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 5033ac4c8bSmistachkin /* Needed for various definitions... */ 5133ac4c8bSmistachkin #if defined(__GNUC__) && !defined(_GNU_SOURCE) 5233ac4c8bSmistachkin # define _GNU_SOURCE 5333ac4c8bSmistachkin #endif 5433ac4c8bSmistachkin 5533ac4c8bSmistachkin #if defined(__OpenBSD__) && !defined(_BSD_SOURCE) 5633ac4c8bSmistachkin # define _BSD_SOURCE 5733ac4c8bSmistachkin #endif 5833ac4c8bSmistachkin 592210dcc6Sdrh /* 60a7b3b635Smistachkin ** For MinGW, check to see if we can include the header file containing its 61a7b3b635Smistachkin ** version information, among other things. Normally, this internal MinGW 62a7b3b635Smistachkin ** header file would [only] be included automatically by other MinGW header 63a7b3b635Smistachkin ** files; however, the contained version information is now required by this 64a7b3b635Smistachkin ** header file to work around binary compatibility issues (see below) and 65a7b3b635Smistachkin ** this is the only known way to reliably obtain it. This entire #if block 66a7b3b635Smistachkin ** would be completely unnecessary if there was any other way of detecting 67a7b3b635Smistachkin ** MinGW via their preprocessor (e.g. if they customized their GCC to define 68a7b3b635Smistachkin ** some MinGW-specific macros). When compiling for MinGW, either the 69a7b3b635Smistachkin ** _HAVE_MINGW_H or _HAVE__MINGW_H (note the extra underscore) macro must be 70a7b3b635Smistachkin ** defined; otherwise, detection of conditions specific to MinGW will be 71a7b3b635Smistachkin ** disabled. 72a7b3b635Smistachkin */ 73a7b3b635Smistachkin #if defined(_HAVE_MINGW_H) 74a7b3b635Smistachkin # include "mingw.h" 75a7b3b635Smistachkin #elif defined(_HAVE__MINGW_H) 76a7b3b635Smistachkin # include "_mingw.h" 77a7b3b635Smistachkin #endif 78a7b3b635Smistachkin 79a7b3b635Smistachkin /* 80a7b3b635Smistachkin ** For MinGW version 4.x (and higher), check to see if the _USE_32BIT_TIME_T 81a7b3b635Smistachkin ** define is required to maintain binary compatibility with the MSVC runtime 82a7b3b635Smistachkin ** library in use (e.g. for Windows XP). 83a7b3b635Smistachkin */ 84a7b3b635Smistachkin #if !defined(_USE_32BIT_TIME_T) && !defined(_USE_64BIT_TIME_T) && \ 85a7b3b635Smistachkin defined(_WIN32) && !defined(_WIN64) && \ 8665acf373Smistachkin defined(__MINGW_MAJOR_VERSION) && __MINGW_MAJOR_VERSION >= 4 && \ 87a7b3b635Smistachkin defined(__MSVCRT__) 88a7b3b635Smistachkin # define _USE_32BIT_TIME_T 89a7b3b635Smistachkin #endif 90a7b3b635Smistachkin 915e990beaSdrh /* The public SQLite interface. The _FILE_OFFSET_BITS macro must appear 920d71d121Smistachkin ** first in QNX. Also, the _USE_32BIT_TIME_T macro must appear first for 930d71d121Smistachkin ** MinGW. 945e990beaSdrh */ 955e990beaSdrh #include "sqlite3.h" 965e990beaSdrh 97bd0ae111Smlcreech /* 981e12d43bSmlcreech ** Include the configuration header output by 'configure' if we're using the 991e12d43bSmlcreech ** autoconf-based build 100bd0ae111Smlcreech */ 1011e12d43bSmlcreech #ifdef _HAVE_SQLITE_CONFIG_H 10298dc4b1aSmlcreech #include "config.h" 1031e12d43bSmlcreech #endif 1041e12d43bSmlcreech 105bb4957f8Sdrh #include "sqliteLimit.h" 10698dc4b1aSmlcreech 107e2965827Sdrh /* Disable nuisance warnings on Borland compilers */ 108e2965827Sdrh #if defined(__BORLANDC__) 109e2965827Sdrh #pragma warn -rch /* unreachable code */ 110e2965827Sdrh #pragma warn -ccc /* Condition is always true or false */ 111e2965827Sdrh #pragma warn -aus /* Assigned value is never used */ 112e2965827Sdrh #pragma warn -csu /* Comparing signed and unsigned */ 113467bcf36Sshane #pragma warn -spa /* Suspicious pointer arithmetic */ 114e2965827Sdrh #endif 115e2965827Sdrh 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 /* 15714a924a5Sdrh ** A macro to hint to the compiler that a function should not be 15814a924a5Sdrh ** inlined. 15914a924a5Sdrh */ 16014a924a5Sdrh #if defined(__GNUC__) 16114a924a5Sdrh # define SQLITE_NOINLINE __attribute__((noinline)) 16214a924a5Sdrh #elif defined(_MSC_VER) 16314a924a5Sdrh # define SQLITE_NOINLINE __declspec(noinline) 16414a924a5Sdrh #else 16514a924a5Sdrh # define SQLITE_NOINLINE 16614a924a5Sdrh #endif 16714a924a5Sdrh 16814a924a5Sdrh /* 16938c67c36Sdrh ** The SQLITE_THREADSAFE macro must be defined as 0, 1, or 2. 17038c67c36Sdrh ** 0 means mutexes are permanently disable and the library is never 17138c67c36Sdrh ** threadsafe. 1 means the library is serialized which is the highest 172f7b5496eSdrh ** level of threadsafety. 2 means the library is multithreaded - multiple 17338c67c36Sdrh ** threads can use SQLite as long as no two threads try to use the same 17438c67c36Sdrh ** database connection at the same time. 17538c67c36Sdrh ** 176e5e7a901Sdrh ** Older versions of SQLite used an optional THREADSAFE macro. 17738c67c36Sdrh ** We support that for legacy. 178e5e7a901Sdrh */ 179e5e7a901Sdrh #if !defined(SQLITE_THREADSAFE) 180e5e7a901Sdrh # if defined(THREADSAFE) 181e5e7a901Sdrh # define SQLITE_THREADSAFE THREADSAFE 182e5e7a901Sdrh # else 18338c67c36Sdrh # define SQLITE_THREADSAFE 1 /* IMP: R-07272-22309 */ 184e5e7a901Sdrh # endif 185e5e7a901Sdrh #endif 186e5e7a901Sdrh 18767080617Sdrh /* 188cb15f35fSdrh ** Powersafe overwrite is on by default. But can be turned off using 189cb15f35fSdrh ** the -DSQLITE_POWERSAFE_OVERWRITE=0 command-line option. 190cb15f35fSdrh */ 191cb15f35fSdrh #ifndef SQLITE_POWERSAFE_OVERWRITE 192cb15f35fSdrh # define SQLITE_POWERSAFE_OVERWRITE 1 193cb15f35fSdrh #endif 194cb15f35fSdrh 195cb15f35fSdrh /* 1960a732f59Sdanielk1977 ** The SQLITE_DEFAULT_MEMSTATUS macro must be defined as either 0 or 1. 1970a732f59Sdanielk1977 ** It determines whether or not the features related to 198467bcf36Sshane ** SQLITE_CONFIG_MEMSTATUS are available by default or not. This value can 1990a732f59Sdanielk1977 ** be overridden at runtime using the sqlite3_config() API. 2000a732f59Sdanielk1977 */ 2010a732f59Sdanielk1977 #if !defined(SQLITE_DEFAULT_MEMSTATUS) 2020a732f59Sdanielk1977 # define SQLITE_DEFAULT_MEMSTATUS 1 2030a732f59Sdanielk1977 #endif 2040a732f59Sdanielk1977 2050a732f59Sdanielk1977 /* 2060d18020bSdrh ** Exactly one of the following macros must be defined in order to 2070d18020bSdrh ** specify which memory allocation subsystem to use. 2080d18020bSdrh ** 2090d18020bSdrh ** SQLITE_SYSTEM_MALLOC // Use normal system malloc() 2101b186a99Smistachkin ** SQLITE_WIN32_MALLOC // Use Win32 native heap API 211d1b0afc3Sdrh ** SQLITE_ZERO_MALLOC // Use a stub allocator that always fails 2120d18020bSdrh ** SQLITE_MEMDEBUG // Debugging version of system malloc() 213a2460e07Sdrh ** 214753c5444Smistachkin ** On Windows, if the SQLITE_WIN32_MALLOC_VALIDATE macro is defined and the 215753c5444Smistachkin ** assert() macro is enabled, each call into the Win32 native heap subsystem 216753c5444Smistachkin ** will cause HeapValidate to be called. If heap validation should fail, an 217753c5444Smistachkin ** assertion will be triggered. 218753c5444Smistachkin ** 2190d18020bSdrh ** If none of the above are defined, then set SQLITE_SYSTEM_MALLOC as 2200d18020bSdrh ** the default. 2210d18020bSdrh */ 222d1b0afc3Sdrh #if defined(SQLITE_SYSTEM_MALLOC) \ 223d1b0afc3Sdrh + defined(SQLITE_WIN32_MALLOC) \ 224d1b0afc3Sdrh + defined(SQLITE_ZERO_MALLOC) \ 225d1b0afc3Sdrh + defined(SQLITE_MEMDEBUG)>1 226d1b0afc3Sdrh # error "Two or more of the following compile-time configuration options\ 22720b1ff07Smistachkin are defined but at most one is allowed:\ 228d1b0afc3Sdrh SQLITE_SYSTEM_MALLOC, SQLITE_WIN32_MALLOC, SQLITE_MEMDEBUG,\ 229d1b0afc3Sdrh SQLITE_ZERO_MALLOC" 2300d18020bSdrh #endif 231d1b0afc3Sdrh #if defined(SQLITE_SYSTEM_MALLOC) \ 232d1b0afc3Sdrh + defined(SQLITE_WIN32_MALLOC) \ 233d1b0afc3Sdrh + defined(SQLITE_ZERO_MALLOC) \ 234d1b0afc3Sdrh + defined(SQLITE_MEMDEBUG)==0 2350d18020bSdrh # define SQLITE_SYSTEM_MALLOC 1 2360d18020bSdrh #endif 2370d18020bSdrh 2380d18020bSdrh /* 2398a1e594cSdrh ** If SQLITE_MALLOC_SOFT_LIMIT is not zero, then try to keep the 240eee4c8caSdrh ** sizes of memory allocations below this value where possible. 241eee4c8caSdrh */ 2428a1e594cSdrh #if !defined(SQLITE_MALLOC_SOFT_LIMIT) 243eee4c8caSdrh # define SQLITE_MALLOC_SOFT_LIMIT 1024 244eee4c8caSdrh #endif 245eee4c8caSdrh 246eee4c8caSdrh /* 24767080617Sdrh ** We need to define _XOPEN_SOURCE as follows in order to enable 24840b521f8Sdrh ** recursive mutexes on most Unix systems and fchmod() on OpenBSD. 24940b521f8Sdrh ** But _XOPEN_SOURCE define causes problems for Mac OS X, so omit 25040b521f8Sdrh ** it. 25167080617Sdrh */ 25240b521f8Sdrh #if !defined(_XOPEN_SOURCE) && !defined(__DARWIN__) && !defined(__APPLE__) 25340b521f8Sdrh # define _XOPEN_SOURCE 600 254824d7c18Sdrh #endif 255824d7c18Sdrh 256824d7c18Sdrh /* 2571b28b893Sdrh ** NDEBUG and SQLITE_DEBUG are opposites. It should always be true that 2581b28b893Sdrh ** defined(NDEBUG)==!defined(SQLITE_DEBUG). If this is not currently true, 2591b28b893Sdrh ** make it true by defining or undefining NDEBUG. 2601b28b893Sdrh ** 261443dbcf5Sdrh ** Setting NDEBUG makes the code smaller and faster by disabling the 262443dbcf5Sdrh ** assert() statements in the code. So we want the default action 2631b28b893Sdrh ** to be for NDEBUG to be set and NDEBUG to be undefined only if SQLITE_DEBUG 2641b28b893Sdrh ** is set. Thus NDEBUG becomes an opt-in rather than an opt-out 2654b529d97Sdrh ** feature. 2664b529d97Sdrh */ 267289ab076Sdrh #if !defined(NDEBUG) && !defined(SQLITE_DEBUG) 2684b529d97Sdrh # define NDEBUG 1 2694b529d97Sdrh #endif 2701b28b893Sdrh #if defined(NDEBUG) && defined(SQLITE_DEBUG) 2711b28b893Sdrh # undef NDEBUG 2721b28b893Sdrh #endif 2734b529d97Sdrh 2746402250eSdrh /* 275c7379ce4Sdrh ** Enable SQLITE_ENABLE_EXPLAIN_COMMENTS if SQLITE_DEBUG is turned on. 276c7379ce4Sdrh */ 277c7379ce4Sdrh #if !defined(SQLITE_ENABLE_EXPLAIN_COMMENTS) && defined(SQLITE_DEBUG) 278c7379ce4Sdrh # define SQLITE_ENABLE_EXPLAIN_COMMENTS 1 279c7379ce4Sdrh #endif 280c7379ce4Sdrh 281c7379ce4Sdrh /* 28247c3b3e0Sdrh ** The testcase() macro is used to aid in coverage testing. When 28347c3b3e0Sdrh ** doing coverage testing, the condition inside the argument to 28447c3b3e0Sdrh ** testcase() must be evaluated both true and false in order to 28547c3b3e0Sdrh ** get full branch coverage. The testcase() macro is inserted 28647c3b3e0Sdrh ** to help ensure adequate test coverage in places where simple 28747c3b3e0Sdrh ** condition/decision coverage is inadequate. For example, testcase() 28847c3b3e0Sdrh ** can be used to make sure boundary values are tested. For 28947c3b3e0Sdrh ** bitmask tests, testcase() can be used to make sure each bit 29047c3b3e0Sdrh ** is significant and used at least once. On switch statements 29147c3b3e0Sdrh ** where multiple cases go to the same block of code, testcase() 29247c3b3e0Sdrh ** can insure that all cases are evaluated. 29347c3b3e0Sdrh ** 29447c3b3e0Sdrh */ 29547c3b3e0Sdrh #ifdef SQLITE_COVERAGE_TEST 29647c3b3e0Sdrh void sqlite3Coverage(int); 29747c3b3e0Sdrh # define testcase(X) if( X ){ sqlite3Coverage(__LINE__); } 29847c3b3e0Sdrh #else 29947c3b3e0Sdrh # define testcase(X) 3008f941bc7Sdrh #endif 3018f941bc7Sdrh 3028f941bc7Sdrh /* 3038f941bc7Sdrh ** The TESTONLY macro is used to enclose variable declarations or 3048f941bc7Sdrh ** other bits of code that are needed to support the arguments 3058f941bc7Sdrh ** within testcase() and assert() macros. 3068f941bc7Sdrh */ 3078f941bc7Sdrh #if !defined(NDEBUG) || defined(SQLITE_COVERAGE_TEST) 3088f941bc7Sdrh # define TESTONLY(X) X 3098f941bc7Sdrh #else 31047c3b3e0Sdrh # define TESTONLY(X) 31147c3b3e0Sdrh #endif 31247c3b3e0Sdrh 31347c3b3e0Sdrh /* 3146149526cSdrh ** Sometimes we need a small amount of code such as a variable initialization 3156149526cSdrh ** to setup for a later assert() statement. We do not want this code to 3166149526cSdrh ** appear when assert() is disabled. The following macro is therefore 3176149526cSdrh ** used to contain that setup code. The "VVA" acronym stands for 3186149526cSdrh ** "Verification, Validation, and Accreditation". In other words, the 3196149526cSdrh ** code within VVA_ONLY() will only run during verification processes. 3206149526cSdrh */ 3216149526cSdrh #ifndef NDEBUG 3226149526cSdrh # define VVA_ONLY(X) X 3236149526cSdrh #else 3246149526cSdrh # define VVA_ONLY(X) 3256149526cSdrh #endif 3266149526cSdrh 3276149526cSdrh /* 32847c3b3e0Sdrh ** The ALWAYS and NEVER macros surround boolean expressions which 32947c3b3e0Sdrh ** are intended to always be true or false, respectively. Such 33047c3b3e0Sdrh ** expressions could be omitted from the code completely. But they 33147c3b3e0Sdrh ** are included in a few cases in order to enhance the resilience 33247c3b3e0Sdrh ** of SQLite to unexpected behavior - to make the code "self-healing" 33347c3b3e0Sdrh ** or "ductile" rather than being "brittle" and crashing at the first 33447c3b3e0Sdrh ** hint of unplanned behavior. 33547c3b3e0Sdrh ** 33647c3b3e0Sdrh ** In other words, ALWAYS and NEVER are added for defensive code. 33747c3b3e0Sdrh ** 33847c3b3e0Sdrh ** When doing coverage testing ALWAYS and NEVER are hard-coded to 339443dbcf5Sdrh ** be true and false so that the unreachable code they specify will 34047c3b3e0Sdrh ** not be counted as untested code. 34147c3b3e0Sdrh */ 34247c3b3e0Sdrh #if defined(SQLITE_COVERAGE_TEST) 34347c3b3e0Sdrh # define ALWAYS(X) (1) 34447c3b3e0Sdrh # define NEVER(X) (0) 34547c3b3e0Sdrh #elif !defined(NDEBUG) 3462de80f4cSdrh # define ALWAYS(X) ((X)?1:(assert(0),0)) 3472de80f4cSdrh # define NEVER(X) ((X)?(assert(0),1):0) 34847c3b3e0Sdrh #else 34947c3b3e0Sdrh # define ALWAYS(X) (X) 35047c3b3e0Sdrh # define NEVER(X) (X) 35147c3b3e0Sdrh #endif 35247c3b3e0Sdrh 35347c3b3e0Sdrh /* 35460ec914cSpeter.d.reid ** Return true (non-zero) if the input is an integer that is too large 3553e8e7ecbSdrh ** to fit in 32-bits. This macro is used inside of various testcase() 3563e8e7ecbSdrh ** macros to verify that we have tested SQLite for large-file support. 3573e8e7ecbSdrh */ 358b31a6afaSdan #define IS_BIG_INT(X) (((X)&~(i64)0xffffffff)!=0) 3593e8e7ecbSdrh 3603e8e7ecbSdrh /* 36147c3b3e0Sdrh ** The macro unlikely() is a hint that surrounds a boolean 36247c3b3e0Sdrh ** expression that is usually false. Macro likely() surrounds 363443dbcf5Sdrh ** a boolean expression that is usually true. These hints could, 364443dbcf5Sdrh ** in theory, be used by the compiler to generate better code, but 365443dbcf5Sdrh ** currently they are just comments for human readers. 36647c3b3e0Sdrh */ 367443dbcf5Sdrh #define likely(X) (X) 368443dbcf5Sdrh #define unlikely(X) (X) 36947c3b3e0Sdrh 370beae3194Sdrh #include "hash.h" 37175897234Sdrh #include "parse.h" 37275897234Sdrh #include <stdio.h> 37375897234Sdrh #include <stdlib.h> 37475897234Sdrh #include <string.h> 37575897234Sdrh #include <assert.h> 37652370e2cSdrh #include <stddef.h> 37775897234Sdrh 378967e8b73Sdrh /* 379b37df7b9Sdrh ** If compiling for a processor that lacks floating point support, 380b37df7b9Sdrh ** substitute integer for floating-point 381b37df7b9Sdrh */ 382b37df7b9Sdrh #ifdef SQLITE_OMIT_FLOATING_POINT 383b37df7b9Sdrh # define double sqlite_int64 3848b307fbfSdrh # define float sqlite_int64 385b37df7b9Sdrh # define LONGDOUBLE_TYPE sqlite_int64 386d1167393Sdrh # ifndef SQLITE_BIG_DBL 387cdaca55eSdrh # define SQLITE_BIG_DBL (((sqlite3_int64)1)<<50) 388d1167393Sdrh # endif 389b37df7b9Sdrh # define SQLITE_OMIT_DATETIME_FUNCS 1 390b37df7b9Sdrh # define SQLITE_OMIT_TRACE 1 391110daac9Sdrh # undef SQLITE_MIXED_ENDIAN_64BIT_FLOAT 3920b3bf924Sdrh # undef SQLITE_HAVE_ISNAN 393b37df7b9Sdrh #endif 394d1167393Sdrh #ifndef SQLITE_BIG_DBL 395d1167393Sdrh # define SQLITE_BIG_DBL (1e99) 396d1167393Sdrh #endif 397b37df7b9Sdrh 398b37df7b9Sdrh /* 39953c0f748Sdanielk1977 ** OMIT_TEMPDB is set to 1 if SQLITE_OMIT_TEMPDB is defined, or 0 40053c0f748Sdanielk1977 ** afterward. Having this macro allows us to cause the C compiler 40153c0f748Sdanielk1977 ** to omit code used by TEMP tables without messy #ifndef statements. 40253c0f748Sdanielk1977 */ 40353c0f748Sdanielk1977 #ifdef SQLITE_OMIT_TEMPDB 40453c0f748Sdanielk1977 #define OMIT_TEMPDB 1 40553c0f748Sdanielk1977 #else 40653c0f748Sdanielk1977 #define OMIT_TEMPDB 0 40753c0f748Sdanielk1977 #endif 40853c0f748Sdanielk1977 40953c0f748Sdanielk1977 /* 410d946db00Sdrh ** The "file format" number is an integer that is incremented whenever 411d946db00Sdrh ** the VDBE-level file format changes. The following macros define the 412d946db00Sdrh ** the default file format for new databases and the maximum file format 413d946db00Sdrh ** that the library can read. 414d946db00Sdrh */ 415d946db00Sdrh #define SQLITE_MAX_FILE_FORMAT 4 416d946db00Sdrh #ifndef SQLITE_DEFAULT_FILE_FORMAT 417bf3f5f8dSdrh # define SQLITE_DEFAULT_FILE_FORMAT 4 418d946db00Sdrh #endif 419d946db00Sdrh 420a2460e07Sdrh /* 421a2460e07Sdrh ** Determine whether triggers are recursive by default. This can be 422a2460e07Sdrh ** changed at run-time using a pragma. 423a2460e07Sdrh */ 4245bde73c4Sdan #ifndef SQLITE_DEFAULT_RECURSIVE_TRIGGERS 4255bde73c4Sdan # define SQLITE_DEFAULT_RECURSIVE_TRIGGERS 0 4265bde73c4Sdan #endif 4275bde73c4Sdan 428d946db00Sdrh /* 429b06a0b67Sdanielk1977 ** Provide a default value for SQLITE_TEMP_STORE in case it is not specified 43049766d6cSdrh ** on the command-line 43149766d6cSdrh */ 432b06a0b67Sdanielk1977 #ifndef SQLITE_TEMP_STORE 433b06a0b67Sdanielk1977 # define SQLITE_TEMP_STORE 1 434d16d0bc5Sdrh # define SQLITE_TEMP_STORE_xc 1 /* Exclude from ctime.c */ 43549766d6cSdrh #endif 43649766d6cSdrh 43749766d6cSdrh /* 438b3f56fdbSdan ** If no value has been provided for SQLITE_MAX_WORKER_THREADS, or if 439b3f56fdbSdan ** SQLITE_TEMP_STORE is set to 3 (never use temporary files), set it 440b3f56fdbSdan ** to zero. 441b3f56fdbSdan */ 4426b2129aaSdrh #if SQLITE_TEMP_STORE==3 || SQLITE_THREADSAFE==0 443b3f56fdbSdan # undef SQLITE_MAX_WORKER_THREADS 444028696c4Sdrh # define SQLITE_MAX_WORKER_THREADS 0 445b3f56fdbSdan #endif 446b3f56fdbSdan #ifndef SQLITE_MAX_WORKER_THREADS 4476b2129aaSdrh # define SQLITE_MAX_WORKER_THREADS 8 448b3f56fdbSdan #endif 449a09c8855Sdrh #ifndef SQLITE_DEFAULT_WORKER_THREADS 450a09c8855Sdrh # define SQLITE_DEFAULT_WORKER_THREADS 0 451a09c8855Sdrh #endif 452a09c8855Sdrh #if SQLITE_DEFAULT_WORKER_THREADS>SQLITE_MAX_WORKER_THREADS 453a09c8855Sdrh # undef SQLITE_MAX_WORKER_THREADS 454a09c8855Sdrh # define SQLITE_MAX_WORKER_THREADS SQLITE_DEFAULT_WORKER_THREADS 455a09c8855Sdrh #endif 456b3f56fdbSdan 457b3f56fdbSdan 458b3f56fdbSdan /* 459f1974846Sdrh ** GCC does not define the offsetof() macro so we'll have to do it 460f1974846Sdrh ** ourselves. 461f1974846Sdrh */ 462f1974846Sdrh #ifndef offsetof 463f1974846Sdrh #define offsetof(STRUCTURE,FIELD) ((int)((char*)&((STRUCTURE*)0)->FIELD)) 464f1974846Sdrh #endif 465f1974846Sdrh 466f1974846Sdrh /* 467e1e2e9acSdrh ** Macros to compute minimum and maximum of two numbers. 468e1e2e9acSdrh */ 469e1e2e9acSdrh #define MIN(A,B) ((A)<(B)?(A):(B)) 470e1e2e9acSdrh #define MAX(A,B) ((A)>(B)?(A):(B)) 471e1e2e9acSdrh 472e1e2e9acSdrh /* 4739b8f447bSdrh ** Check to see if this machine uses EBCDIC. (Yes, believe it or 4749b8f447bSdrh ** not, there are still machines out there that use EBCDIC.) 4759b8f447bSdrh */ 4769b8f447bSdrh #if 'A' == '\301' 4779b8f447bSdrh # define SQLITE_EBCDIC 1 4789b8f447bSdrh #else 4799b8f447bSdrh # define SQLITE_ASCII 1 4809b8f447bSdrh #endif 4819b8f447bSdrh 4829b8f447bSdrh /* 4835a2c2c20Sdrh ** Integers of known sizes. These typedefs might change for architectures 4845a2c2c20Sdrh ** where the sizes very. Preprocessor macros are available so that the 4855a2c2c20Sdrh ** types can be conveniently redefined at compile-type. Like this: 4865a2c2c20Sdrh ** 4875a2c2c20Sdrh ** cc '-DUINTPTR_TYPE=long long int' ... 48841a2b48bSdrh */ 4895a2c2c20Sdrh #ifndef UINT32_TYPE 490dda5b68cSmlcreech # ifdef HAVE_UINT32_T 491dda5b68cSmlcreech # define UINT32_TYPE uint32_t 492dda5b68cSmlcreech # else 4935a2c2c20Sdrh # define UINT32_TYPE unsigned int 4945a2c2c20Sdrh # endif 495dda5b68cSmlcreech #endif 4965a2c2c20Sdrh #ifndef UINT16_TYPE 497dda5b68cSmlcreech # ifdef HAVE_UINT16_T 498dda5b68cSmlcreech # define UINT16_TYPE uint16_t 499dda5b68cSmlcreech # else 5005a2c2c20Sdrh # define UINT16_TYPE unsigned short int 5015a2c2c20Sdrh # endif 502dda5b68cSmlcreech #endif 503939a16d6Sdrh #ifndef INT16_TYPE 504dda5b68cSmlcreech # ifdef HAVE_INT16_T 505dda5b68cSmlcreech # define INT16_TYPE int16_t 506dda5b68cSmlcreech # else 507939a16d6Sdrh # define INT16_TYPE short int 508939a16d6Sdrh # endif 509dda5b68cSmlcreech #endif 5105a2c2c20Sdrh #ifndef UINT8_TYPE 511dda5b68cSmlcreech # ifdef HAVE_UINT8_T 512dda5b68cSmlcreech # define UINT8_TYPE uint8_t 513dda5b68cSmlcreech # else 5145a2c2c20Sdrh # define UINT8_TYPE unsigned char 5155a2c2c20Sdrh # endif 516dda5b68cSmlcreech #endif 517905793e2Sdrh #ifndef INT8_TYPE 518dda5b68cSmlcreech # ifdef HAVE_INT8_T 519dda5b68cSmlcreech # define INT8_TYPE int8_t 520dda5b68cSmlcreech # else 521905793e2Sdrh # define INT8_TYPE signed char 522905793e2Sdrh # endif 523dda5b68cSmlcreech #endif 524efad9995Sdrh #ifndef LONGDOUBLE_TYPE 525efad9995Sdrh # define LONGDOUBLE_TYPE long double 526efad9995Sdrh #endif 527efad9995Sdrh typedef sqlite_int64 i64; /* 8-byte signed integer */ 52827436af7Sdrh typedef sqlite_uint64 u64; /* 8-byte unsigned integer */ 5295a2c2c20Sdrh typedef UINT32_TYPE u32; /* 4-byte unsigned integer */ 5305a2c2c20Sdrh typedef UINT16_TYPE u16; /* 2-byte unsigned integer */ 531939a16d6Sdrh typedef INT16_TYPE i16; /* 2-byte signed integer */ 5325a2c2c20Sdrh typedef UINT8_TYPE u8; /* 1-byte unsigned integer */ 53370a8ca3cSdrh typedef INT8_TYPE i8; /* 1-byte signed integer */ 5345a2c2c20Sdrh 5355a2c2c20Sdrh /* 53635cd643cSdrh ** SQLITE_MAX_U32 is a u64 constant that is the maximum u64 value 53735cd643cSdrh ** that can be stored in a u32 without loss of data. The value 53835cd643cSdrh ** is 0x00000000ffffffff. But because of quirks of some compilers, we 53935cd643cSdrh ** have to specify the value in the less intuitive manner shown: 54035cd643cSdrh */ 54135cd643cSdrh #define SQLITE_MAX_U32 ((((u64)1)<<32)-1) 54235cd643cSdrh 54335cd643cSdrh /* 544faacf17cSdrh ** The datatype used to store estimates of the number of rows in a 545faacf17cSdrh ** table or index. This is an unsigned integer type. For 99.9% of 546faacf17cSdrh ** the world, a 32-bit integer is sufficient. But a 64-bit integer 547faacf17cSdrh ** can be used at compile-time if desired. 548faacf17cSdrh */ 549faacf17cSdrh #ifdef SQLITE_64BIT_STATS 550faacf17cSdrh typedef u64 tRowcnt; /* 64-bit only if requested at compile-time */ 551faacf17cSdrh #else 552faacf17cSdrh typedef u32 tRowcnt; /* 32-bit is the default */ 553faacf17cSdrh #endif 554faacf17cSdrh 555faacf17cSdrh /* 556bf539c4dSdrh ** Estimated quantities used for query planning are stored as 16-bit 557bf539c4dSdrh ** logarithms. For quantity X, the value stored is 10*log2(X). This 558bf539c4dSdrh ** gives a possible range of values of approximately 1.0e986 to 1e-986. 559bf539c4dSdrh ** But the allowed values are "grainy". Not every value is representable. 560bf539c4dSdrh ** For example, quantities 16 and 17 are both represented by a LogEst 561224155ddSdrh ** of 40. However, since LogEst quantaties are suppose to be estimates, 562bf539c4dSdrh ** not exact values, this imprecision is not a problem. 563bf539c4dSdrh ** 564224155ddSdrh ** "LogEst" is short for "Logarithmic Estimate". 565bf539c4dSdrh ** 566bf539c4dSdrh ** Examples: 567bf539c4dSdrh ** 1 -> 0 20 -> 43 10000 -> 132 568bf539c4dSdrh ** 2 -> 10 25 -> 46 25000 -> 146 569bf539c4dSdrh ** 3 -> 16 100 -> 66 1000000 -> 199 570bf539c4dSdrh ** 4 -> 20 1000 -> 99 1048576 -> 200 571bf539c4dSdrh ** 10 -> 33 1024 -> 100 4294967296 -> 320 572bf539c4dSdrh ** 573bf539c4dSdrh ** The LogEst can be negative to indicate fractional values. 574bf539c4dSdrh ** Examples: 575bf539c4dSdrh ** 576bf539c4dSdrh ** 0.5 -> -10 0.1 -> -33 0.0625 -> -40 577bf539c4dSdrh */ 578bf539c4dSdrh typedef INT16_TYPE LogEst; 579bf539c4dSdrh 580bf539c4dSdrh /* 581bbd42a6dSdrh ** Macros to determine whether the machine is big or little endian, 58271794dbaSdrh ** and whether or not that determination is run-time or compile-time. 58371794dbaSdrh ** 58471794dbaSdrh ** For best performance, an attempt is made to guess at the byte-order 58571794dbaSdrh ** using C-preprocessor macros. If that is unsuccessful, or if 58671794dbaSdrh ** -DSQLITE_RUNTIME_BYTEORDER=1 is set, then byte-order is determined 58771794dbaSdrh ** at run-time. 588bbd42a6dSdrh */ 58946c99e0fSdrh #ifdef SQLITE_AMALGAMATION 590b3190c15Sdrh const int sqlite3one = 1; 59146c99e0fSdrh #else 592bbd42a6dSdrh extern const int sqlite3one; 59346c99e0fSdrh #endif 59471794dbaSdrh #if (defined(i386) || defined(__i386__) || defined(_M_IX86) || \ 59571794dbaSdrh defined(__x86_64) || defined(__x86_64__) || defined(_M_X64) || \ 59671794dbaSdrh defined(_M_AMD64) || defined(_M_ARM) || defined(__x86) || \ 59771794dbaSdrh defined(__arm__)) && !defined(SQLITE_RUNTIME_BYTEORDER) 5982cf4acbdSdrh # define SQLITE_BYTEORDER 1234 59938def054Sdrh # define SQLITE_BIGENDIAN 0 60038def054Sdrh # define SQLITE_LITTLEENDIAN 1 60138def054Sdrh # define SQLITE_UTF16NATIVE SQLITE_UTF16LE 60271794dbaSdrh #endif 60371794dbaSdrh #if (defined(sparc) || defined(__ppc__)) \ 60471794dbaSdrh && !defined(SQLITE_RUNTIME_BYTEORDER) 60571794dbaSdrh # define SQLITE_BYTEORDER 4321 60671794dbaSdrh # define SQLITE_BIGENDIAN 1 60771794dbaSdrh # define SQLITE_LITTLEENDIAN 0 60871794dbaSdrh # define SQLITE_UTF16NATIVE SQLITE_UTF16BE 60971794dbaSdrh #endif 61071794dbaSdrh #if !defined(SQLITE_BYTEORDER) 6112cf4acbdSdrh # define SQLITE_BYTEORDER 0 /* 0 means "unknown at compile-time" */ 6129c054830Sdrh # define SQLITE_BIGENDIAN (*(char *)(&sqlite3one)==0) 6139c054830Sdrh # define SQLITE_LITTLEENDIAN (*(char *)(&sqlite3one)==1) 61438def054Sdrh # define SQLITE_UTF16NATIVE (SQLITE_BIGENDIAN?SQLITE_UTF16BE:SQLITE_UTF16LE) 61538def054Sdrh #endif 616bbd42a6dSdrh 617bbd42a6dSdrh /* 6180f050353Sdrh ** Constants for the largest and smallest possible 64-bit signed integers. 6190f050353Sdrh ** These macros are designed to work correctly on both 32-bit and 64-bit 6200f050353Sdrh ** compilers. 6210f050353Sdrh */ 6220f050353Sdrh #define LARGEST_INT64 (0xffffffff|(((i64)0x7fffffff)<<32)) 6230f050353Sdrh #define SMALLEST_INT64 (((i64)-1) - LARGEST_INT64) 6240f050353Sdrh 6250f050353Sdrh /* 626be229650Sdanielk1977 ** Round up a number to the next larger multiple of 8. This is used 627be229650Sdanielk1977 ** to force 8-byte alignment on 64-bit architectures. 628be229650Sdanielk1977 */ 629bc73971dSdanielk1977 #define ROUND8(x) (((x)+7)&~7) 630bc73971dSdanielk1977 631bc73971dSdanielk1977 /* 632bc73971dSdanielk1977 ** Round down to the nearest multiple of 8 633bc73971dSdanielk1977 */ 634bc73971dSdanielk1977 #define ROUNDDOWN8(x) ((x)&~7) 635be229650Sdanielk1977 636be229650Sdanielk1977 /* 6378e14c596Sdrh ** Assert that the pointer X is aligned to an 8-byte boundary. This 6388e14c596Sdrh ** macro is used only within assert() to verify that the code gets 6398e14c596Sdrh ** all alignment restrictions correct. 6408e14c596Sdrh ** 6418e14c596Sdrh ** Except, if SQLITE_4_BYTE_ALIGNED_MALLOC is defined, then the 64260ec914cSpeter.d.reid ** underlying malloc() implementation might return us 4-byte aligned 6438e14c596Sdrh ** pointers. In that case, only verify 4-byte alignment. 