blob: 57404faa678c948afd65fa95c622fc7df17d6031 [file] [log] [blame]
dan4be02b92010-07-22 15:44:06 +00001
2/*
3** The code in this file runs a few multi-threaded test cases using the
4** SQLite library. It can be compiled to an executable on unix using the
5** following command:
6**
7** gcc -O2 threadtest3.c sqlite3.c -ldl -lpthread -lm
8**
9** Then run the compiled program. The exit status is non-zero if any tests
10** failed (hopefully there is also some output to stdout to clarify what went
11** wrong).
12**
13** There are three parts to the code in this file, in the following order:
14**
15** 1. Code for the SQL aggregate function md5sum() copied from
16** tclsqlite.c in the SQLite distribution. The names of all the
17** types and functions in this section begin with "MD5" or "md5".
18**
19** 2. A set of utility functions that may be used to implement
20** multi-threaded test cases. These are all called by test code
21** via macros that help with error reporting. The macros are defined
22** immediately below this comment.
23**
24** 3. The test code itself. And a main() routine to drive the test
25** code.
26*/
27
28/*************************************************************************
29** Start of test code/infrastructure interface macros.
30**
31** The following macros constitute the interface between the test
32** programs and the test infrastructure. Test infrastructure code
33** does not itself use any of these macros. Test code should not
34** call any of the macroname_x() functions directly.
35**
36** See the header comments above the corresponding macroname_x()
37** function for a description of each interface.
38*/
39
40/* Database functions */
41#define opendb(w,x,y,z) (SEL(w), opendb_x(w,x,y,z))
42#define closedb(y,z) (SEL(y), closedb_x(y,z))
43
44/* Functions to execute SQL */
45#define sql_script(x,y,z) (SEL(x), sql_script_x(x,y,z))
46#define integrity_check(x,y) (SEL(x), integrity_check_x(x,y))
47#define execsql_i64(x,y,...) (SEL(x), execsql_i64_x(x,y,__VA_ARGS__))
48#define execsql_text(x,y,z,...) (SEL(x), execsql_text_x(x,y,z,__VA_ARGS__))
49#define execsql(x,y,...) (SEL(x), (void)execsql_i64_x(x,y,__VA_ARGS__))
50
51/* Thread functions */
52#define launch_thread(w,x,y,z) (SEL(w), launch_thread_x(w,x,y,z))
53#define join_all_threads(y,z) (SEL(y), join_all_threads_x(y,z))
54
55/* Timer functions */
56#define setstoptime(y,z) (SEL(y), setstoptime_x(y,z))
57#define timetostop(z) (SEL(z), timetostop_x(z))
58
59/* Report/clear errors. */
60#define test_error(z, ...) test_error_x(z, sqlite3_mprintf(__VA_ARGS__))
61#define clear_error(y,z) clear_error_x(y, z)
62
63/* File-system operations */
64#define filesize(y,z) (SEL(y), filesize_x(y,z))
65#define filecopy(x,y,z) (SEL(x), filecopy_x(x,y,z))
66
67/*
68** End of test code/infrastructure interface macros.
69*************************************************************************/
70
71
72
73
74#include <sqlite3.h>
75#include <unistd.h>
76#include <stdio.h>
77#include <pthread.h>
78#include <assert.h>
79#include <sys/types.h>
80#include <sys/stat.h>
81#include <string.h>
82#include <fcntl.h>
83#include <errno.h>
84
85/*
86 * This code implements the MD5 message-digest algorithm.
87 * The algorithm is due to Ron Rivest. This code was
88 * written by Colin Plumb in 1993, no copyright is claimed.
89 * This code is in the public domain; do with it what you wish.
90 *
91 * Equivalent code is available from RSA Data Security, Inc.
92 * This code has been tested against that, and is equivalent,
93 * except that you don't need to include two pages of legalese
94 * with every copy.
95 *
96 * To compute the message digest of a chunk of bytes, declare an
97 * MD5Context structure, pass it to MD5Init, call MD5Update as
98 * needed on buffers full of bytes, and then call MD5Final, which
99 * will fill a supplied 16-byte array with the digest.
100 */
101
102/*
103 * If compiled on a machine that doesn't have a 32-bit integer,
104 * you just set "uint32" to the appropriate datatype for an
105 * unsigned 32-bit integer. For example:
106 *
107 * cc -Duint32='unsigned long' md5.c
108 *
109 */
110#ifndef uint32
111# define uint32 unsigned int
112#endif
113
114struct MD5Context {
115 int isInit;
116 uint32 buf[4];
117 uint32 bits[2];
118 unsigned char in[64];
119};
120typedef struct MD5Context MD5Context;
121
122/*
123 * Note: this code is harmless on little-endian machines.
124 */
125static void byteReverse (unsigned char *buf, unsigned longs){
126 uint32 t;
127 do {
128 t = (uint32)((unsigned)buf[3]<<8 | buf[2]) << 16 |
129 ((unsigned)buf[1]<<8 | buf[0]);
130 *(uint32 *)buf = t;
131 buf += 4;
132 } while (--longs);
133}
134/* The four core functions - F1 is optimized somewhat */
135
136/* #define F1(x, y, z) (x & y | ~x & z) */
137#define F1(x, y, z) (z ^ (x & (y ^ z)))
138#define F2(x, y, z) F1(z, x, y)
139#define F3(x, y, z) (x ^ y ^ z)
140#define F4(x, y, z) (y ^ (x | ~z))
141
142/* This is the central step in the MD5 algorithm. */
143#define MD5STEP(f, w, x, y, z, data, s) \
144 ( w += f(x, y, z) + data, w = w<<s | w>>(32-s), w += x )
145
146/*
147 * The core of the MD5 algorithm, this alters an existing MD5 hash to
148 * reflect the addition of 16 longwords of new data. MD5Update blocks
149 * the data and converts bytes into longwords for this routine.
