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drh3b74d032015-05-25 18:48:19 +00001/*
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**
drh00452192015-06-17 18:24:40 +000013** This is a utility program designed to aid running regressions tests on
14** the SQLite library using data from an external fuzzer, such as American
drh3b74d032015-05-25 18:48:19 +000015** Fuzzy Lop (AFL) (http://lcamtuf.coredump.cx/afl/).
16**
17** This program reads content from an SQLite database file with the following
18** schema:
19**
20** CREATE TABLE db(
21** dbid INTEGER PRIMARY KEY, -- database id
22** dbcontent BLOB -- database disk file image
23** );
24** CREATE TABLE xsql(
25** sqlid INTEGER PRIMARY KEY, -- SQL script id
26** sqltext TEXT -- Text of SQL statements to run
27** );
drh00452192015-06-17 18:24:40 +000028** CREATE TABLE IF NOT EXISTS readme(
29** msg TEXT -- Human-readable description of this test collection
30** );
drh3b74d032015-05-25 18:48:19 +000031**
32** For each database file in the DB table, the SQL text in the XSQL table
drh00452192015-06-17 18:24:40 +000033** is run against that database. All README.MSG values are printed prior
34** to the start of the test (unless the --quiet option is used). If the
35** DB table is empty, then all entries in XSQL are run against an empty
36** in-memory database.
37**
38** This program is looking for crashes, assertion faults, and/or memory leaks.
39** No attempt is made to verify the output. The assumption is that either all
40** of the database files or all of the SQL statements are malformed inputs,
41** generated by a fuzzer, that need to be checked to make sure they do not
42** present a security risk.
drh3b74d032015-05-25 18:48:19 +000043**
44** This program also includes some command-line options to help with
drh00452192015-06-17 18:24:40 +000045** creation and maintenance of the source content database. The command
46**
47** ./fuzzcheck database.db --load-sql FILE...
48**
49** Loads all FILE... arguments into the XSQL table. The --load-db option
50** works the same but loads the files into the DB table. The -m option can
51** be used to initialize the README table. The "database.db" file is created
52** if it does not previously exist. Example:
53**
54** ./fuzzcheck new.db --load-sql *.sql
55** ./fuzzcheck new.db --load-db *.db
56** ./fuzzcheck new.db -m 'New test cases'
57**
58** The three commands above will create the "new.db" file and initialize all
59** tables. Then do "./fuzzcheck new.db" to run the tests.
60**
61** DEBUGGING HINTS:
62**
63** If fuzzcheck does crash, it can be run in the debugger and the content
64** of the global variable g.zTextName[] will identify the specific XSQL and
65** DB values that were running when the crash occurred.
drh3b74d032015-05-25 18:48:19 +000066*/
67#include <stdio.h>
68#include <stdlib.h>
69#include <string.h>
70#include <stdarg.h>
71#include <ctype.h>
72#include "sqlite3.h"
drhc56fac72015-10-29 13:48:15 +000073#define ISSPACE(X) isspace((unsigned char)(X))
74#define ISDIGIT(X) isdigit((unsigned char)(X))
75
drh3b74d032015-05-25 18:48:19 +000076
drh94701b02015-06-24 13:25:34 +000077#ifdef __unix__
78# include <signal.h>
79# include <unistd.h>
80#endif
81
drhea432ba2016-11-11 16:33:47 +000082#ifdef SQLITE_OSS_FUZZ
83# include <stddef.h>
mistachkinac8ba262018-03-07 14:42:17 +000084# if !defined(_MSC_VER)
85# include <stdint.h>
86# endif
87#endif
88
89#if defined(_MSC_VER)
90typedef unsigned char uint8_t;
drhea432ba2016-11-11 16:33:47 +000091#endif
92
drh3b74d032015-05-25 18:48:19 +000093/*
94** Files in the virtual file system.
95*/
96typedef struct VFile VFile;
97struct VFile {
98 char *zFilename; /* Filename. NULL for delete-on-close. From malloc() */
99 int sz; /* Size of the file in bytes */
100 int nRef; /* Number of references to this file */
101 unsigned char *a; /* Content of the file. From malloc() */
102};
103typedef struct VHandle VHandle;
104struct VHandle {
105 sqlite3_file base; /* Base class. Must be first */
106 VFile *pVFile; /* The underlying file */
107};
108
109/*
110** The value of a database file template, or of an SQL script
111*/
112typedef struct Blob Blob;
113struct Blob {
114 Blob *pNext; /* Next in a list */
115 int id; /* Id of this Blob */
drhe5c5f2c2015-05-26 00:28:08 +0000116 int seq; /* Sequence number */
drh3b74d032015-05-25 18:48:19 +0000117 int sz; /* Size of this Blob in bytes */
118 unsigned char a[1]; /* Blob content. Extra space allocated as needed. */
119};
120
121/*
122** Maximum number of files in the in-memory virtual filesystem.
123*/
124#define MX_FILE 10
125
126/*
127** Maximum allowed file size
128*/
129#define MX_FILE_SZ 10000000
130
131/*
132** All global variables are gathered into the "g" singleton.
133*/
134static struct GlobalVars {
135 const char *zArgv0; /* Name of program */
136 VFile aFile[MX_FILE]; /* The virtual filesystem */
137 int nDb; /* Number of template databases */
138 Blob *pFirstDb; /* Content of first template database */
139 int nSql; /* Number of SQL scripts */
140 Blob *pFirstSql; /* First SQL script */
drhbeaf5142016-12-26 00:15:56 +0000141 unsigned int uRandom; /* Seed for the SQLite PRNG */
drh3b74d032015-05-25 18:48:19 +0000142 char zTestName[100]; /* Name of current test */
143} g;
144
145/*
146** Print an error message and quit.
147*/
148static void fatalError(const char *zFormat, ...){
149 va_list ap;
150 if( g.zTestName[0] ){
151 fprintf(stderr, "%s (%s): ", g.zArgv0, g.zTestName);
152 }else{
153 fprintf(stderr, "%s: ", g.zArgv0);
154 }
155 va_start(ap, zFormat);
156 vfprintf(stderr, zFormat, ap);
157 va_end(ap);
158 fprintf(stderr, "\n");
159 exit(1);
160}
161
162/*
drh94701b02015-06-24 13:25:34 +0000163** Timeout handler
164*/
165#ifdef __unix__
166static void timeoutHandler(int NotUsed){
167 (void)NotUsed;
168 fatalError("timeout\n");
169}
170#endif
171
172/*
173** Set the an alarm to go off after N seconds. Disable the alarm
174** if N==0
175*/
176static void setAlarm(int N){
177#ifdef __unix__
178 alarm(N);
179#else
180 (void)N;
181#endif
182}
183
drh78057352015-06-24 23:17:35 +0000184#ifndef SQLITE_OMIT_PROGRESS_CALLBACK
drh94701b02015-06-24 13:25:34 +0000185/*
drhd83e2832015-06-24 14:45:44 +0000186** This an SQL progress handler. After an SQL statement has run for
187** many steps, we want to interrupt it. This guards against infinite
188** loops from recursive common table expressions.
189**
190** *pVdbeLimitFlag is true if the --limit-vdbe command-line option is used.
191** In that case, hitting the progress handler is a fatal error.
192*/
193static int progressHandler(void *pVdbeLimitFlag){
194 if( *(int*)pVdbeLimitFlag ) fatalError("too many VDBE cycles");
195 return 1;
196}
drh78057352015-06-24 23:17:35 +0000197#endif
drhd83e2832015-06-24 14:45:44 +0000198
199/*
drh3b74d032015-05-25 18:48:19 +0000200** Reallocate memory. Show and error and quit if unable.
201*/
202static void *safe_realloc(void *pOld, int szNew){
drhc5412d52016-03-23 17:54:19 +0000203 void *pNew = realloc(pOld, szNew<=0 ? 1 : szNew);
drh3b74d032015-05-25 18:48:19 +0000204 if( pNew==0 ) fatalError("unable to realloc for %d bytes", szNew);
205 return pNew;
206}
207
208/*
209** Initialize the virtual file system.
