of names resolved by this context */
2147a51009b2Sdrh   int nErr;            /* Number of errors encountered while resolving names */
2148a51009b2Sdrh   u8 ncFlags;          /* Zero or more NC_* flags defined below */
2149b3bce662Sdanielk1977 };
2150b3bce662Sdanielk1977 
2151b3bce662Sdanielk1977 /*
2152a51009b2Sdrh ** Allowed values for the NameContext, ncFlags field.
2153a51009b2Sdrh */
2154a51009b2Sdrh #define NC_AllowAgg  0x01    /* Aggregate functions are allowed here */
2155a51009b2Sdrh #define NC_HasAgg    0x02    /* One or more aggregate functions seen */
2156a51009b2Sdrh #define NC_IsCheck   0x04    /* True if resolving names in a CHECK constraint */
21573a8c4be7Sdrh #define NC_InAggFunc 0x08    /* True if analyzing arguments to an agg func */
2158e35463b3Sdrh #define NC_PartIdx   0x10    /* True if resolving a partial index WHERE */
2159a51009b2Sdrh 
2160a51009b2Sdrh /*
21619bb61fe7Sdrh ** An instance of the following structure contains all information
21629bb61fe7Sdrh ** needed to generate code for a single SELECT statement.
2163a76b5dfcSdrh **
2164d11d382cSdrh ** nLimit is set to -1 if there is no LIMIT clause.  nOffset is set to 0.
2165d11d382cSdrh ** If there is a LIMIT clause, the parser sets nLimit to the value of the
2166d11d382cSdrh ** limit and nOffset to the value of the offset (or 0 if there is not
2167d11d382cSdrh ** offset).  But later on, nLimit and nOffset become the memory locations
2168d11d382cSdrh ** in the VDBE that record the limit and offset counters.
21690342b1f5Sdrh **
2170b9bb7c18Sdrh ** addrOpenEphm[] entries contain the address of OP_OpenEphemeral opcodes.
21710342b1f5Sdrh ** These addresses must be stored so that we can go back and fill in
217266a5167bSdrh ** the P4_KEYINFO and P2 parameters later.  Neither the KeyInfo nor
21730342b1f5Sdrh ** the number of columns in P2 can be computed at the same time
2174b9bb7c18Sdrh ** as the OP_OpenEphm instruction is coded because not
21750342b1f5Sdrh ** enough information about the compound query is known at that point.
2176b9bb7c18Sdrh ** The KeyInfo for addrOpenTran[0] and [1] contains collating sequences
21772c79733fSdrh ** for the result set.  The KeyInfo for addrOpenEphm[2] contains collating
21780342b1f5Sdrh ** sequences for the ORDER BY clause.
21799bb61fe7Sdrh */
21809bb61fe7Sdrh struct Select {
21819bb61fe7Sdrh   ExprList *pEList;      /* The fields of the result */
21827b58daeaSdrh   u8 op;                 /* One of: TK_UNION TK_ALL TK_INTERSECT TK_EXCEPT */
21837d10d5a6Sdrh   u16 selFlags;          /* Various SF_* values */
2184a451017dSdrh   int iLimit, iOffset;   /* Memory registers holding LIMIT & OFFSET counters */
2185079a3072Sdrh   int addrOpenEphm[2];   /* OP_OpenEphem opcodes related to this select */
2186c63367efSdrh   u64 nSelectRow;        /* Estimated number of result rows */
2187ad3cab52Sdrh   SrcList *pSrc;         /* The FROM clause */
21889bb61fe7Sdrh   Expr *pWhere;          /* The WHERE clause */
21899bb61fe7Sdrh   ExprList *pGroupBy;    /* The GROUP BY clause */
21909bb61fe7Sdrh   Expr *pHaving;         /* The HAVING clause */
21919bb61fe7Sdrh   ExprList *pOrderBy;    /* The ORDER BY clause */
2192967e8b73Sdrh   Select *pPrior;        /* Prior select in a compound select statement */
21931e281291Sdrh   Select *pNext;         /* Next select to the left in a compound */
2194a2dc3b1aSdanielk1977   Expr *pLimit;          /* LIMIT expression. NULL means not used. */
2195a2dc3b1aSdanielk1977   Expr *pOffset;         /* OFFSET expression. NULL means not used. */
21964e9119d9Sdan   With *pWith;           /* WITH clause attached to this select. Or NULL. */
21979bb61fe7Sdrh };
21989bb61fe7Sdrh 
21999bb61fe7Sdrh /*
22007d10d5a6Sdrh ** Allowed values for Select.selFlags.  The "SF" prefix stands for
22017d10d5a6Sdrh ** "Select Flag".
22027d10d5a6Sdrh */
220321172c4cSdrh #define SF_Distinct        0x0001  /* Output should be DISTINCT */
220421172c4cSdrh #define SF_Resolved        0x0002  /* Identifiers have been resolved */
220521172c4cSdrh #define SF_Aggregate       0x0004  /* Contains aggregate functions */
220621172c4cSdrh #define SF_UsesEphemeral   0x0008  /* Uses the OpenEphemeral opcode */
220721172c4cSdrh #define SF_Expanded        0x0010  /* sqlite3SelectExpand() called on this */
220821172c4cSdrh #define SF_HasTypeInfo     0x0020  /* FROM subqueries have Table metadata */
2209079a3072Sdrh                     /*     0x0040  NOT USED */
221021172c4cSdrh #define SF_Values          0x0080  /* Synthesized from VALUES clause */
2211079a3072Sdrh                     /*     0x0100  NOT USED */
2212832ee3d4Sdrh #define SF_NestedFrom      0x0200  /* Part of a parenthesized FROM clause */
2213d58d3278Sdrh #define SF_MaybeConvert    0x0400  /* Need convertCompoundSelectToSubquery() */
2214eae73fbfSdan #define SF_Recursive       0x0800  /* The recursive part of a recursive CTE */
2215d227a291Sdrh #define SF_Compound        0x1000  /* Part of a compound query */
22167d10d5a6Sdrh 
22177d10d5a6Sdrh 
22187d10d5a6Sdrh /*
2219340309fdSdrh ** The results of a SELECT can be distributed in several ways, as defined
2220340309fdSdrh ** by one of the following macros.  The "SRT" prefix means "SELECT Result
2221340309fdSdrh ** Type".
2222340309fdSdrh **
2223340309fdSdrh **     SRT_Union       Store results as a key in a temporary index
2224340309fdSdrh **                     identified by pDest->iSDParm.
2225340309fdSdrh **
2226340309fdSdrh **     SRT_Except      Remove results from the temporary index pDest->iSDParm.
2227340309fdSdrh **
2228340309fdSdrh **     SRT_Exists      Store a 1 in memory cell pDest->iSDParm if the result
2229340309fdSdrh **                     set is not empty.
2230340309fdSdrh **
2231340309fdSdrh **     SRT_Discard     Throw the results away.  This is used by SELECT
2232340309fdSdrh **                     statements within triggers whose only purpose is
2233340309fdSdrh **                     the side-effects of functions.
2234340309fdSdrh **
2235340309fdSdrh ** All of the above are free to ignore their ORDER BY clause. Those that
2236340309fdSdrh ** follow must honor the ORDER BY clause.
2237340309fdSdrh **
2238340309fdSdrh **     SRT_Output      Generate a row of output (using the OP_ResultRow
2239340309fdSdrh **                     opcode) for each row in the result set.
2240340309fdSdrh **
2241340309fdSdrh **     SRT_Mem         Only valid if the result is a single column.
2242340309fdSdrh **                     Store the first column of the first result row
2243340309fdSdrh **                     in register pDest->iSDParm then abandon the rest
2244340309fdSdrh **                     of the query.  This destination implies "LIMIT 1".
2245340309fdSdrh **
2246340309fdSdrh **     SRT_Set         The result must be a single column.  Store each
2247340309fdSdrh **                     row of result as the key in table pDest->iSDParm.
2248340309fdSdrh **                     Apply the affinity pDest->affSdst before storing
2249340309fdSdrh **                     results.  Used to implement "IN (SELECT ...)".
2250340309fdSdrh **
2251340309fdSdrh **     SRT_EphemTab    Create an temporary table pDest->iSDParm and store
2252340309fdSdrh **                     the result there. The cursor is left open after
2253340309fdSdrh **                     returning.  This is like SRT_Table except that
2254340309fdSdrh **                     this destination uses OP_OpenEphemeral to create
2255340309fdSdrh **                     the table first.
2256340309fdSdrh **
2257340309fdSdrh **     SRT_Coroutine   Generate a co-routine that returns a new row of
2258340309fdSdrh **                     results each time it is invoked.  The entry point
2259340309fdSdrh **                     of the co-routine is stored in register pDest->iSDParm
2260340309fdSdrh **                     and the result row is stored in pDest->nDest registers
2261340309fdSdrh **                     starting with pDest->iSdst.
2262340309fdSdrh **
2263781def29Sdrh **     SRT_Table       Store results in temporary table pDest->iSDParm.
22648e1ee88cSdrh **     SRT_Fifo        This is like SRT_EphemTab except that the table
22658e1ee88cSdrh **                     is assumed to already be open.  SRT_Fifo has
22668e1ee88cSdrh **                     the additional property of being able to ignore
22678e1ee88cSdrh **                     the ORDER BY clause.
2268781def29Sdrh **
22698e1ee88cSdrh **     SRT_DistFifo    Store results in a temporary table pDest->iSDParm.
2270340309fdSdrh **                     But also use temporary table pDest->iSDParm+1 as
2271340309fdSdrh **                     a record of all prior results and ignore any duplicate
22728e1ee88cSdrh **                     rows.  Name means:  "Distinct Fifo".
2273781def29Sdrh **
2274781def29Sdrh **     SRT_Queue       Store results in priority queue pDest->iSDParm (really
2275781def29Sdrh **                     an index).  Append a sequence number so that all entries
2276781def29Sdrh **                     are distinct.
2277781def29Sdrh **
2278781def29Sdrh **     SRT_DistQueue   Store results in priority queue pDest->iSDParm only if
2279781def29Sdrh **                     the same record has never been stored before.  The
2280781def29Sdrh **                     index at pDest->iSDParm+1 hold all prior stores.
2281fef5208cSdrh */
228213449892Sdrh #define SRT_Union        1  /* Store result as keys in an index */
228313449892Sdrh #define SRT_Except       2  /* Remove result from a UNION index */
22849ed1dfa8Sdanielk1977 #define SRT_Exists       3  /* Store 1 if the result is not empty */
22859ed1dfa8Sdanielk1977 #define SRT_Discard      4  /* Do not save the results anywhere */
22868e1ee88cSdrh #define SRT_Fifo         5  /* Store result as data with an automatic rowid */
22878e1ee88cSdrh #define SRT_DistFifo     6  /* Like SRT_Fifo, but unique results only */
22888e1ee88cSdrh #define SRT_Queue        7  /* Store result in an queue */
22898e1ee88cSdrh #define SRT_DistQueue    8  /* Like SRT_Queue, but unique results only */
2290fef5208cSdrh 
229113449892Sdrh /* The ORDER BY clause is ignored for all of the above */
22928e1ee88cSdrh #define IgnorableOrderby(X) ((X->eDest)<=SRT_DistQueue)
229313449892Sdrh 
22948e1ee88cSdrh #define SRT_Output       9  /* Output each row of result */
22958e1ee88cSdrh #define SRT_Mem         10  /* Store result in a memory cell */
22968e1ee88cSdrh #define SRT_Set         11  /* Store results as keys in an index */
22978e1ee88cSdrh #define SRT_EphemTab    12  /* Create transient tab and store like SRT_Table */
22988e1ee88cSdrh #define SRT_Coroutine   13  /* Generate a single row of result */
22998e1ee88cSdrh #define SRT_Table       14  /* Store result as data with an automatic rowid */
23002282792aSdrh 
23012282792aSdrh /*
2302634d81deSdrh ** An instance of this object describes where to put of the results of
2303634d81deSdrh ** a SELECT statement.
23046c8c8ce0Sdanielk1977 */
23056c8c8ce0Sdanielk1977 struct SelectDest {
2306634d81deSdrh   u8 eDest;            /* How to dispose of the results.  On of SRT_* above. */
2307634d81deSdrh   char affSdst;        /* Affinity used when eDest==SRT_Set */
23082b596da8Sdrh   int iSDParm;         /* A parameter used by the eDest disposal method */
23092b596da8Sdrh   int iSdst;           /* Base register where results are written */
23102b596da8Sdrh   int nSdst;           /* Number of registers allocated */
2311fe1c6bb9Sdrh   ExprList *pOrderBy;  /* Key columns for SRT_Queue and SRT_DistQueue */
23126c8c8ce0Sdanielk1977 };
23136c8c8ce0Sdanielk1977 
23146c8c8ce0Sdanielk1977 /*
23150b9f50d8Sdrh ** During code generation of statements that do inserts into AUTOINCREMENT
23160b9f50d8Sdrh ** tables, the following information is attached to the Table.u.autoInc.p
23170b9f50d8Sdrh ** pointer of each autoincrement table to record some side information that
23180b9f50d8Sdrh ** the code generator needs.  We have to keep per-table autoincrement
23190b9f50d8Sdrh ** information in case inserts are down within triggers.  Triggers do not
23200b9f50d8Sdrh ** normally coordinate their activities, but we do need to coordinate the
23210b9f50d8Sdrh ** loading and saving of autoincrement information.
23220b9f50d8Sdrh */
23230b9f50d8Sdrh struct AutoincInfo {
23240b9f50d8Sdrh   AutoincInfo *pNext;   /* Next info block in a list of them all */
23250b9f50d8Sdrh   Table *pTab;          /* Table this info block refers to */
23260b9f50d8Sdrh   int iDb;              /* Index in sqlite3.aDb[] of database holding pTab */
23270b9f50d8Sdrh   int regCtr;           /* Memory register holding the rowid counter */
23280b9f50d8Sdrh };
23290b9f50d8Sdrh 
23300b9f50d8Sdrh /*
2331ceea3321Sdrh ** Size of the column cache
2332ceea3321Sdrh */
2333ceea3321Sdrh #ifndef SQLITE_N_COLCACHE
2334ceea3321Sdrh # define SQLITE_N_COLCACHE 10
2335ceea3321Sdrh #endif
2336ceea3321Sdrh 
23372832ad42Sdan /*
23382832ad42Sdan ** At least one instance of the following structure is created for each
23392832ad42Sdan ** trigger that may be fired while parsing an INSERT, UPDATE or DELETE
23402832ad42Sdan ** statement. All such objects are stored in the linked list headed at
23412832ad42Sdan ** Parse.pTriggerPrg and deleted once statement compilation has been
23422832ad42Sdan ** completed.
23432832ad42Sdan **
23442832ad42Sdan ** A Vdbe sub-program that implements the body and WHEN clause of trigger
23452832ad42Sdan ** TriggerPrg.pTrigger, assuming a default ON CONFLICT clause of
23462832ad42Sdan ** TriggerPrg.orconf, is stored in the TriggerPrg.pProgram variable.
23472832ad42Sdan ** The Parse.pTriggerPrg list never contains two entries with the same
23482832ad42Sdan ** values for both pTrigger and orconf.
