1c713bdc7Sdrh /*
2c713bdc7Sdrh ** 2004 January 13
3c713bdc7Sdrh **
4c713bdc7Sdrh ** The author disclaims copyright to this source code. In place of
5c713bdc7Sdrh ** a legal notice, here is a blessing:
6c713bdc7Sdrh **
7c713bdc7Sdrh ** May you do good and not evil.
8c713bdc7Sdrh ** May you find forgiveness for yourself and forgive others.
9c713bdc7Sdrh ** May you share freely, never taking more than you give.
10c713bdc7Sdrh **
11c713bdc7Sdrh *************************************************************************
12c713bdc7Sdrh ** This file implements a simple standalone program used to test whether
13c713bdc7Sdrh ** or not the SQLite library is threadsafe.
14c713bdc7Sdrh **
15c713bdc7Sdrh ** This file is NOT part of the standard SQLite library. It is used for
16c713bdc7Sdrh ** testing only.
17c713bdc7Sdrh */
18c713bdc7Sdrh #include <stdio.h>
19c713bdc7Sdrh #include <unistd.h>
20c713bdc7Sdrh #include <pthread.h>
21c713bdc7Sdrh #include <string.h>
22c713bdc7Sdrh #include <stdlib.h>
23c713bdc7Sdrh #include "sqlite.h"
24c713bdc7Sdrh
25c713bdc7Sdrh /*
26c713bdc7Sdrh ** Name of the database
27c713bdc7Sdrh */
28c713bdc7Sdrh #define DB_FILE "test.db"
29c713bdc7Sdrh
30c713bdc7Sdrh /*
31c713bdc7Sdrh ** When this variable becomes non-zero, all threads stop
32c713bdc7Sdrh ** what they are doing.
33c713bdc7Sdrh */
34c713bdc7Sdrh volatile int all_stop = 0;
35c713bdc7Sdrh
36c713bdc7Sdrh /*
37c713bdc7Sdrh ** Callback from the integrity check. If the result is anything other
38c713bdc7Sdrh ** than "ok" it means the integrity check has failed. Set the "all_stop"
39c713bdc7Sdrh ** global variable to stop all other activity. Print the error message
40c713bdc7Sdrh ** or print OK if the string "ok" is seen.
41c713bdc7Sdrh */
check_callback(void * pid,int argc,char ** argv,char ** notUsed2)42ba92a2ebSdrh int check_callback(void *pid, int argc, char **argv, char **notUsed2){
43ba92a2ebSdrh int id = (int)pid;
44c713bdc7Sdrh if( strcmp(argv[0],"ok") ){
45c713bdc7Sdrh all_stop = 1;
46*dca92904Sdan fprintf(stderr,"%d: %s\n", id, argv[0]);
47c713bdc7Sdrh }else{
48ba92a2ebSdrh /* fprintf(stderr,"%d: OK\n", id); */
49c713bdc7Sdrh }
50c713bdc7Sdrh return 0;
51c713bdc7Sdrh }
52c713bdc7Sdrh
53c713bdc7Sdrh /*
54c713bdc7Sdrh ** Do an integrity check on the database. If the first integrity check
55c713bdc7Sdrh ** fails, try it a second time.