210*/
211static void formatVfs(void){
212 int i;
213 for(i=0; i<MX_FILE; i++){
214 g.aFile[i].sz = -1;
215 g.aFile[i].zFilename = 0;
216 g.aFile[i].a = 0;
217 g.aFile[i].nRef = 0;
218 }
219}
220
221
222/*
223** Erase all information in the virtual file system.
224*/
225static void reformatVfs(void){
226 int i;
227 for(i=0; i<MX_FILE; i++){
228 if( g.aFile[i].sz<0 ) continue;
229 if( g.aFile[i].zFilename ){
230 free(g.aFile[i].zFilename);
231 g.aFile[i].zFilename = 0;
232 }
233 if( g.aFile[i].nRef>0 ){
234 fatalError("file %d still open. nRef=%d", i, g.aFile[i].nRef);
235 }
236 g.aFile[i].sz = -1;
237 free(g.aFile[i].a);
238 g.aFile[i].a = 0;
239 g.aFile[i].nRef = 0;
240 }
241}
242
243/*
244** Find a VFile by name
245*/
246static VFile *findVFile(const char *zName){
247 int i;
drha9542b12015-05-25 19:35:42 +0000248 if( zName==0 ) return 0;
drh3b74d032015-05-25 18:48:19 +0000249 for(i=0; i<MX_FILE; i++){
250 if( g.aFile[i].zFilename==0 ) continue;
251 if( strcmp(g.aFile[i].zFilename, zName)==0 ) return &g.aFile[i];
252 }
253 return 0;
254}
255
256/*
257** Find a VFile by name. Create it if it does not already exist and
258** initialize it to the size and content given.
259**
260** Return NULL only if the filesystem is full.
261*/
262static VFile *createVFile(const char *zName, int sz, unsigned char *pData){
263 VFile *pNew = findVFile(zName);
264 int i;
265 if( pNew ) return pNew;
266 for(i=0; i<MX_FILE && g.aFile[i].sz>=0; i++){}
267 if( i>=MX_FILE ) return 0;
268 pNew = &g.aFile[i];
drha9542b12015-05-25 19:35:42 +0000269 if( zName ){
drhe683b892016-02-15 18:47:26 +0000270 int nName = (int)strlen(zName)+1;
271 pNew->zFilename = safe_realloc(0, nName);
272 memcpy(pNew->zFilename, zName, nName);
drha9542b12015-05-25 19:35:42 +0000273 }else{
274 pNew->zFilename = 0;
275 }
drh3b74d032015-05-25 18:48:19 +0000276 pNew->nRef = 0;
277 pNew->sz = sz;
278 pNew->a = safe_realloc(0, sz);
279 if( sz>0 ) memcpy(pNew->a, pData, sz);
280 return pNew;
281}
282
283
284/*
285** Implementation of the "readfile(X)" SQL function. The entire content
286** of the file named X is read and returned as a BLOB. NULL is returned
287** if the file does not exist or is unreadable.
288*/
289static void readfileFunc(
290 sqlite3_context *context,
291 int argc,
292 sqlite3_value **argv
293){
294 const char *zName;
295 FILE *in;
296 long nIn;
297 void *pBuf;
298
299 zName = (const char*)sqlite3_value_text(argv[0]);
300 if( zName==0 ) return;
301 in = fopen(zName, "rb");
302 if( in==0 ) return;
303 fseek(in, 0, SEEK_END);
304 nIn = ftell(in);
305 rewind(in);
306 pBuf = sqlite3_malloc64( nIn );
307 if( pBuf && 1==fread(pBuf, nIn, 1, in) ){
308 sqlite3_result_blob(context, pBuf, nIn, sqlite3_free);
309 }else{
310 sqlite3_free(pBuf);
311 }
312 fclose(in);
313}
314
315/*
drh40e0e0d2015-09-22 18:51:17 +0000316** Implementation of the "writefile(X,Y)" SQL function. The argument Y
317** is written into file X. The number of bytes written is returned. Or
318** NULL is returned if something goes wrong, such as being unable to open
319** file X for writing.
320*/
321static void writefileFunc(
322 sqlite3_context *context,
323 int argc,
324 sqlite3_value **argv
325){
326 FILE *out;
327 const char *z;
328 sqlite3_int64 rc;
329 const char *zFile;
330
331 (void)argc;
332 zFile = (const char*)sqlite3_value_text(argv[0]);
333 if( zFile==0 ) return;
334 out = fopen(zFile, "wb");
335 if( out==0 ) return;
336 z = (const char*)sqlite3_value_blob(argv[1]);
337 if( z==0 ){
338 rc = 0;
339 }else{
340 rc = fwrite(z, 1, sqlite3_value_bytes(argv[1]), out);
341 }
342 fclose(out);
343 sqlite3_result_int64(context, rc);
344}
345
346
347/*
drh3b74d032015-05-25 18:48:19 +0000348** Load a list of Blob objects from the database
349*/
350static void blobListLoadFromDb(
351 sqlite3 *db, /* Read from this database */
352 const char *zSql, /* Query used to extract the blobs */
drha9542b12015-05-25 19:35:42 +0000353 int onlyId, /* Only load where id is this value */
drh3b74d032015-05-25 18:48:19 +0000354 int *pN, /* OUT: Write number of blobs loaded here */
355 Blob **ppList /* OUT: Write the head of the blob list here */
356){
357 Blob head;
358 Blob *p;
359 sqlite3_stmt *pStmt;
360 int n = 0;
361 int rc;
drha9542b12015-05-25 19:35:42 +0000362 char *z2;
drh3b74d032015-05-25 18:48:19 +0000363
drha9542b12015-05-25 19:35:42 +0000364 if( onlyId>0 ){
365 z2 = sqlite3_mprintf("%s WHERE rowid=%d", zSql, onlyId);
366 }else{
367 z2 = sqlite3_mprintf("%s", zSql);
368 }
369 rc = sqlite3_prepare_v2(db, z2, -1, &pStmt, 0);
370 sqlite3_free(z2);
drh3b74d032015-05-25 18:48:19 +0000371 if( rc ) fatalError("%s", sqlite3_errmsg(db));
372 head.pNext = 0;
373 p = &head;
374 while( SQLITE_ROW==sqlite3_step(pStmt) ){
375 int sz = sqlite3_column_bytes(pStmt, 1);
376 Blob *pNew = safe_realloc(0, sizeof(*pNew)+sz );
377 pNew->id = sqlite3_column_int(pStmt, 0);
378 pNew->sz = sz;
drhe5c5f2c2015-05-26 00:28:08 +0000379 pNew->seq = n++;
drh3b74d032015-05-25 18:48:19 +0000380 pNew->pNext = 0;
381 memcpy(pNew->a, sqlite3_column_blob(pStmt,1), sz);
382 pNew->a[sz] = 0;
383 p->pNext = pNew;
384 p = pNew;
drh3b74d032015-05-25 18:48:19 +0000385 }
386 sqlite3_finalize(pStmt);
387 *pN = n;
388 *ppList = head.pNext;
389}
390
391/*
392** Free a list of Blob objects
393*/
394static void blobListFree(Blob *p){
395 Blob *pNext;
396 while( p ){
397 pNext = p->pNext;
398 free(p);
399 p = pNext;
400 }
401}
402
403
404/* Return the current wall-clock time */
405static sqlite3_int64 timeOfDay(void){
406 static sqlite3_vfs *clockVfs = 0;
407 sqlite3_int64 t;
408 if( clockVfs==0 ) clockVfs = sqlite3_vfs_find(0);
409 if( clockVfs->iVersion>=1 && clockVfs->xCurrentTimeInt64!=0 ){
410 clockVfs->xCurrentTimeInt64(clockVfs, &t);
411 }else{
412 double r;
413 clockVfs->xCurrentTime(clockVfs, &r);
414 t = (sqlite3_int64)(r*86400000.0);
415 }
416 return t;
