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https://git.openldap.org/openldap/openldap.git
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649 lines
14 KiB
C
649 lines
14 KiB
C
/* entry.c - routines for dealing with entries */
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/* $OpenLDAP$ */
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/*
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* Copyright 1998-2002 The OpenLDAP Foundation, All Rights Reserved.
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* COPYING RESTRICTIONS APPLY, see COPYRIGHT file
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*/
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#include "portable.h"
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#include <stdio.h>
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#include <ac/ctype.h>
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#include <ac/errno.h>
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#include <ac/socket.h>
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#include <ac/string.h>
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#include "slap.h"
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#include "ldif.h"
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static unsigned char *ebuf; /* buf returned by entry2str */
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static unsigned char *ecur; /* pointer to end of currently used ebuf */
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static int emaxsize;/* max size of ebuf */
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/*
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* Empty root entry
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*/
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const Entry slap_entry_root = { NOID, { 0, "" }, { 0, "" }, NULL, 0, { 0, "" }, NULL };
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int entry_destroy(void)
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{
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if ( ebuf ) free( ebuf );
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ebuf = NULL;
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ecur = NULL;
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emaxsize = 0;
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return 0;
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}
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Entry *
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str2entry( char *s )
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{
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int rc;
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Entry *e;
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char *type;
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struct berval vals[2];
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AttributeDescription *ad;
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const char *text;
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char *next;
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/*
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* LDIF is used as the string format.
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* An entry looks like this:
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*
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* dn: <dn>\n
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* [<attr>:[:] <value>\n]
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* [<tab><continuedvalue>\n]*
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* ...
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*
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* If a double colon is used after a type, it means the
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* following value is encoded as a base 64 string. This
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* happens if the value contains a non-printing character
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* or newline.
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*/
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1, "str2entry: \"%s\"\n", s ? s : "NULL", 0, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE, "=> str2entry\n",
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s ? s : "NULL", 0, 0 );
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#endif
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/* initialize reader/writer lock */
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e = (Entry *) ch_calloc( 1, sizeof(Entry) );
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if( e == NULL ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, ERR, "str2entry: entry allocation failed.\n", 0, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ANY,
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"<= str2entry NULL (entry allocation failed)\n",
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0, 0, 0 );
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#endif
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return( NULL );
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}
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/* initialize entry */
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e->e_id = NOID;
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/* dn + attributes */
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vals[1].bv_val = NULL;
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next = s;
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while ( (s = ldif_getline( &next )) != NULL ) {
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if ( *s == '\n' || *s == '\0' ) {
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break;
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}
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if ( ldif_parse_line( s, &type, &vals[0].bv_val, &vals[0].bv_len ) != 0 ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1, "str2entry: NULL (parse_line)\n",0, 0, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE,
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"<= str2entry NULL (parse_line)\n", 0, 0, 0 );
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#endif
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continue;
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}
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if ( strcasecmp( type, "dn" ) == 0 ) {
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free( type );
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if ( e->e_dn != NULL ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1, "str2entry: "
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"entry %ld has multiple DNs \"%s\" and \"%s\"\n",
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(long) e->e_id, e->e_dn,
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vals[0].bv_val != NULL ? vals[0].bv_val : "" );
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#else
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Debug( LDAP_DEBUG_ANY, "str2entry: "
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"entry %ld has multiple DNs \"%s\" and \"%s\"\n",
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(long) e->e_id, e->e_dn,
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vals[0].bv_val != NULL ? vals[0].bv_val : "" );
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#endif
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if( vals[0].bv_val != NULL ) free( vals[0].bv_val );
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entry_free( e );
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return NULL;
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}
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rc = dnPrettyNormal( NULL, &vals[0], &e->e_name, &e->e_nname );
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if( rc != LDAP_SUCCESS ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1,
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"str2entry: entry %ld has invalid DN \"%s\"\n",
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(long) e->e_id, vals[0].bv_val, 0 );
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#else
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Debug( LDAP_DEBUG_ANY, "str2entry: "
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"entry %ld has invalid DN \"%s\"\n",
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(long) e->e_id, vals[0].bv_val, 0 );
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#endif
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entry_free( e );
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free( vals[0].bv_val );
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return NULL;
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}
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free( vals[0].bv_val );
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continue;
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}
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ad = NULL;
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rc = slap_str2ad( type, &ad, &text );
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if( rc != LDAP_SUCCESS ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1,
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"str2entry: str2ad(%s): %s\n", type, text, 0 );
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#else
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Debug( slapMode & SLAP_TOOL_MODE
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? LDAP_DEBUG_ANY : LDAP_DEBUG_TRACE,