234965a7cd16Sdan **
2350bb5f168fSdan ** The TriggerPrg.aColmask[0] variable is set to a mask of old.* columns
235165a7cd16Sdan ** accessed (or set to 0 for triggers fired as a result of INSERT
2352bb5f168fSdan ** statements). Similarly, the TriggerPrg.aColmask[1] variable is set to
2353bb5f168fSdan ** a mask of new.* columns used by the program.
23542832ad42Sdan */
23552832ad42Sdan struct TriggerPrg {
23562832ad42Sdan   Trigger *pTrigger;      /* Trigger this program was coded from */
23572832ad42Sdan   TriggerPrg *pNext;      /* Next entry in Parse.pTriggerPrg list */
2358a451017dSdrh   SubProgram *pProgram;   /* Program implementing pTrigger/orconf */
2359a451017dSdrh   int orconf;             /* Default ON CONFLICT policy */
2360a451017dSdrh   u32 aColmask[2];        /* Masks of old.*, new.* columns accessed */
2361165921a7Sdan };
2362165921a7Sdan 
236364123585Sdrh /*
236464123585Sdrh ** The yDbMask datatype for the bitmask of all attached databases.
236564123585Sdrh */
236601c7dc88Sdrh #if SQLITE_MAX_ATTACHED>30
236764123585Sdrh   typedef sqlite3_uint64 yDbMask;
236801c7dc88Sdrh #else
236964123585Sdrh   typedef unsigned int yDbMask;
237001c7dc88Sdrh #endif
237101c7dc88Sdrh 
2372ceea3321Sdrh /*
2373f57b3399Sdrh ** An SQL parser context.  A copy of this structure is passed through
2374f57b3399Sdrh ** the parser and down into all the parser action routine in order to
2375f57b3399Sdrh ** carry around information that is global to the entire parse.
2376f1974846Sdrh **
2377f1974846Sdrh ** The structure is divided into two parts.  When the parser and code
2378f1974846Sdrh ** generate call themselves recursively, the first part of the structure
2379f1974846Sdrh ** is constant but the second part is reset at the beginning and end of
2380f1974846Sdrh ** each recursion.
2381c00da105Sdanielk1977 **
2382c00da105Sdanielk1977 ** The nTableLock and aTableLock variables are only used if the shared-cache
2383c00da105Sdanielk1977 ** feature is enabled (if sqlite3Tsd()->useSharedData is true). They are
2384c00da105Sdanielk1977 ** used to store the set of table-locks required by the statement being
2385c00da105Sdanielk1977 ** compiled. Function sqlite3TableLock() is used to add entries to the
2386c00da105Sdanielk1977 ** list.
238775897234Sdrh */
238875897234Sdrh struct Parse {
23899bb575fdSdrh   sqlite3 *db;         /* The main database structure */
239075897234Sdrh   char *zErrMsg;       /* An error message */
239175897234Sdrh   Vdbe *pVdbe;         /* An engine for executing database bytecode */
2392a451017dSdrh   int rc;              /* Return code from execution */
2393836faa48Sdrh   u8 colNamesSet;      /* TRUE after OP_ColumnName has been issued to pVdbe */
2394a6ecd338Sdrh   u8 checkSchema;      /* Causes schema cookie check after an error */
2395205f48e6Sdrh   u8 nested;           /* Number of nested calls to the parser/code generator */
2396892d3179Sdrh   u8 nTempReg;         /* Number of temporary registers in aTempReg[] */
2397a451017dSdrh   u8 isMultiWrite;     /* True if statement may modify/insert multiple rows */
2398a451017dSdrh   u8 mayAbort;         /* True if statement may throw an ABORT exception */
2399d58d3278Sdrh   u8 hasCompound;      /* Need to invoke convertCompoundSelectToSubquery() */
2400aceb31b1Sdrh   u8 okConstFactor;    /* OK to factor out constants */
2401892d3179Sdrh   int aTempReg[8];     /* Holding area for temporary registers */
2402892d3179Sdrh   int nRangeReg;       /* Size of the temporary register block */
2403892d3179Sdrh   int iRangeReg;       /* First register in temporary register block */
240475897234Sdrh   int nErr;            /* Number of errors seen */
2405832508b7Sdrh   int nTab;            /* Number of previously allocated VDBE cursors */
240619a775c2Sdrh   int nMem;            /* Number of memory cells used so far */
2407fef5208cSdrh   int nSet;            /* Number of sets used so far */
24081d8cb21fSdan   int nOnce;           /* Number of OP_Once instructions so far */
240973d5b8f5Sdrh   int nOpAlloc;        /* Number of slots allocated for Vdbe.aOp[] */
241061019c78Sdrh   int iFixedOp;        /* Never back out opcodes iFixedOp-1 or earlier */
2411aa9b8963Sdrh   int ckBase;          /* Base register of data during check constraints */
2412b2b9d3d7Sdrh   int iPartIdxTab;     /* Table corresponding to a partial index */
2413ceea3321Sdrh   int iCacheLevel;     /* ColCache valid when aColCache[].iLevel<=iCacheLevel */
2414ceea3321Sdrh   int iCacheCnt;       /* Counter used to generate aColCache[].lru values */
24157df89c8cSdrh   int nLabel;          /* Number of labels used */
24167df89c8cSdrh   int *aLabel;         /* Space to hold the labels */
24172f7794c1Sdrh   struct yColCache {
2418e55cbd72Sdrh     int iTable;           /* Table cursor number */
24197df89c8cSdrh     i16 iColumn;          /* Table column number */
2420ceea3321Sdrh     u8 tempReg;           /* iReg is a temp register that needs to be freed */
2421ceea3321Sdrh     int iLevel;           /* Nesting level */
2422ceea3321Sdrh     int iReg;             /* Reg with value of this column. 0 means none. */
2423ceea3321Sdrh     int lru;              /* Least recently used entry has the smallest value */
2424ceea3321Sdrh   } aColCache[SQLITE_N_COLCACHE];  /* One for each column cache entry */
2425f30a969bSdrh   ExprList *pConstExpr;/* Constant expressions */
24267df89c8cSdrh   Token constraintName;/* Name of the constraint currently being parsed */
242764123585Sdrh   yDbMask writeMask;   /* Start a write transaction on these databases */
242864123585Sdrh   yDbMask cookieMask;  /* Bitmask of schema verified databases */
2429c797d4dcSdrh   int cookieValue[SQLITE_MAX_ATTACHED+2];  /* Values of cookies to verify */
2430a451017dSdrh   int regRowid;        /* Register holding rowid of CREATE TABLE entry */
2431a451017dSdrh   int regRoot;         /* Register holding root page number for new objects */
2432a451017dSdrh   int nMaxArg;         /* Max args passed to user function by sub-program */
2433c00da105Sdanielk1977 #ifndef SQLITE_OMIT_SHARED_CACHE
2434c00da105Sdanielk1977   int nTableLock;        /* Number of locks in aTableLock */
2435c00da105Sdanielk1977   TableLock *aTableLock; /* Required table locks for shared-cache mode */
2436c00da105Sdanielk1977 #endif
24370b9f50d8Sdrh   AutoincInfo *pAinc;  /* Information about AUTOINCREMENT counters */
2438f1974846Sdrh 
2439165921a7Sdan   /* Information used while coding trigger programs. */
244065a7cd16Sdan   Parse *pToplevel;    /* Parse structure for main program (or NULL) */
2441165921a7Sdan   Table *pTriggerTab;  /* Table triggers are being coded for */
2442c6bd4e4aSdrh   int addrCrTab;       /* Address of OP_CreateTable opcode on CREATE TABLE */
2443c6bd4e4aSdrh   int addrSkipPK;      /* Address of instruction to skip PRIMARY KEY index */
24444f402f26Sdrh   u32 nQueryLoop;      /* Est number of iterations of a query (10*log2(N)) */
244565a7cd16Sdan   u32 oldmask;         /* Mask of old.* columns referenced */
2446bb5f168fSdan   u32 newmask;         /* Mask of new.* columns referenced */
244765a7cd16Sdan   u8 eTriggerOp;       /* TK_UPDATE, TK_INSERT or TK_DELETE */
244865a7cd16Sdan   u8 eOrconf;          /* Default ON CONFLICT policy for trigger steps */
2449d66c8309Sdan   u8 disableTriggers;  /* True to disable triggers */
2450165921a7Sdan 
24517df89c8cSdrh   /************************************************************************
24527df89c8cSdrh   ** Above is constant between recursions.  Below is reset before and after
24537df89c8cSdrh   ** each recursion.  The boundary between these two regions is determined
24547df89c8cSdrh   ** using offsetof(Parse,nVar) so the nVar field must be the first field
24557df89c8cSdrh   ** in the recursive region.
24567df89c8cSdrh   ************************************************************************/
2457f1974846Sdrh 
2458f1974846Sdrh   int nVar;                 /* Number of '?' variables seen in the SQL so far */
2459124c0b49Sdrh   int nzVar;                /* Number of available slots in azVar[] */
24607f9c5dbfSdrh   u8 iPkSortOrder;          /* ASC or DESC for INTEGER PRIMARY KEY */
24617df89c8cSdrh   u8 bFreeWith;             /* True if pWith should be freed with parser */
2462a451017dSdrh   u8 explain;               /* True if the EXPLAIN flag is found on the query */
2463a451017dSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
2464a451017dSdrh   u8 declareVtab;           /* True if inside sqlite3_declare_vtab() */
2465a451017dSdrh   int nVtabLock;            /* Number of virtual tables to lock */
2466a451017dSdrh #endif
2467a451017dSdrh   int nAlias;               /* Number of aliased result set columns */
2468a451017dSdrh   int nHeight;              /* Expression tree height of current sub-select */
2469a451017dSdrh #ifndef SQLITE_OMIT_EXPLAIN
2470a451017dSdrh   int iSelectId;            /* ID of current select for EXPLAIN output */
2471a451017dSdrh   int iNextSelectId;        /* Next available select ID for EXPLAIN output */
2472a451017dSdrh #endif
2473124c0b49Sdrh   char **azVar;             /* Pointers to names of parameters */
2474937d0deaSdan   Vdbe *pReprepare;         /* VM being reprepared (sqlite3Reprepare()) */
2475f1974846Sdrh   const char *zTail;        /* All SQL text past the last semicolon parsed */
2476f1974846Sdrh   Table *pNewTable;         /* A table being constructed by CREATE TABLE */
2477f1974846Sdrh   Trigger *pNewTrigger;     /* Trigger under construct by a CREATE TRIGGER */
2478f1974846Sdrh   const char *zAuthContext; /* The 6th parameter to db->xAuth callbacks */
2479a451017dSdrh   Token sNameToken;         /* Token with unqualified schema object name */
2480a451017dSdrh   Token sLastToken;         /* The last token parsed */
2481b9bb7c18Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
248233b3933cSdanielk1977   Token sArg;               /* Complete text of a module argument */
24834f3dd150Sdrh   Table **apVtabLock;       /* Pointer to virtual tables needing locking */
2484b9bb7c18Sdrh #endif
2485588a9a1aSdrh   Table *pZombieTab;        /* List of Table objects to delete after code gen */
24862832ad42Sdan   TriggerPrg *pTriggerPrg;  /* Linked list of coded triggers */
24874e9119d9Sdan   With *pWith;              /* Current WITH clause, or NULL */
248875897234Sdrh };
248975897234Sdrh 
2490a451017dSdrh /*
2491a451017dSdrh ** Return true if currently inside an sqlite3_declare_vtab() call.
2492a451017dSdrh */
24937e6ebfb2Sdanielk1977 #ifdef SQLITE_OMIT_VIRTUALTABLE
24947e6ebfb2Sdanielk1977   #define IN_DECLARE_VTAB 0
24957e6ebfb2Sdanielk1977 #else
24967e6ebfb2Sdanielk1977   #define IN_DECLARE_VTAB (pParse->declareVtab)
24977e6ebfb2Sdanielk1977 #endif
24987e6ebfb2Sdanielk1977 
2499d99bc930Sdanielk1977 /*
250085e2096fSdrh ** An instance of the following structure can be declared on a stack and used
250185e2096fSdrh ** to save the Parse.zAuthContext value so that it can be restored later.
250285e2096fSdrh */
250385e2096fSdrh struct AuthContext {
250485e2096fSdrh   const char *zAuthContext;   /* Put saved Parse.zAuthContext here */
250585e2096fSdrh   Parse *pParse;              /* The Parse structure */
250685e2096fSdrh };
250785e2096fSdrh 
250885e2096fSdrh /*
2509a748fdccSdrh ** Bitfield flags for P5 value in various opcodes.
2510b0c374ffSrdc */
25113e9ca094Sdrh #define OPFLAG_NCHANGE       0x01    /* Set to update db->nChange */
25123e9ca094Sdrh #define OPFLAG_LASTROWID     0x02    /* Set to update db->lastRowid */
25133e9ca094Sdrh #define OPFLAG_ISUPDATE      0x04    /* This OP_Insert is an sql UPDATE */
25143e9ca094Sdrh #define OPFLAG_APPEND        0x08    /* This is likely to be an append */
25153e9ca094Sdrh #define OPFLAG_USESEEKRESULT 0x10    /* Try to avoid a seek in BtreeInsert() */
25163e9ca094Sdrh #define OPFLAG_CLEARCACHE    0x20    /* Clear pseudo-table cache in OP_Column */
2517a748fdccSdrh #define OPFLAG_LENGTHARG     0x40    /* OP_Column only used for length() */
2518a748fdccSdrh #define OPFLAG_TYPEOFARG     0x80    /* OP_Column only used for typeof() */
2519428c218cSdan #define OPFLAG_BULKCSR       0x01    /* OP_Open** used to open bulk cursor */
2520428c218cSdan #define OPFLAG_P2ISREG       0x02    /* P2 to OP_Open** is a register number */
2521953f7611Sdrh #define OPFLAG_PERMUTE       0x01    /* OP_Compare: use the permutation */
2522b0c374ffSrdc 
2523b0c374ffSrdc /*
2524d99bc930Sdanielk1977  * Each trigger present in the database schema is stored as an instance of
2525d99bc930Sdanielk1977  * struct Trigger.
2526d99bc930Sdanielk1977  *
2527d99bc930Sdanielk1977  * Pointers to instances of struct Trigger are stored in two ways.
25289bb575fdSdrh  * 1. In the "trigHash" hash table (part of the sqlite3* that represents the
2529d99bc930Sdanielk1977  *    database). This allows Trigger structures to be retrieved by name.
2530d99bc930Sdanielk1977  * 2. All triggers associated with a single table form a linked list, using the
2531ad3cab52Sdrh  *    pNext member of struct Trigger. A pointer to the first element of the
2532ad3cab52Sdrh  *    linked list is stored as the "pTrigger" member of the associated
2533ad3cab52Sdrh  *    struct Table.
2534d99bc930Sdanielk1977  *
2535ad3cab52Sdrh  * The "step_list" member points to the first element of a linked list
2536ad3cab52Sdrh  * containing the SQL statements specified as the trigger program.
