/* schema_init.c - init builtin schema */
/* $OpenLDAP$ */
/*
- * Copyright 1998-2000 The OpenLDAP Foundation, All Rights Reserved.
+ * Copyright 1998-2002 The OpenLDAP Foundation, All Rights Reserved.
* COPYING RESTRICTIONS APPLY, see COPYRIGHT file
*/
#include "portable.h"
#include <stdio.h>
+#include <limits.h>
#include <ac/ctype.h>
+#include <ac/errno.h>
#include <ac/string.h>
#include <ac/socket.h>
#include "slap.h"
#include "ldap_pvt.h"
+#include "lber_pvt.h"
-#define UTF8MATCH 1
+#include "ldap_utf8.h"
-#ifdef USE_MD5
-#include "lutil_md5.h"
-/* We should replace MD5 with a faster hash */
-#define HASH_BYTES LUTIL_MD5_BYTES
-#define HASH_CONTEXT lutil_MD5_CTX
-#define HASH_Init(c) lutil_MD5Init(c)
-#define HASH_Update(c,buf,len) lutil_MD5Update(c,buf,len)
-#define HASH_Final(d,c) lutil_MD5Final(d,c)
-#else
#include "lutil_hash.h"
-/* We should replace MD5 with a faster hash */
#define HASH_BYTES LUTIL_HASH_BYTES
#define HASH_CONTEXT lutil_HASH_CTX
#define HASH_Init(c) lutil_HASHInit(c)
#define HASH_Update(c,buf,len) lutil_HASHUpdate(c,buf,len)
#define HASH_Final(d,c) lutil_HASHFinal(d,c)
-#endif
/* recycled validatation routines */
#define berValidate blobValidate
/* unimplemented pretters */
-#define dnPretty NULL
#define integerPretty NULL
/* recycled matching routines */
#define bitStringMatch octetStringMatch
-#define integerMatch caseIgnoreIA5Match
#define numericStringMatch caseIgnoreIA5Match
-#define objectIdentifierMatch caseIgnoreIA5Match
+#define objectIdentifierMatch octetStringMatch
#define telephoneNumberMatch caseIgnoreIA5Match
#define telephoneNumberSubstringsMatch caseIgnoreIA5SubstringsMatch
#define generalizedTimeMatch caseIgnoreIA5Match
#define generalizedTimeOrderingMatch caseIgnoreIA5Match
#define uniqueMemberMatch dnMatch
+#define integerFirstComponentMatch integerMatch
/* approx matching rules */
#define directoryStringApproxMatchOID "1.3.6.1.4.1.4203.666.4.4"
#define IA5StringApproxIndexer approxIndexer
#define IA5StringApproxFilter approxFilter
-/* orderring matching rules */
+/* ordering matching rules */
#define caseIgnoreOrderingMatch caseIgnoreMatch
#define caseExactOrderingMatch caseExactMatch
+#define integerOrderingMatch integerMatch
+#define octetStringOrderingMatch octetStringMatch
/* unimplemented matching routines */
#define caseIgnoreListMatch NULL
#define caseIgnoreListSubstringsMatch NULL
#define protocolInformationMatch NULL
-#define integerFirstComponentMatch NULL
+#ifdef SLAPD_ACI_ENABLED
#define OpenLDAPaciMatch NULL
+#endif
+#ifdef SLAPD_AUTHPASSWD
#define authPasswordMatch NULL
+#endif
/* recycled indexing/filtering routines */
-#define dnIndexer caseIgnoreIndexer
-#define dnFilter caseIgnoreFilter
-#define integerIndexer caseIgnoreIA5Indexer
-#define integerFilter caseIgnoreIA5Filter
+#define dnIndexer caseExactIgnoreIndexer
+#define dnFilter caseExactIgnoreFilter
+#define bitStringFilter octetStringFilter
+#define bitStringIndexer octetStringIndexer
#define telephoneNumberIndexer caseIgnoreIA5Indexer
#define telephoneNumberFilter caseIgnoreIA5Filter
#define telephoneNumberSubstringsIndexer caseIgnoreIA5SubstringsIndexer
#define telephoneNumberSubstringsFilter caseIgnoreIA5SubstringsFilter
-static char *strcasechr( const char *str, int c )
+static MatchingRule *caseExactMatchingRule;
+static MatchingRule *caseExactSubstringsMatchingRule;
+static MatchingRule *integerFirstComponentMatchingRule;
+
+static const struct MatchingRulePtr {
+ const char *oid;
+ MatchingRule **mr;
+} mr_ptr [] = {
+ /* must match OIDs below */
+ { "2.5.13.5", &caseExactMatchingRule },
+ { "2.5.13.7", &caseExactSubstringsMatchingRule },
+ { "2.5.13.29", &integerFirstComponentMatchingRule }
+};
+
+
+static char *bvcasechr( struct berval *bv, unsigned char c, ber_len_t *len )
{
- char *lower = strchr( str, TOLOWER(c) );
- char *upper = strchr( str, TOUPPER(c) );
+ ber_len_t i;
+ char lower = TOLOWER( c );
+ char upper = TOUPPER( c );
- if( lower && upper ) {
- return lower < upper ? lower : upper;
- } else if ( lower ) {
- return lower;
- } else {
- return upper;
+ if( c == 0 ) return NULL;
+
+ for( i=0; i < bv->bv_len; i++ ) {
+ if( upper == bv->bv_val[i] || lower == bv->bv_val[i] ) {
+ *len = i;
+ return &bv->bv_val[i];
+ }
}
+
+ return NULL;
}
static int
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
int i;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- /* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
-
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
/* just count them */
}
- keys = ch_malloc( sizeof( struct berval * ) * (i+1) );
+ /* we should have at least one value at this point */
+ assert( i > 0 );
+
+ keys = ch_malloc( sizeof( struct berval ) * (i+1) );
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- values[i]->bv_val, values[i]->bv_len );
+ values[i].bv_val, values[i].bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[i] = ber_bvdup( &digest );
+ ber_dupbv( &keys[i], &digest );
}
- keys[i] = NULL;
+ keys[i].bv_val = NULL;
+ keys[i].bv_len = 0;
*keysp = keys;
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
- struct berval *value = (struct berval *) assertValue;
+ struct berval *value = (struct berval *) assertedValue;
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- keys = ch_malloc( sizeof( struct berval * ) * 2 );
+ keys = ch_malloc( sizeof( struct berval ) * 2 );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
value->bv_val, value->bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[0] = ber_bvdup( &digest );
- keys[1] = NULL;
+ ber_dupbv( keys, &digest );
+ keys[1].bv_val = NULL;
+ keys[1].bv_len = 0;
*keysp = keys;
}
static int
-dnValidate(
+inValidate(
Syntax *syntax,
struct berval *in )
{
- int rc;
- char *dn;
-
- if( in->bv_len == 0 ) return LDAP_SUCCESS;
-
- dn = ch_strdup( in->bv_val );
-
- rc = dn_validate( dn ) == NULL
- ? LDAP_INVALID_SYNTAX : LDAP_SUCCESS;
+ /* no value allowed */
+ return LDAP_INVALID_SYNTAX;
+}
- ch_free( dn );
- return rc;
+static int
+blobValidate(
+ Syntax *syntax,
+ struct berval *in )
+{
+ /* any value allowed */
+ return LDAP_SUCCESS;
}
-int
-dnNormalize(
+static int
+bitStringValidate(
Syntax *syntax,
- struct berval *val,
- struct berval **normalized )
+ struct berval *in )
{
- struct berval *out;
+ ber_len_t i;
- if ( val->bv_len != 0 ) {
- char *dn;
-#ifdef USE_DN_NORMALIZE
- out = ber_bvstr( UTF8normalize( val->bv_val, UTF8_CASEFOLD ) );
-#else
- out = ber_bvdup( val );
- ldap_pvt_str2upper( out->bv_val );
-#endif
- dn = dn_validate( out->bv_val );
+ /* very unforgiving validation, requires no normalization
+ * before simplistic matching
+ */
+ if( in->bv_len < 3 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+
+ /*
+ * rfc 2252 section 6.3 Bit String
+ * bitstring = "'" *binary-digit "'"
+ * binary-digit = "0" / "1"
+ * example: '0101111101'B
+ */
+
+ if( in->bv_val[0] != '\'' ||
+ in->bv_val[in->bv_len-2] != '\'' ||
+ in->bv_val[in->bv_len-1] != 'B' )
+ {
+ return LDAP_INVALID_SYNTAX;
+ }
- if( dn == NULL ) {
- ber_bvfree( out );
+ for( i=in->bv_len-3; i>0; i-- ) {
+ if( in->bv_val[i] != '0' && in->bv_val[i] != '1' ) {
return LDAP_INVALID_SYNTAX;
}
-
- out->bv_val = dn;
- out->bv_len = strlen( dn );
- } else {
- out = ber_bvdup( val );
}
- *normalized = out;
return LDAP_SUCCESS;
}
static int
-dnMatch(
- int *matchp,
- slap_mask_t flags,
+bitStringNormalize(
Syntax *syntax,
- MatchingRule *mr,
- struct berval *value,
- void *assertedValue )
+ struct berval *val,
+ struct berval *normalized )
{
- int match;
- struct berval *asserted = (struct berval *) assertedValue;
-
- match = value->bv_len - asserted->bv_len;
+ /*
+ * A normalized bitString is has no extaneous (leading) zero bits.
+ * That is, '00010'B is normalized to '10'B
+ * However, as a special case, '0'B requires no normalization.
+ */
+ char *p;
- if( match == 0 ) {
-#ifdef USE_DN_NORMALIZE
- match = strcmp( value->bv_val, asserted->bv_val );
-#else
- match = strcasecmp( value->bv_val, asserted->bv_val );
-#endif
+ /* start at the first bit */
+ p = &val->bv_val[1];
+
+ /* Find the first non-zero bit */
+ while ( *p == '0' ) p++;
+
+ if( *p == '\'' ) {
+ /* no non-zero bits */
+ ber_str2bv( "\'0\'B", sizeof("\'0\'B") - 1, 1, normalized );
+ goto done;
}
-#ifdef NEW_LOGGING
- LDAP_LOG(( "schema", LDAP_LEVEL_ENTRY,
- "dnMatch: %d\n %s\n %s\n", match,
- value->bv_val, asserted->bv_val ));
-#else
- Debug( LDAP_DEBUG_ARGS, "dnMatch %d\n\t\"%s\"\n\t\"%s\"\n",
- match, value->bv_val, asserted->bv_val );
-#endif
+ normalized->bv_val = ch_malloc( val->bv_len + 1 );
+ normalized->bv_val[0] = '\'';
+ normalized->bv_len = 1;
- *matchp = match;
+ for( ; *p != '\0'; p++ ) {
+ normalized->bv_val[normalized->bv_len++] = *p;
+ }
+
+ normalized->bv_val[normalized->bv_len] = '\0';
+
+done:
return LDAP_SUCCESS;
}
struct berval *in )
{
int rc;
- struct berval *dn;
+ struct berval dn;
if( in->bv_len == 0 ) return LDAP_SUCCESS;
- dn = ber_bvdup( in );
+ ber_dupbv( &dn, in );
+ if( !dn.bv_val ) return LDAP_OTHER;
- if( dn->bv_val[dn->bv_len-1] == '\'' ) {
+ if( dn.bv_val[dn.bv_len-1] == 'B'
+ && dn.bv_val[dn.bv_len-2] == '\'' )
+ {
/* assume presence of optional UID */
ber_len_t i;
- for(i=dn->bv_len-2; i>2; i--) {
- if( dn->bv_val[i] != '0' && dn->bv_val[i] != '1' ) {
+ for(i=dn.bv_len-3; i>1; i--) {
+ if( dn.bv_val[i] != '0' && dn.bv_val[i] != '1' ) {
break;
}
}
- if( dn->bv_val[i] != '\'' ) {
- return LDAP_INVALID_SYNTAX;
- }
- if( dn->bv_val[i-1] != 'B' ) {
- return LDAP_INVALID_SYNTAX;
- }
- if( dn->bv_val[i-2] != '#' ) {
+ if( dn.bv_val[i] != '\'' || dn.bv_val[i-1] != '#' ) {
+ ber_memfree( dn.bv_val );
return LDAP_INVALID_SYNTAX;
}
- /* trim the UID to allow use of dn_validate */
- dn->bv_val[i-2] = '\0';
+ /* trim the UID to allow use of dnValidate */
+ dn.bv_val[i-1] = '\0';
+ dn.bv_len = i-1;
}
- rc = dn_validate( dn->bv_val ) == NULL
- ? LDAP_INVALID_SYNTAX : LDAP_SUCCESS;
+ rc = dnValidate( NULL, &dn );
- ber_bvfree( dn );
+ ber_memfree( dn.bv_val );
return rc;
}
nameUIDNormalize(
Syntax *syntax,
struct berval *val,
- struct berval **normalized )
+ struct berval *normalized )
{
- struct berval *out = ber_bvdup( val );
+ struct berval out;
+ int rc;
- if( out->bv_len != 0 ) {
- char *dn;
- ber_len_t dnlen;
- char *uid = NULL;
- ber_len_t uidlen = 0;
+ ber_dupbv( &out, val );
+ if( out.bv_len != 0 ) {
+ struct berval uidin = { 0, NULL };
+ struct berval uidout = { 0, NULL };
- if( out->bv_val[out->bv_len-1] == '\'' ) {
+ if( out.bv_val[out.bv_len-1] == 'B'
+ && out.bv_val[out.bv_len-2] == '\'' )
+ {
/* assume presence of optional UID */
- uid = strrchr( out->bv_val, '#' );
+ uidin.bv_val = strrchr( out.bv_val, '#' );
- if( uid == NULL ) {
- ber_bvfree( out );
+ if( uidin.bv_val == NULL ) {
+ free( out.bv_val );
return LDAP_INVALID_SYNTAX;
}
- uidlen = out->bv_len - (out->bv_val - uid);
+ uidin.bv_len = out.bv_len - (uidin.bv_val - out.bv_val);
+ out.bv_len -= uidin.bv_len--;
+
/* temporarily trim the UID */
- *uid = '\0';
- }
+ *(uidin.bv_val++) = '\0';
-#ifdef USE_DN_NORMALIZE
- dn = dn_normalize( out->bv_val );
-#else
- dn = dn_validate( out->bv_val );
-#endif
+ rc = bitStringNormalize( syntax, &uidin, &uidout );
- if( dn == NULL ) {
- ber_bvfree( out );
- return LDAP_INVALID_SYNTAX;
+ if( rc != LDAP_SUCCESS ) {
+ free( out.bv_val );
+ return LDAP_INVALID_SYNTAX;
+ }
}
- dnlen = strlen(dn);
+ rc = dnNormalize2( NULL, &out, normalized );
- if( uidlen ) {
- /* restore the separator */
- *uid = '#';
- /* shift the UID */
- SAFEMEMCPY( &dn[dnlen], uid, uidlen );
+ if( rc != LDAP_SUCCESS ) {
+ free( out.bv_val );
+ free( uidout.bv_val );
+ return LDAP_INVALID_SYNTAX;
}
- out->bv_val = dn;
- out->bv_len = dnlen + uidlen;
- }
-
- *normalized = out;
- return LDAP_SUCCESS;
-}
-
-static int
-inValidate(
- Syntax *syntax,
- struct berval *in )
-{
- /* any value allowed */
- return LDAP_OTHER;
-}
-
-static int
-blobValidate(
- Syntax *syntax,
- struct berval *in )
-{
- /* any value allowed */
- return LDAP_SUCCESS;
-}
+ if( uidout.bv_len ) {
+ normalized->bv_val = ch_realloc( normalized->bv_val,
+ normalized->bv_len + uidout.bv_len + sizeof("#") );
-static int
-bitStringValidate(
- Syntax *syntax,
- struct berval *in )
-{
- ber_len_t i;
+ /* insert the separator */
+ normalized->bv_val[normalized->bv_len++] = '#';
- /* very unforgiving validation, requires no normalization
- * before simplistic matching
- */
- if( in->bv_len < 3 ) {
- return LDAP_INVALID_SYNTAX;
- }
- if( in->bv_val[0] != 'B' ||
- in->bv_val[1] != '\'' ||
- in->bv_val[in->bv_len-1] != '\'' )
- {
- return LDAP_INVALID_SYNTAX;
- }
+ /* append the UID */
+ AC_MEMCPY( &normalized->bv_val[normalized->bv_len],
+ uidout.bv_val, uidout.bv_len );
+ normalized->bv_len += uidout.bv_len;
- for( i=in->bv_len-2; i>1; i-- ) {
- if( in->bv_val[i] != '0' && in->bv_val[i] != '1' ) {
- return LDAP_INVALID_SYNTAX;
+ /* terminate */
+ normalized->bv_val[normalized->bv_len] = '\0';
}
+
+ free( out.bv_val );
}
return LDAP_SUCCESS;
return LDAP_SUCCESS;
}
-#if UTF8MATCH
-/* case insensitive UTF8 strncmp with offset for second string */
-static int
-UTF8oncasecmp(
- struct berval *right,
- struct berval *left,
- ber_len_t len,
- ber_len_t offset )
-{
- ber_len_t r, l;
- int rlen, llen;
- int rslen, lslen;
- ldap_unicode_t ru, lu;
- ldap_unicode_t ruu, luu;
-
- rslen = len < right->bv_len ? len : right->bv_len;
- lslen = len + offset < left->bv_len ? len : left->bv_len;
-
- for( r = 0, l = offset;
- r < rslen && l < lslen;
- r+=rlen, l+=llen )
- {
- /*
- * XXYYZ: we convert to ucs4 even though -llunicode
- * expects ucs2 in an unsigned long
- */
- ru = ldap_utf8_to_ucs4( &right->bv_val[r] );
- if( ru == LDAP_UCS4_INVALID ) {
- return 1;
- }
-
- lu = ldap_utf8_to_ucs4( &left->bv_val[l] );
- if( lu == LDAP_UCS4_INVALID ) {
- return -1;
- }
-
- ruu = uctoupper( ru );
- luu = uctoupper( lu );
-
- if( ruu > luu ) {
- return 1;
- } else if( luu > ruu ) {
- return -1;
- }
-
- rlen = LDAP_UTF8_CHARLEN( &right->bv_val[r] );
- llen = LDAP_UTF8_CHARLEN( &left->bv_val[l] );
- }
-
- if( r < rslen ) {
- /* less left */
- return -1;
- }
-
- if( l < lslen ) {
- /* less right */
- return 1;
- }
-
- return 0;
-}
-
-static char *UTF8casechr( const char *str, const char *c )
-{
- char *p, *lower, *upper;
- ldap_ucs4_t tch, ch = ldap_utf8_to_ucs4(c);
-
- tch = uctolower ( ch );
- for( p = (char *) str; *p != '\0'; LDAP_UTF8_INCR(p) ) {
- if( ldap_utf8_to_ucs4( p ) == tch ) {
- break;
- }
- }
- lower = *p != '\0' ? p : NULL;
-
- tch = uctoupper ( ch );
- for( p = (char *) str; *p != '\0'; LDAP_UTF8_INCR(p) ) {
- if( ldap_utf8_to_ucs4( p ) == tch ) {
- break;
- }
- }
- upper = *p != '\0' ? p : NULL;
-
- if( lower && upper ) {
- return lower < upper ? lower : upper;
- } else if ( lower ) {
- return lower;
- } else {
- return upper;
- }
-}
-#endif
+/*-------------------------------------------------------------------
+LDAP/X.500 string syntax / matching rules have a few oddities. This
+comment attempts to detail how slapd(8) treats them.
