xref: /sqlite-3.40.0/src/vdbeInt.h (revision 1ed93e90)
1 /*
2 ** 2003 September 6
3 **
4 ** The author disclaims copyright to this source code.  In place of
5 ** a legal notice, here is a blessing:
6 **
7 **    May you do good and not evil.
8 **    May you find forgiveness for yourself and forgive others.
9 **    May you share freely, never taking more than you give.
10 **
11 *************************************************************************
12 ** This is the header file for information that is private to the
13 ** VDBE.  This information used to all be at the top of the single
14 ** source code file "vdbe.c".  When that file became too big (over
15 ** 6000 lines long) it was split up into several smaller files and
16 ** this header information was factored out.
17 **
18 ** $Id: vdbeInt.h,v 1.170 2009/05/04 11:42:30 danielk1977 Exp $
19 */
20 #ifndef _VDBEINT_H_
21 #define _VDBEINT_H_
22 
23 /*
24 ** intToKey() and keyToInt() used to transform the rowid.  But with
25 ** the latest versions of the design they are no-ops.
26 */
27 #define keyToInt(X)   (X)
28 #define intToKey(X)   (X)
29 
30 
31 /*
32 ** SQL is translated into a sequence of instructions to be
33 ** executed by a virtual machine.  Each instruction is an instance
34 ** of the following structure.
35 */
36 typedef struct VdbeOp Op;
37 
38 /*
39 ** Boolean values
40 */
41 typedef unsigned char Bool;
42 
43 /*
44 ** A cursor is a pointer into a single BTree within a database file.
45 ** The cursor can seek to a BTree entry with a particular key, or
46 ** loop over all entries of the Btree.  You can also insert new BTree
47 ** entries or retrieve the key or data from the entry that the cursor
48 ** is currently pointing to.
49 **
50 ** Every cursor that the virtual machine has open is represented by an
51 ** instance of the following structure.
52 **
53 ** If the VdbeCursor.isTriggerRow flag is set it means that this cursor is
54 ** really a single row that represents the NEW or OLD pseudo-table of
55 ** a row trigger.  The data for the row is stored in VdbeCursor.pData and
56 ** the rowid is in VdbeCursor.iKey.
57 */
58 struct VdbeCursor {
59   BtCursor *pCursor;    /* The cursor structure of the backend */
60   int iDb;              /* Index of cursor database in db->aDb[] (or -1) */
61   i64 lastRowid;        /* Last rowid from a Next or NextIdx operation */
62   Bool zeroed;          /* True if zeroed out and ready for reuse */
63   Bool rowidIsValid;    /* True if lastRowid is valid */
64   Bool atFirst;         /* True if pointing to first entry */
65   Bool useRandomRowid;  /* Generate new record numbers semi-randomly */
66   Bool nullRow;         /* True if pointing to a row with no data */
67   Bool pseudoTable;     /* This is a NEW or OLD pseudo-tables of a trigger */
68   Bool ephemPseudoTable;
69   Bool deferredMoveto;  /* A call to sqlite3BtreeMoveto() is needed */
70   Bool isTable;         /* True if a table requiring integer keys */
71   Bool isIndex;         /* True if an index containing keys only - no data */
72   i64 movetoTarget;     /* Argument to the deferred sqlite3BtreeMoveto() */
73   Btree *pBt;           /* Separate file holding temporary table */
74   int nData;            /* Number of bytes in pData */
75   char *pData;          /* Data for a NEW or OLD pseudo-table */
76   i64 iKey;             /* Key for the NEW or OLD pseudo-table row */
77   KeyInfo *pKeyInfo;    /* Info about index keys needed by index cursors */
78   int nField;           /* Number of fields in the header */
79   i64 seqCount;         /* Sequence counter */
80   sqlite3_vtab_cursor *pVtabCursor;  /* The cursor for a virtual table */
81   const sqlite3_module *pModule;     /* Module for cursor pVtabCursor */
82 
83   /* Result of last sqlite3BtreeMoveto() done by an OP_NotExists or
84   ** OP_IsUnique opcode on this cursor. */
85   int seekResult;
86 
87   /* Cached information about the header for the data record that the
88   ** cursor is currently pointing to.  Only valid if cacheValid is true.
