xref: /sqlite-3.40.0/test/fuzzcheck.c (revision 2cdcc7f0)
1 /*
2 ** 2015-05-25
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 **
13 ** This is a utility program designed to aid running regressions tests on
14 ** the SQLite library using data from external fuzzers.
15 **
16 ** This program reads content from an SQLite database file with the following
17 ** schema:
18 **
19 **     CREATE TABLE db(
20 **       dbid INTEGER PRIMARY KEY, -- database id
21 **       dbcontent BLOB            -- database disk file image
22 **     );
23 **     CREATE TABLE xsql(
24 **       sqlid INTEGER PRIMARY KEY,   -- SQL script id
25 **       sqltext TEXT                 -- Text of SQL statements to run
26 **     );
27 **     CREATE TABLE IF NOT EXISTS readme(
28 **       msg TEXT -- Human-readable description of this test collection
29 **     );
30 **
31 ** For each database file in the DB table, the SQL text in the XSQL table
32 ** is run against that database.  All README.MSG values are printed prior
33 ** to the start of the test (unless the --quiet option is used).  If the
34 ** DB table is empty, then all entries in XSQL are run against an empty
35 ** in-memory database.
36 **
37 ** This program is looking for crashes, assertion faults, and/or memory leaks.
38 ** No attempt is made to verify the output.  The assumption is that either all
39 ** of the database files or all of the SQL statements are malformed inputs,
40 ** generated by a fuzzer, that need to be checked to make sure they do not
41 ** present a security risk.
42 **
43 ** This program also includes some command-line options to help with
44 ** creation and maintenance of the source content database.  The command
45 **
46 **     ./fuzzcheck database.db --load-sql FILE...
47 **
48 ** Loads all FILE... arguments into the XSQL table.  The --load-db option
49 ** works the same but loads the files into the DB table.  The -m option can
50 ** be used to initialize the README table.  The "database.db" file is created
51 ** if it does not previously exist.  Example:
52 **
53 **     ./fuzzcheck new.db --load-sql *.sql
54 **     ./fuzzcheck new.db --load-db *.db
55 **     ./fuzzcheck new.db -m 'New test cases'
56 **
57 ** The three commands above will create the "new.db" file and initialize all
58 ** tables.  Then do "./fuzzcheck new.db" to run the tests.
59 **
60 ** DEBUGGING HINTS:
61 **
62 ** If fuzzcheck does crash, it can be run in the debugger and the content
63 ** of the global variable g.zTextName[] will identify the specific XSQL and
64 ** DB values that were running when the crash occurred.
65 **
66 ** DBSQLFUZZ: (Added 2020-02-25)
67 **
68 ** The dbsqlfuzz fuzzer includes both a database file and SQL to run against
69 ** that database in its input.  This utility can now process dbsqlfuzz
70 ** input files.  Load such files using the "--load-dbsql FILE ..." command-line
71 ** option.
72 **
73 ** Dbsqlfuzz inputs are ordinary text.  The first part of the file is text
74 ** that describes the content of the database (using a lot of hexadecimal),
75 ** then there is a divider line followed by the SQL to run against the
76 ** database.  Because they are ordinary text, dbsqlfuzz inputs are stored
77 ** in the XSQL table, as if they were ordinary SQL inputs.  The isDbSql()
78 ** function can look at a text string and determine whether or not it is
79 ** a valid dbsqlfuzz input.
80 */
81 #include <stdio.h>
82 #include <stdlib.h>
83 #include <string.h>
84 #include <stdarg.h>
85 #include <ctype.h>
86 #include <assert.h>
87 #include "sqlite3.h"
88 #include "sqlite3recover.h"
89 #define ISSPACE(X) isspace((unsigned char)(X))
90 #define ISDIGIT(X) isdigit((unsigned char)(X))
91 
92 
93 #ifdef __unix__
94 # include <signal.h>
95 # include <unistd.h>
96 #endif
97 
98 #include <stddef.h>
99 #if !defined(_MSC_VER)
100 # include <stdint.h>
101 #endif
102 
103 #if defined(_MSC_VER)
104 typedef unsigned char uint8_t;
105 #endif
106 
107 /*
108 ** Files in the virtual file system.
109 */
110 typedef struct VFile VFile;
111 struct VFile {
112   char *zFilename;      /* Filename.  NULL for delete-on-close. From malloc() */
113   int sz;               /* Size of the file in bytes */
114   int nRef;             /* Number of references to this file */
115   unsigned char *a;     /* Content of the file.  From malloc() */
116 };
117 typedef struct VHandle VHandle;
118 struct VHandle {
119   sqlite3_file base;      /* Base class.  Must be first */
120   VFile *pVFile;          /* The underlying file */
121 };
122 
123 /*
124 ** The value of a database file template, or of an SQL script
125 */
126 typedef struct Blob Blob;
127 struct Blob {
128   Blob *pNext;            /* Next in a list */
129   int id;                 /* Id of this Blob */
130   int seq;                /* Sequence number */
131   int sz;                 /* Size of this Blob in bytes */
132   unsigned char a[1];     /* Blob content.  Extra space allocated as needed. */
133 };
134 
135 /*
136 ** Maximum number of files in the in-memory virtual filesystem.
137 */
138 #define MX_FILE  10
139 
140 /*
141 ** Maximum allowed file size
142 */
143 #define MX_FILE_SZ 10000000
144 
145 /*
146 ** All global variables are gathered into the "g" singleton.
147 */
148 static struct GlobalVars {
149   const char *zArgv0;              /* Name of program */
150   const char *zDbFile;             /* Name of database file */
151   VFile aFile[MX_FILE];            /* The virtual filesystem */
152   int nDb;                         /* Number of template databases */
153   Blob *pFirstDb;                  /* Content of first template database */
154   int nSql;                        /* Number of SQL scripts */
155   Blob *pFirstSql;                 /* First SQL script */
156   unsigned int uRandom;            /* Seed for the SQLite PRNG */
157   unsigned int nInvariant;         /* Number of invariant checks run */
158   char zTestName[100];             /* Name of current test */
159 } g;
160 
161 /*
162 ** Include the external vt02.c module.
163 */
164 extern int sqlite3_vt02_init(sqlite3*,char***,void*);
165 
166 
167 /*
168 ** Print an error message and quit.
169 */
fatalError(const char * zFormat,...)170 static void fatalError(const char *zFormat, ...){
171   va_list ap;
172   fprintf(stderr, "%s", g.zArgv0);
173   if( g.zDbFile ) fprintf(stderr, " %s", g.zDbFile);
174   if( g.zTestName[0] ) fprintf(stderr, " (%s)", g.zTestName);
175   fprintf(stderr, ": ");
176   va_start(ap, zFormat);
177   vfprintf(stderr, zFormat, ap);
178   va_end(ap);
179   fprintf(stderr, "\n");
180   exit(1);
181 }
182 
183 /*
184 ** signal handler
185 */
186 #ifdef __unix__
signalHandler(int signum)187 static void signalHandler(int signum){
188   const char *zSig;
189   if( signum==SIGABRT ){
190     zSig = "abort";
191   }else if( signum==SIGALRM ){
192     zSig = "timeout";
193   }else if( signum==SIGSEGV ){
194     zSig = "segfault";
195   }else{
196     zSig = "signal";
197   }
198   fatalError(zSig);
199 }
200 #endif
201 
202 /*
203 ** Set the an alarm to go off after N seconds.  Disable the alarm
204 ** if N==0
205 */
setAlarm(int N)206 static void setAlarm(int N){
207 #ifdef __unix__
208   alarm(N);
209 #else
210   (void)N;
211 #endif
212 }
213 
214 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK
215 /*
216 ** This an SQL progress handler.  After an SQL statement has run for
217 ** many steps, we want to interrupt it.  This guards against infinite
218 ** loops from recursive common table expressions.
219 **
220 ** *pVdbeLimitFlag is true if the --limit-vdbe command-line option is used.
221 ** In that case, hitting the progress handler is a fatal error.
222 */
progressHandler(void * pVdbeLimitFlag)223 static int progressHandler(void *pVdbeLimitFlag){
224   if( *(int*)pVdbeLimitFlag ) fatalError("too many VDBE cycles");
225   return 1;
226 }
227 #endif
228 
229 /*
230 ** Reallocate memory.  Show an error and quit if unable.
231 */
safe_realloc(void * pOld,int szNew)232 static void *safe_realloc(void *pOld, int szNew){
233   void *pNew = realloc(pOld, szNew<=0 ? 1 : szNew);
234   if( pNew==0 ) fatalError("unable to realloc for %d bytes", szNew);
235   return pNew;
236 }
237 
238 /*
239 ** Initialize the virtual file system.
240 */
formatVfs(void)241 static void formatVfs(void){
242   int i;
243   for(i=0; i<MX_FILE; i++){
244     g.aFile[i].sz = -1;
245     g.aFile[i].zFilename = 0;
246     g.aFile[i].a = 0;
247     g.aFile[i].nRef = 0;
248   }
249 }
250 
251 
252 /*
253 ** Erase all information in the virtual file system.
254 */
reformatVfs(void)255 static void reformatVfs(void){
256   int i;
257   for(i=0; i<MX_FILE; i++){
258     if( g.aFile[i].sz<0 ) continue;
259     if( g.aFile[i].zFilename ){
260       free(g.aFile[i].zFilename);
261       g.aFile[i].zFilename = 0;
262     }
263     if( g.aFile[i].nRef>0 ){
264       fatalError("file %d still open.  nRef=%d", i, g.aFile[i].nRef);
265     }
266     g.aFile[i].sz = -1;
267     free(g.aFile[i].a);
268     g.aFile[i].a = 0;
269     g.aFile[i].nRef = 0;
270   }
271 }
272 
273 /*
274 ** Find a VFile by name
275 */
findVFile(const char * zName)276 static VFile *findVFile(const char *zName){
277   int i;
278   if( zName==0 ) return 0;
279   for(i=0; i<MX_FILE; i++){
280     if( g.aFile[i].zFilename==0 ) continue;
281     if( strcmp(g.aFile[i].zFilename, zName)==0 ) return &g.aFile[i];
282   }
283   return 0;
284 }
285 
286 /*
287 ** Find a VFile by name.  Create it if it does not already exist and
288 ** initialize it to the size and content given.
289 **
290 ** Return NULL only if the filesystem is full.
291 */
createVFile(const char * zName,int sz,unsigned char * pData)292 static VFile *createVFile(const char *zName, int sz, unsigned char *pData){
293   VFile *pNew = findVFile(zName);
294   int i;
295   if( pNew ) return pNew;
296   for(i=0; i<MX_FILE && g.aFile[i].sz>=0; i++){}
297   if( i>=MX_FILE ) return 0;
298   pNew = &g.aFile[i];
299   if( zName ){
300     int nName = (int)strlen(zName)+1;
301     pNew->zFilename = safe_realloc(0, nName);
302     memcpy(pNew->zFilename, zName, nName);
303   }else{
304     pNew->zFilename = 0;
305   }
306   pNew->nRef = 0;
307   pNew->sz = sz;
308   pNew->a = safe_realloc(0, sz);
309   if( sz>0 ) memcpy(pNew->a, pData, sz);
310   return pNew;
311 }
312 
313 /* Return true if the line is all zeros */
allZero(unsigned char * aLine)314 static int allZero(unsigned char *aLine){
315   int i;
316   for(i=0; i<16 && aLine[i]==0; i++){}
317   return i==16;
318 }
319 
320 /*
321 ** Render a database and query as text that can be input into
322 ** the CLI.
323 */
renderDbSqlForCLI(FILE * out,const char * zFile,unsigned char * aDb,int nDb,unsigned char * zSql,int nSql)324 static void renderDbSqlForCLI(
325   FILE *out,             /* Write to this file */
326   const char *zFile,     /* Name of the database file */
327   unsigned char *aDb,    /* Database content */
328   int nDb,               /* Number of bytes in aDb[] */
329   unsigned char *zSql,   /* SQL content */
330   int nSql               /* Bytes of SQL */
331 ){
332   fprintf(out, ".print ******* %s *******\n", zFile);
333   if( nDb>100 ){
334     int i, j;                   /* Loop counters */
335     int pgsz;                   /* Size of each page */
336     int lastPage = 0;           /* Last page number shown */
337     int iPage;                  /* Current page number */
338     unsigned char *aLine;       /* Single line to display */
339     unsigned char buf[16];      /* Fake line */
340     unsigned char bShow[256];   /* Characters ok to display */
341 
342     memset(bShow, '.', sizeof(bShow));
343     for(i=' '; i<='~'; i++){
344       if( i!='{' && i!='}' && i!='"' && i!='\\' ) bShow[i] = i;
345     }
346     pgsz = (aDb[16]<<8) | aDb[17];
347     if( pgsz==0 ) pgsz = 65536;
348     if( pgsz<512 || (pgsz&(pgsz-1))!=0 ) pgsz = 4096;
349     fprintf(out,".open --hexdb\n");
350     fprintf(out,"| size %d pagesize %d filename %s\n",nDb,pgsz,zFile);
351     for(i=0; i<nDb; i += 16){
352       if( i+16>nDb ){
353         memset(buf, 0, sizeof(buf));
354         memcpy(buf, aDb+i, nDb-i);
355         aLine = buf;
356       }else{
357         aLine = aDb + i;
358       }
359       if( allZero(aLine) ) continue;
360       iPage = i/pgsz + 1;
361       if( lastPage!=iPage ){
362         fprintf(out,"| page %d offset %d\n", iPage, (iPage-1)*pgsz);
363         lastPage = iPage;
364       }
365       fprintf(out,"|  %5d:", i-(iPage-1)*pgsz);
366       for(j=0; j<16; j++) fprintf(out," %02x", aLine[j]);
367       fprintf(out,"   ");
368       for(j=0; j<16; j++){
369         unsigned char c = (unsigned char)aLine[j];
370         fputc( bShow[c], stdout);
371       }
372       fputc('\n', stdout);
373     }
374     fprintf(out,"| end %s\n", zFile);
375   }else{
376     fprintf(out,".open :memory:\n");
377   }
378   fprintf(out,".testctrl prng_seed 1 db\n");
379   fprintf(out,".testctrl internal_functions\n");
380   fprintf(out,"%.*s", nSql, zSql);
381   if( nSql>0 && zSql[nSql-1]!='\n' ) fprintf(out, "\n");
382 }
383 
384 /*
385 ** Read the complete content of a file into memory.  Add a 0x00 terminator
386 ** and return a pointer to the result.