+
+Summary:
+ StringSyntax X.500 LDAP Matching
+ DirectoryString CHOICE UTF8 i/e + ignore insignificant spaces
+ PrintableString subset subset i/e + ignore insignificant spaces
+ NumericString subset subset ignore all spaces
+ IA5String ASCII ASCII i/e + ignore insignificant spaces
+ TeletexString T.61 T.61 i/e + ignore insignificant spaces
+
+ TelephoneNumber subset subset i + ignore all spaces and "-"
+
+ See draft-ietf-ldapbis-strpro for details (once published).
+
+
+Directory String -
+ In X.500(93), a directory string can be either a PrintableString,
+ a bmpString, or a UniversalString (e.g., UCS (a subset of Unicode)).
+ In later versions, more CHOICEs were added. In all cases the string
+ must be non-empty.
+
+ In LDAPv3, a directory string is a UTF-8 encoded UCS string.
+
+ For matching, there are both case ignore and exact rules. Both
+ also require that "insignificant" spaces be ignored.
+ spaces before the first non-space are ignored;
+ spaces after the last non-space are ignored;
+ spaces after a space are ignored.
+ Note: by these rules (and as clarified in X.520), a string of only
+ spaces is to be treated as if held one space, not empty (which
+ would be a syntax error).
+
+NumericString
+ In ASN.1, numeric string is just a string of digits and spaces
+ and could be empty. However, in X.500, all attribute values of
+ numeric string carry a non-empty constraint. For example:
+
+ internationalISDNNumber ATTRIBUTE ::= {
+ WITH SYNTAX InternationalISDNNumber
+ EQUALITY MATCHING RULE numericStringMatch
+ SUBSTRINGS MATCHING RULE numericStringSubstringsMatch
+ ID id-at-internationalISDNNumber }
+ InternationalISDNNumber ::=
+ NumericString (SIZE(1..ub-international-isdn-number))
+
+ Unforunately, some assertion values are don't carry the same
+ constraint (but its unclear how such an assertion could ever
+ be true). In LDAP, there is one syntax (numericString) not two
+ (numericString with constraint, numericString without constraint).
+ This should be treated as numericString with non-empty constraint.
+ Note that while someone may have no ISDN number, there are no ISDN
+ numbers which are zero length.
+
+ In matching, spaces are ignored.
+
+PrintableString
+ In ASN.1, Printable string is just a string of printable characters
+ and can be empty. In X.500, semantics much like NumericString (see
+ serialNumber for a like example) excepting uses insignificant space
+ handling instead of ignore all spaces.
+
+IA5String
+ Basically same as PrintableString. There are no examples in X.500,
+ but same logic applies. So we require them to be non-empty as
+ well.
+
+-------------------------------------------------------------------*/
static int
UTF8StringValidate(
for( count = in->bv_len; count > 0; count-=len, u+=len ) {
/* get the length indicated by the first byte */
- len = LDAP_UTF8_CHARLEN( u );
+ len = LDAP_UTF8_CHARLEN2( u, len );
- /* should not be zero */
- if( len == 0 ) return LDAP_INVALID_SYNTAX;
+ /* very basic checks */
+ switch( len ) {
+ case 6:
+ if( (u[5] & 0xC0) != 0x80 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ case 5:
+ if( (u[4] & 0xC0) != 0x80 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ case 4:
+ if( (u[3] & 0xC0) != 0x80 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ case 3:
+ if( (u[2] & 0xC0 )!= 0x80 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ case 2:
+ if( (u[1] & 0xC0) != 0x80 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ case 1:
+ /* CHARLEN already validated it */
+ break;
+ default:
+ return LDAP_INVALID_SYNTAX;
+ }
/* make sure len corresponds with the offset
to the next character */
UTF8StringNormalize(
Syntax *syntax,
struct berval *val,
- struct berval **normalized )
+ struct berval *normalized )
{
- struct berval *newval;
- char *p, *q, *s;
+ char *p, *q, *s, *e;
+ int len = 0;
- newval = ch_malloc( sizeof( struct berval ) );
+ /* validator should have refused an empty string */
+ assert( val->bv_len );
p = val->bv_val;
/* Ignore initial whitespace */
- while ( ldap_utf8_isspace( p ) ) {
- LDAP_UTF8_INCR( p );
- }
+ /* All space is ASCII. All ASCII is 1 byte */
+ for ( ; p < val->bv_val + val->bv_len && ASCII_SPACE( p[ 0 ] ); p++ );
- if( *p == '\0' ) {
- ch_free( newval );
- return LDAP_INVALID_SYNTAX;
+ normalized->bv_len = val->bv_len - (p - val->bv_val);
+
+ if( !normalized->bv_len ) {
+ ber_mem2bv( " ", 1, 1, normalized );
+ return LDAP_SUCCESS;
}
- newval->bv_val = ch_strdup( p );
- p = q = newval->bv_val;
- s = NULL;
+ ber_mem2bv( p, normalized->bv_len, 1, normalized );
+ e = normalized->bv_val + normalized->bv_len;
- while ( *p ) {
- int len;
+ assert( normalized->bv_val );
- if ( ldap_utf8_isspace( p ) ) {
- len = LDAP_UTF8_COPY(q,p);
- s=q;
- p+=len;
- q+=len;
+ p = q = normalized->bv_val;
+ s = NULL;
+
+ while ( p < e ) {
+ q += len;
+ if ( ASCII_SPACE( *p ) ) {
+ s = q - len;
+ len = 1;
+ *q = *p++;
/* Ignore the extra whitespace */
- while ( ldap_utf8_isspace( p ) ) {
- LDAP_UTF8_INCR( p );
+ while ( ASCII_SPACE( *p ) ) {
+ p++;
}
} else {
len = LDAP_UTF8_COPY(q,p);
s=NULL;
p+=len;
- q+=len;
}
}
- assert( *newval->bv_val );
- assert( newval->bv_val < p );
- assert( q <= p );
+ assert( normalized->bv_val <= p );
+ assert( q+len <= p );
/* cannot start with a space */
- assert( !ldap_utf8_isspace(newval->bv_val) );
+ assert( !ASCII_SPACE( normalized->bv_val[0] ) );
/*
* If the string ended in space, backup the pointer one
*/
if ( s != NULL ) {
+ len = q - s;
q = s;
}
/* cannot end with a space */
- assert( !ldap_utf8_isspace( LDAP_UTF8_PREV(q) ) );
+ assert( !ASCII_SPACE( *q ) );
+
+ q += len;
/* null terminate */
*q = '\0';
- newval->bv_len = q - newval->bv_val;
- *normalized = newval;
+ normalized->bv_len = q - normalized->bv_val;
return LDAP_SUCCESS;
}
-#if defined(SLAPD_APPROX_MULTISTRING)
+/* Returns Unicode canonically normalized copy of a substring assertion
+ * Skipping attribute description */
+static SubstringsAssertion *
+UTF8SubstringsassertionNormalize(
+ SubstringsAssertion *sa,
+ unsigned casefold )
+{
+ SubstringsAssertion *nsa;
+ int i;
+
+ nsa = (SubstringsAssertion *)SLAP_CALLOC( 1, sizeof(SubstringsAssertion) );
+ if( nsa == NULL ) {
+ return NULL;
+ }
+
+ if( sa->sa_initial.bv_val != NULL ) {
+ UTF8bvnormalize( &sa->sa_initial, &nsa->sa_initial, casefold );
+ if( nsa->sa_initial.bv_val == NULL ) {
+ goto err;
+ }
+ }
+
+ if( sa->sa_any != NULL ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ /* empty */
+ }
+ nsa->sa_any = (struct berval *)
+ SLAP_MALLOC( (i + 1) * sizeof(struct berval) );
+ if( nsa->sa_any == NULL ) {
+ goto err;
+ }
+
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ UTF8bvnormalize( &sa->sa_any[i], &nsa->sa_any[i],
+ casefold );
+ if( nsa->sa_any[i].bv_val == NULL ) {
+ goto err;
+ }
+ }
+ nsa->sa_any[i].bv_val = NULL;
+ }
+
+ if( sa->sa_final.bv_val != NULL ) {
+ UTF8bvnormalize( &sa->sa_final, &nsa->sa_final, casefold );
+ if( nsa->sa_final.bv_val == NULL ) {
+ goto err;
+ }
+ }
+
+ return nsa;
+
+err:
+ if ( nsa->sa_final.bv_val ) free( nsa->sa_final.bv_val );
+ if ( nsa->sa_any ) ber_bvarray_free( nsa->sa_any );
+ if ( nsa->sa_initial.bv_val ) free( nsa->sa_initial.bv_val );
+ ch_free( nsa );
+ return NULL;
+}
+
+#ifndef SLAPD_APPROX_OLDSINGLESTRING
#if defined(SLAPD_APPROX_INITIALS)
#define SLAPD_APPROX_DELIMITER "._ "
struct berval *value,
void *assertedValue )
{
- char *val, *assertv, **values, **words, *c;
+ struct berval *nval, *assertv;
+ char *val, **values, **words, *c;
int i, count, len, nextchunk=0, nextavail=0;
+ /* Yes, this is necessary */
+ nval = UTF8bvnormalize( value, NULL, LDAP_UTF8_APPROX );
+ if( nval == NULL ) {
+ *matchp = 1;
+ return LDAP_SUCCESS;
+ }
+
+ /* Yes, this is necessary */
+ assertv = UTF8bvnormalize( ((struct berval *)assertedValue),
+ NULL, LDAP_UTF8_APPROX );
+ if( assertv == NULL ) {
+ ber_bvfree( nval );
+ *matchp = 1;
+ return LDAP_SUCCESS;
+ }
/* Isolate how many words there are */
- val = ch_strdup( value->bv_val );
- for( c=val,count=1; *c; c++ ) {
+ for ( c = nval->bv_val, count = 1; *c; c++ ) {
c = strpbrk( c, SLAPD_APPROX_DELIMITER );
if ( c == NULL ) break;
*c = '\0';
/* Get a phonetic copy of each word */
words = (char **)ch_malloc( count * sizeof(char *) );
values = (char **)ch_malloc( count * sizeof(char *) );
- for( c=val,i=0; i<count; i++,c+=strlen(c)+1 ) {
+ for ( c = nval->bv_val, i = 0; i < count; i++, c += strlen(c) + 1 ) {
words[i] = c;
values[i] = phonetic(c);
}
-
- /* Work through the asserted value's words, to see if at least some
+ /* Work through the asserted value's words, to see if at least some
of the words are there, in the same order. */
- assertv = ch_strdup( ((struct berval *)assertedValue)->bv_val );
len = 0;
- while ( nextchunk < ((struct berval *)assertedValue)->bv_len ) {
- len = strcspn( assertv + nextchunk, SLAPD_APPROX_DELIMITER);
+ while ( (ber_len_t) nextchunk < assertv->bv_len ) {
+ len = strcspn( assertv->bv_val + nextchunk, SLAPD_APPROX_DELIMITER);
if( len == 0 ) {
nextchunk++;
continue;
else if( len == 1 ) {
/* Single letter words need to at least match one word's initial */
for( i=nextavail; i<count; i++ )
- if( !strncasecmp( assertv+nextchunk, words[i], 1 )) {
+ if( !strncasecmp( assertv->bv_val + nextchunk, words[i], 1 )) {
nextavail=i+1;
break;
}
#endif
else {
/* Isolate the next word in the asserted value and phonetic it */
- assertv[nextchunk+len] = '\0';
- val = phonetic( assertv + nextchunk );
+ assertv->bv_val[nextchunk+len] = '\0';
+ val = phonetic( assertv->bv_val + nextchunk );
/* See if this phonetic chunk is in the remaining words of *value */
for( i=nextavail; i<count; i++ ){
break;
}
}
+ ch_free( val );
}
/* This chunk in the asserted value was NOT within the *value. */
}
/* Cleanup allocs */
- ch_free( assertv );
+ ber_bvfree( assertv );
for( i=0; i<count; i++ ) {
ch_free( values[i] );
}
ch_free( values );
ch_free( words );
- ch_free( val );
+ ber_bvfree( nval );
return LDAP_SUCCESS;
}
-
-int
+static int
approxIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
- char *val, *c;
+ char *c;
int i,j, len, wordcount, keycount=0;
- struct berval **newkeys, **keys=NULL;
-
+ struct berval *newkeys;
+ BerVarray keys=NULL;
- for( j=0; values[j] != NULL; j++ ) {
+ for( j=0; values[j].bv_val != NULL; j++ ) {
+ struct berval val = { 0, NULL };
+ /* Yes, this is necessary */
+ UTF8bvnormalize( &values[j], &val, LDAP_UTF8_APPROX );
+ assert( val.bv_val != NULL );
/* Isolate how many words there are. There will be a key for each */
- val = ch_strdup( values[j]->bv_val );
- for( wordcount=0,c=val; *c; c++) {
+ for( wordcount = 0, c = val.bv_val; *c; c++) {
len = strcspn(c, SLAPD_APPROX_DELIMITER);
if( len >= SLAPD_APPROX_WORDLEN ) wordcount++;
c+= len;
}
/* Allocate/increase storage to account for new keys */
- newkeys = (struct berval **)ch_malloc( (keycount + wordcount + 1)
- * sizeof(struct berval *) );
- memcpy( newkeys, keys, keycount * sizeof(struct berval *) );
+ newkeys = (struct berval *)ch_malloc( (keycount + wordcount + 1)
+ * sizeof(struct berval) );
+ AC_MEMCPY( newkeys, keys, keycount * sizeof(struct berval) );
if( keys ) ch_free( keys );
keys = newkeys;
/* Get a phonetic copy of each word */
- for( c=val,i=0; i<wordcount; c+=len+1 ) {
+ for( c = val.bv_val, i = 0; i < wordcount; c += len + 1 ) {
len = strlen( c );
if( len < SLAPD_APPROX_WORDLEN ) continue;
- keys[keycount] = (struct berval *)ch_malloc( sizeof(struct berval) );
- keys[keycount]->bv_val = phonetic( c );
- keys[keycount]->bv_len = strlen( keys[keycount]->bv_val );
+ ber_str2bv( phonetic( c ), 0, 0, &keys[keycount] );
keycount++;
i++;
}
- ch_free( val );
+ ber_memfree( val.bv_val );
}
- keys[keycount] = NULL;
+ keys[keycount].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
}
-
-int
+static int
approxFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
- char *val, *c;
+ char *c;
int i, count, len;
- struct berval **keys;
-
+ struct berval *val;
+ BerVarray keys;
+
+ /* Yes, this is necessary */
+ val = UTF8bvnormalize( ((struct berval *)assertedValue),
+ NULL, LDAP_UTF8_APPROX );
+ if( val == NULL || val->bv_val == NULL ) {
+ keys = (struct berval *)ch_malloc( sizeof(struct berval) );
+ keys[0].bv_val = NULL;
+ *keysp = keys;
+ ber_bvfree( val );
+ return LDAP_SUCCESS;
+ }
/* Isolate how many words there are. There will be a key for each */
- val = ch_strdup( ((struct berval *)assertValue)->bv_val );
- for( count=0,c=val; *c; c++) {
+ for( count = 0,c = val->bv_val; *c; c++) {
len = strcspn(c, SLAPD_APPROX_DELIMITER);
if( len >= SLAPD_APPROX_WORDLEN ) count++;
c+= len;
}
/* Allocate storage for new keys */
- keys = (struct berval **)ch_malloc( (count + 1) * sizeof(struct berval *) );
+ keys = (struct berval *)ch_malloc( (count + 1) * sizeof(struct berval) );
/* Get a phonetic copy of each word */
- for( c=val,i=0; i<count; c+=len+1 ) {
+ for( c = val->bv_val, i = 0; i < count; c += len + 1 ) {
len = strlen(c);
if( len < SLAPD_APPROX_WORDLEN ) continue;
- keys[i] = (struct berval *)ch_malloc( sizeof(struct berval) );
- keys[i]->bv_val = phonetic( c );
- keys[i]->bv_len = strlen( keys[i]->bv_val );
+ ber_str2bv( phonetic( c ), 0, 0, &keys[i] );
i++;
}
- ch_free( val );
+ ber_bvfree( val );
- keys[count] = NULL;
+ keys[count].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
void *assertedValue )
{
char *vapprox, *avapprox;
+ char *s, *t;
+
+ /* Yes, this is necessary */
+ s = UTF8normalize( value, UTF8_NOCASEFOLD );
+ if( s == NULL ) {
+ *matchp = 1;
+ return LDAP_SUCCESS;
+ }
+
+ /* Yes, this is necessary */
+ t = UTF8normalize( ((struct berval *)assertedValue),
+ UTF8_NOCASEFOLD );
+ if( t == NULL ) {
+ free( s );
+ *matchp = -1;
+ return LDAP_SUCCESS;
+ }
- vapprox = phonetic( value->bv_val );
- avapprox = phonetic( ((struct berval *)assertedValue)->bv_val);
+ vapprox = phonetic( strip8bitChars( s ) );
+ avapprox = phonetic( strip8bitChars( t ) );
+
+ free( s );
+ free( t );
*matchp = strcmp( vapprox, avapprox );
return LDAP_SUCCESS;
}
-int
+static int
approxIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
int i;
- struct berval **keys;
-
+ BerVarray *keys;
+ char *s;
- for( i=0; values[i] != NULL; i++ ) {
- /* just count them */
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* empty - just count them */
}
+
+ /* we should have at least one value at this point */
assert( i > 0 );
- keys = (struct berval **)ch_malloc( sizeof( struct berval * ) * (i+1) );
+ keys = (struct berval *)ch_malloc( sizeof( struct berval ) * (i+1) );
/* Copy each value and run it through phonetic() */
- for( i=0; values[i] != NULL; i++ ) {
- keys[i] = ch_malloc( sizeof( struct berval * ) );
- keys[i]->bv_val = phonetic( values[i]->bv_val );
- keys[i]->bv_len = strlen( keys[i]->bv_val );
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* Yes, this is necessary */
+ s = UTF8normalize( &values[i], UTF8_NOCASEFOLD );
+
+ /* strip 8-bit chars and run through phonetic() */
+ ber_str2bv( phonetic( strip8bitChars( s ) ), 0, 0, &keys[i] );
+ free( s );
}
- keys[i] = NULL;
+ keys[i].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
}
-int
+static int
approxFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
- struct berval **keys;
+ BerVarray keys;
+ char *s;
+ keys = (struct berval *)ch_malloc( sizeof( struct berval * ) * 2 );
- keys = (struct berval **)ch_malloc( sizeof( struct berval * ) * 2 );
-
- /* Copy the value and run it through phonetic() */
- keys[0] = ch_malloc( sizeof( struct berval * ) );
- keys[0]->bv_val = phonetic( ((struct berval *)assertValue)->bv_val );
- keys[0]->bv_len = strlen( keys[0]->bv_val );
- keys[1] = NULL;
+ /* Yes, this is necessary */
+ s = UTF8normalize( ((struct berval *)assertedValue),
+ UTF8_NOCASEFOLD );