2537d99bc930Sdanielk1977  */
2538d99bc930Sdanielk1977 struct Trigger {
2539165921a7Sdan   char *zName;            /* The name of the trigger                        */
2540d99bc930Sdanielk1977   char *table;            /* The table or view to which the trigger applies */
2541f0f258b1Sdrh   u8 op;                  /* One of TK_DELETE, TK_UPDATE, TK_INSERT         */
2542dca76841Sdrh   u8 tr_tm;               /* One of TRIGGER_BEFORE, TRIGGER_AFTER */
2543467bcf36Sshane   Expr *pWhen;            /* The WHEN clause of the expression (may be NULL) */
2544d99bc930Sdanielk1977   IdList *pColumns;       /* If this is an UPDATE OF <column-list> trigger,
2545d99bc930Sdanielk1977                              the <column-list> is stored here */
2546e501b89aSdanielk1977   Schema *pSchema;        /* Schema containing the trigger */
2547e501b89aSdanielk1977   Schema *pTabSchema;     /* Schema containing the table */
2548d99bc930Sdanielk1977   TriggerStep *step_list; /* Link list of trigger program steps             */
2549d99bc930Sdanielk1977   Trigger *pNext;         /* Next trigger associated with the table */
2550c3f9bad2Sdanielk1977 };
2551d99bc930Sdanielk1977 
2552d99bc930Sdanielk1977 /*
2553dca76841Sdrh ** A trigger is either a BEFORE or an AFTER trigger.  The following constants
2554dca76841Sdrh ** determine which.
2555dca76841Sdrh **
2556dca76841Sdrh ** If there are multiple triggers, you might of some BEFORE and some AFTER.
2557dca76841Sdrh ** In that cases, the constants below can be ORed together.
2558dca76841Sdrh */
2559dca76841Sdrh #define TRIGGER_BEFORE  1
2560dca76841Sdrh #define TRIGGER_AFTER   2
2561dca76841Sdrh 
2562dca76841Sdrh /*
2563d99bc930Sdanielk1977  * An instance of struct TriggerStep is used to store a single SQL statement
2564d99bc930Sdanielk1977  * that is a part of a trigger-program.
2565d99bc930Sdanielk1977  *
2566d99bc930Sdanielk1977  * Instances of struct TriggerStep are stored in a singly linked list (linked
2567d99bc930Sdanielk1977  * using the "pNext" member) referenced by the "step_list" member of the
2568d99bc930Sdanielk1977  * associated struct Trigger instance. The first element of the linked list is
2569d99bc930Sdanielk1977  * the first step of the trigger-program.
2570d99bc930Sdanielk1977  *
2571d99bc930Sdanielk1977  * The "op" member indicates whether this is a "DELETE", "INSERT", "UPDATE" or
2572d99bc930Sdanielk1977  * "SELECT" statement. The meanings of the other members is determined by the
2573d99bc930Sdanielk1977  * value of "op" as follows:
2574d99bc930Sdanielk1977  *
2575d99bc930Sdanielk1977  * (op == TK_INSERT)
2576d99bc930Sdanielk1977  * orconf    -> stores the ON CONFLICT algorithm
2577d99bc930Sdanielk1977  * pSelect   -> If this is an INSERT INTO ... SELECT ... statement, then
2578d99bc930Sdanielk1977  *              this stores a pointer to the SELECT statement. Otherwise NULL.
2579b7916a78Sdrh  * target    -> A token holding the quoted name of the table to insert into.
2580d99bc930Sdanielk1977  * pExprList -> If this is an INSERT INTO ... VALUES ... statement, then
2581d99bc930Sdanielk1977  *              this stores values to be inserted. Otherwise NULL.
2582d99bc930Sdanielk1977  * pIdList   -> If this is an INSERT INTO ... (<column-names>) VALUES ...
2583ad3cab52Sdrh  *              statement, then this stores the column-names to be
2584ad3cab52Sdrh  *              inserted into.
2585d99bc930Sdanielk1977  *
2586d99bc930Sdanielk1977  * (op == TK_DELETE)
2587b7916a78Sdrh  * target    -> A token holding the quoted name of the table to delete from.
2588d99bc930Sdanielk1977  * pWhere    -> The WHERE clause of the DELETE statement if one is specified.
2589d99bc930Sdanielk1977  *              Otherwise NULL.
2590d99bc930Sdanielk1977  *
2591d99bc930Sdanielk1977  * (op == TK_UPDATE)
2592b7916a78Sdrh  * target    -> A token holding the quoted name of the table to update rows of.
2593d99bc930Sdanielk1977  * pWhere    -> The WHERE clause of the UPDATE statement if one is specified.
2594d99bc930Sdanielk1977  *              Otherwise NULL.
2595d99bc930Sdanielk1977  * pExprList -> A list of the columns to update and the expressions to update
25964adee20fSdanielk1977  *              them to. See sqlite3Update() documentation of "pChanges"
2597ad3cab52Sdrh  *              argument.
2598d99bc930Sdanielk1977  *
2599d99bc930Sdanielk1977  */
2600c3f9bad2Sdanielk1977 struct TriggerStep {
2601b1819a0bSdrh   u8 op;               /* One of TK_DELETE, TK_UPDATE, TK_INSERT, TK_SELECT */
2602b1819a0bSdrh   u8 orconf;           /* OE_Rollback etc. */
2603a69d9168Sdrh   Trigger *pTrig;      /* The trigger that this step is a part of */
2604b1819a0bSdrh   Select *pSelect;     /* SELECT statment or RHS of INSERT INTO .. SELECT ... */
2605b1819a0bSdrh   Token target;        /* Target table for DELETE, UPDATE, INSERT */
2606b1819a0bSdrh   Expr *pWhere;        /* The WHERE clause for DELETE or UPDATE steps */
260775593d96Sdrh   ExprList *pExprList; /* SET clause for UPDATE. */
2608b1819a0bSdrh   IdList *pIdList;     /* Column names for INSERT */
2609c3f9bad2Sdanielk1977   TriggerStep *pNext;  /* Next in the link-list */
2610187e4c6aSdrh   TriggerStep *pLast;  /* Last element in link-list. Valid for 1st elem only */
2611c3f9bad2Sdanielk1977 };
2612c3f9bad2Sdanielk1977 
2613d99bc930Sdanielk1977 /*
2614f26e09c8Sdrh ** The following structure contains information used by the sqliteFix...
2615f26e09c8Sdrh ** routines as they walk the parse tree to make database references
2616f26e09c8Sdrh ** explicit.
2617f26e09c8Sdrh */
2618f26e09c8Sdrh typedef struct DbFixer DbFixer;
2619f26e09c8Sdrh struct DbFixer {
2620f26e09c8Sdrh   Parse *pParse;      /* The parsing context.  Error messages written here */
262141fb5cd1Sdan   Schema *pSchema;    /* Fix items to this schema */
262246539d7cSdan   int bVarOnly;       /* Check for variable references only */
2623f26e09c8Sdrh   const char *zDb;    /* Make sure all objects are contained in this database */
2624f26e09c8Sdrh   const char *zType;  /* Type of the container - used for error messages */
2625f26e09c8Sdrh   const Token *pName; /* Name of the container - used for error messages */
2626f26e09c8Sdrh };
2627f26e09c8Sdrh 
2628f26e09c8Sdrh /*
2629ade86483Sdrh ** An objected used to accumulate the text of a string where we
2630ade86483Sdrh ** do not necessarily know how big the string will be in the end.
2631ade86483Sdrh */
2632ade86483Sdrh struct StrAccum {
2633633e6d57Sdrh   sqlite3 *db;         /* Optional database for lookaside.  Can be NULL */
2634ade86483Sdrh   char *zBase;         /* A base allocation.  Not from malloc. */
2635ade86483Sdrh   char *zText;         /* The string collected so far */
2636ade86483Sdrh   int  nChar;          /* Length of the string so far */
2637ade86483Sdrh   int  nAlloc;         /* Amount of space allocated in zText */
2638bb4957f8Sdrh   int  mxAlloc;        /* Maximum allowed string length */
2639b975598eSdrh   u8   useMalloc;      /* 0: none,  1: sqlite3DbMalloc,  2: sqlite3_malloc */
2640b49bc86aSdrh   u8   accError;       /* STRACCUM_NOMEM or STRACCUM_TOOBIG */
2641ade86483Sdrh };
2642b49bc86aSdrh #define STRACCUM_NOMEM   1
2643b49bc86aSdrh #define STRACCUM_TOOBIG  2
2644ade86483Sdrh 
2645ade86483Sdrh /*
2646234c39dfSdrh ** A pointer to this structure is used to communicate information
2647234c39dfSdrh ** from sqlite3Init and OP_ParseSchema into the sqlite3InitCallback.
2648234c39dfSdrh */
2649234c39dfSdrh typedef struct {
26509bb575fdSdrh   sqlite3 *db;        /* The database being initialized */
2651234c39dfSdrh   char **pzErrMsg;    /* Error message stored here */
2652a451017dSdrh   int iDb;            /* 0 for main database.  1 for TEMP, 2.. for ATTACHed */
265315ca1df1Sdrh   int rc;             /* Result code stored here */
2654234c39dfSdrh } InitData;
2655234c39dfSdrh 
2656b6c29897Sdrh /*
265740257ffdSdrh ** Structure containing global configuration data for the SQLite library.
265833589797Sdrh **
265933589797Sdrh ** This structure also contains some state information.
266040257ffdSdrh */
266140257ffdSdrh struct Sqlite3Config {
2662fec00eabSdrh   int bMemstat;                     /* True to enable memory status */
2663fec00eabSdrh   int bCoreMutex;                   /* True to enable core mutexing */
2664fec00eabSdrh   int bFullMutex;                   /* True to enable full mutexing */
2665cd74b611Sdan   int bOpenUri;                     /* True to interpret filenames as URIs */
2666de9a7b8aSdrh   int bUseCis;                      /* Use covering indices for full-scans */
26670a687d12Sdrh   int mxStrlen;                     /* Maximum string length */
266809fe6143Sdrh   int neverCorrupt;                 /* Database is always well-formed */
2669633e6d57Sdrh   int szLookaside;                  /* Default lookaside buffer size */
2670633e6d57Sdrh   int nLookaside;                   /* Default lookaside buffer count */
2671fec00eabSdrh   sqlite3_mem_methods m;            /* Low-level memory allocation interface */
26726d2ab0e4Sdanielk1977   sqlite3_mutex_methods mutex;      /* Low-level mutex interface */
267322e21ff4Sdan   sqlite3_pcache_methods2 pcache2;  /* Low-level page-cache interface */
267440257ffdSdrh   void *pHeap;                      /* Heap storage space */
267533589797Sdrh   int nHeap;                        /* Size of pHeap[] */
267633589797Sdrh   int mnReq, mxReq;                 /* Min and max heap requests sizes */
26779b4c59faSdrh   sqlite3_int64 szMmap;             /* mmap() space per open file */
26789b4c59faSdrh   sqlite3_int64 mxMmap;             /* Maximum value for szMmap */
267933589797Sdrh   void *pScratch;                   /* Scratch memory */
268033589797Sdrh   int szScratch;                    /* Size of each scratch buffer */
268133589797Sdrh   int nScratch;                     /* Number of scratch buffers */
268233589797Sdrh   void *pPage;                      /* Page cache memory */
268333589797Sdrh   int szPage;                       /* Size of each page in pPage[] */
268433589797Sdrh   int nPage;                        /* Number of pages in pPage[] */
26851875f7a3Sdrh   int mxParserStack;                /* maximum depth of the parser stack */
26861875f7a3Sdrh   int sharedCacheEnabled;           /* true if shared-cache mode enabled */
26871875f7a3Sdrh   /* The above might be initialized to non-zero.  The following need to always
26881875f7a3Sdrh   ** initially be zero, however. */
268971bc31c6Sdanielk1977   int isInit;                       /* True after initialization has finished */
2690502b4e00Sdanielk1977   int inProgress;                   /* True while initialization in progress */
2691e1ab2193Sdan   int isMutexInit;                  /* True after mutexes are initialized */
269271bc31c6Sdanielk1977   int isMallocInit;                 /* True after malloc is initialized */
2693e1ab2193Sdan   int isPCacheInit;                 /* True after malloc is initialized */
269471bc31c6Sdanielk1977   sqlite3_mutex *pInitMutex;        /* Mutex used by sqlite3_initialize() */
269593ed56d9Sdrh   int nRefInitMutex;                /* Number of users of pInitMutex */
26963f280701Sdrh   void (*xLog)(void*,int,const char*); /* Function for logging */
26973f280701Sdrh   void *pLogArg;                       /* First argument to xLog() */
2698c17d696cSdan   int bLocaltimeFault;              /* True to fail localtime() calls */
2699ac455939Sdan #ifdef SQLITE_ENABLE_SQLLOG
2700ac455939Sdan   void(*xSqllog)(void*,sqlite3*,const char*, int);
2701ac455939Sdan   void *pSqllogArg;
2702ac455939Sdan #endif
2703688852abSdrh #ifdef SQLITE_VDBE_COVERAGE
2704688852abSdrh   /* The following callback (if not NULL) is invoked on every VDBE branch
2705688852abSdrh   ** operation.  Set the callback using SQLITE_TESTCTRL_VDBE_COVERAGE.
2706688852abSdrh   */
2707688852abSdrh   void (*xVdbeBranch)(void*,int iSrcLine,u8 eThis,u8 eMx);  /* Callback */
2708688852abSdrh   void *pVdbeBranchArg;                                     /* 1st argument */
2709688852abSdrh #endif
271040257ffdSdrh };
271140257ffdSdrh 
271240257ffdSdrh /*
271309fe6143Sdrh ** This macro is used inside of assert() statements to indicate that
271409fe6143Sdrh ** the assert is only valid on a well-formed database.  Instead of:
271509fe6143Sdrh **
271609fe6143Sdrh **     assert( X );
271709fe6143Sdrh **
271809fe6143Sdrh ** One writes:
271909fe6143Sdrh **
2720b2023665Sdrh **     assert( X || CORRUPT_DB );
272109fe6143Sdrh **
2722b2023665Sdrh ** CORRUPT_DB is true during normal operation.  CORRUPT_DB does not indicate
2723b2023665Sdrh ** that the database is definitely corrupt, only that it might be corrupt.
2724b2023665Sdrh ** For most test cases, CORRUPT_DB is set to false using a special
2725b2023665Sdrh ** sqlite3_test_control().  This enables assert() statements to prove
2726b2023665Sdrh ** things that are always true for well-formed databases.
272709fe6143Sdrh */
2728b2023665Sdrh #define CORRUPT_DB  (sqlite3Config.neverCorrupt==0)
272909fe6143Sdrh 
273009fe6143Sdrh /*
27317d10d5a6Sdrh ** Context pointer passed down through the tree-walk.
