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drh268e72f2015-04-17 14:30:49 +00001/*
2** 2015-04-17
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 the SQLite library
14** against an external fuzzer, such as American Fuzzy Lop (AFL)
15** (http://lcamtuf.coredump.cx/afl/). Basically, this program reads
16** SQL text from standard input and passes it through to SQLite for evaluation,
17** just like the "sqlite3" command-line shell. Differences from the
18** command-line shell:
19**
20** (1) The complex "dot-command" extensions are omitted. This
21** prevents the fuzzer from discovering that it can run things
22** like ".shell rm -rf ~"
23**
24** (2) The database is opened with the SQLITE_OPEN_MEMORY flag so that
25** no disk I/O from the database is permitted. The ATTACH command
26** with a filename still uses an in-memory database.
27**
28** (3) The main in-memory database can be initialized from a template
29** disk database so that the fuzzer starts with a database containing
30** content.
31**
32** (4) The eval() SQL function is added, allowing the fuzzer to do
33** interesting recursive operations.
drhf34e9aa2015-04-20 12:50:13 +000034**
drhbe5248f2015-04-25 11:35:48 +000035** (5) An error is raised if there is a memory leak.
36**
37** The input text can be divided into separate test cases using comments
38** of the form:
drhf34e9aa2015-04-20 12:50:13 +000039**
40** |****<...>****|
41**
drhf3320712015-04-25 13:39:29 +000042** where the "..." is arbitrary text. (Except the "|" should really be "/".
43** "|" is used here to avoid compiler errors about nested comments.)
drhbe5248f2015-04-25 11:35:48 +000044** A separate in-memory SQLite database is created to run each test case.
drh875bafa2015-04-24 14:47:59 +000045** This feature allows the "queue" of AFL to be captured into a single big
drhf34e9aa2015-04-20 12:50:13 +000046** file using a command like this:
47**
48** (for i in id:*; do echo '|****<'$i'>****|'; cat $i; done) >~/all-queue.txt
49**
50** (Once again, change the "|" to "/") Then all elements of the AFL queue
drh4a74d072015-04-20 18:58:38 +000051** can be run in a single go (for regression testing, for example) by typing:
drhf34e9aa2015-04-20 12:50:13 +000052**
drh875bafa2015-04-24 14:47:59 +000053** fuzzershell -f ~/all-queue.txt
drhf34e9aa2015-04-20 12:50:13 +000054**
55** After running each chunk of SQL, the database connection is closed. The
56** program aborts if the close fails or if there is any unfreed memory after
57** the close.
drh875bafa2015-04-24 14:47:59 +000058**
drhbe5248f2015-04-25 11:35:48 +000059** New test cases can be appended to all-queue.txt at any time. If redundant
60** test cases are added, they can be eliminated by running:
drh875bafa2015-04-24 14:47:59 +000061**
62** fuzzershell -f ~/all-queue.txt --unique-cases ~/unique-cases.txt
drh268e72f2015-04-17 14:30:49 +000063*/
64#include <stdio.h>
65#include <stdlib.h>
66#include <string.h>
67#include <stdarg.h>
drh4a74d072015-04-20 18:58:38 +000068#include <ctype.h>
drh268e72f2015-04-17 14:30:49 +000069#include "sqlite3.h"
70
71/*
72** All global variables are gathered into the "g" singleton.
73*/
74struct GlobalVars {
drh048810b2015-04-24 23:45:23 +000075 const char *zArgv0; /* Name of program */
76 sqlite3_mem_methods sOrigMem; /* Original memory methods */
77 sqlite3_mem_methods sOomMem; /* Memory methods with OOM simulator */
78 int iOomCntdown; /* Memory fails on 1 to 0 transition */
79 int nOomFault; /* Increments for each OOM fault */
80 int bOomOnce; /* Fail just once if true */
81 int bOomEnable; /* True to enable OOM simulation */
82 int nOomBrkpt; /* Number of calls to oomFault() */
drh0ee751f2015-04-25 11:19:51 +000083 char zTestName[100]; /* Name of current test */
drh268e72f2015-04-17 14:30:49 +000084} g;
85
drh048810b2015-04-24 23:45:23 +000086/*
drhf3320712015-04-25 13:39:29 +000087** Maximum number of iterations for an OOM test
88*/
89#ifndef OOM_MAX
drh7c84c022015-04-25 16:39:49 +000090# define OOM_MAX 625
drhf3320712015-04-25 13:39:29 +000091#endif
92
93/*
drh048810b2015-04-24 23:45:23 +000094** This routine is called when a simulated OOM occurs. It exists as a
95** convenient place to set a debugger breakpoint.
96*/
97static void oomFault(void){
drhbe5248f2015-04-25 11:35:48 +000098 g.nOomBrkpt++; /* Prevent oomFault() from being optimized out */
drh048810b2015-04-24 23:45:23 +000099}
drh268e72f2015-04-17 14:30:49 +0000100
101
drh048810b2015-04-24 23:45:23 +0000102/* Versions of malloc() and realloc() that simulate OOM conditions */
103static void *oomMalloc(int nByte){
104 if( nByte>0 && g.bOomEnable && g.iOomCntdown>0 ){
105 g.iOomCntdown--;
106 if( g.iOomCntdown==0 ){
107 if( g.nOomFault==0 ) oomFault();
108 g.nOomFault++;
109 if( !g.bOomOnce ) g.iOomCntdown = 1;
110 return 0;
111 }
112 }
113 return g.sOrigMem.xMalloc(nByte);
114}
115static void *oomRealloc(void *pOld, int nByte){
116 if( nByte>0 && g.bOomEnable && g.iOomCntdown>0 ){
117 g.iOomCntdown--;
118 if( g.iOomCntdown==0 ){
119 if( g.nOomFault==0 ) oomFault();
120 g.nOomFault++;
121 if( !g.bOomOnce ) g.iOomCntdown = 1;
122 return 0;
123 }
124 }
125 return g.sOrigMem.xRealloc(pOld, nByte);
126}
127
drh268e72f2015-04-17 14:30:49 +0000128/*
129** Print an error message and abort in such a way to indicate to the
130** fuzzer that this counts as a crash.