+ if( s == NULL ) {
+ keys[0] = NULL;
+ } else {
+ /* strip 8-bit chars and run through phonetic() */
+ keys[0] = ber_bvstr( phonetic( strip8bitChars( s ) ) );
+ free( s );
+ keys[1] = NULL;
+ }
*keysp = keys;
return LDAP_SUCCESS;
struct berval *value,
void *assertedValue )
{
- int match = value->bv_len - ((struct berval *) assertedValue)->bv_len;
-
- if( match == 0 ) {
- match = strncmp( value->bv_val,
- ((struct berval *) assertedValue)->bv_val,
- value->bv_len );
- }
-
- *matchp = match;
+ *matchp = UTF8bvnormcmp( value,
+ (struct berval *) assertedValue,
+ LDAP_UTF8_NOCASEFOLD );
return LDAP_SUCCESS;
}
static int
-caseExactSubstringsMatch(
+caseExactIgnoreSubstringsMatch(
int *matchp,
slap_mask_t flags,
Syntax *syntax,
void *assertedValue )
{
int match = 0;
- SubstringsAssertion *sub = assertedValue;
- struct berval left = *value;
+ SubstringsAssertion *sub = NULL;
+ struct berval left = { 0, NULL };
int i;
ber_len_t inlen=0;
+ char *nav = NULL;
+ unsigned casefold;
+
+ casefold = ( mr != caseExactSubstringsMatchingRule )
+ ? LDAP_UTF8_CASEFOLD : LDAP_UTF8_NOCASEFOLD;
+
+ if ( UTF8bvnormalize( value, &left, casefold ) == NULL ) {
+ match = 1;
+ goto done;
+ }
+ nav = left.bv_val;
+
+ sub = UTF8SubstringsassertionNormalize( assertedValue, casefold );
+ if( sub == NULL ) {
+ match = -1;
+ goto done;
+ }
/* Add up asserted input length */
- if( sub->sa_initial ) {
- inlen += sub->sa_initial->bv_len;
+ if( sub->sa_initial.bv_val ) {
+ inlen += sub->sa_initial.bv_len;
}
if( sub->sa_any ) {
- for(i=0; sub->sa_any[i] != NULL; i++) {
- inlen += sub->sa_any[i]->bv_len;
+ for(i=0; sub->sa_any[i].bv_val != NULL; i++) {
+ inlen += sub->sa_any[i].bv_len;
}
}
- if( sub->sa_final ) {
- inlen += sub->sa_final->bv_len;
+ if( sub->sa_final.bv_val ) {
+ inlen += sub->sa_final.bv_len;
}
- if( sub->sa_initial ) {
+ if( sub->sa_initial.bv_val ) {
if( inlen > left.bv_len ) {
match = 1;
goto done;
}
- match = strncmp( sub->sa_initial->bv_val, left.bv_val,
- sub->sa_initial->bv_len );
+ match = memcmp( sub->sa_initial.bv_val, left.bv_val,
+ sub->sa_initial.bv_len );
if( match != 0 ) {
goto done;
}
- left.bv_val += sub->sa_initial->bv_len;
- left.bv_len -= sub->sa_initial->bv_len;
- inlen -= sub->sa_initial->bv_len;
+ left.bv_val += sub->sa_initial.bv_len;
+ left.bv_len -= sub->sa_initial.bv_len;
+ inlen -= sub->sa_initial.bv_len;
}
- if( sub->sa_final ) {
+ if( sub->sa_final.bv_val ) {
if( inlen > left.bv_len ) {
match = 1;
goto done;
}
- match = strncmp( sub->sa_final->bv_val,
- &left.bv_val[left.bv_len - sub->sa_final->bv_len],
- sub->sa_final->bv_len );
+ match = memcmp( sub->sa_final.bv_val,
+ &left.bv_val[left.bv_len - sub->sa_final.bv_len],
+ sub->sa_final.bv_len );
if( match != 0 ) {
goto done;
}
- left.bv_len -= sub->sa_final->bv_len;
- inlen -= sub->sa_final->bv_len;
+ left.bv_len -= sub->sa_final.bv_len;
+ inlen -= sub->sa_final.bv_len;
}
if( sub->sa_any ) {
- for(i=0; sub->sa_any[i]; i++) {
+ for(i=0; sub->sa_any[i].bv_val; i++) {
ber_len_t idx;
char *p;
goto done;
}
- if( sub->sa_any[i]->bv_len == 0 ) {
+ if( sub->sa_any[i].bv_len == 0 ) {
continue;
}
- p = strchr( left.bv_val, *sub->sa_any[i]->bv_val );
-
- if( p == NULL ) {
+ p = ber_bvchr( &left, *sub->sa_any[i].bv_val );
+ if ( p == NULL ) {
match = 1;
goto done;
}
idx = p - left.bv_val;
- assert( idx < left.bv_len );
if( idx >= left.bv_len ) {
/* this shouldn't happen */
+ free( nav );
+ if ( sub->sa_final.bv_val )
+ ch_free( sub->sa_final.bv_val );
+ if ( sub->sa_any )
+ ber_bvarray_free( sub->sa_any );
+ if ( sub->sa_initial.bv_val )
+ ch_free( sub->sa_initial.bv_val );
+ ch_free( sub );
return LDAP_OTHER;
}
left.bv_val = p;
left.bv_len -= idx;
- if( sub->sa_any[i]->bv_len > left.bv_len ) {
+ if( sub->sa_any[i].bv_len > left.bv_len ) {
/* not enough left */
match = 1;
goto done;
}
- match = strncmp( left.bv_val,
- sub->sa_any[i]->bv_val,
- sub->sa_any[i]->bv_len );
+ match = memcmp( left.bv_val,
+ sub->sa_any[i].bv_val,
+ sub->sa_any[i].bv_len );
if( match != 0 ) {
left.bv_val++;
goto retry;
}
- left.bv_val += sub->sa_any[i]->bv_len;
- left.bv_len -= sub->sa_any[i]->bv_len;
- inlen -= sub->sa_any[i]->bv_len;
+ left.bv_val += sub->sa_any[i].bv_len;
+ left.bv_len -= sub->sa_any[i].bv_len;
+ inlen -= sub->sa_any[i].bv_len;
}
}
done:
+ free( nav );
+ if( sub != NULL ) {
+ if ( sub->sa_final.bv_val ) free( sub->sa_final.bv_val );
+ if ( sub->sa_any ) ber_bvarray_free( sub->sa_any );
+ if ( sub->sa_initial.bv_val ) free( sub->sa_initial.bv_val );
+ ch_free( sub );
+ }
*matchp = match;
return LDAP_SUCCESS;
}
/* Index generation function */
-int caseExactIndexer(
+static int caseExactIgnoreIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
int i;
+ unsigned casefold;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* empty - just count them */
+ }
+
/* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
+ assert( i > 0 );
- for( i=0; values[i] != NULL; i++ ) {
- /* just count them */
- }
+ keys = ch_malloc( sizeof( struct berval ) * (i+1) );
- keys = ch_malloc( sizeof( struct berval * ) * (i+1) );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ casefold = ( mr != caseExactMatchingRule )
+ ? LDAP_UTF8_CASEFOLD : LDAP_UTF8_NOCASEFOLD;
- for( i=0; values[i] != NULL; i++ ) {
- struct berval *value;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( values[i]->bv_val, UTF8_NOCASEFOLD ) );
-#else
- value = values[i];
-#endif
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ struct berval value;
+ UTF8bvnormalize( &values[i], &value, casefold );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, value->bv_len );
+ value.bv_val, value.bv_len );
HASH_Final( HASHdigest, &HASHcontext );
-#if UTF8MATCH
- ber_bvfree( value );
-#endif
+ free( value.bv_val );
- keys[i] = ber_bvdup( &digest );
+ ber_dupbv( &keys[i], &digest );
}
- keys[i] = NULL;
+ keys[i].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
}
/* Index generation function */
-int caseExactFilter(
+static int caseExactIgnoreFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
+ unsigned casefold;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
- struct berval *value;
+ struct berval value = { 0, NULL };
struct berval digest;
+
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( ((struct berval *) assertValue)->bv_val, UTF8_NOCASEFOLD ) );
-#else
- value = (struct berval *) assertValue;
-#endif
+ casefold = ( mr != caseExactMatchingRule )
+ ? LDAP_UTF8_CASEFOLD : LDAP_UTF8_NOCASEFOLD;
+
+ UTF8bvnormalize( (struct berval *) assertedValue, &value, casefold );
+ /* This usually happens if filter contains bad UTF8 */
+ if( value.bv_val == NULL ) {
+ keys = ch_malloc( sizeof( struct berval ) );
+ keys[0].bv_val = NULL;
+ return LDAP_SUCCESS;
+ }
- keys = ch_malloc( sizeof( struct berval * ) * 2 );
+ keys = ch_malloc( sizeof( struct berval ) * 2 );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, value->bv_len );
+ value.bv_val, value.bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[0] = ber_bvdup( &digest );
- keys[1] = NULL;
+ ber_dupbv( keys, &digest );
+ keys[1].bv_val = NULL;
-#if UTF8MATCH
- ber_bvfree( value );
-#endif
+ free( value.bv_val );
*keysp = keys;
return LDAP_SUCCESS;
}
/* Substrings Index generation function */
-int caseExactSubstringsIndexer(
+static int caseExactIgnoreSubstringsIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
+ unsigned casefold;
ber_len_t i, nkeys;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
+ BerVarray nvalues;
+
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
+ nkeys=0;
+
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* empty - just count them */
+ }
+
/* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
+ assert( i > 0 );
- nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
+ casefold = ( mr != caseExactSubstringsMatchingRule )
+ ? LDAP_UTF8_CASEFOLD : LDAP_UTF8_NOCASEFOLD;
+
+ nvalues = ch_malloc( sizeof( struct berval ) * (i+1) );
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ UTF8bvnormalize( &values[i], &nvalues[i], casefold );
+ }
+ nvalues[i].bv_val = NULL;
+ values = nvalues;
+
+ for( i=0; values[i].bv_val != NULL; i++ ) {
/* count number of indices to generate */
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
+ if( values[i].bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
continue;
}
if( flags & SLAP_INDEX_SUBSTR_INITIAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
( SLAP_INDEX_SUBSTR_MINLEN - 1);
} else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
}
}
if( flags & SLAP_INDEX_SUBSTR_ANY ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
}
}
if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
( SLAP_INDEX_SUBSTR_MINLEN - 1);
} else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
}
}
}
if( nkeys == 0 ) {
/* no keys to generate */
*keysp = NULL;
+ ber_bvarray_free( nvalues );
return LDAP_SUCCESS;
}
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (nkeys+1) );
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
ber_len_t j,max;
- struct berval *value;
-
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) continue;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( values[i]->bv_val, UTF8_NOCASEFOLD ) );
-#else
- value = values[i];
-#endif
+ if( values[i].bv_len < SLAP_INDEX_SUBSTR_MINLEN ) continue;
if( ( flags & SLAP_INDEX_SUBSTR_ANY ) &&
- ( value->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) )
+ ( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) )
{
char pre = SLAP_INDEX_SUBSTR_PREFIX;
- max = value->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1);
+ max = values[i].bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1);
for( j=0; j<max; j++ ) {
HASH_Init( &HASHcontext );
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- &value->bv_val[j],
+ &values[i].bv_val[j],
SLAP_INDEX_SUBSTR_MAXLEN );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
- max = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
+ max = SLAP_INDEX_SUBSTR_MAXLEN < values[i].bv_len
+ ? SLAP_INDEX_SUBSTR_MAXLEN : values[i].bv_len;
for( j=SLAP_INDEX_SUBSTR_MINLEN; j<=max; j++ ) {
char pre;
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, j );
+ values[i].bv_val, j );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- &value->bv_val[value->bv_len-j], j );
+ &values[i].bv_val[values[i].bv_len-j], j );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
-#if UTF8MATCH
- ber_bvfree( value );
-#endif
-
}
if( nkeys > 0 ) {
- keys[nkeys] = NULL;
+ keys[nkeys].bv_val = NULL;
*keysp = keys;
} else {
ch_free( keys );
*keysp = NULL;
}
+ ber_bvarray_free( nvalues );
+
return LDAP_SUCCESS;
}
-int caseExactSubstringsFilter(
+static int caseExactIgnoreSubstringsFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
- SubstringsAssertion *sa = assertValue;
+ SubstringsAssertion *sa;
char pre;
+ unsigned casefold;
ber_len_t nkeys = 0;
size_t slen, mlen, klen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval *value;
struct berval digest;
- if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ casefold = ( mr != caseExactSubstringsMatchingRule )
+ ? LDAP_UTF8_CASEFOLD : LDAP_UTF8_NOCASEFOLD;
+
+ sa = UTF8SubstringsassertionNormalize( assertedValue, casefold );
+ if( sa == NULL ) {
+ *keysp = NULL;
+ return LDAP_SUCCESS;
+ }
+
+ if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial.bv_val != NULL &&
+ sa->sa_initial.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
nkeys++;
}
if( flags & SLAP_INDEX_SUBSTR_ANY && sa->sa_any != NULL ) {
ber_len_t i;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ if( sa->sa_any[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
/* don't bother accounting for stepping */
- nkeys += sa->sa_any[i]->bv_len -
+ nkeys += sa->sa_any[i].bv_len -
( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
}
}
}
- if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final.bv_val != NULL &&
+ sa->sa_final.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
nkeys++;
}
if( nkeys == 0 ) {
+ if ( sa->sa_final.bv_val ) free( sa->sa_final.bv_val );
+ if ( sa->sa_any ) ber_bvarray_free( sa->sa_any );
+ if ( sa->sa_initial.bv_val ) free( sa->sa_initial.bv_val );
+ ch_free( sa );
*keysp = NULL;
return LDAP_SUCCESS;
}
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (nkeys+1) );
nkeys = 0;
- if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial.bv_val != NULL &&
+ sa->sa_initial.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
pre = SLAP_INDEX_SUBSTR_INITIAL_PREFIX;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( sa->sa_initial->bv_val, UTF8_NOCASEFOLD ) );
-#else
- value = sa->sa_initial;
-#endif
+ value = &sa->sa_initial;
klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
value->bv_val, klen );
HASH_Final( HASHdigest, &HASHcontext );
-#if UTF8MATCH
- ber_bvfree( value );
-#endif
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( flags & SLAP_INDEX_SUBSTR_ANY && sa->sa_any != NULL ) {
pre = SLAP_INDEX_SUBSTR_PREFIX;
klen = SLAP_INDEX_SUBSTR_MAXLEN;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ if( sa->sa_any[i].bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
continue;
}
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( sa->sa_any[i]->bv_val, UTF8_NOCASEFOLD ) );
-#else
- value = sa->sa_any[i];
-#endif
+ value = &sa->sa_any[i];
for(j=0;
j <= value->bv_len - SLAP_INDEX_SUBSTR_MAXLEN;
&value->bv_val[j], klen );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
-#if UTF8MATCH
- ber_bvfree( value );
-#endif
}
}
- if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final.bv_val != NULL &&
+ sa->sa_final.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
pre = SLAP_INDEX_SUBSTR_FINAL_PREFIX;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( sa->sa_final->bv_val, UTF8_NOCASEFOLD ) );
-#else
- value = sa->sa_final;
-#endif
+ value = &sa->sa_final;
klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
&value->bv_val[value->bv_len-klen], klen );
HASH_Final( HASHdigest, &HASHcontext );
-#if UTF8MATCH
- ber_bvfree( value );
-#endif
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( nkeys > 0 ) {
- keys[nkeys] = NULL;
+ keys[nkeys].bv_val = NULL;
*keysp = keys;
} else {
ch_free( keys );
*keysp = NULL;
}
+ if ( sa->sa_final.bv_val ) free( sa->sa_final.bv_val );
+ if ( sa->sa_any ) ber_bvarray_free( sa->sa_any );
+ if ( sa->sa_initial.bv_val ) free( sa->sa_initial.bv_val );
+ ch_free( sa );
return LDAP_SUCCESS;
}
-
+
static int
caseIgnoreMatch(
int *matchp,
struct berval *value,
void *assertedValue )
{
-#if UTF8MATCH
- *matchp = UTF8normcmp( value->bv_val,
- ((struct berval *) assertedValue)->bv_val,
- UTF8_CASEFOLD );
-#else
- int match = value->bv_len - ((struct berval *) assertedValue)->bv_len;
-
- if( match == 0 ) {
- match = strncasecmp( value->bv_val,
- ((struct berval *) assertedValue)->bv_val,
- value->bv_len );
- }
-
- *matchp = match;
-#endif
+ *matchp = UTF8bvnormcmp( value,
+ (struct berval *) assertedValue,
+ LDAP_UTF8_CASEFOLD );
return LDAP_SUCCESS;
}
-
+
+/* Remove all spaces and '-' characters */
static int
-caseIgnoreSubstringsMatch(
- int *matchp,
- slap_mask_t flags,
+telephoneNumberNormalize(
Syntax *syntax,
- MatchingRule *mr,
- struct berval *value,
- void *assertedValue )
+ struct berval *val,
+ struct berval *normalized )
{
- int match = 0;
- SubstringsAssertion *sub = assertedValue;
- struct berval left = *value;
- int i;
- ber_len_t inlen=0;
+ char *p, *q;
- /* Add up asserted input length */
- if( sub->sa_initial ) {
- inlen += sub->sa_initial->bv_len;
- }
- if( sub->sa_any ) {
- for(i=0; sub->sa_any[i] != NULL; i++) {
- inlen += sub->sa_any[i]->bv_len;
+ /* validator should have refused an empty string */
+ assert( val->bv_len );
+
+ q = normalized->bv_val = ch_malloc( val->bv_len + 1 );