644ea598cbdSdrh */ 6458e14c596Sdrh #ifdef SQLITE_4_BYTE_ALIGNED_MALLOC 6468e14c596Sdrh # define EIGHT_BYTE_ALIGNMENT(X) ((((char*)(X) - (char*)0)&3)==0) 6478e14c596Sdrh #else 648ea598cbdSdrh # define EIGHT_BYTE_ALIGNMENT(X) ((((char*)(X) - (char*)0)&7)==0) 6498e14c596Sdrh #endif 650ea598cbdSdrh 651188d4884Sdrh /* 6529b4c59faSdrh ** Disable MMAP on platforms where it is known to not work 653188d4884Sdrh */ 654188d4884Sdrh #if defined(__OpenBSD__) || defined(__QNXNTO__) 6559b4c59faSdrh # undef SQLITE_MAX_MMAP_SIZE 6569b4c59faSdrh # define SQLITE_MAX_MMAP_SIZE 0 657188d4884Sdrh #endif 658188d4884Sdrh 6599b4c59faSdrh /* 6609b4c59faSdrh ** Default maximum size of memory used by memory-mapped I/O in the VFS 6619b4c59faSdrh */ 6629b4c59faSdrh #ifdef __APPLE__ 6639b4c59faSdrh # include <TargetConditionals.h> 6649b4c59faSdrh # if TARGET_OS_IPHONE 6659b4c59faSdrh # undef SQLITE_MAX_MMAP_SIZE 6669b4c59faSdrh # define SQLITE_MAX_MMAP_SIZE 0 6679b4c59faSdrh # endif 6689b4c59faSdrh #endif 6699b4c59faSdrh #ifndef SQLITE_MAX_MMAP_SIZE 6709b4c59faSdrh # if defined(__linux__) \ 6719b4c59faSdrh || defined(_WIN32) \ 6729b4c59faSdrh || (defined(__APPLE__) && defined(__MACH__)) \ 6739b4c59faSdrh || defined(__sun) 6742bba8c24Sdrh # define SQLITE_MAX_MMAP_SIZE 0x7fff0000 /* 2147418112 */ 6759b4c59faSdrh # else 6769b4c59faSdrh # define SQLITE_MAX_MMAP_SIZE 0 6779b4c59faSdrh # endif 678d16d0bc5Sdrh # define SQLITE_MAX_MMAP_SIZE_xc 1 /* exclude from ctime.c */ 6799b4c59faSdrh #endif 6809b4c59faSdrh 6819b4c59faSdrh /* 6829b4c59faSdrh ** The default MMAP_SIZE is zero on all platforms. Or, even if a larger 6839b4c59faSdrh ** default MMAP_SIZE is specified at compile-time, make sure that it does 6849b4c59faSdrh ** not exceed the maximum mmap size. 6859b4c59faSdrh */ 6869b4c59faSdrh #ifndef SQLITE_DEFAULT_MMAP_SIZE 6879b4c59faSdrh # define SQLITE_DEFAULT_MMAP_SIZE 0 688d16d0bc5Sdrh # define SQLITE_DEFAULT_MMAP_SIZE_xc 1 /* Exclude from ctime.c */ 6899b4c59faSdrh #endif 6909b4c59faSdrh #if SQLITE_DEFAULT_MMAP_SIZE>SQLITE_MAX_MMAP_SIZE 6919b4c59faSdrh # undef SQLITE_DEFAULT_MMAP_SIZE 6929b4c59faSdrh # define SQLITE_DEFAULT_MMAP_SIZE SQLITE_MAX_MMAP_SIZE 6939b4c59faSdrh #endif 694e7b34707Sdrh 695ea598cbdSdrh /* 6961435a9a1Sdrh ** Only one of SQLITE_ENABLE_STAT3 or SQLITE_ENABLE_STAT4 can be defined. 6971435a9a1Sdrh ** Priority is given to SQLITE_ENABLE_STAT4. If either are defined, also 6981435a9a1Sdrh ** define SQLITE_ENABLE_STAT3_OR_STAT4 6991435a9a1Sdrh */ 7001435a9a1Sdrh #ifdef SQLITE_ENABLE_STAT4 7011435a9a1Sdrh # undef SQLITE_ENABLE_STAT3 7021435a9a1Sdrh # define SQLITE_ENABLE_STAT3_OR_STAT4 1 7031435a9a1Sdrh #elif SQLITE_ENABLE_STAT3 7041435a9a1Sdrh # define SQLITE_ENABLE_STAT3_OR_STAT4 1 7051435a9a1Sdrh #elif SQLITE_ENABLE_STAT3_OR_STAT4 7061435a9a1Sdrh # undef SQLITE_ENABLE_STAT3_OR_STAT4 7071435a9a1Sdrh #endif 70890f5ecb3Sdrh 70990f5ecb3Sdrh /* 710abd4c723Sdrh ** SELECTTRACE_ENABLED will be either 1 or 0 depending on whether or not 711abd4c723Sdrh ** the Select query generator tracing logic is turned on. 712abd4c723Sdrh */ 7139300adbcSdrh #if defined(SQLITE_DEBUG) || defined(SQLITE_ENABLE_SELECTTRACE) 714abd4c723Sdrh # define SELECTTRACE_ENABLED 1 715abd4c723Sdrh #else 716abd4c723Sdrh # define SELECTTRACE_ENABLED 0 717abd4c723Sdrh #endif 718abd4c723Sdrh 719abd4c723Sdrh /* 72090f5ecb3Sdrh ** An instance of the following structure is used to store the busy-handler 72190f5ecb3Sdrh ** callback for a given sqlite handle. 72290f5ecb3Sdrh ** 72390f5ecb3Sdrh ** The sqlite.busyHandler member of the sqlite struct contains the busy 72490f5ecb3Sdrh ** callback for the database handle. Each pager opened via the sqlite 72590f5ecb3Sdrh ** handle is passed a pointer to sqlite.busyHandler. The busy-handler 72690f5ecb3Sdrh ** callback is currently invoked only from within pager.c. 72790f5ecb3Sdrh */ 72890f5ecb3Sdrh typedef struct BusyHandler BusyHandler; 72990f5ecb3Sdrh struct BusyHandler { 73090f5ecb3Sdrh int (*xFunc)(void *,int); /* The busy callback */ 73190f5ecb3Sdrh void *pArg; /* First arg to busy callback */ 732a4afb65cSdrh int nBusy; /* Incremented with each busy call */ 73390f5ecb3Sdrh }; 73490f5ecb3Sdrh 73590f5ecb3Sdrh /* 73675897234Sdrh ** Name of the master database table. The master database table 73775897234Sdrh ** is a special table that holds the names and attributes of all 73875897234Sdrh ** user tables and indices. 73975897234Sdrh */ 74075897234Sdrh #define MASTER_NAME "sqlite_master" 741e0bc4048Sdrh #define TEMP_MASTER_NAME "sqlite_temp_master" 74275897234Sdrh 74375897234Sdrh /* 7448e150818Sdanielk1977 ** The root-page of the master database table. 7458e150818Sdanielk1977 */ 7468e150818Sdanielk1977 #define MASTER_ROOT 1 7478e150818Sdanielk1977 7488e150818Sdanielk1977 /* 749ed6c8671Sdrh ** The name of the schema table. 750ed6c8671Sdrh */ 75153c0f748Sdanielk1977 #define SCHEMA_TABLE(x) ((!OMIT_TEMPDB)&&(x==1)?TEMP_MASTER_NAME:MASTER_NAME) 752ed6c8671Sdrh 753ed6c8671Sdrh /* 75475897234Sdrh ** A convenience macro that returns the number of elements in 75575897234Sdrh ** an array. 75675897234Sdrh */ 75723432976Sdanielk1977 #define ArraySize(X) ((int)(sizeof(X)/sizeof(X[0]))) 75875897234Sdrh 75975897234Sdrh /* 7607a5bcc0fSdrh ** Determine if the argument is a power of two 7617a5bcc0fSdrh */ 7627a5bcc0fSdrh #define IsPowerOfTwo(X) (((X)&((X)-1))==0) 7637a5bcc0fSdrh 7647a5bcc0fSdrh /* 765633e6d57Sdrh ** The following value as a destructor means to use sqlite3DbFree(). 766aa538a58Sdrh ** The sqlite3DbFree() routine requires two parameters instead of the 767aa538a58Sdrh ** one parameter that destructors normally want. So we have to introduce 768aa538a58Sdrh ** this magic value that the code knows to handle differently. Any 769aa538a58Sdrh ** pointer will work here as long as it is distinct from SQLITE_STATIC 770aa538a58Sdrh ** and SQLITE_TRANSIENT. 771633e6d57Sdrh */ 772aa538a58Sdrh #define SQLITE_DYNAMIC ((sqlite3_destructor_type)sqlite3MallocSize) 773633e6d57Sdrh 77478f82d1eSdrh /* 77578f82d1eSdrh ** When SQLITE_OMIT_WSD is defined, it means that the target platform does 77678f82d1eSdrh ** not support Writable Static Data (WSD) such as global and static variables. 77778f82d1eSdrh ** All variables must either be on the stack or dynamically allocated from 77878f82d1eSdrh ** the heap. When WSD is unsupported, the variable declarations scattered 77978f82d1eSdrh ** throughout the SQLite code must become constants instead. The SQLITE_WSD 78078f82d1eSdrh ** macro is used for this purpose. And instead of referencing the variable 78178f82d1eSdrh ** directly, we use its constant as a key to lookup the run-time allocated 78278f82d1eSdrh ** buffer that holds real variable. The constant is also the initializer 78378f82d1eSdrh ** for the run-time allocated buffer. 78478f82d1eSdrh ** 7852479de3aSshane ** In the usual case where WSD is supported, the SQLITE_WSD and GLOBAL 78678f82d1eSdrh ** macros become no-ops and have zero performance impact. 78778f82d1eSdrh */ 788075c23afSdanielk1977 #ifdef SQLITE_OMIT_WSD 789075c23afSdanielk1977 #define SQLITE_WSD const 790075c23afSdanielk1977 #define GLOBAL(t,v) (*(t*)sqlite3_wsd_find((void*)&(v), sizeof(v))) 791075c23afSdanielk1977 #define sqlite3GlobalConfig GLOBAL(struct Sqlite3Config, sqlite3Config) 792d1d38488Sdrh int sqlite3_wsd_init(int N, int J); 793d1d38488Sdrh void *sqlite3_wsd_find(void *K, int L); 794075c23afSdanielk1977 #else 795075c23afSdanielk1977 #define SQLITE_WSD 796075c23afSdanielk1977 #define GLOBAL(t,v) v 797075c23afSdanielk1977 #define sqlite3GlobalConfig sqlite3Config 798075c23afSdanielk1977 #endif 799075c23afSdanielk1977 800f3d3c27aSdanielk1977 /* 801f3d3c27aSdanielk1977 ** The following macros are used to suppress compiler warnings and to 802f3d3c27aSdanielk1977 ** make it clear to human readers when a function parameter is deliberately 803f3d3c27aSdanielk1977 ** left unused within the body of a function. This usually happens when 804f3d3c27aSdanielk1977 ** a function is called via a function pointer. For example the 805f3d3c27aSdanielk1977 ** implementation of an SQL aggregate step callback may not use the 806f3d3c27aSdanielk1977 ** parameter indicating the number of arguments passed to the aggregate, 807f3d3c27aSdanielk1977 ** if it knows that this is enforced elsewhere. 808f3d3c27aSdanielk1977 ** 809f3d3c27aSdanielk1977 ** When a function parameter is not used at all within the body of a function, 810f3d3c27aSdanielk1977 ** it is generally named "NotUsed" or "NotUsed2" to make things even clearer. 811f3d3c27aSdanielk1977 ** However, these macros may also be used to suppress warnings related to 812f3d3c27aSdanielk1977 ** parameters that may or may not be used depending on compilation options. 813f3d3c27aSdanielk1977 ** For example those parameters only used in assert() statements. In these 814f3d3c27aSdanielk1977 ** cases the parameters are named as per the usual conventions. 815f3d3c27aSdanielk1977 */ 81662c14b34Sdanielk1977 #define UNUSED_PARAMETER(x) (void)(x) 817f3d3c27aSdanielk1977 #define UNUSED_PARAMETER2(x,y) UNUSED_PARAMETER(x),UNUSED_PARAMETER(y) 81862c14b34Sdanielk1977 819633e6d57Sdrh /* 82075897234Sdrh ** Forward references to structures 82175897234Sdrh */ 82213449892Sdrh typedef struct AggInfo AggInfo; 823fe05af87Sdrh typedef struct AuthContext AuthContext; 8240b9f50d8Sdrh typedef struct AutoincInfo AutoincInfo; 825f5e7bb51Sdrh typedef struct Bitvec Bitvec; 826fe05af87Sdrh typedef struct CollSeq CollSeq; 8277020f651Sdrh typedef struct Column Column; 828fe05af87Sdrh typedef struct Db Db; 829e501b89aSdanielk1977 typedef struct Schema Schema; 83075897234Sdrh typedef struct Expr Expr; 83175897234Sdrh typedef struct ExprList ExprList; 832b7916a78Sdrh typedef struct ExprSpan ExprSpan; 833c2eef3b3Sdrh typedef struct FKey FKey; 834d2199f0fSdan typedef struct FuncDestructor FuncDestructor; 835fe05af87Sdrh typedef struct FuncDef FuncDef; 83670a8ca3cSdrh typedef struct FuncDefHash FuncDefHash; 837fe05af87Sdrh typedef struct IdList IdList; 838fe05af87Sdrh typedef struct Index Index; 83902fa4696Sdan typedef struct IndexSample IndexSample; 8408d059845Sdanielk1977 typedef struct KeyClass KeyClass; 841d3d39e93Sdrh typedef struct KeyInfo KeyInfo; 842633e6d57Sdrh typedef struct Lookaside Lookaside; 843633e6d57Sdrh typedef struct LookasideSlot LookasideSlot; 844d1ab1ba5Sdanielk1977 typedef struct Module Module; 845626a879aSdrh typedef struct NameContext NameContext; 846fe05af87Sdrh typedef struct Parse Parse; 847a5c1416dSdrh typedef struct PrintfArguments PrintfArguments; 848a2460e07Sdrh typedef struct RowSet RowSet; 849fd7f0452Sdanielk1977 typedef struct Savepoint Savepoint; 850fe05af87Sdrh typedef struct Select Select; 851f51446a3Sdrh typedef struct SQLiteThread SQLiteThread; 852634d81deSdrh typedef struct SelectDest SelectDest; 853fe05af87Sdrh typedef struct SrcList SrcList; 854ade86483Sdrh typedef struct StrAccum StrAccum; 855fe05af87Sdrh typedef struct Table Table; 856c00da105Sdanielk1977 typedef struct TableLock TableLock; 857fe05af87Sdrh typedef struct Token Token; 858a2460e07Sdrh typedef struct Trigger Trigger; 8592832ad42Sdan typedef struct TriggerPrg TriggerPrg; 860fe05af87Sdrh typedef struct TriggerStep TriggerStep; 861e63d9991Sdrh typedef struct UnpackedRecord UnpackedRecord; 862595a523aSdanielk1977 typedef struct VTable VTable; 863b061d058Sdan typedef struct VtabCtx VtabCtx; 8647d10d5a6Sdrh typedef struct Walker Walker; 865fe05af87Sdrh typedef struct WhereInfo WhereInfo; 8667d562dbeSdan typedef struct With With; 867d3d39e93Sdrh 8682dca4ac1Sdanielk1977 /* 8692dca4ac1Sdanielk1977 ** Defer sourcing vdbe.h and btree.h until after the "u8" and 8702dca4ac1Sdanielk1977 ** "BusyHandler" typedefs. vdbe.h also requires a few of the opaque 8712dca4ac1Sdanielk1977 ** pointer types (i.e. FuncDef) defined above. 8722dca4ac1Sdanielk1977 */ 8732dca4ac1Sdanielk1977 #include "btree.h" 8742dca4ac1Sdanielk1977 #include "vdbe.h" 8752dca4ac1Sdanielk1977 #include "pager.h" 8768c0a791aSdanielk1977 #include "pcache.h" 8772dca4ac1Sdanielk1977 8781cc5ed81Sdanielk1977 #include "os.h" 879c7ce76afSdrh #include "mutex.h" 8801cc5ed81Sdanielk1977 881eee4c8caSdrh 882001bbcbbSdrh /* 883001bbcbbSdrh ** Each database file to be accessed by the system is an instance 884001bbcbbSdrh ** of the following structure. There are normally two of these structures 885001bbcbbSdrh ** in the sqlite.aDb[] array. aDb[0] is the main database file and 886a69d9168Sdrh ** aDb[1] is the database file used to hold temporary tables. Additional 887a69d9168Sdrh ** databases may be attached. 888001bbcbbSdrh */ 889001bbcbbSdrh struct Db { 890001bbcbbSdrh char *zName; /* Name of this database */ 891001bbcbbSdrh Btree *pBt; /* The B*Tree structure for this database file */ 892467bcf36Sshane u8 safety_level; /* How aggressive at syncing data to disk */ 893e501b89aSdanielk1977 Schema *pSchema; /* Pointer to database schema (possibly shared) */ 894da184236Sdanielk1977 }; 895da184236Sdanielk1977 896da184236Sdanielk1977 /* 897da184236Sdanielk1977 ** An instance of the following structure stores a database schema. 8982120608eSdrh ** 8992120608eSdrh ** Most Schema objects are associated with a Btree. The exception is 9002120608eSdrh ** the Schema for the TEMP databaes (sqlite3.aDb[1]) which is free-standing. 9012120608eSdrh ** In shared cache mode, a single Schema object can be shared by multiple 9022120608eSdrh ** Btrees that refer to the same underlying BtShared object. 9032120608eSdrh ** 9042120608eSdrh ** Schema objects are automatically deallocated when the last Btree that 9052120608eSdrh ** references them is destroyed. The TEMP Schema is manually freed by 9062120608eSdrh ** sqlite3_close(). 9072120608eSdrh * 9082120608eSdrh ** A thread must be holding a mutex on the corresponding Btree in order 9092120608eSdrh ** to access Schema content. This implies that the thread must also be 9102120608eSdrh ** holding a mutex on the sqlite3 connection pointer that owns the Btree. 91155a0959aSdrh ** For a TEMP Schema, only the connection mutex is required. 912da184236Sdanielk1977 */ 913e501b89aSdanielk1977 struct Schema { 914001bbcbbSdrh int schema_cookie; /* Database schema version number for this file */ 915c2a75551Sdrh int iGeneration; /* Generation counter. Incremented with each change */ 916d24cc427Sdrh Hash tblHash; /* All tables indexed by name */ 917d24cc427Sdrh Hash idxHash; /* All (named) indices indexed by name */ 918d24cc427Sdrh Hash trigHash; /* All triggers indexed by name */ 9191da40a38Sdan Hash fkeyHash; /* All foreign keys by referenced table name */ 9204794f735Sdrh Table *pSeqTab; /* The sqlite_sequence table used by AUTOINCREMENT */ 921da184236Sdanielk1977 u8 file_format; /* Schema format version for this file */ 9228079a0d3Sdrh u8 enc; /* Text encoding used by this database */ 9232c5e35ffSdrh u16 schemaFlags; /* Flags associated with this schema */ 92414db2665Sdanielk1977 int cache_size; /* Number of pages to use in the cache */ 925001bbcbbSdrh }; 92675897234Sdrh 92775897234Sdrh /* 9288bf8dc92Sdrh ** These macros can be used to test, set, or clear bits in the 929a2460e07Sdrh ** Db.pSchema->flags field. 9308bf8dc92Sdrh */ 9312c5e35ffSdrh #define DbHasProperty(D,I,P) (((D)->aDb[I].pSchema->schemaFlags&(P))==(P)) 9322c5e35ffSdrh #define DbHasAnyProperty(D,I,P) (((D)->aDb[I].pSchema->schemaFlags&(P))!=0) 9332c5e35ffSdrh #define DbSetProperty(D,I,P) (D)->aDb[I].pSchema->schemaFlags|=(P) 9342c5e35ffSdrh #define DbClearProperty(D,I,P) (D)->aDb[I].pSchema->schemaFlags&=~(P) 9358bf8dc92Sdrh 9368bf8dc92Sdrh /* 937a2460e07Sdrh ** Allowed values for the DB.pSchema->flags field. 9388bf8dc92Sdrh ** 9398bf8dc92Sdrh ** The DB_SchemaLoaded flag is set after the database schema has been 9408bf8dc92Sdrh ** read into internal hash tables. 9418bf8dc92Sdrh ** 9428bf8dc92Sdrh ** DB_UnresetViews means that one or more views have column names that 9438bf8dc92Sdrh ** have been filled out. If the schema changes, these column names might 9448bf8dc92Sdrh ** changes and so the view will need to be reset. 9458bf8dc92Sdrh */ 946124b27e6Sdrh #define DB_SchemaLoaded 0x0001 /* The schema has been loaded */ 947124b27e6Sdrh #define DB_UnresetViews 0x0002 /* Some views have defined column names */ 948b82e7edaSdanielk1977 #define DB_Empty 0x0004 /* The file is empty (length 0 bytes) */ 9498bf8dc92Sdrh 950caa639f4Sdrh /* 951caa639f4Sdrh ** The number of different kinds of things that can be limited 952caa639f4Sdrh ** using the sqlite3_limit() interface. 953caa639f4Sdrh */ 954111544cbSdrh #define SQLITE_N_LIMIT (SQLITE_LIMIT_WORKER_THREADS+1) 9558bf8dc92Sdrh 9568bf8dc92Sdrh /* 957633e6d57Sdrh ** Lookaside malloc is a set of fixed-size buffers that can be used 958467bcf36Sshane ** to satisfy small transient memory allocation requests for objects 959633e6d57Sdrh ** associated with a particular database connection. The use of 960633e6d57Sdrh ** lookaside malloc provides a significant performance enhancement 961633e6d57Sdrh ** (approx 10%) by avoiding numerous malloc/free requests while parsing 962633e6d57Sdrh ** SQL statements. 963633e6d57Sdrh ** 964633e6d57Sdrh ** The Lookaside structure holds configuration information about the 965633e6d57Sdrh ** lookaside malloc subsystem. Each available memory allocation in 966633e6d57Sdrh ** the lookaside subsystem is stored on a linked list of LookasideSlot 967633e6d57Sdrh ** objects. 968d9da78a2Sdrh ** 969d9da78a2Sdrh ** Lookaside allocations are only allowed for objects that are associated 970d9da78a2Sdrh ** with a particular database connection. Hence, schema information cannot 971d9da78a2Sdrh ** be stored in lookaside because in shared cache mode the schema information 972d9da78a2Sdrh ** is shared by multiple database connections. Therefore, while parsing 973d9da78a2Sdrh ** schema information, the Lookaside.bEnabled flag is cleared so that 974d9da78a2Sdrh ** lookaside allocations are not used to construct the schema objects. 975633e6d57Sdrh */ 976633e6d57Sdrh struct Lookaside { 977633e6d57Sdrh u16 sz; /* Size of each buffer in bytes */ 978d9da78a2Sdrh u8 bEnabled; /* False to disable new lookaside allocations */ 979e9d1c720Sdrh u8 bMalloced; /* True if pStart obtained from sqlite3_malloc() */ 980633e6d57Sdrh int nOut; /* Number of buffers currently checked out */ 981633e6d57Sdrh int mxOut; /* Highwater mark for nOut */ 9820b12e7f8Sdrh int anStat[3]; /* 0: hits. 1: size misses. 2: full misses */ 9837d10d5a6Sdrh LookasideSlot *pFree; /* List of available buffers */ 984633e6d57Sdrh void *pStart; /* First byte of available memory space */ 985633e6d57Sdrh void *pEnd; /* First byte past end of available space */ 986633e6d57Sdrh }; 987633e6d57Sdrh struct LookasideSlot { 988633e6d57Sdrh LookasideSlot *pNext; /* Next buffer in the list of free buffers */ 989633e6d57Sdrh }; 990633e6d57Sdrh 991633e6d57Sdrh /* 99270a8ca3cSdrh ** A hash table for function definitions. 99370a8ca3cSdrh ** 99470a8ca3cSdrh ** Hash each FuncDef structure into one of the FuncDefHash.a[] slots. 99570a8ca3cSdrh ** Collisions are on the FuncDef.pHash chain. 99670a8ca3cSdrh */ 99770a8ca3cSdrh struct FuncDefHash { 99870a8ca3cSdrh FuncDef *a[23]; /* Hash table for functions */ 99970a8ca3cSdrh }; 100070a8ca3cSdrh 1001d4530979Sdrh #ifdef SQLITE_USER_AUTHENTICATION 1002d4530979Sdrh /* 1003d4530979Sdrh ** Information held in the "sqlite3" database connection object and used 1004d4530979Sdrh ** to manage user authentication. 1005d4530979Sdrh */ 1006d4530979Sdrh typedef struct sqlite3_userauth sqlite3_userauth; 1007d4530979Sdrh struct sqlite3_userauth { 1008e933b83fSdrh u8 authLevel; /* Current authentication level */ 1009d4530979Sdrh int nAuthPW; /* Size of the zAuthPW in bytes */ 1010d4530979Sdrh char *zAuthPW; /* Password used to authenticate */ 1011d4530979Sdrh char *zAuthUser; /* User name used to authenticate */ 1012d4530979Sdrh }; 1013d4530979Sdrh 1014e933b83fSdrh /* Allowed values for sqlite3_userauth.authLevel */ 1015e933b83fSdrh #define UAUTH_Unknown 0 /* Authentication not yet checked */ 1016e933b83fSdrh #define UAUTH_Fail 1 /* User authentication failed */ 1017e933b83fSdrh #define UAUTH_User 2 /* Authenticated as a normal user */ 1018e933b83fSdrh #define UAUTH_Admin 3 /* Authenticated as an administrator */ 1019d4530979Sdrh 1020d4530979Sdrh /* Functions used only by user authorization logic */ 1021d4530979Sdrh int sqlite3UserAuthTable(const char*); 1022e933b83fSdrh int sqlite3UserAuthCheckLogin(sqlite3*,const char*,u8*); 10237883ecfcSdrh void sqlite3UserAuthInit(sqlite3*); 1024f442e33eSdrh void sqlite3CryptFunc(sqlite3_context*,int,sqlite3_value**); 1025f442e33eSdrh 1026d4530979Sdrh #endif /* SQLITE_USER_AUTHENTICATION */ 1027d4530979Sdrh 102832c6a48bSdrh /* 102932c6a48bSdrh ** typedef for the authorization callback function. 103032c6a48bSdrh */ 103132c6a48bSdrh #ifdef SQLITE_USER_AUTHENTICATION 103232c6a48bSdrh typedef int (*sqlite3_xauth)(void*,int,const char*,const char*,const char*, 103332c6a48bSdrh const char*, const char*); 103432c6a48bSdrh #else 103532c6a48bSdrh typedef int (*sqlite3_xauth)(void*,int,const char*,const char*,const char*, 103632c6a48bSdrh const char*); 103732c6a48bSdrh #endif 103832c6a48bSdrh 1039d4530979Sdrh 104070a8ca3cSdrh /* 1041a2460e07Sdrh ** Each database connection is an instance of the following structure. 104275897234Sdrh */ 10439bb575fdSdrh struct sqlite3 { 104490f6a5beSdrh sqlite3_vfs *pVfs; /* OS Interface */ 1045a451017dSdrh struct Vdbe *pVdbe; /* List of active virtual machines */ 1046a451017dSdrh CollSeq *pDfltColl; /* The default collating sequence (BINARY) */ 1047a451017dSdrh sqlite3_mutex *mutex; /* Connection mutex */ 1048001bbcbbSdrh Db *aDb; /* All backends */ 1049a451017dSdrh int nDb; /* Number of backends currently in use */ 1050467bcf36Sshane int flags; /* Miscellaneous flags. See below */ 1051a451017dSdrh i64 lastRowid; /* ROWID of most recent insert (see above) */ 10529b4c59faSdrh i64 szMmap; /* Default mmap_size setting */ 1053522c26fbSdrh unsigned int openFlags; /* Flags passed to sqlite3_vfs.xOpen() */ 1054fcd35c7bSdrh int errCode; /* Most recent error code (SQLITE_*) */ 10554ac285a1Sdrh int errMask; /* & result codes with this before returning */ 1056a5759677Sdrh u16 dbOptFlags; /* Flags to enable/disable optimizations */ 1057fcd35c7bSdrh u8 autoCommit; /* The auto-commit flag. */ 105890f5ecb3Sdrh u8 temp_store; /* 1: file 2: memory 0: default */ 105917435752Sdrh u8 mallocFailed; /* True if we have seen a malloc failure */ 10603b02013eSdrh u8 dfltLockMode; /* Default locking-mode for attached dbs */ 106198757157Sdrh signed char nextAutovac; /* Autovac setting after VACUUM if >=0 */ 1062a7564663Sdrh u8 suppressErr; /* Do not issue error messages if true */ 1063b061d058Sdan u8 vtabOnConflict; /* Value to return for s3_vtab_on_conflict() */ 1064a451017dSdrh u8 isTransactionSavepoint; /* True if the outermost savepoint is a TS */ 1065f653d782Sdanielk1977 int nextPagesize; /* Pagesize after VACUUM if >0 */ 106664202cfeSdanielk1977 u32 magic; /* Magic number for detect library misuse */ 1067b28af71aSdanielk1977 int nChange; /* Value returned by sqlite3_changes() */ 1068b28af71aSdanielk1977 int nTotalChange; /* Value returned by sqlite3_total_changes() */ 1069caa639f4Sdrh int aLimit[SQLITE_N_LIMIT]; /* Limits */ 10708930c2abSdan int nMaxSorterMmap; /* Maximum size of regions mapped by sorter */ 10714adee20fSdanielk1977 struct sqlite3InitInfo { /* Information used during initialization */ 10721d85d931Sdrh int newTnum; /* Rootpage of table being initialized */ 1073a451017dSdrh u8 iDb; /* Which db file is being initialized */ 10741d85d931Sdrh u8 busy; /* TRUE if currently initializing */ 10753d5f74b2Sdrh u8 orphanTrigger; /* Last statement is orphaned TEMP trigger */ 10761d85d931Sdrh } init; 10771713afb0Sdrh int nVdbeActive; /* Number of VDBEs currently running */ 10784f7d3a5fSdrh int nVdbeRead; /* Number of active VDBEs that read or write */ 10794f7d3a5fSdrh int nVdbeWrite; /* Number of active VDBEs that read and write */ 10804f7d3a5fSdrh int nVdbeExec; /* Number of nested calls to VdbeExec() */ 1081a451017dSdrh int nExtension; /* Number of loaded extensions */ 1082a451017dSdrh void **aExtension; /* Array of shared library handles */ 108318de4824Sdrh void (*xTrace)(void*,const char*); /* Trace function */ 108418de4824Sdrh void *pTraceArg; /* Argument to the trace function */ 108519e2d37fSdrh void (*xProfile)(void*,const char*,u64); /* Profiling function */ 108619e2d37fSdrh void *pProfileArg; /* Argument to profile function */ 1087fcd35c7bSdrh void *pCommitArg; /* Argument to xCommitCallback() */ 1088fcd35c7bSdrh int (*xCommitCallback)(void*); /* Invoked at every commit. */ 108971fd80bfSdanielk1977 void *pRollbackArg; /* Argument to xRollbackCallback() */ 109071fd80bfSdanielk1977 void (*xRollbackCallback)(void*); /* Invoked at every commit. */ 109194eb6a14Sdanielk1977 void *pUpdateArg; 109294eb6a14Sdanielk1977 void (*xUpdateCallback)(void*,int, const char*,const char*,sqlite_int64); 10935cf53537Sdan #ifndef SQLITE_OMIT_WAL 10947ed91f23Sdrh int (*xWalCallback)(void *, sqlite3 *, const char *, int); 10957ed91f23Sdrh void *pWalArg; 10965cf53537Sdan #endif 1097fcd35c7bSdrh void(*xCollNeeded)(void*,sqlite3*,int eTextRep,const char*); 1098fcd35c7bSdrh void(*xCollNeeded16)(void*,sqlite3*,int eTextRep,const void*); 1099fcd35c7bSdrh void *pCollNeededArg; 1100fcd35c7bSdrh sqlite3_value *pErr; /* Most recent error message */ 1101881feaa0Sdrh union { 110239001e75Sdrh volatile int isInterrupted; /* True if sqlite3_interrupt has been called */ 1103881feaa0Sdrh double notUsed1; /* Spacer */ 1104881feaa0Sdrh } u1; 1105633e6d57Sdrh Lookaside lookaside; /* Lookaside malloc configuration */ 1106ed6c8671Sdrh #ifndef SQLITE_OMIT_AUTHORIZATION 110732c6a48bSdrh sqlite3_xauth xAuth; /* Access authorization function */ 1108ed6c8671Sdrh void *pAuthArg; /* 1st argument to the access auth function */ 1109ed6c8671Sdrh #endif 1110348bb5d6Sdanielk1977 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK 1111348bb5d6Sdanielk1977 int (*xProgress)(void *); /* The progress callback */ 1112348bb5d6Sdanielk1977 void *pProgressArg; /* Argument to the progress callback */ 11138f8c65f7Sdrh unsigned nProgressOps; /* Number of opcodes for progress callback */ 1114348bb5d6Sdanielk1977 #endif 1115b9bb7c18Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 1116a451017dSdrh int nVTrans; /* Allocated size of aVTrans */ 1117b9bb7c18Sdrh Hash aModule; /* populated by sqlite3_create_module() */ 1118b061d058Sdan VtabCtx *pVtabCtx; /* Context for active vtab connect/create */ 1119595a523aSdanielk1977 VTable **aVTrans; /* Virtual tables with open transactions */ 1120595a523aSdanielk1977 VTable *pDisconnect; /* Disconnect these in next sqlite3_prepare() */ 11216b456a2bSdanielk1977 #endif 112270a8ca3cSdrh FuncDefHash aFunc; /* Hash table of connection functions */ 1123fcd35c7bSdrh Hash aCollSeq; /* All collating sequences */ 1124fcd35c7bSdrh BusyHandler busyHandler; /* Busy callback */ 1125fcd35c7bSdrh Db aDbStatic[2]; /* Static space for the 2 default backends */ 1126fd7f0452Sdanielk1977 Savepoint *pSavepoint; /* List of active savepoints */ 1127a451017dSdrh int busyTimeout; /* Busy handler timeout, in msec */ 1128fd7f0452Sdanielk1977 int nSavepoint; /* Number of non-transaction savepoints */ 1129bd43455cSdanielk1977 int nStatement; /* Number of nested statement-transactions */ 11301da40a38Sdan i64 nDeferredCons; /* Net deferred constraints this transaction. */ 1131648e2643Sdrh i64 nDeferredImmCons; /* Net deferred immediate constraints */ 1132d46def77Sdan int *pnBytesFreed; /* If not NULL, increment this in DbFree() */ 1133404ca075Sdanielk1977 #ifdef SQLITE_ENABLE_UNLOCK_NOTIFY 1134404ca075Sdanielk1977 /* The following variables are all protected by the STATIC_MASTER 1135404ca075Sdanielk1977 ** mutex, not by sqlite3.mutex. They are used by code in notify.c. 113665a73badSdrh ** 113765a73badSdrh ** When X.pUnlockConnection==Y, that means that X is waiting for Y to 113865a73badSdrh ** unlock so that it can proceed. 