1*c5c4113dSnw141292 2*c5c4113dSnw141292 #pragma ident "%Z%%M% %I% %E% SMI" 3*c5c4113dSnw141292 4*c5c4113dSnw141292 /* 5*c5c4113dSnw141292 ** 2004 January 13 6*c5c4113dSnw141292 ** 7*c5c4113dSnw141292 ** The author disclaims copyright to this source code. In place of 8*c5c4113dSnw141292 ** a legal notice, here is a blessing: 9*c5c4113dSnw141292 ** 10*c5c4113dSnw141292 ** May you do good and not evil. 11*c5c4113dSnw141292 ** May you find forgiveness for yourself and forgive others. 12*c5c4113dSnw141292 ** May you share freely, never taking more than you give. 13*c5c4113dSnw141292 ** 14*c5c4113dSnw141292 ************************************************************************* 15*c5c4113dSnw141292 ** This file implements a simple standalone program used to test whether 16*c5c4113dSnw141292 ** or not the SQLite library is threadsafe. 17*c5c4113dSnw141292 ** 18*c5c4113dSnw141292 ** This file is NOT part of the standard SQLite library. It is used for 19*c5c4113dSnw141292 ** testing only. 20*c5c4113dSnw141292 */ 21*c5c4113dSnw141292 #include <stdio.h> 22*c5c4113dSnw141292 #include <unistd.h> 23*c5c4113dSnw141292 #include <pthread.h> 24*c5c4113dSnw141292 #include <string.h> 25*c5c4113dSnw141292 #include <stdlib.h> 26*c5c4113dSnw141292 #include "sqlite.h" 27*c5c4113dSnw141292 28*c5c4113dSnw141292 /* 29*c5c4113dSnw141292 ** Name of the database 30*c5c4113dSnw141292 */ 31*c5c4113dSnw141292 #define DB_FILE "test.db" 32*c5c4113dSnw141292 33*c5c4113dSnw141292 /* 34*c5c4113dSnw141292 ** When this variable becomes non-zero, all threads stop 35*c5c4113dSnw141292 ** what they are doing. 36*c5c4113dSnw141292 */ 37*c5c4113dSnw141292 volatile int all_stop = 0; 38*c5c4113dSnw141292 39*c5c4113dSnw141292 /* 40*c5c4113dSnw141292 ** Callback from the integrity check. If the result is anything other 41*c5c4113dSnw141292 ** than "ok" it means the integrity check has failed. Set the "all_stop" 42*c5c4113dSnw141292 ** global variable to stop all other activity. Print the error message 43*c5c4113dSnw141292 ** or print OK if the string "ok" is seen. 44*c5c4113dSnw141292 */ 45*c5c4113dSnw141292 int check_callback(void *notUsed, int argc, char **argv, char **notUsed2){ 46*c5c4113dSnw141292 if( strcmp(argv[0],"ok") ){ 47*c5c4113dSnw141292 all_stop = 1; 48*c5c4113dSnw141292 fprintf(stderr,"pid=%d. %s\n", getpid(), argv[0]); 49*c5c4113dSnw141292 }else{ 50*c5c4113dSnw141292 /* fprintf(stderr,"pid=%d. OK\n", getpid()); */ 51*c5c4113dSnw141292 } 52*c5c4113dSnw141292 return 0; 53*c5c4113dSnw141292 } 54*c5c4113dSnw141292 55*c5c4113dSnw141292 /* 56*c5c4113dSnw141292 ** Do an integrity check on the database. If the first integrity check 57*c5c4113dSnw141292 ** fails, try it a second time. 58*c5c4113dSnw141292 */ 59*c5c4113dSnw141292 int integrity_check(sqlite *db){ 60*c5c4113dSnw141292 int rc; 61*c5c4113dSnw141292 if( all_stop ) return 0; 62*c5c4113dSnw141292 /* fprintf(stderr,"pid=%d: CHECK\n", getpid()); */ 63*c5c4113dSnw141292 rc = sqlite_exec(db, "pragma integrity_check", check_callback, 0, 0); 64*c5c4113dSnw141292 if( rc!