387 **
388 ** The file content is held in memory obtained from sqlite_malloc64() which
389 ** should be freed by the caller.
390 */
readFile(const char * zFilename,long * sz)391 static char *readFile(const char *zFilename, long *sz){
392   FILE *in;
393   long nIn;
394   unsigned char *pBuf;
395 
396   *sz = 0;
397   if( zFilename==0 ) return 0;
398   in = fopen(zFilename, "rb");
399   if( in==0 ) return 0;
400   fseek(in, 0, SEEK_END);
401   *sz = nIn = ftell(in);
402   rewind(in);
403   pBuf = sqlite3_malloc64( nIn+1 );
404   if( pBuf && 1==fread(pBuf, nIn, 1, in) ){
405     pBuf[nIn] = 0;
406     fclose(in);
407     return (char*)pBuf;
408   }
409   sqlite3_free(pBuf);
410   *sz = 0;
411   fclose(in);
412   return 0;
413 }
414 
415 
416 /*
417 ** Implementation of the "readfile(X)" SQL function.  The entire content
418 ** of the file named X is read and returned as a BLOB.  NULL is returned
419 ** if the file does not exist or is unreadable.
420 */
readfileFunc(sqlite3_context * context,int argc,sqlite3_value ** argv)421 static void readfileFunc(
422   sqlite3_context *context,
423   int argc,
424   sqlite3_value **argv
425 ){
426   long nIn;
427   void *pBuf;
428   const char *zName = (const char*)sqlite3_value_text(argv[0]);
429 
430   if( zName==0 ) return;
431   pBuf = readFile(zName, &nIn);
432   if( pBuf ){
433     sqlite3_result_blob(context, pBuf, nIn, sqlite3_free);
434   }
435 }
436 
437 /*
438 ** Implementation of the "readtextfile(X)" SQL function.  The text content
439 ** of the file named X through the end of the file or to the first \000
440 ** character, whichever comes first, is read and returned as TEXT.  NULL
441 ** is returned if the file does not exist or is unreadable.
442 */
readtextfileFunc(sqlite3_context * context,int argc,sqlite3_value ** argv)443 static void readtextfileFunc(
444   sqlite3_context *context,
445   int argc,
446   sqlite3_value **argv
447 ){
448   const char *zName;
449   FILE *in;
450   long nIn;
451   char *pBuf;
452 
453   zName = (const char*)sqlite3_value_text(argv[0]);
454   if( zName==0 ) return;
455   in = fopen(zName, "rb");
456   if( in==0 ) return;
457   fseek(in, 0, SEEK_END);
458   nIn = ftell(in);
459   rewind(in);
460   pBuf = sqlite3_malloc64( nIn+1 );
461   if( pBuf && 1==fread(pBuf, nIn, 1, in) ){
462     pBuf[nIn] = 0;
463     sqlite3_result_text(context, pBuf, -1, sqlite3_free);
464   }else{
465     sqlite3_free(pBuf);
466   }
467   fclose(in);
468 }
469 
470 /*
471 ** Implementation of the "writefile(X,Y)" SQL function.  The argument Y
472 ** is written into file X.  The number of bytes written is returned.  Or
473 ** NULL is returned if something goes wrong, such as being unable to open
474 ** file X for writing.
475 */
writefileFunc(sqlite3_context * context,int argc,sqlite3_value ** argv)476 static void writefileFunc(
477   sqlite3_context *context,
478   int argc,
479   sqlite3_value **argv
480 ){
481   FILE *out;
482   const char *z;
483   sqlite3_int64 rc;
484   const char *zFile;
485 
486   (void)argc;
487   zFile = (const char*)sqlite3_value_text(argv[0]);
488   if( zFile==0 ) return;
489   out = fopen(zFile, "wb");
490   if( out==0 ) return;
491   z = (const char*)sqlite3_value_blob(argv[1]);
492   if( z==0 ){
493     rc = 0;
494   }else{
495     rc = fwrite(z, 1, sqlite3_value_bytes(argv[1]), out);
496   }
497   fclose(out);
498   sqlite3_result_int64(context, rc);
499 }
500 
501 
502 /*
503 ** Load a list of Blob objects from the database
504 */
blobListLoadFromDb(sqlite3 * db,const char * zSql,int onlyId,int * pN,Blob ** ppList)505 static void blobListLoadFromDb(
506   sqlite3 *db,             /* Read from this database */
507   const char *zSql,        /* Query used to extract the blobs */
508   int onlyId,              /* Only load where id is this value */
509   int *pN,                 /* OUT: Write number of blobs loaded here */
510   Blob **ppList            /* OUT: Write the head of the blob list here */
511 ){
512   Blob head;
513   Blob *p;
514   sqlite3_stmt *pStmt;
515   int n = 0;
516   int rc;
517   char *z2;
518 
519   if( onlyId>0 ){
520     z2 = sqlite3_mprintf("%s WHERE rowid=%d", zSql, onlyId);
521   }else{
522     z2 = sqlite3_mprintf("%s", zSql);
523   }
524   rc = sqlite3_prepare_v2(db, z2, -1, &pStmt, 0);
525   sqlite3_free(z2);
526   if( rc ) fatalError("%s", sqlite3_errmsg(db));
527   head.pNext = 0;
528   p = &head;
529   while( SQLITE_ROW==sqlite3_step(pStmt) ){
530     int sz = sqlite3_column_bytes(pStmt, 1);
531     Blob *pNew = safe_realloc(0, sizeof(*pNew)+sz );
532     pNew->id = sqlite3_column_int(pStmt, 0);
533     pNew->sz = sz;
534     pNew->seq = n++;
535     pNew->pNext = 0;
536     memcpy(pNew->a, sqlite3_column_blob(pStmt,1), sz);
537     pNew->a[sz] = 0;
538     p->pNext = pNew;
539     p = pNew;
540   }
541   sqlite3_finalize(pStmt);
542   *pN = n;
543   *ppList = head.pNext;
544 }
545 
546 /*
547 ** Free a list of Blob objects
548 */
blobListFree(Blob * p)549 static void blobListFree(Blob *p){
550   Blob *pNext;
551   while( p ){
552     pNext = p->pNext;
553     free(p);
554     p = pNext;
555   }
556 }
557 
558 /* Return the current wall-clock time
559 **
560 ** The number of milliseconds since the julian epoch.
561 ** 1907-01-01 00:00:00  ->  210866716800000
562 ** 2021-01-01 00:00:00  ->  212476176000000
563 */
timeOfDay(void)564 static sqlite3_int64 timeOfDay(void){
565   static sqlite3_vfs *clockVfs = 0;
566   sqlite3_int64 t;
567   if( clockVfs==0 ){
568     clockVfs = sqlite3_vfs_find(0);
569     if( clockVfs==0 ) return 0;
570   }
571   if( clockVfs->iVersion>=1 && clockVfs->xCurrentTimeInt64!=0 ){
572     clockVfs->xCurrentTimeInt64(clockVfs, &t);
573   }else{
574     double r;
575     clockVfs->xCurrentTime(clockVfs, &r);
576     t = (sqlite3_int64)(r*86400000.0);
577   }
578   return t;
579 }
580 
581 /***************************************************************************
582 ** Code to process combined database+SQL scripts generated by the
583 ** dbsqlfuzz fuzzer.
584 */
585 
586 /* An instance of the following object is passed by pointer as the
587 ** client data to various callbacks.
588 */
589 typedef struct FuzzCtx {
590   sqlite3 *db;               /* The database connection */
591   sqlite3_int64 iCutoffTime; /* Stop processing at this time. */
592   sqlite3_int64 iLastCb;     /* Time recorded for previous progress callback */
593   sqlite3_int64 mxInterval;  /* Longest interval between two progress calls */
594   unsigned nCb;              /* Number of progress callbacks */
595   unsigned mxCb;             /* Maximum number of progress callbacks allowed */
596   unsigned execCnt;          /* Number of calls to the sqlite3_exec callback */
597   int timeoutHit;            /* True when reaching a timeout */
598 } FuzzCtx;
599 
600 /* Verbosity level for the dbsqlfuzz test runner */
601 static int eVerbosity = 0;
602 
603 /* True to activate PRAGMA vdbe_debug=on */
604 static int bVdbeDebug = 0;
605 
606 /* Timeout for each fuzzing attempt, in milliseconds */
607 static int giTimeout = 10000;   /* Defaults to 10 seconds */
608 
609 /* Maximum number of progress handler callbacks */
610 static unsigned int mxProgressCb = 2000;
611 
612 /* Maximum string length in SQLite */
613 static int lengthLimit = 1000000;
614 
615 /* Maximum expression depth */
616 static int depthLimit = 500;
617 
618 /* Limit on the amount of heap memory that can be used */
619 static sqlite3_int64 heapLimit = 100000000;
620 
621 /* Maximum byte-code program length in SQLite */
622 static int vdbeOpLimit = 25000;
623 
624 /* Maximum size of the in-memory database */
625 static sqlite3_int64 maxDbSize = 104857600;
626 /* OOM simulation parameters */
627 static unsigned int oomCounter = 0;    /* Simulate OOM when equals 1 */
628 static unsigned int oomRepeat = 0;     /* Number of OOMs in a row */
629 static void*(*defaultMalloc)(int) = 0; /* The low-level malloc routine */
630 
631 /* Enable recovery */
632 static int bNoRecover = 0;
633 
634 /* This routine is called when a simulated OOM occurs.  It is broken
635 ** out as a separate routine to make it easy to set a breakpoint on
636 ** the OOM
637 */
oomFault(void)638 void oomFault(void){
639   if( eVerbosity ){
640     printf("Simulated OOM fault\n");
641   }
642   if( oomRepeat>0 ){
643     oomRepeat--;
644   }else{
645     oomCounter--;
646   }
647 }
648 
649 /* This routine is a replacement malloc() that is used to simulate
650 ** Out-Of-Memory (OOM) errors for testing purposes.
651 */
oomMalloc(int nByte)652 static void *oomMalloc(int nByte){
653   if( oomCounter ){
654     if( oomCounter==1 ){
655       oomFault();
656       return 0;
657     }else{
658       oomCounter--;
659     }
660   }
661   return defaultMalloc(nByte);
662 }
663 
664 /* Register the OOM simulator.  This must occur before any memory
665 ** allocations */
registerOomSimulator(void)666 static void registerOomSimulator(void){
667   sqlite3_mem_methods mem;
668   sqlite3_shutdown();
669   sqlite3_config(SQLITE_CONFIG_GETMALLOC, &mem);
670   defaultMalloc = mem.xMalloc;
671   mem.xMalloc = oomMalloc;
672   sqlite3_config(SQLITE_CONFIG_MALLOC, &mem);
673 }
674 
675 /* Turn off any pending OOM simulation */
disableOom(void)676 static void disableOom(void){
677   oomCounter = 0;
678   oomRepeat = 0;
679 }
680 
681 /*
682 ** Translate a single byte of Hex into an integer.
683 ** This routine only works if h really is a valid hexadecimal
684 ** character:  0..9a..fA..F
685 */
hexToInt(unsigned int h)686 static unsigned char hexToInt(unsigned int h){
687 #ifdef SQLITE_EBCDIC
688   h += 9*(1&~(h>>4));   /* EBCDIC */
689 #else
690   h += 9*(1&(h>>6));    /* ASCII */
691 #endif
692   return h & 0xf;
693 }
694 
695 /*
696 ** The first character of buffer zIn[0..nIn-1] is a '['.  This routine
697 ** checked to see if the buffer holds "[NNNN]" or "[+NNNN]" and if it
698 ** does it makes corresponding changes to the *pK value and *pI value
699 ** and returns true.  If the input buffer does not match the patterns,
700 ** no changes are made to either *pK or *pI and this routine returns false.