+
+ for( p = val->bv_val; *p; p++ ) {
+ if ( ! ( ASCII_SPACE( *p ) || *p == '-' )) {
+ *q++ = *p;
}
}
- if( sub->sa_final ) {
- inlen += sub->sa_final->bv_len;
- }
+ *q = '\0';
- if( sub->sa_initial ) {
- if( inlen > left.bv_len ) {
- match = 1;
- goto done;
- }
+ normalized->bv_len = q - normalized->bv_val;
-#if UTF8MATCH
- match = UTF8oncasecmp( sub->sa_initial, &left,
- sub->sa_initial->bv_len, 0 );
-#else
- match = strncasecmp( sub->sa_initial->bv_val, left.bv_val,
- sub->sa_initial->bv_len );
-#endif
+ if( normalized->bv_len == 0 ) {
+ free( normalized->bv_val );
+ return LDAP_INVALID_SYNTAX;
+ }
- if( match != 0 ) {
- goto done;
- }
+ return LDAP_SUCCESS;
+}
+
+static int
+oidValidate(
+ Syntax *syntax,
+ struct berval *val )
+{
+ ber_len_t i;
- left.bv_val += sub->sa_initial->bv_len;
- left.bv_len -= sub->sa_initial->bv_len;
- inlen -= sub->sa_initial->bv_len;
+ if( val->bv_len == 0 ) {
+ /* disallow empty strings */
+ return LDAP_INVALID_SYNTAX;
}
- if( sub->sa_final ) {
- if( inlen > left.bv_len ) {
- match = 1;
- goto done;
+ if( OID_LEADCHAR(val->bv_val[0]) ) {
+ int dot = 0;
+ for(i=1; i < val->bv_len; i++) {
+ if( OID_SEPARATOR( val->bv_val[i] ) ) {
+ if( dot++ ) return 1;
+ } else if ( OID_CHAR( val->bv_val[i] ) ) {
+ dot = 0;
+ } else {
+ return LDAP_INVALID_SYNTAX;
+ }
}
-#if UTF8MATCH
- match = UTF8oncasecmp( sub->sa_final, &left,
- sub->sa_final->bv_len,
- left.bv_len - sub->sa_final->bv_len );
-#else
- match = strncasecmp( sub->sa_final->bv_val,
- &left.bv_val[left.bv_len - sub->sa_final->bv_len],
- sub->sa_final->bv_len );
-#endif
+ return !dot ? LDAP_SUCCESS : LDAP_INVALID_SYNTAX;
- if( match != 0 ) {
- goto done;
+ } else if( DESC_LEADCHAR(val->bv_val[0]) ) {
+ for(i=1; i < val->bv_len; i++) {
+ if( !DESC_CHAR(val->bv_val[i] ) ) {
+ return LDAP_INVALID_SYNTAX;
+ }
}
- left.bv_len -= sub->sa_final->bv_len;
- inlen -= sub->sa_final->bv_len;
+ return LDAP_SUCCESS;
}
+
+ return LDAP_INVALID_SYNTAX;
+}
- if( sub->sa_any ) {
- for(i=0; sub->sa_any[i]; i++) {
- ber_len_t idx;
- char *p;
+static int
+integerMatch(
+ int *matchp,
+ slap_mask_t flags,
+ Syntax *syntax,
+ MatchingRule *mr,
+ struct berval *value,
+ void *assertedValue )
+{
+ char *v, *av;
+ int vsign = 1, avsign = 1; /* default sign = '+' */
+ struct berval *asserted;
+ ber_len_t vlen, avlen;
+ int match;
-retry:
- if( inlen > left.bv_len ) {
- /* not enough length */
- match = 1;
- goto done;
- }
+ /* Skip leading space/sign/zeroes, and get the sign of the *value number */
+ v = value->bv_val;
+ vlen = value->bv_len;
+ if( mr == integerFirstComponentMatchingRule ) {
+ char *tmp = memchr( v, '$', vlen );
+ if( tmp )
+ vlen = tmp - v;
+ while( vlen && ASCII_SPACE( v[vlen-1] ))
+ vlen--;
+ }
+ for( ; vlen && ( *v < '1' || '9' < *v ); v++, vlen-- ) /* ANSI 2.2.1 */
+ if( *v == '-' )
+ vsign = -1;
+ if( vlen == 0 )
+ vsign = 0;
+
+ /* Do the same with the *assertedValue number */
+ asserted = (struct berval *) assertedValue;
+ av = asserted->bv_val;
+ avlen = asserted->bv_len;
+ for( ; avlen && ( *av < '1' || '9' < *av ); av++, avlen-- )
+ if( *av == '-' )
+ avsign = -1;
+ if( avlen == 0 )
+ avsign = 0;
+
+ match = vsign - avsign;
+ if( match == 0 ) {
+ match = (vlen != avlen
+ ? ( vlen < avlen ? -1 : 1 )
+ : memcmp( v, av, vlen ));
+ if( vsign < 0 )
+ match = -match;
+ }
- if( sub->sa_any[i]->bv_len == 0 ) {
- continue;
- }
+ *matchp = match;
+ return LDAP_SUCCESS;
+}
+
+static int
+integerValidate(
+ Syntax *syntax,
+ struct berval *val )
+{
+ ber_len_t i;
-#if UTF8MATCH
- p = UTF8casechr( left.bv_val, sub->sa_any[i]->bv_val );
-#else
- p = strcasechr( left.bv_val, *sub->sa_any[i]->bv_val );
-#endif
+ if( !val->bv_len ) return LDAP_INVALID_SYNTAX;
- if( p == NULL ) {
- match = 1;
- goto done;
- }
+ if(( val->bv_val[0] == '+' ) || ( val->bv_val[0] == '-' )) {
+ if( val->bv_len < 2 ) return LDAP_INVALID_SYNTAX;
+ } else if( !ASCII_DIGIT(val->bv_val[0]) ) {
+ return LDAP_INVALID_SYNTAX;
+ }
- idx = p - left.bv_val;
- assert( idx < left.bv_len );
+ for( i=1; i < val->bv_len; i++ ) {
+ if( !ASCII_DIGIT(val->bv_val[i]) ) return LDAP_INVALID_SYNTAX;
+ }
- if( idx >= left.bv_len ) {
- /* this shouldn't happen */
- return LDAP_OTHER;
- }
+ return LDAP_SUCCESS;
+}
- left.bv_val = p;
- left.bv_len -= idx;
+static int
+integerNormalize(
+ Syntax *syntax,
+ struct berval *val,
+ struct berval *normalized )
+{
+ char *p;
+ int negative=0;
+ ber_len_t len;
- if( sub->sa_any[i]->bv_len > left.bv_len ) {
- /* not enough left */
- match = 1;
- goto done;
- }
-#if UTF8MATCH
- match = UTF8oncasecmp( &left, sub->sa_any[i],
- sub->sa_any[i]->bv_len, 0 );
+ p = val->bv_val;
+ len = val->bv_len;
- if( match != 0 ) {
- int len = LDAP_UTF8_CHARLEN( left.bv_val );
- left.bv_val += len;
- left.bv_len -= len;
- goto retry;
- }
-#else
- match = strncasecmp( left.bv_val,
- sub->sa_any[i]->bv_val,
- sub->sa_any[i]->bv_len );
+ /* Ignore leading spaces */
+ while ( len && ( *p == ' ' )) {
+ p++;
+ len--;
+ }
- if( match != 0 ) {
- left.bv_val++;
- left.bv_len--;
+ /* save sign */
+ if( len ) {
+ negative = ( *p == '-' );
+ if(( *p == '-' ) || ( *p == '+' )) {
+ p++;
+ len--;
+ }
+ }
- goto retry;
- }
-#endif
+ /* Ignore leading zeros */
+ while ( len && ( *p == '0' )) {
+ p++;
+ len--;
+ }
- left.bv_val += sub->sa_any[i]->bv_len;
- left.bv_len -= sub->sa_any[i]->bv_len;
- inlen -= sub->sa_any[i]->bv_len;
+ /* If there are no non-zero digits left, the number is zero, otherwise
+ allocate space for the number and copy it into the buffer */
+ if( len == 0 ) {
+ normalized->bv_val = ch_strdup("0");
+ normalized->bv_len = 1;
+ }
+ else {
+ normalized->bv_len = len+negative;
+ normalized->bv_val = ch_malloc( normalized->bv_len + 1 );
+ if( negative ) {
+ normalized->bv_val[0] = '-';
}
+ AC_MEMCPY( normalized->bv_val + negative, p, len );
+ normalized->bv_val[len+negative] = '\0';
}
-done:
- *matchp = match;
return LDAP_SUCCESS;
}
/* Index generation function */
-int caseIgnoreIndexer(
+static int integerIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
int i;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* empty - just count them */
+ }
+
/* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
+ assert( i > 0 );
- for( i=0; values[i] != NULL; i++ ) {
- /* just count them */
- }
+ keys = ch_malloc( sizeof( struct berval ) * (i+1) );
- keys = ch_malloc( sizeof( struct berval * ) * (i+1) );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ struct berval norm;
+ integerNormalize( syntax, &values[i], &norm );
- for( i=0; values[i] != NULL; i++ ) {
- struct berval *value;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( values[i]->bv_val, UTF8_CASEFOLD ) );
-#else
- value = ber_bvdup( values[i] );
- ldap_pvt_str2upper( value->bv_val );
-#endif
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, value->bv_len );
+ norm.bv_val, norm.bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- ber_bvfree( value );
-
- keys[i] = ber_bvdup( &digest );
+ ber_dupbv( &keys[i], &digest );
+ ch_free( norm.bv_val );
}
- keys[i] = NULL;
+ keys[i].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
}
/* Index generation function */
-int caseIgnoreFilter(
+static int integerFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
- struct berval *value;
+ struct berval norm;
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( ((struct berval *) assertValue)->bv_val, UTF8_CASEFOLD ) );
-#else
- value = ber_bvdup( (struct berval *) assertValue );
- ldap_pvt_str2upper( value->bv_val );
-#endif
+ integerNormalize( syntax, assertedValue, &norm );
- keys = ch_malloc( sizeof( struct berval * ) * 2 );
+ keys = ch_malloc( sizeof( struct berval ) * 2 );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, value->bv_len );
+ norm.bv_val, norm.bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[0] = ber_bvdup( &digest );
- keys[1] = NULL;
-
- ber_bvfree( value );
+ ber_dupbv( &keys[0], &digest );
+ keys[1].bv_val = NULL;
+ ch_free( norm.bv_val );
*keysp = keys;
-
return LDAP_SUCCESS;
}
-/* Substrings Index generation function */
-int caseIgnoreSubstringsIndexer(
- slap_mask_t use,
- slap_mask_t flags,
- Syntax *syntax,
- MatchingRule *mr,
- struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
-{
- ber_len_t i, nkeys;
- size_t slen, mlen;
- struct berval **keys;
- HASH_CONTEXT HASHcontext;
- unsigned char HASHdigest[HASH_BYTES];
- struct berval digest;
- digest.bv_val = HASHdigest;
- digest.bv_len = sizeof(HASHdigest);
-
- /* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
-
- nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
- /* count number of indices to generate */
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
- continue;
- }
-
- if( flags & SLAP_INDEX_SUBSTR_INITIAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
- ( SLAP_INDEX_SUBSTR_MINLEN - 1);
- } else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
- }
- }
-
- if( flags & SLAP_INDEX_SUBSTR_ANY ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
- }
- }
-
- if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
- ( SLAP_INDEX_SUBSTR_MINLEN - 1);
- } else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
- }
- }
- }
-
- if( nkeys == 0 ) {
- /* no keys to generate */
- *keysp = NULL;
- return LDAP_SUCCESS;
- }
-
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
-
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
-
- nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
- int j,max;
- struct berval *value;
-
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) continue;
-
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( values[i]->bv_val, UTF8_CASEFOLD ) );
-#else
- value = ber_bvdup( values[i] );
- ldap_pvt_str2upper( value->bv_val );
-#endif
-
- if( ( flags & SLAP_INDEX_SUBSTR_ANY ) &&
- ( value->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) )
- {
- char pre = SLAP_INDEX_SUBSTR_PREFIX;
- max = value->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1);
-
- for( j=0; j<max; j++ ) {
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
- }
-
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- &value->bv_val[j],
- SLAP_INDEX_SUBSTR_MAXLEN );
- HASH_Final( HASHdigest, &HASHcontext );
-
- keys[nkeys++] = ber_bvdup( &digest );
- }
- }
-
- max = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
-
- for( j=SLAP_INDEX_SUBSTR_MINLEN; j<=max; j++ ) {
- char pre;
-
- if( flags & SLAP_INDEX_SUBSTR_INITIAL ) {
- pre = SLAP_INDEX_SUBSTR_INITIAL_PREFIX;
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
- }
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- value->bv_val, j );
- HASH_Final( HASHdigest, &HASHcontext );
-
- keys[nkeys++] = ber_bvdup( &digest );
- }
-
- if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
- pre = SLAP_INDEX_SUBSTR_FINAL_PREFIX;
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
- }
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- &value->bv_val[value->bv_len-j], j );
- HASH_Final( HASHdigest, &HASHcontext );
-
- keys[nkeys++] = ber_bvdup( &digest );
- }
-
- }
-
- ber_bvfree( value );
- }
-
- if( nkeys > 0 ) {
- keys[nkeys] = NULL;
- *keysp = keys;
- } else {
- ch_free( keys );
- *keysp = NULL;
- }
-
- return LDAP_SUCCESS;
-}
-
-int caseIgnoreSubstringsFilter(
- slap_mask_t use,
- slap_mask_t flags,
- Syntax *syntax,
- MatchingRule *mr,
- struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
-{
- SubstringsAssertion *sa = assertValue;
- char pre;
- ber_len_t nkeys = 0;
- size_t slen, mlen, klen;
- struct berval **keys;
- HASH_CONTEXT HASHcontext;
- unsigned char HASHdigest[HASH_BYTES];
- struct berval *value;
- struct berval digest;
-
- if((flags & SLAP_INDEX_SUBSTR_INITIAL) && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
- {
- nkeys++;
- }
-
- if((flags & SLAP_INDEX_SUBSTR_ANY) && sa->sa_any != NULL ) {
- ber_len_t i;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- /* don't bother accounting for stepping */
- nkeys += sa->sa_any[i]->bv_len -
- ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
- }
- }
- }
-
- if((flags & SLAP_INDEX_SUBSTR_FINAL) && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
- {
- nkeys++;
- }
-
- if( nkeys == 0 ) {
- *keysp = NULL;
- return LDAP_SUCCESS;
- }
-
- digest.bv_val = HASHdigest;
- digest.bv_len = sizeof(HASHdigest);
-
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
-
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
- nkeys = 0;
-
- if((flags & SLAP_INDEX_SUBSTR_INITIAL) && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
- {
- pre = SLAP_INDEX_SUBSTR_INITIAL_PREFIX;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( sa->sa_initial->bv_val, UTF8_CASEFOLD ) );
-#else
- value = ber_bvdup( sa->sa_initial );
- ldap_pvt_str2upper( value->bv_val );
-#endif
-
- klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
-
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
- }
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- value->bv_val, klen );
- HASH_Final( HASHdigest, &HASHcontext );
-
- ber_bvfree( value );
- keys[nkeys++] = ber_bvdup( &digest );
- }
-
- if((flags & SLAP_INDEX_SUBSTR_ANY) && sa->sa_any != NULL ) {
- ber_len_t i, j;
- pre = SLAP_INDEX_SUBSTR_PREFIX;
- klen = SLAP_INDEX_SUBSTR_MAXLEN;
-
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
- continue;
- }
-
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( sa->sa_any[i]->bv_val, UTF8_CASEFOLD ) );
-#else
- value = ber_bvdup( sa->sa_any[i] );
- ldap_pvt_str2upper( value->bv_val );
-#endif
-
- for(j=0;
- j <= value->bv_len - SLAP_INDEX_SUBSTR_MAXLEN;
- j += SLAP_INDEX_SUBSTR_STEP )
- {
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
- }
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- &value->bv_val[j], klen );
- HASH_Final( HASHdigest, &HASHcontext );
-
- keys[nkeys++] = ber_bvdup( &digest );
- }
-
- ber_bvfree( value );
- }
- }
-
- if((flags & SLAP_INDEX_SUBSTR_FINAL) && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
- {
- pre = SLAP_INDEX_SUBSTR_FINAL_PREFIX;
-#if UTF8MATCH
- value = ber_bvstr( UTF8normalize( sa->sa_final->bv_val, UTF8_CASEFOLD ) );
-#else
- value = ber_bvdup( sa->sa_final );
- ldap_pvt_str2upper( value->bv_val );
-#endif
-
- klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
-
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
- }
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- &value->bv_val[value->bv_len-klen], klen );
- HASH_Final( HASHdigest, &HASHcontext );
-
- ber_bvfree( value );
- keys[nkeys++] = ber_bvdup( &digest );
- }
-
- if( nkeys > 0 ) {
- keys[nkeys] = NULL;
- *keysp = keys;
- } else {
- ch_free( keys );
- *keysp = NULL;
- }
-
- return LDAP_SUCCESS;
-}
-
-static int
-oidValidate(
- Syntax *syntax,
- struct berval *val )
-{
- ber_len_t i;
-
- if( val->bv_len == 0 ) {
- /* disallow empty strings */
- return LDAP_INVALID_SYNTAX;
- }
-
- if( OID_LEADCHAR(val->bv_val[0]) ) {
- int dot = 0;
- for(i=1; i < val->bv_len; i++) {
- if( OID_SEPARATOR( val->bv_val[i] ) ) {
- if( dot++ ) return 1;
- } else if ( OID_CHAR( val->bv_val[i] ) ) {
- dot = 0;
- } else {
- return LDAP_INVALID_SYNTAX;
- }
- }
-
- return !dot ? LDAP_SUCCESS : LDAP_INVALID_SYNTAX;
-
- } else if( DESC_LEADCHAR(val->bv_val[0]) ) {
- for(i=1; i < val->bv_len; i++) {
- if( !DESC_CHAR(val->bv_val[i] ) ) {
- return LDAP_INVALID_SYNTAX;
- }
- }
-
- return LDAP_SUCCESS;
- }
-
- return LDAP_INVALID_SYNTAX;
-}
-
-static int
-integerValidate(
- Syntax *syntax,
- struct berval *val )
-{
- ber_len_t i;
-
- if( !val->bv_len ) return LDAP_INVALID_SYNTAX;
-
- if( val->bv_val[0] == '+' || val->bv_val[0] == '-' ) {
- if( val->bv_len < 2 ) return LDAP_INVALID_SYNTAX;
- } else if( !ASCII_DIGIT(val->bv_val[0]) ) {
- return LDAP_INVALID_SYNTAX;
- }
-
- for(i=1; i < val->bv_len; i++) {