56c713bdc7Sdrh */
integrity_check(sqlite * db,int id)57ba92a2ebSdrh int integrity_check(sqlite *db, int id){
58c713bdc7Sdrh int rc;
59c713bdc7Sdrh if( all_stop ) return 0;
60ba92a2ebSdrh /* fprintf(stderr,"%d: CHECK\n", id); */
615fdae771Sdrh rc = sqlite3_exec(db, "pragma integrity_check", check_callback, 0, 0);
62c713bdc7Sdrh if( rc!=SQLITE_OK && rc!=SQLITE_BUSY ){
63ba92a2ebSdrh fprintf(stderr,"%d, Integrity check returns %d\n", id, rc);
64c713bdc7Sdrh }
65c713bdc7Sdrh if( all_stop ){
665fdae771Sdrh sqlite3_exec(db, "pragma integrity_check", check_callback, 0, 0);
67c713bdc7Sdrh }
68c713bdc7Sdrh return 0;
69c713bdc7Sdrh }
70c713bdc7Sdrh
71c713bdc7Sdrh /*
72c713bdc7Sdrh ** This is the worker thread
73c713bdc7Sdrh */
worker(void * workerArg)74ba92a2ebSdrh void *worker(void *workerArg){
75c713bdc7Sdrh sqlite *db;
76ba92a2ebSdrh int id = (int)workerArg;
77c713bdc7Sdrh int rc;
78c713bdc7Sdrh int cnt = 0;
79ba92a2ebSdrh fprintf(stderr, "Starting worker %d\n", id);
80c713bdc7Sdrh while( !all_stop && cnt++<10000 ){
81ba92a2ebSdrh if( cnt%100==0 ) printf("%d: %d\n", id, cnt);
825fdae771Sdrh while( (sqlite3_open(DB_FILE, &db))!=SQLITE_OK ) sched_yield();
835fdae771Sdrh sqlite3_exec(db, "PRAGMA synchronous=OFF", 0, 0, 0);
84ba92a2ebSdrh /* integrity_check(db, id); */
855fdae771Sdrh if( all_stop ){ sqlite3_close(db); break; }
86ba92a2ebSdrh /* fprintf(stderr, "%d: BEGIN\n", id); */
875fdae771Sdrh rc = sqlite3_exec(db, "INSERT INTO t1 VALUES('bogus data')", 0, 0, 0);
88ba92a2ebSdrh /* fprintf(stderr, "%d: END rc=%d\n", id, rc); */
895fdae771Sdrh sqlite3_close(db);
90c713bdc7Sdrh }
91ba92a2ebSdrh fprintf(stderr, "Worker %d finished\n", id);
92c713bdc7Sdrh return 0;
93c713bdc7Sdrh }
94c713bdc7Sdrh
95c713bdc7Sdrh /*
96c713bdc7Sdrh ** Initialize the database and start the threads
97c713bdc7Sdrh */
main(int argc,char ** argv)98c713bdc7Sdrh int main(int argc, char **argv){
99c713bdc7Sdrh sqlite *db;
100c713bdc7Sdrh int i, rc;
101c713bdc7Sdrh pthread_t aThread[5];
102c713bdc7Sdrh
1032b444853Sdanielk1977 if( strcmp(DB_FILE,":memory:") ){
1042b444853Sdanielk1977 char *zJournal = sqlite3_mprintf("%s-journal", DB_FILE);
1052b444853Sdanielk1977 unlink(DB_FILE);
1062b444853Sdanielk1977 unlink(zJournal);
107ba92a2ebSdrh sqlite3_free(zJournal);
1082b444853Sdanielk1977 }
1095fdae771Sdrh sqlite3_open(DB_FILE, &db);
110c713bdc7Sdrh if( db==0 ){
111c713bdc7Sdrh fprintf(stderr,"unable to initialize database\n");
112c713bdc7Sdrh exit(1);
113c713bdc7Sdrh }
1145fdae771Sdrh rc = sqlite3_exec(db, "CREATE TABLE t1(x);", 0,0,0);
115c713bdc7Sdrh if( rc ){
116c713bdc7Sdrh fprintf(stderr,"cannot create table t1: %d\n", rc);
117c713bdc7Sdrh exit(1);
118c713bdc7Sdrh }
1195fdae771Sdrh sqlite3_close(db);
120c713bdc7Sdrh for(i=0; i<sizeof(aThread)/sizeof(aThread[0]); i++){
121ba92a2ebSdrh pthread_create(&aThread[i], 0, worker, (void*)i);
122c713bdc7Sdrh }
123c713bdc7Sdrh for(i=0; i<sizeof(aThread)/sizeof(aThread[i]); i++){
124c713bdc7Sdrh pthread_join(aThread[i], 0);
125c713bdc7Sdrh }
126c713bdc7Sdrh if( !all_stop ){
127c713bdc7Sdrh printf("Everything seems ok.\n");
128c713bdc7Sdrh return 0;
129c713bdc7Sdrh }else{
130c713bdc7Sdrh printf("We hit an error.\n");
131c713bdc7Sdrh return 1;
132c713bdc7Sdrh }
133c713bdc7Sdrh }
134