417}
418
419/* Methods for the VHandle object
420*/
421static int inmemClose(sqlite3_file *pFile){
422 VHandle *p = (VHandle*)pFile;
423 VFile *pVFile = p->pVFile;
424 pVFile->nRef--;
425 if( pVFile->nRef==0 && pVFile->zFilename==0 ){
426 pVFile->sz = -1;
427 free(pVFile->a);
428 pVFile->a = 0;
429 }
430 return SQLITE_OK;
431}
432static int inmemRead(
433 sqlite3_file *pFile, /* Read from this open file */
434 void *pData, /* Store content in this buffer */
435 int iAmt, /* Bytes of content */
436 sqlite3_int64 iOfst /* Start reading here */
437){
438 VHandle *pHandle = (VHandle*)pFile;
439 VFile *pVFile = pHandle->pVFile;
440 if( iOfst<0 || iOfst>=pVFile->sz ){
441 memset(pData, 0, iAmt);
442 return SQLITE_IOERR_SHORT_READ;
443 }
444 if( iOfst+iAmt>pVFile->sz ){
445 memset(pData, 0, iAmt);
drh1573dc32015-05-25 22:29:26 +0000446 iAmt = (int)(pVFile->sz - iOfst);
drh3b74d032015-05-25 18:48:19 +0000447 memcpy(pData, pVFile->a, iAmt);
448 return SQLITE_IOERR_SHORT_READ;
449 }
drhaca7ea12015-05-25 23:14:37 +0000450 memcpy(pData, pVFile->a + iOfst, iAmt);
drh3b74d032015-05-25 18:48:19 +0000451 return SQLITE_OK;
452}
453static int inmemWrite(
454 sqlite3_file *pFile, /* Write to this file */
455 const void *pData, /* Content to write */
456 int iAmt, /* bytes to write */
457 sqlite3_int64 iOfst /* Start writing here */
458){
459 VHandle *pHandle = (VHandle*)pFile;
460 VFile *pVFile = pHandle->pVFile;
461 if( iOfst+iAmt > pVFile->sz ){
drha9542b12015-05-25 19:35:42 +0000462 if( iOfst+iAmt >= MX_FILE_SZ ){
463 return SQLITE_FULL;
464 }
drh1573dc32015-05-25 22:29:26 +0000465 pVFile->a = safe_realloc(pVFile->a, (int)(iOfst+iAmt));
drh908aced2015-05-26 16:12:45 +0000466 if( iOfst > pVFile->sz ){
467 memset(pVFile->a + pVFile->sz, 0, (int)(iOfst - pVFile->sz));
468 }
drh1573dc32015-05-25 22:29:26 +0000469 pVFile->sz = (int)(iOfst + iAmt);
drh3b74d032015-05-25 18:48:19 +0000470 }
471 memcpy(pVFile->a + iOfst, pData, iAmt);
472 return SQLITE_OK;
473}
474static int inmemTruncate(sqlite3_file *pFile, sqlite3_int64 iSize){
475 VHandle *pHandle = (VHandle*)pFile;
476 VFile *pVFile = pHandle->pVFile;
drh1573dc32015-05-25 22:29:26 +0000477 if( pVFile->sz>iSize && iSize>=0 ) pVFile->sz = (int)iSize;
drh3b74d032015-05-25 18:48:19 +0000478 return SQLITE_OK;
479}
480static int inmemSync(sqlite3_file *pFile, int flags){
481 return SQLITE_OK;
482}
483static int inmemFileSize(sqlite3_file *pFile, sqlite3_int64 *pSize){
484 *pSize = ((VHandle*)pFile)->pVFile->sz;
485 return SQLITE_OK;
486}
487static int inmemLock(sqlite3_file *pFile, int type){
488 return SQLITE_OK;
489}
490static int inmemUnlock(sqlite3_file *pFile, int type){
491 return SQLITE_OK;
492}
493static int inmemCheckReservedLock(sqlite3_file *pFile, int *pOut){
494 *pOut = 0;
495 return SQLITE_OK;
496}
497static int inmemFileControl(sqlite3_file *pFile, int op, void *pArg){
498 return SQLITE_NOTFOUND;
499}
500static int inmemSectorSize(sqlite3_file *pFile){
501 return 512;
502}
503static int inmemDeviceCharacteristics(sqlite3_file *pFile){
504 return
505 SQLITE_IOCAP_SAFE_APPEND |
506 SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN |
507 SQLITE_IOCAP_POWERSAFE_OVERWRITE;
508}
509
510
511/* Method table for VHandle
512*/
513static sqlite3_io_methods VHandleMethods = {
514 /* iVersion */ 1,
515 /* xClose */ inmemClose,
516 /* xRead */ inmemRead,
517 /* xWrite */ inmemWrite,
518 /* xTruncate */ inmemTruncate,
519 /* xSync */ inmemSync,
520 /* xFileSize */ inmemFileSize,
521 /* xLock */ inmemLock,
522 /* xUnlock */ inmemUnlock,
523 /* xCheck... */ inmemCheckReservedLock,
524 /* xFileCtrl */ inmemFileControl,
525 /* xSectorSz */ inmemSectorSize,
526 /* xDevchar */ inmemDeviceCharacteristics,
527 /* xShmMap */ 0,
528 /* xShmLock */ 0,
529 /* xShmBarrier */ 0,
530 /* xShmUnmap */ 0,
531 /* xFetch */ 0,
532 /* xUnfetch */ 0
533};
534
535/*
536** Open a new file in the inmem VFS. All files are anonymous and are
537** delete-on-close.
538*/
539static int inmemOpen(
540 sqlite3_vfs *pVfs,
541 const char *zFilename,
542 sqlite3_file *pFile,
543 int openFlags,
544 int *pOutFlags
545){
546 VFile *pVFile = createVFile(zFilename, 0, (unsigned char*)"");
547 VHandle *pHandle = (VHandle*)pFile;
drha9542b12015-05-25 19:35:42 +0000548 if( pVFile==0 ){
549 return SQLITE_FULL;
550 }
drh3b74d032015-05-25 18:48:19 +0000551 pHandle->pVFile = pVFile;
552 pVFile->nRef++;
553 pFile->pMethods = &VHandleMethods;
554 if( pOutFlags ) *pOutFlags = openFlags;
555 return SQLITE_OK;
556}
557
558/*
559** Delete a file by name
560*/
561static int inmemDelete(
562 sqlite3_vfs *pVfs,
563 const char *zFilename,
564 int syncdir
565){
566 VFile *pVFile = findVFile(zFilename);
567 if( pVFile==0 ) return SQLITE_OK;
568 if( pVFile->nRef==0 ){
569 free(pVFile->zFilename);
570 pVFile->zFilename = 0;
571 pVFile->sz = -1;
572 free(pVFile->a);
573 pVFile->a = 0;
574 return SQLITE_OK;
575 }
576 return SQLITE_IOERR_DELETE;
577}
578
579/* Check for the existance of a file
580*/
581static int inmemAccess(
582 sqlite3_vfs *pVfs,
583 const char *zFilename,
584 int flags,
585 int *pResOut
586){
587 VFile *pVFile = findVFile(zFilename);
588 *pResOut = pVFile!=0;
589 return SQLITE_OK;
590}
591
592/* Get the canonical pathname for a file
593*/
594static int inmemFullPathname(
595 sqlite3_vfs *pVfs,
596 const char *zFilename,
597 int nOut,
598 char *zOut
599){
600 sqlite3_snprintf(nOut, zOut, "%s", zFilename);
601 return SQLITE_OK;
602}
603
drhbeaf5142016-12-26 00:15:56 +0000604/* Always use the same random see, for repeatability.
605*/
606static int inmemRandomness(sqlite3_vfs *NotUsed, int nBuf, char *zBuf){
607 memset(zBuf, 0, nBuf);
608 memcpy(zBuf, &g.uRandom, nBuf<sizeof(g.uRandom) ? nBuf : sizeof(g.uRandom));
609 return nBuf;
610}
611
drh3b74d032015-05-25 18:48:19 +0000612/*
613** Register the VFS that reads from the g.aFile[] set of files.