- if( !ASCII_DIGIT(val->bv_val[i]) ) return LDAP_INVALID_SYNTAX;
- }
-
- return LDAP_SUCCESS;
-}
-
-static int
-integerNormalize(
- Syntax *syntax,
- struct berval *val,
- struct berval **normalized )
-{
- int negative;
- struct berval *newval;
- char *p;
-
- p = val->bv_val;
-
- /* save sign */
- negative = ( *p == '-' );
- if( *p == '-' || *p == '+' ) p++;
-
- /* Ignore leading zeros */
- while ( *p == '0' ) p++;
-
- newval = (struct berval *) ch_malloc( sizeof(struct berval) );
-
- if( *p == '\0' ) {
- newval->bv_val = ch_strdup("0");
- newval->bv_len = 1;
- goto done;
- }
-
- newval->bv_val = ch_malloc( val->bv_len + 1 );
- newval->bv_len = 0;
-
- if( negative ) {
- newval->bv_val[newval->bv_len++] = '-';
- }
-
- for( ; *p != '\0'; p++ ) {
- newval->bv_val[newval->bv_len++] = *p;
- }
-
-done:
- *normalized = newval;
- return LDAP_SUCCESS;
-}
static int
countryStringValidate(
Syntax *syntax,
struct berval *val )
{
- ber_len_t i;
-
if( val->bv_len != 2 ) return LDAP_INVALID_SYNTAX;
if( !SLAP_PRINTABLE(val->bv_val[0]) ) {
{
ber_len_t i;
- if( !val->bv_len ) return LDAP_INVALID_SYNTAX;
+ if( val->bv_len == 0 ) return LDAP_INVALID_SYNTAX;
for(i=0; i < val->bv_len; i++) {
if( !SLAP_PRINTABLE(val->bv_val[i]) ) {
Syntax *syntax,
struct berval *val )
{
- ber_len_t i;
+ ber_len_t i, len;
- if( !val->bv_len ) return LDAP_INVALID_SYNTAX;
+ if( val->bv_len == 0 ) return LDAP_INVALID_SYNTAX;
- for(i=0; i < val->bv_len; i++) {
- if( !SLAP_PRINTABLES(val->bv_val[i]) ) {
+ for(i=0,len=0; i < val->bv_len; i++) {
+ int c = val->bv_val[i];
+
+ if( c == '$' ) {
+ if( len == 0 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ len = 0;
+
+ } else if ( SLAP_PRINTABLE(c) ) {
+ len++;
+ } else {
return LDAP_INVALID_SYNTAX;
}
}
+ if( len == 0 ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+
return LDAP_SUCCESS;
}
{
ber_len_t i;
- if( !val->bv_len ) return LDAP_INVALID_SYNTAX;
+ if( val->bv_len == 0 ) return LDAP_INVALID_SYNTAX;
for(i=0; i < val->bv_len; i++) {
- if( !isascii(val->bv_val[i]) ) return LDAP_INVALID_SYNTAX;
+ if( !LDAP_ASCII(val->bv_val[i]) ) {
+ return LDAP_INVALID_SYNTAX;
+ }
}
return LDAP_SUCCESS;
IA5StringNormalize(
Syntax *syntax,
struct berval *val,
- struct berval **normalized )
+ struct berval *normalized )
{
- struct berval *newval;
char *p, *q;
- newval = ch_malloc( sizeof( struct berval ) );
+ assert( val->bv_len );
p = val->bv_val;
p++;
}
- if( *p == '\0' ) {
- ch_free( newval );
- return LDAP_INVALID_SYNTAX;
- }
-
- newval->bv_val = ch_strdup( p );
- p = q = newval->bv_val;
+ normalized->bv_val = ch_strdup( p );
+ p = q = normalized->bv_val;
while ( *p ) {
if ( ASCII_SPACE( *p ) ) {
}
}
- assert( *newval->bv_val );
- assert( newval->bv_val < p );
+ assert( normalized->bv_val <= p );
assert( q <= p );
- /* cannot start with a space */
- assert( !ASCII_SPACE(*newval->bv_val) );
-
/*
* If the string ended in space, backup the pointer one
* position. One is enough because the above loop collapsed
--q;
}
- /* cannot end with a space */
- assert( !ASCII_SPACE( q[-1] ) );
-
/* null terminate */
*q = '\0';
- newval->bv_len = q - newval->bv_val;
- *normalized = newval;
+ normalized->bv_len = q - normalized->bv_val;
+
+ if( normalized->bv_len == 0 ) {
+ normalized->bv_val = ch_realloc( normalized->bv_val, 2 );
+ normalized->bv_val[0] = ' ';
+ normalized->bv_val[1] = '\0';
+ normalized->bv_len = 1;
+ }
return LDAP_SUCCESS;
}
ber_len_t inlen=0;
/* Add up asserted input length */
- if( sub->sa_initial ) {
- inlen += sub->sa_initial->bv_len;
+ if( sub->sa_initial.bv_val ) {
+ inlen += sub->sa_initial.bv_len;
}
if( sub->sa_any ) {
- for(i=0; sub->sa_any[i] != NULL; i++) {
- inlen += sub->sa_any[i]->bv_len;
+ for(i=0; sub->sa_any[i].bv_val != NULL; i++) {
+ inlen += sub->sa_any[i].bv_len;
}
}
- if( sub->sa_final ) {
- inlen += sub->sa_final->bv_len;
+ if( sub->sa_final.bv_val ) {
+ inlen += sub->sa_final.bv_len;
}
- if( sub->sa_initial ) {
+ if( sub->sa_initial.bv_val ) {
if( inlen > left.bv_len ) {
match = 1;
goto done;
}
- match = strncmp( sub->sa_initial->bv_val, left.bv_val,
- sub->sa_initial->bv_len );
+ match = strncmp( sub->sa_initial.bv_val, left.bv_val,
+ sub->sa_initial.bv_len );
if( match != 0 ) {
goto done;
}
- left.bv_val += sub->sa_initial->bv_len;
- left.bv_len -= sub->sa_initial->bv_len;
- inlen -= sub->sa_initial->bv_len;
+ left.bv_val += sub->sa_initial.bv_len;
+ left.bv_len -= sub->sa_initial.bv_len;
+ inlen -= sub->sa_initial.bv_len;
}
- if( sub->sa_final ) {
+ if( sub->sa_final.bv_val ) {
if( inlen > left.bv_len ) {
match = 1;
goto done;
}
- match = strncmp( sub->sa_final->bv_val,
- &left.bv_val[left.bv_len - sub->sa_final->bv_len],
- sub->sa_final->bv_len );
+ match = strncmp( sub->sa_final.bv_val,
+ &left.bv_val[left.bv_len - sub->sa_final.bv_len],
+ sub->sa_final.bv_len );
if( match != 0 ) {
goto done;
}
- left.bv_len -= sub->sa_final->bv_len;
- inlen -= sub->sa_final->bv_len;
+ left.bv_len -= sub->sa_final.bv_len;
+ inlen -= sub->sa_final.bv_len;
}
if( sub->sa_any ) {
- for(i=0; sub->sa_any[i]; i++) {
+ for(i=0; sub->sa_any[i].bv_val; i++) {
ber_len_t idx;
char *p;
goto done;
}
- if( sub->sa_any[i]->bv_len == 0 ) {
+ if( sub->sa_any[i].bv_len == 0 ) {
continue;
}
- p = strchr( left.bv_val, *sub->sa_any[i]->bv_val );
+ p = strchr( left.bv_val, *sub->sa_any[i].bv_val );
if( p == NULL ) {
match = 1;
}
idx = p - left.bv_val;
- assert( idx < left.bv_len );
if( idx >= left.bv_len ) {
/* this shouldn't happen */
left.bv_val = p;
left.bv_len -= idx;
- if( sub->sa_any[i]->bv_len > left.bv_len ) {
+ if( sub->sa_any[i].bv_len > left.bv_len ) {
/* not enough left */
match = 1;
goto done;
}
match = strncmp( left.bv_val,
- sub->sa_any[i]->bv_val,
- sub->sa_any[i]->bv_len );
+ sub->sa_any[i].bv_val,
+ sub->sa_any[i].bv_len );
if( match != 0 ) {
left.bv_val++;
goto retry;
}
- left.bv_val += sub->sa_any[i]->bv_len;
- left.bv_len -= sub->sa_any[i]->bv_len;
- inlen -= sub->sa_any[i]->bv_len;
+ left.bv_val += sub->sa_any[i].bv_len;
+ left.bv_len -= sub->sa_any[i].bv_len;
+ inlen -= sub->sa_any[i].bv_len;
}
}
}
/* Index generation function */
-int caseExactIA5Indexer(
+static int caseExactIA5Indexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
int i;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- /* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
-
- for( i=0; values[i] != NULL; i++ ) {
- /* just count them */
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* empty - just count them */
}
- keys = ch_malloc( sizeof( struct berval * ) * (i+1) );
+ /* we should have at least one value at this point */
+ assert( i > 0 );
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ keys = ch_malloc( sizeof( struct berval ) * (i+1) );
- for( i=0; values[i] != NULL; i++ ) {
- struct berval *value = values[i];
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
+
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ struct berval *value = &values[i];
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
value->bv_val, value->bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[i] = ber_bvdup( &digest );
+ ber_dupbv( &keys[i], &digest );
}
- keys[i] = NULL;
+ keys[i].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
}
/* Index generation function */
-int caseExactIA5Filter(
+static int caseExactIA5Filter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval *value;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- value = (struct berval *) assertValue;
+ value = (struct berval *) assertedValue;
- keys = ch_malloc( sizeof( struct berval * ) * 2 );
+ keys = ch_malloc( sizeof( struct berval ) * 2 );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
value->bv_val, value->bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[0] = ber_bvdup( &digest );
- keys[1] = NULL;
+ ber_dupbv( &keys[0], &digest );
+ keys[1].bv_val = NULL;
*keysp = keys;
return LDAP_SUCCESS;
}
/* Substrings Index generation function */
-int caseExactIA5SubstringsIndexer(
+static int caseExactIA5SubstringsIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
ber_len_t i, nkeys;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_len = sizeof(HASHdigest);
/* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
+ assert( values != NULL && values[0].bv_val != NULL );
nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
/* count number of indices to generate */
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
+ if( values[i].bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
continue;
}
if( flags & SLAP_INDEX_SUBSTR_INITIAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
( SLAP_INDEX_SUBSTR_MINLEN - 1);
} else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
}
}
if( flags & SLAP_INDEX_SUBSTR_ANY ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
}
}
if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
( SLAP_INDEX_SUBSTR_MINLEN - 1);
} else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
}
}
}
return LDAP_SUCCESS;
}
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (nkeys+1) );
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
ber_len_t j,max;
struct berval *value;
- value = values[i];
+ value = &values[i];
if( value->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) continue;
if( ( flags & SLAP_INDEX_SUBSTR_ANY ) &&
SLAP_INDEX_SUBSTR_MAXLEN );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
value->bv_val, j );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
&value->bv_val[value->bv_len-j], j );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
}
if( nkeys > 0 ) {
- keys[nkeys] = NULL;
+ keys[nkeys].bv_val = NULL;
*keysp = keys;
} else {
ch_free( keys );
return LDAP_SUCCESS;
}
-int caseExactIA5SubstringsFilter(
+static int caseExactIA5SubstringsFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
- SubstringsAssertion *sa = assertValue;
+ SubstringsAssertion *sa = assertedValue;
char pre;
ber_len_t nkeys = 0;
size_t slen, mlen, klen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval *value;
struct berval digest;
- if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial.bv_val != NULL &&
+ sa->sa_initial.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
nkeys++;
}
if( flags & SLAP_INDEX_SUBSTR_ANY && sa->sa_any != NULL ) {
ber_len_t i;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ if( sa->sa_any[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
/* don't bother accounting for stepping */
- nkeys += sa->sa_any[i]->bv_len -
+ nkeys += sa->sa_any[i].bv_len -
( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
}
}
}
- if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final.bv_val != NULL &&
+ sa->sa_final.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
nkeys++;
}
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (nkeys+1) );
nkeys = 0;
- if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_INITIAL && sa->sa_initial.bv_val != NULL &&
+ sa->sa_initial.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
pre = SLAP_INDEX_SUBSTR_INITIAL_PREFIX;
- value = sa->sa_initial;
+ value = &sa->sa_initial;
klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
value->bv_val, klen );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( flags & SLAP_INDEX_SUBSTR_ANY && sa->sa_any != NULL ) {
pre = SLAP_INDEX_SUBSTR_PREFIX;
klen = SLAP_INDEX_SUBSTR_MAXLEN;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ if( sa->sa_any[i].bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
continue;
}
- value = sa->sa_any[i];
+ value = &sa->sa_any[i];
for(j=0;
j <= value->bv_len - SLAP_INDEX_SUBSTR_MAXLEN;
&value->bv_val[j], klen );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
}
- if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if( flags & SLAP_INDEX_SUBSTR_FINAL && sa->sa_final.bv_val != NULL &&
+ sa->sa_final.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
pre = SLAP_INDEX_SUBSTR_FINAL_PREFIX;
- value = sa->sa_final;
+ value = &sa->sa_final;
klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
&value->bv_val[value->bv_len-klen], klen );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( nkeys > 0 ) {
- keys[nkeys] = NULL;
+ keys[nkeys].bv_val = NULL;
*keysp = keys;
} else {
ch_free( keys );
ber_len_t inlen=0;
/* Add up asserted input length */
- if( sub->sa_initial ) {
- inlen += sub->sa_initial->bv_len;
+ if( sub->sa_initial.bv_val ) {
+ inlen += sub->sa_initial.bv_len;
}
if( sub->sa_any ) {
- for(i=0; sub->sa_any[i] != NULL; i++) {
- inlen += sub->sa_any[i]->bv_len;
+ for(i=0; sub->sa_any[i].bv_val != NULL; i++) {
+ inlen += sub->sa_any[i].bv_len;
}
}
- if( sub->sa_final ) {
- inlen += sub->sa_final->bv_len;
+ if( sub->sa_final.bv_val ) {
+ inlen += sub->sa_final.bv_len;
}
- if( sub->sa_initial ) {
+ if( sub->sa_initial.bv_val ) {
if( inlen > left.bv_len ) {
match = 1;
goto done;
}
- match = strncasecmp( sub->sa_initial->bv_val, left.bv_val,
- sub->sa_initial->bv_len );
+ match = strncasecmp( sub->sa_initial.bv_val, left.bv_val,
+ sub->sa_initial.bv_len );
if( match != 0 ) {
goto done;
}
- left.bv_val += sub->sa_initial->bv_len;
- left.bv_len -= sub->sa_initial->bv_len;
- inlen -= sub->sa_initial->bv_len;
+ left.bv_val += sub->sa_initial.bv_len;
+ left.bv_len -= sub->sa_initial.bv_len;
+ inlen -= sub->sa_initial.bv_len;
}
- if( sub->sa_final ) {
+ if( sub->sa_final.bv_val ) {
if( inlen > left.bv_len ) {
match = 1;
goto done;
}
- match = strncasecmp( sub->sa_final->bv_val,
- &left.bv_val[left.bv_len - sub->sa_final->bv_len],
- sub->sa_final->bv_len );
+ match = strncasecmp( sub->sa_final.bv_val,
+ &left.bv_val[left.bv_len - sub->sa_final.bv_len],
+ sub->sa_final.bv_len );
if( match != 0 ) {
goto done;
}
- left.bv_len -= sub->sa_final->bv_len;
- inlen -= sub->sa_final->bv_len;
+ left.bv_len -= sub->sa_final.bv_len;
+ inlen -= sub->sa_final.bv_len;
}
if( sub->sa_any ) {
- for(i=0; sub->sa_any[i]; i++) {
+ for(i=0; sub->sa_any[i].bv_val; i++) {
ber_len_t idx;
char *p;
goto done;
}
- if( sub->sa_any[i]->bv_len == 0 ) {
+ if( sub->sa_any[i].bv_len == 0 ) {
continue;
}
- p = strcasechr( left.bv_val, *sub->sa_any[i]->bv_val );
+ p = bvcasechr( &left, *sub->sa_any[i].bv_val, &idx );
if( p == NULL ) {
match = 1;
goto done;
}
- idx = p - left.bv_val;
assert( idx < left.bv_len );
-
if( idx >= left.bv_len ) {
/* this shouldn't happen */
return LDAP_OTHER;
left.bv_val = p;
left.bv_len -= idx;
- if( sub->sa_any[i]->bv_len > left.bv_len ) {
+ if( sub->sa_any[i].bv_len > left.bv_len ) {
/* not enough left */
match = 1;
goto done;
}
match = strncasecmp( left.bv_val,
- sub->sa_any[i]->bv_val,
- sub->sa_any[i]->bv_len );
+ sub->sa_any[i].bv_val,
+ sub->sa_any[i].bv_len );
if( match != 0 ) {
left.bv_val++;
goto retry;
}
- left.bv_val += sub->sa_any[i]->bv_len;
- left.bv_len -= sub->sa_any[i]->bv_len;
- inlen -= sub->sa_any[i]->bv_len;
+ left.bv_val += sub->sa_any[i].bv_len;
+ left.bv_len -= sub->sa_any[i].bv_len;
+ inlen -= sub->sa_any[i].bv_len;
}
}
}
/* Index generation function */
-int caseIgnoreIA5Indexer(
+static int caseIgnoreIA5Indexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
int i;
+ int rc = LDAP_SUCCESS;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_len = sizeof(HASHdigest);
/* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
+ assert( values != NULL && values[0].bv_val != NULL );
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
/* just count them */
}
- keys = ch_malloc( sizeof( struct berval * ) * (i+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (i+1) );
+
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
+
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ struct berval value;
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ if( mr->smr_normalize ) {
+ rc = (mr->smr_normalize)( use, syntax, mr, &values[i], &value );