150 */
151static void MD5Transform(uint32 buf[4], const uint32 in[16]){
152 register uint32 a, b, c, d;
153
154 a = buf[0];
155 b = buf[1];
156 c = buf[2];
157 d = buf[3];
158
159 MD5STEP(F1, a, b, c, d, in[ 0]+0xd76aa478, 7);
160 MD5STEP(F1, d, a, b, c, in[ 1]+0xe8c7b756, 12);
161 MD5STEP(F1, c, d, a, b, in[ 2]+0x242070db, 17);
162 MD5STEP(F1, b, c, d, a, in[ 3]+0xc1bdceee, 22);
163 MD5STEP(F1, a, b, c, d, in[ 4]+0xf57c0faf, 7);
164 MD5STEP(F1, d, a, b, c, in[ 5]+0x4787c62a, 12);
165 MD5STEP(F1, c, d, a, b, in[ 6]+0xa8304613, 17);
166 MD5STEP(F1, b, c, d, a, in[ 7]+0xfd469501, 22);
167 MD5STEP(F1, a, b, c, d, in[ 8]+0x698098d8, 7);
168 MD5STEP(F1, d, a, b, c, in[ 9]+0x8b44f7af, 12);
169 MD5STEP(F1, c, d, a, b, in[10]+0xffff5bb1, 17);
170 MD5STEP(F1, b, c, d, a, in[11]+0x895cd7be, 22);
171 MD5STEP(F1, a, b, c, d, in[12]+0x6b901122, 7);
172 MD5STEP(F1, d, a, b, c, in[13]+0xfd987193, 12);
173 MD5STEP(F1, c, d, a, b, in[14]+0xa679438e, 17);
174 MD5STEP(F1, b, c, d, a, in[15]+0x49b40821, 22);
175
176 MD5STEP(F2, a, b, c, d, in[ 1]+0xf61e2562, 5);
177 MD5STEP(F2, d, a, b, c, in[ 6]+0xc040b340, 9);
178 MD5STEP(F2, c, d, a, b, in[11]+0x265e5a51, 14);
179 MD5STEP(F2, b, c, d, a, in[ 0]+0xe9b6c7aa, 20);
180 MD5STEP(F2, a, b, c, d, in[ 5]+0xd62f105d, 5);
181 MD5STEP(F2, d, a, b, c, in[10]+0x02441453, 9);
182 MD5STEP(F2, c, d, a, b, in[15]+0xd8a1e681, 14);
183 MD5STEP(F2, b, c, d, a, in[ 4]+0xe7d3fbc8, 20);
184 MD5STEP(F2, a, b, c, d, in[ 9]+0x21e1cde6, 5);
185 MD5STEP(F2, d, a, b, c, in[14]+0xc33707d6, 9);
186 MD5STEP(F2, c, d, a, b, in[ 3]+0xf4d50d87, 14);
187 MD5STEP(F2, b, c, d, a, in[ 8]+0x455a14ed, 20);
188 MD5STEP(F2, a, b, c, d, in[13]+0xa9e3e905, 5);
189 MD5STEP(F2, d, a, b, c, in[ 2]+0xfcefa3f8, 9);
190 MD5STEP(F2, c, d, a, b, in[ 7]+0x676f02d9, 14);
191 MD5STEP(F2, b, c, d, a, in[12]+0x8d2a4c8a, 20);
192
193 MD5STEP(F3, a, b, c, d, in[ 5]+0xfffa3942, 4);
194 MD5STEP(F3, d, a, b, c, in[ 8]+0x8771f681, 11);
195 MD5STEP(F3, c, d, a, b, in[11]+0x6d9d6122, 16);
196 MD5STEP(F3, b, c, d, a, in[14]+0xfde5380c, 23);
197 MD5STEP(F3, a, b, c, d, in[ 1]+0xa4beea44, 4);
198 MD5STEP(F3, d, a, b, c, in[ 4]+0x4bdecfa9, 11);
199 MD5STEP(F3, c, d, a, b, in[ 7]+0xf6bb4b60, 16);
200 MD5STEP(F3, b, c, d, a, in[10]+0xbebfbc70, 23);
201 MD5STEP(F3, a, b, c, d, in[13]+0x289b7ec6, 4);
202 MD5STEP(F3, d, a, b, c, in[ 0]+0xeaa127fa, 11);
203 MD5STEP(F3, c, d, a, b, in[ 3]+0xd4ef3085, 16);
204 MD5STEP(F3, b, c, d, a, in[ 6]+0x04881d05, 23);
205 MD5STEP(F3, a, b, c, d, in[ 9]+0xd9d4d039, 4);
206 MD5STEP(F3, d, a, b, c, in[12]+0xe6db99e5, 11);
207 MD5STEP(F3, c, d, a, b, in[15]+0x1fa27cf8, 16);
208 MD5STEP(F3, b, c, d, a, in[ 2]+0xc4ac5665, 23);
209
210 MD5STEP(F4, a, b, c, d, in[ 0]+0xf4292244, 6);
211 MD5STEP(F4, d, a, b, c, in[ 7]+0x432aff97, 10);
212 MD5STEP(F4, c, d, a, b, in[14]+0xab9423a7, 15);
213 MD5STEP(F4, b, c, d, a, in[ 5]+0xfc93a039, 21);
214 MD5STEP(F4, a, b, c, d, in[12]+0x655b59c3, 6);
215 MD5STEP(F4, d, a, b, c, in[ 3]+0x8f0ccc92, 10);
216 MD5STEP(F4, c, d, a, b, in[10]+0xffeff47d, 15);
217 MD5STEP(F4, b, c, d, a, in[ 1]+0x85845dd1, 21);
218 MD5STEP(F4, a, b, c, d, in[ 8]+0x6fa87e4f, 6);
219 MD5STEP(F4, d, a, b, c, in[15]+0xfe2ce6e0, 10);
220 MD5STEP(F4, c, d, a, b, in[ 6]+0xa3014314, 15);
221 MD5STEP(F4, b, c, d, a, in[13]+0x4e0811a1, 21);
222 MD5STEP(F4, a, b, c, d, in[ 4]+0xf7537e82, 6);
223 MD5STEP(F4, d, a, b, c, in[11]+0xbd3af235, 10);
224 MD5STEP(F4, c, d, a, b, in[ 2]+0x2ad7d2bb, 15);
225 MD5STEP(F4, b, c, d, a, in[ 9]+0xeb86d391, 21);
226
227 buf[0] += a;
228 buf[1] += b;
229 buf[2] += c;
230 buf[3] += d;
231}
232
233/*
234 * Start MD5 accumulation. Set bit count to 0 and buffer to mysterious
235 * initialization constants.
