/* entry.c - routines for dealing with entries */ #include "portable.h" #include #include #include #include #include "slap.h" static unsigned char *ebuf; /* buf returned by entry2str */ static unsigned char *ecur; /* pointer to end of currently used ebuf */ static int emaxsize;/* max size of ebuf */ Entry * str2entry( char *s ) { int id = 0; Entry *e; Attribute **a; char *type; char *value; char *next; int vlen, nvals, maxvals; struct berval bval; struct berval *vals[2]; char ptype[64]; /* * In string format, an entry looks like this: * * \n * dn: \n * [:[:] \n] * [\n]* * ... * * If a double colon is used after a type, it means the * following value is encoded as a base 64 string. This * happens if the value contains a non-printing character * or newline. */ Debug( LDAP_DEBUG_TRACE, "=> str2entry\n", s ? s : "NULL", 0, 0 ); /* check to see if there's an id included */ next = s; if ( isdigit( *s ) ) { id = atoi( s ); if ( (s = ldif_getline( &next )) == NULL ) { Debug( LDAP_DEBUG_TRACE, "<= str2entry NULL (missing newline after id)\n", 0, 0, 0 ); return( NULL ); } } /* initialize reader/writer lock */ e = (Entry *) ch_calloc( 1, sizeof(Entry) ); if( e == NULL ) { Debug( LDAP_DEBUG_TRACE, "<= str2entry NULL (entry allocation failed)\n", 0, 0, 0 ); return( NULL ); } e->e_id = id; entry_rdwr_init(e); /* dn + attributes */ e->e_attrs = NULL; vals[0] = &bval; vals[1] = NULL; ptype[0] = '\0'; while ( (s = ldif_getline( &next )) != NULL ) { if ( *s == '\n' || *s == '\0' ) { break; } if ( ldif_parse_line( s, &type, &value, &vlen ) != 0 ) { Debug( LDAP_DEBUG_TRACE, "<= str2entry NULL (parse_line)\n", 0, 0, 0 ); continue; } if ( strcasecmp( type, ptype ) != 0 ) { strncpy( ptype, type, sizeof(ptype) - 1 ); nvals = 0; maxvals = 0; a = NULL; } if ( strcasecmp( type, "dn" ) == 0 ) { if ( e->e_dn != NULL ) { Debug( LDAP_DEBUG_ANY, "str2entry: entry %lu has multiple dns \"%s\" and \"%s\" (second ignored)\n", e->e_id, e->e_dn, value ); continue; } e->e_dn = ch_strdup( value ); if ( e->e_ndn != NULL ) { Debug( LDAP_DEBUG_ANY, "str2entry: entry %lu already has a normalized dn \"%s\" for \"%s\" (first ignored)\n", e->e_id, e->e_ndn, value ); free( e->e_ndn ); } e->e_ndn = dn_normalize_case( ch_strdup( value ) ); continue; } bval.bv_val = value; bval.bv_len = vlen; if ( attr_merge_fast( e, type, vals, nvals, 1, &maxvals, &a ) != 0 ) { Debug( LDAP_DEBUG_TRACE, "<= str2entry NULL (attr_merge)\n", 0, 0, 0 ); entry_free( e ); return( NULL ); } nvals++; } /* check to make sure there was a dn: line */ if ( e->e_dn == NULL ) { Debug( LDAP_DEBUG_ANY, "str2entry: entry %lu has no dn\n", e->e_id, 0, 0 ); entry_free( e ); return( NULL ); } if ( e->e_ndn == NULL ) { Debug( LDAP_DEBUG_ANY, "str2entry: entry %lu (\"%s\") has no normalized dn\n", e->e_id, e->e_dn, 0 ); entry_free( e ); return( NULL ); } Debug(LDAP_DEBUG_TRACE, "<= str2entry 0x%lx\n", (unsigned long)e, 0,0); return( e ); } #define GRABSIZE BUFSIZ #define MAKE_SPACE( n ) { \ while ( ecur + (n) > ebuf + emaxsize ) { \ int offset; \ offset = (int) (ecur - ebuf); \ ebuf = (unsigned char *) ch_realloc( (char *) ebuf, \ emaxsize + GRABSIZE ); \ emaxsize += GRABSIZE; \ ecur = ebuf + offset; \ } \ } char * entry2str( Entry *e, int *len, int printid ) { Attribute *a; struct berval *bv; int i, tmplen; /* * In string format, an entry looks like this: * \n * dn: \n * [: \n]* */ ecur = ebuf; if ( printid ) { /* id + newline */ MAKE_SPACE( 10 ); sprintf( (char *) ecur, "%ld\n", e->e_id ); ecur = (unsigned char *) strchr( (char *) ecur, '\0' ); } /* put the dn */ if ( e->e_dn != NULL ) { /* put "dn: " */ tmplen = strlen( e->e_dn ); MAKE_SPACE( LDIF_SIZE_NEEDED( 2, tmplen )); ldif_put_type_and_value( (char **) &ecur, "dn", e->e_dn, tmplen ); } /* put the attributes */ for ( a = e->e_attrs; a != NULL; a = a->a_next ) { /* put ":[:] " line for each value */ for ( i = 0; a->a_vals[i] != NULL; i++ ) { bv = a->a_vals[i]; tmplen = strlen( a->a_type ); MAKE_SPACE( LDIF_SIZE_NEEDED( tmplen, bv->bv_len )); ldif_put_type_and_value( (char **) &ecur, a->a_type, bv->bv_val, bv->bv_len ); } } MAKE_SPACE( 1 ); *ecur = '\0'; *len = ecur - ebuf; return( (char *) ebuf ); } void entry_free( Entry *e ) { int i; Attribute *a, *next; /* XXX check that no reader/writer locks exist */ #ifdef LDAP_DEBUG assert( !pthread_rdwr_wchk_np(&e->e_rdwr) && !pthread_rdwr_rchk_np(&e->e_rdwr) ); #endif if ( e->e_dn != NULL ) { free( e->e_dn ); } if ( e->e_ndn != NULL ) { free( e->e_ndn ); } for ( a = e->e_attrs; a != NULL; a = next ) { next = a->a_next; attr_free( a ); } free( e ); } int entry_rdwr_lock(Entry *e, int rw) { Debug( LDAP_DEBUG_ARGS, "entry_rdwr_%slock: ID: %ld\n", rw ? "w" : "r", e->e_id, 0); if (rw) return pthread_rdwr_wlock_np(&e->e_rdwr); else return pthread_rdwr_rlock_np(&e->e_rdwr); } int entry_rdwr_rlock(Entry *e) { return entry_rdwr_lock( e, 0 ); } int entry_rdwr_wlock(Entry *e) { return entry_rdwr_lock( e, 1 ); } int entry_rdwr_unlock(Entry *e, int rw) { Debug( LDAP_DEBUG_ARGS, "entry_rdwr_%sunlock: ID: %ld\n", rw ? "w" : "r", e->e_id, 0); if (rw) return pthread_rdwr_wunlock_np(&e->e_rdwr); else return pthread_rdwr_runlock_np(&e->e_rdwr); } int entry_rdwr_runlock(Entry *e) { return entry_rdwr_unlock( e, 0 ); } int entry_rdwr_wunlock(Entry *e) { return entry_rdwr_unlock( e, 1 ); } int entry_rdwr_init(Entry *e) { return pthread_rdwr_init_np(&e->e_rdwr, NULL); }