+ if( rc != LDAP_SUCCESS ) {
+ break;
+ }
+ } else if ( mr->smr_syntax->ssyn_normalize ) {
+ rc = (mr->smr_syntax->ssyn_normalize)( syntax, &values[i], &value );
+ if( rc != LDAP_SUCCESS ) {
+ break;
+ }
+ } else {
+ ber_dupbv( &value, &values[i] );
+ }
- for( i=0; values[i] != NULL; i++ ) {
- struct berval *value = ber_bvdup( values[i] );
- ldap_pvt_str2upper( value->bv_val );
+ ldap_pvt_str2lower( value.bv_val );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, value->bv_len );
+ value.bv_val, value.bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- ber_bvfree( value );
+ free( value.bv_val );
- keys[i] = ber_bvdup( &digest );
+ ber_dupbv( &keys[i], &digest );
}
- keys[i] = NULL;
+ keys[i].bv_val = NULL;
+ if( rc != LDAP_SUCCESS ) {
+ ber_bvarray_free( keys );
+ keys = NULL;
+ }
*keysp = keys;
- return LDAP_SUCCESS;
+ return rc;
}
/* Index generation function */
-int caseIgnoreIA5Filter(
+static int caseIgnoreIA5Filter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
- struct berval *value;
+ struct berval value;
struct berval digest;
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- value = ber_bvdup( (struct berval *) assertValue );
- ldap_pvt_str2upper( value->bv_val );
+ ber_dupbv( &value, (struct berval *) assertedValue );
+ ldap_pvt_str2lower( value.bv_val );
- keys = ch_malloc( sizeof( struct berval * ) * 2 );
+ keys = ch_malloc( sizeof( struct berval ) * 2 );
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, value->bv_len );
+ value.bv_val, value.bv_len );
HASH_Final( HASHdigest, &HASHcontext );
- keys[0] = ber_bvdup( &digest );
- keys[1] = NULL;
+ ber_dupbv( &keys[0], &digest );
+ keys[1].bv_val = NULL;
- ber_bvfree( value );
+ free( value.bv_val );
*keysp = keys;
}
/* Substrings Index generation function */
-int caseIgnoreIA5SubstringsIndexer(
+static int caseIgnoreIA5SubstringsIndexer(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- struct berval **values,
- struct berval ***keysp )
+ BerVarray values,
+ BerVarray *keysp )
{
ber_len_t i, nkeys;
size_t slen, mlen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
struct berval digest;
digest.bv_len = sizeof(HASHdigest);
/* we should have at least one value at this point */
- assert( values != NULL && values[0] != NULL );
+ assert( values != NULL && values[0].bv_val != NULL );
nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
/* count number of indices to generate */
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
+ if( values[i].bv_len < SLAP_INDEX_SUBSTR_MINLEN ) {
continue;
}
if( flags & SLAP_INDEX_SUBSTR_INITIAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
( SLAP_INDEX_SUBSTR_MINLEN - 1);
} else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
}
}
if( flags & SLAP_INDEX_SUBSTR_ANY ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
}
}
if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
- if( values[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ if( values[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
nkeys += SLAP_INDEX_SUBSTR_MAXLEN -
( SLAP_INDEX_SUBSTR_MINLEN - 1);
} else {
- nkeys += values[i]->bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
+ nkeys += values[i].bv_len - ( SLAP_INDEX_SUBSTR_MINLEN - 1 );
}
}
}
return LDAP_SUCCESS;
}
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (nkeys+1) );
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
nkeys=0;
- for( i=0; values[i] != NULL; i++ ) {
+ for( i=0; values[i].bv_val != NULL; i++ ) {
int j,max;
- struct berval *value;
+ struct berval value;
- if( values[i]->bv_len < SLAP_INDEX_SUBSTR_MINLEN ) continue;
+ if( values[i].bv_len < SLAP_INDEX_SUBSTR_MINLEN ) continue;
- value = ber_bvdup( values[i] );
- ldap_pvt_str2upper( value->bv_val );
+ ber_dupbv( &value, &values[i] );
+ ldap_pvt_str2lower( value.bv_val );
if( ( flags & SLAP_INDEX_SUBSTR_ANY ) &&
- ( value->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) )
+ ( value.bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) )
{
char pre = SLAP_INDEX_SUBSTR_PREFIX;
- max = value->bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1);
+ max = value.bv_len - ( SLAP_INDEX_SUBSTR_MAXLEN - 1);
for( j=0; j<max; j++ ) {
HASH_Init( &HASHcontext );
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- &value->bv_val[j],
+ &value.bv_val[j],
SLAP_INDEX_SUBSTR_MAXLEN );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
- max = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
+ max = SLAP_INDEX_SUBSTR_MAXLEN < value.bv_len
+ ? SLAP_INDEX_SUBSTR_MAXLEN : value.bv_len;
for( j=SLAP_INDEX_SUBSTR_MINLEN; j<=max; j++ ) {
char pre;
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, j );
+ value.bv_val, j );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if( flags & SLAP_INDEX_SUBSTR_FINAL ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- &value->bv_val[value->bv_len-j], j );
+ &value.bv_val[value.bv_len-j], j );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
}
- ber_bvfree( value );
+ free( value.bv_val );
}
if( nkeys > 0 ) {
- keys[nkeys] = NULL;
+ keys[nkeys].bv_val = NULL;
*keysp = keys;
} else {
ch_free( keys );
return LDAP_SUCCESS;
}
-int caseIgnoreIA5SubstringsFilter(
+static int caseIgnoreIA5SubstringsFilter(
slap_mask_t use,
slap_mask_t flags,
Syntax *syntax,
MatchingRule *mr,
struct berval *prefix,
- void * assertValue,
- struct berval ***keysp )
+ void * assertedValue,
+ BerVarray *keysp )
{
- SubstringsAssertion *sa = assertValue;
+ SubstringsAssertion *sa = assertedValue;
char pre;
ber_len_t nkeys = 0;
size_t slen, mlen, klen;
- struct berval **keys;
+ BerVarray keys;
HASH_CONTEXT HASHcontext;
unsigned char HASHdigest[HASH_BYTES];
- struct berval *value;
+ struct berval value;
struct berval digest;
- if((flags & SLAP_INDEX_SUBSTR_INITIAL) && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if((flags & SLAP_INDEX_SUBSTR_INITIAL) && sa->sa_initial.bv_val != NULL &&
+ sa->sa_initial.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
nkeys++;
}
if((flags & SLAP_INDEX_SUBSTR_ANY) && sa->sa_any != NULL ) {
ber_len_t i;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ if( sa->sa_any[i].bv_len >= SLAP_INDEX_SUBSTR_MAXLEN ) {
/* don't bother accounting for stepping */
- nkeys += sa->sa_any[i]->bv_len -
+ nkeys += sa->sa_any[i].bv_len -
( SLAP_INDEX_SUBSTR_MAXLEN - 1 );
}
}
}
- if((flags & SLAP_INDEX_SUBSTR_FINAL) && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if((flags & SLAP_INDEX_SUBSTR_FINAL) && sa->sa_final.bv_val != NULL &&
+ sa->sa_final.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
nkeys++;
}
digest.bv_val = HASHdigest;
digest.bv_len = sizeof(HASHdigest);
- slen = strlen( syntax->ssyn_oid );
- mlen = strlen( mr->smr_oid );
+ slen = syntax->ssyn_oidlen;
+ mlen = mr->smr_oidlen;
- keys = ch_malloc( sizeof( struct berval * ) * (nkeys+1) );
+ keys = ch_malloc( sizeof( struct berval ) * (nkeys+1) );
nkeys = 0;
- if((flags & SLAP_INDEX_SUBSTR_INITIAL) && sa->sa_initial != NULL &&
- sa->sa_initial->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if((flags & SLAP_INDEX_SUBSTR_INITIAL) && sa->sa_initial.bv_val != NULL &&
+ sa->sa_initial.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
pre = SLAP_INDEX_SUBSTR_INITIAL_PREFIX;
- value = ber_bvdup( sa->sa_initial );
- ldap_pvt_str2upper( value->bv_val );
+ ber_dupbv( &value, &sa->sa_initial );
+ ldap_pvt_str2lower( value.bv_val );
- klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
+ klen = SLAP_INDEX_SUBSTR_MAXLEN < value.bv_len
+ ? SLAP_INDEX_SUBSTR_MAXLEN : value.bv_len;
HASH_Init( &HASHcontext );
if( prefix != NULL && prefix->bv_len > 0 ) {
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- value->bv_val, klen );
+ value.bv_val, klen );
HASH_Final( HASHdigest, &HASHcontext );
- ber_bvfree( value );
- keys[nkeys++] = ber_bvdup( &digest );
+ free( value.bv_val );
+ ber_dupbv( &keys[nkeys++], &digest );
}
if((flags & SLAP_INDEX_SUBSTR_ANY) && sa->sa_any != NULL ) {
pre = SLAP_INDEX_SUBSTR_PREFIX;
klen = SLAP_INDEX_SUBSTR_MAXLEN;
- for( i=0; sa->sa_any[i] != NULL; i++ ) {
- if( sa->sa_any[i]->bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
+ for( i=0; sa->sa_any[i].bv_val != NULL; i++ ) {
+ if( sa->sa_any[i].bv_len < SLAP_INDEX_SUBSTR_MAXLEN ) {
continue;
}
- value = ber_bvdup( sa->sa_any[i] );
- ldap_pvt_str2upper( value->bv_val );
+ ber_dupbv( &value, &sa->sa_any[i] );
+ ldap_pvt_str2lower( value.bv_val );
for(j=0;
- j <= value->bv_len - SLAP_INDEX_SUBSTR_MAXLEN;
+ j <= value.bv_len - SLAP_INDEX_SUBSTR_MAXLEN;
j += SLAP_INDEX_SUBSTR_STEP )
{
HASH_Init( &HASHcontext );
HASH_Update( &HASHcontext,
mr->smr_oid, mlen );
HASH_Update( &HASHcontext,
- &value->bv_val[j], klen );
+ &value.bv_val[j], klen );
HASH_Final( HASHdigest, &HASHcontext );
- keys[nkeys++] = ber_bvdup( &digest );
+ ber_dupbv( &keys[nkeys++], &digest );
}
- ber_bvfree( value );
+ free( value.bv_val );
}
}
- if((flags & SLAP_INDEX_SUBSTR_FINAL) && sa->sa_final != NULL &&
- sa->sa_final->bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
+ if((flags & SLAP_INDEX_SUBSTR_FINAL) && sa->sa_final.bv_val != NULL &&
+ sa->sa_final.bv_len >= SLAP_INDEX_SUBSTR_MINLEN )
{
pre = SLAP_INDEX_SUBSTR_FINAL_PREFIX;
- value = ber_bvdup( sa->sa_final );
- ldap_pvt_str2upper( value->bv_val );
+ ber_dupbv( &value, &sa->sa_final );
+ ldap_pvt_str2lower( value.bv_val );
+
+ klen = SLAP_INDEX_SUBSTR_MAXLEN < value.bv_len
+ ? SLAP_INDEX_SUBSTR_MAXLEN : value.bv_len;
+
+ HASH_Init( &HASHcontext );
+ if( prefix != NULL && prefix->bv_len > 0 ) {
+ HASH_Update( &HASHcontext,
+ prefix->bv_val, prefix->bv_len );
+ }
+ HASH_Update( &HASHcontext,
+ &pre, sizeof( pre ) );
+ HASH_Update( &HASHcontext,
+ syntax->ssyn_oid, slen );
+ HASH_Update( &HASHcontext,
+ mr->smr_oid, mlen );
+ HASH_Update( &HASHcontext,
+ &value.bv_val[value.bv_len-klen], klen );
+ HASH_Final( HASHdigest, &HASHcontext );
+
+ free( value.bv_val );
+ ber_dupbv( &keys[nkeys++], &digest );
+ }
+
+ if( nkeys > 0 ) {
+ keys[nkeys].bv_val = NULL;
+ *keysp = keys;
+ } else {
+ ch_free( keys );
+ *keysp = NULL;
+ }
+
+ return LDAP_SUCCESS;
+}
+
+static int
+numericStringValidate(
+ Syntax *syntax,
+ struct berval *in )
+{
+ ber_len_t i;
+
+ if( in->bv_len == 0 ) return LDAP_INVALID_SYNTAX;
+
+ for(i=0; i < in->bv_len; i++) {
+ if( !SLAP_NUMERIC(in->bv_val[i]) ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+ }
+
+ return LDAP_SUCCESS;
+}
+
+static int
+numericStringNormalize(
+ Syntax *syntax,
+ struct berval *val,
+ struct berval *normalized )
+{
+ /* removal all spaces */
+ char *p, *q;
+
+ assert( val->bv_len );
+
+ normalized->bv_val = ch_malloc( val->bv_len + 1 );
+
+ p = val->bv_val;
+ q = normalized->bv_val;
+
+ while ( *p ) {
+ if ( ASCII_SPACE( *p ) ) {
+ /* Ignore whitespace */
+ p++;
+ } else {
+ *q++ = *p++;
+ }
+ }
+
+ /* we should have copied no more then is in val */
+ assert( (q - normalized->bv_val) <= (p - val->bv_val) );
+
+ /* null terminate */
+ *q = '\0';
+
+ normalized->bv_len = q - normalized->bv_val;
+
+ if( normalized->bv_len == 0 ) {
+ normalized->bv_val = ch_realloc( normalized->bv_val, 2 );
+ normalized->bv_val[0] = ' ';
+ normalized->bv_val[1] = '\0';
+ normalized->bv_len = 1;
+ }
+
+ return LDAP_SUCCESS;
+}
+
+static int
+objectIdentifierFirstComponentMatch(
+ int *matchp,
+ slap_mask_t flags,
+ Syntax *syntax,
+ MatchingRule *mr,
+ struct berval *value,
+ void *assertedValue )
+{
+ int rc = LDAP_SUCCESS;
+ int match;
+ struct berval *asserted = (struct berval *) assertedValue;
+ ber_len_t i;
+ struct berval oid;
+
+ if( value->bv_len == 0 || value->bv_val[0] != '(' /*')'*/ ) {
+ return LDAP_INVALID_SYNTAX;
+ }
+
+ /* trim leading white space */
+ for( i=1; ASCII_SPACE(value->bv_val[i]) && i < value->bv_len; i++ ) {
+ /* empty */
+ }
+
+ /* grab next word */
+ oid.bv_val = &value->bv_val[i];
+ oid.bv_len = value->bv_len - i;
+ for( i=1; ASCII_SPACE(value->bv_val[i]) && i < oid.bv_len; i++ ) {
+ /* empty */
+ }
+ oid.bv_len = i;
+
+ /* insert attributeTypes, objectclass check here */
+ if( OID_LEADCHAR(asserted->bv_val[0]) ) {
+ rc = objectIdentifierMatch( &match, flags, syntax, mr, &oid, asserted );
+
+ } else {
+ if ( !strcmp( syntax->ssyn_oid, SLAP_SYNTAX_MATCHINGRULES_OID ) ) {
+ MatchingRule *asserted_mr = mr_bvfind( asserted );
+ MatchingRule *stored_mr = mr_bvfind( &oid );
+
+ if( asserted_mr == NULL ) {
+ rc = SLAPD_COMPARE_UNDEFINED;
+ } else {
+ match = asserted_mr != stored_mr;
+ }
+
+ } else if ( !strcmp( syntax->ssyn_oid,
+ SLAP_SYNTAX_ATTRIBUTETYPES_OID ) )
+ {
+ AttributeType *asserted_at = at_bvfind( asserted );
+ AttributeType *stored_at = at_bvfind( &oid );
+
+ if( asserted_at == NULL ) {
+ rc = SLAPD_COMPARE_UNDEFINED;
+ } else {
+ match = asserted_at != stored_at;
+ }
+
+ } else if ( !strcmp( syntax->ssyn_oid,
+ SLAP_SYNTAX_OBJECTCLASSES_OID ) )
+ {
+ ObjectClass *asserted_oc = oc_bvfind( asserted );
+ ObjectClass *stored_oc = oc_bvfind( &oid );
+
+ if( asserted_oc == NULL ) {
+ rc = SLAPD_COMPARE_UNDEFINED;
+ } else {
+ match = asserted_oc != stored_oc;
+ }
+ }
+ }
+
+#ifdef NEW_LOGGING
+ LDAP_LOG( CONFIG, ENTRY,
+ "objectIdentifierFirstComponentMatch: %d\n %s\n %s\n",
+ match, value->bv_val, asserted->bv_val );
+#else
+ Debug( LDAP_DEBUG_ARGS, "objectIdentifierFirstComponentMatch "
+ "%d\n\t\"%s\"\n\t\"%s\"\n",
+ match, value->bv_val, asserted->bv_val );
+#endif
+
+ if( rc == LDAP_SUCCESS ) *matchp = match;
+ return rc;
+}
+
+static int
+integerBitAndMatch(
+ int *matchp,
+ slap_mask_t flags,
+ Syntax *syntax,
+ MatchingRule *mr,
+ struct berval *value,
+ void *assertedValue )
+{
+ long lValue, lAssertedValue;
+
+ /* safe to assume integers are NUL terminated? */
+ lValue = strtoul(value->bv_val, NULL, 10);
+ if(( lValue == LONG_MIN || lValue == LONG_MAX) && errno == ERANGE ) {
+ return LDAP_CONSTRAINT_VIOLATION;
+ }
+
+ lAssertedValue = strtol(((struct berval *)assertedValue)->bv_val, NULL, 10);
+ if(( lAssertedValue == LONG_MIN || lAssertedValue == LONG_MAX)
+ && errno == ERANGE )
+ {
+ return LDAP_CONSTRAINT_VIOLATION;
+ }
+
+ *matchp = (lValue & lAssertedValue) ? 0 : 1;
+ return LDAP_SUCCESS;
+}
+
+static int
+integerBitOrMatch(
+ int *matchp,
+ slap_mask_t flags,
+ Syntax *syntax,
+ MatchingRule *mr,
+ struct berval *value,
+ void *assertedValue )
+{
+ long lValue, lAssertedValue;
+
+ /* safe to assume integers are NUL terminated? */
+ lValue = strtoul(value->bv_val, NULL, 10);
+ if(( lValue == LONG_MIN || lValue == LONG_MAX) && errno == ERANGE ) {
+ return LDAP_CONSTRAINT_VIOLATION;
+ }
+
+ lAssertedValue = strtol(((struct berval *)assertedValue)->bv_val, NULL, 10);
+ if(( lAssertedValue == LONG_MIN || lAssertedValue == LONG_MAX)
+ && errno == ERANGE )
+ {
+ return LDAP_CONSTRAINT_VIOLATION;
+ }
+
+ *matchp = (lValue | lAssertedValue) ? 0 : -1;
+ return LDAP_SUCCESS;
+}
+
+#ifdef HAVE_TLS
+#include <openssl/x509.h>
+#include <openssl/err.h>
+
+/*
+ * Next function returns a string representation of a ASN1_INTEGER.
+ * It works for unlimited lengths.
+ */
+
+static struct berval *
+asn1_integer2str(ASN1_INTEGER *a, struct berval *bv)
+{
+ char buf[256];
+ char *p;
+ static char digit[] = "0123456789";
+
+ /* We work backwards, make it fill from the end of buf */
+ p = buf + sizeof(buf) - 1;
+ *p = '\0';
+
+ if ( a == NULL || a->length == 0 ) {
+ *--p = '0';
+ } else {
+ int i;
+ int n = a->length;
+ int base = 0;
+ unsigned int *copy;
+
+ /* We want to preserve the original */
+ copy = ch_malloc(n*sizeof(unsigned int));
+ for (i = 0; i<n; i++) {
+ copy[i] = a->data[i];
+ }
- klen = SLAP_INDEX_SUBSTR_MAXLEN < value->bv_len
- ? SLAP_INDEX_SUBSTR_MAXLEN : value->bv_len;
+ /*
+ * base indicates the index of the most significant
+ * byte that might be nonzero. When it goes off the
+ * end, we now there is nothing left to do.