27327d10d5a6Sdrh */
27337d10d5a6Sdrh struct Walker {
27347d10d5a6Sdrh   int (*xExprCallback)(Walker*, Expr*);     /* Callback for expressions */
27357d10d5a6Sdrh   int (*xSelectCallback)(Walker*,Select*);  /* Callback for SELECTs */
2736b290f117Sdan   void (*xSelectCallback2)(Walker*,Select*);/* Second callback for SELECTs */
27377d10d5a6Sdrh   Parse *pParse;                            /* Parser context.  */
2738030796dfSdrh   int walkerDepth;                          /* Number of subqueries */
27397d10d5a6Sdrh   union {                                   /* Extra data for callback */
27407d10d5a6Sdrh     NameContext *pNC;                          /* Naming context */
27417d10d5a6Sdrh     int i;                                     /* Integer value */
2742374fdce4Sdrh     SrcList *pSrcList;                         /* FROM clause */
2743030796dfSdrh     struct SrcCount *pSrcCount;                /* Counting column references */
27447d10d5a6Sdrh   } u;
27457d10d5a6Sdrh };
27467d10d5a6Sdrh 
27477d10d5a6Sdrh /* Forward declarations */
27487d10d5a6Sdrh int sqlite3WalkExpr(Walker*, Expr*);
27497d10d5a6Sdrh int sqlite3WalkExprList(Walker*, ExprList*);
27507d10d5a6Sdrh int sqlite3WalkSelect(Walker*, Select*);
27517d10d5a6Sdrh int sqlite3WalkSelectExpr(Walker*, Select*);
27527d10d5a6Sdrh int sqlite3WalkSelectFrom(Walker*, Select*);
27537d10d5a6Sdrh 
27547d10d5a6Sdrh /*
27557d10d5a6Sdrh ** Return code from the parse-tree walking primitives and their
27567d10d5a6Sdrh ** callbacks.
27577d10d5a6Sdrh */
27582bf90f1eSdrh #define WRC_Continue    0   /* Continue down into children */
27592bf90f1eSdrh #define WRC_Prune       1   /* Omit children but continue walking siblings */
27602bf90f1eSdrh #define WRC_Abort       2   /* Abandon the tree walk */
27617d10d5a6Sdrh 
27627d10d5a6Sdrh /*
2763eae73fbfSdan ** An instance of this structure represents a set of one or more CTEs
2764c49832c2Sdrh ** (common table expressions) created by a single WITH clause.
27657d562dbeSdan */
27667d562dbeSdan struct With {
2767c49832c2Sdrh   int nCte;                       /* Number of CTEs in the WITH clause */
27684e9119d9Sdan   With *pOuter;                   /* Containing WITH clause, or NULL */
2769c49832c2Sdrh   struct Cte {                    /* For each CTE in the WITH clause.... */
27704e9119d9Sdan     char *zName;                    /* Name of this CTE */
27714e9119d9Sdan     ExprList *pCols;                /* List of explicit column names, or NULL */
2772c49832c2Sdrh     Select *pSelect;                /* The definition of this CTE */
2773f2655fe8Sdan     const char *zErr;               /* Error message for circular references */
27747d562dbeSdan   } a[1];
27757d562dbeSdan };
27767d562dbeSdan 
27777d562dbeSdan /*
277866150956Sdrh ** Assuming zIn points to the first byte of a UTF-8 character,
277966150956Sdrh ** advance zIn to point to the first byte of the next UTF-8 character.
27804a919118Sdrh */
27814a919118Sdrh #define SQLITE_SKIP_UTF8(zIn) {                        \
27824a919118Sdrh   if( (*(zIn++))>=0xc0 ){                              \
27834a919118Sdrh     while( (*zIn & 0xc0)==0x80 ){ zIn++; }             \
27844a919118Sdrh   }                                                    \
27854a919118Sdrh }
27864a919118Sdrh 
27874a919118Sdrh /*
27889978c97eSdrh ** The SQLITE_*_BKPT macros are substitutes for the error codes with
27899978c97eSdrh ** the same name but without the _BKPT suffix.  These macros invoke
27909978c97eSdrh ** routines that report the line-number on which the error originated
27919978c97eSdrh ** using sqlite3_log().  The routines also provide a convenient place
27929978c97eSdrh ** to set a debugger breakpoint.
279349285708Sdrh */
27949978c97eSdrh int sqlite3CorruptError(int);
27959978c97eSdrh int sqlite3MisuseError(int);
27969978c97eSdrh int sqlite3CantopenError(int);
27979978c97eSdrh #define SQLITE_CORRUPT_BKPT sqlite3CorruptError(__LINE__)
27989978c97eSdrh #define SQLITE_MISUSE_BKPT sqlite3MisuseError(__LINE__)
27999978c97eSdrh #define SQLITE_CANTOPEN_BKPT sqlite3CantopenError(__LINE__)
28009978c97eSdrh 
280149285708Sdrh 
280249285708Sdrh /*
2803b4a1fed2Sdrh ** FTS4 is really an extension for FTS3.  It is enabled using the
2804b4a1fed2Sdrh ** SQLITE_ENABLE_FTS3 macro.  But to avoid confusion we also all
2805b4a1fed2Sdrh ** the SQLITE_ENABLE_FTS4 macro to serve as an alisse for SQLITE_ENABLE_FTS3.
2806b4a1fed2Sdrh */
2807b4a1fed2Sdrh #if defined(SQLITE_ENABLE_FTS4) && !defined(SQLITE_ENABLE_FTS3)
2808b4a1fed2Sdrh # define SQLITE_ENABLE_FTS3
2809b4a1fed2Sdrh #endif
2810b4a1fed2Sdrh 
2811b4a1fed2Sdrh /*
281279f02cefSdrh ** The ctype.h header is needed for non-ASCII systems.  It is also
281379f02cefSdrh ** needed by FTS3 when FTS3 is included in the amalgamation.
281479f02cefSdrh */
281579f02cefSdrh #if !defined(SQLITE_ASCII) || \
281679f02cefSdrh     (defined(SQLITE_ENABLE_FTS3) && defined(SQLITE_AMALGAMATION))
281779f02cefSdrh # include <ctype.h>
281879f02cefSdrh #endif
281979f02cefSdrh 
282079f02cefSdrh /*
282178ca0e7eSdanielk1977 ** The following macros mimic the standard library functions toupper(),
282278ca0e7eSdanielk1977 ** isspace(), isalnum(), isdigit() and isxdigit(), respectively. The
282378ca0e7eSdanielk1977 ** sqlite versions only work for ASCII characters, regardless of locale.
282478ca0e7eSdanielk1977 */
282578ca0e7eSdanielk1977 #ifdef SQLITE_ASCII
282678ca0e7eSdanielk1977 # define sqlite3Toupper(x)  ((x)&~(sqlite3CtypeMap[(unsigned char)(x)]&0x20))
282778ca0e7eSdanielk1977 # define sqlite3Isspace(x)   (sqlite3CtypeMap[(unsigned char)(x)]&0x01)
2828dc86e2b2Sdrh # define sqlite3Isalnum(x)   (sqlite3CtypeMap[(unsigned char)(x)]&0x06)
2829dc86e2b2Sdrh # define sqlite3Isalpha(x)   (sqlite3CtypeMap[(unsigned char)(x)]&0x02)
283078ca0e7eSdanielk1977 # define sqlite3Isdigit(x)   (sqlite3CtypeMap[(unsigned char)(x)]&0x04)
283178ca0e7eSdanielk1977 # define sqlite3Isxdigit(x)  (sqlite3CtypeMap[(unsigned char)(x)]&0x08)
283278ca0e7eSdanielk1977 # define sqlite3Tolower(x)   (sqlite3UpperToLower[(unsigned char)(x)])
283378ca0e7eSdanielk1977 #else
283478ca0e7eSdanielk1977 # define sqlite3Toupper(x)   toupper((unsigned char)(x))
283578ca0e7eSdanielk1977 # define sqlite3Isspace(x)   isspace((unsigned char)(x))
283678ca0e7eSdanielk1977 # define sqlite3Isalnum(x)   isalnum((unsigned char)(x))
2837dc86e2b2Sdrh # define sqlite3Isalpha(x)   isalpha((unsigned char)(x))
283878ca0e7eSdanielk1977 # define sqlite3Isdigit(x)   isdigit((unsigned char)(x))
283978ca0e7eSdanielk1977 # define sqlite3Isxdigit(x)  isxdigit((unsigned char)(x))
284078ca0e7eSdanielk1977 # define sqlite3Tolower(x)   tolower((unsigned char)(x))
284178ca0e7eSdanielk1977 #endif
284278ca0e7eSdanielk1977 
284378ca0e7eSdanielk1977 /*
284475897234Sdrh ** Internal function prototypes
284575897234Sdrh */
28463fa97302Sdrh #define sqlite3StrICmp sqlite3_stricmp
2847ea678832Sdrh int sqlite3Strlen30(const char*);
2848ee0484c1Sdanielk1977 #define sqlite3StrNICmp sqlite3_strnicmp
28492e588c75Sdanielk1977 
285040257ffdSdrh int sqlite3MallocInit(void);
2851fec00eabSdrh void sqlite3MallocEnd(void);
2852fec00eabSdrh void *sqlite3Malloc(int);
2853fec00eabSdrh void *sqlite3MallocZero(int);
2854fec00eabSdrh void *sqlite3DbMallocZero(sqlite3*, int);
2855fec00eabSdrh void *sqlite3DbMallocRaw(sqlite3*, int);
285617435752Sdrh char *sqlite3DbStrDup(sqlite3*,const char*);
285717435752Sdrh char *sqlite3DbStrNDup(sqlite3*,const char*, int);
2858fec00eabSdrh void *sqlite3Realloc(void*, int);
285997c8ec32Sdrh void *sqlite3DbReallocOrFree(sqlite3 *, void *, int);
2860a1644fd8Sdanielk1977 void *sqlite3DbRealloc(sqlite3 *, void *, int);
2861633e6d57Sdrh void sqlite3DbFree(sqlite3*, void*);
2862a7a8e14bSdanielk1977 int sqlite3MallocSize(void*);
2863633e6d57Sdrh int sqlite3DbMallocSize(sqlite3*, void*);
2864facf0307Sdrh void *sqlite3ScratchMalloc(int);
2865facf0307Sdrh void sqlite3ScratchFree(void*);
2866facf0307Sdrh void *sqlite3PageMalloc(int);
2867facf0307Sdrh void sqlite3PageFree(void*);
2868fec00eabSdrh void sqlite3MemSetDefault(void);
2869171bfed3Sdanielk1977 void sqlite3BenignMallocHooks(void (*)(void), void (*)(void));
287050d1b5f3Sdrh int sqlite3HeapNearlyFull(void);
28712e588c75Sdanielk1977 
2872e7b34707Sdrh /*
2873e7b34707Sdrh ** On systems with ample stack space and that support alloca(), make
2874e7b34707Sdrh ** use of alloca() to obtain space for large automatic objects.  By default,
2875e7b34707Sdrh ** obtain space from malloc().
2876e7b34707Sdrh **
2877e7b34707Sdrh ** The alloca() routine never returns NULL.  This will cause code paths
2878e7b34707Sdrh ** that deal with sqlite3StackAlloc() failures to be unreachable.
2879e7b34707Sdrh */
2880e7b34707Sdrh #ifdef SQLITE_USE_ALLOCA
2881e7b34707Sdrh # define sqlite3StackAllocRaw(D,N)   alloca(N)
2882e7b34707Sdrh # define sqlite3StackAllocZero(D,N)  memset(alloca(N), 0, N)
2883e7b34707Sdrh # define sqlite3StackFree(D,P)
2884e7b34707Sdrh #else
2885e7b34707Sdrh # define sqlite3StackAllocRaw(D,N)   sqlite3DbMallocRaw(D,N)
2886e7b34707Sdrh # define sqlite3StackAllocZero(D,N)  sqlite3DbMallocZero(D,N)
2887e7b34707Sdrh # define sqlite3StackFree(D,P)       sqlite3DbFree(D,P)
2888e7b34707Sdrh #endif
2889e7b34707Sdrh 
2890f3d3c27aSdanielk1977 #ifdef SQLITE_ENABLE_MEMSYS3
2891f3d3c27aSdanielk1977 const sqlite3_mem_methods *sqlite3MemGetMemsys3(void);
2892f3d3c27aSdanielk1977 #endif
2893f3d3c27aSdanielk1977 #ifdef SQLITE_ENABLE_MEMSYS5
2894f3d3c27aSdanielk1977 const sqlite3_mem_methods *sqlite3MemGetMemsys5(void);
2895f3d3c27aSdanielk1977 #endif
2896f3d3c27aSdanielk1977 
2897f3d3c27aSdanielk1977 
289818472fa7Sdrh #ifndef SQLITE_MUTEX_OMIT
2899558814f8Sdan   sqlite3_mutex_methods const *sqlite3DefaultMutex(void);
2900558814f8Sdan   sqlite3_mutex_methods const *sqlite3NoopMutex(void);
290159f8c08eSdanielk1977   sqlite3_mutex *sqlite3MutexAlloc(int);
2902d025174fSdanielk1977   int sqlite3MutexInit(void);
2903d025174fSdanielk1977   int sqlite3MutexEnd(void);
290465bbf29eSdrh #endif
29056d2ab0e4Sdanielk1977 
2906f7141990Sdrh int sqlite3StatusValue(int);
2907f7141990Sdrh void sqlite3StatusAdd(int, int);
2908f7141990Sdrh void sqlite3StatusSet(int, int);
2909f7141990Sdrh 
291085c8f291Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT
29110de3ae95Sdrh   int sqlite3IsNaN(double);
291285c8f291Sdrh #else
291385c8f291Sdrh # define sqlite3IsNaN(X)  0
291485c8f291Sdrh #endif
29150de3ae95Sdrh 
2916a5c1416dSdrh /*
2917a5c1416dSdrh ** An instance of the following structure holds information about SQL
2918a5c1416dSdrh ** functions arguments that are the parameters to the printf() function.