113965a73badSdrh ** 114065a73badSdrh ** When X.pBlockingConnection==Y, that means that something that X tried 114165a73badSdrh ** tried to do recently failed with an SQLITE_LOCKED error due to locks 114265a73badSdrh ** held by Y. 1143404ca075Sdanielk1977 */ 1144404ca075Sdanielk1977 sqlite3 *pBlockingConnection; /* Connection that caused SQLITE_LOCKED */ 1145404ca075Sdanielk1977 sqlite3 *pUnlockConnection; /* Connection to watch for unlock */ 1146404ca075Sdanielk1977 void *pUnlockArg; /* Argument to xUnlockNotify */ 1147404ca075Sdanielk1977 void (*xUnlockNotify)(void **, int); /* Unlock notify callback */ 1148404ca075Sdanielk1977 sqlite3 *pNextBlocked; /* Next in list of all blocked connections */ 1149404ca075Sdanielk1977 #endif 1150d4530979Sdrh #ifdef SQLITE_USER_AUTHENTICATION 1151d4530979Sdrh sqlite3_userauth auth; /* User authentication information */ 1152d4530979Sdrh #endif 115375897234Sdrh }; 115475897234Sdrh 115503b808a6Sdrh /* 115603b808a6Sdrh ** A macro to discover the encoding of a database. 115703b808a6Sdrh */ 115814db2665Sdanielk1977 #define ENC(db) ((db)->aDb[0].pSchema->enc) 115914db2665Sdanielk1977 116075897234Sdrh /* 116107096f68Sdrh ** Possible values for the sqlite3.flags. 116275897234Sdrh */ 11637e5418e4Sdrh #define SQLITE_VdbeTrace 0x00000001 /* True to trace VDBE execution */ 11647e5418e4Sdrh #define SQLITE_InternChanges 0x00000002 /* Uncommitted Hash table changes */ 116540c3941cSdrh #define SQLITE_FullFSync 0x00000004 /* Use full fsync on the backend */ 116640c3941cSdrh #define SQLITE_CkptFullFSync 0x00000008 /* Use full fsync for checkpoint */ 116740c3941cSdrh #define SQLITE_CacheSpill 0x00000010 /* OK to spill pager cache */ 116840c3941cSdrh #define SQLITE_FullColNames 0x00000020 /* Show full column names on SELECT */ 116940c3941cSdrh #define SQLITE_ShortColNames 0x00000040 /* Show short columns names */ 117040c3941cSdrh #define SQLITE_CountRows 0x00000080 /* Count rows changed by INSERT, */ 11711bee3d7bSdrh /* DELETE, or UPDATE and return */ 11721bee3d7bSdrh /* the count using a callback. */ 117340c3941cSdrh #define SQLITE_NullCallback 0x00000100 /* Invoke the callback once if the */ 11746a535340Sdrh /* result set is empty */ 117540c3941cSdrh #define SQLITE_SqlTrace 0x00000200 /* Debug print SQL as it executes */ 117640c3941cSdrh #define SQLITE_VdbeListing 0x00000400 /* Debug listings of VDBE programs */ 117740c3941cSdrh #define SQLITE_WriteSchema 0x00000800 /* OK to update SQLITE_MASTER */ 117840c3941cSdrh #define SQLITE_VdbeAddopTrace 0x00001000 /* Trace sqlite3VdbeAddOp() calls */ 117940c3941cSdrh #define SQLITE_IgnoreChecks 0x00002000 /* Do not enforce check constraints */ 118040c3941cSdrh #define SQLITE_ReadUncommitted 0x0004000 /* For shared-cache mode */ 118140c3941cSdrh #define SQLITE_LegacyFileFmt 0x00008000 /* Create new databases in format 1 */ 118240c3941cSdrh #define SQLITE_RecoveryMode 0x00010000 /* Ignore schema errors */ 118340c3941cSdrh #define SQLITE_ReverseOrder 0x00020000 /* Reverse unordered SELECTs */ 118440c3941cSdrh #define SQLITE_RecTriggers 0x00040000 /* Enable recursive triggers */ 118540c3941cSdrh #define SQLITE_ForeignKeys 0x00080000 /* Enforce foreign key constraints */ 118640c3941cSdrh #define SQLITE_AutoIndex 0x00100000 /* Enable automatic indexes */ 118740c3941cSdrh #define SQLITE_PreferBuiltin 0x00200000 /* Preference to built-in funcs */ 118840c3941cSdrh #define SQLITE_LoadExtension 0x00400000 /* Enable load_extension */ 118940c3941cSdrh #define SQLITE_EnableTrigger 0x00800000 /* True to enable triggers */ 119040c3941cSdrh #define SQLITE_DeferFKs 0x01000000 /* Defer all FK constraints */ 119140c3941cSdrh #define SQLITE_QueryOnly 0x02000000 /* Disable database changes */ 119284e55a80Sdrh #define SQLITE_VdbeEQP 0x04000000 /* Debug EXPLAIN QUERY PLAN */ 1193b1eaa718Sdrh 119407096f68Sdrh 119507096f68Sdrh /* 11967e5418e4Sdrh ** Bits of the sqlite3.dbOptFlags field that are used by the 11977e5418e4Sdrh ** sqlite3_test_control(SQLITE_TESTCTRL_OPTIMIZATIONS,...) interface to 11987e5418e4Sdrh ** selectively disable various optimizations. 119907096f68Sdrh */ 12007e5418e4Sdrh #define SQLITE_QueryFlattener 0x0001 /* Query flattening */ 12017e5418e4Sdrh #define SQLITE_ColumnCache 0x0002 /* Column cache */ 12027e5418e4Sdrh #define SQLITE_GroupByOrder 0x0004 /* GROUPBY cover of ORDERBY */ 12037e5418e4Sdrh #define SQLITE_FactorOutConst 0x0008 /* Constant factoring */ 1204762c1c40Sdrh /* not used 0x0010 // Was: SQLITE_IdxRealAsInt */ 12057e5418e4Sdrh #define SQLITE_DistinctOpt 0x0020 /* DISTINCT using indexes */ 12067e5418e4Sdrh #define SQLITE_CoverIdxScan 0x0040 /* Covering index scans */ 1207a9e3fc05Sdrh #define SQLITE_OrderByIdxJoin 0x0080 /* ORDER BY of joins via index */ 1208a5759677Sdrh #define SQLITE_SubqCoroutine 0x0100 /* Evaluate subqueries as coroutines */ 1209eb5bc926Sdrh #define SQLITE_Transitive 0x0200 /* Transitive constraints */ 12101031bd99Sdrh #define SQLITE_OmitNoopJoin 0x0400 /* Omit unused tables in joins */ 121140aa936fSdrh #define SQLITE_Stat3 0x0800 /* Use the SQLITE_STAT3 table */ 1212a5759677Sdrh #define SQLITE_AllOpts 0xffff /* All optimizations */ 12137e5418e4Sdrh 12147e5418e4Sdrh /* 12157e5418e4Sdrh ** Macros for testing whether or not optimizations are enabled or disabled. 12167e5418e4Sdrh */ 12177e5418e4Sdrh #ifndef SQLITE_OMIT_BUILTIN_TEST 12187e5418e4Sdrh #define OptimizationDisabled(db, mask) (((db)->dbOptFlags&(mask))!=0) 12197e5418e4Sdrh #define OptimizationEnabled(db, mask) (((db)->dbOptFlags&(mask))==0) 12207e5418e4Sdrh #else 12217e5418e4Sdrh #define OptimizationDisabled(db, mask) 0 12227e5418e4Sdrh #define OptimizationEnabled(db, mask) 1 12237e5418e4Sdrh #endif 122434c68fbaSdanielk1977 122558b9576bSdrh /* 1226d9f158e7Sdrh ** Return true if it OK to factor constant expressions into the initialization 1227d9f158e7Sdrh ** code. The argument is a Parse object for the code generator. 1228d9f158e7Sdrh */ 1229aceb31b1Sdrh #define ConstFactorOk(P) ((P)->okConstFactor) 1230247be43dSdrh 1231247be43dSdrh /* 1232247be43dSdrh ** Possible values for the sqlite.magic field. 1233247be43dSdrh ** The numbers are obtained at random and have no special meaning, other 1234247be43dSdrh ** than being distinct from one another. 1235247be43dSdrh */ 1236247be43dSdrh #define SQLITE_MAGIC_OPEN 0xa029a697 /* Database is open */ 1237247be43dSdrh #define SQLITE_MAGIC_CLOSED 0x9f3c2d33 /* Database is closed */ 12387e8b848aSdrh #define SQLITE_MAGIC_SICK 0x4b771290 /* Error and awaiting close */ 1239247be43dSdrh #define SQLITE_MAGIC_BUSY 0xf03b7906 /* Database currently in use */ 1240247be43dSdrh #define SQLITE_MAGIC_ERROR 0xb5357930 /* An SQLITE_MISUSE error occurred */ 12414245c405Sdrh #define SQLITE_MAGIC_ZOMBIE 0x64cffc7f /* Close with last statement close */ 1242247be43dSdrh 1243247be43dSdrh /* 12440bce8354Sdrh ** Each SQL function is defined by an instance of the following 12450bce8354Sdrh ** structure. A pointer to this structure is stored in the sqlite.aFunc 12468e0a2f90Sdrh ** hash table. When multiple functions have the same name, the hash table 12478e0a2f90Sdrh ** points to a linked list of these structures. 12482803757aSdrh */ 12490bce8354Sdrh struct FuncDef { 1250e82f5d04Sdrh i16 nArg; /* Number of arguments. -1 means unlimited */ 1251d36e1041Sdrh u16 funcFlags; /* Some combination of SQLITE_FUNC_* */ 12521350b030Sdrh void *pUserData; /* User data parameter */ 12530bce8354Sdrh FuncDef *pNext; /* Next function with same name */ 1254f9b596ebSdrh void (*xFunc)(sqlite3_context*,int,sqlite3_value**); /* Regular function */ 1255f9b596ebSdrh void (*xStep)(sqlite3_context*,int,sqlite3_value**); /* Aggregate step */ 1256467bcf36Sshane void (*xFinalize)(sqlite3_context*); /* Aggregate finalizer */ 12578c0a791aSdanielk1977 char *zName; /* SQL name of the function. */ 125870a8ca3cSdrh FuncDef *pHash; /* Next with a different name but the same hash */ 1259d2199f0fSdan FuncDestructor *pDestructor; /* Reference counted destructor function */ 1260d2199f0fSdan }; 1261d2199f0fSdan 1262d2199f0fSdan /* 1263d2199f0fSdan ** This structure encapsulates a user-function destructor callback (as 1264d2199f0fSdan ** configured using create_function_v2()) and a reference counter. When 1265d2199f0fSdan ** create_function_v2() is called to create a function with a destructor, 1266d2199f0fSdan ** a single object of this type is allocated. FuncDestructor.nRef is set to 1267d2199f0fSdan ** the number of FuncDef objects created (either 1 or 3, depending on whether 1268d2199f0fSdan ** or not the specified encoding is SQLITE_ANY). The FuncDef.pDestructor 1269d2199f0fSdan ** member of each of the new FuncDef objects is set to point to the allocated 1270d2199f0fSdan ** FuncDestructor. 1271d2199f0fSdan ** 1272d2199f0fSdan ** Thereafter, when one of the FuncDef objects is deleted, the reference 1273d2199f0fSdan ** count on this object is decremented. When it reaches 0, the destructor 1274d2199f0fSdan ** is invoked and the FuncDestructor structure freed. 1275d2199f0fSdan */ 1276d2199f0fSdan struct FuncDestructor { 1277d2199f0fSdan int nRef; 1278d2199f0fSdan void (*xDestroy)(void *); 1279d2199f0fSdan void *pUserData; 12808e0a2f90Sdrh }; 12812803757aSdrh 12822803757aSdrh /* 1283a748fdccSdrh ** Possible values for FuncDef.flags. Note that the _LENGTH and _TYPEOF 1284a748fdccSdrh ** values must correspond to OPFLAG_LENGTHARG and OPFLAG_TYPEOFARG. There 1285a748fdccSdrh ** are assert() statements in the code to verify this. 12867d10d5a6Sdrh */ 1287d36e1041Sdrh #define SQLITE_FUNC_ENCMASK 0x003 /* SQLITE_UTF8, SQLITE_UTF16BE or UTF16LE */ 1288d36e1041Sdrh #define SQLITE_FUNC_LIKE 0x004 /* Candidate for the LIKE optimization */ 1289d36e1041Sdrh #define SQLITE_FUNC_CASE 0x008 /* Case-sensitive LIKE-type function */ 1290d36e1041Sdrh #define SQLITE_FUNC_EPHEM 0x010 /* Ephemeral. Delete with VDBE */ 1291d36e1041Sdrh #define SQLITE_FUNC_NEEDCOLL 0x020 /* sqlite3GetFuncCollSeq() might be called */ 1292d36e1041Sdrh #define SQLITE_FUNC_LENGTH 0x040 /* Built-in length() function */ 1293d36e1041Sdrh #define SQLITE_FUNC_TYPEOF 0x080 /* Built-in typeof() function */ 1294d36e1041Sdrh #define SQLITE_FUNC_COUNT 0x100 /* Built-in count(*) aggregate */ 1295d36e1041Sdrh #define SQLITE_FUNC_COALESCE 0x200 /* Built-in coalesce() or ifnull() */ 1296d36e1041Sdrh #define SQLITE_FUNC_UNLIKELY 0x400 /* Built-in unlikely() function */ 1297b1fba286Sdrh #define SQLITE_FUNC_CONSTANT 0x800 /* Constant inputs give a constant output */ 12989588ad95Sdrh #define SQLITE_FUNC_MINMAX 0x1000 /* True for min() and max() aggregates */ 12997d10d5a6Sdrh 13007d10d5a6Sdrh /* 1301777c5386Sdrh ** The following three macros, FUNCTION(), LIKEFUNC() and AGGREGATE() are 1302777c5386Sdrh ** used to create the initializers for the FuncDef structures. 1303777c5386Sdrh ** 1304777c5386Sdrh ** FUNCTION(zName, nArg, iArg, bNC, xFunc) 1305777c5386Sdrh ** Used to create a scalar function definition of a function zName 1306777c5386Sdrh ** implemented by C function xFunc that accepts nArg arguments. The 1307777c5386Sdrh ** value passed as iArg is cast to a (void*) and made available 1308777c5386Sdrh ** as the user-data (sqlite3_user_data()) for the function. If 1309f7bca574Sdrh ** argument bNC is true, then the SQLITE_FUNC_NEEDCOLL flag is set. 1310777c5386Sdrh ** 1311b1fba286Sdrh ** VFUNCTION(zName, nArg, iArg, bNC, xFunc) 1312b1fba286Sdrh ** Like FUNCTION except it omits the SQLITE_FUNC_CONSTANT flag. 1313b1fba286Sdrh ** 1314777c5386Sdrh ** AGGREGATE(zName, nArg, iArg, bNC, xStep, xFinal) 1315777c5386Sdrh ** Used to create an aggregate function definition implemented by 1316777c5386Sdrh ** the C functions xStep and xFinal. The first four parameters 1317777c5386Sdrh ** are interpreted in the same way as the first 4 parameters to 1318777c5386Sdrh ** FUNCTION(). 1319777c5386Sdrh ** 1320777c5386Sdrh ** LIKEFUNC(zName, nArg, pArg, flags) 1321777c5386Sdrh ** Used to create a scalar function definition of a function zName 1322777c5386Sdrh ** that accepts nArg arguments and is implemented by a call to C 1323777c5386Sdrh ** function likeFunc. Argument pArg is cast to a (void *) and made 1324777c5386Sdrh ** available as the function user-data (sqlite3_user_data()). The 1325777c5386Sdrh ** FuncDef.flags variable is set to the value passed as the flags 1326777c5386Sdrh ** parameter. 1327777c5386Sdrh */ 1328777c5386Sdrh #define FUNCTION(zName, nArg, iArg, bNC, xFunc) \ 1329b1fba286Sdrh {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \ 1330b1fba286Sdrh SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, #zName, 0, 0} 1331b1fba286Sdrh #define VFUNCTION(zName, nArg, iArg, bNC, xFunc) \ 1332d36e1041Sdrh {nArg, SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \ 1333a748fdccSdrh SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, #zName, 0, 0} 1334a748fdccSdrh #define FUNCTION2(zName, nArg, iArg, bNC, xFunc, extraFlags) \ 1335b1fba286Sdrh {nArg,SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL)|extraFlags,\ 13366ac78a0dSdrh SQLITE_INT_TO_PTR(iArg), 0, xFunc, 0, 0, #zName, 0, 0} 133721717ed6Sdrh #define STR_FUNCTION(zName, nArg, pArg, bNC, xFunc) \ 1338b1fba286Sdrh {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|(bNC*SQLITE_FUNC_NEEDCOLL), \ 13396ac78a0dSdrh pArg, 0, xFunc, 0, 0, #zName, 0, 0} 1340777c5386Sdrh #define LIKEFUNC(zName, nArg, arg, flags) \ 1341b1fba286Sdrh {nArg, SQLITE_FUNC_CONSTANT|SQLITE_UTF8|flags, \ 1342b1fba286Sdrh (void *)arg, 0, likeFunc, 0, 0, #zName, 0, 0} 1343777c5386Sdrh #define AGGREGATE(zName, nArg, arg, nc, xStep, xFinal) \ 1344d36e1041Sdrh {nArg, SQLITE_UTF8|(nc*SQLITE_FUNC_NEEDCOLL), \ 13456ac78a0dSdrh SQLITE_INT_TO_PTR(arg), 0, 0, xStep,xFinal,#zName,0,0} 13469588ad95Sdrh #define AGGREGATE2(zName, nArg, arg, nc, xStep, xFinal, extraFlags) \ 13479588ad95Sdrh {nArg, SQLITE_UTF8|(nc*SQLITE_FUNC_NEEDCOLL)|extraFlags, \ 13489588ad95Sdrh SQLITE_INT_TO_PTR(arg), 0, 0, xStep,xFinal,#zName,0,0} 1349777c5386Sdrh 1350fd7f0452Sdanielk1977 /* 1351fd7f0452Sdanielk1977 ** All current savepoints are stored in a linked list starting at 1352fd7f0452Sdanielk1977 ** sqlite3.pSavepoint. The first element in the list is the most recently 1353fd7f0452Sdanielk1977 ** opened savepoint. Savepoints are added to the list by the vdbe 1354fd7f0452Sdanielk1977 ** OP_Savepoint instruction. 1355fd7f0452Sdanielk1977 */ 1356fd7f0452Sdanielk1977 struct Savepoint { 1357fd7f0452Sdanielk1977 char *zName; /* Savepoint name (nul-terminated) */ 1358fcb9f7adSdrh i64 nDeferredCons; /* Number of deferred fk violations */ 1359648e2643Sdrh i64 nDeferredImmCons; /* Number of deferred imm fk. */ 1360fd7f0452Sdanielk1977 Savepoint *pNext; /* Parent savepoint (if any) */ 1361fd7f0452Sdanielk1977 }; 1362fd7f0452Sdanielk1977 1363fd7f0452Sdanielk1977 /* 1364fd7f0452Sdanielk1977 ** The following are used as the second parameter to sqlite3Savepoint(), 1365fd7f0452Sdanielk1977 ** and as the P1 argument to the OP_Savepoint instruction. 1366fd7f0452Sdanielk1977 */ 1367fd7f0452Sdanielk1977 #define SAVEPOINT_BEGIN 0 1368fd7f0452Sdanielk1977 #define SAVEPOINT_RELEASE 1 1369fd7f0452Sdanielk1977 #define SAVEPOINT_ROLLBACK 2 1370fd7f0452Sdanielk1977 1371777c5386Sdrh 1372777c5386Sdrh /* 1373d1ab1ba5Sdanielk1977 ** Each SQLite module (virtual table definition) is defined by an 1374d1ab1ba5Sdanielk1977 ** instance of the following structure, stored in the sqlite3.aModule 1375d1ab1ba5Sdanielk1977 ** hash table. 1376d1ab1ba5Sdanielk1977 */ 1377d1ab1ba5Sdanielk1977 struct Module { 1378d1ab1ba5Sdanielk1977 const sqlite3_module *pModule; /* Callback pointers */ 1379d1ab1ba5Sdanielk1977 const char *zName; /* Name passed to create_module() */ 1380d1ab1ba5Sdanielk1977 void *pAux; /* pAux passed to create_module() */ 1381832a58a6Sdanielk1977 void (*xDestroy)(void *); /* Module destructor function */ 1382d1ab1ba5Sdanielk1977 }; 1383d1ab1ba5Sdanielk1977 1384d1ab1ba5Sdanielk1977 /* 1385967e8b73Sdrh ** information about each column of an SQL table is held in an instance 13867020f651Sdrh ** of this structure. 13877020f651Sdrh */ 13887020f651Sdrh struct Column { 13897020f651Sdrh char *zName; /* Name of this column */ 13907977a17fSdanielk1977 Expr *pDflt; /* Default value of this column */ 1391b7916a78Sdrh char *zDflt; /* Original text of the default value */ 1392382c0247Sdrh char *zType; /* Data type for this column */ 1393b3bf556eSdanielk1977 char *zColl; /* Collating sequence. If NULL, use the default */ 1394a371ace4Sdrh u8 notNull; /* An OE_ code for handling a NOT NULL constraint */ 1395a37cdde0Sdanielk1977 char affinity; /* One of the SQLITE_AFF_... values */ 1396fdaac671Sdrh u8 szEst; /* Estimated size of this column. INT==1 */ 1397fdaac671Sdrh u8 colFlags; /* Boolean properties. See COLFLAG_ defines below */ 13987020f651Sdrh }; 13997020f651Sdrh 1400a371ace4Sdrh /* Allowed values for Column.colFlags: 1401a371ace4Sdrh */ 1402a371ace4Sdrh #define COLFLAG_PRIMKEY 0x0001 /* Column is part of the primary key */ 1403a371ace4Sdrh #define COLFLAG_HIDDEN 0x0002 /* A hidden column in a virtual table */ 1404a371ace4Sdrh 14057020f651Sdrh /* 1406a9fd84b0Sdrh ** A "Collating Sequence" is defined by an instance of the following 14070202b29eSdanielk1977 ** structure. Conceptually, a collating sequence consists of a name and 14080202b29eSdanielk1977 ** a comparison routine that defines the order of that sequence. 1409a9fd84b0Sdrh ** 1410e6f1e760Sdrh ** If CollSeq.xCmp is NULL, it means that the 14110202b29eSdanielk1977 ** collating sequence is undefined. Indices built on an undefined 14120202b29eSdanielk1977 ** collating sequence may not be read or written. 1413a9fd84b0Sdrh */ 1414a9fd84b0Sdrh struct CollSeq { 14150202b29eSdanielk1977 char *zName; /* Name of the collating sequence, UTF-8 encoded */ 1416466be56bSdanielk1977 u8 enc; /* Text encoding handled by xCmp() */ 1417a9fd84b0Sdrh void *pUser; /* First argument to xCmp() */ 14180202b29eSdanielk1977 int (*xCmp)(void*,int, const void*, int, const void*); 1419a9808b31Sdanielk1977 void (*xDel)(void*); /* Destructor for pUser */ 1420a9fd84b0Sdrh }; 1421a9fd84b0Sdrh 1422a9fd84b0Sdrh /* 1423d3d39e93Sdrh ** A sort order can be either ASC or DESC. 14248e2ca029Sdrh */ 14258e2ca029Sdrh #define SQLITE_SO_ASC 0 /* Sort in ascending order */ 1426d3d39e93Sdrh #define SQLITE_SO_DESC 1 /* Sort in ascending order */ 14278e2ca029Sdrh 14288e2ca029Sdrh /* 1429a37cdde0Sdanielk1977 ** Column affinity types. 14308a51256cSdrh ** 14318a51256cSdrh ** These used to have mnemonic name like 'i' for SQLITE_AFF_INTEGER and 14328a51256cSdrh ** 't' for SQLITE_AFF_TEXT. But we can save a little space and improve 14337d10d5a6Sdrh ** the speed a little by numbering the values consecutively. 14348a51256cSdrh ** 14354583c37cSdrh ** But rather than start with 0 or 1, we begin with 'A'. That way, 14368a51256cSdrh ** when multiple affinity types are concatenated into a string and 143766a5167bSdrh ** used as the P4 operand, they will be more readable. 14388a51256cSdrh ** 14398a51256cSdrh ** Note also that the numeric types are grouped together so that testing 14407ea31ccbSdrh ** for a numeric type is a single comparison. And the NONE type is first. 1441a37cdde0Sdanielk1977 */ 14424583c37cSdrh #define SQLITE_AFF_NONE 'A' 14434583c37cSdrh #define SQLITE_AFF_TEXT 'B' 14444583c37cSdrh #define SQLITE_AFF_NUMERIC 'C' 14454583c37cSdrh #define SQLITE_AFF_INTEGER 'D' 14464583c37cSdrh #define SQLITE_AFF_REAL 'E' 1447a37cdde0Sdanielk1977 14488a51256cSdrh #define sqlite3IsNumericAffinity(X) ((X)>=SQLITE_AFF_NUMERIC) 1449a37cdde0Sdanielk1977 1450a37cdde0Sdanielk1977 /* 145135573356Sdrh ** The SQLITE_AFF_MASK values masks off the significant bits of an 145235573356Sdrh ** affinity value. 145335573356Sdrh */ 14544583c37cSdrh #define SQLITE_AFF_MASK 0x47 145535573356Sdrh 145635573356Sdrh /* 145735573356Sdrh ** Additional bit values that can be ORed with an affinity without 145835573356Sdrh ** changing the affinity. 14593d77dee9Sdrh ** 14603d77dee9Sdrh ** The SQLITE_NOTNULL flag is a combination of NULLEQ and JUMPIFNULL. 14613d77dee9Sdrh ** It causes an assert() to fire if either operand to a comparison 14623d77dee9Sdrh ** operator is NULL. It is added to certain comparison operators to 14633d77dee9Sdrh ** prove that the operands are always NOT NULL. 146435573356Sdrh */ 14654583c37cSdrh #define SQLITE_JUMPIFNULL 0x10 /* jumps if either operand is NULL */ 14664583c37cSdrh #define SQLITE_STOREP2 0x20 /* Store result in reg[P2] rather than jump */ 14676a2fe093Sdrh #define SQLITE_NULLEQ 0x80 /* NULL=NULL */ 14684583c37cSdrh #define SQLITE_NOTNULL 0x90 /* Assert that operands are never NULL */ 146935573356Sdrh 147035573356Sdrh /* 1471595a523aSdanielk1977 ** An object of this type is created for each virtual table present in 1472595a523aSdanielk1977 ** the database schema. 1473595a523aSdanielk1977 ** 1474595a523aSdanielk1977 ** If the database schema is shared, then there is one instance of this 1475595a523aSdanielk1977 ** structure for each database connection (sqlite3*) that uses the shared 1476595a523aSdanielk1977 ** schema. This is because each database connection requires its own unique 1477595a523aSdanielk1977 ** instance of the sqlite3_vtab* handle used to access the virtual table 1478595a523aSdanielk1977 ** implementation. sqlite3_vtab* handles can not be shared between 1479595a523aSdanielk1977 ** database connections, even when the rest of the in-memory database 1480595a523aSdanielk1977 ** schema is shared, as the implementation often stores the database 1481595a523aSdanielk1977 ** connection handle passed to it via the xConnect() or xCreate() method 1482595a523aSdanielk1977 ** during initialization internally. This database connection handle may 14839bbc2e28Sdrh ** then be used by the virtual table implementation to access real tables 1484595a523aSdanielk1977 ** within the database. So that they appear as part of the callers 1485595a523aSdanielk1977 ** transaction, these accesses need to be made via the same database 1486595a523aSdanielk1977 ** connection as that used to execute SQL operations on the virtual table. 1487595a523aSdanielk1977 ** 1488595a523aSdanielk1977 ** All VTable objects that correspond to a single table in a shared 1489595a523aSdanielk1977 ** database schema are initially stored in a linked-list pointed to by 1490595a523aSdanielk1977 ** the Table.pVTable member variable of the corresponding Table object. 1491595a523aSdanielk1977 ** When an sqlite3_prepare() operation is required to access the virtual 1492595a523aSdanielk1977 ** table, it searches the list for the VTable that corresponds to the 1493595a523aSdanielk1977 ** database connection doing the preparing so as to use the correct 1494595a523aSdanielk1977 ** sqlite3_vtab* handle in the compiled query. 1495595a523aSdanielk1977 ** 1496595a523aSdanielk1977 ** When an in-memory Table object is deleted (for example when the 1497595a523aSdanielk1977 ** schema is being reloaded for some reason), the VTable objects are not 1498595a523aSdanielk1977 ** deleted and the sqlite3_vtab* handles are not xDisconnect()ed 1499595a523aSdanielk1977 ** immediately. Instead, they are moved from the Table.pVTable list to 1500595a523aSdanielk1977 ** another linked list headed by the sqlite3.pDisconnect member of the 1501595a523aSdanielk1977 ** corresponding sqlite3 structure. They are then deleted/xDisconnected 1502595a523aSdanielk1977 ** next time a statement is prepared using said sqlite3*. This is done 1503595a523aSdanielk1977 ** to avoid deadlock issues involving multiple sqlite3.mutex mutexes. 1504595a523aSdanielk1977 ** Refer to comments above function sqlite3VtabUnlockList() for an 1505595a523aSdanielk1977 ** explanation as to why it is safe to add an entry to an sqlite3.pDisconnect 1506595a523aSdanielk1977 ** list without holding the corresponding sqlite3.mutex mutex. 1507595a523aSdanielk1977 ** 1508595a523aSdanielk1977 ** The memory for objects of this type is always allocated by 1509595a523aSdanielk1977 ** sqlite3DbMalloc(), using the connection handle stored in VTable.db as 1510595a523aSdanielk1977 ** the first argument. 1511595a523aSdanielk1977 */ 1512595a523aSdanielk1977 struct VTable { 1513595a523aSdanielk1977 sqlite3 *db; /* Database connection associated with this table */ 1514595a523aSdanielk1977 Module *pMod; /* Pointer to module implementation */ 1515595a523aSdanielk1977 sqlite3_vtab *pVtab; /* Pointer to vtab instance */ 1516595a523aSdanielk1977 int nRef; /* Number of pointers to this structure */ 1517b061d058Sdan u8 bConstraint; /* True if constraints are supported */ 1518addd8f87Sdrh int iSavepoint; /* Depth of the SAVEPOINT stack */ 1519595a523aSdanielk1977 VTable *pNext; /* Next in linked list (see above) */ 1520595a523aSdanielk1977 }; 1521595a523aSdanielk1977 1522595a523aSdanielk1977 /* 152322f70c32Sdrh ** Each SQL table is represented in memory by an instance of the 152422f70c32Sdrh ** following structure. 152522f70c32Sdrh ** 1526d24cc427Sdrh ** Table.zName is the name of the table. The case of the original 152722f70c32Sdrh ** CREATE TABLE statement is stored, but case is not significant for 152822f70c32Sdrh ** comparisons. 152922f70c32Sdrh ** 1530d24cc427Sdrh ** Table.nCol is the number of columns in this table. Table.aCol is a 153122f70c32Sdrh ** pointer to an array of Column structures, one for each column. 153222f70c32Sdrh ** 1533d24cc427Sdrh ** If the table has an INTEGER PRIMARY KEY, then Table.iPKey is the index of 1534d24cc427Sdrh ** the column that is that key. Otherwise Table.iPKey is negative. Note 153522f70c32Sdrh ** that the datatype of the PRIMARY KEY must be INTEGER for this field to 153622f70c32Sdrh ** be set. An INTEGER PRIMARY KEY is used as the rowid for each row of 153722f70c32Sdrh ** the table. If a table has no INTEGER PRIMARY KEY, then a random rowid 15387d10d5a6Sdrh ** is generated for each row of the table. TF_HasPrimaryKey is set if 153922f70c32Sdrh ** the table has any PRIMARY KEY, INTEGER or otherwise. 154022f70c32Sdrh ** 1541d24cc427Sdrh ** Table.tnum is the page number for the root BTree page of the table in the 1542d24cc427Sdrh ** database file. If Table.iDb is the index of the database table backend 1543d24cc427Sdrh ** in sqlite.aDb[]. 0 is for the main database and 1 is for the file that 15447d10d5a6Sdrh ** holds temporary tables and indices. If TF_Ephemeral is set 15457d10d5a6Sdrh ** then the table is stored in a file that is automatically deleted 1546d24cc427Sdrh ** when the VDBE cursor to the table is closed. In this case Table.tnum 154722f70c32Sdrh ** refers VDBE cursor number that holds the table open, not to the root 154822f70c32Sdrh ** page number. Transient tables are used to hold the results of a 154922f70c32Sdrh ** sub-query that appears instead of a real table name in the FROM clause 155022f70c32Sdrh ** of a SELECT statement. 