+ */
+ while (base < n) {
+ unsigned int carry;
+
+ carry = 0;
+ for (i = base; i<n; i++ ) {
+ copy[i] += carry*256;
+ carry = copy[i] % 10;
+ copy[i] /= 10;
+ }
+ if (p <= buf+1) {
+ /*
+ * Way too large, we need to leave
+ * room for sign if negative
+ */
+ free(copy);
+ return NULL;
+ }
+ *--p = digit[carry];
- HASH_Init( &HASHcontext );
- if( prefix != NULL && prefix->bv_len > 0 ) {
- HASH_Update( &HASHcontext,
- prefix->bv_val, prefix->bv_len );
+ if (copy[base] == 0) base++;
}
- HASH_Update( &HASHcontext,
- &pre, sizeof( pre ) );
- HASH_Update( &HASHcontext,
- syntax->ssyn_oid, slen );
- HASH_Update( &HASHcontext,
- mr->smr_oid, mlen );
- HASH_Update( &HASHcontext,
- &value->bv_val[value->bv_len-klen], klen );
- HASH_Final( HASHdigest, &HASHcontext );
-
- ber_bvfree( value );
- keys[nkeys++] = ber_bvdup( &digest );
+ free(copy);
}
- if( nkeys > 0 ) {
- keys[nkeys] = NULL;
- *keysp = keys;
- } else {
- ch_free( keys );
- *keysp = NULL;
+ if ( a->type == V_ASN1_NEG_INTEGER ) {
+ *--p = '-';
}
- return LDAP_SUCCESS;
+ return ber_str2bv( p, 0, 1, bv );
}
-
+
+/*
+ * Given a certificate in DER format, extract the corresponding
+ * assertion value for certificateExactMatch
+ */
static int
-numericStringValidate(
- Syntax *syntax,
- struct berval *in )
+certificateExactConvert(
+ struct berval * in,
+ struct berval * out )
{
- ber_len_t i;
+ X509 *xcert;
+ unsigned char *p = in->bv_val;
+ struct berval serial;
+ struct berval issuer_dn;
- /* disallow empty numeric strings */
+ xcert = d2i_X509(NULL, &p, in->bv_len);
+ if ( !xcert ) {
+#ifdef NEW_LOGGING
+ LDAP_LOG( CONFIG, ENTRY,
+ "certificateExactConvert: error parsing cert: %s\n",
+ ERR_error_string(ERR_get_error(),NULL), 0, 0 );
+#else
+ Debug( LDAP_DEBUG_ARGS, "certificateExactConvert: "
+ "error parsing cert: %s\n",
+ ERR_error_string(ERR_get_error(),NULL), NULL, NULL );
+#endif
+ return LDAP_INVALID_SYNTAX;
+ }
- for(i=0; i < in->bv_len; i++) {
- if( !SLAP_NUMERIC(in->bv_val[i]) ) {
- return LDAP_INVALID_SYNTAX;
- }
+ if ( !asn1_integer2str(xcert->cert_info->serialNumber, &serial) ) {
+ X509_free(xcert);
+ return LDAP_INVALID_SYNTAX;
+ }
+ if ( dnX509normalize(X509_get_issuer_name(xcert), &issuer_dn )
+ != LDAP_SUCCESS )
+ {
+ X509_free(xcert);
+ ber_memfree(serial.bv_val);
+ return LDAP_INVALID_SYNTAX;
}
+ X509_free(xcert);
+
+ out->bv_len = serial.bv_len + issuer_dn.bv_len + sizeof(" $ ");
+ out->bv_val = ch_malloc(out->bv_len);
+ p = out->bv_val;
+ AC_MEMCPY(p, serial.bv_val, serial.bv_len);
+ p += serial.bv_len;
+ AC_MEMCPY(p, " $ ", sizeof(" $ ")-1);
+ p += 3;
+ AC_MEMCPY(p, issuer_dn.bv_val, issuer_dn.bv_len);
+ p += issuer_dn.bv_len;
+ *p++ = '\0';
+
+#ifdef NEW_LOGGING
+ LDAP_LOG( CONFIG, ARGS,
+ "certificateExactConvert: \n %s\n", out->bv_val, 0, 0 );
+#else
+ Debug( LDAP_DEBUG_ARGS, "certificateExactConvert "
+ "\n\t\"%s\"\n",
+ out->bv_val, NULL, NULL );
+#endif
+
+ ber_memfree(serial.bv_val);
+ ber_memfree(issuer_dn.bv_val);
+
return LDAP_SUCCESS;
}
static int
-numericStringNormalize(
- Syntax *syntax,
- struct berval *val,
- struct berval **normalized )
+serial_and_issuer_parse(
+ struct berval *assertion,
+ struct berval *serial,
+ struct berval *issuer_dn
+)
{
- /* removal all spaces */
- struct berval *newval;
- char *p, *q;
-
- newval = ch_malloc( sizeof( struct berval ) );
- newval->bv_val = ch_malloc( val->bv_len + 1 );
+ char *begin;
+ char *end;
+ char *p;
+ struct berval bv;
- p = val->bv_val;
- q = newval->bv_val;
+ begin = assertion->bv_val;
+ end = assertion->bv_val+assertion->bv_len-1;
+ for (p=begin; p<=end && *p != '$'; p++) /* empty */ ;
+ if ( p > end ) return LDAP_INVALID_SYNTAX;
- while ( *p ) {
- if ( ASCII_SPACE( *p ) ) {
- /* Ignore whitespace */
- p++;
- } else {
- *q++ = *p++;
- }
- }
+ /* p now points at the $ sign, now use begin and end to delimit the
+ serial number */
+ while (ASCII_SPACE(*begin)) begin++;
+ end = p-1;
+ while (ASCII_SPACE(*end)) end--;
- assert( newval->bv_val < p );
- assert( q <= p );
+ bv.bv_len = end-begin+1;
+ bv.bv_val = begin;
+ ber_dupbv(serial, &bv);
- /* null terminate */
- *q = '\0';
+ /* now extract the issuer, remember p was at the dollar sign */
+ if ( issuer_dn ) {
+ begin = p+1;
+ end = assertion->bv_val+assertion->bv_len-1;
+ while (ASCII_SPACE(*begin)) begin++;
+ /* should we trim spaces at the end too? is it safe always? */
- newval->bv_len = q - newval->bv_val;
- *normalized = newval;
+ bv.bv_len = end-begin+1;
+ bv.bv_val = begin;
+ dnNormalize2( NULL, &bv, issuer_dn );
+ }
return LDAP_SUCCESS;
}
static int
-objectIdentifierFirstComponentMatch(
+certificateExactMatch(
int *matchp,
slap_mask_t flags,
Syntax *syntax,
struct berval *value,
void *assertedValue )
{
- int rc = LDAP_SUCCESS;
- int match;
- struct berval *asserted = (struct berval *) assertedValue;
- ber_len_t i;
- struct berval oid;
-
- if( value->bv_len == 0 || value->bv_val[0] != '(' /*')'*/ ) {
+ X509 *xcert;
+ unsigned char *p = value->bv_val;
+ struct berval serial;
+ struct berval issuer_dn;
+ struct berval asserted_serial;
+ struct berval asserted_issuer_dn;
+ int ret;
+
+ xcert = d2i_X509(NULL, &p, value->bv_len);
+ if ( !xcert ) {
+#ifdef NEW_LOGGING
+ LDAP_LOG( CONFIG, ENTRY,
+ "certificateExactMatch: error parsing cert: %s\n",
+ ERR_error_string(ERR_get_error(),NULL), 0, 0 );
+#else
+ Debug( LDAP_DEBUG_ARGS, "certificateExactMatch: "
+ "error parsing cert: %s\n",
+ ERR_error_string(ERR_get_error(),NULL), NULL, NULL );
+#endif
return LDAP_INVALID_SYNTAX;
}
- /* trim leading white space */
- for( i=1; ASCII_SPACE(value->bv_val[i]) && i < value->bv_len; i++ ) {
- /* empty */
- }
-
- /* grab next word */
- oid.bv_val = &value->bv_val[i];
- oid.bv_len = value->bv_len - i;
- for( i=1; ASCII_SPACE(value->bv_val[i]) && i < oid.bv_len; i++ ) {
- /* empty */
+ asn1_integer2str(xcert->cert_info->serialNumber, &serial);
+ dnX509normalize(X509_get_issuer_name(xcert), &issuer_dn);
+
+ X509_free(xcert);
+
+ serial_and_issuer_parse(assertedValue,
+ &asserted_serial, &asserted_issuer_dn);
+
+ ret = integerMatch(
+ matchp,
+ flags,
+ slap_schema.si_syn_integer,
+ slap_schema.si_mr_integerMatch,
+ &serial,
+ &asserted_serial);
+ if ( ret == LDAP_SUCCESS ) {
+ if ( *matchp == 0 ) {
+ /* We need to normalize everything for dnMatch */
+ ret = dnMatch(
+ matchp,
+ flags,
+ slap_schema.si_syn_distinguishedName,
+ slap_schema.si_mr_distinguishedNameMatch,
+ &issuer_dn,
+ &asserted_issuer_dn);
+ }
}
- oid.bv_len = i;
- /* insert attributeTypes, objectclass check here */
- if( OID_LEADCHAR(asserted->bv_val[0]) ) {
- rc = objectIdentifierMatch( &match, flags, syntax, mr, &oid, asserted );
+#ifdef NEW_LOGGING
+ LDAP_LOG( CONFIG, ARGS, "certificateExactMatch "
+ "%d\n\t\"%s $ %s\"\n",
+ *matchp, serial.bv_val, issuer_dn.bv_val );
+ LDAP_LOG( CONFIG, ARGS, "\t\"%s $ %s\"\n",
+ asserted_serial.bv_val, asserted_issuer_dn.bv_val,
+ 0 );
+#else
+ Debug( LDAP_DEBUG_ARGS, "certificateExactMatch "
+ "%d\n\t\"%s $ %s\"\n",
+ *matchp, serial.bv_val, issuer_dn.bv_val );
+ Debug( LDAP_DEBUG_ARGS, "\t\"%s $ %s\"\n",
+ asserted_serial.bv_val, asserted_issuer_dn.bv_val,
+ NULL );
+#endif
- } else {
- char *stored = ch_malloc( oid.bv_len + 1 );
- AC_MEMCPY( stored, oid.bv_val, oid.bv_len );
- stored[oid.bv_len] = '\0';
+ ber_memfree(serial.bv_val);
+ ber_memfree(issuer_dn.bv_val);
+ ber_memfree(asserted_serial.bv_val);
+ ber_memfree(asserted_issuer_dn.bv_val);
- if ( !strcmp( syntax->ssyn_oid, SLAP_SYNTAX_MATCHINGRULES_OID ) ) {
- MatchingRule *asserted_mr = mr_find( asserted->bv_val );
- MatchingRule *stored_mr = mr_find( stored );
+ return ret;
+}
- if( asserted_mr == NULL ) {
- rc = SLAPD_COMPARE_UNDEFINED;
- } else {
- match = asserted_mr != stored_mr;
- }
+/*
+ * Index generation function
+ * We just index the serials, in most scenarios the issuer DN is one of
+ * a very small set of values.
+ */
+static int certificateExactIndexer(
+ slap_mask_t use,
+ slap_mask_t flags,
+ Syntax *syntax,
+ MatchingRule *mr,
+ struct berval *prefix,
+ BerVarray values,
+ BerVarray *keysp )
+{
+ int i;
+ BerVarray keys;
+ X509 *xcert;
+ unsigned char *p;
+ struct berval serial;
- } else if ( !strcmp( syntax->ssyn_oid,
- SLAP_SYNTAX_ATTRIBUTETYPES_OID ) )
- {
- AttributeType *asserted_at = at_find( asserted->bv_val );
- AttributeType *stored_at = at_find( stored );
+ /* we should have at least one value at this point */
+ assert( values != NULL && values[0].bv_val != NULL );
- if( asserted_at == NULL ) {
- rc = SLAPD_COMPARE_UNDEFINED;
- } else {
- match = asserted_at != stored_at;
- }
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ /* empty -- just count them */
+ }
- } else if ( !strcmp( syntax->ssyn_oid,
- SLAP_SYNTAX_OBJECTCLASSES_OID ) )
- {
- ObjectClass *asserted_oc = oc_find( asserted->bv_val );
- ObjectClass *stored_oc = oc_find( stored );
+ keys = ch_malloc( sizeof( struct berval ) * (i+1) );
- if( asserted_oc == NULL ) {
- rc = SLAPD_COMPARE_UNDEFINED;
- } else {
- match = asserted_oc != stored_oc;
- }
+ for( i=0; values[i].bv_val != NULL; i++ ) {
+ p = values[i].bv_val;
+ xcert = d2i_X509(NULL, &p, values[i].bv_len);
+ if ( !xcert ) {
+#ifdef NEW_LOGGING
+ LDAP_LOG( CONFIG, ENTRY,
+ "certificateExactIndexer: error parsing cert: %s\n",
+ ERR_error_string(ERR_get_error(),NULL), 0, 0);
+#else
+ Debug( LDAP_DEBUG_ARGS, "certificateExactIndexer: "
+ "error parsing cert: %s\n",
+ ERR_error_string(ERR_get_error(),NULL),
+ NULL, NULL );
+#endif
+ /* Do we leak keys on error? */
+ return LDAP_INVALID_SYNTAX;
}
- ch_free( stored );
- }
-
+ asn1_integer2str(xcert->cert_info->serialNumber, &serial);
+ X509_free(xcert);
+ integerNormalize( slap_schema.si_syn_integer,
+ &serial, &keys[i] );
+ ber_memfree(serial.bv_val);
#ifdef NEW_LOGGING
- LDAP_LOG(( "schema", LDAP_LEVEL_ENTRY,
- "objectIdentifierFirstComponentMatch: %d\n %s\n %s\n",
- match, value->bv_val, asserted->bv_val ));
+ LDAP_LOG( CONFIG, ENTRY,
+ "certificateExactIndexer: returning: %s\n", keys[i].bv_val, 0, 0);
#else
- Debug( LDAP_DEBUG_ARGS, "objectIdentifierFirstComponentMatch "
- "%d\n\t\"%s\"\n\t\"%s\"\n",
- match, value->bv_val, asserted->bv_val );
+ Debug( LDAP_DEBUG_ARGS, "certificateExactIndexer: "
+ "returning: %s\n",
+ keys[i].bv_val,
+ NULL, NULL );
#endif
+ }
+ keys[i].bv_val = NULL;
+ *keysp = keys;
+ return LDAP_SUCCESS;
+}
- if( rc == LDAP_SUCCESS ) *matchp = match;
- return rc;
+/* Index generation function */
+/* We think this is always called with a value in matching rule syntax */
+static int certificateExactFilter(
+ slap_mask_t use,
+ slap_mask_t flags,
+ Syntax *syntax,
+ MatchingRule *mr,
+ struct berval *prefix,
+ void * assertedValue,
+ BerVarray *keysp )
+{
+ BerVarray keys;
+ struct berval asserted_serial;
+
+ serial_and_issuer_parse(assertedValue,
+ &asserted_serial, NULL);
+
+ keys = ch_malloc( sizeof( struct berval ) * 2 );
+ integerNormalize( syntax, &asserted_serial, &keys[0] );
+ keys[1].bv_val = NULL;
+ *keysp = keys;
+
+ ber_memfree(asserted_serial.bv_val);
+ return LDAP_SUCCESS;
}
+#endif
static int
check_time_syntax (struct berval *val,
return LDAP_SUCCESS;
}
+#ifdef SUPPORT_OBSOLETE_UTC_SYNTAX
static int
utcTimeNormalize(
Syntax *syntax,
struct berval *val,
- struct berval **normalized )
+ struct berval *normalized )
{
- struct berval *out;
int parts[9], rc;
rc = check_time_syntax(val, 1, parts);
return rc;
}
- *normalized = NULL;
- out = ch_malloc( sizeof(struct berval) );
- if( out == NULL ) {
- return LBER_ERROR_MEMORY;
- }
-
- out->bv_val = ch_malloc( 14 );
- if ( out->bv_val == NULL ) {
- ch_free( out );
+ normalized->bv_val = ch_malloc( 14 );
+ if ( normalized->bv_val == NULL ) {
return LBER_ERROR_MEMORY;
}
- sprintf( out->bv_val, "%02ld%02ld%02ld%02ld%02ld%02ldZ",
+ sprintf( normalized->bv_val, "%02d%02d%02d%02d%02d%02dZ",
parts[1], parts[2] + 1, parts[3] + 1,
parts[4], parts[5], parts[6] );
- out->bv_len = 13;
- *normalized = out;
+ normalized->bv_len = 13;
return LDAP_SUCCESS;
}
+#endif
+#ifdef SUPPORT_OBSOLETE_UTC_SYNTAX
static int
utcTimeValidate(
Syntax *syntax,
return check_time_syntax(in, 1, parts);
}
+#endif
static int
generalizedTimeValidate(
generalizedTimeNormalize(
Syntax *syntax,
struct berval *val,
- struct berval **normalized )
+ struct berval *normalized )
{
- struct berval *out;
int parts[9], rc;
rc = check_time_syntax(val, 0, parts);
return rc;
}
- *normalized = NULL;
- out = ch_malloc( sizeof(struct berval) );
- if( out == NULL ) {
+ normalized->bv_val = ch_malloc( 16 );
+ if ( normalized->bv_val == NULL ) {
return LBER_ERROR_MEMORY;
}
- out->bv_val = ch_malloc( 16 );
- if ( out->bv_val == NULL ) {
- ch_free( out );
- return LBER_ERROR_MEMORY;
- }
-
- sprintf( out->bv_val, "%02ld%02ld%02ld%02ld%02ld%02ld%02ldZ",
+ sprintf( normalized->bv_val, "%02d%02d%02d%02d%02d%02d%02dZ",
parts[0], parts[1], parts[2] + 1, parts[3] + 1,
parts[4], parts[5], parts[6] );
- out->bv_len = 15;
- *normalized = out;
+ normalized->bv_len = 15;
return LDAP_SUCCESS;
}
p = (char *)val->bv_val;
e = p + val->bv_len;
-#if 0
- /* syntax does not allow leading white space */
- /* Ignore initial whitespace */
- while ( ( p < e ) && ASCII_SPACE( *p ) ) {
- p++;
- }
-#endif
-
if ( *p != '(' /*')'*/ ) {
return LDAP_INVALID_SYNTAX;
}
- for ( p++; ( p < e ) && ( *p != ')' ); p++ ) {
+ for ( p++; ( p < e ) && ( *p != /*'('*/ ')' ); p++ ) {
if ( *p == ',' ) {
commas++;
if ( commas > 2 ) {
return LDAP_INVALID_SYNTAX;
}
- } else if ( !ATTR_CHAR( *p ) ) {
+ } else if ( !AD_CHAR( *p ) ) {
return LDAP_INVALID_SYNTAX;
}
}
p++;
-#if 0
- /* syntax does not allow trailing white space */
- /* Ignore trailing whitespace */
- while ( ( p < e ) && ASCII_SPACE( *p ) ) {
- p++;
- }
-#endif
-
if (p != e) {
return LDAP_INVALID_SYNTAX;
}
/* key */
for (; ( p < e ) && ( *p != '=' ); p++ ) {
- if ( !ATTR_CHAR( *p ) ) {
+ if ( !AD_CHAR( *p ) ) {
return LDAP_INVALID_SYNTAX;
}
}
/* server */
for ( p++; ( p < e ) && ( *p != ':' ); p++ ) {
- if ( !ATTR_CHAR( *p ) ) {
+ if ( !AD_CHAR( *p ) ) {
return LDAP_INVALID_SYNTAX;
}
}
/* path */
for ( p++; p < e; p++ ) {
- if ( !ATTR_CHAR( *p ) ) {
+ if ( !SLAP_PRINTABLE( *p ) ) {
return LDAP_INVALID_SYNTAX;
}
}
return LDAP_SUCCESS;
}
-struct syntax_defs_rec {
- char *sd_desc;
- int sd_flags;
- slap_syntax_validate_func *sd_validate;
- slap_syntax_transform_func *sd_normalize;
- slap_syntax_transform_func *sd_pretty;
-#ifdef SLAPD_BINARY_CONVERSION
- slap_syntax_transform_func *sd_ber2str;
- slap_syntax_transform_func *sd_str2ber;
-#endif
-};
-
#define X_BINARY "X-BINARY-TRANSFER-REQUIRED 'TRUE' "
#define X_NOT_H_R "X-NOT-HUMAN-READABLE 'TRUE' "
-struct syntax_defs_rec syntax_defs[] = {
- {"( 1.3.6.1.4.1.1466.115.121.1.1 DESC 'ACI Item' " X_BINARY X_NOT_H_R ")",
+static slap_syntax_defs_rec syntax_defs[] = {
+ {"( 1.3.6.1.4.1.1466.115.121.1.1 DESC 'ACI Item' "
+ X_BINARY X_NOT_H_R ")",
SLAP_SYNTAX_BINARY|SLAP_SYNTAX_BER, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.2 DESC 'Access Point' " X_NOT_H_R ")",
0, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.3 DESC 'Attribute Type Description' )",
0, NULL, NULL, NULL},
- {"( 1.3.6.1.4.1.1466.115.121.1.4 DESC 'Audio' " X_NOT_H_R ")",
+ {"( 1.3.6.1.4.1.1466.115.121.1.4 DESC 'Audio' "
+ X_NOT_H_R ")",
SLAP_SYNTAX_BLOB, blobValidate, NULL, NULL},
- {"( 1.3.6.1.4.1.1466.115.121.1.5 DESC 'Binary' " X_NOT_H_R ")",
+ {"( 1.3.6.1.4.1.1466.115.121.1.5 DESC 'Binary' "
+ X_NOT_H_R ")",
SLAP_SYNTAX_BER, berValidate, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.6 DESC 'Bit String' )",
- 0, bitStringValidate, NULL, NULL },
+ 0, bitStringValidate, bitStringNormalize, NULL },
{"( 1.3.6.1.4.1.1466.115.121.1.7 DESC 'Boolean' )",
0, booleanValidate, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.8 DESC 'Certificate' "
{"( 1.3.6.1.4.1.1466.115.121.1.11 DESC 'Country String' )",
0, countryStringValidate, IA5StringNormalize, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.12 DESC 'Distinguished Name' )",
- 0, dnValidate, dnNormalize, dnPretty},
+ 0, dnValidate, dnNormalize2, dnPretty2},
{"( 1.3.6.1.4.1.1466.115.121.1.13 DESC 'Data Quality' )",
0, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.14 DESC 'Delivery Method' )",
{"( 1.3.6.1.4.1.1466.115.121.1.21 DESC 'Enhanced Guide' )",
0, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.22 DESC 'Facsimile Telephone Number' )",
- 0, printablesStringValidate, IA5StringNormalize, NULL},
+ 0, printablesStringValidate, telephoneNumberNormalize, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.23 DESC 'Fax' " X_NOT_H_R ")",
SLAP_SYNTAX_BLOB, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.24 DESC 'Generalized Time' )",
{"( 1.3.6.1.4.1.1466.115.121.1.26 DESC 'IA5 String' )",
0, IA5StringValidate, IA5StringNormalize, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.27 DESC 'Integer' )",
- 0, integerValidate, integerNormalize, integerPretty},
+ 0, integerValidate, integerNormalize, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.28 DESC 'JPEG' " X_NOT_H_R ")",
SLAP_SYNTAX_BLOB, blobValidate, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.29 DESC 'Master And Shadow Access Points' )",
0, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.44 DESC 'Printable String' )",
0, printableStringValidate, IA5StringNormalize, NULL},
+ {"( 1.3.6.1.4.1.1466.115.121.1.45 DESC 'SubtreeSpecification' "
+ X_BINARY X_NOT_H_R ")",
+ SLAP_SYNTAX_BINARY|SLAP_SYNTAX_BER, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.49 DESC 'Supported Algorithm' "
X_BINARY X_NOT_H_R ")",
SLAP_SYNTAX_BINARY|SLAP_SYNTAX_BER, berValidate, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.50 DESC 'Telephone Number' )",
- 0, printableStringValidate, IA5StringNormalize, NULL},
+ 0, printableStringValidate, telephoneNumberNormalize, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.51 DESC 'Teletex Terminal Identifier' )",
0, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.52 DESC 'Telex Number' )",
- 0, printableStringValidate, IA5StringNormalize, NULL},
+ 0, printablesStringValidate, IA5StringNormalize, NULL},
+#ifdef SUPPORT_OBSOLETE_UTC_SYNTAX
{"( 1.3.6.1.4.1.1466.115.121.1.53 DESC 'UTC Time' )",
0, utcTimeValidate, utcTimeNormalize, NULL},
+#endif
{"( 1.3.6.1.4.1.1466.115.121.1.54 DESC 'LDAP Syntax Description' )",
0, NULL, NULL, NULL},
{"( 1.3.6.1.4.1.1466.115.121.1.55 DESC 'Modify Rights' )",
{"( 1.3.6.1.1.1.0.1 DESC 'RFC2307 Boot Parameter' )",
0, bootParameterValidate, NULL, NULL},
+#ifdef HAVE_TLS
+ /* From PKIX */
+ /* These OIDs are not published yet, but will be in the next
+ * I-D for PKIX LDAPv3 schema as have been advanced by David
+ * Chadwick in private mail.