614*/
drhbeaf5142016-12-26 00:15:56 +0000615static void inmemVfsRegister(int makeDefault){
drh3b74d032015-05-25 18:48:19 +0000616 static sqlite3_vfs inmemVfs;
617 sqlite3_vfs *pDefault = sqlite3_vfs_find(0);
drh5337dac2015-11-25 15:15:03 +0000618 inmemVfs.iVersion = 3;
drh3b74d032015-05-25 18:48:19 +0000619 inmemVfs.szOsFile = sizeof(VHandle);
620 inmemVfs.mxPathname = 200;
621 inmemVfs.zName = "inmem";
622 inmemVfs.xOpen = inmemOpen;
623 inmemVfs.xDelete = inmemDelete;
624 inmemVfs.xAccess = inmemAccess;
625 inmemVfs.xFullPathname = inmemFullPathname;
drhbeaf5142016-12-26 00:15:56 +0000626 inmemVfs.xRandomness = inmemRandomness;
drh3b74d032015-05-25 18:48:19 +0000627 inmemVfs.xSleep = pDefault->xSleep;
drh5337dac2015-11-25 15:15:03 +0000628 inmemVfs.xCurrentTimeInt64 = pDefault->xCurrentTimeInt64;
drhbeaf5142016-12-26 00:15:56 +0000629 sqlite3_vfs_register(&inmemVfs, makeDefault);
drh3b74d032015-05-25 18:48:19 +0000630};
631
drh3b74d032015-05-25 18:48:19 +0000632/*
drhe5c5f2c2015-05-26 00:28:08 +0000633** Allowed values for the runFlags parameter to runSql()
634*/
635#define SQL_TRACE 0x0001 /* Print each SQL statement as it is prepared */
636#define SQL_OUTPUT 0x0002 /* Show the SQL output */
637
638/*
drh3b74d032015-05-25 18:48:19 +0000639** Run multiple commands of SQL. Similar to sqlite3_exec(), but does not
640** stop if an error is encountered.
641*/
drhe5c5f2c2015-05-26 00:28:08 +0000642static void runSql(sqlite3 *db, const char *zSql, unsigned runFlags){
drh3b74d032015-05-25 18:48:19 +0000643 const char *zMore;
644 sqlite3_stmt *pStmt;
645
646 while( zSql && zSql[0] ){
647 zMore = 0;
648 pStmt = 0;
649 sqlite3_prepare_v2(db, zSql, -1, &pStmt, &zMore);
drh4ab31472015-05-25 22:17:06 +0000650 if( zMore==zSql ) break;
drhe5c5f2c2015-05-26 00:28:08 +0000651 if( runFlags & SQL_TRACE ){
drh4ab31472015-05-25 22:17:06 +0000652 const char *z = zSql;
653 int n;
drhc56fac72015-10-29 13:48:15 +0000654 while( z<zMore && ISSPACE(z[0]) ) z++;
drh4ab31472015-05-25 22:17:06 +0000655 n = (int)(zMore - z);
drhc56fac72015-10-29 13:48:15 +0000656 while( n>0 && ISSPACE(z[n-1]) ) n--;
drh4ab31472015-05-25 22:17:06 +0000657 if( n==0 ) break;
658 if( pStmt==0 ){
659 printf("TRACE: %.*s (error: %s)\n", n, z, sqlite3_errmsg(db));
660 }else{
661 printf("TRACE: %.*s\n", n, z);
662 }
663 }
drh3b74d032015-05-25 18:48:19 +0000664 zSql = zMore;
665 if( pStmt ){
drhe5c5f2c2015-05-26 00:28:08 +0000666 if( (runFlags & SQL_OUTPUT)==0 ){
667 while( SQLITE_ROW==sqlite3_step(pStmt) ){}
668 }else{
669 int nCol = -1;
670 while( SQLITE_ROW==sqlite3_step(pStmt) ){
671 int i;
672 if( nCol<0 ){
673 nCol = sqlite3_column_count(pStmt);
674 }else if( nCol>0 ){
675 printf("--------------------------------------------\n");
676 }
677 for(i=0; i<nCol; i++){
678 int eType = sqlite3_column_type(pStmt,i);
679 printf("%s = ", sqlite3_column_name(pStmt,i));
680 switch( eType ){
681 case SQLITE_NULL: {
682 printf("NULL\n");
683 break;
684 }
685 case SQLITE_INTEGER: {
686 printf("INT %s\n", sqlite3_column_text(pStmt,i));
687 break;
688 }
689 case SQLITE_FLOAT: {
690 printf("FLOAT %s\n", sqlite3_column_text(pStmt,i));
691 break;
692 }
693 case SQLITE_TEXT: {
694 printf("TEXT [%s]\n", sqlite3_column_text(pStmt,i));
695 break;
696 }
697 case SQLITE_BLOB: {
698 printf("BLOB (%d bytes)\n", sqlite3_column_bytes(pStmt,i));
699 break;
700 }
701 }
702 }
703 }
704 }
drh3b74d032015-05-25 18:48:19 +0000705 sqlite3_finalize(pStmt);
drh3b74d032015-05-25 18:48:19 +0000706 }
707 }
708}
709
drha9542b12015-05-25 19:35:42 +0000710/*
drh9a645862015-06-24 12:44:42 +0000711** Rebuild the database file.
712**
713** (1) Remove duplicate entries
714** (2) Put all entries in order
715** (3) Vacuum
716*/
717static void rebuild_database(sqlite3 *db){
718 int rc;
719 rc = sqlite3_exec(db,
720 "BEGIN;\n"
721 "CREATE TEMP TABLE dbx AS SELECT DISTINCT dbcontent FROM db;\n"
722 "DELETE FROM db;\n"
drh5ecf9032018-05-08 12:49:53 +0000723 "INSERT INTO db(dbid, dbcontent) "
724 " SELECT NULL, dbcontent FROM dbx ORDER BY 2;\n"
drh9a645862015-06-24 12:44:42 +0000725 "DROP TABLE dbx;\n"
726 "CREATE TEMP TABLE sx AS SELECT DISTINCT sqltext FROM xsql;\n"
727 "DELETE FROM xsql;\n"
drh5ecf9032018-05-08 12:49:53 +0000728 "INSERT INTO xsql(sqlid,sqltext) "
729 " SELECT NULL, sqltext FROM sx ORDER BY 2;\n"
drh9a645862015-06-24 12:44:42 +0000730 "DROP TABLE sx;\n"
731 "COMMIT;\n"
732 "PRAGMA page_size=1024;\n"
733 "VACUUM;\n", 0, 0, 0);
734 if( rc ) fatalError("cannot rebuild: %s", sqlite3_errmsg(db));
735}
736
737/*
drh53e66c32015-07-24 15:49:23 +0000738** Return the value of a hexadecimal digit. Return -1 if the input
739** is not a hex digit.
740*/
741static int hexDigitValue(char c){
742 if( c>='0' && c<='9' ) return c - '0';
743 if( c>='a' && c<='f' ) return c - 'a' + 10;
744 if( c>='A' && c<='F' ) return c - 'A' + 10;
745 return -1;
746}
747
748/*
749** Interpret zArg as an integer value, possibly with suffixes.