131*/
132static void abendError(const char *zFormat, ...){
133 va_list ap;
drhbe5248f2015-04-25 11:35:48 +0000134 if( g.zTestName[0] ){
135 fprintf(stderr, "%s (%s): ", g.zArgv0, g.zTestName);
136 }else{
137 fprintf(stderr, "%s: ", g.zArgv0);
138 }
drh268e72f2015-04-17 14:30:49 +0000139 va_start(ap, zFormat);
140 vfprintf(stderr, zFormat, ap);
141 va_end(ap);
142 fprintf(stderr, "\n");
143 abort();
144}
145/*
146** Print an error message and quit, but not in a way that would look
147** like a crash.
148*/
149static void fatalError(const char *zFormat, ...){
150 va_list ap;
drhbe5248f2015-04-25 11:35:48 +0000151 if( g.zTestName[0] ){
152 fprintf(stderr, "%s (%s): ", g.zArgv0, g.zTestName);
153 }else{
154 fprintf(stderr, "%s: ", g.zArgv0);
155 }
drh268e72f2015-04-17 14:30:49 +0000156 va_start(ap, zFormat);
157 vfprintf(stderr, zFormat, ap);
158 va_end(ap);
159 fprintf(stderr, "\n");
160 exit(1);
161}
162
163/*
drh4a74d072015-04-20 18:58:38 +0000164** Evaluate some SQL. Abort if unable.
165*/
166static void sqlexec(sqlite3 *db, const char *zFormat, ...){
167 va_list ap;
168 char *zSql;
169 char *zErrMsg = 0;
170 int rc;
171 va_start(ap, zFormat);
172 zSql = sqlite3_vmprintf(zFormat, ap);
173 va_end(ap);
174 rc = sqlite3_exec(db, zSql, 0, 0, &zErrMsg);
175 if( rc ) abendError("failed sql [%s]: %s", zSql, zErrMsg);
176 sqlite3_free(zSql);
177}
178
179/*
drh268e72f2015-04-17 14:30:49 +0000180** This callback is invoked by sqlite3_log().
181*/
182static void shellLog(void *pNotUsed, int iErrCode, const char *zMsg){
183 printf("LOG: (%d) %s\n", iErrCode, zMsg);
drh9f18f742015-04-25 00:20:15 +0000184 fflush(stdout);
drh268e72f2015-04-17 14:30:49 +0000185}
drh0ee751f2015-04-25 11:19:51 +0000186static void shellLogNoop(void *pNotUsed, int iErrCode, const char *zMsg){
187 return;
188}
drh268e72f2015-04-17 14:30:49 +0000189
190/*
191** This callback is invoked by sqlite3_exec() to return query results.
192*/
193static int execCallback(void *NotUsed, int argc, char **argv, char **colv){
194 int i;
195 static unsigned cnt = 0;
196 printf("ROW #%u:\n", ++cnt);
197 for(i=0; i<argc; i++){
198 printf(" %s=", colv[i]);
199 if( argv[i] ){
200 printf("[%s]\n", argv[i]);
201 }else{
202 printf("NULL\n");
203 }
204 }
drh9f18f742015-04-25 00:20:15 +0000205 fflush(stdout);
drh268e72f2015-04-17 14:30:49 +0000206 return 0;
207}
drh1cbb7fa2015-04-24 13:00:59 +0000208static int execNoop(void *NotUsed, int argc, char **argv, char **colv){
209 return 0;
210}
drh268e72f2015-04-17 14:30:49 +0000211
drh61a0d6b2015-04-24 18:31:12 +0000212#ifndef SQLITE_OMIT_TRACE
drh268e72f2015-04-17 14:30:49 +0000213/*
214** This callback is invoked by sqlite3_trace() as each SQL statement
215** starts.
216*/
217static void traceCallback(void *NotUsed, const char *zMsg){
218 printf("TRACE: %s\n", zMsg);
drh9f18f742015-04-25 00:20:15 +0000219 fflush(stdout);
drh268e72f2015-04-17 14:30:49 +0000220}
drh0ee751f2015-04-25 11:19:51 +0000221static void traceNoop(void *NotUsed, const char *zMsg){
222 return;
223}
drh61a0d6b2015-04-24 18:31:12 +0000224#endif
drh268e72f2015-04-17 14:30:49 +0000225
226/***************************************************************************
227** eval() implementation copied from ../ext/misc/eval.c
228*/
229/*
230** Structure used to accumulate the output
231*/
232struct EvalResult {
233 char *z; /* Accumulated output */
234 const char *zSep; /* Separator */
235 int szSep; /* Size of the separator string */
236 sqlite3_int64 nAlloc; /* Number of bytes allocated for z[] */
237 sqlite3_int64 nUsed; /* Number of bytes of z[] actually used */
238};
239
240/*
241** Callback from sqlite_exec() for the eval() function.