701 */
isOffset(const unsigned char * zIn,int nIn,unsigned int * pK,unsigned int * pI)702 static int isOffset(
703   const unsigned char *zIn,  /* Text input */
704   int nIn,                   /* Bytes of input */
705   unsigned int *pK,          /* half-byte cursor to adjust */
706   unsigned int *pI           /* Input index to adjust */
707 ){
708   int i;
709   unsigned int k = 0;
710   unsigned char c;
711   for(i=1; i<nIn && (c = zIn[i])!=']'; i++){
712     if( !isxdigit(c) ) return 0;
713     k = k*16 + hexToInt(c);
714   }
715   if( i==nIn ) return 0;
716   *pK = 2*k;
717   *pI += i;
718   return 1;
719 }
720 
721 /*
722 ** Decode the text starting at zIn into a binary database file.
723 ** The maximum length of zIn is nIn bytes.  Store the binary database
724 ** file in space obtained from sqlite3_malloc().
725 **
726 ** Return the number of bytes of zIn consumed.  Or return -1 if there
727 ** is an error.  One potential error is that the recipe specifies a
728 ** database file larger than MX_FILE_SZ bytes.
729 **
730 ** Abort on an OOM.
731 */
decodeDatabase(const unsigned char * zIn,int nIn,unsigned char ** paDecode,int * pnDecode)732 static int decodeDatabase(
733   const unsigned char *zIn,      /* Input text to be decoded */
734   int nIn,                       /* Bytes of input text */
735   unsigned char **paDecode,      /* OUT: decoded database file */
736   int *pnDecode                  /* OUT: Size of decoded database */
737 ){
738   unsigned char *a, *aNew;       /* Database under construction */
739   int mx = 0;                    /* Current size of the database */
740   sqlite3_uint64 nAlloc = 4096;  /* Space allocated in a[] */
741   unsigned int i;                /* Next byte of zIn[] to read */
742   unsigned int j;                /* Temporary integer */
743   unsigned int k;                /* half-byte cursor index for output */
744   unsigned int n;                /* Number of bytes of input */
745   unsigned char b = 0;
746   if( nIn<4 ) return -1;
747   n = (unsigned int)nIn;
748   a = sqlite3_malloc64( nAlloc );
749   if( a==0 ){
750     fprintf(stderr, "Out of memory!\n");
751     exit(1);
752   }
753   memset(a, 0, (size_t)nAlloc);
754   for(i=k=0; i<n; i++){
755     unsigned char c = (unsigned char)zIn[i];
756     if( isxdigit(c) ){
757       k++;
758       if( k & 1 ){
759         b = hexToInt(c)*16;
760       }else{
761         b += hexToInt(c);
762         j = k/2 - 1;
763         if( j>=nAlloc ){
764           sqlite3_uint64 newSize;
765           if( nAlloc==MX_FILE_SZ || j>=MX_FILE_SZ ){
766             if( eVerbosity ){
767               fprintf(stderr, "Input database too big: max %d bytes\n",
768                       MX_FILE_SZ);
769             }
770             sqlite3_free(a);
771             return -1;
772           }
773           newSize = nAlloc*2;
774           if( newSize<=j ){
775             newSize = (j+4096)&~4095;
776           }
777           if( newSize>MX_FILE_SZ ){
778             if( j>=MX_FILE_SZ ){
779               sqlite3_free(a);
780               return -1;
781             }
782             newSize = MX_FILE_SZ;
783           }
784           aNew = sqlite3_realloc64( a, newSize );
785           if( aNew==0 ){
786             sqlite3_free(a);
787             return -1;
788           }
789           a = aNew;
790           assert( newSize > nAlloc );
791           memset(a+nAlloc, 0, (size_t)(newSize - nAlloc));
792           nAlloc = newSize;
793         }
794         if( j>=(unsigned)mx ){
795           mx = (j + 4095)&~4095;
796           if( mx>MX_FILE_SZ ) mx = MX_FILE_SZ;
797         }
798         assert( j<nAlloc );
799         a[j] = b;
800       }
801     }else if( zIn[i]=='[' && i<n-3 && isOffset(zIn+i, nIn-i, &k, &i) ){
802       continue;
803    }else if( zIn[i]=='\n' && i<n-4 && memcmp(zIn+i,"\n--\n",4)==0 ){
804       i += 4;
805       break;
806     }
807   }
808   *pnDecode = mx;
809   *paDecode = a;
810   return i;
811 }
812 
813 /*
814 ** Progress handler callback.
815 **
816 ** The argument is the cutoff-time after which all processing should
817 ** stop.  So return non-zero if the cut-off time is exceeded.
818 */
progress_handler(void * pClientData)819 static int progress_handler(void *pClientData) {
820   FuzzCtx *p = (FuzzCtx*)pClientData;
821   sqlite3_int64 iNow = timeOfDay();
822   int rc = iNow>=p->iCutoffTime;
823   sqlite3_int64 iDiff = iNow - p->iLastCb;
824   /* printf("time-remaining: %lld\n", p->iCutoffTime - iNow); */
825   if( iDiff > p->mxInterval ) p->mxInterval = iDiff;
826   p->nCb++;
827   if( rc==0 && p->mxCb>0 && p->mxCb<=p->nCb ) rc = 1;
828   if( rc && !p->timeoutHit && eVerbosity>=2 ){
829     printf("Timeout on progress callback %d\n", p->nCb);
830     fflush(stdout);
831     p->timeoutHit = 1;
832   }
833   return rc;
834 }
835 
836 /*
837 ** Flag bits set by block_troublesome_sql()
838 */
839 #define BTS_SELECT      0x000001
840 #define BTS_NONSELECT   0x000002
841 #define BTS_BADFUNC     0x000004
842 #define BTS_BADPRAGMA   0x000008  /* Sticky for rest of the script */
843 
844 /*
845 ** Disallow debugging pragmas such as "PRAGMA vdbe_debug" and
846 ** "PRAGMA parser_trace" since they can dramatically increase the
847 ** amount of output without actually testing anything useful.
848 **
849 ** Also block ATTACH if attaching a file from the filesystem.
850 */
block_troublesome_sql(void * pClientData,int eCode,const char * zArg1,const char * zArg2,const char * zArg3,const char * zArg4)851 static int block_troublesome_sql(
852   void *pClientData,
853   int eCode,
854   const char *zArg1,
855   const char *zArg2,
856   const char *zArg3,
857   const char *zArg4
858 ){
859   unsigned int *pBtsFlags = (unsigned int*)pClientData;
860 
861   (void)zArg3;
862   (void)zArg4;
863   switch( eCode ){
864     case SQLITE_PRAGMA: {
865       if( sqlite3_stricmp("busy_timeout",zArg1)==0
866        && (zArg2==0 || strtoll(zArg2,0,0)>100 || strtoll(zArg2,0,10)>100)
867       ){
868         return SQLITE_DENY;
869       }else if( sqlite3_stricmp("hard_heap_limit", zArg1)==0
870               || sqlite3_stricmp("reverse_unordered_selects", zArg1)==0
871       ){
872         /* BTS_BADPRAGMA is sticky.  A hard_heap_limit or
873         ** revert_unordered_selects should inhibit all future attempts
874         ** at verifying query invariants */
875         *pBtsFlags |= BTS_BADPRAGMA;
876       }else if( eVerbosity==0 ){
877         if( sqlite3_strnicmp("vdbe_", zArg1, 5)==0
878          || sqlite3_stricmp("parser_trace", zArg1)==0
879          || sqlite3_stricmp("temp_store_directory", zArg1)==0
880         ){
881          return SQLITE_DENY;
882         }
883       }else if( sqlite3_stricmp("oom",zArg1)==0
884               && zArg2!=0 && zArg2[0]!=0 ){
885         oomCounter = atoi(zArg2);
886       }
887       *pBtsFlags |= BTS_NONSELECT;
888       break;
889     }
890     case SQLITE_ATTACH: {
891       /* Deny the ATTACH if it is attaching anything other than an in-memory
892       ** database. */
893       *pBtsFlags |= BTS_NONSELECT;
894       if( zArg1==0 ) return SQLITE_DENY;
895       if( strcmp(zArg1,":memory:")==0 ) return SQLITE_OK;
896       if( sqlite3_strglob("file:*[?]vfs=memdb", zArg1)==0
897        && sqlite3_strglob("file:*[^/a-zA-Z0-9_.]*[?]vfs=memdb", zArg1)!=0
898       ){
899         return SQLITE_OK;
900       }
901       return SQLITE_DENY;
902     }
903     case SQLITE_SELECT: {
904       *pBtsFlags |= BTS_SELECT;
905       break;
906     }
907     case SQLITE_FUNCTION: {
908       static const char *azBadFuncs[] = {
909         "avg",
910         "count",
911         "cume_dist",
912         "current_date",
913         "current_time",
914         "current_timestamp",
915         "date",
916         "datetime",
917         "decimal_sum",
918         "dense_rank",
919         "first_value",
920         "geopoly_group_bbox",
921         "group_concat",
922         "implies_nonnull_row",
923         "json_group_array",
924         "json_group_object",
925         "julianday",
926         "lag",
927         "last_value",
928         "lead",
929         "max",
930         "min",
931         "nth_value",
932         "ntile",
933         "percent_rank",
934         "random",
935         "randomblob",
936         "rank",
937         "row_number",
938         "sqlite_offset",
939         "strftime",
940         "sum",
941         "time",
942         "total",
943         "unixepoch",
944       };
945       int first, last;
946       first = 0;
947       last = sizeof(azBadFuncs)/sizeof(azBadFuncs[0]) - 1;
948       do{
949         int mid = (first+last)/2;
950         int c = sqlite3_stricmp(azBadFuncs[mid], zArg2);
951         if( c<0 ){
952           first = mid+1;
953         }else if( c>0 ){
954           last = mid-1;
955         }else{
956           *pBtsFlags |= BTS_BADFUNC;
957           break;
958         }
959       }while( first<=last );
960       break;
961     }
962     case SQLITE_READ: {
963       /* Benign */
964       break;
965     }
966     default: {
967       *pBtsFlags |= BTS_NONSELECT;
968     }
969   }
970   return SQLITE_OK;
971 }
972 
973 /* Implementation found in fuzzinvariant.c */
974 extern int fuzz_invariant(
975   sqlite3 *db,            /* The database connection */
976   sqlite3_stmt *pStmt,    /* Test statement stopped on an SQLITE_ROW */
977   int iCnt,               /* Invariant sequence number, starting at 0 */
978   int iRow,               /* The row number for pStmt */
979   int nRow,               /* Total number of output rows */
980   int *pbCorrupt,         /* IN/OUT: Flag indicating a corrupt database file */
981   int eVerbosity          /* How much debugging output */
982 );
983 
984 /* Implementation of sqlite_dbdata and sqlite_dbptr */
985 extern int sqlite3_dbdata_init(sqlite3*,const char**,void*);
986 
987 
988 /*
989 ** This function is used as a callback by the recover extension. Simply
990 ** print the supplied SQL statement to stdout.
991 */
recoverSqlCb(void * pCtx,const char * zSql)992 static int recoverSqlCb(void *pCtx, const char *zSql){
993   if( eVerbosity>=2 ){
994     printf("%s\n", zSql);
995   }
996   return SQLITE_OK;
997 }
998 
999 /*
1000 ** This function is called to recover data from the database.