155175897234Sdrh */ 155275897234Sdrh struct Table { 15537d10d5a6Sdrh char *zName; /* Name of the table or view */ 15547020f651Sdrh Column *aCol; /* Information about each column */ 1555967e8b73Sdrh Index *pIndex; /* List of SQL indexes on this table. */ 1556a76b5dfcSdrh Select *pSelect; /* NULL for tables. Points to definition if a view. */ 1557c2eef3b3Sdrh FKey *pFKey; /* Linked list of all foreign keys in this table */ 15583d1bfeaaSdanielk1977 char *zColAff; /* String defining the affinity of each column */ 1559ffe07b2dSdrh #ifndef SQLITE_OMIT_CHECK 15602938f924Sdrh ExprList *pCheck; /* All CHECK constraints */ 1561ffe07b2dSdrh #endif 1562cfc9df76Sdan LogEst nRowLogEst; /* Estimated rows in table - from sqlite_stat1 table */ 1563d815f17dSdrh int tnum; /* Root BTree node for this table (see note above) */ 1564d815f17dSdrh i16 iPKey; /* If not negative, use aCol[iPKey] as the primary key */ 1565d815f17dSdrh i16 nCol; /* Number of columns in this table */ 1566d815f17dSdrh u16 nRef; /* Number of pointers to this Table */ 1567bf539c4dSdrh LogEst szTabRow; /* Estimated size of each table row in bytes */ 1568dbd9486dSdrh #ifdef SQLITE_ENABLE_COSTMULT 1569dbd9486dSdrh LogEst costMult; /* Cost multiplier for using this table */ 1570dbd9486dSdrh #endif 1571d815f17dSdrh u8 tabFlags; /* Mask of TF_* values */ 1572d815f17dSdrh u8 keyConf; /* What to do in case of uniqueness conflict on iPKey */ 157319a8e7e8Sdanielk1977 #ifndef SQLITE_OMIT_ALTERTABLE 15747d10d5a6Sdrh int addColOffset; /* Offset in CREATE TABLE stmt to add a new column */ 157519a8e7e8Sdanielk1977 #endif 1576e09daa90Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 1577b9bb7c18Sdrh int nModuleArg; /* Number of arguments to the module */ 1578b9bb7c18Sdrh char **azModuleArg; /* Text of all module args. [0] is module name */ 1579d815f17dSdrh VTable *pVTable; /* List of VTable objects. */ 1580e09daa90Sdrh #endif 15812f886d1dSdanielk1977 Trigger *pTrigger; /* List of triggers stored in pSchema */ 1582728b5779Sdrh Schema *pSchema; /* Schema that contains this table */ 1583588a9a1aSdrh Table *pNextZombie; /* Next on the Parse.pZombieTab list */ 158475897234Sdrh }; 158575897234Sdrh 158675897234Sdrh /* 15878ce7184bSdan ** Allowed values for Table.tabFlags. 15887d10d5a6Sdrh */ 15897d10d5a6Sdrh #define TF_Readonly 0x01 /* Read-only system table */ 1590467bcf36Sshane #define TF_Ephemeral 0x02 /* An ephemeral table */ 15917d10d5a6Sdrh #define TF_HasPrimaryKey 0x04 /* Table has a primary key */ 15927d10d5a6Sdrh #define TF_Autoincrement 0x08 /* Integer primary key is autoincrement */ 15937d10d5a6Sdrh #define TF_Virtual 0x10 /* Is a virtual table */ 159481eba73eSdrh #define TF_WithoutRowid 0x20 /* No rowid used. PRIMARY KEY is the key */ 15957d10d5a6Sdrh 15967d10d5a6Sdrh 15977d10d5a6Sdrh /* 15984cbdda9eSdrh ** Test to see whether or not a table is a virtual table. This is 15994cbdda9eSdrh ** done as a macro so that it will be optimized out when virtual 16004cbdda9eSdrh ** table support is omitted from the build. 16014cbdda9eSdrh */ 16024cbdda9eSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 16037d10d5a6Sdrh # define IsVirtual(X) (((X)->tabFlags & TF_Virtual)!=0) 1604a371ace4Sdrh # define IsHiddenColumn(X) (((X)->colFlags & COLFLAG_HIDDEN)!=0) 16054cbdda9eSdrh #else 16064cbdda9eSdrh # define IsVirtual(X) 0 1607034ca14fSdanielk1977 # define IsHiddenColumn(X) 0 16084cbdda9eSdrh #endif 16094cbdda9eSdrh 1610ec95c441Sdrh /* Does the table have a rowid */ 1611ec95c441Sdrh #define HasRowid(X) (((X)->tabFlags & TF_WithoutRowid)==0) 1612ec95c441Sdrh 16134cbdda9eSdrh /* 1614c2eef3b3Sdrh ** Each foreign key constraint is an instance of the following structure. 1615c2eef3b3Sdrh ** 1616c2eef3b3Sdrh ** A foreign key is associated with two tables. The "from" table is 1617c2eef3b3Sdrh ** the table that contains the REFERENCES clause that creates the foreign 1618c2eef3b3Sdrh ** key. The "to" table is the table that is named in the REFERENCES clause. 1619c2eef3b3Sdrh ** Consider this example: 1620c2eef3b3Sdrh ** 1621c2eef3b3Sdrh ** CREATE TABLE ex1( 1622c2eef3b3Sdrh ** a INTEGER PRIMARY KEY, 1623c2eef3b3Sdrh ** b INTEGER CONSTRAINT fk1 REFERENCES ex2(x) 1624c2eef3b3Sdrh ** ); 1625c2eef3b3Sdrh ** 1626c2eef3b3Sdrh ** For foreign key "fk1", the from-table is "ex1" and the to-table is "ex2". 1627bd50a926Sdrh ** Equivalent names: 1628bd50a926Sdrh ** 1629bd50a926Sdrh ** from-table == child-table 1630bd50a926Sdrh ** to-table == parent-table 1631c2eef3b3Sdrh ** 1632c2eef3b3Sdrh ** Each REFERENCES clause generates an instance of the following structure 1633c2eef3b3Sdrh ** which is attached to the from-table. The to-table need not exist when 1634e61922a6Sdrh ** the from-table is created. The existence of the to-table is not checked. 1635bd50a926Sdrh ** 1636bd50a926Sdrh ** The list of all parents for child Table X is held at X.pFKey. 1637bd50a926Sdrh ** 1638bd50a926Sdrh ** A list of all children for a table named Z (which might not even exist) 1639bd50a926Sdrh ** is held in Schema.fkeyHash with a hash key of Z. 1640c2eef3b3Sdrh */ 1641c2eef3b3Sdrh struct FKey { 16421f638cebSdrh Table *pFrom; /* Table containing the REFERENCES clause (aka: Child) */ 1643bd50a926Sdrh FKey *pNextFrom; /* Next FKey with the same in pFrom. Next parent of pFrom */ 16441f638cebSdrh char *zTo; /* Name of table that the key points to (aka: Parent) */ 1645bd50a926Sdrh FKey *pNextTo; /* Next with the same zTo. Next child of zTo. */ 1646bd50a926Sdrh FKey *pPrevTo; /* Previous with the same zTo */ 1647c2eef3b3Sdrh int nCol; /* Number of columns in this key */ 16484c429839Sdrh /* EV: R-30323-21917 */ 1649c2eef3b3Sdrh u8 isDeferred; /* True if constraint checking is deferred till COMMIT */ 16508099ce6fSdan u8 aAction[2]; /* ON DELETE and ON UPDATE actions, respectively */ 16518099ce6fSdan Trigger *apTrigger[2];/* Triggers for aAction[] actions */ 1652e61922a6Sdrh struct sColMap { /* Mapping of columns in pFrom to columns in zTo */ 1653e61922a6Sdrh int iFrom; /* Index of column in pFrom */ 1654bd50a926Sdrh char *zCol; /* Name of column in zTo. If NULL use PRIMARY KEY */ 1655e61922a6Sdrh } aCol[1]; /* One entry for each of nCol columns */ 1656c2eef3b3Sdrh }; 1657c2eef3b3Sdrh 1658c2eef3b3Sdrh /* 1659aaa40c1cSdanielk1977 ** SQLite supports many different ways to resolve a constraint 166022f70c32Sdrh ** error. ROLLBACK processing means that a constraint violation 16610bd1f4eaSdrh ** causes the operation in process to fail and for the current transaction 16621c92853dSdrh ** to be rolled back. ABORT processing means the operation in process 16631c92853dSdrh ** fails and any prior changes from that one operation are backed out, 16641c92853dSdrh ** but the transaction is not rolled back. FAIL processing means that 16651c92853dSdrh ** the operation in progress stops and returns an error code. But prior 16661c92853dSdrh ** changes due to the same operation are not backed out and no rollback 16671c92853dSdrh ** occurs. IGNORE means that the particular row that caused the constraint 16681c92853dSdrh ** error is not inserted or updated. Processing continues and no error 16691c92853dSdrh ** is returned. REPLACE means that preexisting database rows that caused 16701c92853dSdrh ** a UNIQUE constraint violation are removed so that the new insert or 16711c92853dSdrh ** update can proceed. Processing continues and no error is reported. 16721c92853dSdrh ** 1673c2eef3b3Sdrh ** RESTRICT, SETNULL, and CASCADE actions apply only to foreign keys. 1674c2eef3b3Sdrh ** RESTRICT is the same as ABORT for IMMEDIATE foreign keys and the 1675c2eef3b3Sdrh ** same as ROLLBACK for DEFERRED keys. SETNULL means that the foreign 1676c2eef3b3Sdrh ** key is set to NULL. CASCADE means that a DELETE or UPDATE of the 1677c2eef3b3Sdrh ** referenced table row is propagated into the row that holds the 1678c2eef3b3Sdrh ** foreign key. 1679c2eef3b3Sdrh ** 1680968af52aSdrh ** The following symbolic values are used to record which type 16811c92853dSdrh ** of action to take. 16829cfcf5d4Sdrh */ 16839cfcf5d4Sdrh #define OE_None 0 /* There is no constraint to check */ 16841c92853dSdrh #define OE_Rollback 1 /* Fail the operation and rollback the transaction */ 16851c92853dSdrh #define OE_Abort 2 /* Back out changes but do no rollback transaction */ 16861c92853dSdrh #define OE_Fail 3 /* Stop the operation but leave all prior changes */ 16871c92853dSdrh #define OE_Ignore 4 /* Ignore the error. Do not do the INSERT or UPDATE */ 16881c92853dSdrh #define OE_Replace 5 /* Delete existing record, then do INSERT or UPDATE */ 1689c2eef3b3Sdrh 1690c2eef3b3Sdrh #define OE_Restrict 6 /* OE_Abort for IMMEDIATE, OE_Rollback for DEFERRED */ 1691c2eef3b3Sdrh #define OE_SetNull 7 /* Set the foreign key value to NULL */ 1692c2eef3b3Sdrh #define OE_SetDflt 8 /* Set the foreign key value to its default */ 1693c2eef3b3Sdrh #define OE_Cascade 9 /* Cascade the changes */ 1694c2eef3b3Sdrh 1695c28c4e50Sdrh #define OE_Default 10 /* Do whatever the default action is */ 16969cfcf5d4Sdrh 1697d3d39e93Sdrh 1698d3d39e93Sdrh /* 1699d3d39e93Sdrh ** An instance of the following structure is passed as the first 1700d3d39e93Sdrh ** argument to sqlite3VdbeKeyCompare and is used to control the 1701d3d39e93Sdrh ** comparison of the two index keys. 1702323df790Sdrh ** 1703323df790Sdrh ** Note that aSortOrder[] and aColl[] have nField+1 slots. There 1704323df790Sdrh ** are nField slots for the columns of an index then one extra slot 1705323df790Sdrh ** for the rowid at the end. 1706d3d39e93Sdrh */ 1707d3d39e93Sdrh struct KeyInfo { 17082ec2fb22Sdrh u32 nRef; /* Number of references to this KeyInfo object */ 17099b8d0272Sdrh u8 enc; /* Text encoding - one of the SQLITE_UTF* values */ 1710ad124329Sdrh u16 nField; /* Number of key columns in the index */ 1711ad124329Sdrh u16 nXField; /* Number of columns beyond the key columns */ 17122ec2fb22Sdrh sqlite3 *db; /* The database connection */ 1713323df790Sdrh u8 *aSortOrder; /* Sort order for each column. */ 1714d3d39e93Sdrh CollSeq *aColl[1]; /* Collating sequence for each term of the key */ 1715d3d39e93Sdrh }; 1716d3d39e93Sdrh 17179cfcf5d4Sdrh /* 1718e63d9991Sdrh ** An instance of the following structure holds information about a 1719e63d9991Sdrh ** single index record that has already been parsed out into individual 1720e63d9991Sdrh ** values. 1721e63d9991Sdrh ** 1722e63d9991Sdrh ** A record is an object that contains one or more fields of data. 1723e63d9991Sdrh ** Records are used to store the content of a table row and to store 1724e63d9991Sdrh ** the key of an index. A blob encoding of a record is created by 1725467bcf36Sshane ** the OP_MakeRecord opcode of the VDBE and is disassembled by the 1726e63d9991Sdrh ** OP_Column opcode. 1727e63d9991Sdrh ** 1728e63d9991Sdrh ** This structure holds a record that has already been disassembled 1729467bcf36Sshane ** into its constituent fields. 17303833e934Sdan ** 17313833e934Sdan ** The r1 and r2 member variables are only used by the optimized comparison 17323833e934Sdan ** functions vdbeRecordCompareInt() and vdbeRecordCompareString(). 1733e63d9991Sdrh */ 1734e63d9991Sdrh struct UnpackedRecord { 1735e63d9991Sdrh KeyInfo *pKeyInfo; /* Collation and sort-order information */ 1736e63d9991Sdrh u16 nField; /* Number of entries in apMem[] */ 1737a9e0aeb5Sdrh i8 default_rc; /* Comparison result if keys are equal */ 173838fdead8Sdan u8 errCode; /* Error detected by xRecordCompare (CORRUPT or NOMEM) */ 1739e63d9991Sdrh Mem *aMem; /* Values */ 17403833e934Sdan int r1; /* Value to return if (lhs > rhs) */ 17413833e934Sdan int r2; /* Value to return if (rhs < lhs) */ 1742e63d9991Sdrh }; 1743e63d9991Sdrh 1744e63d9991Sdrh 1745e63d9991Sdrh /* 174666b89c8fSdrh ** Each SQL index is represented in memory by an 174775897234Sdrh ** instance of the following structure. 1748967e8b73Sdrh ** 1749967e8b73Sdrh ** The columns of the table that are to be indexed are described 1750967e8b73Sdrh ** by the aiColumn[] field of this structure. For example, suppose 1751967e8b73Sdrh ** we have the following table and index: 1752967e8b73Sdrh ** 1753967e8b73Sdrh ** CREATE TABLE Ex1(c1 int, c2 int, c3 text); 1754967e8b73Sdrh ** CREATE INDEX Ex2 ON Ex1(c3,c1); 1755967e8b73Sdrh ** 1756967e8b73Sdrh ** In the Table structure describing Ex1, nCol==3 because there are 1757967e8b73Sdrh ** three columns in the table. In the Index structure describing 1758967e8b73Sdrh ** Ex2, nColumn==2 since 2 of the 3 columns of Ex1 are indexed. 1759967e8b73Sdrh ** The value of aiColumn is {2, 0}. aiColumn[0]==2 because the 1760967e8b73Sdrh ** first column to be indexed (c3) has an index of 2 in Ex1.aCol[]. 1761967e8b73Sdrh ** The second column to be indexed (c1) has an index of 0 in 1762967e8b73Sdrh ** Ex1.aCol[], hence Ex2.aiColumn[1]==0. 1763ea1ba17cSdrh ** 1764ea1ba17cSdrh ** The Index.onError field determines whether or not the indexed columns 1765ea1ba17cSdrh ** must be unique and what to do if they are not. When Index.onError=OE_None, 1766ea1ba17cSdrh ** it means this is not a unique index. Otherwise it is a unique index 1767ea1ba17cSdrh ** and the value of Index.onError indicate the which conflict resolution 1768ea1ba17cSdrh ** algorithm to employ whenever an attempt is made to insert a non-unique 1769ea1ba17cSdrh ** element. 177075897234Sdrh */ 177175897234Sdrh struct Index { 177275897234Sdrh char *zName; /* Name of this index */ 1773bbbdc83bSdrh i16 *aiColumn; /* Which columns are used by this index. 1st is 0 */ 1774cfc9df76Sdan LogEst *aiRowLogEst; /* From ANALYZE: Est. rows selected by each column */ 1775967e8b73Sdrh Table *pTable; /* The SQL table being indexed */ 1776a37cdde0Sdanielk1977 char *zColAff; /* String defining the affinity of each column */ 177775897234Sdrh Index *pNext; /* The next index associated with the same table */ 1778b3bf556eSdanielk1977 Schema *pSchema; /* Schema containing this index */ 1779b376daebSdrh u8 *aSortOrder; /* for each column: True==DESC, False==ASC */ 1780b3bf556eSdanielk1977 char **azColl; /* Array of collation sequence names for index */ 17811fe0537eSdrh Expr *pPartIdxWhere; /* WHERE clause for partial indices */ 17822ec2fb22Sdrh KeyInfo *pKeyInfo; /* A KeyInfo object suitable for this index */ 1783b376daebSdrh int tnum; /* DB Page containing root of this index */ 1784bf539c4dSdrh LogEst szIdxRow; /* Estimated average row size in bytes */ 1785bbbdc83bSdrh u16 nKeyCol; /* Number of columns forming the key */ 1786bbbdc83bSdrh u16 nColumn; /* Number of columns stored in the index */ 1787a451017dSdrh u8 onError; /* OE_Abort, OE_Ignore, OE_Replace, or OE_None */ 178848dd1d8eSdrh unsigned idxType:2; /* 1==UNIQUE, 2==PRIMARY KEY, 0==CREATE INDEX */ 1789b376daebSdrh unsigned bUnordered:1; /* Use this index for == or IN queries only */ 17907699d1c4Sdrh unsigned uniqNotNull:1; /* True if UNIQUE and NOT NULL for all columns */ 17917f9c5dbfSdrh unsigned isResized:1; /* True if resizeIndexObject() has been called */ 1792ec95c441Sdrh unsigned isCovering:1; /* True if this is a covering index */ 17931435a9a1Sdrh #ifdef SQLITE_ENABLE_STAT3_OR_STAT4 17942b9cf669Sdrh int nSample; /* Number of elements in aSample[] */ 17958ad169abSdan int nSampleCol; /* Size of IndexSample.anEq[] and so on */ 1796eea568d6Sdan tRowcnt *aAvgEq; /* Average nEq values for keys not in aSample */ 1797faacf17cSdrh IndexSample *aSample; /* Samples of the left-most key */ 1798faacf17cSdrh #endif 179902fa4696Sdan }; 180002fa4696Sdan 180102fa4696Sdan /* 180248dd1d8eSdrh ** Allowed values for Index.idxType 180348dd1d8eSdrh */ 180448dd1d8eSdrh #define SQLITE_IDXTYPE_APPDEF 0 /* Created using CREATE INDEX */ 180548dd1d8eSdrh #define SQLITE_IDXTYPE_UNIQUE 1 /* Implements a UNIQUE constraint */ 180648dd1d8eSdrh #define SQLITE_IDXTYPE_PRIMARYKEY 2 /* Is the PRIMARY KEY for the table */ 180748dd1d8eSdrh 180848dd1d8eSdrh /* Return true if index X is a PRIMARY KEY index */ 180948dd1d8eSdrh #define IsPrimaryKeyIndex(X) ((X)->idxType==SQLITE_IDXTYPE_PRIMARYKEY) 181048dd1d8eSdrh 18115f1d1d9cSdrh /* Return true if index X is a UNIQUE index */ 18125f1d1d9cSdrh #define IsUniqueIndex(X) ((X)->onError!=OE_None) 18135f1d1d9cSdrh 181448dd1d8eSdrh /* 181574e7c8f5Sdrh ** Each sample stored in the sqlite_stat3 table is represented in memory 181674e7c8f5Sdrh ** using a structure of this type. See documentation at the top of the 181774e7c8f5Sdrh ** analyze.c source file for additional information. 181802fa4696Sdan */ 181902fa4696Sdan struct IndexSample { 1820f52bb8d3Sdan void *p; /* Pointer to sampled record */ 1821f52bb8d3Sdan int n; /* Size of record in bytes */ 1822f52bb8d3Sdan tRowcnt *anEq; /* Est. number of rows where the key equals this sample */ 1823f52bb8d3Sdan tRowcnt *anLt; /* Est. number of rows where key is less than this sample */ 1824f52bb8d3Sdan tRowcnt *anDLt; /* Est. number of distinct keys less than this sample */ 182575897234Sdrh }; 182675897234Sdrh 182775897234Sdrh /* 182875897234Sdrh ** Each token coming out of the lexer is an instance of 18294b59ab5eSdrh ** this structure. Tokens are also used as part of an expression. 18304efc4754Sdrh ** 18314efc4754Sdrh ** Note if Token.z==0 then Token.dyn and Token.n are undefined and 1832467bcf36Sshane ** may contain random values. Do not make any assumptions about Token.dyn 18334efc4754Sdrh ** and Token.n when Token.z==0. 183475897234Sdrh */ 183575897234Sdrh struct Token { 1836b7916a78Sdrh const char *z; /* Text of the token. Not NULL-terminated! */ 1837b7916a78Sdrh unsigned int n; /* Number of characters in this token */ 183875897234Sdrh }; 183975897234Sdrh 184075897234Sdrh /* 184113449892Sdrh ** An instance of this structure contains information needed to generate 184213449892Sdrh ** code for a SELECT that contains aggregate functions. 184313449892Sdrh ** 184413449892Sdrh ** If Expr.op==TK_AGG_COLUMN or TK_AGG_FUNCTION then Expr.pAggInfo is a 184513449892Sdrh ** pointer to this structure. The Expr.iColumn field is the index in 184613449892Sdrh ** AggInfo.aCol[] or AggInfo.aFunc[] of information needed to generate 184713449892Sdrh ** code for that node. 184813449892Sdrh ** 184913449892Sdrh ** AggInfo.pGroupBy and AggInfo.aFunc.pExpr point to fields within the 185013449892Sdrh ** original Select structure that describes the SELECT statement. These 185113449892Sdrh ** fields do not need to be freed when deallocating the AggInfo structure. 185213449892Sdrh */ 185313449892Sdrh struct AggInfo { 185413449892Sdrh u8 directMode; /* Direct rendering mode means take data directly 185513449892Sdrh ** from source tables rather than from accumulators */ 185613449892Sdrh u8 useSortingIdx; /* In direct mode, reference the sorting index rather 185713449892Sdrh ** than the source table */ 185813449892Sdrh int sortingIdx; /* Cursor number of the sorting index */ 18595134d135Sdan int sortingIdxPTab; /* Cursor number of pseudo-table */ 186013449892Sdrh int nSortingColumn; /* Number of columns in the sorting index */ 18617e61d18eSdrh int mnReg, mxReg; /* Range of registers allocated for aCol and aFunc */ 1862a451017dSdrh ExprList *pGroupBy; /* The group by clause */ 186313449892Sdrh struct AggInfo_col { /* For each column used in source tables */ 18640817d0dfSdanielk1977 Table *pTab; /* Source table */ 186513449892Sdrh int iTable; /* Cursor number of the source table */ 186613449892Sdrh int iColumn; /* Column number within the source table */ 186713449892Sdrh int iSorterColumn; /* Column number in the sorting index */ 186813449892Sdrh int iMem; /* Memory location that acts as accumulator */ 18695774b806Sdrh Expr *pExpr; /* The original expression */ 187013449892Sdrh } *aCol; 187113449892Sdrh int nColumn; /* Number of used entries in aCol[] */ 187213449892Sdrh int nAccumulator; /* Number of columns that show through to the output. 187313449892Sdrh ** Additional columns are used only as parameters to 187413449892Sdrh ** aggregate functions */ 187513449892Sdrh struct AggInfo_func { /* For each aggregate function */ 187613449892Sdrh Expr *pExpr; /* Expression encoding the function */ 187713449892Sdrh FuncDef *pFunc; /* The aggregate function implementation */ 187813449892Sdrh int iMem; /* Memory location that acts as accumulator */ 1879467bcf36Sshane int iDistinct; /* Ephemeral table used to enforce DISTINCT */ 188013449892Sdrh } *aFunc; 188113449892Sdrh int nFunc; /* Number of entries in aFunc[] */ 188213449892Sdrh }; 188313449892Sdrh 188413449892Sdrh /* 18858677d308Sdrh ** The datatype ynVar is a signed integer, either 16-bit or 32-bit. 18868677d308Sdrh ** Usually it is 16-bits. But if SQLITE_MAX_VARIABLE_NUMBER is greater 18878677d308Sdrh ** than 32767 we have to make it 32-bit. 16-bit is preferred because 18888677d308Sdrh ** it uses less memory in the Expr object, which is a big memory user 18898677d308Sdrh ** in systems with lots of prepared statements. And few applications 18908677d308Sdrh ** need more than about 10 or 20 variables. But some extreme users want 18918677d308Sdrh ** to have prepared statements with over 32767 variables, and for them 18928677d308Sdrh ** the option is available (at compile-time). 18938677d308Sdrh */ 18948677d308Sdrh #if SQLITE_MAX_VARIABLE_NUMBER<=32767 1895481aa74eSdrh typedef i16 ynVar; 18968677d308Sdrh #else 18978677d308Sdrh typedef int ynVar; 18988677d308Sdrh #endif 18998677d308Sdrh 19008677d308Sdrh /* 190175897234Sdrh ** Each node of an expression in the parse tree is an instance 190222f70c32Sdrh ** of this structure. 190322f70c32Sdrh ** 190422f70c32Sdrh ** Expr.op is the opcode. The integer parser token codes are reused 190522f70c32Sdrh ** as opcodes here. For example, the parser defines TK_GE to be an integer 190622f70c32Sdrh ** code representing the ">=" operator. This same integer code is reused 190722f70c32Sdrh ** to represent the greater-than-or-equal-to operator in the expression 190822f70c32Sdrh ** tree. 190922f70c32Sdrh ** 19106ab3a2ecSdanielk1977 ** If the expression is an SQL literal (TK_INTEGER, TK_FLOAT, TK_BLOB, 19116ab3a2ecSdanielk1977 ** or TK_STRING), then Expr.token contains the text of the SQL literal. If 19126ab3a2ecSdanielk1977 ** the expression is a variable (TK_VARIABLE), then Expr.token contains the 19136ab3a2ecSdanielk1977 ** variable name. Finally, if the expression is an SQL function (TK_FUNCTION), 19146ab3a2ecSdanielk1977 ** then Expr.token contains the name of the function. 191522f70c32Sdrh ** 19166ab3a2ecSdanielk1977 ** Expr.pRight and Expr.pLeft are the left and right subexpressions of a 19176ab3a2ecSdanielk1977 ** binary operator. Either or both may be NULL. 19186ab3a2ecSdanielk1977 ** 19196ab3a2ecSdanielk1977 ** Expr.x.pList is a list of arguments if the expression is an SQL function, 19206ab3a2ecSdanielk1977 ** a CASE expression or an IN expression of the form "<lhs> IN (<y>, <z>...)". 19216ab3a2ecSdanielk1977 ** Expr.x.pSelect is used if the expression is a sub-select or an expression of 19226ab3a2ecSdanielk1977 ** the form "<lhs> IN (SELECT ...)". If the EP_xIsSelect bit is set in the 19236ab3a2ecSdanielk1977 ** Expr.flags mask, then Expr.x.pSelect is valid. Otherwise, Expr.x.pList is 19246ab3a2ecSdanielk1977 ** valid. 192522f70c32Sdrh ** 192622f70c32Sdrh ** An expression of the form ID or ID.ID refers to a column in a table. 192722f70c32Sdrh ** For such expressions, Expr.op is set to TK_COLUMN and Expr.iTable is 192822f70c32Sdrh ** the integer cursor number of a VDBE cursor pointing to that table and 192922f70c32Sdrh ** Expr.iColumn is the column number for the specific column. If the 193022f70c32Sdrh ** expression is used as a result in an aggregate SELECT, then the 193122f70c32Sdrh ** value is also stored in the Expr.iAgg column in the aggregate so that 193222f70c32Sdrh ** it can be accessed after all aggregates are computed. 193322f70c32Sdrh ** 19346ab3a2ecSdanielk1977 ** If the expression is an unbound variable marker (a question mark 19356ab3a2ecSdanielk1977 ** character '?' in the original SQL) then the Expr.iTable holds the index 19366ab3a2ecSdanielk1977 ** number for that variable. 193722f70c32Sdrh ** 19381398ad36Sdrh ** If the expression is a subquery then Expr.iColumn holds an integer 19391398ad36Sdrh ** register number containing the result of the subquery. If the 19401398ad36Sdrh ** subquery gives a constant result, then iTable is -1. If the subquery 19411398ad36Sdrh ** gives a different answer at different times during statement processing 19421398ad36Sdrh ** then iTable is the address of a subroutine that computes the subquery. 19431398ad36Sdrh ** 1944aee18ef8Sdanielk1977 ** If the Expr is of type OP_Column, and the table it is selecting from 1945aee18ef8Sdanielk1977 ** is a disk table or the "old.*" pseudo-table, then pTab points to the 1946aee18ef8Sdanielk1977 ** corresponding table definition. 19476ab3a2ecSdanielk1977 ** 19486ab3a2ecSdanielk1977 ** ALLOCATION NOTES: 19496ab3a2ecSdanielk1977 ** 195012ffee8cSdrh ** Expr objects can use a lot of memory space in database schema. To 195112ffee8cSdrh ** help reduce memory requirements, sometimes an Expr object will be 195212ffee8cSdrh ** truncated. And to reduce the number of memory allocations, sometimes 195312ffee8cSdrh ** two or more Expr objects will be stored in a single memory allocation, 195433e619fcSdrh ** together with Expr.zToken strings. 19556ab3a2ecSdanielk1977 ** 1956b7916a78Sdrh ** If the EP_Reduced and EP_TokenOnly flags are set when 195712ffee8cSdrh ** an Expr object is truncated. When EP_Reduced is set, then all 195812ffee8cSdrh ** the child Expr objects in the Expr.pLeft and Expr.pRight subtrees 195912ffee8cSdrh ** are contained within the same memory allocation. Note, however, that 196012ffee8cSdrh ** the subtrees in Expr.x.pList or Expr.x.pSelect are always separately 196112ffee8cSdrh ** allocated, regardless of whether or not EP_Reduced is set. 196275897234Sdrh */ 196375897234Sdrh struct Expr { 19641cc093c2Sdrh u8 op; /* Operation performed by this node */ 1965a9fd84b0Sdrh char affinity; /* The affinity of the column or 0 if not a column */ 1966c5cd1249Sdrh u32 flags; /* Various flags. EP_* See below */ 196733e619fcSdrh union { 1968b7916a78Sdrh char *zToken; /* Token value. Zero terminated and dequoted */ 1969d50ffc41Sdrh int iValue; /* Non-negative integer value if EP_IntValue */ 197033e619fcSdrh } u; 19716ab3a2ecSdanielk1977 19726ab3a2ecSdanielk1977 /* If the EP_TokenOnly flag is set in the Expr.flags mask, then no 19736ab3a2ecSdanielk1977 ** space is allocated for the fields below this point. An attempt to 19746ab3a2ecSdanielk1977 ** access them will result in a segfault or malfunction. 19756ab3a2ecSdanielk1977 *********************************************************************/ 19766ab3a2ecSdanielk1977 19776ab3a2ecSdanielk1977 Expr *pLeft; /* Left subnode */ 19786ab3a2ecSdanielk1977 Expr *pRight; /* Right subnode */ 19796ab3a2ecSdanielk1977 union { 1980c5cd1249Sdrh ExprList *pList; /* op = IN, EXISTS, SELECT, CASE, FUNCTION, BETWEEN */ 1981c5cd1249Sdrh Select *pSelect; /* EP_xIsSelect and op = IN, EXISTS, SELECT */ 19826ab3a2ecSdanielk1977 } x; 19836ab3a2ecSdanielk1977 19846ab3a2ecSdanielk1977 /* If the EP_Reduced flag is set in the Expr.flags mask, then no 19856ab3a2ecSdanielk1977 ** space is allocated for the fields below this point. An attempt to 19866ab3a2ecSdanielk1977 ** access them will result in a segfault or malfunction. 