2919a5c1416dSdrh */
2920a5c1416dSdrh struct PrintfArguments {
2921a5c1416dSdrh   int nArg;                /* Total number of arguments */
2922a5c1416dSdrh   int nUsed;               /* Number of arguments used so far */
2923a5c1416dSdrh   sqlite3_value **apArg;   /* The argument values */
2924a5c1416dSdrh };
2925a5c1416dSdrh 
2926a5c1416dSdrh #define SQLITE_PRINTF_INTERNAL 0x01
2927a5c1416dSdrh #define SQLITE_PRINTF_SQLFUNC  0x02
2928a5c1416dSdrh void sqlite3VXPrintf(StrAccum*, u32, const char*, va_list);
2929a5c1416dSdrh void sqlite3XPrintf(StrAccum*, u32, const char*, ...);
293017435752Sdrh char *sqlite3MPrintf(sqlite3*,const char*, ...);
293117435752Sdrh char *sqlite3VMPrintf(sqlite3*,const char*, va_list);
2932633e6d57Sdrh char *sqlite3MAppendf(sqlite3*,char*,const char*,...);
293387cc3b31Sdrh #if defined(SQLITE_TEST) || defined(SQLITE_DEBUG)
2934e54ca3feSdrh   void sqlite3DebugPrintf(const char*, ...);
2935d919fe17Sdrh #endif
2936d919fe17Sdrh #if defined(SQLITE_TEST)
2937e8f52c50Sdrh   void *sqlite3TestTextToPtr(const char*);
293887cc3b31Sdrh #endif
29397e02e5e6Sdrh 
29407e02e5e6Sdrh /* Output formatting for SQLITE_TESTCTRL_EXPLAIN */
2941678a9aa7Sdrh #if defined(SQLITE_ENABLE_TREE_EXPLAIN)
29427e02e5e6Sdrh   void sqlite3ExplainBegin(Vdbe*);
29437e02e5e6Sdrh   void sqlite3ExplainPrintf(Vdbe*, const char*, ...);
29447e02e5e6Sdrh   void sqlite3ExplainNL(Vdbe*);
29457e02e5e6Sdrh   void sqlite3ExplainPush(Vdbe*);
29467e02e5e6Sdrh   void sqlite3ExplainPop(Vdbe*);
29477e02e5e6Sdrh   void sqlite3ExplainFinish(Vdbe*);
29487e02e5e6Sdrh   void sqlite3ExplainSelect(Vdbe*, Select*);
29497e02e5e6Sdrh   void sqlite3ExplainExpr(Vdbe*, Expr*);
29507e02e5e6Sdrh   void sqlite3ExplainExprList(Vdbe*, ExprList*);
29517e02e5e6Sdrh   const char *sqlite3VdbeExplanation(Vdbe*);
29527e02e5e6Sdrh #else
29537e02e5e6Sdrh # define sqlite3ExplainBegin(X)
29547e02e5e6Sdrh # define sqlite3ExplainSelect(A,B)
29557e02e5e6Sdrh # define sqlite3ExplainExpr(A,B)
29567e02e5e6Sdrh # define sqlite3ExplainExprList(A,B)
29577e02e5e6Sdrh # define sqlite3ExplainFinish(X)
29587e02e5e6Sdrh # define sqlite3VdbeExplanation(X) 0
29597e02e5e6Sdrh #endif
29607e02e5e6Sdrh 
29617e02e5e6Sdrh 
2962f089aa45Sdrh void sqlite3SetString(char **, sqlite3*, const char*, ...);
29634adee20fSdanielk1977 void sqlite3ErrorMsg(Parse*, const char*, ...);
296424fb627aSdrh int sqlite3Dequote(char*);
29652646da7eSdrh int sqlite3KeywordCode(const unsigned char*, int);
29664adee20fSdanielk1977 int sqlite3RunParser(Parse*, const char*, char **);
296780242055Sdrh void sqlite3FinishCoding(Parse*);
2968892d3179Sdrh int sqlite3GetTempReg(Parse*);
2969892d3179Sdrh void sqlite3ReleaseTempReg(Parse*,int);
2970892d3179Sdrh int sqlite3GetTempRange(Parse*,int);
2971892d3179Sdrh void sqlite3ReleaseTempRange(Parse*,int,int);
2972cdc69557Sdrh void sqlite3ClearTempRegCache(Parse*);
2973b7916a78Sdrh Expr *sqlite3ExprAlloc(sqlite3*,int,const Token*,int);
2974b7916a78Sdrh Expr *sqlite3Expr(sqlite3*,int,const char*);
2975b7916a78Sdrh void sqlite3ExprAttachSubtrees(sqlite3*,Expr*,Expr*,Expr*);
297617435752Sdrh Expr *sqlite3PExpr(Parse*, int, Expr*, Expr*, const Token*);
29771e536953Sdanielk1977 Expr *sqlite3ExprAnd(sqlite3*,Expr*, Expr*);
297817435752Sdrh Expr *sqlite3ExprFunction(Parse*,ExprList*, Token*);
2979fa6bc000Sdrh void sqlite3ExprAssignVarNumber(Parse*, Expr*);
2980633e6d57Sdrh void sqlite3ExprDelete(sqlite3*, Expr*);
2981b7916a78Sdrh ExprList *sqlite3ExprListAppend(Parse*,ExprList*,Expr*);
2982b7916a78Sdrh void sqlite3ExprListSetName(Parse*,ExprList*,Token*,int);
2983b7916a78Sdrh void sqlite3ExprListSetSpan(Parse*,ExprList*,ExprSpan*);
2984633e6d57Sdrh void sqlite3ExprListDelete(sqlite3*, ExprList*);
29859bb575fdSdrh int sqlite3Init(sqlite3*, char**);
2986234c39dfSdrh int sqlite3InitCallback(void*, int, char**, char**);
298791cf71b0Sdanielk1977 void sqlite3Pragma(Parse*,Token*,Token*,Token*,int);
298881028a45Sdrh void sqlite3ResetAllSchemasOfConnection(sqlite3*);
298981028a45Sdrh void sqlite3ResetOneSchema(sqlite3*,int);
299081028a45Sdrh void sqlite3CollapseDatabaseArray(sqlite3*);
29914adee20fSdanielk1977 void sqlite3BeginParse(Parse*,int);
29929bb575fdSdrh void sqlite3CommitInternalChanges(sqlite3*);
29937d10d5a6Sdrh Table *sqlite3ResultSetOfSelect(Parse*,Select*);
2994c00da105Sdanielk1977 void sqlite3OpenMasterTable(Parse *, int);
29954415628aSdrh Index *sqlite3PrimaryKeyIndex(Table*);
29964415628aSdrh i16 sqlite3ColumnOfIndex(Index*, i16);
2997f1a381e7Sdanielk1977 void sqlite3StartTable(Parse*,Token*,Token*,int,int,int,int);
29984adee20fSdanielk1977 void sqlite3AddColumn(Parse*,Token*);
29994adee20fSdanielk1977 void sqlite3AddNotNull(Parse*, int);
3000fdd6e85aSdrh void sqlite3AddPrimaryKey(Parse*, ExprList*, int, int, int);
3001ffe07b2dSdrh void sqlite3AddCheckConstraint(Parse*, Expr*);
3002487e262fSdrh void sqlite3AddColumnType(Parse*,Token*);
3003b7916a78Sdrh void sqlite3AddDefaultValue(Parse*,ExprSpan*);
300439002505Sdanielk1977 void sqlite3AddCollateType(Parse*, Token*);
30055969da4aSdrh void sqlite3EndTable(Parse*,Token*,Token*,u8,Select*);
3006522c26fbSdrh int sqlite3ParseUri(const char*,const char*,unsigned int*,
3007522c26fbSdrh                     sqlite3_vfs**,char**,char **);
3008421377e6Sdrh Btree *sqlite3DbNameToBtree(sqlite3*,const char*);
30091d8cb21fSdan int sqlite3CodeOnce(Parse *);
3010b7f9164eSdrh 
3011f5e7bb51Sdrh Bitvec *sqlite3BitvecCreate(u32);
3012f5e7bb51Sdrh int sqlite3BitvecTest(Bitvec*, u32);
3013f5e7bb51Sdrh int sqlite3BitvecSet(Bitvec*, u32);
3014e98c9049Sdrh void sqlite3BitvecClear(Bitvec*, u32, void*);
3015f5e7bb51Sdrh void sqlite3BitvecDestroy(Bitvec*);
3016bea2a948Sdanielk1977 u32 sqlite3BitvecSize(Bitvec*);
30173088d59eSdrh int sqlite3BitvecBuiltinTest(int,int*);
3018f5e7bb51Sdrh 
30193d4501e5Sdrh RowSet *sqlite3RowSetInit(sqlite3*, void*, unsigned int);
30203d4501e5Sdrh void sqlite3RowSetClear(RowSet*);
30213d4501e5Sdrh void sqlite3RowSetInsert(RowSet*, i64);
3022d83cad23Sdrh int sqlite3RowSetTest(RowSet*, int iBatch, i64);
30233d4501e5Sdrh int sqlite3RowSetNext(RowSet*, i64*);
30243d4501e5Sdrh 
3025fdd48a76Sdrh void sqlite3CreateView(Parse*,Token*,Token*,Token*,Select*,int,int);
3026fe3fcbe2Sdanielk1977 
3027fe3fcbe2Sdanielk1977 #if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_VIRTUALTABLE)
30284adee20fSdanielk1977   int sqlite3ViewGetColumnNames(Parse*,Table*);
3029b7f9164eSdrh #else
3030b7f9164eSdrh # define sqlite3ViewGetColumnNames(A,B) 0
3031b7f9164eSdrh #endif
3032b7f9164eSdrh 
3033a073384fSdrh void sqlite3DropTable(Parse*, SrcList*, int, int);
3034faacf17cSdrh void sqlite3CodeDropTable(Parse*, Table*, int, int);
30351feeaed2Sdan void sqlite3DeleteTable(sqlite3*, Table*);
30360b9f50d8Sdrh #ifndef SQLITE_OMIT_AUTOINCREMENT
30370b9f50d8Sdrh   void sqlite3AutoincrementBegin(Parse *pParse);
30380b9f50d8Sdrh   void sqlite3AutoincrementEnd(Parse *pParse);
30390b9f50d8Sdrh #else
30400b9f50d8Sdrh # define sqlite3AutoincrementBegin(X)
30410b9f50d8Sdrh # define sqlite3AutoincrementEnd(X)
30420b9f50d8Sdrh #endif
304375593d96Sdrh void sqlite3Insert(Parse*, SrcList*, Select*, IdList*, int);
30446c535158Sdrh void *sqlite3ArrayAllocate(sqlite3*,void*,int,int*,int*);
304517435752Sdrh IdList *sqlite3IdListAppend(sqlite3*, IdList*, Token*);
30464adee20fSdanielk1977 int sqlite3IdListIndex(IdList*,const char*);
3047a78c22c4Sdrh SrcList *sqlite3SrcListEnlarge(sqlite3*, SrcList*, int, int);
304817435752Sdrh SrcList *sqlite3SrcListAppend(sqlite3*, SrcList*, Token*, Token*);
3049b1c685b0Sdanielk1977 SrcList *sqlite3SrcListAppendFromTerm(Parse*, SrcList*, Token*, Token*,
305085574e31Sdanielk1977                                       Token*, Select*, Expr*, IdList*);
3051b1c685b0Sdanielk1977 void sqlite3SrcListIndexedBy(Parse *, SrcList *, Token *);
3052b1c685b0Sdanielk1977 int sqlite3IndexedByLookup(Parse *, struct SrcList_item *);
305361dfc31dSdrh void sqlite3SrcListShiftJoinType(SrcList*);
30544adee20fSdanielk1977 void sqlite3SrcListAssignCursors(Parse*, SrcList*);
3055633e6d57Sdrh void sqlite3IdListDelete(sqlite3*, IdList*);
3056633e6d57Sdrh void sqlite3SrcListDelete(sqlite3*, SrcList*);
3057bbbdc83bSdrh Index *sqlite3AllocateIndexObject(sqlite3*,i16,int,char**);
30581da40a38Sdan Index *sqlite3CreateIndex(Parse*,Token*,Token*,SrcList*,ExprList*,int,Token*,
30598a9789b6Sdrh                           Expr*, int, int);
30604d91a701Sdrh void sqlite3DropIndex(Parse*, SrcList*, int);
30617d10d5a6Sdrh int sqlite3Select(Parse*, Select*, SelectDest*);
306217435752Sdrh Select *sqlite3SelectNew(Parse*,ExprList*,SrcList*,Expr*,ExprList*,
3063832ee3d4Sdrh                          Expr*,ExprList*,u16,Expr*,Expr*);
3064633e6d57Sdrh void sqlite3SelectDelete(sqlite3*, Select*);
30654adee20fSdanielk1977 Table *sqlite3SrcListLookup(Parse*, SrcList*);
30664adee20fSdanielk1977 int sqlite3IsReadOnly(Parse*, Table*, int);
3067c00da105Sdanielk1977 void sqlite3OpenTable(Parse*, int iCur, int iDb, Table*, int);
3068273f619bSshane #if defined(SQLITE_ENABLE_UPDATE_DELETE_LIMIT) && !defined(SQLITE_OMIT_SUBQUERY)
306949ffdbf4Sshane Expr *sqlite3LimitWhere(Parse*,SrcList*,Expr*,ExprList*,Expr*,Expr*,char*);
30704281bd42Sshane #endif
30714adee20fSdanielk1977 void sqlite3DeleteFrom(Parse*, SrcList*, Expr*);
30724adee20fSdanielk1977 void sqlite3Update(Parse*, SrcList*, ExprList*, Expr*, int);
307346ec5b63Sdrh WhereInfo *sqlite3WhereBegin(Parse*,SrcList*,Expr*,ExprList*,ExprList*,u16,int);
30744adee20fSdanielk1977 void sqlite3WhereEnd(WhereInfo*);
3075c63367efSdrh u64 sqlite3WhereOutputRowCount(WhereInfo*);
30766f32848dSdrh int sqlite3WhereIsDistinct(WhereInfo*);
30776f32848dSdrh int sqlite3WhereIsOrdered(WhereInfo*);
30786f32848dSdrh int sqlite3WhereContinueLabel(WhereInfo*);
30796f32848dSdrh int sqlite3WhereBreakLabel(WhereInfo*);
3080fc8d4f96Sdrh int sqlite3WhereOkOnePass(WhereInfo*, int*);
3081a748fdccSdrh int sqlite3ExprCodeGetColumn(Parse*, Table*, int, int, int, u8);
30825c092e8aSdrh void sqlite3ExprCodeGetColumnOfTable(Vdbe*, Table*, int, int, int);
3083b21e7c70Sdrh void sqlite3ExprCodeMove(Parse*, int, int, int);
3084ceea3321Sdrh void sqlite3ExprCacheStore(Parse*, int, int, int);
3085ceea3321Sdrh void sqlite3ExprCachePush(Parse*);
3086*d2490904Sdrh void sqlite3ExprCachePop(Parse*);
3087f49f3523Sdrh void sqlite3ExprCacheRemove(Parse*, int, int);
3088ceea3321Sdrh void sqlite3ExprCacheClear(Parse*);
3089da250ea5Sdrh void sqlite3ExprCacheAffinityChange(Parse*, int, int);
309005a86c5cSdrh void sqlite3ExprCode(Parse*, Expr*, int);
309105a86c5cSdrh void sqlite3ExprCodeFactorable(Parse*, Expr*, int);
3092d673cddaSdrh void sqlite3ExprCodeAtInit(Parse*, Expr*, int, u8);
30932dcef11bSdrh int sqlite3ExprCodeTemp(Parse*, Expr*, int*);
3094678ccce8Sdrh int sqlite3ExprCodeTarget(Parse*, Expr*, int);
309505a86c5cSdrh void sqlite3ExprCodeAndCache(Parse*, Expr*, int);