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"<= str2entry: str2ad(%s): %s\n", type, text, 0 );
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#endif
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if( slapMode & SLAP_TOOL_MODE ) {
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entry_free( e );
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free( vals[0].bv_val );
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free( type );
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return NULL;
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}
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rc = slap_str2undef_ad( type, &ad, &text );
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if( rc != LDAP_SUCCESS ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1,
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"str2entry: str2undef_ad(%s): %s\n", type, text, 0 );
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#else
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Debug( LDAP_DEBUG_ANY,
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"<= str2entry: str2undef_ad(%s): %s\n",
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type, text, 0 );
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#endif
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entry_free( e );
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free( vals[0].bv_val );
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free( type );
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return NULL;
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}
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}
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if( slapMode & SLAP_TOOL_MODE ) {
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struct berval pval;
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slap_syntax_validate_func *validate =
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ad->ad_type->sat_syntax->ssyn_validate;
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slap_syntax_transform_func *pretty =
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ad->ad_type->sat_syntax->ssyn_pretty;
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if( pretty ) {
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rc = pretty( ad->ad_type->sat_syntax,
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&vals[0], &pval );
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} else if( validate ) {
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/*
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* validate value per syntax
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*/
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rc = validate( ad->ad_type->sat_syntax, &vals[0] );
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} else {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, INFO,
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"str2entry: no validator for syntax %s\n",
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ad->ad_type->sat_syntax->ssyn_oid, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ANY,
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"str2entry: no validator for syntax %s\n",
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ad->ad_type->sat_syntax->ssyn_oid, 0, 0 );
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#endif
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entry_free( e );
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free( vals[0].bv_val );
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free( type );
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return NULL;
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}
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if( rc != 0 ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, ERR,
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"str2entry: invalid value for syntax %s\n",
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ad->ad_type->sat_syntax->ssyn_oid, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ANY,
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"str2entry: invalid value for syntax %s\n",
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ad->ad_type->sat_syntax->ssyn_oid, 0, 0 );
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#endif
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entry_free( e );
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free( vals[0].bv_val );
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free( type );
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return NULL;
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}
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if( pretty ) {
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free( vals[0].bv_val );
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vals[0] = pval;
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}
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}
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rc = attr_merge( e, ad, vals );
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if( rc != 0 ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1,
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"str2entry: NULL (attr_merge)\n" , 0, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ANY,
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"<= str2entry NULL (attr_merge)\n", 0, 0, 0 );
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#endif
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entry_free( e );
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free( vals[0].bv_val );
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free( type );
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return( NULL );
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}
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free( type );
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free( vals[0].bv_val );
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}
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/* check to make sure there was a dn: line */
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if ( e->e_dn == NULL ) {
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, INFO,
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"str2entry: entry %ld has no dn.\n", (long) e->e_id, 0, 0 );
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#else
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Debug( LDAP_DEBUG_ANY, "str2entry: entry %ld has no dn\n",
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(long) e->e_id, 0, 0 );
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#endif
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entry_free( e );
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return( NULL );
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}
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL2,
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"str2entry(%s) -> 0x%lx\n", e->e_dn, (unsigned long)e, 0 );
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#else
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Debug(LDAP_DEBUG_TRACE, "<= str2entry(%s) -> 0x%lx\n",
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e->e_dn, (unsigned long) e, 0 );
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#endif
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return( e );
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}
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#define GRABSIZE BUFSIZ
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#define MAKE_SPACE( n ) { \
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while ( ecur + (n) > ebuf + emaxsize ) { \
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ptrdiff_t offset; \
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offset = (int) (ecur - ebuf); \
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ebuf = (unsigned char *) ch_realloc( (char *) ebuf, \
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emaxsize + GRABSIZE ); \
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emaxsize += GRABSIZE; \
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ecur = ebuf + offset; \
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} \
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}
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char *
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entry2str(
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Entry *e,
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int *len )
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{
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Attribute *a;
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struct berval *bv;
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int i;
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ber_len_t tmplen;
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assert( e != NULL );
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/*
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* In string format, an entry looks like this:
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* dn: <dn>\n
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* [<attr>: <value>\n]*
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*/
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ecur = ebuf;
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/* put the dn */
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if ( e->e_dn != NULL ) {
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/* put "dn: <dn>" */
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tmplen = e->e_name.bv_len;