89   ** aRow might point to (ephemeral) data for the current row, or it might
90   ** be NULL.
91   */
92   int cacheStatus;      /* Cache is valid if this matches Vdbe.cacheCtr */
93   int payloadSize;      /* Total number of bytes in the record */
94   u32 *aType;           /* Type values for all entries in the record */
95   u32 *aOffset;         /* Cached offsets to the start of each columns data */
96   u8 *aRow;             /* Data for the current row, if all on one page */
97 };
98 typedef struct VdbeCursor VdbeCursor;
99 
100 /*
101 ** A value for VdbeCursor.cacheValid that means the cache is always invalid.
102 */
103 #define CACHE_STALE 0
104 
105 /*
106 ** Internally, the vdbe manipulates nearly all SQL values as Mem
107 ** structures. Each Mem struct may cache multiple representations (string,
108 ** integer etc.) of the same value.  A value (and therefore Mem structure)
109 ** has the following properties:
110 **
111 ** Each value has a manifest type. The manifest type of the value stored
112 ** in a Mem struct is returned by the MemType(Mem*) macro. The type is
113 ** one of SQLITE_NULL, SQLITE_INTEGER, SQLITE_REAL, SQLITE_TEXT or
114 ** SQLITE_BLOB.
115 */
116 struct Mem {
117   union {
118     i64 i;              /* Integer value. */
119     int nZero;          /* Used when bit MEM_Zero is set in flags */
120     FuncDef *pDef;      /* Used only when flags==MEM_Agg */
121     RowSet *pRowSet;    /* Used only when flags==MEM_RowSet */
122   } u;
123   double r;           /* Real value */
124   sqlite3 *db;        /* The associated database connection */
125   char *z;            /* String or BLOB value */
126   int n;              /* Number of characters in string value, excluding '\0' */
127   u16 flags;          /* Some combination of MEM_Null, MEM_Str, MEM_Dyn, etc. */
128   u8  type;           /* One of SQLITE_NULL, SQLITE_TEXT, SQLITE_INTEGER, etc */
129   u8  enc;            /* SQLITE_UTF8, SQLITE_UTF16BE, SQLITE_UTF16LE */
130   void (*xDel)(void *);  /* If not null, call this function to delete Mem.z */
131   char *zMalloc;      /* Dynamic buffer allocated by sqlite3_malloc() */
132 };
133 
134 /* One or more of the following flags are set to indicate the validOK
135 ** representations of the value stored in the Mem struct.
136 **
137 ** If the MEM_Null flag is set, then the value is an SQL NULL value.
138 ** No other flags may be set in this case.
139 **
140 ** If the MEM_Str flag is set then Mem.z points at a string representation.
141 ** Usually this is encoded in the same unicode encoding as the main
142 ** database (see below for exceptions). If the MEM_Term flag is also
143 ** set, then the string is nul terminated. The MEM_Int and MEM_Real
144 ** flags may coexist with the MEM_Str flag.
145 **
146 ** Multiple of these values can appear in Mem.flags.  But only one
147 ** at a time can appear in Mem.type.
148 */
149 #define MEM_Null      0x0001   /* Value is NULL */
150 #define MEM_Str       0x0002   /* Value is a string */
151 #define MEM_Int       0x0004   /* Value is an integer */
152 #define MEM_Real      0x0008   /* Value is a real number */
153 #define MEM_Blob      0x0010   /* Value is a BLOB */
154 #define MEM_RowSet    0x0020   /* Value is a RowSet object */
155 #define MEM_TypeMask  0x00ff   /* Mask of type bits */
156 
157 /* Whenever Mem contains a valid string or blob representation, one of
158 ** the following flags must be set to determine the memory management
159 ** policy for Mem.z.  The MEM_Term flag tells us whether or not the
160 ** string is \000 or \u0000 terminated
161 */
162 #define MEM_Term      0x0200   /* String rep is nul terminated */
163 #define MEM_Dyn       0x0400   /* Need to call sqliteFree() on Mem.z */
164 #define MEM_Static    0x0800   /* Mem.z points to a static string */
165 #define MEM_Ephem     0x1000   /* Mem.z points to an ephemeral string */
166 #define MEM_Agg       0x2000   /* Mem.z points to an agg function context */
167 #define MEM_Zero      0x4000   /* Mem.i contains count of 0s appended to blob */
168 
169 #ifdef SQLITE_OMIT_INCRBLOB
170   #undef MEM_Zero
171   #define MEM_Zero 0x0000
172 #endif
173 
174 
175 /*
176 ** Clear any existing type flags from a Mem and replace them with f
177 */
178 #define MemSetTypeFlag(p, f) \
179    ((p)->flags = ((p)->flags&~(MEM_TypeMask|MEM_Zero))|f)
180 
181 
182 /* A VdbeFunc is just a FuncDef (defined in sqliteInt.h) that contains
183 ** additional information about auxiliary information bound to arguments
184 ** of the function.  This is used to implement the sqlite3_get_auxdata()
185 ** and sqlite3_set_auxdata() APIs.  The "auxdata" is some auxiliary data
186 ** that can be associated with a constant argument to a function.  This
187 ** allows functions such as "regexp" to compile their constant regular
188 ** expression argument once and reused the compiled code for multiple
189 ** invocations.