3096d1a01edaSdrh int sqlite3ExprCodeExprList(Parse*, ExprList*, int, u8);
3097d1a01edaSdrh #define SQLITE_ECEL_DUP      0x01  /* Deep, not shallow copies */
3098d1a01edaSdrh #define SQLITE_ECEL_FACTOR   0x02  /* Factor out constant terms */
30994adee20fSdanielk1977 void sqlite3ExprIfTrue(Parse*, Expr*, int, int);
31004adee20fSdanielk1977 void sqlite3ExprIfFalse(Parse*, Expr*, int, int);
31019bb575fdSdrh Table *sqlite3FindTable(sqlite3*,const char*, const char*);
3102ca424114Sdrh Table *sqlite3LocateTable(Parse*,int isView,const char*, const char*);
310341fb5cd1Sdan Table *sqlite3LocateTableItem(Parse*,int isView,struct SrcList_item *);
31049bb575fdSdrh Index *sqlite3FindIndex(sqlite3*,const char*, const char*);
31059bb575fdSdrh void sqlite3UnlinkAndDeleteTable(sqlite3*,int,const char*);
31069bb575fdSdrh void sqlite3UnlinkAndDeleteIndex(sqlite3*,int,const char*);
310774161705Sdrh void sqlite3Vacuum(Parse*);
31089bb575fdSdrh int sqlite3RunVacuum(char**, sqlite3*);
310917435752Sdrh char *sqlite3NameFromToken(sqlite3*, Token*);
3110619a1305Sdrh int sqlite3ExprCompare(Expr*, Expr*, int);
3111619a1305Sdrh int sqlite3ExprListCompare(ExprList*, ExprList*, int);
31124bd5f73fSdrh int sqlite3ExprImpliesExpr(Expr*, Expr*, int);
3113d2b3e23bSdrh void sqlite3ExprAnalyzeAggregates(NameContext*, Expr*);
3114d2b3e23bSdrh void sqlite3ExprAnalyzeAggList(NameContext*,ExprList*);
3115030796dfSdrh int sqlite3FunctionUsesThisSrc(Expr*, SrcList*);
31164adee20fSdanielk1977 Vdbe *sqlite3GetVdbe(Parse*);
31172fa1868fSdrh void sqlite3PrngSaveState(void);
31182fa1868fSdrh void sqlite3PrngRestoreState(void);
31190f198a74Sdrh void sqlite3RollbackAll(sqlite3*,int);
31204adee20fSdanielk1977 void sqlite3CodeVerifySchema(Parse*, int);
312157966753Sdan void sqlite3CodeVerifyNamedSchema(Parse*, const char *zDb);
3122684917c2Sdrh void sqlite3BeginTransaction(Parse*, int);
31234adee20fSdanielk1977 void sqlite3CommitTransaction(Parse*);
31244adee20fSdanielk1977 void sqlite3RollbackTransaction(Parse*);
3125fd7f0452Sdanielk1977 void sqlite3Savepoint(Parse*, int, Token*);
3126fd7f0452Sdanielk1977 void sqlite3CloseSavepoints(sqlite3 *);
31274245c405Sdrh void sqlite3LeaveMutexAndCloseZombie(sqlite3*);
31284adee20fSdanielk1977 int sqlite3ExprIsConstant(Expr*);
31290a168377Sdrh int sqlite3ExprIsConstantNotJoin(Expr*);
3130eb55bd2fSdrh int sqlite3ExprIsConstantOrFunction(Expr*);
31314adee20fSdanielk1977 int sqlite3ExprIsInteger(Expr*, int*);
3132039fc32eSdrh int sqlite3ExprCanBeNull(const Expr*);
3133039fc32eSdrh int sqlite3ExprNeedsNoAffinityChange(const Expr*, char);
31344adee20fSdanielk1977 int sqlite3IsRowid(const char*);
3135392ee21dSdrh void sqlite3GenerateRowDelete(Parse*,Table*,Trigger*,int,int,int,i16,u8,u8,u8);
313626198bb4Sdrh void sqlite3GenerateRowIndexDelete(Parse*, Table*, int, int, int*);
31371c2c0b77Sdrh int sqlite3GenerateIndexKey(Parse*, Index*, int, int, int, int*,Index*,int);
313887744513Sdrh void sqlite3ResolvePartIdxLabel(Parse*,int);
3139f8ffb278Sdrh void sqlite3GenerateConstraintChecks(Parse*,Table*,int*,int,int,int,int,
3140f8ffb278Sdrh                                      u8,u8,int,int*);
314126198bb4Sdrh void sqlite3CompleteInsertion(Parse*,Table*,int,int,int,int*,int,int,int);
31426a53499aSdrh int sqlite3OpenTableAndIndices(Parse*, Table*, int, int, u8*, int*, int*);
31434adee20fSdanielk1977 void sqlite3BeginWriteOperation(Parse*, int, int);
3144ff738bceSdrh void sqlite3MultiWrite(Parse*);
3145e0af83acSdan void sqlite3MayAbort(Parse*);
3146f9c8ce3cSdrh void sqlite3HaltConstraint(Parse*, int, int, char*, i8, u8);
3147f9c8ce3cSdrh void sqlite3UniqueConstraint(Parse*, int, Index*);
3148f9c8ce3cSdrh void sqlite3RowidConstraint(Parse*, int, Table*);
31496ab3a2ecSdanielk1977 Expr *sqlite3ExprDup(sqlite3*,Expr*,int);
31506ab3a2ecSdanielk1977 ExprList *sqlite3ExprListDup(sqlite3*,ExprList*,int);
31516ab3a2ecSdanielk1977 SrcList *sqlite3SrcListDup(sqlite3*,SrcList*,int);
315217435752Sdrh IdList *sqlite3IdListDup(sqlite3*,IdList*);
31536ab3a2ecSdanielk1977 Select *sqlite3SelectDup(sqlite3*,Select*,int);
315470a8ca3cSdrh void sqlite3FuncDefInsert(FuncDefHash*, FuncDef*);
315589d5d6a2Sdrh FuncDef *sqlite3FindFunction(sqlite3*,const char*,int,int,u8,u8);
31569bb575fdSdrh void sqlite3RegisterBuiltinFunctions(sqlite3*);
3157777c5386Sdrh void sqlite3RegisterDateTimeFunctions(void);
315870a8ca3cSdrh void sqlite3RegisterGlobalFunctions(void);
31597e8b848aSdrh int sqlite3SafetyCheckOk(sqlite3*);
31607e8b848aSdrh int sqlite3SafetyCheckSickOrOk(sqlite3*);
31619cbf3425Sdrh void sqlite3ChangeCookie(Parse*, int);
3162fa4e62f3Sshane 
3163fa4e62f3Sshane #if !defined(SQLITE_OMIT_VIEW) && !defined(SQLITE_OMIT_TRIGGER)
31642a5d825eSdrh void sqlite3MaterializeView(Parse*, Table*, Expr*, int);
3165fa4e62f3Sshane #endif
3166b7f9164eSdrh 
3167b7f9164eSdrh #ifndef SQLITE_OMIT_TRIGGER
3168ef2cb63eSdanielk1977   void sqlite3BeginTrigger(Parse*, Token*,Token*,int,int,IdList*,SrcList*,
316960218d2aSdrh                            Expr*,int, int);
31704adee20fSdanielk1977   void sqlite3FinishTrigger(Parse*, TriggerStep*, Token*);
3171fdd48a76Sdrh   void sqlite3DropTrigger(Parse*, SrcList*, int);
317274161705Sdrh   void sqlite3DropTriggerPtr(Parse*, Trigger*);
31732f886d1dSdanielk1977   Trigger *sqlite3TriggersExist(Parse *, Table*, int, ExprList*, int *pMask);
31742f886d1dSdanielk1977   Trigger *sqlite3TriggerList(Parse *, Table *);
3175165921a7Sdan   void sqlite3CodeRowTrigger(Parse*, Trigger *, int, ExprList*, int, Table *,
317694d7f50aSdan                             int, int, int);
31771da40a38Sdan   void sqlite3CodeRowTriggerDirect(Parse *, Trigger *, Table *, int, int, int);
3178dc379456Sdrh   void sqliteViewTriggers(Parse*, Table*, Expr*, int, ExprList*);
3179633e6d57Sdrh   void sqlite3DeleteTriggerStep(sqlite3*, TriggerStep*);
318017435752Sdrh   TriggerStep *sqlite3TriggerSelectStep(sqlite3*,Select*);
318117435752Sdrh   TriggerStep *sqlite3TriggerInsertStep(sqlite3*,Token*, IdList*,
318275593d96Sdrh                                         Select*,u8);
31835eff7cf0Sshane   TriggerStep *sqlite3TriggerUpdateStep(sqlite3*,Token*,ExprList*, Expr*, u8);
318417435752Sdrh   TriggerStep *sqlite3TriggerDeleteStep(sqlite3*,Token*, Expr*);
3185633e6d57Sdrh   void sqlite3DeleteTrigger(sqlite3*, Trigger*);
3186b7f9164eSdrh   void sqlite3UnlinkAndDeleteTrigger(sqlite3*,int,const char*);
3187bb5f168fSdan   u32 sqlite3TriggerColmask(Parse*,Trigger*,ExprList*,int,int,Table*,int);
318865a7cd16Sdan # define sqlite3ParseToplevel(p) ((p)->pToplevel ? (p)->pToplevel : (p))
3189b7f9164eSdrh #else
319062c14b34Sdanielk1977 # define sqlite3TriggersExist(B,C,D,E,F) 0
3191633e6d57Sdrh # define sqlite3DeleteTrigger(A,B)
3192cdd536f0Sdrh # define sqlite3DropTriggerPtr(A,B)
3193b7f9164eSdrh # define sqlite3UnlinkAndDeleteTrigger(A,B,C)
319494d7f50aSdan # define sqlite3CodeRowTrigger(A,B,C,D,E,F,G,H,I)
319575cbd984Sdan # define sqlite3CodeRowTriggerDirect(A,B,C,D,E,F)
31962943c372Sdanielk1977 # define sqlite3TriggerList(X, Y) 0
319765a7cd16Sdan # define sqlite3ParseToplevel(p) p
3198bb5f168fSdan # define sqlite3TriggerColmask(A,B,C,D,E,F,G) 0
3199b7f9164eSdrh #endif
3200b7f9164eSdrh 
32014adee20fSdanielk1977 int sqlite3JoinType(Parse*, Token*, Token*, Token*);
32020202b29eSdanielk1977 void sqlite3CreateForeignKey(Parse*, ExprList*, Token*, ExprList*, int);
32034adee20fSdanielk1977 void sqlite3DeferForeignKey(Parse*, int);
3204ed6c8671Sdrh #ifndef SQLITE_OMIT_AUTHORIZATION
3205728b5779Sdrh   void sqlite3AuthRead(Parse*,Expr*,Schema*,SrcList*);
32064adee20fSdanielk1977   int sqlite3AuthCheck(Parse*,int, const char*, const char*, const char*);
32074adee20fSdanielk1977   void sqlite3AuthContextPush(Parse*, AuthContext*, const char*);
32084adee20fSdanielk1977   void sqlite3AuthContextPop(AuthContext*);
320902470b20Sdan   int sqlite3AuthReadCol(Parse*, const char *, const char *, int);
3210ed6c8671Sdrh #else
3211b5258c3dSdanielk1977 # define sqlite3AuthRead(a,b,c,d)
32124adee20fSdanielk1977 # define sqlite3AuthCheck(a,b,c,d,e)    SQLITE_OK
32134adee20fSdanielk1977 # define sqlite3AuthContextPush(a,b,c)
32144adee20fSdanielk1977 # define sqlite3AuthContextPop(a)  ((void)(a))
3215ed6c8671Sdrh #endif
3216f744bb56Sdanielk1977 void sqlite3Attach(Parse*, Expr*, Expr*, Expr*);
3217f744bb56Sdanielk1977 void sqlite3Detach(Parse*, Expr*);
3218d100f691Sdrh void sqlite3FixInit(DbFixer*, Parse*, int, const char*, const Token*);
32194adee20fSdanielk1977 int sqlite3FixSrcList(DbFixer*, SrcList*);
32204adee20fSdanielk1977 int sqlite3FixSelect(DbFixer*, Select*);
32214adee20fSdanielk1977 int sqlite3FixExpr(DbFixer*, Expr*);
32224adee20fSdanielk1977 int sqlite3FixExprList(DbFixer*, ExprList*);
32234adee20fSdanielk1977 int sqlite3FixTriggerStep(DbFixer*, TriggerStep*);
32249339da1fSdrh int sqlite3AtoF(const char *z, double*, int, u8);
3225fec19aadSdrh int sqlite3GetInt32(const char *, int*);
322660ac3f42Sdrh int sqlite3Atoi(const char*);
3227ee85813cSdrh int sqlite3Utf16ByteLen(const void *pData, int nChar);
3228ee85813cSdrh int sqlite3Utf8CharLen(const char *pData, int nByte);
322942610961Sdrh u32 sqlite3Utf8Read(const u8**);
3230bf539c4dSdrh LogEst sqlite3LogEst(u64);
3231bf539c4dSdrh LogEst sqlite3LogEstAdd(LogEst,LogEst);
3232bf539c4dSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
3233bf539c4dSdrh LogEst sqlite3LogEstFromDouble(double);
3234bf539c4dSdrh #endif
3235bf539c4dSdrh u64 sqlite3LogEstToInt(LogEst);
32363f8d5cfcSshane 
32373f8d5cfcSshane /*
32383f8d5cfcSshane ** Routines to read and write variable-length integers.  These used to
32393f8d5cfcSshane ** be defined locally, but now we use the varint routines in the util.c
3240952856adSshane ** file.  Code should use the MACRO forms below, as the Varint32 versions
3241952856adSshane ** are coded to assume the single byte case is already handled (which
3242952856adSshane ** the MACRO form does).
32433f8d5cfcSshane */
3244192ac1dcSdanielk1977 int sqlite3PutVarint(unsigned char*, u64);
324535b5a33eSdrh int sqlite3PutVarint32(unsigned char*, u32);
32461bd10f8aSdrh u8 sqlite3GetVarint(const unsigned char *, u64 *);
32471bd10f8aSdrh u8 sqlite3GetVarint32(const unsigned char *, u32 *);
3248192ac1dcSdanielk1977 int sqlite3VarintLen(u64 v);
32493f8d5cfcSshane 
32503f8d5cfcSshane /*
32513f8d5cfcSshane ** The header of a record consists of a sequence variable-length integers.
32523f8d5cfcSshane ** These integers are almost always small and are encoded as a single byte.
32533f8d5cfcSshane ** The following macros take advantage this fact to provide a fast encode
32543f8d5cfcSshane ** and decode of the integers in a record header.  It is faster for the common
32553f8d5cfcSshane ** case where the integer is a single byte.  It is a little slower when the
32563f8d5cfcSshane ** integer is two or more bytes.  But overall it is faster.