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MAKE_SPACE( LDIF_SIZE_NEEDED( 2, tmplen ));
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ldif_sput( (char **) &ecur, LDIF_PUT_VALUE, "dn", e->e_dn, tmplen );
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}
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/* put the attributes */
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for ( a = e->e_attrs; a != NULL; a = a->a_next ) {
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/* put "<type>:[:] <value>" line for each value */
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for ( i = 0; a->a_vals[i].bv_val != NULL; i++ ) {
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bv = &a->a_vals[i];
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tmplen = a->a_desc->ad_cname.bv_len;
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MAKE_SPACE( LDIF_SIZE_NEEDED( tmplen, bv->bv_len ));
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ldif_sput( (char **) &ecur, LDIF_PUT_VALUE,
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a->a_desc->ad_cname.bv_val,
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bv->bv_val, bv->bv_len );
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}
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}
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MAKE_SPACE( 1 );
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*ecur = '\0';
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*len = ecur - ebuf;
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return( (char *) ebuf );
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}
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void
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entry_free( Entry *e )
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{
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/* free an entry structure */
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assert( e != NULL );
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/* e_private must be freed by the caller */
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assert( e->e_private == NULL );
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e->e_private = NULL;
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/* free DNs */
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if ( e->e_dn != NULL ) {
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free( e->e_dn );
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e->e_dn = NULL;
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}
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if ( e->e_ndn != NULL ) {
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free( e->e_ndn );
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e->e_ndn = NULL;
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}
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if ( e->e_bv.bv_val != NULL ) {
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free( e->e_bv.bv_val );
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e->e_bv.bv_val = NULL;
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}
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/* free attributes */
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attrs_free( e->e_attrs );
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e->e_attrs = NULL;
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free( e );
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}
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/*
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* These routines are used only by Backend.
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*
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* the Entry has three entry points (ways to find things):
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*
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* by entry e.g., if you already have an entry from the cache
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* and want to delete it. (really by entry ptr)
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* by dn e.g., when looking for the base object of a search
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* by id e.g., for search candidates
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*
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* these correspond to three different avl trees that are maintained.
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*/
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int
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entry_cmp( Entry *e1, Entry *e2 )
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{
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return( e1 < e2 ? -1 : (e1 > e2 ? 1 : 0) );
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}
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int
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entry_dn_cmp( Entry *e1, Entry *e2 )
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{
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/* compare their normalized UPPERCASED dn's */
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int rc = e1->e_nname.bv_len - e2->e_nname.bv_len;
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if (rc) return rc;
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return( strcmp( e1->e_ndn, e2->e_ndn ) );
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}
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int
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entry_id_cmp( Entry *e1, Entry *e2 )
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{
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return( e1->e_id < e2->e_id ? -1 : (e1->e_id > e2->e_id ? 1 : 0) );
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}
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#ifdef SLAPD_BDB
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/* This is like a ber_len */
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static ber_len_t
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entry_lenlen(ber_len_t len)
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{
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if (len <= 0x7f)
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return 1;
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if (len <= 0xff)
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return 2;
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if (len <= 0xffff)
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return 3;
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if (len <= 0xffffff)
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return 4;
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return 5;
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}
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static void
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entry_putlen(unsigned char **buf, ber_len_t len)
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{
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ber_len_t lenlen = entry_lenlen(len);
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if (lenlen == 1) {
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**buf = (unsigned char) len;
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} else {
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int i;
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**buf = 0x80 | ((unsigned char) lenlen - 1);
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for (i=lenlen-1; i>0; i--) {
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(*buf)[i] = (unsigned char) len;
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len >>= 8;
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}
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}
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*buf += lenlen;
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}
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static ber_len_t
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entry_getlen(unsigned char **buf)
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{
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ber_len_t len;
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int i;
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len = *(*buf)++;
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if (len <= 0x7f)
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return len;
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i = len & 0x7f;
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len = 0;
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for (;i > 0; i--) {
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len <<= 8;
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len |= *(*buf)++;
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}
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return len;
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}
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/* Flatten an Entry into a buffer. The buffer is filled with just the
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* strings/bervals of all the entry components. Each field is preceded
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* by its length, encoded the way ber_put_len works. Every field is NUL
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* terminated. The entire buffer size is precomputed so that a single
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* malloc can be performed. The entry size is also recorded,
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* to aid in entry_decode.