242*/
243static int callback(void *pCtx, int argc, char **argv, char **colnames){
244 struct EvalResult *p = (struct EvalResult*)pCtx;
245 int i;
246 for(i=0; i<argc; i++){
247 const char *z = argv[i] ? argv[i] : "";
248 size_t sz = strlen(z);
249 if( (sqlite3_int64)sz+p->nUsed+p->szSep+1 > p->nAlloc ){
250 char *zNew;
251 p->nAlloc = p->nAlloc*2 + sz + p->szSep + 1;
252 /* Using sqlite3_realloc64() would be better, but it is a recent
253 ** addition and will cause a segfault if loaded by an older version
254 ** of SQLite. */
255 zNew = p->nAlloc<=0x7fffffff ? sqlite3_realloc(p->z, (int)p->nAlloc) : 0;
256 if( zNew==0 ){
257 sqlite3_free(p->z);
258 memset(p, 0, sizeof(*p));
259 return 1;
260 }
261 p->z = zNew;
262 }
263 if( p->nUsed>0 ){
264 memcpy(&p->z[p->nUsed], p->zSep, p->szSep);
265 p->nUsed += p->szSep;
266 }
267 memcpy(&p->z[p->nUsed], z, sz);
268 p->nUsed += sz;
269 }
270 return 0;
271}
272
273/*
274** Implementation of the eval(X) and eval(X,Y) SQL functions.
275**
276** Evaluate the SQL text in X. Return the results, using string
277** Y as the separator. If Y is omitted, use a single space character.
278*/
279static void sqlEvalFunc(
280 sqlite3_context *context,
281 int argc,
282 sqlite3_value **argv
283){
284 const char *zSql;
285 sqlite3 *db;
286 char *zErr = 0;
287 int rc;
288 struct EvalResult x;
289
290 memset(&x, 0, sizeof(x));
291 x.zSep = " ";
292 zSql = (const char*)sqlite3_value_text(argv[0]);
293 if( zSql==0 ) return;
294 if( argc>1 ){
295 x.zSep = (const char*)sqlite3_value_text(argv[1]);
296 if( x.zSep==0 ) return;
297 }
298 x.szSep = (int)strlen(x.zSep);
299 db = sqlite3_context_db_handle(context);
300 rc = sqlite3_exec(db, zSql, callback, &x, &zErr);
301 if( rc!=SQLITE_OK ){
302 sqlite3_result_error(context, zErr, -1);
303 sqlite3_free(zErr);
304 }else if( x.zSep==0 ){
305 sqlite3_result_error_nomem(context);
306 sqlite3_free(x.z);
307 }else{
308 sqlite3_result_text(context, x.z, (int)x.nUsed, sqlite3_free);
309 }
310}
311/* End of the eval() implementation
312******************************************************************************/
313
314/*
315** Print sketchy documentation for this utility program
316*/
317static void showHelp(void){
drhb3df0c62015-05-01 19:21:12 +0000318 printf("Usage: %s [options] ?FILE...?\n", g.zArgv0);
drh268e72f2015-04-17 14:30:49 +0000319 printf(
drhb3df0c62015-05-01 19:21:12 +0000320"Read SQL text from FILE... (or from standard input if FILE... is omitted)\n"
321"and then evaluate each block of SQL contained therein.\n"
drh268e72f2015-04-17 14:30:49 +0000322"Options:\n"
drh875bafa2015-04-24 14:47:59 +0000323" --autovacuum Enable AUTOVACUUM mode\n"
drh875bafa2015-04-24 14:47:59 +0000324" --heap SZ MIN Memory allocator uses SZ bytes & min allocation MIN\n"
325" --help Show this help text\n"
drh875bafa2015-04-24 14:47:59 +0000326" --lookaside N SZ Configure lookaside for N slots of SZ bytes each\n"
drh048810b2015-04-24 23:45:23 +0000327" --oom Run each test multiple times in a simulated OOM loop\n"
drh875bafa2015-04-24 14:47:59 +0000328" --pagesize N Set the page size to N\n"
329" --pcache N SZ Configure N pages of pagecache each of size SZ bytes\n"
330" -q Reduced output\n"
331" --quiet Reduced output\n"
332" --scratch N SZ Configure scratch memory for N slots of SZ bytes each\n"
333" --unique-cases FILE Write all unique test cases to FILE\n"
334" --utf16be Set text encoding to UTF-16BE\n"
335" --utf16le Set text encoding to UTF-16LE\n"
336" -v Increased output\n"
337" --verbose Increased output\n"
drh268e72f2015-04-17 14:30:49 +0000338 );
339}
340
drh4a74d072015-04-20 18:58:38 +0000341/*
342** Return the value of a hexadecimal digit. Return -1 if the input
343** is not a hex digit.
344*/
345static int hexDigitValue(char c){
346 if( c>='0' && c<='9' ) return c - '0';
347 if( c>='a' && c<='f' ) return c - 'a' + 10;
348 if( c>='A' && c<='F' ) return c - 'A' + 10;
349 return -1;
350}
351
352/*
353** Interpret zArg as an integer value, possibly with suffixes.