32573f8d5cfcSshane **
32583f8d5cfcSshane ** The following expressions are equivalent:
32593f8d5cfcSshane **
32603f8d5cfcSshane **     x = sqlite3GetVarint32( A, &B );
32613f8d5cfcSshane **     x = sqlite3PutVarint32( A, B );
32623f8d5cfcSshane **
32633f8d5cfcSshane **     x = getVarint32( A, B );
32643f8d5cfcSshane **     x = putVarint32( A, B );
32653f8d5cfcSshane **
32663f8d5cfcSshane */
32674bde3702Sdrh #define getVarint32(A,B)  \
32684bde3702Sdrh   (u8)((*(A)<(u8)0x80)?((B)=(u32)*(A)),1:sqlite3GetVarint32((A),(u32 *)&(B)))
32694bde3702Sdrh #define putVarint32(A,B)  \
32704bde3702Sdrh   (u8)(((u32)(B)<(u32)0x80)?(*(A)=(unsigned char)(B)),1:\
32714bde3702Sdrh   sqlite3PutVarint32((A),(B)))
32723f8d5cfcSshane #define getVarint    sqlite3GetVarint
32733f8d5cfcSshane #define putVarint    sqlite3PutVarint
32743f8d5cfcSshane 
32753f8d5cfcSshane 
327669f8bb9cSdan const char *sqlite3IndexAffinityStr(Vdbe *, Index *);
327757bf4a8eSdrh void sqlite3TableAffinity(Vdbe*, Table*, int);
3278e014a838Sdanielk1977 char sqlite3CompareAffinity(Expr *pExpr, char aff2);
3279e014a838Sdanielk1977 int sqlite3IndexAffinityOk(Expr *pExpr, char idx_affinity);
3280bf3b721fSdanielk1977 char sqlite3ExprAffinity(Expr *pExpr);
32819339da1fSdrh int sqlite3Atoi64(const char*, i64*, int, u8);
32829bb575fdSdrh void sqlite3Error(sqlite3*, int, const char*,...);
3283ca48c90fSdrh void *sqlite3HexToBlob(sqlite3*, const char *z, int n);
3284cd74b611Sdan u8 sqlite3HexToInt(int h);
3285ef2cb63eSdanielk1977 int sqlite3TwoPartName(Parse *, Token *, Token *, Token **);
3286dd08ca0fSmistachkin 
3287685e3c48Sdrh #if defined(SQLITE_TEST)
3288f2c1c99fSmistachkin const char *sqlite3ErrName(int);
3289dd08ca0fSmistachkin #endif
3290dd08ca0fSmistachkin 
3291f20b21c8Sdanielk1977 const char *sqlite3ErrStr(int);
32928a41449eSdanielk1977 int sqlite3ReadSchema(Parse *pParse);
3293c4a64facSdrh CollSeq *sqlite3FindCollSeq(sqlite3*,u8 enc, const char*,int);
3294c4a64facSdrh CollSeq *sqlite3LocateCollSeq(Parse *pParse, const char*zName);
32957cedc8d4Sdanielk1977 CollSeq *sqlite3ExprCollSeq(Parse *pParse, Expr *pExpr);
32964ef7efadSdrh Expr *sqlite3ExprAddCollateToken(Parse *pParse, Expr*, const Token*);
32970a8a406eSdrh Expr *sqlite3ExprAddCollateString(Parse*,Expr*,const char*);
32980a8a406eSdrh Expr *sqlite3ExprSkipCollate(Expr*);
32997cedc8d4Sdanielk1977 int sqlite3CheckCollSeq(Parse *, CollSeq *);
3300d8123366Sdanielk1977 int sqlite3CheckObjectName(Parse *, const char *);
3301b28af71aSdanielk1977 void sqlite3VdbeSetChanges(sqlite3 *, int);
3302158b9cb9Sdrh int sqlite3AddInt64(i64*,i64);
3303158b9cb9Sdrh int sqlite3SubInt64(i64*,i64);
3304158b9cb9Sdrh int sqlite3MulInt64(i64*,i64);
3305d50ffc41Sdrh int sqlite3AbsInt32(int);
330681cc5163Sdrh #ifdef SQLITE_ENABLE_8_3_NAMES
330781cc5163Sdrh void sqlite3FileSuffix3(const char*, char*);
330881cc5163Sdrh #else
330981cc5163Sdrh # define sqlite3FileSuffix3(X,Y)
331081cc5163Sdrh #endif
331138d9c612Sdrh u8 sqlite3GetBoolean(const char *z,int);
33124e6af134Sdanielk1977 
3313b21c8cd4Sdrh const void *sqlite3ValueText(sqlite3_value*, u8);
3314b21c8cd4Sdrh int sqlite3ValueBytes(sqlite3_value*, u8);
3315b21c8cd4Sdrh void sqlite3ValueSetStr(sqlite3_value*, int, const void *,u8,
33161e536953Sdanielk1977                         void(*)(void*));
3317a3cc007dSdrh void sqlite3ValueSetNull(sqlite3_value*);
33184e6af134Sdanielk1977 void sqlite3ValueFree(sqlite3_value*);
33191e536953Sdanielk1977 sqlite3_value *sqlite3ValueNew(sqlite3 *);
3320b7dca7d7Sdan char *sqlite3Utf16to8(sqlite3 *, const void*, int, u8);
33211e536953Sdanielk1977 int sqlite3ValueFromExpr(sqlite3 *, Expr *, u8, u8, sqlite3_value **);
3322b21c8cd4Sdrh void sqlite3ValueApplyAffinity(sqlite3_value *, u8, u8);
332346c99e0fSdrh #ifndef SQLITE_AMALGAMATION
3324a6c2ed91Sdrh extern const unsigned char sqlite3OpcodeProperty[];
33254e5ffc5fSdrh extern const unsigned char sqlite3UpperToLower[];
332678ca0e7eSdanielk1977 extern const unsigned char sqlite3CtypeMap[];
3327094430ebSdrh extern const Token sqlite3IntTokens[];
3328075c23afSdanielk1977 extern SQLITE_WSD struct Sqlite3Config sqlite3Config;
3329075c23afSdanielk1977 extern SQLITE_WSD FuncDefHash sqlite3GlobalFunctions;
3330f83dc1efSdrh #ifndef SQLITE_OMIT_WSD
3331ddb68e17Sdrh extern int sqlite3PendingByte;
333246c99e0fSdrh #endif
3333f83dc1efSdrh #endif
3334cdf011dcSdrh void sqlite3RootPageMoved(sqlite3*, int, int, int);
33354343fea2Sdrh void sqlite3Reindex(Parse*, Token*, Token*);
3336545f587fSdrh void sqlite3AlterFunctions(void);
33379fd2a9a0Sdanielk1977 void sqlite3AlterRenameTable(Parse*, SrcList*, Token*);
33389fd2a9a0Sdanielk1977 int sqlite3GetToken(const unsigned char *, int *);
33392958a4e6Sdrh void sqlite3NestedParse(Parse*, const char*, ...);
3340d89bd007Sdrh void sqlite3ExpirePreparedStatements(sqlite3*);
33411450bc6eSdrh int sqlite3CodeSubselect(Parse *, Expr *, int, int);
33427d10d5a6Sdrh void sqlite3SelectPrep(Parse*, Select*, NameContext*);
33433e3f1a5bSdrh int sqlite3MatchSpanName(const char*, const char*, const char*, const char*);
33447d10d5a6Sdrh int sqlite3ResolveExprNames(NameContext*, Expr*);
33457d10d5a6Sdrh void sqlite3ResolveSelectNames(Parse*, Select*, NameContext*);
33463780be11Sdrh void sqlite3ResolveSelfReference(Parse*,Table*,int,Expr*,ExprList*);
33477d10d5a6Sdrh int sqlite3ResolveOrderGroupBy(Parse*, Select*, ExprList*, const char*);
3348c7538b5fSdanielk1977 void sqlite3ColumnDefault(Vdbe *, Table *, int, int);
334919a8e7e8Sdanielk1977 void sqlite3AlterFinishAddColumn(Parse *, Token *);
335019a8e7e8Sdanielk1977 void sqlite3AlterBeginAddColumn(Parse *, SrcList *);
335179e72a50Sdrh CollSeq *sqlite3GetCollSeq(Parse*, u8, CollSeq *, const char*);
3352fdaac671Sdrh char sqlite3AffinityType(const char*, u8*);
33539f18e8a0Sdrh void sqlite3Analyze(Parse*, Token*, Token*);
3354a4afb65cSdrh int sqlite3InvokeBusyHandler(BusyHandler*);
3355ff2d5ea4Sdrh int sqlite3FindDb(sqlite3*, Token*);
33560410302eSdanielk1977 int sqlite3FindDbName(sqlite3 *, const char *);
3357cf1be45fSdrh int sqlite3AnalysisLoad(sqlite3*,int iDB);
3358d46def77Sdan void sqlite3DeleteIndexSamples(sqlite3*,Index*);
335951147baaSdrh void sqlite3DefaultRowEst(Index*);
336055ef4d97Sdrh void sqlite3RegisterLikeFunctions(sqlite3*, int);
3361d64fe2f3Sdrh int sqlite3IsLikeFunction(sqlite3*,Expr*,int*,char*);
3362fdd6e85aSdrh void sqlite3MinimumFileFormat(Parse*, int, int);
3363b6ee6607Sdrh void sqlite3SchemaClear(void *);
33641e536953Sdanielk1977 Schema *sqlite3SchemaGet(sqlite3 *, Btree *);
3365e501b89aSdanielk1977 int sqlite3SchemaToIndex(sqlite3 *db, Schema *);
3366ad124329Sdrh KeyInfo *sqlite3KeyInfoAlloc(sqlite3*,int,int);
33672ec2fb22Sdrh void sqlite3KeyInfoUnref(KeyInfo*);
33682ec2fb22Sdrh KeyInfo *sqlite3KeyInfoRef(KeyInfo*);
33692ec2fb22Sdrh KeyInfo *sqlite3KeyInfoOfIndex(Parse*, Index*);
33702ec2fb22Sdrh #ifdef SQLITE_DEBUG
33712ec2fb22Sdrh int sqlite3KeyInfoIsWriteable(KeyInfo*);
33722ec2fb22Sdrh #endif
3373771151b6Sdanielk1977 int sqlite3CreateFunc(sqlite3 *, const char *, int, int, void *,
3374771151b6Sdanielk1977   void (*)(sqlite3_context*,int,sqlite3_value **),
3375d2199f0fSdan   void (*)(sqlite3_context*,int,sqlite3_value **), void (*)(sqlite3_context*),
3376d2199f0fSdan   FuncDestructor *pDestructor
3377d2199f0fSdan );
337854f0198eSdanielk1977 int sqlite3ApiExit(sqlite3 *db, int);
3379ddfb2f03Sdanielk1977 int sqlite3OpenTempDatabase(Parse *);
338069dab1d3Sdrh 
3381f089aa45Sdrh void sqlite3StrAccumInit(StrAccum*, char*, int, int);
3382ade86483Sdrh void sqlite3StrAccumAppend(StrAccum*,const char*,int);
3383a6353a3fSdrh void sqlite3StrAccumAppendAll(StrAccum*,const char*);
33847e02e5e6Sdrh void sqlite3AppendSpace(StrAccum*,int);
3385ade86483Sdrh char *sqlite3StrAccumFinish(StrAccum*);
3386ade86483Sdrh void sqlite3StrAccumReset(StrAccum*);
33871013c932Sdrh void sqlite3SelectDestInit(SelectDest*,int,int);
3388f7b0b0adSdan Expr *sqlite3CreateColumnExpr(sqlite3 *, SrcList *, int, int);
33891e536953Sdanielk1977 
33900410302eSdanielk1977 void sqlite3BackupRestart(sqlite3_backup *);
33910410302eSdanielk1977 void sqlite3BackupUpdate(sqlite3_backup *, Pgno, const u8 *);
33920410302eSdanielk1977 
33931435a9a1Sdrh #ifdef SQLITE_ENABLE_STAT3_OR_STAT4
33949fecc546Sdrh void sqlite3AnalyzeFunctions(void);
339587cd9321Sdan int sqlite3Stat4ProbeSetValue(Parse*,Index*,UnpackedRecord**,Expr*,u8,int,int*);
33967a419235Sdan void sqlite3Stat4ProbeFree(UnpackedRecord*);
33979fecc546Sdrh #endif
33987a419235Sdan 
339995bdbbbdSdrh /*
340095bdbbbdSdrh ** The interface to the LEMON-generated parser
340195bdbbbdSdrh */
340295bdbbbdSdrh void *sqlite3ParserAlloc(void*(*)(size_t));
340395bdbbbdSdrh void sqlite3ParserFree(void*, void(*)(void*));
340495bdbbbdSdrh void sqlite3Parser(void*, int, Token, Parse*);
3405ec424a5bSdrh #ifdef YYTRACKMAXSTACKDEPTH
3406ec424a5bSdrh   int sqlite3ParserStackPeak(void*);
3407ec424a5bSdrh #endif
340895bdbbbdSdrh 
34097aaa8786Sdrh void sqlite3AutoLoadExtensions(sqlite3*);
341069dab1d3Sdrh #ifndef SQLITE_OMIT_LOAD_EXTENSION
3411f1952c5dSdrh   void sqlite3CloseExtensions(sqlite3*);
341269dab1d3Sdrh #else
341369dab1d3Sdrh # define sqlite3CloseExtensions(X)
341469dab1d3Sdrh #endif
3415e3026636Sdanielk1977 
3416c00da105Sdanielk1977 #ifndef SQLITE_OMIT_SHARED_CACHE
3417c00da105Sdanielk1977   void sqlite3TableLock(Parse *, int, int, u8, const char *);
3418c00da105Sdanielk1977 #else
3419c00da105Sdanielk1977   #define sqlite3TableLock(v,w,x,y,z)
3420c00da105Sdanielk1977 #endif
3421c00da105Sdanielk1977 
342253c14021Sdrh #ifdef SQLITE_TEST
342353c14021Sdrh   int sqlite3Utf8To8(unsigned char*);
342453c14021Sdrh #endif
342553c14021Sdrh 
3426b9bb7c18Sdrh #ifdef SQLITE_OMIT_VIRTUALTABLE
3427595a523aSdanielk1977 #  define sqlite3VtabClear(Y)
34289dbee7dcSdanielk1977 #  define sqlite3VtabSync(X,Y) SQLITE_OK
3429f9e7dda7Sdanielk1977 #  define sqlite3VtabRollback(X)
3430f9e7dda7Sdanielk1977 #  define sqlite3VtabCommit(X)
3431093e0f6fSdanielk1977 #  define sqlite3VtabInSync(db) 0
3432595a523aSdanielk1977 #  define sqlite3VtabLock(X)
3433595a523aSdanielk1977 #  define sqlite3VtabUnlock(X)
3434595a523aSdanielk1977 #  define sqlite3VtabUnlockList(X)
3435a311b803Sdan #  define sqlite3VtabSavepoint(X, Y, Z) SQLITE_OK
3436c3c8dac7Sdrh #  define sqlite3GetVTable(X,Y)  ((VTable*)0)
3437b9bb7c18Sdrh #else
34381feeaed2Sdan    void sqlite3VtabClear(sqlite3 *db, Table*);
3439bba02a95Sdan    void sqlite3VtabDisconnect(sqlite3 *db, Table *p);
3440016f7811Sdan    int sqlite3VtabSync(sqlite3 *db, Vdbe*);
3441f9e7dda7Sdanielk1977    int sqlite3VtabRollback(sqlite3 *db);
3442f9e7dda7Sdanielk1977    int sqlite3VtabCommit(sqlite3 *db);
3443595a523aSdanielk1977    void sqlite3VtabLock(VTable *);
3444595a523aSdanielk1977    void sqlite3VtabUnlock(VTable *);
3445595a523aSdanielk1977    void sqlite3VtabUnlockList(sqlite3*);
3446a311b803Sdan    int sqlite3VtabSavepoint(sqlite3 *, int, int);
3447016f7811Sdan    void sqlite3VtabImportErrmsg(Vdbe*, sqlite3_vtab*);
3448c3c8dac7Sdrh    VTable *sqlite3GetVTable(sqlite3*, Table*);
3449093e0f6fSdanielk1977 #  define sqlite3VtabInSync(db) ((db)->nVTrans>0 && (db)->aVTrans==0)
3450b9bb7c18Sdrh #endif
34514f3dd150Sdrh void sqlite3VtabMakeWritable(Parse*,Table*);
3452b421b894Sdrh void sqlite3VtabBeginParse(Parse*, Token*, Token*, Token*, int);
3453b9bb7c18Sdrh void sqlite3VtabFinishParse(Parse*, Token*);
3454b9bb7c18Sdrh void sqlite3VtabArgInit(Parse*);
3455b9bb7c18Sdrh void sqlite3VtabArgExtend(Parse*, Token*);
345678efaba1Sdanielk1977 int sqlite3VtabCallCreate(sqlite3*, int, const char *, char **);
34577e6ebfb2Sdanielk1977 int sqlite3VtabCallConnect(Parse*, Table*);
34589e39ce87Sdanielk1977 int sqlite3VtabCallDestroy(sqlite3*, int, const char *);
3459595a523aSdanielk1977 int sqlite3VtabBegin(sqlite3 *, VTable *);
34601e536953Sdanielk1977 FuncDef *sqlite3VtabOverloadFunction(sqlite3 *,FuncDef*, int nArg, Expr*);
3461b7481e70Sdrh void sqlite3InvalidFunction(sqlite3_context*,int,sqlite3_value**);
346295a7b3e3Sdrh sqlite3_int64 sqlite3StmtCurrentTime(sqlite3_context*);
34635f18a221Sdrh int sqlite3VdbeParameterIndex(Vdbe*, const char*, int);
34644a27a286Sshane int sqlite3TransferBindings(sqlite3_stmt *, sqlite3_stmt *);
3465f30a969bSdrh void sqlite3ParserReset(Parse*);
3466b900aaf3Sdrh int sqlite3Reprepare(Vdbe*);
3467b1a6c3c1Sdrh void sqlite3ExprListCheckLength(Parse*, ExprList*, const char*);
3468bcbb04e5Sdanielk1977 CollSeq *sqlite3BinaryCompareCollSeq(Parse *, Expr *, Expr *);
34691c514148Sdrh int sqlite3TempInMemory(const sqlite3*);
347028e5386fSdan const char *sqlite3JournalModename(int);
347106a2d825Sdan #ifndef SQLITE_OMIT_WAL
3472cdc1f049Sdan   int sqlite3Checkpoint(sqlite3*, int, int, int*, int*);
3473b033d8b9Sdrh   int sqlite3WalDefaultHook(void*,sqlite3*,const char*,int);
347406a2d825Sdan #endif
34758b471863Sdrh #ifndef SQLITE_OMIT_CTE
34764e9119d9Sdan   With *sqlite3WithAdd(Parse*,With*,Token*,ExprList*,Select*);
34777d562dbeSdan   void sqlite3WithDelete(sqlite3*,With*);
3478b290f117Sdan   void sqlite3WithPush(Parse*, With*, u8);
34794e9119d9Sdan #else
3480b290f117Sdan #define sqlite3WithPush(x,y,z)
3481eede6a53Sdan #define sqlite3WithDelete(x,y)
34828b471863Sdrh #endif
3483d829335eSdanielk1977 
348475cbd984Sdan /* Declarations for functions in fkey.c. All of these are replaced by
348575cbd984Sdan ** no-op macros if OMIT_FOREIGN_KEY is defined. In this case no foreign
348675cbd984Sdan ** key functionality is available. If OMIT_TRIGGER is defined but
348775cbd984Sdan ** OMIT_FOREIGN_KEY is not, only some of the functions are no-oped. In
348875cbd984Sdan ** this case foreign keys are parsed, but no other functionality is
348975cbd984Sdan ** provided (enforcement of FK constraints requires the triggers sub-system).