19876ab3a2ecSdanielk1977 *********************************************************************/ 19886ab3a2ecSdanielk1977 19896ec65491Sdrh #if SQLITE_MAX_EXPR_DEPTH>0 19906ec65491Sdrh int nHeight; /* Height of the tree headed by this node */ 19916ec65491Sdrh #endif 1992b7916a78Sdrh int iTable; /* TK_COLUMN: cursor number of table holding column 19932832ad42Sdan ** TK_REGISTER: register number 1994cca9f3d2Sdrh ** TK_TRIGGER: 1 -> new, 0 -> old 1995a4c3c87eSdrh ** EP_Unlikely: 1000 times likelihood */ 19968677d308Sdrh ynVar iColumn; /* TK_COLUMN: column index. -1 for rowid. 1997937d0deaSdan ** TK_VARIABLE: variable number (always >= 1). */ 1998b7916a78Sdrh i16 iAgg; /* Which entry in pAggInfo->aCol[] or ->aFunc[] */ 1999b7916a78Sdrh i16 iRightJoinTable; /* If EP_FromJoin, the right table of the join */ 2000030796dfSdrh u8 op2; /* TK_REGISTER: original value of Expr.op 2001030796dfSdrh ** TK_COLUMN: the value of p5 for OP_Column 2002030796dfSdrh ** TK_AGG_FUNCTION: nesting depth */ 200313449892Sdrh AggInfo *pAggInfo; /* Used by TK_AGG_COLUMN and TK_AGG_FUNCTION */ 20047d10d5a6Sdrh Table *pTab; /* Table for TK_COLUMN expressions. */ 200575897234Sdrh }; 200675897234Sdrh 200775897234Sdrh /* 20081f16230bSdrh ** The following are the meanings of bits in the Expr.flags field. 20091f16230bSdrh */ 2010c5cd1249Sdrh #define EP_FromJoin 0x000001 /* Originated in ON or USING clause of a join */ 2011c5cd1249Sdrh #define EP_Agg 0x000002 /* Contains one or more aggregate functions */ 2012c5cd1249Sdrh #define EP_Resolved 0x000004 /* IDs have been resolved to COLUMNs */ 2013c5cd1249Sdrh #define EP_Error 0x000008 /* Expression contains one or more errors */ 2014c5cd1249Sdrh #define EP_Distinct 0x000010 /* Aggregate function with DISTINCT keyword */ 2015c5cd1249Sdrh #define EP_VarSelect 0x000020 /* pSelect is correlated, not constant */ 2016c5cd1249Sdrh #define EP_DblQuoted 0x000040 /* token.z was originally in "..." */ 2017c5cd1249Sdrh #define EP_InfixFunc 0x000080 /* True for an infix function: LIKE, GLOB, etc */ 2018fbb24d10Sdrh #define EP_Collate 0x000100 /* Tree contains a TK_COLLATE operator */ 2019fbb24d10Sdrh #define EP_Generic 0x000200 /* Ignore COLLATE or affinity on this tree */ 2020c5cd1249Sdrh #define EP_IntValue 0x000400 /* Integer value contained in u.iValue */ 2021c5cd1249Sdrh #define EP_xIsSelect 0x000800 /* x.pSelect is valid (otherwise x.pList is) */ 2022a4c3c87eSdrh #define EP_Skip 0x001000 /* COLLATE, AS, or UNLIKELY */ 2023c5cd1249Sdrh #define EP_Reduced 0x002000 /* Expr struct EXPR_REDUCEDSIZE bytes only */ 2024c5cd1249Sdrh #define EP_TokenOnly 0x004000 /* Expr struct EXPR_TOKENONLYSIZE bytes only */ 2025c5cd1249Sdrh #define EP_Static 0x008000 /* Held in memory not obtained from malloc() */ 2026c5cd1249Sdrh #define EP_MemToken 0x010000 /* Need to sqlite3DbFree() Expr.zToken */ 2027ebb6a65dSdrh #define EP_NoReduce 0x020000 /* Cannot EXPRDUP_REDUCE this Expr */ 2028a4c3c87eSdrh #define EP_Unlikely 0x040000 /* unlikely() or likelihood() function */ 2029b1fba286Sdrh #define EP_Constant 0x080000 /* Node is a constant */ 20301af466ebSdrh 20311af466ebSdrh /* 20321f16230bSdrh ** These macros can be used to test, set, or clear bits in the 20331f16230bSdrh ** Expr.flags field. 20341f16230bSdrh */ 2035c5cd1249Sdrh #define ExprHasProperty(E,P) (((E)->flags&(P))!=0) 2036c5cd1249Sdrh #define ExprHasAllProperty(E,P) (((E)->flags&(P))==(P)) 20371f16230bSdrh #define ExprSetProperty(E,P) (E)->flags|=(P) 20381f16230bSdrh #define ExprClearProperty(E,P) (E)->flags&=~(P) 20391f16230bSdrh 2040ebb6a65dSdrh /* The ExprSetVVAProperty() macro is used for Verification, Validation, 2041ebb6a65dSdrh ** and Accreditation only. It works like ExprSetProperty() during VVA 2042ebb6a65dSdrh ** processes but is a no-op for delivery. 2043ebb6a65dSdrh */ 2044ebb6a65dSdrh #ifdef SQLITE_DEBUG 2045ebb6a65dSdrh # define ExprSetVVAProperty(E,P) (E)->flags|=(P) 2046ebb6a65dSdrh #else 2047ebb6a65dSdrh # define ExprSetVVAProperty(E,P) 2048ebb6a65dSdrh #endif 2049ebb6a65dSdrh 20501f16230bSdrh /* 20516ab3a2ecSdanielk1977 ** Macros to determine the number of bytes required by a normal Expr 20526ab3a2ecSdanielk1977 ** struct, an Expr struct with the EP_Reduced flag set in Expr.flags 20536ab3a2ecSdanielk1977 ** and an Expr struct with the EP_TokenOnly flag set. 20546ab3a2ecSdanielk1977 */ 205512ffee8cSdrh #define EXPR_FULLSIZE sizeof(Expr) /* Full size */ 205612ffee8cSdrh #define EXPR_REDUCEDSIZE offsetof(Expr,iTable) /* Common features */ 2057b7916a78Sdrh #define EXPR_TOKENONLYSIZE offsetof(Expr,pLeft) /* Fewer features */ 20586ab3a2ecSdanielk1977 20596ab3a2ecSdanielk1977 /* 20606ab3a2ecSdanielk1977 ** Flags passed to the sqlite3ExprDup() function. See the header comment 20616ab3a2ecSdanielk1977 ** above sqlite3ExprDup() for details. 20626ab3a2ecSdanielk1977 */ 206312ffee8cSdrh #define EXPRDUP_REDUCE 0x0001 /* Used reduced-size Expr nodes */ 20646ab3a2ecSdanielk1977 20656ab3a2ecSdanielk1977 /* 206675897234Sdrh ** A list of expressions. Each expression may optionally have a 206775897234Sdrh ** name. An expr/name combination can be used in several ways, such 206875897234Sdrh ** as the list of "expr AS ID" fields following a "SELECT" or in the 206975897234Sdrh ** list of "ID = expr" items in an UPDATE. A list of expressions can 2070ad3cab52Sdrh ** also be used as the argument to a function, in which case the a.zName 207175897234Sdrh ** field is not used. 20720dde4739Sdrh ** 20730dde4739Sdrh ** By default the Expr.zSpan field holds a human-readable description of 20740dde4739Sdrh ** the expression that is used in the generation of error messages and 20750dde4739Sdrh ** column labels. In this case, Expr.zSpan is typically the text of a 20760dde4739Sdrh ** column expression as it exists in a SELECT statement. However, if 20770dde4739Sdrh ** the bSpanIsTab flag is set, then zSpan is overloaded to mean the name 20783e3f1a5bSdrh ** of the result column in the form: DATABASE.TABLE.COLUMN. This later 20793e3f1a5bSdrh ** form is used for name resolution with nested FROM clauses. 208075897234Sdrh */ 208175897234Sdrh struct ExprList { 208275897234Sdrh int nExpr; /* Number of expressions on the list */ 2083d872bb18Sdrh struct ExprList_item { /* For each expression in the list */ 208475897234Sdrh Expr *pExpr; /* The list of expressions */ 208575897234Sdrh char *zName; /* Token associated with this expression */ 2086b7916a78Sdrh char *zSpan; /* Original text of the expression */ 20878e2ca029Sdrh u8 sortOrder; /* 1 for DESC or 0 for ASC */ 20880dde4739Sdrh unsigned done :1; /* A flag to indicate when processing is finished */ 20893e3f1a5bSdrh unsigned bSpanIsTab :1; /* zSpan holds DB.TABLE.COLUMN */ 2090d673cddaSdrh unsigned reusable :1; /* Constant expression is reusable */ 2091c2acc4e4Sdrh union { 2092c2acc4e4Sdrh struct { 20934b3ac73cSdrh u16 iOrderByCol; /* For ORDER BY, column number in result set */ 20948b213899Sdrh u16 iAlias; /* Index into Parse.aAlias[] for zName */ 2095c2acc4e4Sdrh } x; 2096c2acc4e4Sdrh int iConstExprReg; /* Register in which Expr value is cached */ 2097c2acc4e4Sdrh } u; 2098d872bb18Sdrh } *a; /* Alloc a power of two greater or equal to nExpr */ 209975897234Sdrh }; 210075897234Sdrh 210175897234Sdrh /* 2102b7916a78Sdrh ** An instance of this structure is used by the parser to record both 2103b7916a78Sdrh ** the parse tree for an expression and the span of input text for an 2104b7916a78Sdrh ** expression. 2105b7916a78Sdrh */ 2106b7916a78Sdrh struct ExprSpan { 2107b7916a78Sdrh Expr *pExpr; /* The expression parse tree */ 2108b7916a78Sdrh const char *zStart; /* First character of input text */ 2109b7916a78Sdrh const char *zEnd; /* One character past the end of input text */ 2110b7916a78Sdrh }; 2111b7916a78Sdrh 2112b7916a78Sdrh /* 2113ad3cab52Sdrh ** An instance of this structure can hold a simple list of identifiers, 2114ad3cab52Sdrh ** such as the list "a,b,c" in the following statements: 2115ad3cab52Sdrh ** 2116ad3cab52Sdrh ** INSERT INTO t(a,b,c) VALUES ...; 2117ad3cab52Sdrh ** CREATE INDEX idx ON t(a,b,c); 2118ad3cab52Sdrh ** CREATE TRIGGER trig BEFORE UPDATE ON t(a,b,c) ...; 2119ad3cab52Sdrh ** 2120ad3cab52Sdrh ** The IdList.a.idx field is used when the IdList represents the list of 2121ad3cab52Sdrh ** column names after a table name in an INSERT statement. In the statement 2122ad3cab52Sdrh ** 2123ad3cab52Sdrh ** INSERT INTO t(a,b,c) ... 2124ad3cab52Sdrh ** 2125ad3cab52Sdrh ** If "a" is the k-th column of table "t", then IdList.a[0].idx==k. 212675897234Sdrh */ 212775897234Sdrh struct IdList { 21286d4abfbeSdrh struct IdList_item { 2129ad3cab52Sdrh char *zName; /* Name of the identifier */ 2130967e8b73Sdrh int idx; /* Index in some Table.aCol[] of a column named zName */ 2131ad3cab52Sdrh } *a; 213213449892Sdrh int nId; /* Number of identifiers on the list */ 2133ad3cab52Sdrh }; 2134ad3cab52Sdrh 2135ad3cab52Sdrh /* 213651669863Sdrh ** The bitmask datatype defined below is used for various optimizations. 2137ca83ac51Sdrh ** 2138ca83ac51Sdrh ** Changing this from a 64-bit to a 32-bit type limits the number of 2139ca83ac51Sdrh ** tables in a join to 32 instead of 64. But it also reduces the size 2140ca83ac51Sdrh ** of the library by 738 bytes on ix86. 214151669863Sdrh */ 2142ca83ac51Sdrh typedef u64 Bitmask; 214351669863Sdrh 214451669863Sdrh /* 214500e13613Sdanielk1977 ** The number of bits in a Bitmask. "BMS" means "BitMask Size". 214600e13613Sdanielk1977 */ 214700e13613Sdanielk1977 #define BMS ((int)(sizeof(Bitmask)*8)) 214800e13613Sdanielk1977 214900e13613Sdanielk1977 /* 21507699d1c4Sdrh ** A bit in a Bitmask 21517699d1c4Sdrh */ 21527699d1c4Sdrh #define MASKBIT(n) (((Bitmask)1)<<(n)) 2153693e6719Sdrh #define MASKBIT32(n) (((unsigned int)1)<<(n)) 21547699d1c4Sdrh 21557699d1c4Sdrh /* 2156ad3cab52Sdrh ** The following structure describes the FROM clause of a SELECT statement. 2157ad3cab52Sdrh ** Each table or subquery in the FROM clause is a separate element of 2158ad3cab52Sdrh ** the SrcList.a[] array. 2159d24cc427Sdrh ** 2160d24cc427Sdrh ** With the addition of multiple database support, the following structure 2161d24cc427Sdrh ** can also be used to describe a particular table such as the table that 2162d24cc427Sdrh ** is modified by an INSERT, DELETE, or UPDATE statement. In standard SQL, 2163d24cc427Sdrh ** such a table must be a simple name: ID. But in SQLite, the table can 2164d24cc427Sdrh ** now be identified by a database name, a dot, then the table name: ID.ID. 2165c49de5d9Sdrh ** 2166c49de5d9Sdrh ** The jointype starts out showing the join type between the current table 2167c49de5d9Sdrh ** and the next table on the list. The parser builds the list this way. 2168c49de5d9Sdrh ** But sqlite3SrcListShiftJoinType() later shifts the jointypes so that each 2169c49de5d9Sdrh ** jointype expresses the join between the table and the previous table. 21702a6a7eebSdrh ** 21712a6a7eebSdrh ** In the colUsed field, the high-order bit (bit 63) is set if the table 21722a6a7eebSdrh ** contains more than 63 columns and the 64-th or later column is used. 2173ad3cab52Sdrh */ 2174ad3cab52Sdrh struct SrcList { 21756d1626ebSdrh int nSrc; /* Number of tables or subqueries in the FROM clause */ 21766d1626ebSdrh u32 nAlloc; /* Number of entries allocated in a[] below */ 2177ad3cab52Sdrh struct SrcList_item { 217841fb5cd1Sdan Schema *pSchema; /* Schema to which this item is fixed */ 2179113088ecSdrh char *zDatabase; /* Name of database holding this table */ 2180ad3cab52Sdrh char *zName; /* Name of the table */ 2181ad3cab52Sdrh char *zAlias; /* The "B" part of a "A AS B" phrase. zName is the "A" */ 2182daffd0e5Sdrh Table *pTab; /* An SQL table corresponding to zName */ 2183daffd0e5Sdrh Select *pSelect; /* A SELECT statement used in place of a table name */ 21845b6a9ed4Sdrh int addrFillSub; /* Address of subroutine to manifest a subquery */ 21855b6a9ed4Sdrh int regReturn; /* Register holding return address of addrFillSub */ 21865f612295Sdrh int regResult; /* Registers holding results of a co-routine */ 2187c49de5d9Sdrh u8 jointype; /* Type of join between this able and the previous */ 218821172c4cSdrh unsigned notIndexed :1; /* True if there is a NOT INDEXED clause */ 218921172c4cSdrh unsigned isCorrelated :1; /* True if sub-query is correlated */ 219021172c4cSdrh unsigned viaCoroutine :1; /* Implemented as a co-routine */ 2191f43fe6e9Sdan unsigned isRecursive :1; /* True for recursive reference in WITH */ 2192ce7e189dSdan #ifndef SQLITE_OMIT_EXPLAIN 2193ce7e189dSdan u8 iSelectId; /* If pSelect!=0, the id of the sub-select in EQP */ 2194ce7e189dSdan #endif 2195e68fbe79Sdrh int iCursor; /* The VDBE cursor number used to access this table */ 2196ad3cab52Sdrh Expr *pOn; /* The ON clause of a join */ 2197ad3cab52Sdrh IdList *pUsing; /* The USING clause of a join */ 2198cd38d520Sdanielk1977 Bitmask colUsed; /* Bit N (1<<N) set if column N of pTab is used */ 219985574e31Sdanielk1977 char *zIndex; /* Identifier from "INDEXED BY <zIndex>" clause */ 220085574e31Sdanielk1977 Index *pIndex; /* Index structure corresponding to zIndex, if any */ 2201113088ecSdrh } a[1]; /* One entry for each identifier on the list */ 220275897234Sdrh }; 220375897234Sdrh 220475897234Sdrh /* 220501f3f253Sdrh ** Permitted values of the SrcList.a.jointype field 220601f3f253Sdrh */ 220701f3f253Sdrh #define JT_INNER 0x0001 /* Any kind of inner or cross join */ 22083dec223cSdrh #define JT_CROSS 0x0002 /* Explicit use of the CROSS keyword */ 22093dec223cSdrh #define JT_NATURAL 0x0004 /* True for a "natural" join */ 22103dec223cSdrh #define JT_LEFT 0x0008 /* Left outer join */ 22113dec223cSdrh #define JT_RIGHT 0x0010 /* Right outer join */ 22123dec223cSdrh #define JT_OUTER 0x0020 /* The "OUTER" keyword is present */ 22133dec223cSdrh #define JT_ERROR 0x0040 /* unknown or unsupported join type */ 221401f3f253Sdrh 2215111a6a7dSdrh 2216111a6a7dSdrh /* 2217336a5300Sdrh ** Flags appropriate for the wctrlFlags parameter of sqlite3WhereBegin() 2218336a5300Sdrh ** and the WhereInfo.wctrlFlags member. 221908c88eb0Sdrh */ 22206df2acd2Sdrh #define WHERE_ORDERBY_NORMAL 0x0000 /* No-op */ 22216df2acd2Sdrh #define WHERE_ORDERBY_MIN 0x0001 /* ORDER BY processing for min() func */ 22226df2acd2Sdrh #define WHERE_ORDERBY_MAX 0x0002 /* ORDER BY processing for max() func */ 22236df2acd2Sdrh #define WHERE_ONEPASS_DESIRED 0x0004 /* Want to do one-pass UPDATE/DELETE */ 2224336a5300Sdrh #define WHERE_DUPLICATES_OK 0x0008 /* Ok to return a row more than once */ 22259ef61f4fSdrh #define WHERE_OMIT_OPEN_CLOSE 0x0010 /* Table cursors are already open */ 22269ef61f4fSdrh #define WHERE_FORCE_TABLE 0x0020 /* Do not use an index-only search */ 22279ef61f4fSdrh #define WHERE_ONETABLE_ONLY 0x0040 /* Only code the 1st table in pTabList */ 22289ef61f4fSdrh #define WHERE_AND_ONLY 0x0080 /* Don't use indices for OR terms */ 2229319f677dSdrh #define WHERE_GROUPBY 0x0100 /* pOrderBy is really a GROUP BY */ 22304f402f26Sdrh #define WHERE_DISTINCTBY 0x0200 /* pOrderby is really a DISTINCT clause */ 22316457a353Sdrh #define WHERE_WANT_DISTINCT 0x0400 /* All output needs to be distinct */ 2232374cd78cSdan #define WHERE_SORTBYGROUP 0x0800 /* Support sqlite3WhereIsSorted() */ 22333526319bSdrh #define WHERE_REOPEN_IDX 0x1000 /* Try to use OP_ReopenIdx */ 2234a9d1ccb9Sdanielk1977 22354f402f26Sdrh /* Allowed return values from sqlite3WhereIsDistinct() 223675897234Sdrh */ 2237e8e4af76Sdrh #define WHERE_DISTINCT_NOOP 0 /* DISTINCT keyword not used */ 2238ae651d61Sdrh #define WHERE_DISTINCT_UNIQUE 1 /* No duplicates */ 2239ae651d61Sdrh #define WHERE_DISTINCT_ORDERED 2 /* All duplicates are adjacent */ 2240e8e4af76Sdrh #define WHERE_DISTINCT_UNORDERED 3 /* Duplicates are scattered */ 224138cc40c2Sdan 224275897234Sdrh /* 2243b3bce662Sdanielk1977 ** A NameContext defines a context in which to resolve table and column 2244b3bce662Sdanielk1977 ** names. The context consists of a list of tables (the pSrcList) field and 2245b3bce662Sdanielk1977 ** a list of named expression (pEList). The named expression list may 2246b3bce662Sdanielk1977 ** be NULL. The pSrc corresponds to the FROM clause of a SELECT or 2247b3bce662Sdanielk1977 ** to the table being operated on by INSERT, UPDATE, or DELETE. The 2248b3bce662Sdanielk1977 ** pEList corresponds to the result set of a SELECT and is NULL for 2249b3bce662Sdanielk1977 ** other statements. 2250b3bce662Sdanielk1977 ** 2251b3bce662Sdanielk1977 ** NameContexts can be nested. When resolving names, the inner-most 2252b3bce662Sdanielk1977 ** context is searched first. If no match is found, the next outer 2253b3bce662Sdanielk1977 ** context is checked. If there is still no match, the next context 2254b3bce662Sdanielk1977 ** is checked. This process continues until either a match is found 2255b3bce662Sdanielk1977 ** or all contexts are check. When a match is found, the nRef member of 2256b3bce662Sdanielk1977 ** the context containing the match is incremented. 2257b3bce662Sdanielk1977 ** 2258b3bce662Sdanielk1977 ** Each subquery gets a new NameContext. The pNext field points to the 2259b3bce662Sdanielk1977 ** NameContext in the parent query. Thus the process of scanning the 2260b3bce662Sdanielk1977 ** NameContext list corresponds to searching through successively outer 2261b3bce662Sdanielk1977 ** subqueries looking for a match. 2262b3bce662Sdanielk1977 */ 2263b3bce662Sdanielk1977 struct NameContext { 2264b3bce662Sdanielk1977 Parse *pParse; /* The parser */ 2265b3bce662Sdanielk1977 SrcList *pSrcList; /* One or more tables used to resolve names */ 226626080d92Sdrh ExprList *pEList; /* Optional list of result-set columns */ 226713449892Sdrh AggInfo *pAggInfo; /* Information about aggregates at this level */ 2268b3bce662Sdanielk1977 NameContext *pNext; /* Next outer name context. NULL for outermost */ 2269a51009b2Sdrh int nRef; /* Number of names resolved by this context */ 2270a51009b2Sdrh int nErr; /* Number of errors encountered while resolving names */ 22719588ad95Sdrh u16 ncFlags; /* Zero or more NC_* flags defined below */ 2272b3bce662Sdanielk1977 }; 2273b3bce662Sdanielk1977 2274b3bce662Sdanielk1977 /* 2275a51009b2Sdrh ** Allowed values for the NameContext, ncFlags field. 22769588ad95Sdrh ** 22779588ad95Sdrh ** Note: NC_MinMaxAgg must have the same value as SF_MinMaxAgg and 22789588ad95Sdrh ** SQLITE_FUNC_MINMAX. 22799588ad95Sdrh ** 2280a51009b2Sdrh */ 22819588ad95Sdrh #define NC_AllowAgg 0x0001 /* Aggregate functions are allowed here */ 22829588ad95Sdrh #define NC_HasAgg 0x0002 /* One or more aggregate functions seen */ 22839588ad95Sdrh #define NC_IsCheck 0x0004 /* True if resolving names in a CHECK constraint */ 22849588ad95Sdrh #define NC_InAggFunc 0x0008 /* True if analyzing arguments to an agg func */ 22859588ad95Sdrh #define NC_PartIdx 0x0010 /* True if resolving a partial index WHERE */ 22869588ad95Sdrh #define NC_MinMaxAgg 0x1000 /* min/max aggregates seen. See note above */ 2287a51009b2Sdrh 2288a51009b2Sdrh /* 22899bb61fe7Sdrh ** An instance of the following structure contains all information 22909bb61fe7Sdrh ** needed to generate code for a single SELECT statement. 2291a76b5dfcSdrh ** 2292d11d382cSdrh ** nLimit is set to -1 if there is no LIMIT clause. nOffset is set to 0. 2293d11d382cSdrh ** If there is a LIMIT clause, the parser sets nLimit to the value of the 2294d11d382cSdrh ** limit and nOffset to the value of the offset (or 0 if there is not 2295d11d382cSdrh ** offset). But later on, nLimit and nOffset become the memory locations 2296d11d382cSdrh ** in the VDBE that record the limit and offset counters. 22970342b1f5Sdrh ** 2298b9bb7c18Sdrh ** addrOpenEphm[] entries contain the address of OP_OpenEphemeral opcodes. 22990342b1f5Sdrh ** These addresses must be stored so that we can go back and fill in 230066a5167bSdrh ** the P4_KEYINFO and P2 parameters later. Neither the KeyInfo nor 23010342b1f5Sdrh ** the number of columns in P2 can be computed at the same time 2302b9bb7c18Sdrh ** as the OP_OpenEphm instruction is coded because not 23030342b1f5Sdrh ** enough information about the compound query is known at that point. 2304b9bb7c18Sdrh ** The KeyInfo for addrOpenTran[0] and [1] contains collating sequences 23052c79733fSdrh ** for the result set. The KeyInfo for addrOpenEphm[2] contains collating 23060342b1f5Sdrh ** sequences for the ORDER BY clause. 23079bb61fe7Sdrh */ 23089bb61fe7Sdrh struct Select { 23099bb61fe7Sdrh ExprList *pEList; /* The fields of the result */ 23107b58daeaSdrh u8 op; /* One of: TK_UNION TK_ALL TK_INTERSECT TK_EXCEPT */ 23117d10d5a6Sdrh u16 selFlags; /* Various SF_* values */ 2312a451017dSdrh int iLimit, iOffset; /* Memory registers holding LIMIT & OFFSET counters */ 2313abd4c723Sdrh #if SELECTTRACE_ENABLED 2314eb9b884cSdrh char zSelName[12]; /* Symbolic name of this SELECT use for debugging */ 2315abd4c723Sdrh #endif 2316079a3072Sdrh int addrOpenEphm[2]; /* OP_OpenEphem opcodes related to this select */ 2317c63367efSdrh u64 nSelectRow; /* Estimated number of result rows */ 2318ad3cab52Sdrh SrcList *pSrc; /* The FROM clause */ 23199bb61fe7Sdrh Expr *pWhere; /* The WHERE clause */ 23209bb61fe7Sdrh ExprList *pGroupBy; /* The GROUP BY clause */ 23219bb61fe7Sdrh Expr *pHaving; /* The HAVING clause */ 23229bb61fe7Sdrh ExprList *pOrderBy; /* The ORDER BY clause */ 2323967e8b73Sdrh Select *pPrior; /* Prior select in a compound select statement */ 23241e281291Sdrh Select *pNext; /* Next select to the left in a compound */ 2325a2dc3b1aSdanielk1977 Expr *pLimit; /* LIMIT expression. NULL means not used. */ 2326a2dc3b1aSdanielk1977 Expr *pOffset; /* OFFSET expression. NULL means not used. */ 23274e9119d9Sdan With *pWith; /* WITH clause attached to this select. Or NULL. */ 23289bb61fe7Sdrh }; 23299bb61fe7Sdrh 23309bb61fe7Sdrh /* 23317d10d5a6Sdrh ** Allowed values for Select.selFlags. The "SF" prefix stands for 23327d10d5a6Sdrh ** "Select Flag". 23337d10d5a6Sdrh */ 233421172c4cSdrh #define SF_Distinct 0x0001 /* Output should be DISTINCT */ 233521172c4cSdrh #define SF_Resolved 0x0002 /* Identifiers have been resolved */ 233621172c4cSdrh #define SF_Aggregate 0x0004 /* Contains aggregate functions */ 233721172c4cSdrh #define SF_UsesEphemeral 0x0008 /* Uses the OpenEphemeral opcode */ 233821172c4cSdrh #define SF_Expanded 0x0010 /* sqlite3SelectExpand() called on this */ 233921172c4cSdrh #define SF_HasTypeInfo 0x0020 /* FROM subqueries have Table metadata */ 23409588ad95Sdrh #define SF_Compound 0x0040 /* Part of a compound query */ 234121172c4cSdrh #define SF_Values 0x0080 /* Synthesized from VALUES clause */ 2342079a3072Sdrh /* 0x0100 NOT USED */ 2343832ee3d4Sdrh #define SF_NestedFrom 0x0200 /* Part of a parenthesized FROM clause */ 2344d58d3278Sdrh #define SF_MaybeConvert 0x0400 /* Need convertCompoundSelectToSubquery() */ 2345eae73fbfSdan #define SF_Recursive 0x0800 /* The recursive part of a recursive CTE */ 23469588ad95Sdrh #define SF_MinMaxAgg 0x1000 /* Aggregate containing min() or max() */ 23477d10d5a6Sdrh 23487d10d5a6Sdrh 23497d10d5a6Sdrh /* 2350340309fdSdrh ** The results of a SELECT can be distributed in several ways, as defined 2351340309fdSdrh ** by one of the following macros. The "SRT" prefix means "SELECT Result 2352340309fdSdrh ** Type". 2353340309fdSdrh ** 2354340309fdSdrh ** SRT_Union Store results as a key in a temporary index 2355340309fdSdrh ** identified by pDest->iSDParm. 2356340309fdSdrh ** 2357340309fdSdrh ** SRT_Except Remove results from the temporary index pDest->iSDParm. 2358340309fdSdrh ** 2359340309fdSdrh ** SRT_Exists Store a 1 in memory cell pDest->iSDParm if the result 2360340309fdSdrh ** set is not empty. 2361340309fdSdrh ** 2362340309fdSdrh ** SRT_Discard Throw the results away. This is used by SELECT 2363340309fdSdrh ** statements within triggers whose only purpose is 2364340309fdSdrh ** the side-effects of functions. 2365340309fdSdrh ** 2366340309fdSdrh ** All of the above are free to ignore their ORDER BY clause. Those that 2367340309fdSdrh ** follow must honor the ORDER BY clause. 2368340309fdSdrh ** 2369340309fdSdrh ** SRT_Output Generate a row of output (using the OP_ResultRow 2370340309fdSdrh ** opcode) for each row in the result set. 2371340309fdSdrh ** 2372340309fdSdrh ** SRT_Mem Only valid if the result is a single column. 2373340309fdSdrh ** Store the first column of the first result row 2374340309fdSdrh ** in register pDest->iSDParm then abandon the rest 2375340309fdSdrh ** of the query. This destination implies "LIMIT 1". 2376340309fdSdrh ** 2377340309fdSdrh ** SRT_Set The result must be a single column. Store each 2378340309fdSdrh ** row of result as the key in table pDest->iSDParm. 2379340309fdSdrh ** Apply the affinity pDest->affSdst before storing 2380340309fdSdrh ** results. Used to implement "IN (SELECT ...)". 2381340309fdSdrh ** 2382340309fdSdrh ** SRT_EphemTab Create an temporary table pDest->iSDParm and store 2383340309fdSdrh ** the result there. The cursor is left open after 2384340309fdSdrh ** returning. This is like SRT_Table except that 2385340309fdSdrh ** this destination uses OP_OpenEphemeral to create 2386340309fdSdrh ** the table first. 2387340309fdSdrh ** 2388340309fdSdrh ** SRT_Coroutine Generate a co-routine that returns a new row of 2389340309fdSdrh ** results each time it is invoked. The entry point 2390340309fdSdrh ** of the co-routine is stored in register pDest->iSDParm 2391340309fdSdrh ** and the result row is stored in pDest->nDest registers 2392340309fdSdrh ** starting with pDest->iSdst. 2393340309fdSdrh ** 2394781def29Sdrh ** SRT_Table Store results in temporary table pDest->iSDParm. 23958e1ee88cSdrh ** SRT_Fifo This is like SRT_EphemTab except that the table 23968e1ee88cSdrh ** is assumed to already be open. SRT_Fifo has 23978e1ee88cSdrh ** the additional property of being able to ignore 23988e1ee88cSdrh ** the ORDER BY clause. 2399781def29Sdrh ** 24008e1ee88cSdrh ** SRT_DistFifo Store results in a temporary table pDest->iSDParm. 2401340309fdSdrh ** But also use temporary table pDest->iSDParm+1 as 2402340309fdSdrh ** a record of all prior results and ignore any duplicate 24038e1ee88cSdrh ** rows. Name means: "Distinct Fifo". 2404781def29Sdrh ** 2405781def29Sdrh ** SRT_Queue Store results in priority queue pDest->iSDParm (really 2406781def29Sdrh ** an index). Append a sequence number so that all entries 2407781def29Sdrh ** are distinct. 2408781def29Sdrh ** 2409781def29Sdrh ** SRT_DistQueue Store results in priority queue pDest->iSDParm only if 2410781def29Sdrh ** the same record has never been stored before. The 2411781def29Sdrh ** index at pDest->iSDParm+1 hold all prior stores. 2412fef5208cSdrh */ 241313449892Sdrh #define SRT_Union 1 /* Store result as keys in an index */ 241413449892Sdrh #define SRT_Except 2 /* Remove result from a UNION index */ 24159ed1dfa8Sdanielk1977 #define SRT_Exists 3 /* Store 1 if the result is not empty */ 24169ed1dfa8Sdanielk1977 #define SRT_Discard 4 /* Do not save the results anywhere */ 24178e1ee88cSdrh #define SRT_Fifo 5 /* Store result as data with an automatic rowid */ 24188e1ee88cSdrh #define SRT_DistFifo 6 /* Like SRT_Fifo, but unique results only */ 24198e1ee88cSdrh #define SRT_Queue 7 /* Store result in an queue */ 24208e1ee88cSdrh #define SRT_DistQueue 8 /* Like SRT_Queue, but unique results only */ 2421fef5208cSdrh 242213449892Sdrh /* The ORDER BY clause is ignored for all of the above */ 24238e1ee88cSdrh #define IgnorableOrderby(X) ((X->eDest)<=SRT_DistQueue) 242413449892Sdrh 24258e1ee88cSdrh #define SRT_Output 9 /* Output each row of result */ 24268e1ee88cSdrh #define SRT_Mem 10 /* Store result in a memory cell */ 24278e1ee88cSdrh #define SRT_Set 11 /* Store results as keys in an index */ 24288e1ee88cSdrh #define SRT_EphemTab 12 /* Create transient tab and store like SRT_Table */ 24298e1ee88cSdrh #define SRT_Coroutine 13 /* Generate a single row of result */ 24308e1ee88cSdrh #define SRT_Table 14 /* Store result as data with an automatic rowid */ 24312282792aSdrh 24322282792aSdrh /* 2433634d81deSdrh ** An instance of this object describes where to put of the results of 2434634d81deSdrh ** a SELECT statement. 