236 */
237static void MD5Init(MD5Context *ctx){
238 ctx->isInit = 1;
239 ctx->buf[0] = 0x67452301;
240 ctx->buf[1] = 0xefcdab89;
241 ctx->buf[2] = 0x98badcfe;
242 ctx->buf[3] = 0x10325476;
243 ctx->bits[0] = 0;
244 ctx->bits[1] = 0;
245}
246
247/*
248 * Update context to reflect the concatenation of another buffer full
249 * of bytes.
250 */
251static
252void MD5Update(MD5Context *ctx, const unsigned char *buf, unsigned int len){
253 uint32 t;
254
255 /* Update bitcount */
256
257 t = ctx->bits[0];
258 if ((ctx->bits[0] = t + ((uint32)len << 3)) < t)
259 ctx->bits[1]++; /* Carry from low to high */
260 ctx->bits[1] += len >> 29;
261
262 t = (t >> 3) & 0x3f; /* Bytes already in shsInfo->data */
263
264 /* Handle any leading odd-sized chunks */
265
266 if ( t ) {
267 unsigned char *p = (unsigned char *)ctx->in + t;
268
269 t = 64-t;
270 if (len < t) {
271 memcpy(p, buf, len);
272 return;
273 }
274 memcpy(p, buf, t);
275 byteReverse(ctx->in, 16);
276 MD5Transform(ctx->buf, (uint32 *)ctx->in);
277 buf += t;
278 len -= t;
279 }
280
281 /* Process data in 64-byte chunks */
282
283 while (len >= 64) {
284 memcpy(ctx->in, buf, 64);
285 byteReverse(ctx->in, 16);
286 MD5Transform(ctx->buf, (uint32 *)ctx->in);
287 buf += 64;
288 len -= 64;
289 }
290
291 /* Handle any remaining bytes of data. */
292
293 memcpy(ctx->in, buf, len);
294}
295
296/*
297 * Final wrapup - pad to 64-byte boundary with the bit pattern
298 * 1 0* (64-bit count of bits processed, MSB-first)
299 */
300static void MD5Final(unsigned char digest[16], MD5Context *ctx){
301 unsigned count;
302 unsigned char *p;
303
304 /* Compute number of bytes mod 64 */
305 count = (ctx->bits[0] >> 3) & 0x3F;
306
307 /* Set the first char of padding to 0x80. This is safe since there is
308 always at least one byte free */
309 p = ctx->in + count;
310 *p++ = 0x80;
311
312 /* Bytes of padding needed to make 64 bytes */
313 count = 64 - 1 - count;
314
315 /* Pad out to 56 mod 64 */
316 if (count < 8) {
317 /* Two lots of padding: Pad the first block to 64 bytes */
318 memset(p, 0, count);
319 byteReverse(ctx->in, 16);
320 MD5Transform(ctx->buf, (uint32 *)ctx->in);
321
322 /* Now fill the next block with 56 bytes */
323 memset(ctx->in, 0, 56);
324 } else {
325 /* Pad block to 56 bytes */
326 memset(p, 0, count-8);
327 }
328 byteReverse(ctx->in, 14);
329
330 /* Append length in bits and transform */
331 ((uint32 *)ctx->in)[ 14 ] = ctx->bits[0];
332 ((uint32 *)ctx->in)[ 15 ] = ctx->bits[1];
333
334 MD5Transform(ctx->buf, (uint32 *)ctx->in);
335 byteReverse((unsigned char *)ctx->buf, 4);
336 memcpy(digest, ctx->buf, 16);
337 memset(ctx, 0, sizeof(ctx)); /* In case it is sensitive */
338}
339
340/*
341** Convert a 128-bit MD5 digest into a 32-digit base-16 number.
342*/
343static void MD5DigestToBase16(unsigned char *digest, char *zBuf){
344 static char const zEncode[] = "0123456789abcdef";
345 int i, j;
346
347 for(j=i=0; i<16; i++){
348 int a = digest[i];
349 zBuf[j++] = zEncode[(a>>4)&0xf];
350 zBuf[j++] = zEncode[a & 0xf];
351 }
352 zBuf[j] = 0;
353}
354
355/*
356** During testing, the special md5sum() aggregate function is available.
357** inside SQLite. The following routines implement that function.
358*/
359static void md5step(sqlite3_context *context, int argc, sqlite3_value **argv){
360 MD5Context *p;
361 int i;
362 if( argc<1 ) return;
363 p = sqlite3_aggregate_context(context, sizeof(*p));
364 if( p==0 ) return;
365 if( !p->isInit ){
366 MD5Init(p);
367 }
368 for(i=0; i<argc; i++){
369 const char *zData = (char*)sqlite3_value_text(argv[i]);
370 if( zData ){
371 MD5Update(p, (unsigned char*)zData, strlen(zData));
372 }
373 }
374}
375static void md5finalize(sqlite3_context *context){
376 MD5Context *p;
377 unsigned char digest[16];
378 char zBuf[33];
379 p = sqlite3_aggregate_context(context, sizeof(*p));
380 MD5Final(digest,p);
381 MD5DigestToBase16(digest, zBuf);
382 sqlite3_result_text(context, zBuf, -1, SQLITE_TRANSIENT);
383}
384
385/*************************************************************************
386** End of copied md5sum() code.