354*/
355static int integerValue(const char *zArg){
356 sqlite3_int64 v = 0;
357 static const struct { char *zSuffix; int iMult; } aMult[] = {
358 { "KiB", 1024 },
359 { "MiB", 1024*1024 },
360 { "GiB", 1024*1024*1024 },
361 { "KB", 1000 },
362 { "MB", 1000000 },
363 { "GB", 1000000000 },
364 { "K", 1000 },
365 { "M", 1000000 },
366 { "G", 1000000000 },
367 };
368 int i;
369 int isNeg = 0;
370 if( zArg[0]=='-' ){
371 isNeg = 1;
372 zArg++;
373 }else if( zArg[0]=='+' ){
374 zArg++;
375 }
376 if( zArg[0]=='0' && zArg[1]=='x' ){
377 int x;
378 zArg += 2;
379 while( (x = hexDigitValue(zArg[0]))>=0 ){
380 v = (v<<4) + x;
381 zArg++;
382 }
383 }else{
384 while( isdigit(zArg[0]) ){
385 v = v*10 + zArg[0] - '0';
386 zArg++;
387 }
388 }
389 for(i=0; i<sizeof(aMult)/sizeof(aMult[0]); i++){
390 if( sqlite3_stricmp(aMult[i].zSuffix, zArg)==0 ){
391 v *= aMult[i].iMult;
392 break;
393 }
394 }
395 if( v>0x7fffffff ) abendError("parameter too large - max 2147483648");
396 return (int)(isNeg? -v : v);
397}
398
drhc8430162015-05-01 20:34:47 +0000399/* Return the current wall-clock time */
400static sqlite3_int64 timeOfDay(void){
401 static sqlite3_vfs *clockVfs = 0;
402 sqlite3_int64 t;
403 if( clockVfs==0 ) clockVfs = sqlite3_vfs_find(0);
404 if( clockVfs->iVersion>=1 && clockVfs->xCurrentTimeInt64!=0 ){
405 clockVfs->xCurrentTimeInt64(clockVfs, &t);
406 }else{
407 double r;
408 clockVfs->xCurrentTime(clockVfs, &r);
409 t = (sqlite3_int64)(r*86400000.0);
410 }
411 return t;
412}
drh268e72f2015-04-17 14:30:49 +0000413
414int main(int argc, char **argv){
drhb3df0c62015-05-01 19:21:12 +0000415 char *zIn = 0; /* Input text */
416 int nAlloc = 0; /* Number of bytes allocated for zIn[] */
417 int nIn = 0; /* Number of bytes of zIn[] used */
418 size_t got; /* Bytes read from input */
419 int rc = SQLITE_OK; /* Result codes from API functions */
420 int i; /* Loop counter */
421 int iNext; /* Next block of SQL */
422 sqlite3 *db; /* Open database */
423 char *zErrMsg = 0; /* Error message returned from sqlite3_exec() */
drh4a74d072015-04-20 18:58:38 +0000424 const char *zEncoding = 0; /* --utf16be or --utf16le */
425 int nHeap = 0, mnHeap = 0; /* Heap size from --heap */
426 int nLook = 0, szLook = 0; /* --lookaside configuration */
427 int nPCache = 0, szPCache = 0;/* --pcache configuration */
428 int nScratch = 0, szScratch=0;/* --scratch configuration */
429 int pageSize = 0; /* Desired page size. 0 means default */
430 void *pHeap = 0; /* Allocated heap space */
431 void *pLook = 0; /* Allocated lookaside space */
432 void *pPCache = 0; /* Allocated storage for pcache */
433 void *pScratch = 0; /* Allocated storage for scratch */
434 int doAutovac = 0; /* True for --autovacuum */
drh9985dab2015-04-20 22:36:49 +0000435 char *zSql; /* SQL to run */
436 char *zToFree = 0; /* Call sqlite3_free() on this afte running zSql */
drh1cbb7fa2015-04-24 13:00:59 +0000437 int verboseFlag = 0; /* --verbose or -v flag */
438 int quietFlag = 0; /* --quiet or -q flag */
439 int nTest = 0; /* Number of test cases run */
440 int multiTest = 0; /* True if there will be multiple test cases */
441 int lastPct = -1; /* Previous percentage done output */
drh875bafa2015-04-24 14:47:59 +0000442 sqlite3 *dataDb = 0; /* Database holding compacted input data */
443 sqlite3_stmt *pStmt = 0; /* Statement to insert testcase into dataDb */
444 const char *zDataOut = 0; /* Write compacted data to this output file */
drhe1a71a52015-04-24 16:09:12 +0000445 int nHeader = 0; /* Bytes of header comment text on input file */
drh048810b2015-04-24 23:45:23 +0000446 int oomFlag = 0; /* --oom */
447 int oomCnt = 0; /* Counter for the OOM loop */
448 char zErrBuf[200]; /* Space for the error message */
449 const char *zFailCode; /* Value of the TEST_FAILURE environment var */
drhb3df0c62015-05-01 19:21:12 +0000450 const char *zPrompt; /* Initial prompt when large-file fuzzing */
451 int nInFile = 0; /* Number of input files to read */
452 char **azInFile = 0; /* Array of input file names */
453 int jj; /* Loop counter for azInFile[] */
drh1a57c172015-05-02 19:54:35 +0000454 sqlite3_int64 iBegin; /* Start time for the whole program */
drhc8430162015-05-01 20:34:47 +0000455 sqlite3_int64 iStart, iEnd; /* Start and end-times for a test case */
drh4a74d072015-04-20 18:58:38 +0000456
drh1a57c172015-05-02 19:54:35 +0000457 iBegin = timeOfDay();
drh048810b2015-04-24 23:45:23 +0000458 zFailCode = getenv("TEST_FAILURE");
drh268e72f2015-04-17 14:30:49 +0000459 g.zArgv0 = argv[0];
drhb3df0c62015-05-01 19:21:12 +0000460 zPrompt = "<stdin>";