190 */
191 struct VdbeFunc {
192   FuncDef *pFunc;               /* The definition of the function */
193   int nAux;                     /* Number of entries allocated for apAux[] */
194   struct AuxData {
195     void *pAux;                   /* Aux data for the i-th argument */
196     void (*xDelete)(void *);      /* Destructor for the aux data */
197   } apAux[1];                   /* One slot for each function argument */
198 };
199 
200 /*
201 ** The "context" argument for a installable function.  A pointer to an
202 ** instance of this structure is the first argument to the routines used
203 ** implement the SQL functions.
204 **
205 ** There is a typedef for this structure in sqlite.h.  So all routines,
206 ** even the public interface to SQLite, can use a pointer to this structure.
207 ** But this file is the only place where the internal details of this
208 ** structure are known.
209 **
210 ** This structure is defined inside of vdbeInt.h because it uses substructures
211 ** (Mem) which are only defined there.
212 */
213 struct sqlite3_context {
214   FuncDef *pFunc;       /* Pointer to function information.  MUST BE FIRST */
215   VdbeFunc *pVdbeFunc;  /* Auxilary data, if created. */
216   Mem s;                /* The return value is stored here */
217   Mem *pMem;            /* Memory cell used to store aggregate context */
218   int isError;          /* Error code returned by the function. */
219   CollSeq *pColl;       /* Collating sequence */
220 };
221 
222 /*
223 ** A Set structure is used for quick testing to see if a value
224 ** is part of a small set.  Sets are used to implement code like
225 ** this:
226 **            x.y IN ('hi','hoo','hum')
227 */
228 typedef struct Set Set;
229 struct Set {
230   Hash hash;             /* A set is just a hash table */
231   HashElem *prev;        /* Previously accessed hash elemen */
232 };
233 
234 /*
235 ** A Context stores the last insert rowid, the last statement change count,
236 ** and the current statement change count (i.e. changes since last statement).
237 ** The current keylist is also stored in the context.
238 ** Elements of Context structure type make up the ContextStack, which is
239 ** updated by the ContextPush and ContextPop opcodes (used by triggers).
240 ** The context is pushed before executing a trigger a popped when the
241 ** trigger finishes.
242 */
243 typedef struct Context Context;
244 struct Context {
245   i64 lastRowid;    /* Last insert rowid (sqlite3.lastRowid) */
246   int nChange;      /* Statement changes (Vdbe.nChanges)     */
247 };
248 
249 /*
250 ** An instance of the virtual machine.  This structure contains the complete
251 ** state of the virtual machine.
252 **
253 ** The "sqlite3_stmt" structure pointer that is returned by sqlite3_compile()
254 ** is really a pointer to an instance of this structure.
255 **
256 ** The Vdbe.inVtabMethod variable is set to non-zero for the duration of
257 ** any virtual table method invocations made by the vdbe program. It is
258 ** set to 2 for xDestroy method calls and 1 for all other methods. This
259 ** variable is used for two purposes: to allow xDestroy methods to execute
260 ** "DROP TABLE" statements and to prevent some nasty side effects of
261 ** malloc failure when SQLite is invoked recursively by a virtual table
262 ** method function.