387*/
388
389typedef sqlite3_int64 i64;
390
391typedef struct Error Error;
392typedef struct Sqlite Sqlite;
393typedef struct Statement Statement;
394
395typedef struct Threadset Threadset;
396typedef struct Thread Thread;
397
398/* Total number of errors in this process so far. */
399static int nGlobalErr = 0;
400
401/* Set to true to run in "process" instead of "thread" mode. */
402static int bProcessMode = 0;
403
404struct Error {
405 int rc;
406 int iLine;
407 char *zErr;
408};
409
410struct Sqlite {
411 sqlite3 *db; /* Database handle */
412 Statement *pCache; /* Linked list of cached statements */
413 int nText; /* Size of array at aText[] */
414 char **aText; /* Stored text results */
415};
416
417struct Statement {
418 sqlite3_stmt *pStmt; /* Pre-compiled statement handle */
419 Statement *pNext; /* Next statement in linked-list */
420};
421
422struct Thread {
423 int iTid; /* Thread number within test */
424 int iArg; /* Integer argument passed by caller */
425
426 pthread_t tid; /* Thread id */
427 char *(*xProc)(int, int); /* Thread main proc */
428 Thread *pNext; /* Next in this list of threads */
429};
430
431struct Threadset {
432 int iMaxTid; /* Largest iTid value allocated so far */
433 Thread *pThread; /* Linked list of threads */
434};
435
436static void free_err(Error *p){
437 sqlite3_free(p->zErr);
438 p->zErr = 0;
439 p->rc = 0;
440}
441
442static void print_err(Error *p){
443 if( p->rc!=SQLITE_OK ){
444 printf("Error: (%d) \"%s\" at line %d\n", p->rc, p->zErr, p->iLine);
445 nGlobalErr++;
446 }
447}
448
449static void print_and_free_err(Error *p){
450 print_err(p);
451 free_err(p);
452}
453
454static void system_error(Error *pErr, int iSys){
455 pErr->rc = iSys;
456 pErr->zErr = (char *)sqlite3_malloc(512);
457 strerror_r(iSys, pErr->zErr, 512);
458 pErr->zErr[511] = '\0';
459}
460
461static void sqlite_error(
462 Error *pErr,
463 Sqlite *pDb,
464 const char *zFunc
465){
466 pErr->rc = sqlite3_errcode(pDb->db);
467 pErr->zErr = sqlite3_mprintf(
468 "sqlite3_%s() - %s (%d)", zFunc, sqlite3_errmsg(pDb->db),
469 sqlite3_extended_errcode(pDb->db)
470 );
471}
472
473static void test_error_x(
474 Error *pErr,
475 char *zErr
476){
477 if( pErr->rc==SQLITE_OK ){
478 pErr->rc = 1;
479 pErr->zErr = zErr;
480 }else{
481 sqlite3_free(zErr);
482 }
483}
484
485static void clear_error_x(
486 Error *pErr,
487 int rc
488){
489 if( pErr->rc==rc ){
490 pErr->rc = SQLITE_OK;
491 sqlite3_free(pErr->zErr);
492 pErr->zErr = 0;
493 }
494}
495
496static int busyhandler(void *pArg, int n){
497 usleep(10*1000);
498 return 1;
499}
500
501static void opendb_x(
502 Error *pErr, /* IN/OUT: Error code */
503 Sqlite *pDb, /* OUT: Database handle */
504 const char *zFile, /* Database file name */
505 int bDelete /* True to delete db file before opening */
506){
507 if( pErr->rc==SQLITE_OK ){
508 int rc;
509 if( bDelete ) unlink(zFile);
510 rc = sqlite3_open(zFile, &pDb->db);
511 if( rc ){
512 sqlite_error(pErr, pDb, "open");
513 sqlite3_close(pDb->db);
514 pDb->db = 0;
515 }else{
516 sqlite3_create_function(
517 pDb->db, "md5sum", -1, SQLITE_UTF8, 0, 0, md5step, md5finalize
518 );
519 sqlite3_busy_handler(pDb->db, busyhandler, 0);
520 }
521 }
522}
523
524static void closedb_x(
525 Error *pErr, /* IN/OUT: Error code */
526 Sqlite *pDb /* OUT: Database handle */
527){
528 int rc;
529 int i;
530 Statement *pIter;
531 Statement *pNext;
532 for(pIter=pDb->pCache; pIter; pIter=pNext){
533 pNext = pIter->pNext;
534 sqlite3_finalize(pIter->pStmt);
535 sqlite3_free(pIter);
536 }
537 for(i=0; i<pDb->nText; i++){
538 sqlite3_free(pDb->aText[i]);
539 }
540 sqlite3_free(pDb->aText);
541 rc = sqlite3_close(pDb->db);
542 if( rc && pErr->rc==SQLITE_OK ){
543 pErr->zErr = sqlite3_mprintf("%s", sqlite3_errmsg(pDb->db));
544 }
545 memset(pDb, 0, sizeof(Sqlite));
546}
547
548static void sql_script_x(
549 Error *pErr, /* IN/OUT: Error code */
550 Sqlite *pDb, /* Database handle */
551 const char *zSql /* SQL script to execute */
552){
553 if( pErr->rc==SQLITE_OK ){
554 pErr->rc = sqlite3_exec(pDb->db, zSql, 0, 0, &pErr->zErr);
555 }
556}
557
558static Statement *getSqlStatement(
559 Error *pErr, /* IN/OUT: Error code */
560 Sqlite *pDb, /* Database handle */
561 const char *zSql /* SQL statement */
562){
563 Statement *pRet;
564 int rc;
565
566 for(pRet=pDb->pCache; pRet; pRet=pRet->pNext){
567 if( 0==strcmp(sqlite3_sql(pRet->pStmt), zSql) ){
568 return pRet;
569 }
570 }
571
572 pRet = sqlite3_malloc(sizeof(Statement));
573 rc = sqlite3_prepare_v2(pDb->db, zSql, -1, &pRet->pStmt, 0);
574 if( rc!=SQLITE_OK ){
575 sqlite_error(pErr, pDb, "prepare_v2");
576 return 0;
577 }
578 assert( 0==strcmp(sqlite3_sql(pRet->pStmt), zSql) );
579
580 pRet->pNext = pDb->pCache;
581 pDb->pCache = pRet;
582 return pRet;
583}
584
585static sqlite3_stmt *getAndBindSqlStatement(
586 Error *pErr, /* IN/OUT: Error code */
587 Sqlite *pDb, /* Database handle */
588 va_list ap /* SQL followed by parameters */
589){
590 Statement *pStatement; /* The SQLite statement wrapper */
591 sqlite3_stmt *pStmt; /* The SQLite statement to return */
592 int i; /* Used to iterate through parameters */
593
594 pStatement = getSqlStatement(pErr, pDb, va_arg(ap, const char *));
595 if( !pStatement ) return 0;
596 pStmt = pStatement->pStmt;
597 for(i=1; i<=sqlite3_bind_parameter_count(pStmt); i++){
598 const char *zName = sqlite3_bind_parameter_name(pStmt, i);
599 void * pArg = va_arg(ap, void*);
600
601 switch( zName[1] ){
602 case 'i':
603 sqlite3_bind_int64(pStmt, i, *(i64 *)pArg);
604 break;
605
606 default:
607 pErr->rc = 1;