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*/
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int entry_encode(Entry *e, struct berval *bv)
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{
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ber_len_t siz = sizeof(Entry);
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ber_len_t len, dnlen, ndnlen;
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int i;
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Attribute *a;
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unsigned char *ptr;
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#ifdef NEW_LOGGING
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LDAP_LOG( OPERATION, DETAIL1, "entry_encode: id: 0x%08lx \"%s\"\n",
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(long) e->e_id, e->e_dn, 0 );
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#else
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Debug( LDAP_DEBUG_TRACE, "=> entry_encode(0x%08lx): %s\n",
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(long) e->e_id, e->e_dn, 0 );
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#endif
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dnlen = e->e_name.bv_len;
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ndnlen = e->e_nname.bv_len;
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len = dnlen + ndnlen + 2; /* two trailing NUL bytes */
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len += entry_lenlen(dnlen);
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len += entry_lenlen(ndnlen);
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for (a=e->e_attrs; a; a=a->a_next) {
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/* For AttributeDesc, we only store the attr name */
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siz += sizeof(Attribute);
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len += a->a_desc->ad_cname.bv_len+1;
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len += entry_lenlen(a->a_desc->ad_cname.bv_len);
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for (i=0; a->a_vals[i].bv_val; i++) {
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siz += sizeof(struct berval);
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len += a->a_vals[i].bv_len + 1;
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len += entry_lenlen(a->a_vals[i].bv_len);
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}
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len += entry_lenlen(i);
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siz += sizeof(struct berval); /* empty berval at end */
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}
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len += 1; /* NUL byte at end */
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len += entry_lenlen(siz);
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bv->bv_len = len;
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bv->bv_val = ch_malloc(len);
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ptr = (unsigned char *)bv->bv_val;
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entry_putlen(&ptr, siz);
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entry_putlen(&ptr, dnlen);
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AC_MEMCPY(ptr, e->e_dn, dnlen);
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ptr += dnlen;
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*ptr++ = '\0';
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entry_putlen(&ptr, ndnlen);
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AC_MEMCPY(ptr, e->e_ndn, ndnlen);
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ptr += ndnlen;
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*ptr++ = '\0';
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for (a=e->e_attrs; a; a=a->a_next) {
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entry_putlen(&ptr, a->a_desc->ad_cname.bv_len);
|
|
AC_MEMCPY(ptr, a->a_desc->ad_cname.bv_val,
|
|
a->a_desc->ad_cname.bv_len);
|
|
ptr += a->a_desc->ad_cname.bv_len;
|
|
*ptr++ = '\0';
|
|
if (a->a_vals) {
|
|
for (i=0; a->a_vals[i].bv_val; i++);
|
|
entry_putlen(&ptr, i);
|
|
for (i=0; a->a_vals[i].bv_val; i++) {
|
|
entry_putlen(&ptr, a->a_vals[i].bv_len);
|
|
memcpy(ptr, a->a_vals[i].bv_val,
|
|
a->a_vals[i].bv_len);
|
|
ptr += a->a_vals[i].bv_len;
|
|
*ptr++ = '\0';
|
|
}
|
|
}
|
|
}
|
|
*ptr = '\0';
|
|
return 0;
|
|
}
|
|
|
|
/* Retrieve an Entry that was stored using entry_encode above.
|
|
* We malloc a single block with the size stored above for the Entry
|
|
* and all if its Attributes. We also must lookup the stored
|
|
* attribute names to get AttributeDescriptions. To detect if the
|
|
* attributes of an Entry are later modified, we note that e->e_attr
|
|
* is always a constant offset from (e).
|
|
*
|
|
* Note: everything is stored in a single contiguous block, so
|
|
* you can not free individual attributes or names from this
|
|
* structure. Attempting to do so will likely corrupt memory.