750*/
751static int integerValue(const char *zArg){
752 sqlite3_int64 v = 0;
753 static const struct { char *zSuffix; int iMult; } aMult[] = {
754 { "KiB", 1024 },
755 { "MiB", 1024*1024 },
756 { "GiB", 1024*1024*1024 },
757 { "KB", 1000 },
758 { "MB", 1000000 },
759 { "GB", 1000000000 },
760 { "K", 1000 },
761 { "M", 1000000 },
762 { "G", 1000000000 },
763 };
764 int i;
765 int isNeg = 0;
766 if( zArg[0]=='-' ){
767 isNeg = 1;
768 zArg++;
769 }else if( zArg[0]=='+' ){
770 zArg++;
771 }
772 if( zArg[0]=='0' && zArg[1]=='x' ){
773 int x;
774 zArg += 2;
775 while( (x = hexDigitValue(zArg[0]))>=0 ){
776 v = (v<<4) + x;
777 zArg++;
778 }
779 }else{
drhc56fac72015-10-29 13:48:15 +0000780 while( ISDIGIT(zArg[0]) ){
drh53e66c32015-07-24 15:49:23 +0000781 v = v*10 + zArg[0] - '0';
782 zArg++;
783 }
784 }
785 for(i=0; i<sizeof(aMult)/sizeof(aMult[0]); i++){
786 if( sqlite3_stricmp(aMult[i].zSuffix, zArg)==0 ){
787 v *= aMult[i].iMult;
788 break;
789 }
790 }
791 if( v>0x7fffffff ) fatalError("parameter too large - max 2147483648");
792 return (int)(isNeg? -v : v);
793}
794
795/*
drha9542b12015-05-25 19:35:42 +0000796** Print sketchy documentation for this utility program
797*/
798static void showHelp(void){
799 printf("Usage: %s [options] SOURCE-DB ?ARGS...?\n", g.zArgv0);
800 printf(
801"Read databases and SQL scripts from SOURCE-DB and execute each script against\n"
802"each database, checking for crashes and memory leaks.\n"
803"Options:\n"
drha36e01a2016-08-03 13:40:54 +0000804" --cell-size-check Set the PRAGMA cell_size_check=ON\n"
805" --dbid N Use only the database where dbid=N\n"
806" --export-db DIR Write databases to files(s) in DIR. Works with --dbid\n"
807" --export-sql DIR Write SQL to file(s) in DIR. Also works with --sqlid\n"
808" --help Show this help text\n"
809" -q|--quiet Reduced output\n"
810" --limit-mem N Limit memory used by test SQLite instance to N bytes\n"
811" --limit-vdbe Panic if any test runs for more than 100,000 cycles\n"
drh5ecf9032018-05-08 12:49:53 +0000812" --load-sql ARGS... Load SQL scripts fron files into SOURCE-DB\n"
drha36e01a2016-08-03 13:40:54 +0000813" --load-db ARGS... Load template databases from files into SOURCE_DB\n"
814" -m TEXT Add a description to the database\n"
815" --native-vfs Use the native VFS for initially empty database files\n"
drh174f8552017-03-20 22:58:27 +0000816" --native-malloc Turn off MEMSYS3/5 and Lookaside\n"
drhea432ba2016-11-11 16:33:47 +0000817" --oss-fuzz Enable OSS-FUZZ testing\n"
drhbeaf5142016-12-26 00:15:56 +0000818" --prng-seed N Seed value for the PRGN inside of SQLite\n"
drha36e01a2016-08-03 13:40:54 +0000819" --rebuild Rebuild and vacuum the database file\n"
820" --result-trace Show the results of each SQL command\n"
821" --sqlid N Use only SQL where sqlid=N\n"
822" --timeout N Abort if any single test needs more than N seconds\n"
823" -v|--verbose Increased output. Repeat for more output.\n"
drha9542b12015-05-25 19:35:42 +0000824 );
825}
826
drh3b74d032015-05-25 18:48:19 +0000827int main(int argc, char **argv){
828 sqlite3_int64 iBegin; /* Start time of this program */
drh3b74d032015-05-25 18:48:19 +0000829 int quietFlag = 0; /* True if --quiet or -q */
830 int verboseFlag = 0; /* True if --verbose or -v */
831 char *zInsSql = 0; /* SQL statement for --load-db or --load-sql */
drh5ecf9032018-05-08 12:49:53 +0000832 int iFirstInsArg = 0; /* First argv[] for --load-db or --load-sql */
drh3b74d032015-05-25 18:48:19 +0000833 sqlite3 *db = 0; /* The open database connection */
drhd9972ef2015-05-26 17:57:56 +0000834 sqlite3_stmt *pStmt; /* A prepared statement */
drh3b74d032015-05-25 18:48:19 +0000835 int rc; /* Result code from SQLite interface calls */
836 Blob *pSql; /* For looping over SQL scripts */
837 Blob *pDb; /* For looping over template databases */
838 int i; /* Loop index for the argv[] loop */
drha9542b12015-05-25 19:35:42 +0000839 int onlySqlid = -1; /* --sqlid */
840 int onlyDbid = -1; /* --dbid */
drh15b31282015-05-25 21:59:05 +0000841 int nativeFlag = 0; /* --native-vfs */
drh9a645862015-06-24 12:44:42 +0000842 int rebuildFlag = 0; /* --rebuild */
drhd83e2832015-06-24 14:45:44 +0000843 int vdbeLimitFlag = 0; /* --limit-vdbe */
drh94701b02015-06-24 13:25:34 +0000844 int timeoutTest = 0; /* undocumented --timeout-test flag */
drhe5c5f2c2015-05-26 00:28:08 +0000845 int runFlags = 0; /* Flags sent to runSql() */
drhd9972ef2015-05-26 17:57:56 +0000846 char *zMsg = 0; /* Add this message */
847 int nSrcDb = 0; /* Number of source databases */
848 char **azSrcDb = 0; /* Array of source database names */
849 int iSrcDb; /* Loop over all source databases */
850 int nTest = 0; /* Total number of tests performed */
851 char *zDbName = ""; /* Appreviated name of a source database */
drh5ecf9032018-05-08 12:49:53 +0000852 const char *zFailCode = 0; /* Value of the TEST_FAILURE env variable */
drh1421d982015-05-27 03:46:18 +0000853 int cellSzCkFlag = 0; /* --cell-size-check */
drh5ecf9032018-05-08 12:49:53 +0000854 int sqlFuzz = 0; /* True for SQL fuzz. False for DB fuzz */
drhd4ddcbc2015-06-25 02:25:28 +0000855 int iTimeout = 120; /* Default 120-second timeout */
drh53e66c32015-07-24 15:49:23 +0000856 int nMem = 0; /* Memory limit */
drh362b66f2016-11-14 18:27:41 +0000857 int nMemThisDb = 0; /* Memory limit set by the CONFIG table */
drh40e0e0d2015-09-22 18:51:17 +0000858 char *zExpDb = 0; /* Write Databases to files in this directory */
859 char *zExpSql = 0; /* Write SQL to files in this directory */
drh6653fbe2015-11-13 20:52:49 +0000860 void *pHeap = 0; /* Heap for use by SQLite */
drhea432ba2016-11-11 16:33:47 +0000861 int ossFuzz = 0; /* enable OSS-FUZZ testing */
drh362b66f2016-11-14 18:27:41 +0000862 int ossFuzzThisDb = 0; /* ossFuzz value for this particular database */
drh174f8552017-03-20 22:58:27 +0000863 int nativeMalloc = 0; /* Turn off MEMSYS3/5 and lookaside if true */
drhbeaf5142016-12-26 00:15:56 +0000864 sqlite3_vfs *pDfltVfs; /* The default VFS */
drhf2cf4122018-05-08 13:03:31 +0000865 int openFlags4Data; /* Flags for sqlite3_open_v2() */
drh3b74d032015-05-25 18:48:19 +0000866
867 iBegin = timeOfDay();
drh94701b02015-06-24 13:25:34 +0000868#ifdef __unix__
869 signal(SIGALRM, timeoutHandler);
870#endif
drh3b74d032015-05-25 18:48:19 +0000871 g.zArgv0 = argv[0];