drh268e72f2015-04-17 14:30:49 +0000461 for(i=1; i<argc; i++){
462 const char *z = argv[i];
463 if( z[0]=='-' ){
464 z++;
465 if( z[0]=='-' ) z++;
drh4a74d072015-04-20 18:58:38 +0000466 if( strcmp(z,"autovacuum")==0 ){
467 doAutovac = 1;
drh268e72f2015-04-17 14:30:49 +0000468 }else
469 if( strcmp(z, "f")==0 && i+1<argc ){
drhb3df0c62015-05-01 19:21:12 +0000470 i++;
471 goto addNewInFile;
drh268e72f2015-04-17 14:30:49 +0000472 }else
drh4a74d072015-04-20 18:58:38 +0000473 if( strcmp(z,"heap")==0 ){
474 if( i>=argc-2 ) abendError("missing arguments on %s\n", argv[i]);
475 nHeap = integerValue(argv[i+1]);
476 mnHeap = integerValue(argv[i+2]);
477 i += 2;
478 }else
479 if( strcmp(z,"help")==0 ){
480 showHelp();
481 return 0;
482 }else
drh4a74d072015-04-20 18:58:38 +0000483 if( strcmp(z,"lookaside")==0 ){
484 if( i>=argc-2 ) abendError("missing arguments on %s", argv[i]);
485 nLook = integerValue(argv[i+1]);
486 szLook = integerValue(argv[i+2]);
487 i += 2;
488 }else
drh048810b2015-04-24 23:45:23 +0000489 if( strcmp(z,"oom")==0 ){
490 oomFlag = 1;
491 }else
drh4a74d072015-04-20 18:58:38 +0000492 if( strcmp(z,"pagesize")==0 ){
493 if( i>=argc-1 ) abendError("missing argument on %s", argv[i]);
494 pageSize = integerValue(argv[++i]);
495 }else
496 if( strcmp(z,"pcache")==0 ){
497 if( i>=argc-2 ) abendError("missing arguments on %s", argv[i]);
498 nPCache = integerValue(argv[i+1]);
499 szPCache = integerValue(argv[i+2]);
500 i += 2;
501 }else
drh1cbb7fa2015-04-24 13:00:59 +0000502 if( strcmp(z,"quiet")==0 || strcmp(z,"q")==0 ){
503 quietFlag = 1;
504 verboseFlag = 0;
505 }else
drh4a74d072015-04-20 18:58:38 +0000506 if( strcmp(z,"scratch")==0 ){
507 if( i>=argc-2 ) abendError("missing arguments on %s", argv[i]);
508 nScratch = integerValue(argv[i+1]);
509 szScratch = integerValue(argv[i+2]);
510 i += 2;
511 }else
drh875bafa2015-04-24 14:47:59 +0000512 if( strcmp(z, "unique-cases")==0 ){
513 if( i>=argc-1 ) abendError("missing arguments on %s", argv[i]);
514 if( zDataOut ) abendError("only one --minimize allowed");
515 zDataOut = argv[++i];
516 }else
drh4a74d072015-04-20 18:58:38 +0000517 if( strcmp(z,"utf16le")==0 ){
518 zEncoding = "utf16le";
519 }else
520 if( strcmp(z,"utf16be")==0 ){
521 zEncoding = "utf16be";
522 }else
drh1cbb7fa2015-04-24 13:00:59 +0000523 if( strcmp(z,"verbose")==0 || strcmp(z,"v")==0 ){
524 quietFlag = 0;
525 verboseFlag = 1;
526 }else
drh268e72f2015-04-17 14:30:49 +0000527 {
528 abendError("unknown option: %s", argv[i]);
529 }
530 }else{
drhb3df0c62015-05-01 19:21:12 +0000531 addNewInFile:
532 nInFile++;
533 azInFile = realloc(azInFile, sizeof(azInFile[0])*nInFile);
534 if( azInFile==0 ) abendError("out of memory");
535 azInFile[nInFile-1] = argv[i];
drh268e72f2015-04-17 14:30:49 +0000536 }
537 }
drhb3df0c62015-05-01 19:21:12 +0000538
539 /* Do global SQLite initialization */
drh0ee751f2015-04-25 11:19:51 +0000540 sqlite3_config(SQLITE_CONFIG_LOG, verboseFlag ? shellLog : shellLogNoop, 0);
drh4a74d072015-04-20 18:58:38 +0000541 if( nHeap>0 ){
542 pHeap = malloc( nHeap );
543 if( pHeap==0 ) fatalError("cannot allocate %d-byte heap\n", nHeap);
544 rc = sqlite3_config(SQLITE_CONFIG_HEAP, pHeap, nHeap, mnHeap);
545 if( rc ) abendError("heap configuration failed: %d\n", rc);
546 }
drh048810b2015-04-24 23:45:23 +0000547 if( oomFlag ){
548 sqlite3_config(SQLITE_CONFIG_GETMALLOC, &g.sOrigMem);
549 g.sOomMem = g.sOrigMem;
550 g.sOomMem.xMalloc = oomMalloc;
551 g.sOomMem.xRealloc = oomRealloc;
552 sqlite3_config(SQLITE_CONFIG_MALLOC, &g.sOomMem);
553 }
drh4a74d072015-04-20 18:58:38 +0000554 if( nLook>0 ){
555 sqlite3_config(SQLITE_CONFIG_LOOKASIDE, 0, 0);
556 if( szLook>0 ){
557 pLook = malloc( nLook*szLook );
558 if( pLook==0 ) fatalError("out of memory");
559 }
560 }
561 if( nScratch>0 && szScratch>0 ){
562 pScratch = malloc( nScratch*(sqlite3_int64)szScratch );
563 if( pScratch==0 ) fatalError("cannot allocate %lld-byte scratch",
564 nScratch*(sqlite3_int64)szScratch);
565 rc = sqlite3_config(SQLITE_CONFIG_SCRATCH, pScratch, szScratch, nScratch);
566 if( rc ) abendError("scratch configuration failed: %d\n", rc);
567 }
568 if( nPCache>0 && szPCache>0 ){
569 pPCache = malloc( nPCache*(sqlite3_int64)szPCache );
570 if( pPCache==0 ) fatalError("cannot allocate %lld-byte pcache",
571 nPCache*(sqlite3_int64)szPCache);
572 rc = sqlite3_config(SQLITE_CONFIG_PAGECACHE, pPCache, szPCache, nPCache);
573 if( rc ) abendError("pcache configuration failed: %d", rc);
574 }
drhb3df0c62015-05-01 19:21:12 +0000575
576 /* If the --unique-cases option was supplied, open the database that will
577 ** be used to gather unique test cases.