1001 */
recoverDatabase(sqlite3 * db)1002 static int recoverDatabase(sqlite3 *db){
1003   int rc;                                 /* Return code from this routine */
1004   const char *zLAF = "lost_and_found";    /* Name of "lost_and_found" table */
1005   int bFreelist = 1;                      /* True to scan the freelist */
1006   int bRowids = 1;                        /* True to restore ROWID values */
1007   sqlite3_recover *p;                     /* The recovery object */
1008 
1009   p = sqlite3_recover_init_sql(db, "main", recoverSqlCb, 0);
1010   sqlite3_recover_config(p, SQLITE_RECOVER_LOST_AND_FOUND, (void*)zLAF);
1011   sqlite3_recover_config(p, SQLITE_RECOVER_ROWIDS, (void*)&bRowids);
1012   sqlite3_recover_config(p, SQLITE_RECOVER_FREELIST_CORRUPT,(void*)&bFreelist);
1013   sqlite3_recover_run(p);
1014   if( sqlite3_recover_errcode(p)!=SQLITE_OK ){
1015     const char *zErr = sqlite3_recover_errmsg(p);
1016     int errCode = sqlite3_recover_errcode(p);
1017     if( eVerbosity>0 ){
1018       printf("recovery error: %s (%d)\n", zErr, errCode);
1019     }
1020   }
1021   rc = sqlite3_recover_finish(p);
1022   if( eVerbosity>0 && rc ){
1023      printf("recovery returns error code %d\n", rc);
1024   }
1025   return rc;
1026 }
1027 
1028 /*
1029 ** Run the SQL text
1030 */
runDbSql(sqlite3 * db,const char * zSql,unsigned int * pBtsFlags)1031 static int runDbSql(sqlite3 *db, const char *zSql, unsigned int *pBtsFlags){
1032   int rc;
1033   sqlite3_stmt *pStmt;
1034   int bCorrupt = 0;
1035   while( isspace(zSql[0]&0x7f) ) zSql++;
1036   if( zSql[0]==0 ) return SQLITE_OK;
1037   if( eVerbosity>=4 ){
1038     printf("RUNNING-SQL: [%s]\n", zSql);
1039     fflush(stdout);
1040   }
1041   (*pBtsFlags) &= ~BTS_BADPRAGMA;
1042   rc = sqlite3_prepare_v2(db, zSql, -1, &pStmt, 0);
1043   if( rc==SQLITE_OK ){
1044     int nRow = 0;
1045     while( (rc = sqlite3_step(pStmt))==SQLITE_ROW ){
1046       nRow++;
1047       if( eVerbosity>=4 ){
1048         int j;
1049         for(j=0; j<sqlite3_column_count(pStmt); j++){
1050           if( j ) printf(",");
1051           switch( sqlite3_column_type(pStmt, j) ){
1052             case SQLITE_NULL: {
1053               printf("NULL");
1054               break;
1055             }
1056             case SQLITE_INTEGER:
1057             case SQLITE_FLOAT: {
1058               printf("%s", sqlite3_column_text(pStmt, j));
1059               break;
1060             }
1061             case SQLITE_BLOB: {
1062               int n = sqlite3_column_bytes(pStmt, j);
1063               int i;
1064               const unsigned char *a;
1065               a = (const unsigned char*)sqlite3_column_blob(pStmt, j);
1066               printf("x'");
1067               for(i=0; i<n; i++){
1068                 printf("%02x", a[i]);
1069               }
1070               printf("'");
1071               break;
1072             }
1073             case SQLITE_TEXT: {
1074               int n = sqlite3_column_bytes(pStmt, j);
1075               int i;
1076               const unsigned char *a;
1077               a = (const unsigned char*)sqlite3_column_blob(pStmt, j);
1078               printf("'");
1079               for(i=0; i<n; i++){
1080                 if( a[i]=='\'' ){
1081                   printf("''");
1082                 }else{
1083                   putchar(a[i]);
1084                 }
1085               }
1086               printf("'");
1087               break;
1088             }
1089           } /* End switch() */
1090         } /* End for() */
1091         printf("\n");
1092         fflush(stdout);
1093       } /* End if( eVerbosity>=5 ) */
1094     } /* End while( SQLITE_ROW */
1095     if( rc==SQLITE_DONE ){
1096       if( (*pBtsFlags)==BTS_SELECT
1097        && !sqlite3_stmt_isexplain(pStmt)
1098        && nRow>0
1099       ){
1100         int iRow = 0;
1101         sqlite3_reset(pStmt);
1102         while( sqlite3_step(pStmt)==SQLITE_ROW ){
1103           int iCnt = 0;
1104           iRow++;
1105           for(iCnt=0; iCnt<99999; iCnt++){
1106             rc = fuzz_invariant(db, pStmt, iCnt, iRow, nRow,
1107                                 &bCorrupt, eVerbosity);
1108             if( rc==SQLITE_DONE ) break;
1109             if( rc!=SQLITE_ERROR ) g.nInvariant++;
1110             if( eVerbosity>0 ){
1111               if( rc==SQLITE_OK ){
1112                 printf("invariant-check: ok\n");
1113               }else if( rc==SQLITE_CORRUPT ){
1114                 printf("invariant-check: failed due to database corruption\n");
1115               }
1116             }
1117           }
1118         }
1119       }
1120     }else if( eVerbosity>=4 ){
1121       printf("SQL-ERROR: (%d) %s\n", rc, sqlite3_errmsg(db));
1122       fflush(stdout);
1123     }
1124   }else if( eVerbosity>=4 ){
1125     printf("SQL-ERROR (%d): %s\n", rc, sqlite3_errmsg(db));
1126     fflush(stdout);
1127   } /* End if( SQLITE_OK ) */
1128   return sqlite3_finalize(pStmt);
1129 }
1130 
1131 /* Invoke this routine to run a single test case */
runCombinedDbSqlInput(const uint8_t * aData,size_t nByte,int iTimeout,int bScript,int iSqlId)1132 int runCombinedDbSqlInput(
1133   const uint8_t *aData,      /* Combined DB+SQL content */
1134   size_t nByte,              /* Size of aData in bytes */
1135   int iTimeout,              /* Use this timeout */
1136   int bScript,               /* If true, just render CLI output */
1137   int iSqlId                 /* SQL identifier */
1138 ){
1139   int rc;                    /* SQLite API return value */
1140   int iSql;                  /* Index in aData[] of start of SQL */
1141   unsigned char *aDb = 0;    /* Decoded database content */
1142   int nDb = 0;               /* Size of the decoded database */
1143   int i;                     /* Loop counter */
1144   int j;                     /* Start of current SQL statement */
1145   char *zSql = 0;            /* SQL text to run */
1146   int nSql;                  /* Bytes of SQL text */
1147   FuzzCtx cx;                /* Fuzzing context */
1148   unsigned int btsFlags = 0; /* Parsing flags */
1149 
1150   if( nByte<10 ) return 0;
1151   if( sqlite3_initialize() ) return 0;
1152   if( sqlite3_memory_used()!=0 ){
1153     int nAlloc = 0;
1154     int nNotUsed = 0;
1155     sqlite3_status(SQLITE_STATUS_MALLOC_COUNT, &nAlloc, &nNotUsed, 0);
1156     fprintf(stderr,"memory leak prior to test start:"
1157                    " %lld bytes in %d allocations\n",
1158             sqlite3_memory_used(), nAlloc);
1159     exit(1);
1160   }
1161   memset(&cx, 0, sizeof(cx));
1162   iSql = decodeDatabase((unsigned char*)aData, (int)nByte, &aDb, &nDb);
1163   if( iSql<0 ) return 0;
1164   nSql = (int)(nByte - iSql);
1165   if( bScript ){
1166     char zName[100];
1167     sqlite3_snprintf(sizeof(zName),zName,"dbsql%06d.db",iSqlId);
1168     renderDbSqlForCLI(stdout, zName, aDb, nDb,
1169                       (unsigned char*)(aData+iSql), nSql);
1170     sqlite3_free(aDb);
1171     return 0;
1172   }
1173   if( eVerbosity>=3 ){
1174     printf(
1175       "****** %d-byte input, %d-byte database, %d-byte script "
1176       "******\n", (int)nByte, nDb, nSql);
1177     fflush(stdout);
1178   }
1179   rc = sqlite3_open(0, &cx.db);
1180   if( rc ){
1181     sqlite3_free(aDb);
1182     return 1;
1183   }
1184   if( bVdbeDebug ){
1185     sqlite3_exec(cx.db, "PRAGMA vdbe_debug=ON", 0, 0, 0);
1186   }
1187 
1188   /* Invoke the progress handler frequently to check to see if we
1189   ** are taking too long.  The progress handler will return true
1190   ** (which will block further processing) if more than giTimeout seconds have
1191   ** elapsed since the start of the test.
1192   */
1193   cx.iLastCb = timeOfDay();
1194   cx.iCutoffTime = cx.iLastCb + (iTimeout<giTimeout ? iTimeout : giTimeout);
1195   cx.mxCb = mxProgressCb;
1196 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK
1197   sqlite3_progress_handler(cx.db, 10, progress_handler, (void*)&cx);
1198 #endif
1199 
1200   /* Set a limit on the maximum size of a prepared statement, and the
1201   ** maximum length of a string or blob */
1202   if( vdbeOpLimit>0 ){
1203     sqlite3_limit(cx.db, SQLITE_LIMIT_VDBE_OP, vdbeOpLimit);
1204   }
1205   if( lengthLimit>0 ){
1206     sqlite3_limit(cx.db, SQLITE_LIMIT_LENGTH, lengthLimit);
1207   }
1208   if( depthLimit>0 ){
1209     sqlite3_limit(cx.db, SQLITE_LIMIT_EXPR_DEPTH, depthLimit);
1210   }
1211   sqlite3_limit(cx.db, SQLITE_LIMIT_LIKE_PATTERN_LENGTH, 100);
1212   sqlite3_hard_heap_limit64(heapLimit);
1213 
1214   if( nDb>=20 && aDb[18]==2 && aDb[19]==2 ){
1215     aDb[18] = aDb[19] = 1;
1216   }
1217   rc = sqlite3_deserialize(cx.db, "main", aDb, nDb, nDb,
1218           SQLITE_DESERIALIZE_RESIZEABLE |
1219           SQLITE_DESERIALIZE_FREEONCLOSE);
1220   if( rc ){
1221     fprintf(stderr, "sqlite3_deserialize() failed with %d\n", rc);
1222     goto testrun_finished;
1223   }
1224   if( maxDbSize>0 ){
1225     sqlite3_int64 x = maxDbSize;
1226     sqlite3_file_control(cx.db, "main", SQLITE_FCNTL_SIZE_LIMIT, &x);
1227   }
1228 
1229   /* For high debugging levels, turn on debug mode */
1230   if( eVerbosity>=5 ){
1231     sqlite3_exec(cx.db, "PRAGMA vdbe_debug=ON;", 0, 0, 0);
1232   }
1233 
1234   /* Block debug pragmas and ATTACH/DETACH.  But wait until after
1235   ** deserialize to do this because deserialize depends on ATTACH */
1236   sqlite3_set_authorizer(cx.db, block_troublesome_sql, &btsFlags);
1237 
1238   /* Add the vt02 virtual table */
1239   sqlite3_vt02_init(cx.db, 0, 0);
1240 
1241   /* Add support for sqlite_dbdata and sqlite_dbptr virtual tables used
1242   ** by the recovery API */
1243   sqlite3_dbdata_init(cx.db, 0, 0);
1244 
1245   /* Consistent PRNG seed */
1246 #ifdef SQLITE_TESTCTRL_PRNG_SEED
1247   sqlite3_table_column_metadata(cx.db, 0, "x", 0, 0, 0, 0, 0, 0);
1248   sqlite3_test_control(SQLITE_TESTCTRL_PRNG_SEED, 1, cx.db);
1249 #else
1250   sqlite3_randomness(0,0);
1251 #endif
1252 
1253   /* Run recovery on the initial database, just to make sure recovery
1254   ** works. */
1255   if( !bNoRecover ){
1256     recoverDatabase(cx.db);
1257   }
1258 
1259   zSql = sqlite3_malloc( nSql + 1 );
1260   if( zSql==0 ){
1261     fprintf(stderr, "Out of memory!\n");
1262   }else{
1263     memcpy(zSql, aData+iSql, nSql);
1264     zSql[nSql] = 0;
1265     for(i=j=0; zSql[i]; i++){
1266       if( zSql[i]==';' ){
1267         char cSaved = zSql[i+1];
1268         zSql[i+1] = 0;
1269         if( sqlite3_complete(zSql+j) ){
1270           rc = runDbSql(cx.db, zSql+j, &btsFlags);
1271           j = i+1;
1272         }
1273         zSql[i+1] = cSaved;
1274         if( rc==SQLITE_INTERRUPT || progress_handler(&cx) ){
1275           goto testrun_finished;
1276         }
1277       }
1278     }
1279     if( j<i ){
1280       runDbSql(cx.db, zSql+j, &btsFlags);
1281     }
1282   }
1283 testrun_finished:
1284   sqlite3_free(zSql);
1285   rc = sqlite3_close(cx.db);
1286   if( rc!=SQLITE_OK ){
1287     fprintf(stdout, "sqlite3_close() returns %d\n", rc);
1288   }
1289   if( eVerbosity>=2 && !bScript ){
1290     fprintf(stdout, "Peak memory usages: %f MB\n",
1291        sqlite3_memory_highwater(1) / 1000000.0);
1292   }
1293   if( sqlite3_memory_used()!=0 ){
1294     int nAlloc = 0;
1295     int nNotUsed = 0;
1296     sqlite3_status(SQLITE_STATUS_MALLOC_COUNT, &nAlloc, &nNotUsed, 0);
1297     fprintf(stderr,"Memory leak: %lld bytes in %d allocations\n",
1298             sqlite3_memory_used(), nAlloc);
1299     exit(1);
1300   }
1301   sqlite3_hard_heap_limit64(0);
1302   sqlite3_soft_heap_limit64(0);
1303   return 0;
1304 }
1305 
1306 /*
1307 ** END of the dbsqlfuzz code
1308 ***************************************************************************/
1309 
1310 /* Look at a SQL text and try to determine if it begins with a database
1311 ** description, such as would be found in a dbsqlfuzz test case.  Return
1312 ** true if this does appear to be a dbsqlfuzz test case and false otherwise.
1313 */
isDbSql(unsigned char * a,int n)1314 static int isDbSql(unsigned char *a, int n){
1315   unsigned char buf[12];
1316   int i;
1317   if( n>4 && memcmp(a,"\n--\n",4)==0 ) return 1;
1318   while( n>0 && isspace(a[0]) ){ a++; n--; }
1319   for(i=0; n>0 && i<8; n--, a++){
1320     if( isxdigit(a[0]) ) buf[i++] = a[0];
1321   }
1322   if( i==8 && memcmp(buf,"53514c69",8)==0 ) return 1;
1323   return 0;
1324 }
1325 
1326 /* Implementation of the isdbsql(TEXT) SQL function.