drhf2cf4122018-05-08 13:03:31 +0000872 openFlags4Data = SQLITE_OPEN_READONLY;
drh4d6fda72015-05-26 18:58:32 +0000873 zFailCode = getenv("TEST_FAILURE");
drhbeaf5142016-12-26 00:15:56 +0000874 pDfltVfs = sqlite3_vfs_find(0);
875 inmemVfsRegister(1);
drh3b74d032015-05-25 18:48:19 +0000876 for(i=1; i<argc; i++){
877 const char *z = argv[i];
878 if( z[0]=='-' ){
879 z++;
880 if( z[0]=='-' ) z++;
drh1421d982015-05-27 03:46:18 +0000881 if( strcmp(z,"cell-size-check")==0 ){
882 cellSzCkFlag = 1;
883 }else
drha9542b12015-05-25 19:35:42 +0000884 if( strcmp(z,"dbid")==0 ){
885 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
drh53e66c32015-07-24 15:49:23 +0000886 onlyDbid = integerValue(argv[++i]);
drha9542b12015-05-25 19:35:42 +0000887 }else
drh40e0e0d2015-09-22 18:51:17 +0000888 if( strcmp(z,"export-db")==0 ){
889 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
890 zExpDb = argv[++i];
891 }else
892 if( strcmp(z,"export-sql")==0 ){
893 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
894 zExpSql = argv[++i];
895 }else
drh3b74d032015-05-25 18:48:19 +0000896 if( strcmp(z,"help")==0 ){
897 showHelp();
898 return 0;
899 }else
drh53e66c32015-07-24 15:49:23 +0000900 if( strcmp(z,"limit-mem")==0 ){
drh8d52c3b2016-01-06 15:54:53 +0000901#if !defined(SQLITE_ENABLE_MEMSYS3) && !defined(SQLITE_ENABLE_MEMSYS5)
902 fatalError("the %s option requires -DSQLITE_ENABLE_MEMSYS5 or _MEMSYS3",
903 argv[i]);
904#else
drh53e66c32015-07-24 15:49:23 +0000905 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
906 nMem = integerValue(argv[++i]);
drh8d52c3b2016-01-06 15:54:53 +0000907#endif
drh53e66c32015-07-24 15:49:23 +0000908 }else
drhd83e2832015-06-24 14:45:44 +0000909 if( strcmp(z,"limit-vdbe")==0 ){
910 vdbeLimitFlag = 1;
911 }else
drh3b74d032015-05-25 18:48:19 +0000912 if( strcmp(z,"load-sql")==0 ){
drh5ecf9032018-05-08 12:49:53 +0000913 zInsSql = "INSERT INTO xsql(sqltext)VALUES(CAST(readfile(?1) AS text))";
drh3b74d032015-05-25 18:48:19 +0000914 iFirstInsArg = i+1;
drhf2cf4122018-05-08 13:03:31 +0000915 openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
drh3b74d032015-05-25 18:48:19 +0000916 break;
917 }else
918 if( strcmp(z,"load-db")==0 ){
919 zInsSql = "INSERT INTO db(dbcontent) VALUES(readfile(?1))";
920 iFirstInsArg = i+1;
drhf2cf4122018-05-08 13:03:31 +0000921 openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
drh3b74d032015-05-25 18:48:19 +0000922 break;
923 }else
drhd9972ef2015-05-26 17:57:56 +0000924 if( strcmp(z,"m")==0 ){
925 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
926 zMsg = argv[++i];
drhf2cf4122018-05-08 13:03:31 +0000927 openFlags4Data = SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE;
drhd9972ef2015-05-26 17:57:56 +0000928 }else
drh174f8552017-03-20 22:58:27 +0000929 if( strcmp(z,"native-malloc")==0 ){
930 nativeMalloc = 1;
931 }else
drh15b31282015-05-25 21:59:05 +0000932 if( strcmp(z,"native-vfs")==0 ){
933 nativeFlag = 1;
934 }else
drhea432ba2016-11-11 16:33:47 +0000935 if( strcmp(z,"oss-fuzz")==0 ){
936 ossFuzz = 1;
937 }else
drhbeaf5142016-12-26 00:15:56 +0000938 if( strcmp(z,"prng-seed")==0 ){
939 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
940 g.uRandom = atoi(argv[++i]);
941 }else
drh3b74d032015-05-25 18:48:19 +0000942 if( strcmp(z,"quiet")==0 || strcmp(z,"q")==0 ){
943 quietFlag = 1;
944 verboseFlag = 0;
945 }else
drh9a645862015-06-24 12:44:42 +0000946 if( strcmp(z,"rebuild")==0 ){
947 rebuildFlag = 1;
drhf2cf4122018-05-08 13:03:31 +0000948 openFlags4Data = SQLITE_OPEN_READWRITE;
drh9a645862015-06-24 12:44:42 +0000949 }else
drhe5c5f2c2015-05-26 00:28:08 +0000950 if( strcmp(z,"result-trace")==0 ){
951 runFlags |= SQL_OUTPUT;
952 }else
drha9542b12015-05-25 19:35:42 +0000953 if( strcmp(z,"sqlid")==0 ){
954 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
drh53e66c32015-07-24 15:49:23 +0000955 onlySqlid = integerValue(argv[++i]);
drha9542b12015-05-25 19:35:42 +0000956 }else
drh92298632015-06-24 23:44:30 +0000957 if( strcmp(z,"timeout")==0 ){
958 if( i>=argc-1 ) fatalError("missing arguments on %s", argv[i]);
drh53e66c32015-07-24 15:49:23 +0000959 iTimeout = integerValue(argv[++i]);
drh92298632015-06-24 23:44:30 +0000960 }else
drh94701b02015-06-24 13:25:34 +0000961 if( strcmp(z,"timeout-test")==0 ){
962 timeoutTest = 1;
963#ifndef __unix__
964 fatalError("timeout is not available on non-unix systems");
965#endif
966 }else
drh3b74d032015-05-25 18:48:19 +0000967 if( strcmp(z,"verbose")==0 || strcmp(z,"v")==0 ){
968 quietFlag = 0;
drh4c9d2282016-02-18 14:03:15 +0000969 verboseFlag++;
970 if( verboseFlag>1 ) runFlags |= SQL_TRACE;
drh3b74d032015-05-25 18:48:19 +0000971 }else
972 {
973 fatalError("unknown option: %s", argv[i]);
974 }
975 }else{
drhd9972ef2015-05-26 17:57:56 +0000976 nSrcDb++;
977 azSrcDb = safe_realloc(azSrcDb, nSrcDb*sizeof(azSrcDb[0]));
978 azSrcDb[nSrcDb-1] = argv[i];
drh3b74d032015-05-25 18:48:19 +0000979 }
980 }
drhd9972ef2015-05-26 17:57:56 +0000981 if( nSrcDb==0 ) fatalError("no source database specified");
982 if( nSrcDb>1 ){
983 if( zMsg ){
984 fatalError("cannot change the description of more than one database");
drh3b74d032015-05-25 18:48:19 +0000985 }
drhd9972ef2015-05-26 17:57:56 +0000986 if( zInsSql ){
987 fatalError("cannot import into more than one database");
988 }
drh3b74d032015-05-25 18:48:19 +0000989 }
990
drhd9972ef2015-05-26 17:57:56 +0000991 /* Process each source database separately */
992 for(iSrcDb=0; iSrcDb<nSrcDb; iSrcDb++){
drhbeaf5142016-12-26 00:15:56 +0000993 rc = sqlite3_open_v2(azSrcDb[iSrcDb], &db,
drhf2cf4122018-05-08 13:03:31 +0000994 openFlags4Data, pDfltVfs->zName);
drhd9972ef2015-05-26 17:57:56 +0000995 if( rc ){
996 fatalError("cannot open source database %s - %s",
997 azSrcDb[iSrcDb], sqlite3_errmsg(db));
998 }
drh9a645862015-06-24 12:44:42 +0000999 rc = sqlite3_exec(db,
drhd9972ef2015-05-26 17:57:56 +00001000 "CREATE TABLE IF NOT EXISTS db(\n"
1001 " dbid INTEGER PRIMARY KEY, -- database id\n"
1002 " dbcontent BLOB -- database disk file image\n"
1003 ");\n"
1004 "CREATE TABLE IF NOT EXISTS xsql(\n"
1005 " sqlid INTEGER PRIMARY KEY, -- SQL script id\n"
1006 " sqltext TEXT -- Text of SQL statements to run\n"
1007 ");"
1008 "CREATE TABLE IF NOT EXISTS readme(\n"
1009 " msg TEXT -- Human-readable description of this file\n"
1010 ");", 0, 0, 0);
1011 if( rc ) fatalError("cannot create schema: %s", sqlite3_errmsg(db));