578 */
drh875bafa2015-04-24 14:47:59 +0000579 if( zDataOut ){
580 rc = sqlite3_open(":memory:", &dataDb);
581 if( rc ) abendError("cannot open :memory: database");
582 rc = sqlite3_exec(dataDb,
drhc8430162015-05-01 20:34:47 +0000583 "CREATE TABLE testcase(sql BLOB PRIMARY KEY, tm) WITHOUT ROWID;",0,0,0);
drh875bafa2015-04-24 14:47:59 +0000584 if( rc ) abendError("%s", sqlite3_errmsg(dataDb));
drhb3df0c62015-05-01 19:21:12 +0000585 rc = sqlite3_prepare_v2(dataDb,
drhc8430162015-05-01 20:34:47 +0000586 "INSERT OR IGNORE INTO testcase(sql,tm)VALUES(?1,?2)",
drhb3df0c62015-05-01 19:21:12 +0000587 -1, &pStmt, 0);
drh875bafa2015-04-24 14:47:59 +0000588 if( rc ) abendError("%s", sqlite3_errmsg(dataDb));
589 }
drhb3df0c62015-05-01 19:21:12 +0000590
591 /* Initialize the input buffer used to hold SQL text */
592 if( nInFile==0 ) nInFile = 1;
593 nAlloc = 1000;
594 zIn = malloc(nAlloc);
595 if( zIn==0 ) fatalError("out of memory");
596
597 /* Loop over all input files */
598 for(jj=0; jj<nInFile; jj++){
599
600 /* Read the complete content of the next input file into zIn[] */
601 FILE *in;
602 if( azInFile ){
603 int j, k;
604 in = fopen(azInFile[jj],"rb");
605 if( in==0 ){
606 abendError("cannot open %s for reading", azInFile[jj]);
drhf34e9aa2015-04-20 12:50:13 +0000607 }
drhb3df0c62015-05-01 19:21:12 +0000608 zPrompt = azInFile[jj];
609 for(j=k=0; zPrompt[j]; j++) if( zPrompt[j]=='/' ) k = j+1;
610 zPrompt += k;
drh048810b2015-04-24 23:45:23 +0000611 }else{
drhb3df0c62015-05-01 19:21:12 +0000612 in = stdin;
613 zPrompt = "<stdin>";
drh048810b2015-04-24 23:45:23 +0000614 }
drhb3df0c62015-05-01 19:21:12 +0000615 while( !feof(in) ){
drhb3df0c62015-05-01 19:21:12 +0000616 got = fread(zIn+nIn, 1, nAlloc-nIn-1, in);
617 nIn += (int)got;
618 zIn[nIn] = 0;
619 if( got==0 ) break;
drh1a57c172015-05-02 19:54:35 +0000620 if( nAlloc - nIn - 1 < 100 ){
621 nAlloc += nAlloc+1000;
622 zIn = realloc(zIn, nAlloc);
623 if( zIn==0 ) fatalError("out of memory");
624 }
drhb3df0c62015-05-01 19:21:12 +0000625 }
626 if( in!=stdin ) fclose(in);
627 lastPct = -1;
628
629 /* Skip initial lines of the input file that begin with "#" */
630 for(i=0; i<nIn; i=iNext+1){
631 if( zIn[i]!='#' ) break;
632 for(iNext=i+1; iNext<nIn && zIn[iNext]!='\n'; iNext++){}
633 }
634 nHeader = i;
635
636 /* Process all test cases contained within the input file.