608 pErr->zErr = sqlite3_mprintf("Cannot discern type: \"%s\"", zName);
609 pStmt = 0;
610 break;
611 }
612 }
613
614 return pStmt;
615}
616
617static i64 execsql_i64_x(
618 Error *pErr, /* IN/OUT: Error code */
619 Sqlite *pDb, /* Database handle */
620 ... /* SQL and pointers to parameter values */
621){
622 i64 iRet = 0;
623 if( pErr->rc==SQLITE_OK ){
624 sqlite3_stmt *pStmt; /* SQL statement to execute */
625 va_list ap; /* ... arguments */
626 int i; /* Used to iterate through parameters */
627 va_start(ap, pDb);
628 pStmt = getAndBindSqlStatement(pErr, pDb, ap);
629 if( pStmt ){
630 int rc;
631 int first = 1;
632 while( SQLITE_ROW==sqlite3_step(pStmt) ){
633 if( first && sqlite3_column_count(pStmt)>0 ){
634 iRet = sqlite3_column_int64(pStmt, 0);
635 }
636 first = 0;
637 }
638 if( SQLITE_OK!=sqlite3_reset(pStmt) ){
639 sqlite_error(pErr, pDb, "reset");
640 }
641 }
642 va_end(ap);
643 }
644 return iRet;
645}
646
647static char * execsql_text_x(
648 Error *pErr, /* IN/OUT: Error code */
649 Sqlite *pDb, /* Database handle */
650 int iSlot, /* Db handle slot to store text in */
651 ... /* SQL and pointers to parameter values */
652){
653 char *zRet = 0;
654
655 if( iSlot>=pDb->nText ){
656 int nByte = sizeof(char *)*(iSlot+1);
657 pDb->aText = (char **)sqlite3_realloc(pDb->aText, nByte);
658 memset(&pDb->aText[pDb->nText], 0, sizeof(char*)*(iSlot+1-pDb->nText));
659 pDb->nText = iSlot+1;
660 }
661
662 if( pErr->rc==SQLITE_OK ){
663 sqlite3_stmt *pStmt; /* SQL statement to execute */
664 va_list ap; /* ... arguments */
665 int i; /* Used to iterate through parameters */
666 va_start(ap, iSlot);
667 pStmt = getAndBindSqlStatement(pErr, pDb, ap);
668 if( pStmt ){
669 int rc;
670 int first = 1;
671 while( SQLITE_ROW==sqlite3_step(pStmt) ){
672 if( first && sqlite3_column_count(pStmt)>0 ){
673 zRet = sqlite3_mprintf("%s", sqlite3_column_text(pStmt, 0));
674 sqlite3_free(pDb->aText[iSlot]);
675 pDb->aText[iSlot] = zRet;
676 }
677 first = 0;
678 }
679 if( SQLITE_OK!=sqlite3_reset(pStmt) ){
680 sqlite_error(pErr, pDb, "reset");
681 }
682 }
683 va_end(ap);
684 }
685
686 return zRet;
687}
688
689static void integrity_check_x(
690 Error *pErr, /* IN/OUT: Error code */
691 Sqlite *pDb /* Database handle */
692){
693 if( pErr->rc==SQLITE_OK ){
694 Statement *pStatement; /* Statement to execute */
695 int rc; /* Return code */
696 char *zErr = 0; /* Integrity check error */
697
698 pStatement = getSqlStatement(pErr, pDb, "PRAGMA integrity_check");
699 if( pStatement ){
700 sqlite3_stmt *pStmt = pStatement->pStmt;
701 while( SQLITE_ROW==sqlite3_step(pStmt) ){
702 const char *z = sqlite3_column_text(pStmt, 0);
703 if( strcmp(z, "ok") ){
704 if( zErr==0 ){
705 zErr = sqlite3_mprintf("%s", z);
706 }else{
707 zErr = sqlite3_mprintf("%z\n%s", zErr, z);
708 }
709 }
710 }
711 sqlite3_reset(pStmt);
712
713 if( zErr ){
714 pErr->zErr = zErr;
715 pErr->rc = 1;
716 }
717 }
718 }
719}
720
721static void *launch_thread_main(void *pArg){
722 Thread *p = (Thread *)pArg;
723 return (void *)p->xProc(p->iTid, p->iArg);
724}
725
726static void launch_thread_x(
727 Error *pErr, /* IN/OUT: Error code */
728 Threadset *pThreads, /* Thread set */
729 char *(*xProc)(int, int), /* Proc to run */
730 int iArg /* Argument passed to thread proc */
731){
732 if( pErr->rc==SQLITE_OK ){
733 int iTid = ++pThreads->iMaxTid;
734 Thread *p;
735 int rc;
736
737 p = (Thread *)sqlite3_malloc(sizeof(Thread));
738 memset(p, 0, sizeof(Thread));
739 p->iTid = iTid;
740 p->iArg = iArg;
741 p->xProc = xProc;
742
743 rc = pthread_create(&p->tid, NULL, launch_thread_main, (void *)p);
744 if( rc!=0 ){
745 system_error(pErr, rc);
746 sqlite3_free(p);
747 }else{
748 p->pNext = pThreads->pThread;
749 pThreads->pThread = p;
750 }
751 }
752}
753
754static void join_all_threads_x(
755 Error *pErr, /* IN/OUT: Error code */
756 Threadset *pThreads /* Thread set */
757){
758 Thread *p;
759 Thread *pNext;
760 for(p=pThreads->pThread; p; p=pNext){
761 void *ret;
762 pNext = p->pNext;
763 int rc;
764 rc = pthread_join(p->tid, &ret);
765 if( rc!=0 ){
766 if( pErr->rc==SQLITE_OK ) system_error(pErr, rc);
767 }else{
768 printf("Thread %d says: %s\n", p->iTid, (ret==0 ? "..." : (char *)ret));
769 }
770 sqlite3_free(p);
771 }
772 pThreads->pThread = 0;
773}
774
775static i64 filesize_x(
776 Error *pErr,
777 const char *zFile
778){
779 i64 iRet = 0;
780 if( pErr->rc==SQLITE_OK ){
781 struct stat sStat;
782 if( stat(zFile, &sStat) ){
783 iRet = -1;
784 }else{
785 iRet = sStat.st_size;
786 }
787 }
788 return iRet;
789}
790
791static void filecopy_x(
792 Error *pErr,
793 const char *zFrom,
794 const char *zTo
795){
796 if( pErr->rc==SQLITE_OK ){
797 i64 nByte = filesize_x(pErr, zFrom);
798 if( nByte<0 ){
799 test_error_x(pErr, sqlite3_mprintf("no such file: %s", zFrom));
800 }else{
801 i64 iOff;
802 char aBuf[1024];
803 int fd1;
804 int fd2;
805 unlink(zTo);
806
807 fd1 = open(zFrom, O_RDONLY);
808 if( fd1<0 ){
809 system_error(pErr, errno);
810 return;
811 }
812 fd2 = open(zTo, O_RDWR|O_CREAT|O_EXCL, 0644);
813 if( fd2<0 ){
814 system_error(pErr, errno);
815 close(fd1);
816 return;
817 }
818
819 iOff = 0;
820 while( iOff<nByte ){
821 int nCopy = sizeof(aBuf);
822 if( nCopy+iOff>nByte ){
823 nCopy = nByte - iOff;
824 }
825 if( nCopy!=read(fd1, aBuf, nCopy) ){
826 system_error(pErr, errno);
827 break;
828 }
829 if( nCopy!=write(fd2, aBuf, nCopy) ){
830 system_error(pErr, errno);
831 break;
832 }
833 iOff += nCopy;
834 }
835
836 close(fd1);
837 close(fd2);
838 }
839 }
840}
841
842/*
843** Used by setstoptime() and timetostop().