263 */
264 struct Vdbe {
265   sqlite3 *db;        /* The whole database */
266   Vdbe *pPrev,*pNext; /* Linked list of VDBEs with the same Vdbe.db */
267   int nOp;            /* Number of instructions in the program */
268   int nOpAlloc;       /* Number of slots allocated for aOp[] */
269   Op *aOp;            /* Space to hold the virtual machine's program */
270   int nLabel;         /* Number of labels used */
271   int nLabelAlloc;    /* Number of slots allocated in aLabel[] */
272   int *aLabel;        /* Space to hold the labels */
273   Mem **apArg;        /* Arguments to currently executing user function */
274   Mem *aColName;      /* Column names to return */
275   int nCursor;        /* Number of slots in apCsr[] */
276   VdbeCursor **apCsr; /* One element of this array for each open cursor */
277   int nVar;           /* Number of entries in aVar[] */
278   Mem *aVar;          /* Values for the OP_Variable opcode. */
279   char **azVar;       /* Name of variables */
280   int okVar;          /* True if azVar[] has been initialized */
281   u32 magic;              /* Magic number for sanity checking */
282   int nMem;               /* Number of memory locations currently allocated */
283   Mem *aMem;              /* The memory locations */
284   int cacheCtr;           /* VdbeCursor row cache generation counter */
285   int contextStackTop;    /* Index of top element in the context stack */
286   int contextStackDepth;  /* The size of the "context" stack */
287   Context *contextStack;  /* Stack used by opcodes ContextPush & ContextPop*/
288   int pc;                 /* The program counter */
289   int rc;                 /* Value to return */
290   int errorAction;        /* Recovery action to do in case of an error */
291   int nResColumn;         /* Number of columns in one row of the result set */
292   char **azResColumn;     /* Values for one row of result */
293   char *zErrMsg;          /* Error message written here */
294   Mem *pResultSet;        /* Pointer to an array of results */
295   u8 explain;             /* True if EXPLAIN present on SQL command */
296   u8 changeCntOn;         /* True to update the change-counter */
297   u8 expired;             /* True if the VM needs to be recompiled */
298   u8 minWriteFileFormat;  /* Minimum file format for writable database files */
299   u8 inVtabMethod;        /* See comments above */
300   u8 usesStmtJournal;     /* True if uses a statement journal */
301   u8 readOnly;            /* True for read-only statements */
302   u8 isPrepareV2;         /* True if prepared with prepare_v2() */
303   int nChange;            /* Number of db changes made since last reset */
304   i64 startTime;          /* Time when query started - used for profiling */
305   int btreeMask;          /* Bitmask of db->aDb[] entries referenced */
306   BtreeMutexArray aMutex; /* An array of Btree used here and needing locks */
307   int aCounter[2];        /* Counters used by sqlite3_stmt_status() */
308   char *zSql;           /* Text of the SQL statement that generated this */
309   void *pFree;            /* Free this when deleting the vdbe */
310 #ifdef SQLITE_DEBUG
311   FILE *trace;          /* Write an execution trace here, if not NULL */
312 #endif
313   int iStatement;         /* Statement number (or 0 if has not opened stmt) */
314 #ifdef SQLITE_SSE
315   int fetchId;          /* Statement number used by sqlite3_fetch_statement */
