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#include "sqlite3rbu.h" |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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void usage(const char *zArgv0){ |
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fprintf(stderr, |
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"Usage: %s ?OPTIONS? TARGET-DB RBU-DB\n" |
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"\n" |
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"Where options are:\n" |
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"\n" |
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" -step NSTEP\n" |
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" -statstep NSTATSTEP\n" |
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" -vacuum\n" |
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" -presql SQL\n" |
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"\n" |
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" If the -vacuum switch is not present, argument RBU-DB must be an RBU\n" |
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" database containing an update suitable for target database TARGET-DB.\n" |
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" Or, if -vacuum is specified, then TARGET-DB is a database to vacuum using\n" |
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" RBU, and RBU-DB is used as the state database for the vacuum (refer to\n" |
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" API documentation for details).\n" |
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"\n" |
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" If NSTEP is set to less than or equal to zero (the default value), this \n" |
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" program attempts to perform the entire update or vacuum operation before\n" |
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" exiting\n" |
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"\n" |
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" If NSTEP is greater than zero, then a maximum of NSTEP calls are made\n" |
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" to sqlite3rbu_step(). If the RBU update has not been completely applied\n" |
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" after the NSTEP'th call is made, the state is saved in the database RBU-DB\n" |
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" and the program exits. Subsequent invocations of this (or any other RBU)\n" |
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" application will use this state to resume applying the RBU update to the\n" |
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" target db.\n" |
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"\n" |
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, zArgv0); |
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exit(1); |
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} |
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void report_default_vfs(){ |
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sqlite3_vfs *pVfs = sqlite3_vfs_find(0); |
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fprintf(stdout, "default vfs is \"%s\"\n", pVfs ? pVfs->zName : "NULL"); |
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} |
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void report_rbu_vfs(sqlite3rbu *pRbu){ |
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sqlite3 *db = sqlite3rbu_db(pRbu, 0); |
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if( db ){ |
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char *zName = 0; |
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sqlite3_file_control(db, "main", SQLITE_FCNTL_VFSNAME, &zName); |
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if( zName ){ |
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fprintf(stdout, "using vfs \"%s\"\n", zName); |
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}else{ |
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fprintf(stdout, "vfs name not available\n"); |
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} |
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sqlite3_free(zName); |
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} |
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} |
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int main(int argc, char **argv){ |
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int i; |
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const char *zTarget; |
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const char *zRbu; |
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char zBuf[200]; |
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char *zErrmsg = 0; |
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sqlite3rbu *pRbu; |
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int nStep = 0; |
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int nStatStep = 0; |
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int bVacuum = 0; |
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const char *zPreSql = 0; |
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int rc = SQLITE_OK; |
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sqlite3_int64 nProgress = 0; |
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int nArgc = argc-2; |
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if( argc<3 ) usage(argv[0]); |
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for(i=1; i<nArgc; i++){ |
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const char *zArg = argv[i]; |
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int nArg = strlen(zArg); |
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if( nArg>1 && nArg<=8 && 0==memcmp(zArg, "-vacuum", nArg) ){ |
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bVacuum = 1; |
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}else if( nArg>1 && nArg<=7 |
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&& 0==memcmp(zArg, "-presql", nArg) && i<nArg-1 ){ |
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i++; |
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zPreSql = argv[i]; |
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}else if( nArg>1 && nArg<=5 && 0==memcmp(zArg, "-step", nArg) && i<nArg-1 ){ |
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i++; |
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nStep = atoi(argv[i]); |
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}else if( nArg>1 && nArg<=9 |
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&& 0==memcmp(zArg, "-statstep", nArg) && i<nArg-1 |
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){ |
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i++; |
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nStatStep = atoi(argv[i]); |
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}else{ |
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usage(argv[0]); |
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} |
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} |
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zTarget = argv[argc-2]; |
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zRbu = argv[argc-1]; |
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report_default_vfs(); |
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if( bVacuum ){ |
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pRbu = sqlite3rbu_vacuum(zTarget, zRbu); |
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}else{ |
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pRbu = sqlite3rbu_open(zTarget, zRbu, 0); |
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} |
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report_rbu_vfs(pRbu); |
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if( zPreSql && pRbu ){ |
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sqlite3 *dbMain = sqlite3rbu_db(pRbu, 0); |
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rc = sqlite3_exec(dbMain, zPreSql, 0, 0, 0); |
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if( rc==SQLITE_OK ){ |
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sqlite3 *dbRbu = sqlite3rbu_db(pRbu, 1); |
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rc = sqlite3_exec(dbRbu, zPreSql, 0, 0, 0); |
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} |
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} |
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if( rc==SQLITE_OK ){ |
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for(i=0; (nStep<=0 || i<nStep) && sqlite3rbu_step(pRbu)==SQLITE_OK; i++){ |
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if( nStatStep>0 && (i % nStatStep)==0 ){ |
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sqlite3_int64 nUsed; |
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sqlite3_int64 nHighwater; |
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sqlite3_status64(SQLITE_STATUS_MEMORY_USED, &nUsed, &nHighwater, 0); |
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fprintf(stdout, "memory used=%lld highwater=%lld", nUsed, nHighwater); |
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if( bVacuum==0 ){ |
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int one; |
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int two; |
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sqlite3rbu_bp_progress(pRbu, &one, &two); |
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fprintf(stdout, " progress=%d/%d\n", one, two); |
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}else{ |
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fprintf(stdout, "\n"); |
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} |
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fflush(stdout); |
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} |
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} |
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nProgress = sqlite3rbu_progress(pRbu); |
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rc = sqlite3rbu_close(pRbu, &zErrmsg); |
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} |
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switch( rc ){ |
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case SQLITE_OK: |
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sqlite3_snprintf(sizeof(zBuf), zBuf, |
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"SQLITE_OK: rbu update incomplete (%lld operations so far)\n", |
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nProgress |
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); |
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fprintf(stdout, "%s", zBuf); |
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break; |
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case SQLITE_DONE: |
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sqlite3_snprintf(sizeof(zBuf), zBuf, |
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"SQLITE_DONE: rbu update completed (%lld operations)\n", |
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nProgress |
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); |
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fprintf(stdout, "%s", zBuf); |
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break; |
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default: |
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fprintf(stderr, "error=%d: %s\n", rc, zErrmsg); |
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break; |
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} |
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if( nStatStep>0 ){ |
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sqlite3_int64 nUsed; |
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sqlite3_int64 nHighwater; |
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sqlite3_status64(SQLITE_STATUS_MEMORY_USED, &nUsed, &nHighwater, 0); |
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fprintf(stdout, "memory used=%lld highwater=%lld\n", nUsed, nHighwater); |
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} |
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sqlite3_free(zErrmsg); |
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return (rc==SQLITE_OK || rc==SQLITE_DONE) ? 0 : 1; |
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} |
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