1327 */
isDbSqlFunc(sqlite3_context * context,int argc,sqlite3_value ** argv)1328 static void isDbSqlFunc(
1329   sqlite3_context *context,
1330   int argc,
1331   sqlite3_value **argv
1332 ){
1333   int n = sqlite3_value_bytes(argv[0]);
1334   unsigned char *a = (unsigned char*)sqlite3_value_blob(argv[0]);
1335   sqlite3_result_int(context, a!=0 && n>0 && isDbSql(a,n));
1336 }
1337 
1338 /* Methods for the VHandle object
1339 */
inmemClose(sqlite3_file * pFile)1340 static int inmemClose(sqlite3_file *pFile){
1341   VHandle *p = (VHandle*)pFile;
1342   VFile *pVFile = p->pVFile;
1343   pVFile->nRef--;
1344   if( pVFile->nRef==0 && pVFile->zFilename==0 ){
1345     pVFile->sz = -1;
1346     free(pVFile->a);
1347     pVFile->a = 0;
1348   }
1349   return SQLITE_OK;
1350 }
inmemRead(sqlite3_file * pFile,void * pData,int iAmt,sqlite3_int64 iOfst)1351 static int inmemRead(
1352   sqlite3_file *pFile,   /* Read from this open file */
1353   void *pData,           /* Store content in this buffer */
1354   int iAmt,              /* Bytes of content */
1355   sqlite3_int64 iOfst    /* Start reading here */
1356 ){
1357   VHandle *pHandle = (VHandle*)pFile;
1358   VFile *pVFile = pHandle->pVFile;
1359   if( iOfst<0 || iOfst>=pVFile->sz ){
1360     memset(pData, 0, iAmt);
1361     return SQLITE_IOERR_SHORT_READ;
1362   }
1363   if( iOfst+iAmt>pVFile->sz ){
1364     memset(pData, 0, iAmt);
1365     iAmt = (int)(pVFile->sz - iOfst);
1366     memcpy(pData, pVFile->a + iOfst, iAmt);
1367     return SQLITE_IOERR_SHORT_READ;
1368   }
1369   memcpy(pData, pVFile->a + iOfst, iAmt);
1370   return SQLITE_OK;
1371 }
inmemWrite(sqlite3_file * pFile,const void * pData,int iAmt,sqlite3_int64 iOfst)1372 static int inmemWrite(
1373   sqlite3_file *pFile,   /* Write to this file */
1374   const void *pData,     /* Content to write */
1375   int iAmt,              /* bytes to write */
1376   sqlite3_int64 iOfst    /* Start writing here */
1377 ){
1378   VHandle *pHandle = (VHandle*)pFile;
1379   VFile *pVFile = pHandle->pVFile;
1380   if( iOfst+iAmt > pVFile->sz ){
1381     if( iOfst+iAmt >= MX_FILE_SZ ){
1382       return SQLITE_FULL;
1383     }
1384     pVFile->a = safe_realloc(pVFile->a, (int)(iOfst+iAmt));
1385     if( iOfst > pVFile->sz ){
1386       memset(pVFile->a + pVFile->sz, 0, (int)(iOfst - pVFile->sz));
1387     }
1388     pVFile->sz = (int)(iOfst + iAmt);
1389   }
1390   memcpy(pVFile->a + iOfst, pData, iAmt);
1391   return SQLITE_OK;
1392 }
inmemTruncate(sqlite3_file * pFile,sqlite3_int64 iSize)1393 static int inmemTruncate(sqlite3_file *pFile, sqlite3_int64 iSize){
1394   VHandle *pHandle = (VHandle*)pFile;
1395   VFile *pVFile = pHandle->pVFile;
1396   if( pVFile->sz>iSize && iSize>=0 ) pVFile->sz = (int)iSize;
1397   return SQLITE_OK;
1398 }
inmemSync(sqlite3_file * pFile,int flags)1399 static int inmemSync(sqlite3_file *pFile, int flags){
1400   return SQLITE_OK;
1401 }
inmemFileSize(sqlite3_file * pFile,sqlite3_int64 * pSize)1402 static int inmemFileSize(sqlite3_file *pFile, sqlite3_int64 *pSize){
1403   *pSize = ((VHandle*)pFile)->pVFile->sz;
1404   return SQLITE_OK;
1405 }
inmemLock(sqlite3_file * pFile,int type)1406 static int inmemLock(sqlite3_file *pFile, int type){
1407   return SQLITE_OK;
1408 }
inmemUnlock(sqlite3_file * pFile,int type)1409 static int inmemUnlock(sqlite3_file *pFile, int type){
1410   return SQLITE_OK;
1411 }
inmemCheckReservedLock(sqlite3_file * pFile,int * pOut)1412 static int inmemCheckReservedLock(sqlite3_file *pFile, int *pOut){
1413   *pOut = 0;
1414   return SQLITE_OK;
1415 }
inmemFileControl(sqlite3_file * pFile,int op,void * pArg)1416 static int inmemFileControl(sqlite3_file *pFile, int op, void *pArg){
1417   return SQLITE_NOTFOUND;
1418 }
inmemSectorSize(sqlite3_file * pFile)1419 static int inmemSectorSize(sqlite3_file *pFile){
1420   return 512;
1421 }
inmemDeviceCharacteristics(sqlite3_file * pFile)1422 static int inmemDeviceCharacteristics(sqlite3_file *pFile){
1423   return
1424       SQLITE_IOCAP_SAFE_APPEND |
1425       SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN |
1426       SQLITE_IOCAP_POWERSAFE_OVERWRITE;
1427 }
1428 
1429 
1430 /* Method table for VHandle
1431 */
1432 static sqlite3_io_methods VHandleMethods = {
1433   /* iVersion  */    1,
1434   /* xClose    */    inmemClose,
1435   /* xRead     */    inmemRead,
1436   /* xWrite    */    inmemWrite,
1437   /* xTruncate */    inmemTruncate,
1438   /* xSync     */    inmemSync,
1439   /* xFileSize */    inmemFileSize,
1440   /* xLock     */    inmemLock,
1441   /* xUnlock   */    inmemUnlock,
1442   /* xCheck... */    inmemCheckReservedLock,
1443   /* xFileCtrl */    inmemFileControl,
1444   /* xSectorSz */    inmemSectorSize,
1445   /* xDevchar  */    inmemDeviceCharacteristics,
1446   /* xShmMap   */    0,
1447   /* xShmLock  */    0,
1448   /* xShmBarrier */  0,
1449   /* xShmUnmap */    0,
1450   /* xFetch    */    0,
1451   /* xUnfetch  */    0
1452 };
1453 
1454 /*
1455 ** Open a new file in the inmem VFS.  All files are anonymous and are
1456 ** delete-on-close.
1457 */
inmemOpen(sqlite3_vfs * pVfs,const char * zFilename,sqlite3_file * pFile,int openFlags,int * pOutFlags)1458 static int inmemOpen(
1459   sqlite3_vfs *pVfs,
1460   const char *zFilename,
1461   sqlite3_file *pFile,
1462   int openFlags,
1463   int *pOutFlags
1464 ){
1465   VFile *pVFile = createVFile(zFilename, 0, (unsigned char*)"");
1466   VHandle *pHandle = (VHandle*)pFile;
1467   if( pVFile==0 ){
1468     return SQLITE_FULL;
1469   }
1470   pHandle->pVFile = pVFile;
1471   pVFile->nRef++;
1472   pFile->pMethods = &VHandleMethods;
1473   if( pOutFlags ) *pOutFlags = openFlags;
1474   return SQLITE_OK;
1475 }
1476 
1477 /*
1478 ** Delete a file by name
1479 */
inmemDelete(sqlite3_vfs * pVfs,const char * zFilename,int syncdir)1480 static int inmemDelete(
1481   sqlite3_vfs *pVfs,
1482   const char *zFilename,
1483   int syncdir
1484 ){
1485   VFile *pVFile = findVFile(zFilename);
1486   if( pVFile==0 ) return SQLITE_OK;
1487   if( pVFile->nRef==0 ){
1488     free(pVFile->zFilename);
1489     pVFile->zFilename = 0;
1490     pVFile->sz = -1;
1491     free(pVFile->a);
1492     pVFile->a = 0;
1493     return SQLITE_OK;
1494   }
1495   return SQLITE_IOERR_DELETE;
1496 }
1497 
1498 /* Check for the existance of a file
1499 */
inmemAccess(sqlite3_vfs * pVfs,const char * zFilename,int flags,int * pResOut)1500 static int inmemAccess(
1501   sqlite3_vfs *pVfs,
1502   const char *zFilename,
1503   int flags,
1504   int *pResOut
1505 ){
1506   VFile *pVFile = findVFile(zFilename);
1507   *pResOut =  pVFile!=0;
1508   return SQLITE_OK;
1509 }
1510 
1511 /* Get the canonical pathname for a file
1512 */
inmemFullPathname(sqlite3_vfs * pVfs,const char * zFilename,int nOut,char * zOut)1513 static int inmemFullPathname(
1514   sqlite3_vfs *pVfs,
1515   const char *zFilename,
1516   int nOut,
1517   char *zOut
1518 ){
1519   sqlite3_snprintf(nOut, zOut, "%s", zFilename);
1520   return SQLITE_OK;
1521 }
1522 
1523 /* Always use the same random see, for repeatability.
1524 */
inmemRandomness(sqlite3_vfs * NotUsed,int nBuf,char * zBuf)1525 static int inmemRandomness(sqlite3_vfs *NotUsed, int nBuf, char *zBuf){
1526   memset(zBuf, 0, nBuf);
1527   memcpy(zBuf, &g.uRandom, nBuf<sizeof(g.uRandom) ? nBuf : sizeof(g.uRandom));
1528   return nBuf;
1529 }
1530 
1531 /*
1532 ** Register the VFS that reads from the g.aFile[] set of files.
1533 */
inmemVfsRegister(int makeDefault)1534 static void inmemVfsRegister(int makeDefault){
1535   static sqlite3_vfs inmemVfs;
1536   sqlite3_vfs *pDefault = sqlite3_vfs_find(0);
1537   inmemVfs.iVersion = 3;
1538   inmemVfs.szOsFile = sizeof(VHandle);
1539   inmemVfs.mxPathname = 200;
1540   inmemVfs.zName = "inmem";
1541   inmemVfs.xOpen = inmemOpen;
1542   inmemVfs.xDelete = inmemDelete;
1543   inmemVfs.xAccess = inmemAccess;
1544   inmemVfs.xFullPathname = inmemFullPathname;
1545   inmemVfs.xRandomness = inmemRandomness;
1546   inmemVfs.xSleep = pDefault->xSleep;
1547   inmemVfs.xCurrentTimeInt64 = pDefault->xCurrentTimeInt64;
1548   sqlite3_vfs_register(&inmemVfs, makeDefault);
1549 };
1550 
1551 /*
1552 ** Allowed values for the runFlags parameter to runSql()
1553 */
1554 #define SQL_TRACE  0x0001     /* Print each SQL statement as it is prepared */
1555 #define SQL_OUTPUT 0x0002     /* Show the SQL output */
1556 
1557 /*
1558 ** Run multiple commands of SQL.  Similar to sqlite3_exec(), but does not
1559 ** stop if an error is encountered.
1560 */
runSql(sqlite3 * db,const char * zSql,unsigned runFlags)1561 static void runSql(sqlite3 *db, const char *zSql, unsigned  runFlags){
1562   const char *zMore;
1563   sqlite3_stmt *pStmt;
1564 
1565   while( zSql && zSql[0] ){
1566     zMore = 0;
1567     pStmt = 0;
1568     sqlite3_prepare_v2(db, zSql, -1, &pStmt, &zMore);
1569     if( zMore==zSql ) break;
1570     if( runFlags & SQL_TRACE ){
1571       const char *z = zSql;
1572       int n;
1573       while( z<zMore && ISSPACE(z[0]) ) z++;
1574       n = (int)(zMore - z);
1575       while( n>0 && ISSPACE(z[n-1]) ) n--;
1576       if( n==0 ) break;
1577       if( pStmt==0 ){
1578         printf("TRACE: %.*s (error: %s)\n", n, z, sqlite3_errmsg(db));
1579       }else{
1580         printf("TRACE: %.*s\n", n, z);
1581       }
1582     }
1583     zSql = zMore;
1584     if( pStmt ){
1585       if( (runFlags & SQL_OUTPUT)==0 ){
1586         while( SQLITE_ROW==sqlite3_step(pStmt) ){}
1587       }else{
1588         int nCol = -1;
1589         while( SQLITE_ROW==sqlite3_step(pStmt) ){
1590           int i;
1591           if( nCol<0 ){
1592             nCol = sqlite3_column_count(pStmt);
1593           }else if( nCol>0 ){
1594             printf("--------------------------------------------\n");
1595           }
1596           for(i=0; i<nCol; i++){
1597             int eType = sqlite3_column_type(pStmt,i);
1598             printf("%s = ", sqlite3_column_name(pStmt,i));
1599             switch( eType ){
1600               case SQLITE_NULL: {
1601                 printf("NULL\n");
1602                 break;
1603               }
1604               case SQLITE_INTEGER: {
1605                 printf("INT %s\n", sqlite3_column_text(pStmt,i));
1606                 break;
1607               }
1608               case SQLITE_FLOAT: {
1609                 printf("FLOAT %s\n", sqlite3_column_text(pStmt,i));
1610                 break;
1611               }
1612               case SQLITE_TEXT: {
1613                 printf("TEXT [%s]\n", sqlite3_column_text(pStmt,i));
1614                 break;
1615               }
1616               case SQLITE_BLOB: {
1617                 printf("BLOB (%d bytes)\n", sqlite3_column_bytes(pStmt,i));
1618                 break;
1619               }
1620             }
1621           }
1622         }
1623       }
1624       sqlite3_finalize(pStmt);
1625     }
1626   }
1627 }
1628 
1629 /*
1630 ** Rebuild the database file.