1012 if( zMsg ){
1013 char *zSql;
1014 zSql = sqlite3_mprintf(
1015 "DELETE FROM readme; INSERT INTO readme(msg) VALUES(%Q)", zMsg);
1016 rc = sqlite3_exec(db, zSql, 0, 0, 0);
1017 sqlite3_free(zSql);
1018 if( rc ) fatalError("cannot change description: %s", sqlite3_errmsg(db));
1019 }
drh362b66f2016-11-14 18:27:41 +00001020 ossFuzzThisDb = ossFuzz;
1021
1022 /* If the CONFIG(name,value) table exists, read db-specific settings
1023 ** from that table */
1024 if( sqlite3_table_column_metadata(db,0,"config",0,0,0,0,0,0)==SQLITE_OK ){
drh5ecf9032018-05-08 12:49:53 +00001025 rc = sqlite3_prepare_v2(db, "SELECT name, value FROM config",
1026 -1, &pStmt, 0);
drh362b66f2016-11-14 18:27:41 +00001027 if( rc ) fatalError("cannot prepare query of CONFIG table: %s",
1028 sqlite3_errmsg(db));
1029 while( SQLITE_ROW==sqlite3_step(pStmt) ){
1030 const char *zName = (const char *)sqlite3_column_text(pStmt,0);
1031 if( zName==0 ) continue;
1032 if( strcmp(zName, "oss-fuzz")==0 ){
1033 ossFuzzThisDb = sqlite3_column_int(pStmt,1);
1034 if( verboseFlag ) printf("Config: oss-fuzz=%d\n", ossFuzzThisDb);
1035 }
drh174f8552017-03-20 22:58:27 +00001036 if( strcmp(zName, "limit-mem")==0 && !nativeMalloc ){
drh362b66f2016-11-14 18:27:41 +00001037#if !defined(SQLITE_ENABLE_MEMSYS3) && !defined(SQLITE_ENABLE_MEMSYS5)
1038 fatalError("the limit-mem option requires -DSQLITE_ENABLE_MEMSYS5"
1039 " or _MEMSYS3");
1040#else
1041 nMemThisDb = sqlite3_column_int(pStmt,1);
1042 if( verboseFlag ) printf("Config: limit-mem=%d\n", nMemThisDb);
1043#endif
1044 }
1045 }
1046 sqlite3_finalize(pStmt);
1047 }
1048
drhd9972ef2015-05-26 17:57:56 +00001049 if( zInsSql ){
1050 sqlite3_create_function(db, "readfile", 1, SQLITE_UTF8, 0,
1051 readfileFunc, 0, 0);
1052 rc = sqlite3_prepare_v2(db, zInsSql, -1, &pStmt, 0);
1053 if( rc ) fatalError("cannot prepare statement [%s]: %s",
1054 zInsSql, sqlite3_errmsg(db));
1055 rc = sqlite3_exec(db, "BEGIN", 0, 0, 0);
1056 if( rc ) fatalError("cannot start a transaction");
1057 for(i=iFirstInsArg; i<argc; i++){
1058 sqlite3_bind_text(pStmt, 1, argv[i], -1, SQLITE_STATIC);
1059 sqlite3_step(pStmt);
1060 rc = sqlite3_reset(pStmt);
1061 if( rc ) fatalError("insert failed for %s", argv[i]);
drh3b74d032015-05-25 18:48:19 +00001062 }
drhd9972ef2015-05-26 17:57:56 +00001063 sqlite3_finalize(pStmt);
1064 rc = sqlite3_exec(db, "COMMIT", 0, 0, 0);
drh5ecf9032018-05-08 12:49:53 +00001065 if( rc ) fatalError("cannot commit the transaction: %s",
1066 sqlite3_errmsg(db));
drh9a645862015-06-24 12:44:42 +00001067 rebuild_database(db);
drh3b74d032015-05-25 18:48:19 +00001068 sqlite3_close(db);
drhd9972ef2015-05-26 17:57:56 +00001069 return 0;
drh3b74d032015-05-25 18:48:19 +00001070 }
drh16f05822017-03-20 20:42:21 +00001071 rc = sqlite3_exec(db, "PRAGMA query_only=1;", 0, 0, 0);
1072 if( rc ) fatalError("cannot set database to query-only");
drh40e0e0d2015-09-22 18:51:17 +00001073 if( zExpDb!=0 || zExpSql!=0 ){
1074 sqlite3_create_function(db, "writefile", 2, SQLITE_UTF8, 0,
1075 writefileFunc, 0, 0);
1076 if( zExpDb!=0 ){
1077 const char *zExDb =
1078 "SELECT writefile(printf('%s/db%06d.db',?1,dbid),dbcontent),"
1079 " dbid, printf('%s/db%06d.db',?1,dbid), length(dbcontent)"
1080 " FROM db WHERE ?2<0 OR dbid=?2;";
1081 rc = sqlite3_prepare_v2(db, zExDb, -1, &pStmt, 0);
1082 if( rc ) fatalError("cannot prepare statement [%s]: %s",
1083 zExDb, sqlite3_errmsg(db));
1084 sqlite3_bind_text64(pStmt, 1, zExpDb, strlen(zExpDb),
1085 SQLITE_STATIC, SQLITE_UTF8);
1086 sqlite3_bind_int(pStmt, 2, onlyDbid);
1087 while( sqlite3_step(pStmt)==SQLITE_ROW ){
1088 printf("write db-%d (%d bytes) into %s\n",
1089 sqlite3_column_int(pStmt,1),
1090 sqlite3_column_int(pStmt,3),
1091 sqlite3_column_text(pStmt,2));
1092 }
1093 sqlite3_finalize(pStmt);
1094 }
1095 if( zExpSql!=0 ){
1096 const char *zExSql =
1097 "SELECT writefile(printf('%s/sql%06d.txt',?1,sqlid),sqltext),"
1098 " sqlid, printf('%s/sql%06d.txt',?1,sqlid), length(sqltext)"
1099 " FROM xsql WHERE ?2<0 OR sqlid=?2;";
1100 rc = sqlite3_prepare_v2(db, zExSql, -1, &pStmt, 0);
1101 if( rc ) fatalError("cannot prepare statement [%s]: %s",
1102 zExSql, sqlite3_errmsg(db));
1103 sqlite3_bind_text64(pStmt, 1, zExpSql, strlen(zExpSql),
1104 SQLITE_STATIC, SQLITE_UTF8);
1105 sqlite3_bind_int(pStmt, 2, onlySqlid);
1106 while( sqlite3_step(pStmt)==SQLITE_ROW ){
1107 printf("write sql-%d (%d bytes) into %s\n",
1108 sqlite3_column_int(pStmt,1),
1109 sqlite3_column_int(pStmt,3),
1110 sqlite3_column_text(pStmt,2));
1111 }
1112 sqlite3_finalize(pStmt);
1113 }
1114 sqlite3_close(db);
1115 return 0;
1116 }
drhd9972ef2015-05-26 17:57:56 +00001117
1118 /* Load all SQL script content and all initial database images from the
1119 ** source db
1120 */
1121 blobListLoadFromDb(db, "SELECT sqlid, sqltext FROM xsql", onlySqlid,
1122 &g.nSql, &g.pFirstSql);
1123 if( g.nSql==0 ) fatalError("need at least one SQL script");
1124 blobListLoadFromDb(db, "SELECT dbid, dbcontent FROM db", onlyDbid,
1125 &g.nDb, &g.pFirstDb);
1126 if( g.nDb==0 ){
1127 g.pFirstDb = safe_realloc(0, sizeof(Blob));
1128 memset(g.pFirstDb, 0, sizeof(Blob));
1129 g.pFirstDb->id = 1;
1130 g.pFirstDb->seq = 0;
1131 g.nDb = 1;
drhd83e2832015-06-24 14:45:44 +00001132 sqlFuzz = 1;
drhd9972ef2015-05-26 17:57:56 +00001133 }
1134
1135 /* Print the description, if there is one */
1136 if( !quietFlag ){
drhd9972ef2015-05-26 17:57:56 +00001137 zDbName = azSrcDb[iSrcDb];
drhe683b892016-02-15 18:47:26 +00001138 i = (int)strlen(zDbName) - 1;
drhd9972ef2015-05-26 17:57:56 +00001139 while( i>0 && zDbName[i-1]!='/' && zDbName[i-1]!='\\' ){ i--; }
1140 zDbName += i;
1141 sqlite3_prepare_v2(db, "SELECT msg FROM readme", -1, &pStmt, 0);
1142 if( pStmt && sqlite3_step(pStmt)==SQLITE_ROW ){
1143 printf("%s: %s\n", zDbName, sqlite3_column_text(pStmt,0));
1144 }
1145 sqlite3_finalize(pStmt);
1146 }
drh9a645862015-06-24 12:44:42 +00001147
1148 /* Rebuild the database, if requested */
1149 if( rebuildFlag ){
1150 if( !quietFlag ){
1151 printf("%s: rebuilding... ", zDbName);
1152 fflush(stdout);
1153 }
1154 rebuild_database(db);
1155 if( !quietFlag ) printf("done\n");
1156 }
drhd9972ef2015-05-26 17:57:56 +00001157
1158 /* Close the source database. Verify that no SQLite memory allocations are
1159 ** outstanding.