844*/
845static double timelimit = 0.0;
846static sqlite3_vfs *pTimelimitVfs = 0;
847
848static void setstoptime_x(
849 Error *pErr, /* IN/OUT: Error code */
850 int nMs /* Milliseconds until "stop time" */
851){
852 if( pErr->rc==SQLITE_OK ){
853 double t;
854 int rc;
855 pTimelimitVfs = sqlite3_vfs_find(0);
856 rc = pTimelimitVfs->xCurrentTime(pTimelimitVfs, &t);
857 if( rc!=SQLITE_OK ){
858 pErr->rc = rc;
859 }else{
860 timelimit = t + ((double)nMs)/(1000.0*60.0*60.0*24.0);
861 }
862 }
863}
864
865static int timetostop_x(
866 Error *pErr /* IN/OUT: Error code */
867){
868 int ret = 1;
869 if( pErr->rc==SQLITE_OK ){
870 double t;
871 int rc;
872 rc = pTimelimitVfs->xCurrentTime(pTimelimitVfs, &t);
873 if( rc!=SQLITE_OK ){
874 pErr->rc = rc;
875 }else{
876 ret = (t >= timelimit);
877 }
878 }
879 return ret;
880}
881
882/*
883** The "Set Error Line" macro.
884*/
885#define SEL(e) ((e)->iLine = ((e)->rc ? (e)->iLine : __LINE__))
886
887
888/*************************************************************************
889**************************************************************************
890**************************************************************************
891** End infrastructure. Begin tests.
892*/
893
894#define WALTHREAD1_NTHREAD 10
895#define WALTHREAD3_NTHREAD 6
896
897static char *walthread1_thread(int iTid, int iArg){
898 Error err = {0}; /* Error code and message */
899 Sqlite db = {0}; /* SQLite database connection */
900 int nIter = 0; /* Iterations so far */
901
902 opendb(&err, &db, "test.db", 0);
903 while( !timetostop(&err) ){
904 const char *azSql[] = {
905 "SELECT md5sum(x) FROM t1 WHERE rowid != (SELECT max(rowid) FROM t1)",
906 "SELECT x FROM t1 WHERE rowid = (SELECT max(rowid) FROM t1)",
907 };
908 char *z1, *z2, *z3;
909
910 execsql(&err, &db, "BEGIN");
911 integrity_check(&err, &db);
912 z1 = execsql_text(&err, &db, 1, azSql[0]);
913 z2 = execsql_text(&err, &db, 2, azSql[1]);
914 z3 = execsql_text(&err, &db, 3, azSql[0]);
915 execsql(&err, &db, "COMMIT");
916
917 if( strcmp(z1, z2) || strcmp(z1, z3) ){
918 test_error(&err, "Failed read: %s %s %s", z1, z2, z3);
919 }
920
921 sql_script(&err, &db,
922 "BEGIN;"
923 "INSERT INTO t1 VALUES(randomblob(100));"
924 "INSERT INTO t1 VALUES(randomblob(100));"
925 "INSERT INTO t1 SELECT md5sum(x) FROM t1;"
926 "COMMIT;"
927 );
928 nIter++;
929 }
930 closedb(&err, &db);
931
932 print_and_free_err(&err);
933 return sqlite3_mprintf("%d iterations", nIter);
934}
935
936static char *walthread1_ckpt_thread(int iTid, int iArg){
937 Error err = {0}; /* Error code and message */
938 Sqlite db = {0}; /* SQLite database connection */
939 int nCkpt = 0; /* Checkpoints so far */
940
941 opendb(&err, &db, "test.db", 0);
942 while( !timetostop(&err) ){
943 usleep(500*1000);
944 execsql(&err, &db, "PRAGMA wal_checkpoint");
945 if( err.rc==SQLITE_OK ) nCkpt++;
946 clear_error(&err, SQLITE_BUSY);
947 }
948 closedb(&err, &db);
949
950 print_and_free_err(&err);
951 return sqlite3_mprintf("%d checkpoints", nCkpt);
952}
953
954static void walthread1(int nMs){
955 Error err = {0}; /* Error code and message */
956 Sqlite db = {0}; /* SQLite database connection */
957 Threadset threads = {0}; /* Test threads */
958 int i; /* Iterator variable */
959
960 opendb(&err, &db, "test.db", 1);
961 sql_script(&err, &db,
962 "PRAGMA journal_mode = WAL;"
963 "CREATE TABLE t1(x PRIMARY KEY);"
964 "INSERT INTO t1 VALUES(randomblob(100));"
965 "INSERT INTO t1 VALUES(randomblob(100));"
966 "INSERT INTO t1 SELECT md5sum(x) FROM t1;"
967 );
968
969 setstoptime(&err, nMs);
970 for(i=0; i<WALTHREAD1_NTHREAD; i++){
971 launch_thread(&err, &threads, walthread1_thread, 0);
972 }
973 launch_thread(&err, &threads, walthread1_ckpt_thread, 0);
974 join_all_threads(&err, &threads);
975
976 print_and_free_err(&err);
977}
978
979static char *walthread2_thread(int iTid, int iArg){
980 Error err = {0}; /* Error code and message */
981 Sqlite db = {0}; /* SQLite database connection */
982 int anTrans[2] = {0, 0}; /* Number of WAL and Rollback transactions */
983
984 const char *zJournal = "PRAGMA journal_mode = WAL";
985 if( iArg ){ zJournal = "PRAGMA journal_mode = DELETE"; }
986
987 while( !timetostop(&err) ){
988 int journal_exists = 0;
989 int wal_exists = 0;
990
991 opendb(&err, &db, "test.db", 0);
992
993 sql_script(&err, &db, zJournal);
994 clear_error(&err, SQLITE_BUSY);
995 sql_script(&err, &db, "BEGIN");