1631 **
1632 **    (1)  Remove duplicate entries
1633 **    (2)  Put all entries in order
1634 **    (3)  Vacuum
1635 */
rebuild_database(sqlite3 * db,int dbSqlOnly)1636 static void rebuild_database(sqlite3 *db, int dbSqlOnly){
1637   int rc;
1638   char *zSql;
1639   zSql = sqlite3_mprintf(
1640      "BEGIN;\n"
1641      "CREATE TEMP TABLE dbx AS SELECT DISTINCT dbcontent FROM db;\n"
1642      "DELETE FROM db;\n"
1643      "INSERT INTO db(dbid, dbcontent) "
1644         " SELECT NULL, dbcontent FROM dbx ORDER BY 2;\n"
1645      "DROP TABLE dbx;\n"
1646      "CREATE TEMP TABLE sx AS SELECT DISTINCT sqltext FROM xsql %s;\n"
1647      "DELETE FROM xsql;\n"
1648      "INSERT INTO xsql(sqlid,sqltext) "
1649         " SELECT NULL, sqltext FROM sx ORDER BY 2;\n"
1650      "DROP TABLE sx;\n"
1651      "COMMIT;\n"
1652      "PRAGMA page_size=1024;\n"
1653      "VACUUM;\n",
1654      dbSqlOnly ? " WHERE isdbsql(sqltext)" : ""
1655   );
1656   rc = sqlite3_exec(db, zSql, 0, 0, 0);
1657   sqlite3_free(zSql);
1658   if( rc ) fatalError("cannot rebuild: %s", sqlite3_errmsg(db));
1659 }
1660 
1661 /*
1662 ** Return the value of a hexadecimal digit.  Return -1 if the input
1663 ** is not a hex digit.
1664 */
hexDigitValue(char c)1665 static int hexDigitValue(char c){
1666   if( c>='0' && c<='9' ) return c - '0';
1667   if( c>='a' && c<='f' ) return c - 'a' + 10;
1668   if( c>='A' && c<='F' ) return c - 'A' + 10;
1669   return -1;
1670 }
1671 
1672 /*
1673 ** Interpret zArg as an integer value, possibly with suffixes.
1674 */
integerValue(const char * zArg)1675 static int integerValue(const char *zArg){
1676   sqlite3_int64 v = 0;
1677   static const struct { char *zSuffix; int iMult; } aMult[] = {
1678     { "KiB", 1024 },
1679     { "MiB", 1024*1024 },
1680     { "GiB", 1024*1024*1024 },
1681     { "KB",  1000 },
1682     { "MB",  1000000 },
1683     { "GB",  1000000000 },
1684     { "K",   1000 },
1685     { "M",   1000000 },
1686     { "G",   1000000000 },
1687   };
1688   int i;
1689   int isNeg = 0;
1690   if( zArg[0]=='-' ){
1691     isNeg = 1;
1692     zArg++;
1693   }else if( zArg[0]=='+' ){
1694     zArg++;
1695   }
1696   if( zArg[0]=='0' && zArg[1]=='x' ){
1697     int x;
1698     zArg += 2;
1699     while( (x = hexDigitValue(zArg[0]))>=0 ){
1700       v = (v<<4) + x;
1701       zArg++;
1702     }
1703   }else{
1704     while( ISDIGIT(zArg[0]) ){
1705       v = v*10 + zArg[0] - '0';
1706       zArg++;
1707     }
1708   }
1709   for(i=0; i<sizeof(aMult)/sizeof(aMult[0]); i++){
1710     if( sqlite3_stricmp(aMult[i].zSuffix, zArg)==0 ){
1711       v *= aMult[i].iMult;
1712       break;
1713     }
1714   }
1715   if( v>0x7fffffff ) fatalError("parameter too large - max 2147483648");
1716   return (int)(isNeg? -v : v);
1717 }
1718 
1719 /*
1720 ** Return the number of "v" characters in a string.  Return 0 if there
1721 ** are any characters in the string other than "v".
1722 */
numberOfVChar(const char * z)1723 static int numberOfVChar(const char *z){
1724   int N = 0;
1725   while( z[0] && z[0]=='v' ){
1726     z++;
1727     N++;
1728   }
1729   return z[0]==0 ? N : 0;
1730 }
1731 
1732 /*
1733 ** Print sketchy documentation for this utility program
1734 */
showHelp(void)1735 static void showHelp(void){
1736   printf("Usage: %s [options] SOURCE-DB ?ARGS...?\n", g.zArgv0);
1737   printf(
1738 "Read databases and SQL scripts from SOURCE-DB and execute each script against\n"
1739 "each database, checking for crashes and memory leaks.\n"
1740 "Options:\n"
1741 "  --cell-size-check    Set the PRAGMA cell_size_check=ON\n"
1742 "  --dbid N             Use only the database where dbid=N\n"
1743 "  --export-db DIR      Write databases to files(s) in DIR. Works with --dbid\n"
1744 "  --export-sql DIR     Write SQL to file(s) in DIR. Also works with --sqlid\n"
1745 "  --help               Show this help text\n"
1746 "  --info               Show information about SOURCE-DB w/o running tests\n"
1747 "  --limit-depth N      Limit expression depth to N.  Default: 500\n"
1748 "  --limit-heap N       Limit heap memory to N.  Default: 100M\n"
1749 "  --limit-mem N        Limit memory used by test SQLite instance to N bytes\n"
1750 "  --limit-vdbe         Panic if any test runs for more than 100,000 cycles\n"
1751 "  --load-sql   FILE..  Load SQL scripts fron files into SOURCE-DB\n"
1752 "  --load-db    FILE..  Load template databases from files into SOURCE_DB\n"
1753 "  --load-dbsql FILE..  Load dbsqlfuzz outputs into the xsql table\n"
1754 "               ^^^^------ Use \"-\" for FILE to read filenames from stdin\n"
1755 "  -m TEXT              Add a description to the database\n"
1756 "  --native-vfs         Use the native VFS for initially empty database files\n"
1757 "  --native-malloc      Turn off MEMSYS3/5 and Lookaside\n"
1758 "  --no-recover         Do not run recovery on dbsqlfuzz databases\n"
1759 "  --oss-fuzz           Enable OSS-FUZZ testing\n"
1760 "  --prng-seed N        Seed value for the PRGN inside of SQLite\n"
1761 "  -q|--quiet           Reduced output\n"
1762 "  --rebuild            Rebuild and vacuum the database file\n"
1763 "  --result-trace       Show the results of each SQL command\n"
1764 "  --script             Output CLI script instead of running tests\n"
1765 "  --skip N             Skip the first N test cases\n"
1766 "  --spinner            Use a spinner to show progress\n"
1767 "  --sqlid N            Use only SQL where sqlid=N\n"
1768 "  --timeout N          Maximum time for any one test in N millseconds\n"
1769 "  -v|--verbose         Increased output.  Repeat for more output.\n"
1770 "  --vdbe-debug         Activate VDBE debugging.\n"
1771   );
1772 }
1773 
main(int argc,char ** argv)1774 int main(int argc, char **argv){
1775   sqlite3_int64 iBegin;        /* Start time of this program */
1776   int quietFlag = 0;           /* True if --quiet or -q */
1777   int verboseFlag = 0;         /* True if --verbose or -v */
1778   char *zInsSql = 0;           /* SQL statement for --load-db or --load-sql */
1779   int iFirstInsArg = 0;        /* First argv[] for --load-db or --load-sql */
1780   sqlite3 *db = 0;             /* The open database connection */
1781   sqlite3_stmt *pStmt;         /* A prepared statement */
1782   int rc;                      /* Result code from SQLite interface calls */
1783   Blob *pSql;                  /* For looping over SQL scripts */
1784   Blob *pDb;                   /* For looping over template databases */
1785   int i;                       /* Loop index for the argv[] loop */
1786   int dbSqlOnly = 0;           /* Only use scripts that are dbsqlfuzz */
1787   int onlySqlid = -1;          /* --sqlid */
1788   int onlyDbid = -1;           /* --dbid */
1789   int nativeFlag = 0;          /* --native-vfs */
1790   int rebuildFlag = 0;         /* --rebuild */
1791   int vdbeLimitFlag = 0;       /* --limit-vdbe */
1792   int infoFlag = 0;            /* --info */
1793   int nSkip = 0;               /* --skip */
1794   int bScript = 0;             /* --script */
1795   int bSpinner = 0;            /* True for --spinner */
1796   int timeoutTest = 0;         /* undocumented --timeout-test flag */
1797   int runFlags = 0;            /* Flags sent to runSql() */
1798   char *zMsg = 0;              /* Add this message */
1799   int nSrcDb = 0;              /* Number of source databases */
1800   char **azSrcDb = 0;          /* Array of source database names */
1801   int iSrcDb;                  /* Loop over all source databases */
1802   int nTest = 0;               /* Total number of tests performed */
1803   char *zDbName = "";          /* Appreviated name of a source database */
1804   const char *zFailCode = 0;   /* Value of the TEST_FAILURE env variable */
1805   int cellSzCkFlag = 0;        /* --cell-size-check */
1806   int sqlFuzz = 0;             /* True for SQL fuzz. False for DB fuzz */
1807   int iTimeout = 120000;       /* Default 120-second timeout */
1808   int nMem = 0;                /* Memory limit override */
1809   int nMemThisDb = 0;          /* Memory limit set by the CONFIG table */
1810   char *zExpDb = 0;            /* Write Databases to files in this directory */
1811   char *zExpSql = 0;           /* Write SQL to files in this directory */
1812   void *pHeap = 0;             /* Heap for use by SQLite */
1813   int ossFuzz = 0;             /* enable OSS-FUZZ testing */
1814   int ossFuzzThisDb = 0;       /* ossFuzz value for this particular database */
1815   int nativeMalloc = 0;        /* Turn off MEMSYS3/5 and lookaside if true */
1816   sqlite3_vfs *pDfltVfs;       /* The default VFS */
1817   int openFlags4Data;          /* Flags for sqlite3_open_v2() */
1818   int bTimer = 0;              /* Show elapse time for each test */
1819   int nV;                      /* How much to increase verbosity with -vvvv */
1820   sqlite3_int64 tmStart;       /* Start of each test */
1821 
1822   sqlite3_config(SQLITE_CONFIG_URI,1);
1823   registerOomSimulator();
1824   sqlite3_initialize();
1825   iBegin = timeOfDay();
1826 #ifdef __unix__
1827   signal(SIGALRM, signalHandler);
1828   signal(SIGSEGV, signalHandler);
1829   signal(SIGABRT, signalHandler);
1830 #endif
1831   g.zArgv0 = argv[0];
1832   openFlags4Data = SQLITE_OPEN_READONLY;
1833   zFailCode = getenv("TEST_FAILURE");
1834   pDfltVfs = sqlite3_vfs_find(0);
1835   inmemVfsRegister(1);
1836   for(i=1; i<argc; i++){
1837     const char *z = argv[i];
1838     if( z[0]=='-' ){
1839       z++;
1840       if( z[0]=='-' ) z++;
1841       if( strcmp(z,"cell-size-check")==0 ){
1842         cellSzCkFlag = 1;
1843       }else
1844       if( strcmp(z,"dbid")==0 ){
1845         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1846         onlyDbid = integerValue(argv[++i]);
1847       }else
1848       if( strcmp(z,"export-db")==0 ){
1849         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1850         zExpDb = argv[++i];
1851       }else
1852       if( strcmp(z,"export-sql")==0 || strcmp(z,"export-dbsql")==0 ){
1853         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1854         zExpSql = argv[++i];
1855       }else
1856       if( strcmp(z,"help")==0 ){
1857         showHelp();
1858         return 0;
1859       }else
1860       if( strcmp(z,"info")==0 ){
1861         infoFlag = 1;
1862       }else
1863       if( strcmp(z,"limit-depth")==0 ){
1864         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1865         depthLimit = integerValue(argv[++i]);
1866       }else
1867       if( strcmp(z,"limit-heap")==0 ){
1868         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1869         heapLimit = integerValue(argv[++i]);
1870       }else
1871       if( strcmp(z,"limit-mem")==0 ){
1872         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1873         nMem = integerValue(argv[++i]);
1874       }else
1875       if( strcmp(z,"limit-vdbe")==0 ){
1876         vdbeLimitFlag = 1;
1877       }else
1878       if( strcmp(z,"load-sql")==0 ){
1879         zInsSql = "INSERT INTO xsql(sqltext)"
1880                   "VALUES(CAST(readtextfile(?1) AS text))";
1881         iFirstInsArg = i+1;
1882         openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
1883         break;
1884       }else
1885       if( strcmp(z,"load-db")==0 ){
1886         zInsSql = "INSERT INTO db(dbcontent) VALUES(readfile(?1))";
1887         iFirstInsArg = i+1;
1888         openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
1889         break;
1890       }else
1891       if( strcmp(z,"load-dbsql")==0 ){
1892         zInsSql = "INSERT INTO xsql(sqltext)"
1893                   "VALUES(readfile(?1))";
1894         iFirstInsArg = i+1;
1895         openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
1896         dbSqlOnly = 1;
1897         break;
1898       }else
1899       if( strcmp(z,"m")==0 ){
1900         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1901         zMsg = argv[++i];
1902         openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
1903       }else
1904       if( strcmp(z,"native-malloc")==0 ){
1905         nativeMalloc = 1;
1906       }else
1907       if( strcmp(z,"native-vfs")==0 ){
1908         nativeFlag = 1;
1909       }else
1910       if( strcmp(z,"no-recover")==0 ){
1911         bNoRecover = 1;
1912       }else
1913       if( strcmp(z,"oss-fuzz")==0 ){
1914         ossFuzz = 1;
1915       }else
1916       if( strcmp(z,"prng-seed")==0 ){
1917         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1918         g.uRandom = atoi(argv[++i]);
1919       }else
1920       if( strcmp(z,"quiet")==0 || strcmp(z,"q")==0 ){
1921         quietFlag = 1;
1922         verboseFlag = 0;
1923         eVerbosity = 0;
1924       }else
1925       if( strcmp(z,"rebuild")==0 ){
1926         rebuildFlag = 1;
1927         openFlags4Data = SQLITE_OPEN_READWRITE;
1928       }else
1929       if( strcmp(z,"result-trace")==0 ){
1930         runFlags |= SQL_OUTPUT;
1931       }else
1932       if( strcmp(z,"script")==0 ){
1933         bScript = 1;
1934       }else
1935       if( strcmp(z,"skip")==0 ){
1936         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1937         nSkip = atoi(argv[++i]);
1938       }else
1939       if( strcmp(z,"spinner")==0 ){
1940         bSpinner = 1;