24356c8c8ce0Sdanielk1977 */ 24366c8c8ce0Sdanielk1977 struct SelectDest { 2437634d81deSdrh u8 eDest; /* How to dispose of the results. On of SRT_* above. */ 2438634d81deSdrh char affSdst; /* Affinity used when eDest==SRT_Set */ 24392b596da8Sdrh int iSDParm; /* A parameter used by the eDest disposal method */ 24402b596da8Sdrh int iSdst; /* Base register where results are written */ 24412b596da8Sdrh int nSdst; /* Number of registers allocated */ 2442fe1c6bb9Sdrh ExprList *pOrderBy; /* Key columns for SRT_Queue and SRT_DistQueue */ 24436c8c8ce0Sdanielk1977 }; 24446c8c8ce0Sdanielk1977 24456c8c8ce0Sdanielk1977 /* 24460b9f50d8Sdrh ** During code generation of statements that do inserts into AUTOINCREMENT 24470b9f50d8Sdrh ** tables, the following information is attached to the Table.u.autoInc.p 24480b9f50d8Sdrh ** pointer of each autoincrement table to record some side information that 24490b9f50d8Sdrh ** the code generator needs. We have to keep per-table autoincrement 24500b9f50d8Sdrh ** information in case inserts are down within triggers. Triggers do not 24510b9f50d8Sdrh ** normally coordinate their activities, but we do need to coordinate the 24520b9f50d8Sdrh ** loading and saving of autoincrement information. 24530b9f50d8Sdrh */ 24540b9f50d8Sdrh struct AutoincInfo { 24550b9f50d8Sdrh AutoincInfo *pNext; /* Next info block in a list of them all */ 24560b9f50d8Sdrh Table *pTab; /* Table this info block refers to */ 24570b9f50d8Sdrh int iDb; /* Index in sqlite3.aDb[] of database holding pTab */ 24580b9f50d8Sdrh int regCtr; /* Memory register holding the rowid counter */ 24590b9f50d8Sdrh }; 24600b9f50d8Sdrh 24610b9f50d8Sdrh /* 2462ceea3321Sdrh ** Size of the column cache 2463ceea3321Sdrh */ 2464ceea3321Sdrh #ifndef SQLITE_N_COLCACHE 2465ceea3321Sdrh # define SQLITE_N_COLCACHE 10 2466ceea3321Sdrh #endif 2467ceea3321Sdrh 24682832ad42Sdan /* 24692832ad42Sdan ** At least one instance of the following structure is created for each 24702832ad42Sdan ** trigger that may be fired while parsing an INSERT, UPDATE or DELETE 24712832ad42Sdan ** statement. All such objects are stored in the linked list headed at 24722832ad42Sdan ** Parse.pTriggerPrg and deleted once statement compilation has been 24732832ad42Sdan ** completed. 24742832ad42Sdan ** 24752832ad42Sdan ** A Vdbe sub-program that implements the body and WHEN clause of trigger 24762832ad42Sdan ** TriggerPrg.pTrigger, assuming a default ON CONFLICT clause of 24772832ad42Sdan ** TriggerPrg.orconf, is stored in the TriggerPrg.pProgram variable. 24782832ad42Sdan ** The Parse.pTriggerPrg list never contains two entries with the same 24792832ad42Sdan ** values for both pTrigger and orconf. 248065a7cd16Sdan ** 2481bb5f168fSdan ** The TriggerPrg.aColmask[0] variable is set to a mask of old.* columns 248265a7cd16Sdan ** accessed (or set to 0 for triggers fired as a result of INSERT 2483bb5f168fSdan ** statements). Similarly, the TriggerPrg.aColmask[1] variable is set to 2484bb5f168fSdan ** a mask of new.* columns used by the program. 24852832ad42Sdan */ 24862832ad42Sdan struct TriggerPrg { 24872832ad42Sdan Trigger *pTrigger; /* Trigger this program was coded from */ 24882832ad42Sdan TriggerPrg *pNext; /* Next entry in Parse.pTriggerPrg list */ 2489a451017dSdrh SubProgram *pProgram; /* Program implementing pTrigger/orconf */ 2490a451017dSdrh int orconf; /* Default ON CONFLICT policy */ 2491a451017dSdrh u32 aColmask[2]; /* Masks of old.*, new.* columns accessed */ 2492165921a7Sdan }; 2493165921a7Sdan 249464123585Sdrh /* 249564123585Sdrh ** The yDbMask datatype for the bitmask of all attached databases. 249664123585Sdrh */ 249701c7dc88Sdrh #if SQLITE_MAX_ATTACHED>30 2498a7ab6d81Sdrh typedef unsigned char yDbMask[(SQLITE_MAX_ATTACHED+9)/8]; 2499a7ab6d81Sdrh # define DbMaskTest(M,I) (((M)[(I)/8]&(1<<((I)&7)))!=0) 2500a7ab6d81Sdrh # define DbMaskZero(M) memset((M),0,sizeof(M)) 2501a7ab6d81Sdrh # define DbMaskSet(M,I) (M)[(I)/8]|=(1<<((I)&7)) 2502a7ab6d81Sdrh # define DbMaskAllZero(M) sqlite3DbMaskAllZero(M) 2503a7ab6d81Sdrh # define DbMaskNonZero(M) (sqlite3DbMaskAllZero(M)==0) 250401c7dc88Sdrh #else 250564123585Sdrh typedef unsigned int yDbMask; 2506a7ab6d81Sdrh # define DbMaskTest(M,I) (((M)&(((yDbMask)1)<<(I)))!=0) 2507a7ab6d81Sdrh # define DbMaskZero(M) (M)=0 2508a7ab6d81Sdrh # define DbMaskSet(M,I) (M)|=(((yDbMask)1)<<(I)) 2509a7ab6d81Sdrh # define DbMaskAllZero(M) (M)==0 2510a7ab6d81Sdrh # define DbMaskNonZero(M) (M)!=0 251101c7dc88Sdrh #endif 251201c7dc88Sdrh 2513ceea3321Sdrh /* 2514f57b3399Sdrh ** An SQL parser context. A copy of this structure is passed through 2515f57b3399Sdrh ** the parser and down into all the parser action routine in order to 2516f57b3399Sdrh ** carry around information that is global to the entire parse. 2517f1974846Sdrh ** 2518f1974846Sdrh ** The structure is divided into two parts. When the parser and code 2519f1974846Sdrh ** generate call themselves recursively, the first part of the structure 2520f1974846Sdrh ** is constant but the second part is reset at the beginning and end of 2521f1974846Sdrh ** each recursion. 2522c00da105Sdanielk1977 ** 2523c00da105Sdanielk1977 ** The nTableLock and aTableLock variables are only used if the shared-cache 2524c00da105Sdanielk1977 ** feature is enabled (if sqlite3Tsd()->useSharedData is true). They are 2525c00da105Sdanielk1977 ** used to store the set of table-locks required by the statement being 2526c00da105Sdanielk1977 ** compiled. Function sqlite3TableLock() is used to add entries to the 2527c00da105Sdanielk1977 ** list. 252875897234Sdrh */ 252975897234Sdrh struct Parse { 25309bb575fdSdrh sqlite3 *db; /* The main database structure */ 253175897234Sdrh char *zErrMsg; /* An error message */ 253275897234Sdrh Vdbe *pVdbe; /* An engine for executing database bytecode */ 2533a451017dSdrh int rc; /* Return code from execution */ 2534836faa48Sdrh u8 colNamesSet; /* TRUE after OP_ColumnName has been issued to pVdbe */ 2535a6ecd338Sdrh u8 checkSchema; /* Causes schema cookie check after an error */ 2536205f48e6Sdrh u8 nested; /* Number of nested calls to the parser/code generator */ 2537892d3179Sdrh u8 nTempReg; /* Number of temporary registers in aTempReg[] */ 2538a451017dSdrh u8 isMultiWrite; /* True if statement may modify/insert multiple rows */ 2539a451017dSdrh u8 mayAbort; /* True if statement may throw an ABORT exception */ 2540d58d3278Sdrh u8 hasCompound; /* Need to invoke convertCompoundSelectToSubquery() */ 2541aceb31b1Sdrh u8 okConstFactor; /* OK to factor out constants */ 2542892d3179Sdrh int aTempReg[8]; /* Holding area for temporary registers */ 2543892d3179Sdrh int nRangeReg; /* Size of the temporary register block */ 2544892d3179Sdrh int iRangeReg; /* First register in temporary register block */ 254575897234Sdrh int nErr; /* Number of errors seen */ 2546832508b7Sdrh int nTab; /* Number of previously allocated VDBE cursors */ 254719a775c2Sdrh int nMem; /* Number of memory cells used so far */ 2548fef5208cSdrh int nSet; /* Number of sets used so far */ 25491d8cb21fSdan int nOnce; /* Number of OP_Once instructions so far */ 255073d5b8f5Sdrh int nOpAlloc; /* Number of slots allocated for Vdbe.aOp[] */ 255161019c78Sdrh int iFixedOp; /* Never back out opcodes iFixedOp-1 or earlier */ 2552aa9b8963Sdrh int ckBase; /* Base register of data during check constraints */ 2553b2b9d3d7Sdrh int iPartIdxTab; /* Table corresponding to a partial index */ 2554ceea3321Sdrh int iCacheLevel; /* ColCache valid when aColCache[].iLevel<=iCacheLevel */ 2555ceea3321Sdrh int iCacheCnt; /* Counter used to generate aColCache[].lru values */ 25567df89c8cSdrh int nLabel; /* Number of labels used */ 25577df89c8cSdrh int *aLabel; /* Space to hold the labels */ 25582f7794c1Sdrh struct yColCache { 2559e55cbd72Sdrh int iTable; /* Table cursor number */ 25607df89c8cSdrh i16 iColumn; /* Table column number */ 2561ceea3321Sdrh u8 tempReg; /* iReg is a temp register that needs to be freed */ 2562ceea3321Sdrh int iLevel; /* Nesting level */ 2563ceea3321Sdrh int iReg; /* Reg with value of this column. 0 means none. */ 2564ceea3321Sdrh int lru; /* Least recently used entry has the smallest value */ 2565ceea3321Sdrh } aColCache[SQLITE_N_COLCACHE]; /* One for each column cache entry */ 2566f30a969bSdrh ExprList *pConstExpr;/* Constant expressions */ 25677df89c8cSdrh Token constraintName;/* Name of the constraint currently being parsed */ 256864123585Sdrh yDbMask writeMask; /* Start a write transaction on these databases */ 256964123585Sdrh yDbMask cookieMask; /* Bitmask of schema verified databases */ 2570c797d4dcSdrh int cookieValue[SQLITE_MAX_ATTACHED+2]; /* Values of cookies to verify */ 2571a451017dSdrh int regRowid; /* Register holding rowid of CREATE TABLE entry */ 2572a451017dSdrh int regRoot; /* Register holding root page number for new objects */ 2573a451017dSdrh int nMaxArg; /* Max args passed to user function by sub-program */ 2574abd4c723Sdrh #if SELECTTRACE_ENABLED 2575abd4c723Sdrh int nSelect; /* Number of SELECT statements seen */ 2576eb9b884cSdrh int nSelectIndent; /* How far to indent SELECTTRACE() output */ 2577abd4c723Sdrh #endif 2578c00da105Sdanielk1977 #ifndef SQLITE_OMIT_SHARED_CACHE 2579c00da105Sdanielk1977 int nTableLock; /* Number of locks in aTableLock */ 2580c00da105Sdanielk1977 TableLock *aTableLock; /* Required table locks for shared-cache mode */ 2581c00da105Sdanielk1977 #endif 25820b9f50d8Sdrh AutoincInfo *pAinc; /* Information about AUTOINCREMENT counters */ 2583f1974846Sdrh 2584165921a7Sdan /* Information used while coding trigger programs. */ 258565a7cd16Sdan Parse *pToplevel; /* Parse structure for main program (or NULL) */ 2586165921a7Sdan Table *pTriggerTab; /* Table triggers are being coded for */ 2587c6bd4e4aSdrh int addrCrTab; /* Address of OP_CreateTable opcode on CREATE TABLE */ 2588c6bd4e4aSdrh int addrSkipPK; /* Address of instruction to skip PRIMARY KEY index */ 25894f402f26Sdrh u32 nQueryLoop; /* Est number of iterations of a query (10*log2(N)) */ 259065a7cd16Sdan u32 oldmask; /* Mask of old.* columns referenced */ 2591bb5f168fSdan u32 newmask; /* Mask of new.* columns referenced */ 259265a7cd16Sdan u8 eTriggerOp; /* TK_UPDATE, TK_INSERT or TK_DELETE */ 259365a7cd16Sdan u8 eOrconf; /* Default ON CONFLICT policy for trigger steps */ 2594d66c8309Sdan u8 disableTriggers; /* True to disable triggers */ 2595165921a7Sdan 25967df89c8cSdrh /************************************************************************ 25977df89c8cSdrh ** Above is constant between recursions. Below is reset before and after 25987df89c8cSdrh ** each recursion. The boundary between these two regions is determined 25997df89c8cSdrh ** using offsetof(Parse,nVar) so the nVar field must be the first field 26007df89c8cSdrh ** in the recursive region. 26017df89c8cSdrh ************************************************************************/ 2602f1974846Sdrh 2603f1974846Sdrh int nVar; /* Number of '?' variables seen in the SQL so far */ 2604124c0b49Sdrh int nzVar; /* Number of available slots in azVar[] */ 26057f9c5dbfSdrh u8 iPkSortOrder; /* ASC or DESC for INTEGER PRIMARY KEY */ 26067df89c8cSdrh u8 bFreeWith; /* True if pWith should be freed with parser */ 2607a451017dSdrh u8 explain; /* True if the EXPLAIN flag is found on the query */ 2608a451017dSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 2609a451017dSdrh u8 declareVtab; /* True if inside sqlite3_declare_vtab() */ 2610a451017dSdrh int nVtabLock; /* Number of virtual tables to lock */ 2611a451017dSdrh #endif 2612a451017dSdrh int nAlias; /* Number of aliased result set columns */ 2613a451017dSdrh int nHeight; /* Expression tree height of current sub-select */ 2614a451017dSdrh #ifndef SQLITE_OMIT_EXPLAIN 2615a451017dSdrh int iSelectId; /* ID of current select for EXPLAIN output */ 2616a451017dSdrh int iNextSelectId; /* Next available select ID for EXPLAIN output */ 2617a451017dSdrh #endif 2618124c0b49Sdrh char **azVar; /* Pointers to names of parameters */ 2619937d0deaSdan Vdbe *pReprepare; /* VM being reprepared (sqlite3Reprepare()) */ 2620f1974846Sdrh const char *zTail; /* All SQL text past the last semicolon parsed */ 2621f1974846Sdrh Table *pNewTable; /* A table being constructed by CREATE TABLE */ 2622f1974846Sdrh Trigger *pNewTrigger; /* Trigger under construct by a CREATE TRIGGER */ 2623f1974846Sdrh const char *zAuthContext; /* The 6th parameter to db->xAuth callbacks */ 2624a451017dSdrh Token sNameToken; /* Token with unqualified schema object name */ 2625a451017dSdrh Token sLastToken; /* The last token parsed */ 2626b9bb7c18Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 262733b3933cSdanielk1977 Token sArg; /* Complete text of a module argument */ 26284f3dd150Sdrh Table **apVtabLock; /* Pointer to virtual tables needing locking */ 2629b9bb7c18Sdrh #endif 2630588a9a1aSdrh Table *pZombieTab; /* List of Table objects to delete after code gen */ 26312832ad42Sdan TriggerPrg *pTriggerPrg; /* Linked list of coded triggers */ 26324e9119d9Sdan With *pWith; /* Current WITH clause, or NULL */ 263375897234Sdrh }; 263475897234Sdrh 2635a451017dSdrh /* 2636a451017dSdrh ** Return true if currently inside an sqlite3_declare_vtab() call. 2637a451017dSdrh */ 26387e6ebfb2Sdanielk1977 #ifdef SQLITE_OMIT_VIRTUALTABLE 26397e6ebfb2Sdanielk1977 #define IN_DECLARE_VTAB 0 26407e6ebfb2Sdanielk1977 #else 26417e6ebfb2Sdanielk1977 #define IN_DECLARE_VTAB (pParse->declareVtab) 26427e6ebfb2Sdanielk1977 #endif 26437e6ebfb2Sdanielk1977 2644d99bc930Sdanielk1977 /* 264585e2096fSdrh ** An instance of the following structure can be declared on a stack and used 264685e2096fSdrh ** to save the Parse.zAuthContext value so that it can be restored later. 264785e2096fSdrh */ 264885e2096fSdrh struct AuthContext { 264985e2096fSdrh const char *zAuthContext; /* Put saved Parse.zAuthContext here */ 265085e2096fSdrh Parse *pParse; /* The Parse structure */ 265185e2096fSdrh }; 265285e2096fSdrh 265385e2096fSdrh /* 2654a748fdccSdrh ** Bitfield flags for P5 value in various opcodes. 2655b0c374ffSrdc */ 26563e9ca094Sdrh #define OPFLAG_NCHANGE 0x01 /* Set to update db->nChange */ 26573e9ca094Sdrh #define OPFLAG_LASTROWID 0x02 /* Set to update db->lastRowid */ 26583e9ca094Sdrh #define OPFLAG_ISUPDATE 0x04 /* This OP_Insert is an sql UPDATE */ 26593e9ca094Sdrh #define OPFLAG_APPEND 0x08 /* This is likely to be an append */ 26603e9ca094Sdrh #define OPFLAG_USESEEKRESULT 0x10 /* Try to avoid a seek in BtreeInsert() */ 26613e9ca094Sdrh #define OPFLAG_CLEARCACHE 0x20 /* Clear pseudo-table cache in OP_Column */ 2662a748fdccSdrh #define OPFLAG_LENGTHARG 0x40 /* OP_Column only used for length() */ 2663a748fdccSdrh #define OPFLAG_TYPEOFARG 0x80 /* OP_Column only used for typeof() */ 2664428c218cSdan #define OPFLAG_BULKCSR 0x01 /* OP_Open** used to open bulk cursor */ 2665428c218cSdan #define OPFLAG_P2ISREG 0x02 /* P2 to OP_Open** is a register number */ 2666953f7611Sdrh #define OPFLAG_PERMUTE 0x01 /* OP_Compare: use the permutation */ 2667b0c374ffSrdc 2668b0c374ffSrdc /* 2669d99bc930Sdanielk1977 * Each trigger present in the database schema is stored as an instance of 2670d99bc930Sdanielk1977 * struct Trigger. 2671d99bc930Sdanielk1977 * 2672d99bc930Sdanielk1977 * Pointers to instances of struct Trigger are stored in two ways. 26739bb575fdSdrh * 1. In the "trigHash" hash table (part of the sqlite3* that represents the 2674d99bc930Sdanielk1977 * database). This allows Trigger structures to be retrieved by name. 2675d99bc930Sdanielk1977 * 2. All triggers associated with a single table form a linked list, using the 2676ad3cab52Sdrh * pNext member of struct Trigger. A pointer to the first element of the 2677ad3cab52Sdrh * linked list is stored as the "pTrigger" member of the associated 2678ad3cab52Sdrh * struct Table. 2679d99bc930Sdanielk1977 * 2680ad3cab52Sdrh * The "step_list" member points to the first element of a linked list 2681ad3cab52Sdrh * containing the SQL statements specified as the trigger program. 2682d99bc930Sdanielk1977 */ 2683d99bc930Sdanielk1977 struct Trigger { 2684165921a7Sdan char *zName; /* The name of the trigger */ 2685d99bc930Sdanielk1977 char *table; /* The table or view to which the trigger applies */ 2686f0f258b1Sdrh u8 op; /* One of TK_DELETE, TK_UPDATE, TK_INSERT */ 2687dca76841Sdrh u8 tr_tm; /* One of TRIGGER_BEFORE, TRIGGER_AFTER */ 2688467bcf36Sshane Expr *pWhen; /* The WHEN clause of the expression (may be NULL) */ 2689d99bc930Sdanielk1977 IdList *pColumns; /* If this is an UPDATE OF <column-list> trigger, 2690d99bc930Sdanielk1977 the <column-list> is stored here */ 2691e501b89aSdanielk1977 Schema *pSchema; /* Schema containing the trigger */ 2692e501b89aSdanielk1977 Schema *pTabSchema; /* Schema containing the table */ 2693d99bc930Sdanielk1977 TriggerStep *step_list; /* Link list of trigger program steps */ 2694d99bc930Sdanielk1977 Trigger *pNext; /* Next trigger associated with the table */ 2695c3f9bad2Sdanielk1977 }; 2696d99bc930Sdanielk1977 2697d99bc930Sdanielk1977 /* 2698dca76841Sdrh ** A trigger is either a BEFORE or an AFTER trigger. The following constants 2699dca76841Sdrh ** determine which. 2700dca76841Sdrh ** 2701dca76841Sdrh ** If there are multiple triggers, you might of some BEFORE and some AFTER. 2702dca76841Sdrh ** In that cases, the constants below can be ORed together. 2703dca76841Sdrh */ 2704dca76841Sdrh #define TRIGGER_BEFORE 1 2705dca76841Sdrh #define TRIGGER_AFTER 2 2706dca76841Sdrh 2707dca76841Sdrh /* 2708d99bc930Sdanielk1977 * An instance of struct TriggerStep is used to store a single SQL statement 2709d99bc930Sdanielk1977 * that is a part of a trigger-program. 2710d99bc930Sdanielk1977 * 2711d99bc930Sdanielk1977 * Instances of struct TriggerStep are stored in a singly linked list (linked 2712d99bc930Sdanielk1977 * using the "pNext" member) referenced by the "step_list" member of the 2713d99bc930Sdanielk1977 * associated struct Trigger instance. The first element of the linked list is 2714d99bc930Sdanielk1977 * the first step of the trigger-program. 2715d99bc930Sdanielk1977 * 2716d99bc930Sdanielk1977 * The "op" member indicates whether this is a "DELETE", "INSERT", "UPDATE" or 2717d99bc930Sdanielk1977 * "SELECT" statement. The meanings of the other members is determined by the 2718d99bc930Sdanielk1977 * value of "op" as follows: 2719d99bc930Sdanielk1977 * 2720d99bc930Sdanielk1977 * (op == TK_INSERT) 2721d99bc930Sdanielk1977 * orconf -> stores the ON CONFLICT algorithm 2722d99bc930Sdanielk1977 * pSelect -> If this is an INSERT INTO ... SELECT ... statement, then 2723d99bc930Sdanielk1977 * this stores a pointer to the SELECT statement. Otherwise NULL. 2724b7916a78Sdrh * target -> A token holding the quoted name of the table to insert into. 2725d99bc930Sdanielk1977 * pExprList -> If this is an INSERT INTO ... VALUES ... statement, then 2726d99bc930Sdanielk1977 * this stores values to be inserted. Otherwise NULL. 2727d99bc930Sdanielk1977 * pIdList -> If this is an INSERT INTO ... (<column-names>) VALUES ... 2728ad3cab52Sdrh * statement, then this stores the column-names to be 2729ad3cab52Sdrh * inserted into. 2730d99bc930Sdanielk1977 * 2731d99bc930Sdanielk1977 * (op == TK_DELETE) 2732b7916a78Sdrh * target -> A token holding the quoted name of the table to delete from. 2733d99bc930Sdanielk1977 * pWhere -> The WHERE clause of the DELETE statement if one is specified. 2734d99bc930Sdanielk1977 * Otherwise NULL. 2735d99bc930Sdanielk1977 * 2736d99bc930Sdanielk1977 * (op == TK_UPDATE) 2737b7916a78Sdrh * target -> A token holding the quoted name of the table to update rows of. 2738d99bc930Sdanielk1977 * pWhere -> The WHERE clause of the UPDATE statement if one is specified. 2739d99bc930Sdanielk1977 * Otherwise NULL. 2740d99bc930Sdanielk1977 * pExprList -> A list of the columns to update and the expressions to update 27414adee20fSdanielk1977 * them to. See sqlite3Update() documentation of "pChanges" 2742ad3cab52Sdrh * argument. 2743d99bc930Sdanielk1977 * 2744d99bc930Sdanielk1977 */ 2745c3f9bad2Sdanielk1977 struct TriggerStep { 2746b1819a0bSdrh u8 op; /* One of TK_DELETE, TK_UPDATE, TK_INSERT, TK_SELECT */ 2747b1819a0bSdrh u8 orconf; /* OE_Rollback etc. */ 2748a69d9168Sdrh Trigger *pTrig; /* The trigger that this step is a part of */ 2749b1819a0bSdrh Select *pSelect; /* SELECT statment or RHS of INSERT INTO .. SELECT ... */ 2750b1819a0bSdrh Token target; /* Target table for DELETE, UPDATE, INSERT */ 2751b1819a0bSdrh Expr *pWhere; /* The WHERE clause for DELETE or UPDATE steps */ 275275593d96Sdrh ExprList *pExprList; /* SET clause for UPDATE. */ 2753b1819a0bSdrh IdList *pIdList; /* Column names for INSERT */ 2754c3f9bad2Sdanielk1977 TriggerStep *pNext; /* Next in the link-list */ 2755187e4c6aSdrh TriggerStep *pLast; /* Last element in link-list. Valid for 1st elem only */ 2756c3f9bad2Sdanielk1977 }; 2757c3f9bad2Sdanielk1977 2758d99bc930Sdanielk1977 /* 2759f26e09c8Sdrh ** The following structure contains information used by the sqliteFix... 2760f26e09c8Sdrh ** routines as they walk the parse tree to make database references 2761f26e09c8Sdrh ** explicit. 2762f26e09c8Sdrh */ 2763f26e09c8Sdrh typedef struct DbFixer DbFixer; 2764f26e09c8Sdrh struct DbFixer { 2765f26e09c8Sdrh Parse *pParse; /* The parsing context. Error messages written here */ 276641fb5cd1Sdan Schema *pSchema; /* Fix items to this schema */ 276746539d7cSdan int bVarOnly; /* Check for variable references only */ 2768f26e09c8Sdrh const char *zDb; /* Make sure all objects are contained in this database */ 2769f26e09c8Sdrh const char *zType; /* Type of the container - used for error messages */ 2770f26e09c8Sdrh const Token *pName; /* Name of the container - used for error messages */ 2771f26e09c8Sdrh }; 2772f26e09c8Sdrh 2773f26e09c8Sdrh /* 2774ade86483Sdrh ** An objected used to accumulate the text of a string where we 2775ade86483Sdrh ** do not necessarily know how big the string will be in the end. 2776ade86483Sdrh */ 2777ade86483Sdrh struct StrAccum { 2778633e6d57Sdrh sqlite3 *db; /* Optional database for lookaside. Can be NULL */ 2779ade86483Sdrh char *zBase; /* A base allocation. Not from malloc. */ 2780ade86483Sdrh char *zText; /* The string collected so far */ 2781ade86483Sdrh int nChar; /* Length of the string so far */ 2782ade86483Sdrh int nAlloc; /* Amount of space allocated in zText */ 2783bb4957f8Sdrh int mxAlloc; /* Maximum allowed string length */ 2784b975598eSdrh u8 useMalloc; /* 0: none, 1: sqlite3DbMalloc, 2: sqlite3_malloc */ 2785b49bc86aSdrh u8 accError; /* STRACCUM_NOMEM or STRACCUM_TOOBIG */ 2786ade86483Sdrh }; 2787b49bc86aSdrh #define STRACCUM_NOMEM 1 2788b49bc86aSdrh #define STRACCUM_TOOBIG 2 2789ade86483Sdrh 2790ade86483Sdrh /* 2791234c39dfSdrh ** A pointer to this structure is used to communicate information 2792234c39dfSdrh ** from sqlite3Init and OP_ParseSchema into the sqlite3InitCallback. 2793234c39dfSdrh */ 2794234c39dfSdrh typedef struct { 27959bb575fdSdrh sqlite3 *db; /* The database being initialized */ 2796234c39dfSdrh char **pzErrMsg; /* Error message stored here */ 2797a451017dSdrh int iDb; /* 0 for main database. 1 for TEMP, 2.. for ATTACHed */ 279815ca1df1Sdrh int rc; /* Result code stored here */ 2799234c39dfSdrh } InitData; 2800234c39dfSdrh 2801b6c29897Sdrh /* 280240257ffdSdrh ** Structure containing global configuration data for the SQLite library. 280333589797Sdrh ** 280433589797Sdrh ** This structure also contains some state information. 280540257ffdSdrh */ 280640257ffdSdrh struct Sqlite3Config { 2807fec00eabSdrh int bMemstat; /* True to enable memory status */ 2808fec00eabSdrh int bCoreMutex; /* True to enable core mutexing */ 2809fec00eabSdrh int bFullMutex; /* True to enable full mutexing */ 2810cd74b611Sdan int bOpenUri; /* True to interpret filenames as URIs */ 2811de9a7b8aSdrh int bUseCis; /* Use covering indices for full-scans */ 28120a687d12Sdrh int mxStrlen; /* Maximum string length */ 281309fe6143Sdrh int neverCorrupt; /* Database is always well-formed */ 2814633e6d57Sdrh int szLookaside; /* Default lookaside buffer size */ 2815633e6d57Sdrh int nLookaside; /* Default lookaside buffer count */ 2816fec00eabSdrh sqlite3_mem_methods m; /* Low-level memory allocation interface */ 28176d2ab0e4Sdanielk1977 sqlite3_mutex_methods mutex; /* Low-level mutex interface */ 281822e21ff4Sdan sqlite3_pcache_methods2 pcache2; /* Low-level page-cache interface */ 281940257ffdSdrh void *pHeap; /* Heap storage space */ 282033589797Sdrh int nHeap; /* Size of pHeap[] */ 282133589797Sdrh int mnReq, mxReq; /* Min and max heap requests sizes */ 28229b4c59faSdrh sqlite3_int64 szMmap; /* mmap() space per open file */ 28239b4c59faSdrh sqlite3_int64 mxMmap; /* Maximum value for szMmap */ 282433589797Sdrh void *pScratch; /* Scratch memory */ 282533589797Sdrh int szScratch; /* Size of each scratch buffer */ 282633589797Sdrh int nScratch; /* Number of scratch buffers */ 282733589797Sdrh void *pPage; /* Page cache memory */ 282833589797Sdrh int szPage; /* Size of each page in pPage[] */ 282933589797Sdrh int nPage; /* Number of pages in pPage[] */ 28301875f7a3Sdrh int mxParserStack; /* maximum depth of the parser stack */ 28311875f7a3Sdrh int sharedCacheEnabled; /* true if shared-cache mode enabled */ 28321875f7a3Sdrh /* The above might be initialized to non-zero. The following need to always 28331875f7a3Sdrh ** initially be zero, however. */ 283471bc31c6Sdanielk1977 int isInit; /* True after initialization has finished */ 2835502b4e00Sdanielk1977 int inProgress; /* True while initialization in progress */ 2836e1ab2193Sdan int isMutexInit; /* True after mutexes are initialized */ 283771bc31c6Sdanielk1977 int isMallocInit; /* True after malloc is initialized */ 2838e1ab2193Sdan int isPCacheInit; /* True after malloc is initialized */ 283993ed56d9Sdrh int nRefInitMutex; /* Number of users of pInitMutex */ 2840c007f61bSdrh sqlite3_mutex *pInitMutex; /* Mutex used by sqlite3_initialize() */ 28413f280701Sdrh void (*xLog)(void*,int,const char*); /* Function for logging */ 28423f280701Sdrh void *pLogArg; /* First argument to xLog() */ 2843ac455939Sdan #ifdef SQLITE_ENABLE_SQLLOG 2844ac455939Sdan void(*xSqllog)(void*,sqlite3*,const char*, int); 2845ac455939Sdan void *pSqllogArg; 2846ac455939Sdan #endif 2847688852abSdrh #ifdef SQLITE_VDBE_COVERAGE 2848688852abSdrh /* The following callback (if not NULL) is invoked on every VDBE branch 2849688852abSdrh ** operation. Set the callback using SQLITE_TESTCTRL_VDBE_COVERAGE. 