349075cbd984Sdan */
349175cbd984Sdan #if !defined(SQLITE_OMIT_FOREIGN_KEY) && !defined(SQLITE_OMIT_TRIGGER)
34928ff2d956Sdan   void sqlite3FkCheck(Parse*, Table*, int, int, int*, int);
3493d66c8309Sdan   void sqlite3FkDropTable(Parse*, SrcList *, Table*);
34948ff2d956Sdan   void sqlite3FkActions(Parse*, Table*, ExprList*, int, int*, int);
3495e7a94d81Sdan   int sqlite3FkRequired(Parse*, Table*, int*, int);
3496e7a94d81Sdan   u32 sqlite3FkOldmask(Parse*, Table*);
3497432cc5b9Sdan   FKey *sqlite3FkReferences(Table *);
34981da40a38Sdan #else
34998ff2d956Sdan   #define sqlite3FkActions(a,b,c,d,e,f)
350067896cefSdan   #define sqlite3FkCheck(a,b,c,d,e,f)
3501d66c8309Sdan   #define sqlite3FkDropTable(a,b,c)
3502e7a94d81Sdan   #define sqlite3FkOldmask(a,b)         0
350367896cefSdan   #define sqlite3FkRequired(a,b,c,d)    0
35041da40a38Sdan #endif
350575cbd984Sdan #ifndef SQLITE_OMIT_FOREIGN_KEY
35061feeaed2Sdan   void sqlite3FkDelete(sqlite3 *, Table*);
35076c5b915fSdrh   int sqlite3FkLocateIndex(Parse*,Table*,FKey*,Index**,int**);
350875cbd984Sdan #else
35091feeaed2Sdan   #define sqlite3FkDelete(a,b)
35106c5b915fSdrh   #define sqlite3FkLocateIndex(a,b,c,d,e)
351175cbd984Sdan #endif
351275cbd984Sdan 
3513643167ffSdrh 
3514643167ffSdrh /*
3515643167ffSdrh ** Available fault injectors.  Should be numbered beginning with 0.
3516643167ffSdrh */
3517643167ffSdrh #define SQLITE_FAULTINJECTOR_MALLOC     0
35187e8b848aSdrh #define SQLITE_FAULTINJECTOR_COUNT      1
3519643167ffSdrh 
3520643167ffSdrh /*
3521ef05f2dfSdanielk1977 ** The interface to the code in fault.c used for identifying "benign"
3522ef05f2dfSdanielk1977 ** malloc failures. This is only present if SQLITE_OMIT_BUILTIN_TEST
3523ef05f2dfSdanielk1977 ** is not defined.
3524643167ffSdrh */
35253088d59eSdrh #ifndef SQLITE_OMIT_BUILTIN_TEST
35262d1d86fbSdanielk1977   void sqlite3BeginBenignMalloc(void);
35272d1d86fbSdanielk1977   void sqlite3EndBenignMalloc(void);
3528643167ffSdrh #else
35292d1d86fbSdanielk1977   #define sqlite3BeginBenignMalloc()
3530867d05a0Sdanielk1977   #define sqlite3EndBenignMalloc()
3531643167ffSdrh #endif
3532643167ffSdrh 
35339a96b668Sdanielk1977 #define IN_INDEX_ROWID           1
35349a96b668Sdanielk1977 #define IN_INDEX_EPH             2
35351ccce449Sdrh #define IN_INDEX_INDEX_ASC       3
35361ccce449Sdrh #define IN_INDEX_INDEX_DESC      4
35370cdc022eSdanielk1977 int sqlite3FindInIndex(Parse *, Expr *, int*);
35389a96b668Sdanielk1977 
3539c7b6017cSdanielk1977 #ifdef SQLITE_ENABLE_ATOMIC_WRITE
3540c7b6017cSdanielk1977   int sqlite3JournalOpen(sqlite3_vfs *, const char *, sqlite3_file *, int, int);
3541c7b6017cSdanielk1977   int sqlite3JournalSize(sqlite3_vfs *);
3542f55b8998Sdanielk1977   int sqlite3JournalCreate(sqlite3_file *);
35433de0f184Sdan   int sqlite3JournalExists(sqlite3_file *p);
3544c7b6017cSdanielk1977 #else
3545c7b6017cSdanielk1977   #define sqlite3JournalSize(pVfs) ((pVfs)->szOsFile)
35463de0f184Sdan   #define sqlite3JournalExists(p) 1
3547c7b6017cSdanielk1977 #endif
3548c7b6017cSdanielk1977 
3549b3175389Sdanielk1977 void sqlite3MemJournalOpen(sqlite3_file *);
35503a5990abSdrh int sqlite3MemJournalSize(void);
3551b3175389Sdanielk1977 int sqlite3IsMemJournal(sqlite3_file *);
3552b3175389Sdanielk1977 
35530224d26dSdrh #if SQLITE_MAX_EXPR_DEPTH>0
35544b5255acSdanielk1977   void sqlite3ExprSetHeight(Parse *pParse, Expr *p);
3555fc976065Sdanielk1977   int sqlite3SelectExprHeight(Select *);
35567d10d5a6Sdrh   int sqlite3ExprCheckHeight(Parse*, int);
3557fc976065Sdanielk1977 #else
35584b5255acSdanielk1977   #define sqlite3ExprSetHeight(x,y)
35590224d26dSdrh   #define sqlite3SelectExprHeight(x) 0
35607d10d5a6Sdrh   #define sqlite3ExprCheckHeight(x,y)
3561fc976065Sdanielk1977 #endif
3562fc976065Sdanielk1977 
3563a3152895Sdrh u32 sqlite3Get4byte(const u8*);
3564a3152895Sdrh void sqlite3Put4byte(u8*, u32);
3565a3152895Sdrh 
3566404ca075Sdanielk1977 #ifdef SQLITE_ENABLE_UNLOCK_NOTIFY
3567404ca075Sdanielk1977   void sqlite3ConnectionBlocked(sqlite3 *, sqlite3 *);
3568404ca075Sdanielk1977   void sqlite3ConnectionUnlocked(sqlite3 *db);
3569404ca075Sdanielk1977   void sqlite3ConnectionClosed(sqlite3 *db);
3570404ca075Sdanielk1977 #else
3571404ca075Sdanielk1977   #define sqlite3ConnectionBlocked(x,y)
3572404ca075Sdanielk1977   #define sqlite3ConnectionUnlocked(x)
3573404ca075Sdanielk1977   #define sqlite3ConnectionClosed(x)
3574404ca075Sdanielk1977 #endif
3575404ca075Sdanielk1977 
35766e736838Sdrh #ifdef SQLITE_DEBUG
35776e736838Sdrh   void sqlite3ParserTrace(FILE*, char *);
35786e736838Sdrh #endif
35796e736838Sdrh 
3580b0603416Sdrh /*
3581b0603416Sdrh ** If the SQLITE_ENABLE IOTRACE exists then the global variable
35823a00f907Smlcreech ** sqlite3IoTrace is a pointer to a printf-like routine used to
3583b0603416Sdrh ** print I/O tracing messages.
3584b0603416Sdrh */
3585b0603416Sdrh #ifdef SQLITE_ENABLE_IOTRACE
35863a00f907Smlcreech # define IOTRACE(A)  if( sqlite3IoTrace ){ sqlite3IoTrace A; }
3587b4622b60Sdanielk1977   void sqlite3VdbeIOTraceSql(Vdbe*);
3588e265b084Sdrh SQLITE_EXTERN void (*sqlite3IoTrace)(const char*,...);
3589b0603416Sdrh #else
3590b0603416Sdrh # define IOTRACE(A)
3591b4622b60Sdanielk1977 # define sqlite3VdbeIOTraceSql(X)
3592b0603416Sdrh #endif
3593b0603416Sdrh 
3594107b56e8Sdrh /*
3595107b56e8Sdrh ** These routines are available for the mem2.c debugging memory allocator
3596107b56e8Sdrh ** only.  They are used to verify that different "types" of memory
3597107b56e8Sdrh ** allocations are properly tracked by the system.
3598107b56e8Sdrh **
3599107b56e8Sdrh ** sqlite3MemdebugSetType() sets the "type" of an allocation to one of
3600107b56e8Sdrh ** the MEMTYPE_* macros defined below.  The type must be a bitmask with
3601107b56e8Sdrh ** a single bit set.
3602107b56e8Sdrh **
3603107b56e8Sdrh ** sqlite3MemdebugHasType() returns true if any of the bits in its second
3604107b56e8Sdrh ** argument match the type set by the previous sqlite3MemdebugSetType().
3605107b56e8Sdrh ** sqlite3MemdebugHasType() is intended for use inside assert() statements.
3606107b56e8Sdrh **
3607174b9a16Sdrh ** sqlite3MemdebugNoType() returns true if none of the bits in its second
3608174b9a16Sdrh ** argument match the type set by the previous sqlite3MemdebugSetType().
3609107b56e8Sdrh **
3610107b56e8Sdrh ** Perhaps the most important point is the difference between MEMTYPE_HEAP
3611174b9a16Sdrh ** and MEMTYPE_LOOKASIDE.  If an allocation is MEMTYPE_LOOKASIDE, that means
3612174b9a16Sdrh ** it might have been allocated by lookaside, except the allocation was
3613174b9a16Sdrh ** too large or lookaside was already full.  It is important to verify
3614174b9a16Sdrh ** that allocations that might have been satisfied by lookaside are not
3615174b9a16Sdrh ** passed back to non-lookaside free() routines.  Asserts such as the
3616174b9a16Sdrh ** example above are placed on the non-lookaside free() routines to verify
3617174b9a16Sdrh ** this constraint.
3618107b56e8Sdrh **
3619107b56e8Sdrh ** All of this is no-op for a production build.  It only comes into
3620107b56e8Sdrh ** play when the SQLITE_MEMDEBUG compile-time option is used.
3621107b56e8Sdrh */
3622107b56e8Sdrh #ifdef SQLITE_MEMDEBUG
3623107b56e8Sdrh   void sqlite3MemdebugSetType(void*,u8);
3624107b56e8Sdrh   int sqlite3MemdebugHasType(void*,u8);
3625174b9a16Sdrh   int sqlite3MemdebugNoType(void*,u8);
3626107b56e8Sdrh #else
3627107b56e8Sdrh # define sqlite3MemdebugSetType(X,Y)  /* no-op */
3628107b56e8Sdrh # define sqlite3MemdebugHasType(X,Y)  1
3629174b9a16Sdrh # define sqlite3MemdebugNoType(X,Y)   1
3630e3026636Sdanielk1977 #endif
3631107b56e8Sdrh #define MEMTYPE_HEAP       0x01  /* General heap allocations */
3632174b9a16Sdrh #define MEMTYPE_LOOKASIDE  0x02  /* Might have been lookaside memory */
3633107b56e8Sdrh #define MEMTYPE_SCRATCH    0x04  /* Scratch allocations */
3634107b56e8Sdrh #define MEMTYPE_PCACHE     0x08  /* Page cache allocations */
3635174b9a16Sdrh #define MEMTYPE_DB         0x10  /* Uses sqlite3DbMalloc, not sqlite_malloc */
3636107b56e8Sdrh 
3637107b56e8Sdrh #endif /* _SQLITEINT_H_ */
3638