1941       }else
1942       if( strcmp(z,"timer")==0 ){
1943         bTimer = 1;
1944       }else
1945       if( strcmp(z,"sqlid")==0 ){
1946         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1947         onlySqlid = integerValue(argv[++i]);
1948       }else
1949       if( strcmp(z,"timeout")==0 ){
1950         if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
1951         iTimeout = integerValue(argv[++i]);
1952       }else
1953       if( strcmp(z,"timeout-test")==0 ){
1954         timeoutTest = 1;
1955 #ifndef __unix__
1956         fatalError("timeout is not available on non-unix systems");
1957 #endif
1958       }else
1959       if( strcmp(z,"vdbe-debug")==0 ){
1960         bVdbeDebug = 1;
1961       }else
1962       if( strcmp(z,"verbose")==0 ){
1963         quietFlag = 0;
1964         verboseFlag++;
1965         eVerbosity++;
1966         if( verboseFlag>1 ) runFlags |= SQL_TRACE;
1967       }else
1968       if( (nV = numberOfVChar(z))>=1 ){
1969         quietFlag = 0;
1970         verboseFlag += nV;
1971         eVerbosity += nV;
1972         if( verboseFlag>1 ) runFlags |= SQL_TRACE;
1973       }else
1974       if( strcmp(z,"version")==0 ){
1975         int ii;
1976         const char *zz;
1977         printf("SQLite %s %s\n", sqlite3_libversion(), sqlite3_sourceid());
1978         for(ii=0; (zz = sqlite3_compileoption_get(ii))!=0; ii++){
1979           printf("%s\n", zz);
1980         }
1981         return 0;
1982       }else
1983       if( strcmp(z,"is-dbsql")==0 ){
1984         i++;
1985         for(i++; i<argc; i++){
1986           long nData;
1987           char *aData = readFile(argv[i], &nData);
1988           printf("%d %s\n", isDbSql((unsigned char*)aData,nData), argv[i]);
1989           sqlite3_free(aData);
1990         }
1991         exit(0);
1992       }else
1993       {
1994         fatalError("unknown option: %s", argv[i]);
1995       }
1996     }else{
1997       nSrcDb++;
1998       azSrcDb = safe_realloc(azSrcDb, nSrcDb*sizeof(azSrcDb[0]));
1999       azSrcDb[nSrcDb-1] = argv[i];
2000     }
2001   }
2002   if( nSrcDb==0 ) fatalError("no source database specified");
2003   if( nSrcDb>1 ){
2004     if( zMsg ){
2005       fatalError("cannot change the description of more than one database");
2006     }
2007     if( zInsSql ){
2008       fatalError("cannot import into more than one database");
2009     }
2010   }
2011 
2012   /* Process each source database separately */
2013   for(iSrcDb=0; iSrcDb<nSrcDb; iSrcDb++){
2014     char *zRawData = 0;
2015     long nRawData = 0;
2016     g.zDbFile = azSrcDb[iSrcDb];
2017     rc = sqlite3_open_v2(azSrcDb[iSrcDb], &db,
2018                          openFlags4Data, pDfltVfs->zName);
2019     if( rc==SQLITE_OK ){
2020       rc = sqlite3_exec(db, "SELECT count(*) FROM sqlite_schema", 0, 0, 0);
2021     }
2022     if( rc ){
2023       sqlite3_close(db);
2024       zRawData = readFile(azSrcDb[iSrcDb], &nRawData);
2025       if( zRawData==0 ){
2026         fatalError("input file \"%s\" is not recognized\n", azSrcDb[iSrcDb]);
2027       }
2028       sqlite3_open(":memory:", &db);
2029     }
2030 
2031     /* Print the description, if there is one */
2032     if( infoFlag ){
2033       int n;
2034       zDbName = azSrcDb[iSrcDb];
2035       i = (int)strlen(zDbName) - 1;
2036       while( i>0 && zDbName[i-1]!='/' && zDbName[i-1]!='\\' ){ i--; }
2037       zDbName += i;
2038       sqlite3_prepare_v2(db, "SELECT msg FROM readme", -1, &pStmt, 0);
2039       if( pStmt && sqlite3_step(pStmt)==SQLITE_ROW ){
2040         printf("%s: %s", zDbName, sqlite3_column_text(pStmt,0));
2041       }else{
2042         printf("%s: (empty \"readme\")", zDbName);
2043       }
2044       sqlite3_finalize(pStmt);
2045       sqlite3_prepare_v2(db, "SELECT count(*) FROM db", -1, &pStmt, 0);
2046       if( pStmt
2047        && sqlite3_step(pStmt)==SQLITE_ROW
2048        && (n = sqlite3_column_int(pStmt,0))>0
2049       ){
2050         printf(" - %d DBs", n);
2051       }
2052       sqlite3_finalize(pStmt);
2053       sqlite3_prepare_v2(db, "SELECT count(*) FROM xsql", -1, &pStmt, 0);
2054       if( pStmt
2055        && sqlite3_step(pStmt)==SQLITE_ROW
2056        && (n = sqlite3_column_int(pStmt,0))>0
2057       ){
2058         printf(" - %d scripts", n);
2059       }
2060       sqlite3_finalize(pStmt);
2061       printf("\n");
2062       sqlite3_close(db);
2063       sqlite3_free(zRawData);
2064       continue;
2065     }
2066 
2067     rc = sqlite3_exec(db,
2068        "CREATE TABLE IF NOT EXISTS db(\n"
2069        "  dbid INTEGER PRIMARY KEY, -- database id\n"
2070        "  dbcontent BLOB            -- database disk file image\n"
2071        ");\n"
2072        "CREATE TABLE IF NOT EXISTS xsql(\n"
2073        "  sqlid INTEGER PRIMARY KEY,   -- SQL script id\n"
2074        "  sqltext TEXT                 -- Text of SQL statements to run\n"
2075        ");"
2076        "CREATE TABLE IF NOT EXISTS readme(\n"
2077        "  msg TEXT -- Human-readable description of this file\n"
2078        ");", 0, 0, 0);
2079     if( rc ) fatalError("cannot create schema: %s", sqlite3_errmsg(db));
2080     if( zMsg ){
2081       char *zSql;
2082       zSql = sqlite3_mprintf(
2083                "DELETE FROM readme; INSERT INTO readme(msg) VALUES(%Q)", zMsg);
2084       rc = sqlite3_exec(db, zSql, 0, 0, 0);
2085       sqlite3_free(zSql);
2086       if( rc ) fatalError("cannot change description: %s", sqlite3_errmsg(db));
2087     }
2088     if( zRawData ){
2089       zInsSql = "INSERT INTO xsql(sqltext) VALUES(?1)";
2090       rc = sqlite3_prepare_v2(db, zInsSql, -1, &pStmt, 0);
2091       if( rc ) fatalError("cannot prepare statement [%s]: %s",
2092                           zInsSql, sqlite3_errmsg(db));
2093       sqlite3_bind_text(pStmt, 1, zRawData, nRawData, SQLITE_STATIC);
2094       sqlite3_step(pStmt);
2095       rc = sqlite3_reset(pStmt);
2096       if( rc ) fatalError("insert failed for %s", argv[i]);
2097       sqlite3_finalize(pStmt);
2098       rebuild_database(db, dbSqlOnly);
2099       zInsSql = 0;
2100       sqlite3_free(zRawData);
2101       zRawData = 0;
2102     }
2103     ossFuzzThisDb = ossFuzz;
2104 
2105     /* If the CONFIG(name,value) table exists, read db-specific settings
2106     ** from that table */
2107     if( sqlite3_table_column_metadata(db,0,"config",0,0,0,0,0,0)==SQLITE_OK ){
2108       rc = sqlite3_prepare_v2(db, "SELECT name, value FROM config",
2109                                   -1, &pStmt, 0);
2110       if( rc ) fatalError("cannot prepare query of CONFIG table: %s",
2111                           sqlite3_errmsg(db));
2112       while( SQLITE_ROW==sqlite3_step(pStmt) ){
2113         const char *zName = (const char *)sqlite3_column_text(pStmt,0);
2114         if( zName==0 ) continue;
2115         if( strcmp(zName, "oss-fuzz")==0 ){
2116           ossFuzzThisDb = sqlite3_column_int(pStmt,1);
2117           if( verboseFlag ) printf("Config: oss-fuzz=%d\n", ossFuzzThisDb);
2118         }
2119         if( strcmp(zName, "limit-mem")==0 ){
2120           nMemThisDb = sqlite3_column_int(pStmt,1);
2121           if( verboseFlag ) printf("Config: limit-mem=%d\n", nMemThisDb);
2122         }
2123       }
2124       sqlite3_finalize(pStmt);
2125     }
2126 
2127     if( zInsSql ){
2128       sqlite3_create_function(db, "readfile", 1, SQLITE_UTF8, 0,
2129                               readfileFunc, 0, 0);
2130       sqlite3_create_function(db, "readtextfile", 1, SQLITE_UTF8, 0,
2131                               readtextfileFunc, 0, 0);
2132       sqlite3_create_function(db, "isdbsql", 1, SQLITE_UTF8, 0,
2133                               isDbSqlFunc, 0, 0);
2134       rc = sqlite3_prepare_v2(db, zInsSql, -1, &pStmt, 0);
2135       if( rc ) fatalError("cannot prepare statement [%s]: %s",
2136                           zInsSql, sqlite3_errmsg(db));
2137       rc = sqlite3_exec(db, "BEGIN", 0, 0, 0);
2138       if( rc ) fatalError("cannot start a transaction");
2139       for(i=iFirstInsArg; i<argc; i++){
2140         if( strcmp(argv[i],"-")==0 ){
2141           /* A filename of "-" means read multiple filenames from stdin */
2142           char zLine[2000];
2143           while( rc==0 && fgets(zLine,sizeof(zLine),stdin)!=0 ){
2144             size_t kk = strlen(zLine);
2145             while( kk>0 && zLine[kk-1]<=' ' ) kk--;
2146             sqlite3_bind_text(pStmt, 1, zLine, (int)kk, SQLITE_STATIC);
2147             if( verboseFlag ) printf("loading %.*s\n", (int)kk, zLine);
2148             sqlite3_step(pStmt);
2149             rc = sqlite3_reset(pStmt);
2150             if( rc ) fatalError("insert failed for %s", zLine);
2151           }
2152         }else{
2153           sqlite3_bind_text(pStmt, 1, argv[i], -1, SQLITE_STATIC);
2154           if( verboseFlag ) printf("loading %s\n", argv[i]);
2155           sqlite3_step(pStmt);
2156           rc = sqlite3_reset(pStmt);
2157           if( rc ) fatalError("insert failed for %s", argv[i]);
2158         }
2159       }
2160       sqlite3_finalize(pStmt);
2161       rc = sqlite3_exec(db, "COMMIT", 0, 0, 0);
2162       if( rc ) fatalError("cannot commit the transaction: %s",
2163                           sqlite3_errmsg(db));
2164       rebuild_database(db, dbSqlOnly);
2165       sqlite3_close(db);
2166       return 0;
2167     }
2168     rc = sqlite3_exec(db, "PRAGMA query_only=1;", 0, 0, 0);
2169     if( rc ) fatalError("cannot set database to query-only");
2170     if( zExpDb!=0 || zExpSql!=0 ){
2171       sqlite3_create_function(db, "writefile", 2, SQLITE_UTF8, 0,
2172                               writefileFunc, 0, 0);
2173       if( zExpDb!=0 ){
2174         const char *zExDb =
2175           "SELECT writefile(printf('%s/db%06d.db',?1,dbid),dbcontent),"
2176           "       dbid, printf('%s/db%06d.db',?1,dbid), length(dbcontent)"
2177           "  FROM db WHERE ?2<0 OR dbid=?2;";
2178         rc = sqlite3_prepare_v2(db, zExDb, -1, &pStmt, 0);
2179         if( rc ) fatalError("cannot prepare statement [%s]: %s",
2180                             zExDb, sqlite3_errmsg(db));
2181         sqlite3_bind_text64(pStmt, 1, zExpDb, strlen(zExpDb),
2182                             SQLITE_STATIC, SQLITE_UTF8);
2183         sqlite3_bind_int(pStmt, 2, onlyDbid);
2184         while( sqlite3_step(pStmt)==SQLITE_ROW ){
2185           printf("write db-%d (%d bytes) into %s\n",
2186              sqlite3_column_int(pStmt,1),
2187              sqlite3_column_int(pStmt,3),
2188              sqlite3_column_text(pStmt,2));
2189         }
2190         sqlite3_finalize(pStmt);
2191       }
2192       if( zExpSql!=0 ){
2193         const char *zExSql =
2194           "SELECT writefile(printf('%s/sql%06d.txt',?1,sqlid),sqltext),"
2195           "       sqlid, printf('%s/sql%06d.txt',?1,sqlid), length(sqltext)"
2196           "  FROM xsql WHERE ?2<0 OR sqlid=?2;";
2197         rc = sqlite3_prepare_v2(db, zExSql, -1, &pStmt, 0);
2198         if( rc ) fatalError("cannot prepare statement [%s]: %s",
2199                             zExSql, sqlite3_errmsg(db));
2200         sqlite3_bind_text64(pStmt, 1, zExpSql, strlen(zExpSql),
2201                             SQLITE_STATIC, SQLITE_UTF8);
2202         sqlite3_bind_int(pStmt, 2, onlySqlid);
2203         while( sqlite3_step(pStmt)==SQLITE_ROW ){
2204           printf("write sql-%d (%d bytes) into %s\n",
2205              sqlite3_column_int(pStmt,1),
2206              sqlite3_column_int(pStmt,3),
2207              sqlite3_column_text(pStmt,2));
2208         }
2209         sqlite3_finalize(pStmt);
2210       }
2211       sqlite3_close(db);
2212       return 0;
2213     }
2214 
2215     /* Load all SQL script content and all initial database images from the
2216     ** source db
2217     */
2218     blobListLoadFromDb(db, "SELECT sqlid, sqltext FROM xsql", onlySqlid,
2219                            &g.nSql, &g.pFirstSql);
2220     if( g.nSql==0 ) fatalError("need at least one SQL script");
2221     blobListLoadFromDb(db, "SELECT dbid, dbcontent FROM db", onlyDbid,
2222                        &g.nDb, &g.pFirstDb);
2223     if( g.nDb==0 ){
2224       g.pFirstDb = safe_realloc(0, sizeof(Blob));
2225       memset(g.pFirstDb, 0, sizeof(Blob));
2226       g.pFirstDb->id = 1;
2227       g.pFirstDb->seq = 0;
2228       g.nDb = 1;
2229       sqlFuzz = 1;
2230     }
2231 
2232     /* Print the description, if there is one */
2233     if( !quietFlag && !bScript ){
2234       zDbName = azSrcDb[iSrcDb];
2235       i = (int)strlen(zDbName) - 1;
2236       while( i>0 && zDbName[i-1]!='/' && zDbName[i-1]!='\\' ){ i--; }
2237       zDbName += i;
2238       sqlite3_prepare_v2(db, "SELECT msg FROM readme", -1, &pStmt, 0);
2239       if( pStmt && sqlite3_step(pStmt)==SQLITE_ROW ){
2240         printf("%s: %s\n", zDbName, sqlite3_column_text(pStmt,0));
2241       }
2242       sqlite3_finalize(pStmt);
2243     }
2244 
2245     /* Rebuild the database, if requested */
2246     if( rebuildFlag ){
2247       if( !quietFlag ){
2248         printf("%s: rebuilding... ", zDbName);
2249         fflush(stdout);
2250       }
2251       rebuild_database(db, 0);
2252       if( !quietFlag ) printf("done\n");
2253     }
2254 
2255     /* Close the source database.  Verify that no SQLite memory allocations are
2256     ** outstanding.