316   int lru;              /* Counter used for LRU cache replacement */
317 #endif
318 #ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
319   Vdbe *pLruPrev;
320   Vdbe *pLruNext;
321 #endif
322 };
323 
324 /*
325 ** The following are allowed values for Vdbe.magic
326 */
327 #define VDBE_MAGIC_INIT     0x26bceaa5    /* Building a VDBE program */
328 #define VDBE_MAGIC_RUN      0xbdf20da3    /* VDBE is ready to execute */
329 #define VDBE_MAGIC_HALT     0x519c2973    /* VDBE has completed execution */
330 #define VDBE_MAGIC_DEAD     0xb606c3c8    /* The VDBE has been deallocated */
331 
332 /*
333 ** Function prototypes
334 */
335 void sqlite3VdbeFreeCursor(Vdbe *, VdbeCursor*);
336 void sqliteVdbePopStack(Vdbe*,int);
337 int sqlite3VdbeCursorMoveto(VdbeCursor*);
338 #if defined(SQLITE_DEBUG) || defined(VDBE_PROFILE)
339 void sqlite3VdbePrintOp(FILE*, int, Op*);
340 #endif
341 int sqlite3VdbeSerialTypeLen(u32);
342 u32 sqlite3VdbeSerialType(Mem*, int);
343 int sqlite3VdbeSerialPut(unsigned char*, int, Mem*, int);
344 int sqlite3VdbeSerialGet(const unsigned char*, u32, Mem*);
345 void sqlite3VdbeDeleteAuxData(VdbeFunc*, int);
346 
347 int sqlite2BtreeKeyCompare(BtCursor *, const void *, int, int, int *);
348 int sqlite3VdbeIdxKeyCompare(VdbeCursor*,UnpackedRecord*,int*);
349 int sqlite3VdbeIdxRowid(BtCursor *, i64 *);
350 int sqlite3MemCompare(const Mem*, const Mem*, const CollSeq*);
351 int sqlite3VdbeExec(Vdbe*);
352 int sqlite3VdbeList(Vdbe*);
353 int sqlite3VdbeHalt(Vdbe*);
354 int sqlite3VdbeChangeEncoding(Mem *, int);
355 int sqlite3VdbeMemTooBig(Mem*);
356 int sqlite3VdbeMemCopy(Mem*, const Mem*);
357 void sqlite3VdbeMemShallowCopy(Mem*, const Mem*, int);
358 void sqlite3VdbeMemMove(Mem*, Mem*);
359 int sqlite3VdbeMemNulTerminate(Mem*);
360 int sqlite3VdbeMemSetStr(Mem*, const char*, int, u8, void(*)(void*));
361 void sqlite3VdbeMemSetInt64(Mem*, i64);
362 void sqlite3VdbeMemSetDouble(Mem*, double);
363 void sqlite3VdbeMemSetNull(Mem*);
364 void sqlite3VdbeMemSetZeroBlob(Mem*,int);
365 void sqlite3VdbeMemSetRowSet(Mem*);
366 int sqlite3VdbeMemMakeWriteable(Mem*);
367 int sqlite3VdbeMemStringify(Mem*, int);
368 i64 sqlite3VdbeIntValue(Mem*);
369 int sqlite3VdbeMemIntegerify(Mem*);
370 double sqlite3VdbeRealValue(Mem*);
371 void sqlite3VdbeIntegerAffinity(Mem*);
372 int sqlite3VdbeMemRealify(Mem*);
373 int sqlite3VdbeMemNumerify(Mem*);
374 int sqlite3VdbeMemFromBtree(BtCursor*,int,int,int,Mem*);
375 void sqlite3VdbeMemRelease(Mem *p);
376 void sqlite3VdbeMemReleaseExternal(Mem *p);
377 int sqlite3VdbeMemFinalize(Mem*, FuncDef*);
378 const char *sqlite3OpcodeName(int);
379 int sqlite3VdbeOpcodeHasProperty(int, int);
380 int sqlite3VdbeMemGrow(Mem *pMem, int n, int preserve);
381 int sqlite3VdbeCloseStatement(Vdbe *, int);
382 #ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
383 int sqlite3VdbeReleaseBuffers(Vdbe *p);
384 #endif
385 
386 #ifndef SQLITE_OMIT_SHARED_CACHE
387 void sqlite3VdbeMutexArrayEnter(Vdbe *p);
388 #else
389 # define sqlite3VdbeMutexArrayEnter(p)
390 #endif
391 
392 int sqlite3VdbeMemTranslate(Mem*, u8);
393 #ifdef SQLITE_DEBUG
394   void sqlite3VdbePrintSql(Vdbe*);
395   void sqlite3VdbeMemPrettyPrint(Mem *pMem, char *zBuf);
396 #endif
397 int sqlite3VdbeMemHandleBom(Mem *pMem);
398 
399 #ifndef SQLITE_OMIT_INCRBLOB
400   int sqlite3VdbeMemExpandBlob(Mem *);
401 #else
402   #define sqlite3VdbeMemExpandBlob(x) SQLITE_OK
403 #endif
404 
405 #endif /* !defined(_VDBEINT_H_) */
406