1160 */
1161 sqlite3_close(db);
1162 if( sqlite3_memory_used()>0 ){
1163 fatalError("SQLite has memory in use before the start of testing");
1164 }
drh53e66c32015-07-24 15:49:23 +00001165
1166 /* Limit available memory, if requested */
drh174f8552017-03-20 22:58:27 +00001167 sqlite3_shutdown();
1168 if( nMemThisDb>0 && !nativeMalloc ){
drh362b66f2016-11-14 18:27:41 +00001169 pHeap = realloc(pHeap, nMemThisDb);
drh53e66c32015-07-24 15:49:23 +00001170 if( pHeap==0 ){
1171 fatalError("failed to allocate %d bytes of heap memory", nMem);
1172 }
drh362b66f2016-11-14 18:27:41 +00001173 sqlite3_config(SQLITE_CONFIG_HEAP, pHeap, nMemThisDb, 128);
drh53e66c32015-07-24 15:49:23 +00001174 }
drh174f8552017-03-20 22:58:27 +00001175
1176 /* Disable lookaside with the --native-malloc option */
1177 if( nativeMalloc ){
1178 sqlite3_config(SQLITE_CONFIG_LOOKASIDE, 0, 0);
1179 }
drhd9972ef2015-05-26 17:57:56 +00001180
drhbeaf5142016-12-26 00:15:56 +00001181 /* Reset the in-memory virtual filesystem */
drhd9972ef2015-05-26 17:57:56 +00001182 formatVfs();
drhd9972ef2015-05-26 17:57:56 +00001183
1184 /* Run a test using each SQL script against each database.
1185 */
1186 if( !verboseFlag && !quietFlag ) printf("%s:", zDbName);
1187 for(pSql=g.pFirstSql; pSql; pSql=pSql->pNext){
1188 for(pDb=g.pFirstDb; pDb; pDb=pDb->pNext){
1189 int openFlags;
1190 const char *zVfs = "inmem";
1191 sqlite3_snprintf(sizeof(g.zTestName), g.zTestName, "sqlid=%d,dbid=%d",
1192 pSql->id, pDb->id);
1193 if( verboseFlag ){
1194 printf("%s\n", g.zTestName);
1195 fflush(stdout);
1196 }else if( !quietFlag ){
1197 static int prevAmt = -1;
1198 int idx = pSql->seq*g.nDb + pDb->id - 1;
1199 int amt = idx*10/(g.nDb*g.nSql);
1200 if( amt!=prevAmt ){
1201 printf(" %d%%", amt*10);
1202 fflush(stdout);
1203 prevAmt = amt;
1204 }
1205 }
1206 createVFile("main.db", pDb->sz, pDb->a);
drhbeaf5142016-12-26 00:15:56 +00001207 sqlite3_randomness(0,0);
drh362b66f2016-11-14 18:27:41 +00001208 if( ossFuzzThisDb ){
drhea432ba2016-11-11 16:33:47 +00001209#ifndef SQLITE_OSS_FUZZ
drh5ecf9032018-05-08 12:49:53 +00001210 fatalError("--oss-fuzz not supported: recompile"
1211 " with -DSQLITE_OSS_FUZZ");
drhea432ba2016-11-11 16:33:47 +00001212#else
1213 extern int LLVMFuzzerTestOneInput(const uint8_t*, size_t);
1214 LLVMFuzzerTestOneInput((const uint8_t*)pSql->a, (size_t)pSql->sz);
drh78057352015-06-24 23:17:35 +00001215#endif
drhea432ba2016-11-11 16:33:47 +00001216 }else{
1217 openFlags = SQLITE_OPEN_CREATE | SQLITE_OPEN_READWRITE;
1218 if( nativeFlag && pDb->sz==0 ){
1219 openFlags |= SQLITE_OPEN_MEMORY;
1220 zVfs = 0;
1221 }
1222 rc = sqlite3_open_v2("main.db", &db, openFlags, zVfs);
1223 if( rc ) fatalError("cannot open inmem database");
drhdfcfff62016-12-26 12:25:19 +00001224 sqlite3_limit(db, SQLITE_LIMIT_LENGTH, 100000000);
1225 sqlite3_limit(db, SQLITE_LIMIT_LIKE_PATTERN_LENGTH, 50);
drhea432ba2016-11-11 16:33:47 +00001226 if( cellSzCkFlag ) runSql(db, "PRAGMA cell_size_check=ON", runFlags);
1227 setAlarm(iTimeout);
1228#ifndef SQLITE_OMIT_PROGRESS_CALLBACK
1229 if( sqlFuzz || vdbeLimitFlag ){
drh5ecf9032018-05-08 12:49:53 +00001230 sqlite3_progress_handler(db, 100000, progressHandler,
1231 &vdbeLimitFlag);
drhea432ba2016-11-11 16:33:47 +00001232 }
1233#endif
1234 do{
1235 runSql(db, (char*)pSql->a, runFlags);
1236 }while( timeoutTest );
1237 setAlarm(0);
drh174f8552017-03-20 22:58:27 +00001238 sqlite3_exec(db, "PRAGMA temp_store_directory=''", 0, 0, 0);
drhea432ba2016-11-11 16:33:47 +00001239 sqlite3_close(db);
1240 }
drh174f8552017-03-20 22:58:27 +00001241 if( sqlite3_memory_used()>0 ){
1242 fatalError("memory leak: %lld bytes outstanding",
1243 sqlite3_memory_used());
1244 }
drhd9972ef2015-05-26 17:57:56 +00001245 reformatVfs();
1246 nTest++;
1247 g.zTestName[0] = 0;
drh4d6fda72015-05-26 18:58:32 +00001248
1249 /* Simulate an error if the TEST_FAILURE environment variable is "5".
1250 ** This is used to verify that automated test script really do spot
1251 ** errors that occur in this test program.
1252 */
1253 if( zFailCode ){
1254 if( zFailCode[0]=='5' && zFailCode[1]==0 ){
1255 fatalError("simulated failure");
1256 }else if( zFailCode[0]!=0 ){
1257 /* If TEST_FAILURE is something other than 5, just exit the test
1258 ** early */
1259 printf("\nExit early due to TEST_FAILURE being set\n");
1260 iSrcDb = nSrcDb-1;
1261 goto sourcedb_cleanup;
1262 }
1263 }
drhd9972ef2015-05-26 17:57:56 +00001264 }
1265 }
1266 if( !quietFlag && !verboseFlag ){
1267 printf(" 100%% - %d tests\n", g.nDb*g.nSql);
1268 }
1269
1270 /* Clean up at the end of processing a single source database
1271 */
drh4d6fda72015-05-26 18:58:32 +00001272 sourcedb_cleanup:
drhd9972ef2015-05-26 17:57:56 +00001273 blobListFree(g.pFirstSql);
1274 blobListFree(g.pFirstDb);
1275 reformatVfs();
1276
1277 } /* End loop over all source databases */
drh3b74d032015-05-25 18:48:19 +00001278
1279 if( !quietFlag ){
1280 sqlite3_int64 iElapse = timeOfDay() - iBegin;
drhd9972ef2015-05-26 17:57:56 +00001281 printf("fuzzcheck: 0 errors out of %d tests in %d.%03d seconds\n"
1282 "SQLite %s %s\n",
1283 nTest, (int)(iElapse/1000), (int)(iElapse%1000),
drh3b74d032015-05-25 18:48:19 +00001284 sqlite3_libversion(), sqlite3_sourceid());
1285 }
drhf74d35b2015-05-27 18:19:50 +00001286 free(azSrcDb);
drh6653fbe2015-11-13 20:52:49 +00001287 free(pHeap);
drh3b74d032015-05-25 18:48:19 +00001288 return 0;
1289}