2257     */
2258     sqlite3_close(db);
2259     if( sqlite3_memory_used()>0 ){
2260       fatalError("SQLite has memory in use before the start of testing");
2261     }
2262 
2263     /* Limit available memory, if requested */
2264     sqlite3_shutdown();
2265 
2266     if( nMemThisDb>0 && nMem==0 ){
2267       if( !nativeMalloc ){
2268         pHeap = realloc(pHeap, nMemThisDb);
2269         if( pHeap==0 ){
2270           fatalError("failed to allocate %d bytes of heap memory", nMem);
2271         }
2272         sqlite3_config(SQLITE_CONFIG_HEAP, pHeap, nMemThisDb, 128);
2273       }else{
2274         sqlite3_hard_heap_limit64((sqlite3_int64)nMemThisDb);
2275       }
2276     }else{
2277       sqlite3_hard_heap_limit64(0);
2278     }
2279 
2280     /* Disable lookaside with the --native-malloc option */
2281     if( nativeMalloc ){
2282       sqlite3_config(SQLITE_CONFIG_LOOKASIDE, 0, 0);
2283     }
2284 
2285     /* Reset the in-memory virtual filesystem */
2286     formatVfs();
2287 
2288     /* Run a test using each SQL script against each database.
2289     */
2290     if( !verboseFlag && !quietFlag && !bSpinner && !bScript ){
2291       printf("%s:", zDbName);
2292     }
2293     for(pSql=g.pFirstSql; pSql; pSql=pSql->pNext){
2294       tmStart = timeOfDay();
2295       if( isDbSql(pSql->a, pSql->sz) ){
2296         sqlite3_snprintf(sizeof(g.zTestName), g.zTestName, "sqlid=%d",pSql->id);
2297         if( bScript ){
2298           /* No progress output */
2299         }else if( bSpinner ){
2300           int nTotal =g.nSql;
2301           int idx = pSql->seq;
2302           printf("\r%s: %d/%d   ", zDbName, idx, nTotal);
2303           fflush(stdout);
2304         }else if( verboseFlag ){
2305           printf("%s\n", g.zTestName);
2306           fflush(stdout);
2307         }else if( !quietFlag ){
2308           static int prevAmt = -1;
2309           int idx = pSql->seq;
2310           int amt = idx*10/(g.nSql);
2311           if( amt!=prevAmt ){
2312             printf(" %d%%", amt*10);
2313             fflush(stdout);
2314             prevAmt = amt;
2315           }
2316         }
2317         if( nSkip>0 ){
2318           nSkip--;
2319         }else{
2320           runCombinedDbSqlInput(pSql->a, pSql->sz, iTimeout, bScript, pSql->id);
2321         }
2322         nTest++;
2323         if( bTimer && !bScript ){
2324           sqlite3_int64 tmEnd = timeOfDay();
2325           printf("%lld %s\n", tmEnd - tmStart, g.zTestName);
2326         }
2327         g.zTestName[0] = 0;
2328         disableOom();
2329         continue;
2330       }
2331       for(pDb=g.pFirstDb; pDb; pDb=pDb->pNext){
2332         int openFlags;
2333         const char *zVfs = "inmem";
2334         sqlite3_snprintf(sizeof(g.zTestName), g.zTestName, "sqlid=%d,dbid=%d",
2335                          pSql->id, pDb->id);
2336         if( bScript ){
2337           /* No progress output */
2338         }else if( bSpinner ){
2339           int nTotal = g.nDb*g.nSql;
2340           int idx = pSql->seq*g.nDb + pDb->id - 1;
2341           printf("\r%s: %d/%d   ", zDbName, idx, nTotal);
2342           fflush(stdout);
2343         }else if( verboseFlag ){
2344           printf("%s\n", g.zTestName);
2345           fflush(stdout);
2346         }else if( !quietFlag ){
2347           static int prevAmt = -1;
2348           int idx = pSql->seq*g.nDb + pDb->id - 1;
2349           int amt = idx*10/(g.nDb*g.nSql);
2350           if( amt!=prevAmt ){
2351             printf(" %d%%", amt*10);
2352             fflush(stdout);
2353             prevAmt = amt;
2354           }
2355         }
2356         if( nSkip>0 ){
2357           nSkip--;
2358           continue;
2359         }
2360         if( bScript ){
2361           char zName[100];
2362           sqlite3_snprintf(sizeof(zName), zName, "db%06d.db",
2363                            pDb->id>1 ? pDb->id : pSql->id);
2364           renderDbSqlForCLI(stdout, zName,
2365              pDb->a, pDb->sz, pSql->a, pSql->sz);
2366           continue;
2367         }
2368         createVFile("main.db", pDb->sz, pDb->a);
2369         sqlite3_randomness(0,0);
2370         if( ossFuzzThisDb ){
2371 #ifndef SQLITE_OSS_FUZZ
2372           fatalError("--oss-fuzz not supported: recompile"
2373                      " with -DSQLITE_OSS_FUZZ");
2374 #else
2375           extern int LLVMFuzzerTestOneInput(const uint8_t*, size_t);
2376           LLVMFuzzerTestOneInput((const uint8_t*)pSql->a, (size_t)pSql->sz);
2377 #endif
2378         }else{
2379           openFlags = SQLITE_OPEN_CREATE | SQLITE_OPEN_READWRITE;
2380           if( nativeFlag && pDb->sz==0 ){
2381             openFlags |= SQLITE_OPEN_MEMORY;
2382             zVfs = 0;
2383           }
2384           rc = sqlite3_open_v2("main.db", &db, openFlags, zVfs);
2385           if( rc ) fatalError("cannot open inmem database");
2386           sqlite3_limit(db, SQLITE_LIMIT_LENGTH, 100000000);
2387           sqlite3_limit(db, SQLITE_LIMIT_LIKE_PATTERN_LENGTH, 50);
2388           if( cellSzCkFlag ) runSql(db, "PRAGMA cell_size_check=ON", runFlags);
2389           setAlarm((iTimeout+999)/1000);
2390           /* Enable test functions */
2391           sqlite3_test_control(SQLITE_TESTCTRL_INTERNAL_FUNCTIONS, db);
2392 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK
2393           if( sqlFuzz || vdbeLimitFlag ){
2394             sqlite3_progress_handler(db, 100000, progressHandler,
2395                                      &vdbeLimitFlag);
2396           }
2397 #endif
2398 #ifdef SQLITE_TESTCTRL_PRNG_SEED
2399           sqlite3_test_control(SQLITE_TESTCTRL_PRNG_SEED, 1, db);
2400 #endif
2401           if( bVdbeDebug ){
2402             sqlite3_exec(db, "PRAGMA vdbe_debug=ON", 0, 0, 0);
2403           }
2404           do{
2405             runSql(db, (char*)pSql->a, runFlags);
2406           }while( timeoutTest );
2407           setAlarm(0);
2408           sqlite3_exec(db, "PRAGMA temp_store_directory=''", 0, 0, 0);
2409           sqlite3_close(db);
2410         }
2411         if( sqlite3_memory_used()>0 ){
2412            fatalError("memory leak: %lld bytes outstanding",
2413                       sqlite3_memory_used());
2414         }
2415         reformatVfs();
2416         nTest++;
2417         if( bTimer ){
2418           sqlite3_int64 tmEnd = timeOfDay();
2419           printf("%lld %s\n", tmEnd - tmStart, g.zTestName);
2420         }
2421         g.zTestName[0] = 0;
2422 
2423         /* Simulate an error if the TEST_FAILURE environment variable is "5".
2424         ** This is used to verify that automated test script really do spot
2425         ** errors that occur in this test program.
2426         */
2427         if( zFailCode ){
2428           if( zFailCode[0]=='5' && zFailCode[1]==0 ){
2429             fatalError("simulated failure");
2430           }else if( zFailCode[0]!=0 ){
2431             /* If TEST_FAILURE is something other than 5, just exit the test
2432             ** early */
2433             printf("\nExit early due to TEST_FAILURE being set\n");
2434             iSrcDb = nSrcDb-1;
2435             goto sourcedb_cleanup;
2436           }
2437         }
2438       }
2439     }
2440     if( bScript ){
2441       /* No progress output */
2442     }else if( bSpinner ){
2443       int nTotal = g.nDb*g.nSql;
2444       printf("\r%s: %d/%d   \n", zDbName, nTotal, nTotal);
2445     }else if( !quietFlag && !verboseFlag ){
2446       printf(" 100%% - %d tests\n", g.nDb*g.nSql);
2447     }
2448 
2449     /* Clean up at the end of processing a single source database
2450     */
2451   sourcedb_cleanup:
2452     blobListFree(g.pFirstSql);
2453     blobListFree(g.pFirstDb);
2454     reformatVfs();
2455 
2456   } /* End loop over all source databases */
2457 
2458   if( !quietFlag && !bScript ){
2459     sqlite3_int64 iElapse = timeOfDay() - iBegin;
2460     if( g.nInvariant ){
2461       printf("fuzzcheck: %u query invariants checked\n", g.nInvariant);
2462     }
2463     printf("fuzzcheck: 0 errors out of %d tests in %d.%03d seconds\n"
2464            "SQLite %s %s\n",
2465            nTest, (int)(iElapse/1000), (int)(iElapse%1000),
2466            sqlite3_libversion(), sqlite3_sourceid());
2467   }
2468   free(azSrcDb);
2469   free(pHeap);
2470   return 0;
2471 }
2472