|
|
*/
|
|
int entry_decode(struct berval *bv, Entry **e)
|
|
{
|
|
int i, j;
|
|
int rc;
|
|
Attribute *a;
|
|
Entry *x;
|
|
const char *text;
|
|
AttributeDescription *ad;
|
|
unsigned char *ptr = (unsigned char *)bv->bv_val;
|
|
BerVarray bptr;
|
|
|
|
i = entry_getlen(&ptr);
|
|
x = ch_calloc(1, i);
|
|
i = entry_getlen(&ptr);
|
|
x->e_name.bv_val = ptr;
|
|
x->e_name.bv_len = i;
|
|
ptr += i+1;
|
|
i = entry_getlen(&ptr);
|
|
x->e_nname.bv_val = ptr;
|
|
x->e_nname.bv_len = i;
|
|
ptr += i+1;
|
|
#ifdef NEW_LOGGING
|
|
LDAP_LOG( OPERATION, DETAIL2, "entry_decode: \"%s\"\n", x->e_dn, 0, 0 );
|
|
#else
|
|
Debug( LDAP_DEBUG_TRACE,
|
|
"entry_decode: \"%s\"\n",
|
|
x->e_dn, 0, 0 );
|
|
#endif
|
|
x->e_bv = *bv;
|
|
|
|
/* A valid entry must have at least one attr, so this
|
|
* pointer can never be NULL
|
|
*/
|
|
x->e_attrs = (Attribute *)(x+1);
|
|
bptr = (BerVarray)x->e_attrs;
|
|
a = NULL;
|
|
|
|
while ((i = entry_getlen(&ptr))) {
|
|
struct berval bv;
|
|
bv.bv_len = i;
|
|
bv.bv_val = ptr;
|
|
if (a) {
|
|
a->a_next = (Attribute *)bptr;
|
|
}
|
|
a = (Attribute *)bptr;
|
|
ad = NULL;
|
|
rc = slap_bv2ad( &bv, &ad, &text );
|
|
|
|
if( rc != LDAP_SUCCESS ) {
|
|
#ifdef NEW_LOGGING
|
|
LDAP_LOG( OPERATION, INFO,
|
|
"entry_decode: str2ad(%s): %s\n", ptr, text, 0 );
|
|
#else
|
|
Debug( LDAP_DEBUG_TRACE,
|
|
"<= entry_decode: str2ad(%s): %s\n", ptr, text, 0 );
|
|
#endif
|
|
rc = slap_bv2undef_ad( &bv, &ad, &text );
|
|
|
|
if( rc != LDAP_SUCCESS ) {
|
|
#ifdef NEW_LOGGING
|
|
LDAP_LOG( OPERATION, INFO,
|
|
"entry_decode: str2undef_ad(%s): %s\n", ptr, text, 0 );
|
|
#else
|
|
Debug( LDAP_DEBUG_ANY,
|
|
"<= entry_decode: str2undef_ad(%s): %s\n",
|
|
ptr, text, 0 );
|
|
#endif
|
|
return rc;
|
|
}
|
|
}
|
|
ptr += i + 1;
|
|
a->a_desc = ad;
|
|
bptr = (BerVarray)(a+1);
|
|
a->a_vals = bptr;
|
|
a->a_flags = 0;
|
|
j = entry_getlen(&ptr);
|
|
|
|
while (j) {
|
|
i = entry_getlen(&ptr);
|
|
bptr->bv_len = i;
|
|
bptr->bv_val = (char *)ptr;
|
|
ptr += i+1;
|
|
bptr++;
|
|
j--;
|
|
}
|
|
bptr->bv_val = NULL;
|
|
bptr->bv_len = 0;
|
|
bptr++;
|
|
}
|
|
if (a)
|
|
a->a_next = NULL;
|
|
#ifdef NEW_LOGGING
|
|
LDAP_LOG( OPERATION, DETAIL1, "entry_decode: %s\n", x->e_dn, 0, 0 );
|
|
#else
|
|
Debug(LDAP_DEBUG_TRACE, "<= entry_decode(%s)\n",
|
|
x->e_dn, 0, 0 );
|
|
#endif
|
|
*e = x;
|
|
return 0;
|
|
}
|
|
#endif
|