2850688852abSdrh */ 2851688852abSdrh void (*xVdbeBranch)(void*,int iSrcLine,u8 eThis,u8 eMx); /* Callback */ 2852688852abSdrh void *pVdbeBranchArg; /* 1st argument */ 2853688852abSdrh #endif 2854c007f61bSdrh #ifndef SQLITE_OMIT_BUILTIN_TEST 2855c007f61bSdrh int (*xTestCallback)(int); /* Invoked by sqlite3FaultSim() */ 2856c007f61bSdrh #endif 2857c007f61bSdrh int bLocaltimeFault; /* True to fail localtime() calls */ 285840257ffdSdrh }; 285940257ffdSdrh 286040257ffdSdrh /* 286109fe6143Sdrh ** This macro is used inside of assert() statements to indicate that 286209fe6143Sdrh ** the assert is only valid on a well-formed database. Instead of: 286309fe6143Sdrh ** 286409fe6143Sdrh ** assert( X ); 286509fe6143Sdrh ** 286609fe6143Sdrh ** One writes: 286709fe6143Sdrh ** 2868b2023665Sdrh ** assert( X || CORRUPT_DB ); 286909fe6143Sdrh ** 2870b2023665Sdrh ** CORRUPT_DB is true during normal operation. CORRUPT_DB does not indicate 2871b2023665Sdrh ** that the database is definitely corrupt, only that it might be corrupt. 2872b2023665Sdrh ** For most test cases, CORRUPT_DB is set to false using a special 2873b2023665Sdrh ** sqlite3_test_control(). This enables assert() statements to prove 2874b2023665Sdrh ** things that are always true for well-formed databases. 287509fe6143Sdrh */ 2876b2023665Sdrh #define CORRUPT_DB (sqlite3Config.neverCorrupt==0) 287709fe6143Sdrh 287809fe6143Sdrh /* 28797d10d5a6Sdrh ** Context pointer passed down through the tree-walk. 28807d10d5a6Sdrh */ 28817d10d5a6Sdrh struct Walker { 28827d10d5a6Sdrh int (*xExprCallback)(Walker*, Expr*); /* Callback for expressions */ 28837d10d5a6Sdrh int (*xSelectCallback)(Walker*,Select*); /* Callback for SELECTs */ 2884b290f117Sdan void (*xSelectCallback2)(Walker*,Select*);/* Second callback for SELECTs */ 28857d10d5a6Sdrh Parse *pParse; /* Parser context. */ 2886030796dfSdrh int walkerDepth; /* Number of subqueries */ 28877d10d5a6Sdrh union { /* Extra data for callback */ 28887d10d5a6Sdrh NameContext *pNC; /* Naming context */ 28897d10d5a6Sdrh int i; /* Integer value */ 2890374fdce4Sdrh SrcList *pSrcList; /* FROM clause */ 2891030796dfSdrh struct SrcCount *pSrcCount; /* Counting column references */ 28927d10d5a6Sdrh } u; 28937d10d5a6Sdrh }; 28947d10d5a6Sdrh 28957d10d5a6Sdrh /* Forward declarations */ 28967d10d5a6Sdrh int sqlite3WalkExpr(Walker*, Expr*); 28977d10d5a6Sdrh int sqlite3WalkExprList(Walker*, ExprList*); 28987d10d5a6Sdrh int sqlite3WalkSelect(Walker*, Select*); 28997d10d5a6Sdrh int sqlite3WalkSelectExpr(Walker*, Select*); 29007d10d5a6Sdrh int sqlite3WalkSelectFrom(Walker*, Select*); 29017d10d5a6Sdrh 29027d10d5a6Sdrh /* 29037d10d5a6Sdrh ** Return code from the parse-tree walking primitives and their 29047d10d5a6Sdrh ** callbacks. 29057d10d5a6Sdrh */ 29062bf90f1eSdrh #define WRC_Continue 0 /* Continue down into children */ 29072bf90f1eSdrh #define WRC_Prune 1 /* Omit children but continue walking siblings */ 29082bf90f1eSdrh #define WRC_Abort 2 /* Abandon the tree walk */ 29097d10d5a6Sdrh 29107d10d5a6Sdrh /* 2911eae73fbfSdan ** An instance of this structure represents a set of one or more CTEs 2912c49832c2Sdrh ** (common table expressions) created by a single WITH clause. 29137d562dbeSdan */ 29147d562dbeSdan struct With { 2915c49832c2Sdrh int nCte; /* Number of CTEs in the WITH clause */ 29164e9119d9Sdan With *pOuter; /* Containing WITH clause, or NULL */ 2917c49832c2Sdrh struct Cte { /* For each CTE in the WITH clause.... */ 29184e9119d9Sdan char *zName; /* Name of this CTE */ 29194e9119d9Sdan ExprList *pCols; /* List of explicit column names, or NULL */ 2920c49832c2Sdrh Select *pSelect; /* The definition of this CTE */ 2921f2655fe8Sdan const char *zErr; /* Error message for circular references */ 29227d562dbeSdan } a[1]; 29237d562dbeSdan }; 29247d562dbeSdan 29257d562dbeSdan /* 292666150956Sdrh ** Assuming zIn points to the first byte of a UTF-8 character, 292766150956Sdrh ** advance zIn to point to the first byte of the next UTF-8 character. 29284a919118Sdrh */ 29294a919118Sdrh #define SQLITE_SKIP_UTF8(zIn) { \ 29304a919118Sdrh if( (*(zIn++))>=0xc0 ){ \ 29314a919118Sdrh while( (*zIn & 0xc0)==0x80 ){ zIn++; } \ 29324a919118Sdrh } \ 29334a919118Sdrh } 29344a919118Sdrh 29354a919118Sdrh /* 29369978c97eSdrh ** The SQLITE_*_BKPT macros are substitutes for the error codes with 29379978c97eSdrh ** the same name but without the _BKPT suffix. These macros invoke 29389978c97eSdrh ** routines that report the line-number on which the error originated 29399978c97eSdrh ** using sqlite3_log(). The routines also provide a convenient place 29409978c97eSdrh ** to set a debugger breakpoint. 294149285708Sdrh */ 29429978c97eSdrh int sqlite3CorruptError(int); 29439978c97eSdrh int sqlite3MisuseError(int); 29449978c97eSdrh int sqlite3CantopenError(int); 29459978c97eSdrh #define SQLITE_CORRUPT_BKPT sqlite3CorruptError(__LINE__) 29469978c97eSdrh #define SQLITE_MISUSE_BKPT sqlite3MisuseError(__LINE__) 29479978c97eSdrh #define SQLITE_CANTOPEN_BKPT sqlite3CantopenError(__LINE__) 29489978c97eSdrh 294949285708Sdrh 295049285708Sdrh /* 2951b4a1fed2Sdrh ** FTS4 is really an extension for FTS3. It is enabled using the 295260ec914cSpeter.d.reid ** SQLITE_ENABLE_FTS3 macro. But to avoid confusion we also call 295360ec914cSpeter.d.reid ** the SQLITE_ENABLE_FTS4 macro to serve as an alias for SQLITE_ENABLE_FTS3. 2954b4a1fed2Sdrh */ 2955b4a1fed2Sdrh #if defined(SQLITE_ENABLE_FTS4) && !defined(SQLITE_ENABLE_FTS3) 2956b4a1fed2Sdrh # define SQLITE_ENABLE_FTS3 2957b4a1fed2Sdrh #endif 2958b4a1fed2Sdrh 2959b4a1fed2Sdrh /* 296079f02cefSdrh ** The ctype.h header is needed for non-ASCII systems. It is also 296179f02cefSdrh ** needed by FTS3 when FTS3 is included in the amalgamation. 296279f02cefSdrh */ 296379f02cefSdrh #if !defined(SQLITE_ASCII) || \ 296479f02cefSdrh (defined(SQLITE_ENABLE_FTS3) && defined(SQLITE_AMALGAMATION)) 296579f02cefSdrh # include <ctype.h> 296679f02cefSdrh #endif 296779f02cefSdrh 296879f02cefSdrh /* 296978ca0e7eSdanielk1977 ** The following macros mimic the standard library functions toupper(), 297078ca0e7eSdanielk1977 ** isspace(), isalnum(), isdigit() and isxdigit(), respectively. The 297178ca0e7eSdanielk1977 ** sqlite versions only work for ASCII characters, regardless of locale. 297278ca0e7eSdanielk1977 */ 297378ca0e7eSdanielk1977 #ifdef SQLITE_ASCII 297478ca0e7eSdanielk1977 # define sqlite3Toupper(x) ((x)&~(sqlite3CtypeMap[(unsigned char)(x)]&0x20)) 297578ca0e7eSdanielk1977 # define sqlite3Isspace(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x01) 2976dc86e2b2Sdrh # define sqlite3Isalnum(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x06) 2977dc86e2b2Sdrh # define sqlite3Isalpha(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x02) 297878ca0e7eSdanielk1977 # define sqlite3Isdigit(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x04) 297978ca0e7eSdanielk1977 # define sqlite3Isxdigit(x) (sqlite3CtypeMap[(unsigned char)(x)]&0x08) 298078ca0e7eSdanielk1977 # define sqlite3Tolower(x) (sqlite3UpperToLower[(unsigned char)(x)]) 298178ca0e7eSdanielk1977 #else 298278ca0e7eSdanielk1977 # define sqlite3Toupper(x) toupper((unsigned char)(x)) 298378ca0e7eSdanielk1977 # define sqlite3Isspace(x) isspace((unsigned char)(x)) 298478ca0e7eSdanielk1977 # define sqlite3Isalnum(x) isalnum((unsigned char)(x)) 2985dc86e2b2Sdrh # define sqlite3Isalpha(x) isalpha((unsigned char)(x)) 298678ca0e7eSdanielk1977 # define sqlite3Isdigit(x) isdigit((unsigned char)(x)) 298778ca0e7eSdanielk1977 # define sqlite3Isxdigit(x) isxdigit((unsigned char)(x)) 298878ca0e7eSdanielk1977 # define sqlite3Tolower(x) tolower((unsigned char)(x)) 298978ca0e7eSdanielk1977 #endif 299078ca0e7eSdanielk1977 299178ca0e7eSdanielk1977 /* 299275897234Sdrh ** Internal function prototypes 299375897234Sdrh */ 29943fa97302Sdrh #define sqlite3StrICmp sqlite3_stricmp 2995ea678832Sdrh int sqlite3Strlen30(const char*); 2996ee0484c1Sdanielk1977 #define sqlite3StrNICmp sqlite3_strnicmp 29972e588c75Sdanielk1977 299840257ffdSdrh int sqlite3MallocInit(void); 2999fec00eabSdrh void sqlite3MallocEnd(void); 3000da4ca9d1Sdrh void *sqlite3Malloc(u64); 3001da4ca9d1Sdrh void *sqlite3MallocZero(u64); 3002da4ca9d1Sdrh void *sqlite3DbMallocZero(sqlite3*, u64); 3003da4ca9d1Sdrh void *sqlite3DbMallocRaw(sqlite3*, u64); 300417435752Sdrh char *sqlite3DbStrDup(sqlite3*,const char*); 3005da4ca9d1Sdrh char *sqlite3DbStrNDup(sqlite3*,const char*, u64); 3006da4ca9d1Sdrh void *sqlite3Realloc(void*, u64); 3007da4ca9d1Sdrh void *sqlite3DbReallocOrFree(sqlite3 *, void *, u64); 3008da4ca9d1Sdrh void *sqlite3DbRealloc(sqlite3 *, void *, u64); 3009633e6d57Sdrh void sqlite3DbFree(sqlite3*, void*); 3010a7a8e14bSdanielk1977 int sqlite3MallocSize(void*); 3011633e6d57Sdrh int sqlite3DbMallocSize(sqlite3*, void*); 3012facf0307Sdrh void *sqlite3ScratchMalloc(int); 3013facf0307Sdrh void sqlite3ScratchFree(void*); 3014facf0307Sdrh void *sqlite3PageMalloc(int); 3015facf0307Sdrh void sqlite3PageFree(void*); 3016fec00eabSdrh void sqlite3MemSetDefault(void); 3017171bfed3Sdanielk1977 void sqlite3BenignMallocHooks(void (*)(void), void (*)(void)); 301850d1b5f3Sdrh int sqlite3HeapNearlyFull(void); 30192e588c75Sdanielk1977 3020e7b34707Sdrh /* 3021e7b34707Sdrh ** On systems with ample stack space and that support alloca(), make 3022e7b34707Sdrh ** use of alloca() to obtain space for large automatic objects. By default, 3023e7b34707Sdrh ** obtain space from malloc(). 3024e7b34707Sdrh ** 3025e7b34707Sdrh ** The alloca() routine never returns NULL. This will cause code paths 3026e7b34707Sdrh ** that deal with sqlite3StackAlloc() failures to be unreachable. 3027e7b34707Sdrh */ 3028e7b34707Sdrh #ifdef SQLITE_USE_ALLOCA 3029e7b34707Sdrh # define sqlite3StackAllocRaw(D,N) alloca(N) 3030e7b34707Sdrh # define sqlite3StackAllocZero(D,N) memset(alloca(N), 0, N) 3031e7b34707Sdrh # define sqlite3StackFree(D,P) 3032e7b34707Sdrh #else 3033e7b34707Sdrh # define sqlite3StackAllocRaw(D,N) sqlite3DbMallocRaw(D,N) 3034e7b34707Sdrh # define sqlite3StackAllocZero(D,N) sqlite3DbMallocZero(D,N) 3035e7b34707Sdrh # define sqlite3StackFree(D,P) sqlite3DbFree(D,P) 3036e7b34707Sdrh #endif 3037e7b34707Sdrh 3038f3d3c27aSdanielk1977 #ifdef SQLITE_ENABLE_MEMSYS3 3039f3d3c27aSdanielk1977 const sqlite3_mem_methods *sqlite3MemGetMemsys3(void); 3040f3d3c27aSdanielk1977 #endif 3041f3d3c27aSdanielk1977 #ifdef SQLITE_ENABLE_MEMSYS5 3042f3d3c27aSdanielk1977 const sqlite3_mem_methods *sqlite3MemGetMemsys5(void); 3043f3d3c27aSdanielk1977 #endif 3044f3d3c27aSdanielk1977 3045f3d3c27aSdanielk1977 304618472fa7Sdrh #ifndef SQLITE_MUTEX_OMIT 3047558814f8Sdan sqlite3_mutex_methods const *sqlite3DefaultMutex(void); 3048558814f8Sdan sqlite3_mutex_methods const *sqlite3NoopMutex(void); 304959f8c08eSdanielk1977 sqlite3_mutex *sqlite3MutexAlloc(int); 3050d025174fSdanielk1977 int sqlite3MutexInit(void); 3051d025174fSdanielk1977 int sqlite3MutexEnd(void); 305265bbf29eSdrh #endif 30536d2ab0e4Sdanielk1977 3054f7141990Sdrh int sqlite3StatusValue(int); 3055f7141990Sdrh void sqlite3StatusAdd(int, int); 3056f7141990Sdrh void sqlite3StatusSet(int, int); 3057f7141990Sdrh 305885c8f291Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT 30590de3ae95Sdrh int sqlite3IsNaN(double); 306085c8f291Sdrh #else 306185c8f291Sdrh # define sqlite3IsNaN(X) 0 306285c8f291Sdrh #endif 30630de3ae95Sdrh 3064a5c1416dSdrh /* 3065a5c1416dSdrh ** An instance of the following structure holds information about SQL 3066a5c1416dSdrh ** functions arguments that are the parameters to the printf() function. 3067a5c1416dSdrh */ 3068a5c1416dSdrh struct PrintfArguments { 3069a5c1416dSdrh int nArg; /* Total number of arguments */ 3070a5c1416dSdrh int nUsed; /* Number of arguments used so far */ 3071a5c1416dSdrh sqlite3_value **apArg; /* The argument values */ 3072a5c1416dSdrh }; 3073a5c1416dSdrh 3074a5c1416dSdrh #define SQLITE_PRINTF_INTERNAL 0x01 3075a5c1416dSdrh #define SQLITE_PRINTF_SQLFUNC 0x02 3076a5c1416dSdrh void sqlite3VXPrintf(StrAccum*, u32, const char*, va_list); 3077a5c1416dSdrh void sqlite3XPrintf(StrAccum*, u32, const char*, ...); 307817435752Sdrh char *sqlite3MPrintf(sqlite3*,const char*, ...); 307917435752Sdrh char *sqlite3VMPrintf(sqlite3*,const char*, va_list); 3080633e6d57Sdrh char *sqlite3MAppendf(sqlite3*,char*,const char*,...); 308187cc3b31Sdrh #if defined(SQLITE_TEST) || defined(SQLITE_DEBUG) 3082e54ca3feSdrh void sqlite3DebugPrintf(const char*, ...); 3083d919fe17Sdrh #endif 3084d919fe17Sdrh #if defined(SQLITE_TEST) 3085e8f52c50Sdrh void *sqlite3TestTextToPtr(const char*); 308687cc3b31Sdrh #endif 30877e02e5e6Sdrh 30887e02e5e6Sdrh /* Output formatting for SQLITE_TESTCTRL_EXPLAIN */ 3089678a9aa7Sdrh #if defined(SQLITE_ENABLE_TREE_EXPLAIN) 30907e02e5e6Sdrh void sqlite3ExplainBegin(Vdbe*); 30917e02e5e6Sdrh void sqlite3ExplainPrintf(Vdbe*, const char*, ...); 30927e02e5e6Sdrh void sqlite3ExplainNL(Vdbe*); 30937e02e5e6Sdrh void sqlite3ExplainPush(Vdbe*); 30947e02e5e6Sdrh void sqlite3ExplainPop(Vdbe*); 30957e02e5e6Sdrh void sqlite3ExplainFinish(Vdbe*); 30967e02e5e6Sdrh void sqlite3ExplainSelect(Vdbe*, Select*); 30977e02e5e6Sdrh void sqlite3ExplainExpr(Vdbe*, Expr*); 30987e02e5e6Sdrh void sqlite3ExplainExprList(Vdbe*, ExprList*); 30997e02e5e6Sdrh const char *sqlite3VdbeExplanation(Vdbe*); 31007e02e5e6Sdrh #else 31017e02e5e6Sdrh # define sqlite3ExplainBegin(X) 31027e02e5e6Sdrh # define sqlite3ExplainSelect(A,B) 31037e02e5e6Sdrh # define sqlite3ExplainExpr(A,B) 31047e02e5e6Sdrh # define sqlite3ExplainExprList(A,B) 31057e02e5e6Sdrh # define sqlite3ExplainFinish(X) 31067e02e5e6Sdrh # define sqlite3VdbeExplanation(X) 0 31077e02e5e6Sdrh #endif 31087e02e5e6Sdrh 31097e02e5e6Sdrh 3110f089aa45Sdrh void sqlite3SetString(char **, sqlite3*, const char*, ...); 31114adee20fSdanielk1977 void sqlite3ErrorMsg(Parse*, const char*, ...); 311224fb627aSdrh int sqlite3Dequote(char*); 31132646da7eSdrh int sqlite3KeywordCode(const unsigned char*, int); 31144adee20fSdanielk1977 int sqlite3RunParser(Parse*, const char*, char **); 311580242055Sdrh void sqlite3FinishCoding(Parse*); 3116892d3179Sdrh int sqlite3GetTempReg(Parse*); 3117892d3179Sdrh void sqlite3ReleaseTempReg(Parse*,int); 3118892d3179Sdrh int sqlite3GetTempRange(Parse*,int); 3119892d3179Sdrh void sqlite3ReleaseTempRange(Parse*,int,int); 3120cdc69557Sdrh void sqlite3ClearTempRegCache(Parse*); 3121b7916a78Sdrh Expr *sqlite3ExprAlloc(sqlite3*,int,const Token*,int); 3122b7916a78Sdrh Expr *sqlite3Expr(sqlite3*,int,const char*); 3123b7916a78Sdrh void sqlite3ExprAttachSubtrees(sqlite3*,Expr*,Expr*,Expr*); 312417435752Sdrh Expr *sqlite3PExpr(Parse*, int, Expr*, Expr*, const Token*); 31251e536953Sdanielk1977 Expr *sqlite3ExprAnd(sqlite3*,Expr*, Expr*); 312617435752Sdrh Expr *sqlite3ExprFunction(Parse*,ExprList*, Token*); 3127fa6bc000Sdrh void sqlite3ExprAssignVarNumber(Parse*, Expr*); 3128633e6d57Sdrh void sqlite3ExprDelete(sqlite3*, Expr*); 3129b7916a78Sdrh ExprList *sqlite3ExprListAppend(Parse*,ExprList*,Expr*); 3130b7916a78Sdrh void sqlite3ExprListSetName(Parse*,ExprList*,Token*,int); 3131b7916a78Sdrh void sqlite3ExprListSetSpan(Parse*,ExprList*,ExprSpan*); 3132633e6d57Sdrh void sqlite3ExprListDelete(sqlite3*, ExprList*); 31339bb575fdSdrh int sqlite3Init(sqlite3*, char**); 3134234c39dfSdrh int sqlite3InitCallback(void*, int, char**, char**); 313591cf71b0Sdanielk1977 void sqlite3Pragma(Parse*,Token*,Token*,Token*,int); 313681028a45Sdrh void sqlite3ResetAllSchemasOfConnection(sqlite3*); 313781028a45Sdrh void sqlite3ResetOneSchema(sqlite3*,int); 313881028a45Sdrh void sqlite3CollapseDatabaseArray(sqlite3*); 31394adee20fSdanielk1977 void sqlite3BeginParse(Parse*,int); 31409bb575fdSdrh void sqlite3CommitInternalChanges(sqlite3*); 31417d10d5a6Sdrh Table *sqlite3ResultSetOfSelect(Parse*,Select*); 3142c00da105Sdanielk1977 void sqlite3OpenMasterTable(Parse *, int); 31434415628aSdrh Index *sqlite3PrimaryKeyIndex(Table*); 31444415628aSdrh i16 sqlite3ColumnOfIndex(Index*, i16); 3145f1a381e7Sdanielk1977 void sqlite3StartTable(Parse*,Token*,Token*,int,int,int,int); 31464adee20fSdanielk1977 void sqlite3AddColumn(Parse*,Token*); 31474adee20fSdanielk1977 void sqlite3AddNotNull(Parse*, int); 3148fdd6e85aSdrh void sqlite3AddPrimaryKey(Parse*, ExprList*, int, int, int); 3149ffe07b2dSdrh void sqlite3AddCheckConstraint(Parse*, Expr*); 3150487e262fSdrh void sqlite3AddColumnType(Parse*,Token*); 3151b7916a78Sdrh void sqlite3AddDefaultValue(Parse*,ExprSpan*); 315239002505Sdanielk1977 void sqlite3AddCollateType(Parse*, Token*); 31535969da4aSdrh void sqlite3EndTable(Parse*,Token*,Token*,u8,Select*); 3154522c26fbSdrh int sqlite3ParseUri(const char*,const char*,unsigned int*, 3155522c26fbSdrh sqlite3_vfs**,char**,char **); 3156421377e6Sdrh Btree *sqlite3DbNameToBtree(sqlite3*,const char*); 31571d8cb21fSdan int sqlite3CodeOnce(Parse *); 3158b7f9164eSdrh 3159c007f61bSdrh #ifdef SQLITE_OMIT_BUILTIN_TEST 3160c007f61bSdrh # define sqlite3FaultSim(X) SQLITE_OK 3161c007f61bSdrh #else 3162c007f61bSdrh int sqlite3FaultSim(int); 3163c007f61bSdrh #endif 3164c007f61bSdrh 3165f5e7bb51Sdrh Bitvec *sqlite3BitvecCreate(u32); 3166f5e7bb51Sdrh int sqlite3BitvecTest(Bitvec*, u32); 3167f5e7bb51Sdrh int sqlite3BitvecSet(Bitvec*, u32); 3168e98c9049Sdrh void sqlite3BitvecClear(Bitvec*, u32, void*); 3169f5e7bb51Sdrh void sqlite3BitvecDestroy(Bitvec*); 3170bea2a948Sdanielk1977 u32 sqlite3BitvecSize(Bitvec*); 31713088d59eSdrh int sqlite3BitvecBuiltinTest(int,int*); 3172f5e7bb51Sdrh 31733d4501e5Sdrh RowSet *sqlite3RowSetInit(sqlite3*, void*, unsigned int); 31743d4501e5Sdrh void sqlite3RowSetClear(RowSet*); 31753d4501e5Sdrh void sqlite3RowSetInsert(RowSet*, i64); 3176d83cad23Sdrh int sqlite3RowSetTest(RowSet*, int iBatch, i64); 31773d4501e5Sdrh int sqlite3RowSetNext(RowSet*, i64*); 31783d4501e5Sdrh 3179fdd48a76Sdrh void sqlite3CreateView(Parse*,Token*,Token*,Token*,Select*,int,int); 3180fe3fcbe2Sdanielk1977 3181fe3fcbe2Sdanielk1977 #if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_VIRTUALTABLE) 31824adee20fSdanielk1977 int sqlite3ViewGetColumnNames(Parse*,Table*); 3183b7f9164eSdrh #else 3184b7f9164eSdrh # define sqlite3ViewGetColumnNames(A,B) 0 3185b7f9164eSdrh #endif 3186b7f9164eSdrh 3187a7ab6d81Sdrh #if SQLITE_MAX_ATTACHED>30 3188a7ab6d81Sdrh int sqlite3DbMaskAllZero(yDbMask); 3189a7ab6d81Sdrh #endif 3190a073384fSdrh void sqlite3DropTable(Parse*, SrcList*, int, int); 3191faacf17cSdrh void sqlite3CodeDropTable(Parse*, Table*, int, int); 31921feeaed2Sdan void sqlite3DeleteTable(sqlite3*, Table*); 31930b9f50d8Sdrh #ifndef SQLITE_OMIT_AUTOINCREMENT 31940b9f50d8Sdrh void sqlite3AutoincrementBegin(Parse *pParse); 31950b9f50d8Sdrh void sqlite3AutoincrementEnd(Parse *pParse); 31960b9f50d8Sdrh #else 31970b9f50d8Sdrh # define sqlite3AutoincrementBegin(X) 31980b9f50d8Sdrh # define sqlite3AutoincrementEnd(X) 31990b9f50d8Sdrh #endif 320075593d96Sdrh void sqlite3Insert(Parse*, SrcList*, Select*, IdList*, int); 32016c535158Sdrh void *sqlite3ArrayAllocate(sqlite3*,void*,int,int*,int*); 320217435752Sdrh IdList *sqlite3IdListAppend(sqlite3*, IdList*, Token*); 32034adee20fSdanielk1977 int sqlite3IdListIndex(IdList*,const char*); 3204a78c22c4Sdrh SrcList *sqlite3SrcListEnlarge(sqlite3*, SrcList*, int, int); 320517435752Sdrh SrcList *sqlite3SrcListAppend(sqlite3*, SrcList*, Token*, Token*); 3206b1c685b0Sdanielk1977 SrcList *sqlite3SrcListAppendFromTerm(Parse*, SrcList*, Token*, Token*, 320785574e31Sdanielk1977 Token*, Select*, Expr*, IdList*); 3208b1c685b0Sdanielk1977 void sqlite3SrcListIndexedBy(Parse *, SrcList *, Token *); 3209b1c685b0Sdanielk1977 int sqlite3IndexedByLookup(Parse *, struct SrcList_item *); 321061dfc31dSdrh void sqlite3SrcListShiftJoinType(SrcList*); 32114adee20fSdanielk1977 void sqlite3SrcListAssignCursors(Parse*, SrcList*); 3212633e6d57Sdrh void sqlite3IdListDelete(sqlite3*, IdList*); 3213633e6d57Sdrh void sqlite3SrcListDelete(sqlite3*, SrcList*); 3214bbbdc83bSdrh Index *sqlite3AllocateIndexObject(sqlite3*,i16,int,char**); 32151da40a38Sdan Index *sqlite3CreateIndex(Parse*,Token*,Token*,SrcList*,ExprList*,int,Token*, 32168a9789b6Sdrh Expr*, int, int); 32174d91a701Sdrh void sqlite3DropIndex(Parse*, SrcList*, int); 32187d10d5a6Sdrh int sqlite3Select(Parse*, Select*, SelectDest*); 321917435752Sdrh Select *sqlite3SelectNew(Parse*,ExprList*,SrcList*,Expr*,ExprList*, 3220832ee3d4Sdrh Expr*,ExprList*,u16,Expr*,Expr*); 3221633e6d57Sdrh void sqlite3SelectDelete(sqlite3*, Select*); 32224adee20fSdanielk1977 Table *sqlite3SrcListLookup(Parse*, SrcList*); 32234adee20fSdanielk1977 int sqlite3IsReadOnly(Parse*, Table*, int); 3224c00da105Sdanielk1977 void sqlite3OpenTable(Parse*, int iCur, int iDb, Table*, int); 3225273f619bSshane #if defined(SQLITE_ENABLE_UPDATE_DELETE_LIMIT) && !defined(SQLITE_OMIT_SUBQUERY) 322649ffdbf4Sshane Expr *sqlite3LimitWhere(Parse*,SrcList*,Expr*,ExprList*,Expr*,Expr*,char*); 32274281bd42Sshane #endif 32284adee20fSdanielk1977 void sqlite3DeleteFrom(Parse*, SrcList*, Expr*); 32294adee20fSdanielk1977 void sqlite3Update(Parse*, SrcList*, ExprList*, Expr*, int); 323046ec5b63Sdrh WhereInfo *sqlite3WhereBegin(Parse*,SrcList*,Expr*,ExprList*,ExprList*,u16,int); 32314adee20fSdanielk1977 void sqlite3WhereEnd(WhereInfo*); 3232c63367efSdrh u64 sqlite3WhereOutputRowCount(WhereInfo*); 32336f32848dSdrh int sqlite3WhereIsDistinct(WhereInfo*); 32346f32848dSdrh int sqlite3WhereIsOrdered(WhereInfo*); 3235374cd78cSdan int sqlite3WhereIsSorted(WhereInfo*); 32366f32848dSdrh int sqlite3WhereContinueLabel(WhereInfo*); 32376f32848dSdrh int sqlite3WhereBreakLabel(WhereInfo*); 3238fc8d4f96Sdrh int sqlite3WhereOkOnePass(WhereInfo*, int*); 3239a748fdccSdrh int sqlite3ExprCodeGetColumn(Parse*, Table*, int, int, int, u8); 32405c092e8aSdrh void sqlite3ExprCodeGetColumnOfTable(Vdbe*, Table*, int, int, int); 3241b21e7c70Sdrh void sqlite3ExprCodeMove(Parse*, int, int, int); 3242ceea3321Sdrh void sqlite3ExprCacheStore(Parse*, int, int, int); 3243ceea3321Sdrh void sqlite3ExprCachePush(Parse*); 3244d2490904Sdrh void sqlite3ExprCachePop(Parse*); 3245f49f3523Sdrh void sqlite3ExprCacheRemove(Parse*, int, int); 3246ceea3321Sdrh void sqlite3ExprCacheClear(Parse*); 3247da250ea5Sdrh void sqlite3ExprCacheAffinityChange(Parse*, int, int); 324805a86c5cSdrh void sqlite3ExprCode(Parse*, Expr*, int); 324905a86c5cSdrh void sqlite3ExprCodeFactorable(Parse*, Expr*, int); 3250d673cddaSdrh void sqlite3ExprCodeAtInit(Parse*, Expr*, int, u8); 32512dcef11bSdrh int sqlite3ExprCodeTemp(Parse*, Expr*, int*); 3252678ccce8Sdrh int sqlite3ExprCodeTarget(Parse*, Expr*, int); 325305a86c5cSdrh void sqlite3ExprCodeAndCache(Parse*, Expr*, int); 3254d1a01edaSdrh int sqlite3ExprCodeExprList(Parse*, ExprList*, int, u8); 3255d1a01edaSdrh #define SQLITE_ECEL_DUP 0x01 /* Deep, not shallow copies */ 3256d1a01edaSdrh #define SQLITE_ECEL_FACTOR 0x02 /* Factor out constant terms */ 32574adee20fSdanielk1977 void sqlite3ExprIfTrue(Parse*, Expr*, int, int); 32584adee20fSdanielk1977 void sqlite3ExprIfFalse(Parse*, Expr*, int, int); 32599bb575fdSdrh Table *sqlite3FindTable(sqlite3*,const char*, const char*); 3260ca424114Sdrh Table *sqlite3LocateTable(Parse*,int isView,const char*, const char*); 326141fb5cd1Sdan Table *sqlite3LocateTableItem(Parse*,int isView,struct SrcList_item *); 32629bb575fdSdrh Index *sqlite3FindIndex(sqlite3*,const char*, const char*); 32639bb575fdSdrh void sqlite3UnlinkAndDeleteTable(sqlite3*,int,const char*); 32649bb575fdSdrh void sqlite3UnlinkAndDeleteIndex(sqlite3*,int,const char*); 326574161705Sdrh void sqlite3Vacuum(Parse*); 32669bb575fdSdrh int sqlite3RunVacuum(char**, sqlite3*); 326717435752Sdrh char *sqlite3NameFromToken(sqlite3*, Token*); 3268619a1305Sdrh int sqlite3ExprCompare(Expr*, Expr*, int); 3269619a1305Sdrh int sqlite3ExprListCompare(ExprList*, ExprList*, int); 32704bd5f73fSdrh int sqlite3ExprImpliesExpr(Expr*, Expr*, int); 3271d2b3e23bSdrh void sqlite3ExprAnalyzeAggregates(NameContext*, Expr*); 3272d2b3e23bSdrh void sqlite3ExprAnalyzeAggList(NameContext*,ExprList*); 3273030796dfSdrh int sqlite3FunctionUsesThisSrc(Expr*, SrcList*); 32744adee20fSdanielk1977 Vdbe *sqlite3GetVdbe(Parse*); 32752fa1868fSdrh void sqlite3PrngSaveState(void); 32762fa1868fSdrh void sqlite3PrngRestoreState(void); 32770f198a74Sdrh void sqlite3RollbackAll(sqlite3*,int); 32784adee20fSdanielk1977 void sqlite3CodeVerifySchema(Parse*, int); 327957966753Sdan void sqlite3CodeVerifyNamedSchema(Parse*, const char *zDb); 3280684917c2Sdrh void sqlite3BeginTransaction(Parse*, int); 32814adee20fSdanielk1977 void sqlite3CommitTransaction(Parse*); 32824adee20fSdanielk1977 void sqlite3RollbackTransaction(Parse*); 3283fd7f0452Sdanielk1977 void sqlite3Savepoint(Parse*, int, Token*); 3284fd7f0452Sdanielk1977 void sqlite3CloseSavepoints(sqlite3 *); 32854245c405Sdrh void sqlite3LeaveMutexAndCloseZombie(sqlite3*); 32864adee20fSdanielk1977 int sqlite3ExprIsConstant(Expr*); 32870a168377Sdrh int sqlite3ExprIsConstantNotJoin(Expr*); 3288*feada2dfSdrh int sqlite3ExprIsConstantOrFunction(Expr*, u8); 32894adee20fSdanielk1977 int sqlite3ExprIsInteger(Expr*, int*); 3290039fc32eSdrh int sqlite3ExprCanBeNull(const Expr*); 3291039fc32eSdrh int sqlite3ExprNeedsNoAffinityChange(const Expr*, char); 32924adee20fSdanielk1977 int sqlite3IsRowid(const char*); 3293392ee21dSdrh void sqlite3GenerateRowDelete(Parse*,Table*,Trigger*,int,int,int,i16,u8,u8,u8); 329426198bb4Sdrh void sqlite3GenerateRowIndexDelete(Parse*, Table*, int, int, int*); 32951c2c0b77Sdrh int sqlite3GenerateIndexKey(Parse*, Index*, int, int, int, int*,Index*,int); 329687744513Sdrh void sqlite3ResolvePartIdxLabel(Parse*,int); 3297f8ffb278Sdrh void sqlite3GenerateConstraintChecks(Parse*,Table*,int*,int,int,int,int, 3298f8ffb278Sdrh u8,u8,int,int*); 329926198bb4Sdrh void sqlite3CompleteInsertion(Parse*,Table*,int,int,int,int*,int,int,int); 33006a53499aSdrh int sqlite3OpenTableAndIndices(Parse*, Table*, int, int, u8*, int*, int*); 33014adee20fSdanielk1977 void sqlite3BeginWriteOperation(Parse*, int, int); 3302ff738bceSdrh void sqlite3MultiWrite(Parse*); 3303e0af83acSdan void sqlite3MayAbort(Parse*); 3304f9c8ce3cSdrh void sqlite3HaltConstraint(Parse*, int, int, char*, i8, u8); 3305f9c8ce3cSdrh void sqlite3UniqueConstraint(Parse*, int, Index*); 3306f9c8ce3cSdrh void sqlite3RowidConstraint(Parse*, int, Table*); 33076ab3a2ecSdanielk1977 Expr *sqlite3ExprDup(sqlite3*,Expr*,int); 33086ab3a2ecSdanielk1977 ExprList *sqlite3ExprListDup(sqlite3*,ExprList*,int); 33096ab3a2ecSdanielk1977 SrcList *sqlite3SrcListDup(sqlite3*,SrcList*,int); 331017435752Sdrh IdList *sqlite3IdListDup(sqlite3*,IdList*); 33116ab3a2ecSdanielk1977 Select *sqlite3SelectDup(sqlite3*,Select*,int); 3312eb9b884cSdrh #if SELECTTRACE_ENABLED 3313eb9b884cSdrh void sqlite3SelectSetName(Select*,const char*); 3314eb9b884cSdrh #else 3315eb9b884cSdrh # define sqlite3SelectSetName(A,B) 3316eb9b884cSdrh #endif 331770a8ca3cSdrh void sqlite3FuncDefInsert(FuncDefHash*, FuncDef*); 331889d5d6a2Sdrh FuncDef *sqlite3FindFunction(sqlite3*,const char*,int,int,u8,u8); 33199bb575fdSdrh void sqlite3RegisterBuiltinFunctions(sqlite3*); 3320777c5386Sdrh void sqlite3RegisterDateTimeFunctions(void); 332170a8ca3cSdrh void sqlite3RegisterGlobalFunctions(void); 33227e8b848aSdrh int sqlite3SafetyCheckOk(sqlite3*); 33237e8b848aSdrh int sqlite3SafetyCheckSickOrOk(sqlite3*); 33249cbf3425Sdrh void sqlite3ChangeCookie(Parse*, int); 3325fa4e62f3Sshane 3326fa4e62f3Sshane #if !defined(SQLITE_OMIT_VIEW) && !defined(SQLITE_OMIT_TRIGGER) 33272a5d825eSdrh void sqlite3MaterializeView(Parse*, Table*, Expr*, int); 3328fa4e62f3Sshane #endif 3329b7f9164eSdrh 3330b7f9164eSdrh #ifndef SQLITE_OMIT_TRIGGER 3331ef2cb63eSdanielk1977 void sqlite3BeginTrigger(Parse*, Token*,Token*,int,int,IdList*,SrcList*, 333260218d2aSdrh Expr*,int, int); 33334adee20fSdanielk1977 void sqlite3FinishTrigger(Parse*, TriggerStep*, Token*); 3334fdd48a76Sdrh void sqlite3DropTrigger(Parse*, SrcList*, int); 