637 */
638 for(; i<nIn; i=iNext, nTest++, g.zTestName[0]=0){
639 char cSaved;
640 if( strncmp(&zIn[i], "/****<",6)==0 ){
641 char *z = strstr(&zIn[i], ">****/");
642 if( z ){
643 z += 6;
644 sqlite3_snprintf(sizeof(g.zTestName), g.zTestName, "%.*s",
645 (int)(z-&zIn[i]) - 12, &zIn[i+6]);
drh048810b2015-04-24 23:45:23 +0000646 if( verboseFlag ){
drhb3df0c62015-05-01 19:21:12 +0000647 printf("%.*s\n", (int)(z-&zIn[i]), &zIn[i]);
drh9f18f742015-04-25 00:20:15 +0000648 fflush(stdout);
drh048810b2015-04-24 23:45:23 +0000649 }
drhb3df0c62015-05-01 19:21:12 +0000650 i += (int)(z-&zIn[i]);
651 multiTest = 1;
drh048810b2015-04-24 23:45:23 +0000652 }
653 }
drhb3df0c62015-05-01 19:21:12 +0000654 for(iNext=i; iNext<nIn && strncmp(&zIn[iNext],"/****<",6)!=0; iNext++){}
drhb3df0c62015-05-01 19:21:12 +0000655 cSaved = zIn[iNext];
656 zIn[iNext] = 0;
drhc8430162015-05-01 20:34:47 +0000657
drhb3df0c62015-05-01 19:21:12 +0000658
659 /* Print out the SQL of the next test case is --verbose is enabled
660 */
661 zSql = &zIn[i];
662 if( verboseFlag ){
663 printf("INPUT (offset: %d, size: %d): [%s]\n",
664 i, (int)strlen(&zIn[i]), &zIn[i]);
665 }else if( multiTest && !quietFlag ){
666 if( oomFlag ){
667 printf("%s\n", g.zTestName);
668 }else{
669 int pct = (10*iNext)/nIn;
670 if( pct!=lastPct ){
671 if( lastPct<0 ) printf("%s:", zPrompt);
672 printf(" %d%%", pct*10);
673 lastPct = pct;
674 }
675 }
drh1a57c172015-05-02 19:54:35 +0000676 }else if( nInFile>1 ){
677 printf("%s\n", zPrompt);
drh1cbb7fa2015-04-24 13:00:59 +0000678 }
drh9f18f742015-04-25 00:20:15 +0000679 fflush(stdout);
drhb3df0c62015-05-01 19:21:12 +0000680
681 /* Run the next test case. Run it multiple times in --oom mode
682 */
683 if( oomFlag ){
684 oomCnt = g.iOomCntdown = 1;
685 g.nOomFault = 0;
686 g.bOomOnce = 1;
687 if( verboseFlag ){
688 printf("Once.%d\n", oomCnt);
689 fflush(stdout);
690 }
691 }else{
692 oomCnt = 0;
693 }
694 do{
695 rc = sqlite3_open_v2(
696 "main.db", &db,
697 SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE | SQLITE_OPEN_MEMORY,
698 0);
699 if( rc!=SQLITE_OK ){
700 abendError("Unable to open the in-memory database");
701 }
702 if( pLook ){
703 rc = sqlite3_db_config(db, SQLITE_DBCONFIG_LOOKASIDE,pLook,szLook,nLook);
704 if( rc!=SQLITE_OK ) abendError("lookaside configuration filed: %d", rc);
705 }
706 #ifndef SQLITE_OMIT_TRACE
707 sqlite3_trace(db, verboseFlag ? traceCallback : traceNoop, 0);
708 #endif
709 sqlite3_create_function(db, "eval", 1, SQLITE_UTF8, 0, sqlEvalFunc, 0, 0);
710 sqlite3_create_function(db, "eval", 2, SQLITE_UTF8, 0, sqlEvalFunc, 0, 0);
711 sqlite3_limit(db, SQLITE_LIMIT_LENGTH, 1000000);
712 if( zEncoding ) sqlexec(db, "PRAGMA encoding=%s", zEncoding);
713 if( pageSize ) sqlexec(db, "PRAGMA pagesize=%d", pageSize);
714 if( doAutovac ) sqlexec(db, "PRAGMA auto_vacuum=FULL");
drhc8430162015-05-01 20:34:47 +0000715 iStart = timeOfDay();
drhb3df0c62015-05-01 19:21:12 +0000716 g.bOomEnable = 1;
717 if( verboseFlag ){
718 zErrMsg = 0;
719 rc = sqlite3_exec(db, zSql, execCallback, 0, &zErrMsg);
720 if( zErrMsg ){
721 sqlite3_snprintf(sizeof(zErrBuf),zErrBuf,"%z", zErrMsg);
722 zErrMsg = 0;
723 }
724 }else {
725 rc = sqlite3_exec(db, zSql, execNoop, 0, 0);
726 }
727 g.bOomEnable = 0;
drhc8430162015-05-01 20:34:47 +0000728 iEnd = timeOfDay();
drhb3df0c62015-05-01 19:21:12 +0000729 rc = sqlite3_close(db);
730 if( rc ){
731 abendError("sqlite3_close() failed with rc=%d", rc);
732 }
drhc8430162015-05-01 20:34:47 +0000733 if( !zDataOut && sqlite3_memory_used()>0 ){
drhb3df0c62015-05-01 19:21:12 +0000734 abendError("memory in use after close: %lld bytes",sqlite3_memory_used());
735 }
736 if( oomFlag ){
737 /* Limit the number of iterations of the OOM loop to OOM_MAX. If the
738 ** first pass (single failure) exceeds 2/3rds of OOM_MAX this skip the
739 ** second pass (continuous failure after first) completely. */