996 sql_script(&err, &db, "INSERT INTO t1 VALUES(NULL, randomblob(100))");
997
998 journal_exists = (filesize(&err, "test.db-journal") >= 0);
999 wal_exists = (filesize(&err, "test.db-wal") >= 0);
1000 if( (journal_exists+wal_exists)!=1 ){
1001 test_error(&err, "File system looks incorrect (%d, %d)",
1002 journal_exists, wal_exists
1003 );
1004 }
1005 anTrans[journal_exists]++;
1006
1007 sql_script(&err, &db, "COMMIT");
1008 integrity_check(&err, &db);
1009 closedb(&err, &db);
1010 }
1011
1012 print_and_free_err(&err);
1013 return sqlite3_mprintf("W %d R %d", anTrans[0], anTrans[1]);
1014}
1015
1016static void walthread2(int nMs){
1017 Error err = {0};
1018 Sqlite db = {0};
1019 Threadset threads = {0};
1020
1021 opendb(&err, &db, "test.db", 1);
1022 sql_script(&err, &db, "CREATE TABLE t1(x INTEGER PRIMARY KEY, y UNIQUE)");
1023 closedb(&err, &db);
1024
1025 setstoptime(&err, nMs);
1026 launch_thread(&err, &threads, walthread2_thread, 0);
1027 launch_thread(&err, &threads, walthread2_thread, 0);
1028 launch_thread(&err, &threads, walthread2_thread, 1);
1029 launch_thread(&err, &threads, walthread2_thread, 1);
1030 join_all_threads(&err, &threads);
1031
1032 print_and_free_err(&err);
1033}
1034
1035static char *walthread3_thread(int iTid, int iArg){
1036 Error err = {0}; /* Error code and message */
1037 Sqlite db = {0}; /* SQLite database connection */
1038 i64 iNextWrite; /* Next value this thread will write */
1039
1040 opendb(&err, &db, "test.db", 0);
1041 sql_script(&err, &db, "PRAGMA wal_autocheckpoint = 10");
1042
1043 iNextWrite = iArg+1;
1044 while( 1 ){
1045 i64 sum1;
1046 i64 sum2;
1047 int stop = 0; /* True to stop executing (test timed out) */
1048
1049 while( 0==(stop = timetostop(&err)) ){
1050 i64 iMax = execsql_i64(&err, &db, "SELECT max(cnt) FROM t1");
1051 if( iMax+1==iNextWrite ) break;
1052 }
1053 if( stop ) break;
1054
1055 sum1 = execsql_i64(&err, &db, "SELECT sum(cnt) FROM t1");
1056 sum2 = execsql_i64(&err, &db, "SELECT sum(sum1) FROM t1");
1057 execsql_i64(&err, &db,
1058 "INSERT INTO t1 VALUES(:iNextWrite, :iSum1, :iSum2)",
1059 &iNextWrite, &sum1, &sum2
1060 );
1061 integrity_check(&err, &db);
1062
1063 iNextWrite += WALTHREAD3_NTHREAD;
1064 }
1065
1066 closedb(&err, &db);
1067 print_and_free_err(&err);
1068 return 0;
1069}
1070
1071static void walthread3(int nMs){
1072 Error err = {0};
1073 Sqlite db = {0};
1074 Threadset threads = {0};
1075 int i;
1076
1077 opendb(&err, &db, "test.db", 1);
1078 sql_script(&err, &db,
1079 "PRAGMA journal_mode = WAL;"
1080 "CREATE TABLE t1(cnt PRIMARY KEY, sum1, sum2);"
1081 "CREATE INDEX i1 ON t1(sum1);"
1082 "CREATE INDEX i2 ON t1(sum2);"
1083 "INSERT INTO t1 VALUES(0, 0, 0);"
1084 );
1085 closedb(&err, &db);
1086
1087 setstoptime(&err, nMs);
1088 for(i=0; i<WALTHREAD3_NTHREAD; i++){
1089 launch_thread(&err, &threads, walthread3_thread, i);
1090 }
1091 join_all_threads(&err, &threads);
1092
1093 print_and_free_err(&err);
1094}
1095
1096static char *walthread4_reader_thread(int iTid, int iArg){
1097 Error err = {0}; /* Error code and message */
1098 Sqlite db = {0}; /* SQLite database connection */
1099
1100 opendb(&err, &db, "test.db", 0);
1101 while( !timetostop(&err) ){
1102 integrity_check(&err, &db);
1103 }
1104 closedb(&err, &db);
1105
1106 print_and_free_err(&err);
1107 return 0;
1108}
1109
1110static char *walthread4_writer_thread(int iTid, int iArg){
1111 Error err = {0}; /* Error code and message */
1112 Sqlite db = {0}; /* SQLite database connection */
1113 i64 iRow = 1;
1114
1115 opendb(&err, &db, "test.db", 0);
1116 sql_script(&err, &db, "PRAGMA wal_autocheckpoint = 15;");
1117 while( !timetostop(&err) ){
1118 execsql_i64(
1119 &err, &db, "REPLACE INTO t1 VALUES(:iRow, randomblob(300))", &iRow
1120 );
1121 iRow++;
1122 if( iRow==10 ) iRow = 0;
1123 }
1124 closedb(&err, &db);
1125
1126 print_and_free_err(&err);
1127 return 0;
1128}
1129
1130static void walthread4(int nMs){
1131 Error err = {0};
1132 Sqlite db = {0};
1133 Threadset threads = {0};
1134
1135 opendb(&err, &db, "test.db", 1);
1136 sql_script(&err, &db,
1137 "PRAGMA journal_mode = WAL;"
1138 "CREATE TABLE t1(a INTEGER PRIMARY KEY, b UNIQUE);"
1139 );
1140 closedb(&err, &db);
1141
1142 setstoptime(&err, nMs);
1143 launch_thread(&err, &threads, walthread4_reader_thread, 0);
1144 launch_thread(&err, &threads, walthread4_writer_thread, 0);
1145 join_all_threads(&err, &threads);