333574161705Sdrh void sqlite3DropTriggerPtr(Parse*, Trigger*); 33362f886d1dSdanielk1977 Trigger *sqlite3TriggersExist(Parse *, Table*, int, ExprList*, int *pMask); 33372f886d1dSdanielk1977 Trigger *sqlite3TriggerList(Parse *, Table *); 3338165921a7Sdan void sqlite3CodeRowTrigger(Parse*, Trigger *, int, ExprList*, int, Table *, 333994d7f50aSdan int, int, int); 33401da40a38Sdan void sqlite3CodeRowTriggerDirect(Parse *, Trigger *, Table *, int, int, int); 3341dc379456Sdrh void sqliteViewTriggers(Parse*, Table*, Expr*, int, ExprList*); 3342633e6d57Sdrh void sqlite3DeleteTriggerStep(sqlite3*, TriggerStep*); 334317435752Sdrh TriggerStep *sqlite3TriggerSelectStep(sqlite3*,Select*); 334417435752Sdrh TriggerStep *sqlite3TriggerInsertStep(sqlite3*,Token*, IdList*, 334575593d96Sdrh Select*,u8); 33465eff7cf0Sshane TriggerStep *sqlite3TriggerUpdateStep(sqlite3*,Token*,ExprList*, Expr*, u8); 334717435752Sdrh TriggerStep *sqlite3TriggerDeleteStep(sqlite3*,Token*, Expr*); 3348633e6d57Sdrh void sqlite3DeleteTrigger(sqlite3*, Trigger*); 3349b7f9164eSdrh void sqlite3UnlinkAndDeleteTrigger(sqlite3*,int,const char*); 3350bb5f168fSdan u32 sqlite3TriggerColmask(Parse*,Trigger*,ExprList*,int,int,Table*,int); 335165a7cd16Sdan # define sqlite3ParseToplevel(p) ((p)->pToplevel ? (p)->pToplevel : (p)) 3352b7f9164eSdrh #else 335362c14b34Sdanielk1977 # define sqlite3TriggersExist(B,C,D,E,F) 0 3354633e6d57Sdrh # define sqlite3DeleteTrigger(A,B) 3355cdd536f0Sdrh # define sqlite3DropTriggerPtr(A,B) 3356b7f9164eSdrh # define sqlite3UnlinkAndDeleteTrigger(A,B,C) 335794d7f50aSdan # define sqlite3CodeRowTrigger(A,B,C,D,E,F,G,H,I) 335875cbd984Sdan # define sqlite3CodeRowTriggerDirect(A,B,C,D,E,F) 33592943c372Sdanielk1977 # define sqlite3TriggerList(X, Y) 0 336065a7cd16Sdan # define sqlite3ParseToplevel(p) p 3361bb5f168fSdan # define sqlite3TriggerColmask(A,B,C,D,E,F,G) 0 3362b7f9164eSdrh #endif 3363b7f9164eSdrh 33644adee20fSdanielk1977 int sqlite3JoinType(Parse*, Token*, Token*, Token*); 33650202b29eSdanielk1977 void sqlite3CreateForeignKey(Parse*, ExprList*, Token*, ExprList*, int); 33664adee20fSdanielk1977 void sqlite3DeferForeignKey(Parse*, int); 3367ed6c8671Sdrh #ifndef SQLITE_OMIT_AUTHORIZATION 3368728b5779Sdrh void sqlite3AuthRead(Parse*,Expr*,Schema*,SrcList*); 33694adee20fSdanielk1977 int sqlite3AuthCheck(Parse*,int, const char*, const char*, const char*); 33704adee20fSdanielk1977 void sqlite3AuthContextPush(Parse*, AuthContext*, const char*); 33714adee20fSdanielk1977 void sqlite3AuthContextPop(AuthContext*); 337202470b20Sdan int sqlite3AuthReadCol(Parse*, const char *, const char *, int); 3373ed6c8671Sdrh #else 3374b5258c3dSdanielk1977 # define sqlite3AuthRead(a,b,c,d) 33754adee20fSdanielk1977 # define sqlite3AuthCheck(a,b,c,d,e) SQLITE_OK 33764adee20fSdanielk1977 # define sqlite3AuthContextPush(a,b,c) 33774adee20fSdanielk1977 # define sqlite3AuthContextPop(a) ((void)(a)) 3378ed6c8671Sdrh #endif 3379f744bb56Sdanielk1977 void sqlite3Attach(Parse*, Expr*, Expr*, Expr*); 3380f744bb56Sdanielk1977 void sqlite3Detach(Parse*, Expr*); 3381d100f691Sdrh void sqlite3FixInit(DbFixer*, Parse*, int, const char*, const Token*); 33824adee20fSdanielk1977 int sqlite3FixSrcList(DbFixer*, SrcList*); 33834adee20fSdanielk1977 int sqlite3FixSelect(DbFixer*, Select*); 33844adee20fSdanielk1977 int sqlite3FixExpr(DbFixer*, Expr*); 33854adee20fSdanielk1977 int sqlite3FixExprList(DbFixer*, ExprList*); 33864adee20fSdanielk1977 int sqlite3FixTriggerStep(DbFixer*, TriggerStep*); 33879339da1fSdrh int sqlite3AtoF(const char *z, double*, int, u8); 3388fec19aadSdrh int sqlite3GetInt32(const char *, int*); 338960ac3f42Sdrh int sqlite3Atoi(const char*); 3390ee85813cSdrh int sqlite3Utf16ByteLen(const void *pData, int nChar); 3391ee85813cSdrh int sqlite3Utf8CharLen(const char *pData, int nByte); 339242610961Sdrh u32 sqlite3Utf8Read(const u8**); 3393bf539c4dSdrh LogEst sqlite3LogEst(u64); 3394bf539c4dSdrh LogEst sqlite3LogEstAdd(LogEst,LogEst); 3395bf539c4dSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 3396bf539c4dSdrh LogEst sqlite3LogEstFromDouble(double); 3397bf539c4dSdrh #endif 3398bf539c4dSdrh u64 sqlite3LogEstToInt(LogEst); 33993f8d5cfcSshane 34003f8d5cfcSshane /* 34013f8d5cfcSshane ** Routines to read and write variable-length integers. These used to 34023f8d5cfcSshane ** be defined locally, but now we use the varint routines in the util.c 34032f2b2b85Sdrh ** file. 34043f8d5cfcSshane */ 3405192ac1dcSdanielk1977 int sqlite3PutVarint(unsigned char*, u64); 34061bd10f8aSdrh u8 sqlite3GetVarint(const unsigned char *, u64 *); 34071bd10f8aSdrh u8 sqlite3GetVarint32(const unsigned char *, u32 *); 3408192ac1dcSdanielk1977 int sqlite3VarintLen(u64 v); 34093f8d5cfcSshane 34103f8d5cfcSshane /* 34112f2b2b85Sdrh ** The common case is for a varint to be a single byte. They following 34122f2b2b85Sdrh ** macros handle the common case without a procedure call, but then call 34132f2b2b85Sdrh ** the procedure for larger varints. 34143f8d5cfcSshane */ 34154bde3702Sdrh #define getVarint32(A,B) \ 34164bde3702Sdrh (u8)((*(A)<(u8)0x80)?((B)=(u32)*(A)),1:sqlite3GetVarint32((A),(u32 *)&(B))) 34174bde3702Sdrh #define putVarint32(A,B) \ 34184bde3702Sdrh (u8)(((u32)(B)<(u32)0x80)?(*(A)=(unsigned char)(B)),1:\ 34192f2b2b85Sdrh sqlite3PutVarint((A),(B))) 34203f8d5cfcSshane #define getVarint sqlite3GetVarint 34213f8d5cfcSshane #define putVarint sqlite3PutVarint 34223f8d5cfcSshane 34233f8d5cfcSshane 342469f8bb9cSdan const char *sqlite3IndexAffinityStr(Vdbe *, Index *); 342557bf4a8eSdrh void sqlite3TableAffinity(Vdbe*, Table*, int); 3426e014a838Sdanielk1977 char sqlite3CompareAffinity(Expr *pExpr, char aff2); 3427e014a838Sdanielk1977 int sqlite3IndexAffinityOk(Expr *pExpr, char idx_affinity); 3428bf3b721fSdanielk1977 char sqlite3ExprAffinity(Expr *pExpr); 34299339da1fSdrh int sqlite3Atoi64(const char*, i64*, int, u8); 34309296c18aSdrh int sqlite3DecOrHexToI64(const char*, i64*); 343113f40da3Sdrh void sqlite3ErrorWithMsg(sqlite3*, int, const char*,...); 343213f40da3Sdrh void sqlite3Error(sqlite3*,int); 3433ca48c90fSdrh void *sqlite3HexToBlob(sqlite3*, const char *z, int n); 3434cd74b611Sdan u8 sqlite3HexToInt(int h); 3435ef2cb63eSdanielk1977 int sqlite3TwoPartName(Parse *, Token *, Token *, Token **); 3436dd08ca0fSmistachkin 3437685e3c48Sdrh #if defined(SQLITE_TEST) 3438f2c1c99fSmistachkin const char *sqlite3ErrName(int); 3439dd08ca0fSmistachkin #endif 3440dd08ca0fSmistachkin 3441f20b21c8Sdanielk1977 const char *sqlite3ErrStr(int); 34428a41449eSdanielk1977 int sqlite3ReadSchema(Parse *pParse); 3443c4a64facSdrh CollSeq *sqlite3FindCollSeq(sqlite3*,u8 enc, const char*,int); 3444c4a64facSdrh CollSeq *sqlite3LocateCollSeq(Parse *pParse, const char*zName); 34457cedc8d4Sdanielk1977 CollSeq *sqlite3ExprCollSeq(Parse *pParse, Expr *pExpr); 34464ef7efadSdrh Expr *sqlite3ExprAddCollateToken(Parse *pParse, Expr*, const Token*); 34470a8a406eSdrh Expr *sqlite3ExprAddCollateString(Parse*,Expr*,const char*); 34480a8a406eSdrh Expr *sqlite3ExprSkipCollate(Expr*); 34497cedc8d4Sdanielk1977 int sqlite3CheckCollSeq(Parse *, CollSeq *); 3450d8123366Sdanielk1977 int sqlite3CheckObjectName(Parse *, const char *); 3451b28af71aSdanielk1977 void sqlite3VdbeSetChanges(sqlite3 *, int); 3452158b9cb9Sdrh int sqlite3AddInt64(i64*,i64); 3453158b9cb9Sdrh int sqlite3SubInt64(i64*,i64); 3454158b9cb9Sdrh int sqlite3MulInt64(i64*,i64); 3455d50ffc41Sdrh int sqlite3AbsInt32(int); 345681cc5163Sdrh #ifdef SQLITE_ENABLE_8_3_NAMES 345781cc5163Sdrh void sqlite3FileSuffix3(const char*, char*); 345881cc5163Sdrh #else 345981cc5163Sdrh # define sqlite3FileSuffix3(X,Y) 346081cc5163Sdrh #endif 3461eac5bd78Sdrh u8 sqlite3GetBoolean(const char *z,u8); 34624e6af134Sdanielk1977 3463b21c8cd4Sdrh const void *sqlite3ValueText(sqlite3_value*, u8); 3464b21c8cd4Sdrh int sqlite3ValueBytes(sqlite3_value*, u8); 3465b21c8cd4Sdrh void sqlite3ValueSetStr(sqlite3_value*, int, const void *,u8, 34661e536953Sdanielk1977 void(*)(void*)); 3467a3cc007dSdrh void sqlite3ValueSetNull(sqlite3_value*); 34684e6af134Sdanielk1977 void sqlite3ValueFree(sqlite3_value*); 34691e536953Sdanielk1977 sqlite3_value *sqlite3ValueNew(sqlite3 *); 3470b7dca7d7Sdan char *sqlite3Utf16to8(sqlite3 *, const void*, int, u8); 34711e536953Sdanielk1977 int sqlite3ValueFromExpr(sqlite3 *, Expr *, u8, u8, sqlite3_value **); 3472b21c8cd4Sdrh void sqlite3ValueApplyAffinity(sqlite3_value *, u8, u8); 347346c99e0fSdrh #ifndef SQLITE_AMALGAMATION 3474a6c2ed91Sdrh extern const unsigned char sqlite3OpcodeProperty[]; 34754e5ffc5fSdrh extern const unsigned char sqlite3UpperToLower[]; 347678ca0e7eSdanielk1977 extern const unsigned char sqlite3CtypeMap[]; 3477094430ebSdrh extern const Token sqlite3IntTokens[]; 3478075c23afSdanielk1977 extern SQLITE_WSD struct Sqlite3Config sqlite3Config; 3479075c23afSdanielk1977 extern SQLITE_WSD FuncDefHash sqlite3GlobalFunctions; 3480f83dc1efSdrh #ifndef SQLITE_OMIT_WSD 3481ddb68e17Sdrh extern int sqlite3PendingByte; 348246c99e0fSdrh #endif 3483f83dc1efSdrh #endif 3484cdf011dcSdrh void sqlite3RootPageMoved(sqlite3*, int, int, int); 34854343fea2Sdrh void sqlite3Reindex(Parse*, Token*, Token*); 3486545f587fSdrh void sqlite3AlterFunctions(void); 34879fd2a9a0Sdanielk1977 void sqlite3AlterRenameTable(Parse*, SrcList*, Token*); 34889fd2a9a0Sdanielk1977 int sqlite3GetToken(const unsigned char *, int *); 34892958a4e6Sdrh void sqlite3NestedParse(Parse*, const char*, ...); 3490d89bd007Sdrh void sqlite3ExpirePreparedStatements(sqlite3*); 34911450bc6eSdrh int sqlite3CodeSubselect(Parse *, Expr *, int, int); 34927d10d5a6Sdrh void sqlite3SelectPrep(Parse*, Select*, NameContext*); 34933e3f1a5bSdrh int sqlite3MatchSpanName(const char*, const char*, const char*, const char*); 34947d10d5a6Sdrh int sqlite3ResolveExprNames(NameContext*, Expr*); 34957d10d5a6Sdrh void sqlite3ResolveSelectNames(Parse*, Select*, NameContext*); 34963780be11Sdrh void sqlite3ResolveSelfReference(Parse*,Table*,int,Expr*,ExprList*); 34977d10d5a6Sdrh int sqlite3ResolveOrderGroupBy(Parse*, Select*, ExprList*, const char*); 3498c7538b5fSdanielk1977 void sqlite3ColumnDefault(Vdbe *, Table *, int, int); 349919a8e7e8Sdanielk1977 void sqlite3AlterFinishAddColumn(Parse *, Token *); 350019a8e7e8Sdanielk1977 void sqlite3AlterBeginAddColumn(Parse *, SrcList *); 350179e72a50Sdrh CollSeq *sqlite3GetCollSeq(Parse*, u8, CollSeq *, const char*); 3502fdaac671Sdrh char sqlite3AffinityType(const char*, u8*); 35039f18e8a0Sdrh void sqlite3Analyze(Parse*, Token*, Token*); 3504a4afb65cSdrh int sqlite3InvokeBusyHandler(BusyHandler*); 3505ff2d5ea4Sdrh int sqlite3FindDb(sqlite3*, Token*); 35060410302eSdanielk1977 int sqlite3FindDbName(sqlite3 *, const char *); 3507cf1be45fSdrh int sqlite3AnalysisLoad(sqlite3*,int iDB); 3508d46def77Sdan void sqlite3DeleteIndexSamples(sqlite3*,Index*); 350951147baaSdrh void sqlite3DefaultRowEst(Index*); 351055ef4d97Sdrh void sqlite3RegisterLikeFunctions(sqlite3*, int); 3511d64fe2f3Sdrh int sqlite3IsLikeFunction(sqlite3*,Expr*,int*,char*); 3512fdd6e85aSdrh void sqlite3MinimumFileFormat(Parse*, int, int); 3513b6ee6607Sdrh void sqlite3SchemaClear(void *); 35141e536953Sdanielk1977 Schema *sqlite3SchemaGet(sqlite3 *, Btree *); 3515e501b89aSdanielk1977 int sqlite3SchemaToIndex(sqlite3 *db, Schema *); 3516ad124329Sdrh KeyInfo *sqlite3KeyInfoAlloc(sqlite3*,int,int); 35172ec2fb22Sdrh void sqlite3KeyInfoUnref(KeyInfo*); 35182ec2fb22Sdrh KeyInfo *sqlite3KeyInfoRef(KeyInfo*); 35192ec2fb22Sdrh KeyInfo *sqlite3KeyInfoOfIndex(Parse*, Index*); 35202ec2fb22Sdrh #ifdef SQLITE_DEBUG 35212ec2fb22Sdrh int sqlite3KeyInfoIsWriteable(KeyInfo*); 35222ec2fb22Sdrh #endif 3523771151b6Sdanielk1977 int sqlite3CreateFunc(sqlite3 *, const char *, int, int, void *, 3524771151b6Sdanielk1977 void (*)(sqlite3_context*,int,sqlite3_value **), 3525d2199f0fSdan void (*)(sqlite3_context*,int,sqlite3_value **), void (*)(sqlite3_context*), 3526d2199f0fSdan FuncDestructor *pDestructor 3527d2199f0fSdan ); 352854f0198eSdanielk1977 int sqlite3ApiExit(sqlite3 *db, int); 3529ddfb2f03Sdanielk1977 int sqlite3OpenTempDatabase(Parse *); 353069dab1d3Sdrh 3531f089aa45Sdrh void sqlite3StrAccumInit(StrAccum*, char*, int, int); 3532ade86483Sdrh void sqlite3StrAccumAppend(StrAccum*,const char*,int); 3533a6353a3fSdrh void sqlite3StrAccumAppendAll(StrAccum*,const char*); 35347e02e5e6Sdrh void sqlite3AppendSpace(StrAccum*,int); 3535ade86483Sdrh char *sqlite3StrAccumFinish(StrAccum*); 3536ade86483Sdrh void sqlite3StrAccumReset(StrAccum*); 35371013c932Sdrh void sqlite3SelectDestInit(SelectDest*,int,int); 3538f7b0b0adSdan Expr *sqlite3CreateColumnExpr(sqlite3 *, SrcList *, int, int); 35391e536953Sdanielk1977 35400410302eSdanielk1977 void sqlite3BackupRestart(sqlite3_backup *); 35410410302eSdanielk1977 void sqlite3BackupUpdate(sqlite3_backup *, Pgno, const u8 *); 35420410302eSdanielk1977 35431435a9a1Sdrh #ifdef SQLITE_ENABLE_STAT3_OR_STAT4 35449fecc546Sdrh void sqlite3AnalyzeFunctions(void); 354587cd9321Sdan int sqlite3Stat4ProbeSetValue(Parse*,Index*,UnpackedRecord**,Expr*,u8,int,int*); 3546b0b8290eSdan int sqlite3Stat4ValueFromExpr(Parse*, Expr*, u8, sqlite3_value**); 35477a419235Sdan void sqlite3Stat4ProbeFree(UnpackedRecord*); 3548b0b8290eSdan int sqlite3Stat4Column(sqlite3*, const void*, int, int, sqlite3_value**); 35499fecc546Sdrh #endif 35507a419235Sdan 355195bdbbbdSdrh /* 355295bdbbbdSdrh ** The interface to the LEMON-generated parser 355395bdbbbdSdrh */ 3554fb046e76Sdrh void *sqlite3ParserAlloc(void*(*)(u64)); 355595bdbbbdSdrh void sqlite3ParserFree(void*, void(*)(void*)); 355695bdbbbdSdrh void sqlite3Parser(void*, int, Token, Parse*); 3557ec424a5bSdrh #ifdef YYTRACKMAXSTACKDEPTH 3558ec424a5bSdrh int sqlite3ParserStackPeak(void*); 3559ec424a5bSdrh #endif 356095bdbbbdSdrh 35617aaa8786Sdrh void sqlite3AutoLoadExtensions(sqlite3*); 356269dab1d3Sdrh #ifndef SQLITE_OMIT_LOAD_EXTENSION 3563f1952c5dSdrh void sqlite3CloseExtensions(sqlite3*); 356469dab1d3Sdrh #else 356569dab1d3Sdrh # define sqlite3CloseExtensions(X) 356669dab1d3Sdrh #endif 3567e3026636Sdanielk1977 3568c00da105Sdanielk1977 #ifndef SQLITE_OMIT_SHARED_CACHE 3569c00da105Sdanielk1977 void sqlite3TableLock(Parse *, int, int, u8, const char *); 3570c00da105Sdanielk1977 #else 3571c00da105Sdanielk1977 #define sqlite3TableLock(v,w,x,y,z) 3572c00da105Sdanielk1977 #endif 3573c00da105Sdanielk1977 357453c14021Sdrh #ifdef SQLITE_TEST 357553c14021Sdrh int sqlite3Utf8To8(unsigned char*); 357653c14021Sdrh #endif 357753c14021Sdrh 3578b9bb7c18Sdrh #ifdef SQLITE_OMIT_VIRTUALTABLE 3579595a523aSdanielk1977 # define sqlite3VtabClear(Y) 35809dbee7dcSdanielk1977 # define sqlite3VtabSync(X,Y) SQLITE_OK 3581f9e7dda7Sdanielk1977 # define sqlite3VtabRollback(X) 3582f9e7dda7Sdanielk1977 # define sqlite3VtabCommit(X) 3583093e0f6fSdanielk1977 # define sqlite3VtabInSync(db) 0 3584595a523aSdanielk1977 # define sqlite3VtabLock(X) 3585595a523aSdanielk1977 # define sqlite3VtabUnlock(X) 3586595a523aSdanielk1977 # define sqlite3VtabUnlockList(X) 3587a311b803Sdan # define sqlite3VtabSavepoint(X, Y, Z) SQLITE_OK 3588c3c8dac7Sdrh # define sqlite3GetVTable(X,Y) ((VTable*)0) 3589b9bb7c18Sdrh #else 35901feeaed2Sdan void sqlite3VtabClear(sqlite3 *db, Table*); 3591bba02a95Sdan void sqlite3VtabDisconnect(sqlite3 *db, Table *p); 3592016f7811Sdan int sqlite3VtabSync(sqlite3 *db, Vdbe*); 3593f9e7dda7Sdanielk1977 int sqlite3VtabRollback(sqlite3 *db); 3594f9e7dda7Sdanielk1977 int sqlite3VtabCommit(sqlite3 *db); 3595595a523aSdanielk1977 void sqlite3VtabLock(VTable *); 3596595a523aSdanielk1977 void sqlite3VtabUnlock(VTable *); 3597595a523aSdanielk1977 void sqlite3VtabUnlockList(sqlite3*); 3598a311b803Sdan int sqlite3VtabSavepoint(sqlite3 *, int, int); 3599016f7811Sdan void sqlite3VtabImportErrmsg(Vdbe*, sqlite3_vtab*); 3600c3c8dac7Sdrh VTable *sqlite3GetVTable(sqlite3*, Table*); 3601093e0f6fSdanielk1977 # define sqlite3VtabInSync(db) ((db)->nVTrans>0 && (db)->aVTrans==0) 3602b9bb7c18Sdrh #endif 36034f3dd150Sdrh void sqlite3VtabMakeWritable(Parse*,Table*); 3604b421b894Sdrh void sqlite3VtabBeginParse(Parse*, Token*, Token*, Token*, int); 3605b9bb7c18Sdrh void sqlite3VtabFinishParse(Parse*, Token*); 3606b9bb7c18Sdrh void sqlite3VtabArgInit(Parse*); 3607b9bb7c18Sdrh void sqlite3VtabArgExtend(Parse*, Token*); 360878efaba1Sdanielk1977 int sqlite3VtabCallCreate(sqlite3*, int, const char *, char **); 36097e6ebfb2Sdanielk1977 int sqlite3VtabCallConnect(Parse*, Table*); 36109e39ce87Sdanielk1977 int sqlite3VtabCallDestroy(sqlite3*, int, const char *); 3611595a523aSdanielk1977 int sqlite3VtabBegin(sqlite3 *, VTable *); 36121e536953Sdanielk1977 FuncDef *sqlite3VtabOverloadFunction(sqlite3 *,FuncDef*, int nArg, Expr*); 3613b7481e70Sdrh void sqlite3InvalidFunction(sqlite3_context*,int,sqlite3_value**); 361495a7b3e3Sdrh sqlite3_int64 sqlite3StmtCurrentTime(sqlite3_context*); 36155f18a221Sdrh int sqlite3VdbeParameterIndex(Vdbe*, const char*, int); 36164a27a286Sshane int sqlite3TransferBindings(sqlite3_stmt *, sqlite3_stmt *); 3617f30a969bSdrh void sqlite3ParserReset(Parse*); 3618b900aaf3Sdrh int sqlite3Reprepare(Vdbe*); 3619b1a6c3c1Sdrh void sqlite3ExprListCheckLength(Parse*, ExprList*, const char*); 3620bcbb04e5Sdanielk1977 CollSeq *sqlite3BinaryCompareCollSeq(Parse *, Expr *, Expr *); 36211c514148Sdrh int sqlite3TempInMemory(const sqlite3*); 362228e5386fSdan const char *sqlite3JournalModename(int); 362306a2d825Sdan #ifndef SQLITE_OMIT_WAL 3624cdc1f049Sdan int sqlite3Checkpoint(sqlite3*, int, int, int*, int*); 3625b033d8b9Sdrh int sqlite3WalDefaultHook(void*,sqlite3*,const char*,int); 362606a2d825Sdan #endif 36278b471863Sdrh #ifndef SQLITE_OMIT_CTE 36284e9119d9Sdan With *sqlite3WithAdd(Parse*,With*,Token*,ExprList*,Select*); 36297d562dbeSdan void sqlite3WithDelete(sqlite3*,With*); 3630b290f117Sdan void sqlite3WithPush(Parse*, With*, u8); 36314e9119d9Sdan #else 3632b290f117Sdan #define sqlite3WithPush(x,y,z) 3633eede6a53Sdan #define sqlite3WithDelete(x,y) 36348b471863Sdrh #endif 3635d829335eSdanielk1977 363675cbd984Sdan /* Declarations for functions in fkey.c. All of these are replaced by 363775cbd984Sdan ** no-op macros if OMIT_FOREIGN_KEY is defined. In this case no foreign 363875cbd984Sdan ** key functionality is available. If OMIT_TRIGGER is defined but 363975cbd984Sdan ** OMIT_FOREIGN_KEY is not, only some of the functions are no-oped. In 364075cbd984Sdan ** this case foreign keys are parsed, but no other functionality is 364175cbd984Sdan ** provided (enforcement of FK constraints requires the triggers sub-system). 364275cbd984Sdan */ 364375cbd984Sdan #if !defined(SQLITE_OMIT_FOREIGN_KEY) && !defined(SQLITE_OMIT_TRIGGER) 36448ff2d956Sdan void sqlite3FkCheck(Parse*, Table*, int, int, int*, int); 3645d66c8309Sdan void sqlite3FkDropTable(Parse*, SrcList *, Table*); 36468ff2d956Sdan void sqlite3FkActions(Parse*, Table*, ExprList*, int, int*, int); 3647e7a94d81Sdan int sqlite3FkRequired(Parse*, Table*, int*, int); 3648e7a94d81Sdan u32 sqlite3FkOldmask(Parse*, Table*); 3649432cc5b9Sdan FKey *sqlite3FkReferences(Table *); 36501da40a38Sdan #else 36518ff2d956Sdan #define sqlite3FkActions(a,b,c,d,e,f) 365267896cefSdan #define sqlite3FkCheck(a,b,c,d,e,f) 3653d66c8309Sdan #define sqlite3FkDropTable(a,b,c) 3654e7a94d81Sdan #define sqlite3FkOldmask(a,b) 0 3655e7a94d81Sdan #define sqlite3FkRequired(a,b,c,d) 0 36561da40a38Sdan #endif 365775cbd984Sdan #ifndef SQLITE_OMIT_FOREIGN_KEY 36581feeaed2Sdan void sqlite3FkDelete(sqlite3 *, Table*); 36596c5b915fSdrh int sqlite3FkLocateIndex(Parse*,Table*,FKey*,Index**,int**); 366075cbd984Sdan #else 36611feeaed2Sdan #define sqlite3FkDelete(a,b) 36626c5b915fSdrh #define sqlite3FkLocateIndex(a,b,c,d,e) 366375cbd984Sdan #endif 366475cbd984Sdan 3665643167ffSdrh 3666643167ffSdrh /* 3667643167ffSdrh ** Available fault injectors. Should be numbered beginning with 0. 3668643167ffSdrh */ 3669643167ffSdrh #define SQLITE_FAULTINJECTOR_MALLOC 0 36707e8b848aSdrh #define SQLITE_FAULTINJECTOR_COUNT 1 3671643167ffSdrh 3672643167ffSdrh /* 3673ef05f2dfSdanielk1977 ** The interface to the code in fault.c used for identifying "benign" 3674ef05f2dfSdanielk1977 ** malloc failures. This is only present if SQLITE_OMIT_BUILTIN_TEST 3675ef05f2dfSdanielk1977 ** is not defined. 3676643167ffSdrh */ 36773088d59eSdrh #ifndef SQLITE_OMIT_BUILTIN_TEST 36782d1d86fbSdanielk1977 void sqlite3BeginBenignMalloc(void); 36792d1d86fbSdanielk1977 void sqlite3EndBenignMalloc(void); 3680643167ffSdrh #else 36812d1d86fbSdanielk1977 #define sqlite3BeginBenignMalloc() 3682867d05a0Sdanielk1977 #define sqlite3EndBenignMalloc() 3683643167ffSdrh #endif 3684643167ffSdrh 36853a85625dSdrh /* 36863a85625dSdrh ** Allowed return values from sqlite3FindInIndex() 36873a85625dSdrh */ 36883a85625dSdrh #define IN_INDEX_ROWID 1 /* Search the rowid of the table */ 36893a85625dSdrh #define IN_INDEX_EPH 2 /* Search an ephemeral b-tree */ 36903a85625dSdrh #define IN_INDEX_INDEX_ASC 3 /* Existing index ASCENDING */ 36913a85625dSdrh #define IN_INDEX_INDEX_DESC 4 /* Existing index DESCENDING */ 3692bb53ecb1Sdrh #define IN_INDEX_NOOP 5 /* No table available. Use comparisons */ 36933a85625dSdrh /* 36943a85625dSdrh ** Allowed flags for the 3rd parameter to sqlite3FindInIndex(). 36953a85625dSdrh */ 3696bb53ecb1Sdrh #define IN_INDEX_NOOP_OK 0x0001 /* OK to return IN_INDEX_NOOP */ 3697bb53ecb1Sdrh #define IN_INDEX_MEMBERSHIP 0x0002 /* IN operator used for membership test */ 3698bb53ecb1Sdrh #define IN_INDEX_LOOP 0x0004 /* IN operator used as a loop */ 36993a85625dSdrh int sqlite3FindInIndex(Parse *, Expr *, u32, int*); 37009a96b668Sdanielk1977 3701c7b6017cSdanielk1977 #ifdef SQLITE_ENABLE_ATOMIC_WRITE 3702c7b6017cSdanielk1977 int sqlite3JournalOpen(sqlite3_vfs *, const char *, sqlite3_file *, int, int); 3703c7b6017cSdanielk1977 int sqlite3JournalSize(sqlite3_vfs *); 3704f55b8998Sdanielk1977 int sqlite3JournalCreate(sqlite3_file *); 37053de0f184Sdan int sqlite3JournalExists(sqlite3_file *p); 3706c7b6017cSdanielk1977 #else 3707c7b6017cSdanielk1977 #define sqlite3JournalSize(pVfs) ((pVfs)->szOsFile) 37083de0f184Sdan #define sqlite3JournalExists(p) 1 3709c7b6017cSdanielk1977 #endif 3710c7b6017cSdanielk1977 3711b3175389Sdanielk1977 void sqlite3MemJournalOpen(sqlite3_file *); 37123a5990abSdrh int sqlite3MemJournalSize(void); 3713b3175389Sdanielk1977 int sqlite3IsMemJournal(sqlite3_file *); 3714b3175389Sdanielk1977 37150224d26dSdrh #if SQLITE_MAX_EXPR_DEPTH>0 37164b5255acSdanielk1977 void sqlite3ExprSetHeight(Parse *pParse, Expr *p); 3717fc976065Sdanielk1977 int sqlite3SelectExprHeight(Select *); 37187d10d5a6Sdrh int sqlite3ExprCheckHeight(Parse*, int); 3719fc976065Sdanielk1977 #else 37204b5255acSdanielk1977 #define sqlite3ExprSetHeight(x,y) 37210224d26dSdrh #define sqlite3SelectExprHeight(x) 0 37227d10d5a6Sdrh #define sqlite3ExprCheckHeight(x,y) 3723fc976065Sdanielk1977 #endif 3724fc976065Sdanielk1977 3725a3152895Sdrh u32 sqlite3Get4byte(const u8*); 3726a3152895Sdrh void sqlite3Put4byte(u8*, u32); 3727a3152895Sdrh 3728404ca075Sdanielk1977 #ifdef SQLITE_ENABLE_UNLOCK_NOTIFY 3729404ca075Sdanielk1977 void sqlite3ConnectionBlocked(sqlite3 *, sqlite3 *); 3730404ca075Sdanielk1977 void sqlite3ConnectionUnlocked(sqlite3 *db); 3731404ca075Sdanielk1977 void sqlite3ConnectionClosed(sqlite3 *db); 3732404ca075Sdanielk1977 #else 3733404ca075Sdanielk1977 #define sqlite3ConnectionBlocked(x,y) 3734404ca075Sdanielk1977 #define sqlite3ConnectionUnlocked(x) 3735404ca075Sdanielk1977 #define sqlite3ConnectionClosed(x) 3736404ca075Sdanielk1977 #endif 3737404ca075Sdanielk1977 37386e736838Sdrh #ifdef SQLITE_DEBUG 37396e736838Sdrh void sqlite3ParserTrace(FILE*, char *); 37406e736838Sdrh #endif 37416e736838Sdrh 3742b0603416Sdrh /* 3743b0603416Sdrh ** If the SQLITE_ENABLE IOTRACE exists then the global variable 37443a00f907Smlcreech ** sqlite3IoTrace is a pointer to a printf-like routine used to 3745b0603416Sdrh ** print I/O tracing messages. 3746b0603416Sdrh */ 3747b0603416Sdrh #ifdef SQLITE_ENABLE_IOTRACE 37483a00f907Smlcreech # define IOTRACE(A) if( sqlite3IoTrace ){ sqlite3IoTrace A; } 3749b4622b60Sdanielk1977 void sqlite3VdbeIOTraceSql(Vdbe*); 3750e265b084Sdrh SQLITE_EXTERN void (*sqlite3IoTrace)(const char*,...); 3751b0603416Sdrh #else 3752b0603416Sdrh # define IOTRACE(A) 3753b4622b60Sdanielk1977 # define sqlite3VdbeIOTraceSql(X) 3754b0603416Sdrh #endif 3755b0603416Sdrh 3756107b56e8Sdrh /* 3757107b56e8Sdrh ** These routines are available for the mem2.c debugging memory allocator 3758107b56e8Sdrh ** only. They are used to verify that different "types" of memory 3759107b56e8Sdrh ** allocations are properly tracked by the system. 3760107b56e8Sdrh ** 3761107b56e8Sdrh ** sqlite3MemdebugSetType() sets the "type" of an allocation to one of 3762107b56e8Sdrh ** the MEMTYPE_* macros defined below. The type must be a bitmask with 3763107b56e8Sdrh ** a single bit set. 3764107b56e8Sdrh ** 3765107b56e8Sdrh ** sqlite3MemdebugHasType() returns true if any of the bits in its second 3766107b56e8Sdrh ** argument match the type set by the previous sqlite3MemdebugSetType(). 3767107b56e8Sdrh ** sqlite3MemdebugHasType() is intended for use inside assert() statements. 3768107b56e8Sdrh ** 3769174b9a16Sdrh ** sqlite3MemdebugNoType() returns true if none of the bits in its second 3770174b9a16Sdrh ** argument match the type set by the previous sqlite3MemdebugSetType(). 3771107b56e8Sdrh ** 3772107b56e8Sdrh ** Perhaps the most important point is the difference between MEMTYPE_HEAP 3773174b9a16Sdrh ** and MEMTYPE_LOOKASIDE. If an allocation is MEMTYPE_LOOKASIDE, that means 3774174b9a16Sdrh ** it might have been allocated by lookaside, except the allocation was 3775174b9a16Sdrh ** too large or lookaside was already full. It is important to verify 3776174b9a16Sdrh ** that allocations that might have been satisfied by lookaside are not 3777174b9a16Sdrh ** passed back to non-lookaside free() routines. Asserts such as the 3778174b9a16Sdrh ** example above are placed on the non-lookaside free() routines to verify 3779174b9a16Sdrh ** this constraint. 3780107b56e8Sdrh ** 3781107b56e8Sdrh ** All of this is no-op for a production build. It only comes into 3782107b56e8Sdrh ** play when the SQLITE_MEMDEBUG compile-time option is used. 3783107b56e8Sdrh */ 3784107b56e8Sdrh #ifdef SQLITE_MEMDEBUG 3785107b56e8Sdrh void sqlite3MemdebugSetType(void*,u8); 3786107b56e8Sdrh int sqlite3MemdebugHasType(void*,u8); 3787174b9a16Sdrh int sqlite3MemdebugNoType(void*,u8); 3788107b56e8Sdrh #else 3789107b56e8Sdrh # define sqlite3MemdebugSetType(X,Y) /* no-op */ 3790107b56e8Sdrh # define sqlite3MemdebugHasType(X,Y) 1 3791174b9a16Sdrh # define sqlite3MemdebugNoType(X,Y) 1 3792e3026636Sdanielk1977 #endif 3793107b56e8Sdrh #define MEMTYPE_HEAP 0x01 /* General heap allocations */ 3794174b9a16Sdrh #define MEMTYPE_LOOKASIDE 0x02 /* Might have been lookaside memory */ 3795107b56e8Sdrh #define MEMTYPE_SCRATCH 0x04 /* Scratch allocations */ 3796107b56e8Sdrh #define MEMTYPE_PCACHE 0x08 /* Page cache allocations */ 3797174b9a16Sdrh #define MEMTYPE_DB 0x10 /* Uses sqlite3DbMalloc, not sqlite_malloc */ 3798107b56e8Sdrh 3799f51446a3Sdrh /* 3800f51446a3Sdrh ** Threading interface 3801f51446a3Sdrh */ 3802bf20a35dSdrh #if SQLITE_MAX_WORKER_THREADS>0 3803f51446a3Sdrh int sqlite3ThreadCreate(SQLiteThread**,void*(*)(void*),void*); 3804f51446a3Sdrh int sqlite3ThreadJoin(SQLiteThread*, void**); 3805bf20a35dSdrh #endif 3806f51446a3Sdrh 3807107b56e8Sdrh #endif /* _SQLITEINT_H_ */ 3808