740 if( g.nOomFault==0 || oomCnt>OOM_MAX ){
741 if( g.bOomOnce && oomCnt<=(OOM_MAX*2/3) ){
742 oomCnt = g.iOomCntdown = 1;
743 g.bOomOnce = 0;
744 }else{
745 oomCnt = 0;
746 }
747 }else{
748 g.iOomCntdown = ++oomCnt;
749 g.nOomFault = 0;
750 }
751 if( oomCnt ){
752 if( verboseFlag ){
753 printf("%s.%d\n", g.bOomOnce ? "Once" : "Multi", oomCnt);
754 fflush(stdout);
755 }
756 nTest++;
757 }
758 }
759 }while( oomCnt>0 );
760
drhc8430162015-05-01 20:34:47 +0000761 /* Store unique test cases in the in the dataDb database if the
762 ** --unique-cases flag is present
763 */
764 if( zDataOut ){
765 sqlite3_bind_blob(pStmt, 1, &zIn[i], iNext-i, SQLITE_STATIC);
766 sqlite3_bind_int64(pStmt, 2, iEnd - iStart);
767 rc = sqlite3_step(pStmt);
768 if( rc!=SQLITE_DONE ) abendError("%s", sqlite3_errmsg(dataDb));
769 sqlite3_reset(pStmt);
770 }
771
drhb3df0c62015-05-01 19:21:12 +0000772 /* Free the SQL from the current test case
773 */
774 if( zToFree ){
775 sqlite3_free(zToFree);
776 zToFree = 0;
777 }
778 zIn[iNext] = cSaved;
779
780 /* Show test-case results in --verbose mode
781 */
782 if( verboseFlag ){
783 printf("RESULT-CODE: %d\n", rc);
784 if( zErrMsg ){
785 printf("ERROR-MSG: [%s]\n", zErrBuf);
786 }
787 fflush(stdout);
788 }
789
790 /* Simulate an error if the TEST_FAILURE environment variable is "5".
791 ** This is used to verify that automated test script really do spot
792 ** errors that occur in this test program.
793 */
794 if( zFailCode ){
795 if( zFailCode[0]=='5' && zFailCode[1]==0 ){
796 abendError("simulated failure");
797 }else if( zFailCode[0]!=0 ){
798 /* If TEST_FAILURE is something other than 5, just exit the test
799 ** early */
800 printf("\nExit early due to TEST_FAILURE being set");
801 break;
802 }
drhe1a71a52015-04-24 16:09:12 +0000803 }
804 }
drhb3df0c62015-05-01 19:21:12 +0000805 if( !verboseFlag && multiTest && !quietFlag && !oomFlag ) printf("\n");
drhf34e9aa2015-04-20 12:50:13 +0000806 }
drhb3df0c62015-05-01 19:21:12 +0000807
808 /* Report total number of tests run
809 */
drh1cbb7fa2015-04-24 13:00:59 +0000810 if( nTest>1 && !quietFlag ){
drh1a57c172015-05-02 19:54:35 +0000811 sqlite3_int64 iElapse = timeOfDay() - iBegin;
812 printf("%s: 0 errors out of %d tests in %d.%03d seconds\nSQLite %s %s\n",
813 g.zArgv0, nTest, (int)(iElapse/1000), (int)(iElapse%1000),
814 sqlite3_libversion(), sqlite3_sourceid());
drh875bafa2015-04-24 14:47:59 +0000815 }
drhb3df0c62015-05-01 19:21:12 +0000816
817 /* Write the unique test cases if the --unique-cases flag was used
818 */
drh875bafa2015-04-24 14:47:59 +0000819 if( zDataOut ){
drh875bafa2015-04-24 14:47:59 +0000820 int n = 0;
drhe1a71a52015-04-24 16:09:12 +0000821 FILE *out = fopen(zDataOut, "wb");
drh875bafa2015-04-24 14:47:59 +0000822 if( out==0 ) abendError("cannot open %s for writing", zDataOut);
drhe1a71a52015-04-24 16:09:12 +0000823 if( nHeader>0 ) fwrite(zIn, nHeader, 1, out);
drh875bafa2015-04-24 14:47:59 +0000824 sqlite3_finalize(pStmt);
drhc8430162015-05-01 20:34:47 +0000825 rc = sqlite3_prepare_v2(dataDb, "SELECT sql, tm FROM testcase ORDER BY tm, sql",
826 -1, &pStmt, 0);
drh875bafa2015-04-24 14:47:59 +0000827 if( rc ) abendError("%s", sqlite3_errmsg(dataDb));
828 while( sqlite3_step(pStmt)==SQLITE_ROW ){
drhc8430162015-05-01 20:34:47 +0000829 fprintf(out,"/****<%d:%dms>****/", ++n, sqlite3_column_int(pStmt,1));
drh875bafa2015-04-24 14:47:59 +0000830 fwrite(sqlite3_column_blob(pStmt,0),sqlite3_column_bytes(pStmt,0),1,out);
831 }
832 fclose(out);
833 sqlite3_finalize(pStmt);
834 sqlite3_close(dataDb);
drh1cbb7fa2015-04-24 13:00:59 +0000835 }
drhb3df0c62015-05-01 19:21:12 +0000836
837 /* Clean up and exit.
838 */
839 free(azInFile);
drhf34e9aa2015-04-20 12:50:13 +0000840 free(zIn);
drh4a74d072015-04-20 18:58:38 +0000841 free(pHeap);
842 free(pLook);
843 free(pScratch);
844 free(pPCache);
drhf34e9aa2015-04-20 12:50:13 +0000845 return 0;
drh268e72f2015-04-17 14:30:49 +0000846}