+ */
+ {"( 1.2.826.0.1.3344810.7.1 DESC 'Serial Number and Issuer' )",
+ 0, NULL, NULL, NULL},
+#endif
+
/* OpenLDAP Experimental Syntaxes */
+#ifdef SLAPD_ACI_ENABLED
{"( 1.3.6.1.4.1.4203.666.2.1 DESC 'OpenLDAP Experimental ACI' )",
- 0, UTF8StringValidate /* THIS WILL CHANGE FOR NEW ACI SYNTAX */,
+ SLAP_SYNTAX_HIDE,
+ UTF8StringValidate /* THIS WILL CHANGE FOR NEW ACI SYNTAX */,
NULL, NULL},
+#endif
+
+#ifdef SLAPD_AUTHPASSWD
+ /* needs updating */
{"( 1.3.6.1.4.1.4203.666.2.2 DESC 'OpenLDAP authPassword' )",
- 0, NULL, NULL, NULL},
+ SLAP_SYNTAX_HIDE, NULL, NULL, NULL},
+#endif
/* OpenLDAP Void Syntax */
{"( 1.3.6.1.4.1.4203.1.1.1 DESC 'OpenLDAP void' )" ,
{NULL, 0, NULL, NULL, NULL}
};
-struct mrule_defs_rec {
- char * mrd_desc;
- slap_mask_t mrd_usage;
- slap_mr_convert_func * mrd_convert;
- slap_mr_normalize_func * mrd_normalize;
- slap_mr_match_func * mrd_match;
- slap_mr_indexer_func * mrd_indexer;
- slap_mr_filter_func * mrd_filter;
-
- char * mrd_associated;
+#ifdef HAVE_TLS
+char *certificateExactMatchSyntaxes[] = {
+ "1.3.6.1.4.1.1466.115.121.1.8" /* certificate */,
+ NULL
+};
+#endif
+char *directoryStringSyntaxes[] = {
+ "1.3.6.1.4.1.1466.115.121.1.44" /* printableString */,
+ NULL
+};
+char *integerFirstComponentMatchSyntaxes[] = {
+ "1.3.6.1.4.1.1466.115.121.1.27" /* INTEGER */,
+ "1.3.6.1.4.1.1466.115.121.1.17" /* ditStructureRuleDescription */,
+ NULL
+};
+char *objectIdentifierFirstComponentMatchSyntaxes[] = {
+ "1.3.6.1.4.1.1466.115.121.1.38" /* OID */,
+ "1.3.6.1.4.1.1466.115.121.1.3" /* attributeTypeDescription */,
+ "1.3.6.1.4.1.1466.115.121.1.16" /* ditContentRuleDescription */,
+ "1.3.6.1.4.1.1466.115.121.1.54" /* ldapSyntaxDescription */,
+ "1.3.6.1.4.1.1466.115.121.1.30" /* matchingRuleDescription */,
+ "1.3.6.1.4.1.1466.115.121.1.31" /* matchingRuleUseDescription */,
+ "1.3.6.1.4.1.1466.115.121.1.35" /* nameFormDescription */,
+ "1.3.6.1.4.1.1466.115.121.1.37" /* objectClassDescription */,
+ NULL
};
/*
* Other matching rules in X.520 that we do not use (yet):
*
* 2.5.13.9 numericStringOrderingMatch
- * 2.5.13.15 integerOrderingMatch
- * 2.5.13.18 octetStringOrderingMatch
* 2.5.13.19 octetStringSubstringsMatch
* 2.5.13.25 uTCTimeMatch
* 2.5.13.26 uTCTimeOrderingMatch
* 2.5.13.31 directoryStringFirstComponentMatch
* 2.5.13.32 wordMatch
* 2.5.13.33 keywordMatch
- * 2.5.13.34 certificateExactMatch
* 2.5.13.35 certificateMatch
* 2.5.13.36 certificatePairExactMatch
* 2.5.13.37 certificatePairMatch
* 2.5.13.43 readerAndKeyIDMatch
* 2.5.13.44 attributeIntegrityMatch
*/
-
-struct mrule_defs_rec mrule_defs[] = {
+static slap_mrule_defs_rec mrule_defs[] = {
/*
* EQUALITY matching rules must be listed after associated APPROX
* matching rules. So, we list all APPROX matching rules first.
*/
{"( " directoryStringApproxMatchOID " NAME 'directoryStringApproxMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.15 )",
- SLAP_MR_EQUALITY_APPROX | SLAP_MR_EXT,
+ SLAP_MR_HIDE | SLAP_MR_EQUALITY_APPROX | SLAP_MR_EXT, NULL,
NULL, NULL,
directoryStringApproxMatch,
directoryStringApproxIndexer,
{"( " IA5StringApproxMatchOID " NAME 'IA5StringApproxMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.26 )",
- SLAP_MR_EQUALITY_APPROX | SLAP_MR_EXT,
+ SLAP_MR_HIDE | SLAP_MR_EQUALITY_APPROX | SLAP_MR_EXT, NULL,
NULL, NULL,
IA5StringApproxMatch,
IA5StringApproxIndexer,
{"( 2.5.13.0 NAME 'objectIdentifierMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.38 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
objectIdentifierMatch, caseIgnoreIA5Indexer, caseIgnoreIA5Filter,
NULL},
{"( 2.5.13.1 NAME 'distinguishedNameMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.12 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
dnMatch, dnIndexer, dnFilter,
NULL},
{"( 2.5.13.2 NAME 'caseIgnoreMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.15 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT | SLAP_MR_DN_FOLD,
+ directoryStringSyntaxes,
NULL, NULL,
- caseIgnoreMatch, caseIgnoreIndexer, caseIgnoreFilter,
+ caseIgnoreMatch, caseExactIgnoreIndexer, caseExactIgnoreFilter,
directoryStringApproxMatchOID },
{"( 2.5.13.3 NAME 'caseIgnoreOrderingMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.15 )",
- SLAP_MR_ORDERING,
+ SLAP_MR_ORDERING, directoryStringSyntaxes,
NULL, NULL,
caseIgnoreOrderingMatch, NULL, NULL,
NULL},
{"( 2.5.13.4 NAME 'caseIgnoreSubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.58 )",
- SLAP_MR_SUBSTR | SLAP_MR_EXT,
+ SLAP_MR_SUBSTR, NULL,
NULL, NULL,
- caseIgnoreSubstringsMatch,
- caseIgnoreSubstringsIndexer,
- caseIgnoreSubstringsFilter,
+ caseExactIgnoreSubstringsMatch,
+ caseExactIgnoreSubstringsIndexer,
+ caseExactIgnoreSubstringsFilter,
NULL},
{"( 2.5.13.5 NAME 'caseExactMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.15 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, directoryStringSyntaxes,
NULL, NULL,
- caseExactMatch, caseExactIndexer, caseExactFilter,
+ caseExactMatch, caseExactIgnoreIndexer, caseExactIgnoreFilter,
directoryStringApproxMatchOID },
{"( 2.5.13.6 NAME 'caseExactOrderingMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.15 )",
- SLAP_MR_ORDERING,
+ SLAP_MR_ORDERING, directoryStringSyntaxes,
NULL, NULL,
caseExactOrderingMatch, NULL, NULL,
NULL},
{"( 2.5.13.7 NAME 'caseExactSubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.58 )",
- SLAP_MR_SUBSTR | SLAP_MR_EXT,
+ SLAP_MR_SUBSTR, directoryStringSyntaxes,
NULL, NULL,
- caseExactSubstringsMatch,
- caseExactSubstringsIndexer,
- caseExactSubstringsFilter,
+ caseExactIgnoreSubstringsMatch,
+ caseExactIgnoreSubstringsIndexer,
+ caseExactIgnoreSubstringsFilter,
NULL},
{"( 2.5.13.8 NAME 'numericStringMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.36 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT | SLAP_MR_DN_FOLD, NULL,
NULL, NULL,
caseIgnoreIA5Match,
caseIgnoreIA5Indexer,
{"( 2.5.13.10 NAME 'numericStringSubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.58 )",
- SLAP_MR_SUBSTR | SLAP_MR_EXT,
+ SLAP_MR_SUBSTR, NULL,
NULL, NULL,
caseIgnoreIA5SubstringsMatch,
caseIgnoreIA5SubstringsIndexer,
{"( 2.5.13.11 NAME 'caseIgnoreListMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.41 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT | SLAP_MR_DN_FOLD, NULL,
NULL, NULL,
caseIgnoreListMatch, NULL, NULL,
NULL},
{"( 2.5.13.12 NAME 'caseIgnoreListSubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.58 )",
- SLAP_MR_SUBSTR | SLAP_MR_EXT,
+ SLAP_MR_SUBSTR, NULL,
NULL, NULL,
caseIgnoreListSubstringsMatch, NULL, NULL,
NULL},
{"( 2.5.13.13 NAME 'booleanMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.7 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
booleanMatch, NULL, NULL,
NULL},
{"( 2.5.13.14 NAME 'integerMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.27 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
integerMatch, integerIndexer, integerFilter,
NULL},
+ {"( 2.5.13.15 NAME 'integerOrderingMatch' "
+ "SYNTAX 1.3.6.1.4.1.1466.115.121.1.27 )",
+ SLAP_MR_ORDERING, NULL,
+ NULL, NULL,
+ integerOrderingMatch, NULL, NULL,
+ NULL},
+
{"( 2.5.13.16 NAME 'bitStringMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.6 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
- bitStringMatch, NULL, NULL,
+ bitStringMatch, bitStringIndexer, bitStringFilter,
NULL},
{"( 2.5.13.17 NAME 'octetStringMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.40 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
octetStringMatch, octetStringIndexer, octetStringFilter,
NULL},
+ {"( 2.5.13.18 NAME 'octetStringOrderingMatch' "
+ "SYNTAX 1.3.6.1.4.1.1466.115.121.1.40 )",
+ SLAP_MR_ORDERING, NULL,
+ NULL, NULL,
+ octetStringOrderingMatch, NULL, NULL,
+ NULL},
+
{"( 2.5.13.20 NAME 'telephoneNumberMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.50 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT | SLAP_MR_DN_FOLD, NULL,
NULL, NULL,
telephoneNumberMatch,
telephoneNumberIndexer,
{"( 2.5.13.21 NAME 'telephoneNumberSubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.58 )",
- SLAP_MR_SUBSTR | SLAP_MR_EXT,
+ SLAP_MR_SUBSTR, NULL,
NULL, NULL,
telephoneNumberSubstringsMatch,
telephoneNumberSubstringsIndexer,
{"( 2.5.13.22 NAME 'presentationAddressMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.43 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
NULL, NULL, NULL,
NULL},
{"( 2.5.13.23 NAME 'uniqueMemberMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.34 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
uniqueMemberMatch, NULL, NULL,
NULL},
{"( 2.5.13.24 NAME 'protocolInformationMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.42 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
protocolInformationMatch, NULL, NULL,
NULL},
{"( 2.5.13.27 NAME 'generalizedTimeMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.24 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
generalizedTimeMatch, NULL, NULL,
NULL},
{"( 2.5.13.28 NAME 'generalizedTimeOrderingMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.24 )",
- SLAP_MR_ORDERING,
+ SLAP_MR_ORDERING, NULL,
NULL, NULL,
generalizedTimeOrderingMatch, NULL, NULL,
NULL},
{"( 2.5.13.29 NAME 'integerFirstComponentMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.27 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, integerFirstComponentMatchSyntaxes,
NULL, NULL,
integerFirstComponentMatch, NULL, NULL,
NULL},
{"( 2.5.13.30 NAME 'objectIdentifierFirstComponentMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.38 )",
SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ objectIdentifierFirstComponentMatchSyntaxes,
NULL, NULL,
objectIdentifierFirstComponentMatch, NULL, NULL,
NULL},
+#ifdef HAVE_TLS
+ {"( 2.5.13.34 NAME 'certificateExactMatch' "
+ "SYNTAX 1.2.826.0.1.3344810.7.1 )",
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, certificateExactMatchSyntaxes,
+ certificateExactConvert, NULL,
+ certificateExactMatch,
+ certificateExactIndexer, certificateExactFilter,
+ NULL},
+#endif
+
{"( 1.3.6.1.4.1.1466.109.114.1 NAME 'caseExactIA5Match' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.26 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT, NULL,
NULL, NULL,
caseExactIA5Match, caseExactIA5Indexer, caseExactIA5Filter,
IA5StringApproxMatchOID },
{"( 1.3.6.1.4.1.1466.109.114.2 NAME 'caseIgnoreIA5Match' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.26 )",
- SLAP_MR_EQUALITY | SLAP_MR_EXT,
+ SLAP_MR_EQUALITY | SLAP_MR_EXT | SLAP_MR_DN_FOLD, NULL,
NULL, NULL,
caseIgnoreIA5Match, caseIgnoreIA5Indexer, caseIgnoreIA5Filter,
IA5StringApproxMatchOID },
{"( 1.3.6.1.4.1.1466.109.114.3 NAME 'caseIgnoreIA5SubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.26 )",
- SLAP_MR_SUBSTR,
+ SLAP_MR_SUBSTR, NULL,
NULL, NULL,
caseIgnoreIA5SubstringsMatch,
caseIgnoreIA5SubstringsIndexer,
{"( 1.3.6.1.4.1.4203.1.2.1 NAME 'caseExactIA5SubstringsMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.26 )",
- SLAP_MR_SUBSTR,
+ SLAP_MR_SUBSTR, NULL,
NULL, NULL,
caseExactIA5SubstringsMatch,
caseExactIA5SubstringsIndexer,
caseExactIA5SubstringsFilter,
NULL},
+#ifdef SLAPD_AUTHPASSWD
+ /* needs updating */
{"( 1.3.6.1.4.1.4203.666.4.1 NAME 'authPasswordMatch' "
"SYNTAX 1.3.6.1.4.1.1466.115.121.1.40 )",
- SLAP_MR_EQUALITY,
+ SLAP_MR_EQUALITY, NULL,
NULL, NULL,
authPasswordMatch, NULL, NULL,
NULL},
+#endif
+#ifdef SLAPD_ACI_ENABLED
{"( 1.3.6.1.4.1.4203.666.4.2 NAME 'OpenLDAPaciMatch' "
"SYNTAX 1.3.6.1.4.1.4203.666.2.1 )",
- SLAP_MR_EQUALITY,
+ SLAP_MR_EQUALITY, NULL,
NULL, NULL,
OpenLDAPaciMatch, NULL, NULL,
NULL},
+#endif
+
+ {"( 1.2.840.113556.1.4.803 NAME 'integerBitAndMatch' "
+ "SYNTAX 1.3.6.1.4.1.1466.115.121.1.27 )",
+ SLAP_MR_EXT, NULL,
+ NULL, NULL,
+ integerBitAndMatch, NULL, NULL,
+ NULL},
+
+ {"( 1.2.840.113556.1.4.804 NAME 'integerBitOrMatch' "
+ "SYNTAX 1.3.6.1.4.1.1466.115.121.1.27 )",
+ SLAP_MR_EXT, NULL,
+ NULL, NULL,
+ integerBitOrMatch, NULL, NULL,
+ NULL},
- {NULL, SLAP_MR_NONE, NULL, NULL, NULL, NULL}
+ {NULL, SLAP_MR_NONE, NULL,
+ NULL, NULL, NULL, NULL, NULL,
+ NULL }
};
int
-schema_init( void )
+slap_schema_init( void )
{
int res;
- int i;
+ int i = 0;
/* we should only be called once (from main) */
assert( schema_init_done == 0 );
for ( i=0; syntax_defs[i].sd_desc != NULL; i++ ) {
- res = register_syntax( syntax_defs[i].sd_desc,
- syntax_defs[i].sd_flags,
- syntax_defs[i].sd_validate,
- syntax_defs[i].sd_normalize,
- syntax_defs[i].sd_pretty
-#ifdef SLAPD_BINARY_CONVERSION
- ,
- syntax_defs[i].sd_ber2str,
- syntax_defs[i].sd_str2ber
-#endif
- );
+ res = register_syntax( &syntax_defs[i] );
if ( res ) {
- fprintf( stderr, "schema_init: Error registering syntax %s\n",
+ fprintf( stderr, "slap_schema_init: Error registering syntax %s\n",
syntax_defs[i].sd_desc );
return LDAP_OTHER;
}
}
for ( i=0; mrule_defs[i].mrd_desc != NULL; i++ ) {
- if( mrule_defs[i].mrd_usage == SLAP_MR_NONE ) {
+ if( mrule_defs[i].mrd_usage == SLAP_MR_NONE &&
+ mrule_defs[i].mrd_compat_syntaxes == NULL )
+ {
fprintf( stderr,
- "schema_init: Ingoring unusable matching rule %s\n",
+ "slap_schema_init: Ingoring unusable matching rule %s\n",
mrule_defs[i].mrd_desc );
continue;
}
- res = register_matching_rule(
- mrule_defs[i].mrd_desc,
- mrule_defs[i].mrd_usage,
- mrule_defs[i].mrd_convert,
- mrule_defs[i].mrd_normalize,
- mrule_defs[i].mrd_match,
- mrule_defs[i].mrd_indexer,
- mrule_defs[i].mrd_filter,
- mrule_defs[i].mrd_associated );
+ res = register_matching_rule( &mrule_defs[i] );
if ( res ) {
fprintf( stderr,
- "schema_init: Error registering matching rule %s\n",
+ "slap_schema_init: Error registering matching rule %s\n",
mrule_defs[i].mrd_desc );
return LDAP_OTHER;
}
}
+
+ for ( i=0; i < (int)(sizeof(mr_ptr)/sizeof(mr_ptr[0])); i++ )
+ *mr_ptr[i].mr = mr_find( mr_ptr[i].oid );
+
+ res = slap_schema_load();
schema_init_done = 1;
- return LDAP_SUCCESS;
+ return res;
+}
+
+void
+schema_destroy( void )
+{
+ int i;
+ oidm_destroy();
+ oc_destroy();
+ at_destroy();
+ for ( i=0; i < (int)(sizeof(mr_ptr)/sizeof(mr_ptr[0])); i++ )
+ *mr_ptr[i].mr = NULL;
+ mr_destroy();
+ mru_destroy();
+ syn_destroy();
}