1146
1147 print_and_free_err(&err);
1148}
1149
1150static char *walthread5_thread(int iTid, int iArg){
1151 Error err = {0}; /* Error code and message */
1152 Sqlite db = {0}; /* SQLite database connection */
1153 i64 nRow;
1154
1155 opendb(&err, &db, "test.db", 0);
1156 nRow = execsql_i64(&err, &db, "SELECT count(*) FROM t1");
1157 closedb(&err, &db);
1158
1159 if( nRow!=65536 ) test_error(&err, "Bad row count: %d", (int)nRow);
1160 print_and_free_err(&err);
1161 return 0;
1162}
1163static void walthread5(int nMs){
1164 Error err = {0};
1165 Sqlite db = {0};
1166 Threadset threads = {0};
1167
1168 opendb(&err, &db, "test.db", 1);
1169 sql_script(&err, &db,
1170 "PRAGMA wal_autocheckpoint = 0;"
1171 "PRAGMA page_size = 1024;"
1172 "PRAGMA journal_mode = WAL;"
1173 "CREATE TABLE t1(x);"
1174 "BEGIN;"
1175 "INSERT INTO t1 VALUES(randomblob(900));"
1176 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 2 */"
1177 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 4 */"
1178 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 8 */"
1179 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 16 */"
1180 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 32 */"
1181 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 64 */"
1182 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 128 */"
1183 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 256 */"
1184 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 512 */"
1185 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 1024 */"
1186 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 2048 */"
1187 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 4096 */"
1188 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 8192 */"
1189 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 16384 */"
1190 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 32768 */"
1191 "INSERT INTO t1 SELECT randomblob(900) FROM t1; /* 65536 */"
1192 "COMMIT;"
1193 );
1194 filecopy(&err, "test.db", "test_sv.db");
1195 filecopy(&err, "test.db-wal", "test_sv.db-wal");
1196 closedb(&err, &db);
1197
1198 filecopy(&err, "test_sv.db", "test.db");
1199 filecopy(&err, "test_sv.db-wal", "test.db-wal");
1200
1201 if( err.rc==SQLITE_OK ){
1202 printf(" WAL file is %d bytes,", (int)filesize(&err,"test.db-wal"));
1203 printf(" DB file is %d.\n", (int)filesize(&err,"test.db"));
1204 }
1205
1206 setstoptime(&err, nMs);
1207 launch_thread(&err, &threads, walthread5_thread, 0);
1208 launch_thread(&err, &threads, walthread5_thread, 0);
1209 launch_thread(&err, &threads, walthread5_thread, 0);
1210 launch_thread(&err, &threads, walthread5_thread, 0);
1211 launch_thread(&err, &threads, walthread5_thread, 0);
1212 join_all_threads(&err, &threads);
1213
1214 if( err.rc==SQLITE_OK ){
1215 printf(" WAL file is %d bytes,", (int)filesize(&err,"test.db-wal"));
1216 printf(" DB file is %d.\n", (int)filesize(&err,"test.db"));
1217 }
1218
1219 print_and_free_err(&err);
1220}
1221
1222int main(int argc, char **argv){
1223 struct ThreadTest {
1224 void (*xTest)(int);
1225 const char *zTest;
1226 int nMs;
1227 } aTest[] = {
1228 { walthread1, "walthread1", 20000 },
1229 { walthread2, "walthread2", 20000 },
1230 { walthread3, "walthread3", 20000 },
1231 { walthread4, "walthread4", 20000 },
1232 { walthread5, "walthread5", 1000 },
1233 };
1234
1235 int i;
1236 char *zTest = 0;
1237 int nTest = 0;
1238 int bTestfound = 0;
1239 int bPrefix = 0;
1240
1241 if( argc>2 ) goto usage;
1242 if( argc==2 ){
1243 zTest = argv[1];
1244 nTest = strlen(zTest);
1245 if( zTest[nTest-1]=='*' ){
1246 nTest--;
1247 bPrefix = 1;
1248 }
1249 }
1250
1251 sqlite3_config(SQLITE_CONFIG_MULTITHREAD);
1252
1253 for(i=0; i<sizeof(aTest)/sizeof(aTest[0]); i++){
1254 char const *z = aTest[i].zTest;
1255 int n = strlen(z);
1256 if( !zTest || ((bPrefix || n==nTest) && 0==strncmp(zTest, z, nTest)) ){
1257 printf("Running %s for %d seconds...\n", z, aTest[i].nMs/1000);
1258 aTest[i].xTest(aTest[i].nMs);
1259 bTestfound++;
1260 }
1261 }
1262 if( bTestfound==0 ) goto usage;
1263
1264 printf("Total of %d errors across all tests\n", nGlobalErr);
1265 return (nGlobalErr>0 ? 255 : 0);
1266
1267 usage:
1268 printf("Usage: %s [testname|testprefix*]\n", argv[0]);
1269 printf("Available tests are:\n");
1270 for(i=0; i<sizeof(aTest)/sizeof(aTest[0]); i++){
1271 printf(" %s\n", aTest[i].zTest);
1272 }
1273
1274 return 254;
1275}
1276
1277