=SQLITE_OK && rc!=SQLITE_BUSY ){ 65*c5c4113dSnw141292 fprintf(stderr,"pid=%d, Integrity check returns %d\n", getpid(), rc); 66*c5c4113dSnw141292 } 67*c5c4113dSnw141292 if( all_stop ){ 68*c5c4113dSnw141292 sqlite_exec(db, "pragma integrity_check", check_callback, 0, 0); 69*c5c4113dSnw141292 } 70*c5c4113dSnw141292 return 0; 71*c5c4113dSnw141292 } 72*c5c4113dSnw141292 73*c5c4113dSnw141292 /* 74*c5c4113dSnw141292 ** This is the worker thread 75*c5c4113dSnw141292 */ 76*c5c4113dSnw141292 void *worker(void *notUsed){ 77*c5c4113dSnw141292 sqlite *db; 78*c5c4113dSnw141292 int rc; 79*c5c4113dSnw141292 int cnt = 0; 80*c5c4113dSnw141292 while( !all_stop && cnt++<10000 ){ 81*c5c4113dSnw141292 if( cnt%1000==0 ) printf("pid=%d: %d\n", getpid(), cnt); 82*c5c4113dSnw141292 while( (db = sqlite_open(DB_FILE, 0, 0))==0 ) sched_yield(); 83*c5c4113dSnw141292 sqlite_exec(db, "PRAGMA synchronous=OFF", 0, 0, 0); 84*c5c4113dSnw141292 integrity_check(db); 85*c5c4113dSnw141292 if( all_stop ){ sqlite_close(db); break; } 86*c5c4113dSnw141292 /* fprintf(stderr, "pid=%d: BEGIN\n", getpid()); */ 87*c5c4113dSnw141292 rc = sqlite_exec(db, "INSERT INTO t1 VALUES('bogus data')", 0, 0, 0); 88*c5c4113dSnw141292 /* fprintf(stderr, "pid=%d: END rc=%d\n", getpid(), rc); */ 89*c5c4113dSnw141292 sqlite_close(db); 90*c5c4113dSnw141292 } 91*c5c4113dSnw141292 return 0; 92*c5c4113dSnw141292 } 93*c5c4113dSnw141292 94*c5c4113dSnw141292 /* 95*c5c4113dSnw141292 ** Initialize the database and start the threads 96*c5c4113dSnw141292 */ 97*c5c4113dSnw141292 int main(int argc, char **argv){ 98*c5c4113dSnw141292 sqlite *db; 99*c5c4113dSnw141292 int i, rc; 100*c5c4113dSnw141292 pthread_t aThread[5]; 101*c5c4113dSnw141292 102*c5c4113dSnw141292 if( strcmp(DB_FILE,":memory:") ) unlink(DB_FILE); 103*c5c4113dSnw141292 db = sqlite_open(DB_FILE, 0, 0); 104*c5c4113dSnw141292 if( db==0 ){ 105*c5c4113dSnw141292 fprintf(stderr,"unable to initialize database\n"); 106*c5c4113dSnw141292 exit(1); 107*c5c4113dSnw141292 } 108*c5c4113dSnw141292 rc = sqlite_exec(db, "CREATE TABLE t1(x);", 0,0,0); 109*c5c4113dSnw141292 if( rc ){ 110*c5c4113dSnw141292 fprintf(stderr,"cannot create table t1: %d\n", rc); 111*c5c4113dSnw141292 exit(1); 112*c5c4113dSnw141292 } 113*c5c4113dSnw141292 sqlite_close(db); 114*c5c4113dSnw141292 for(i=0; i<sizeof(aThread)/sizeof(aThread[0]); i++){ 115*c5c4113dSnw141292 pthread_create(&aThread[i], 0, worker, 0); 116*c5c4113dSnw141292 } 117*c5c4113dSnw141292 for(i=0; i<sizeof(aThread)/sizeof(aThread[i]); i++){ 118*c5c4113dSnw141292 pthread_join(aThread[i], 0); 119*c5c4113dSnw141292 } 120*c5c4113dSnw141292 if( !all_stop ){ 121*c5c4113dSnw141292 printf("Everything seems ok.\n"); 122*c5c4113dSnw141292 return 0; 123*c5c4113dSnw141292 }else{ 124*c5c4113dSnw141292 printf("We hit an error.\n"); 125*c5c4113dSnw141292 return 1; 126*c5c4113dSnw141292 } 127*c5c4113dSnw141292 } 128