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096e7457ec
The asymmetric quotes used by GNU in the past (`...') don't render nicely on modern systems. We now use two \x27 characters ('...'). The proper solution would be to use the correct Unicode symmetric quotes here. However this has the disadvantage that the system requires Unicode support. We don't want that today. If Unicode is available a generated po file can be used to output proper quotes. A simple sed script like the one used for en@quote is sufficient to change them. The changes have been done by applying sed -i "s/\`\([^'\`]*\)'/'\1'/g" to most files and fixing obvious problems by hand. The msgid strings in the po files were fixed with a similar command.
481 lines
13 KiB
C
481 lines
13 KiB
C
/* crlfetch.c - LDAP access
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* Copyright (C) 2002 Klarälvdalens Datakonsult AB
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* Copyright (C) 2003, 2004, 2005, 2006, 2007 g10 Code GmbH
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*
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* This file is part of DirMngr.
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*
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* DirMngr is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* DirMngr is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, see <http://www.gnu.org/licenses/>.
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*/
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#include <config.h>
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#include <stdio.h>
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#include <errno.h>
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#include <npth.h>
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#include "crlfetch.h"
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#include "dirmngr.h"
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#include "misc.h"
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#include "http.h"
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#include "estream.h"
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#include "ldap-wrapper.h"
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/* For detecting armored CRLs received via HTTP (yes, such CRLS really
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exits, e.g. http://grid.fzk.de/ca/gridka-crl.pem at least in June
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2008) we need a context in the reader callback. */
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struct reader_cb_context_s
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{
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estream_t fp; /* The stream used with the ksba reader. */
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int checked:1; /* PEM/binary detection ahs been done. */
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int is_pem:1; /* The file stream is PEM encoded. */
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struct b64state b64state; /* The state used for Base64 decoding. */
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};
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/* We need to associate a reader object with the reader callback
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context. This table is used for it. */
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struct file_reader_map_s
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{
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ksba_reader_t reader;
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struct reader_cb_context_s *cb_ctx;
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};
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#define MAX_FILE_READER 50
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static struct file_reader_map_s file_reader_map[MAX_FILE_READER];
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/* Associate FP with READER. If the table is full wait until another
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thread has removed an entry. */
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static void
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register_file_reader (ksba_reader_t reader, struct reader_cb_context_s *cb_ctx)
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{
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int i;
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for (;;)
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{
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for (i=0; i < MAX_FILE_READER; i++)
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if (!file_reader_map[i].reader)
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{
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file_reader_map[i].reader = reader;
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file_reader_map[i].cb_ctx = cb_ctx;
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return;
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}
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log_info (_("reader to file mapping table full - waiting\n"));
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npth_sleep (2);
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}
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}
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/* Scan the table for an entry matching READER, remove that entry and
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return the associated file pointer. */
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static struct reader_cb_context_s *
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get_file_reader (ksba_reader_t reader)
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{
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struct reader_cb_context_s *cb_ctx = NULL;
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int i;
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for (i=0; i < MAX_FILE_READER; i++)
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if (file_reader_map[i].reader == reader)
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{
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cb_ctx = file_reader_map[i].cb_ctx;
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file_reader_map[i].reader = NULL;
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file_reader_map[i].cb_ctx = NULL;
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break;
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}
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return cb_ctx;
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}
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static int
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my_es_read (void *opaque, char *buffer, size_t nbytes, size_t *nread)
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{
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struct reader_cb_context_s *cb_ctx = opaque;
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int result;
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result = es_read (cb_ctx->fp, buffer, nbytes, nread);
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if (result)
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return result;
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/* Fixme we should check whether the semantics of es_read are okay
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and well defined. I have some doubts. */
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if (nbytes && !*nread && es_feof (cb_ctx->fp))
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return gpg_error (GPG_ERR_EOF);
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if (!nread && es_ferror (cb_ctx->fp))
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return gpg_error (GPG_ERR_EIO);
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if (!cb_ctx->checked && *nread)
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{
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int c = *(unsigned char *)buffer;
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cb_ctx->checked = 1;
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if ( ((c & 0xc0) >> 6) == 0 /* class: universal */
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&& (c & 0x1f) == 16 /* sequence */
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&& (c & 0x20) /* is constructed */ )
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; /* Binary data. */
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else
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{
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cb_ctx->is_pem = 1;
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b64dec_start (&cb_ctx->b64state, "");
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}
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}
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if (cb_ctx->is_pem && *nread)
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{
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size_t nread2;
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if (b64dec_proc (&cb_ctx->b64state, buffer, *nread, &nread2))
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{
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/* EOF from decoder. */
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*nread = 0;
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result = gpg_error (GPG_ERR_EOF);
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}
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else
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*nread = nread2;
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}
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return result;
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}
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/* Fetch CRL from URL and return the entire CRL using new ksba reader
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object in READER. Note that this reader object should be closed
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only using ldap_close_reader. */
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gpg_error_t
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crl_fetch (ctrl_t ctrl, const char *url, ksba_reader_t *reader)
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{
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gpg_error_t err;
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parsed_uri_t uri;
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char *free_this = NULL;
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int redirects_left = 2; /* We allow for 2 redirect levels. */
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*reader = NULL;
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once_more:
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err = http_parse_uri (&uri, url, 0);
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http_release_parsed_uri (uri);
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if (err && url && !strncmp (url, "https:", 6))
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{
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/* Our HTTP code does not support TLS, thus we can't use this
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scheme and it is frankly not useful for CRL retrieval anyway.
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We resort to using http, assuming that the server also
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provides plain http access. */
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free_this = xtrymalloc (strlen (url) + 1);
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if (free_this)
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{
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strcpy (stpcpy (free_this,"http:"), url+6);
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err = http_parse_uri (&uri, free_this, 0);
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http_release_parsed_uri (uri);
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if (!err)
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{
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log_info (_("using \"http\" instead of \"https\"\n"));
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url = free_this;
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}
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}
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}
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if (!err) /* Yes, our HTTP code groks that. */
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{
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http_t hd;
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if (opt.disable_http)
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{
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log_error (_("CRL access not possible due to disabled %s\n"),
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"HTTP");
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err = gpg_error (GPG_ERR_NOT_SUPPORTED);
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}
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else
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err = http_open_document (&hd, url, NULL,
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(opt.honor_http_proxy? HTTP_FLAG_TRY_PROXY:0)
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|(DBG_LOOKUP? HTTP_FLAG_LOG_RESP:0),
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opt.http_proxy, NULL, NULL, NULL);
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switch ( err? 99999 : http_get_status_code (hd) )
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{
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case 200:
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{
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estream_t fp = http_get_read_ptr (hd);
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struct reader_cb_context_s *cb_ctx;
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cb_ctx = xtrycalloc (1, sizeof *cb_ctx);
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if (!cb_ctx)
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err = gpg_error_from_syserror ();
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if (!err)
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err = ksba_reader_new (reader);
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if (!err)
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{
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cb_ctx->fp = fp;
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err = ksba_reader_set_cb (*reader, &my_es_read, cb_ctx);
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}
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if (err)
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{
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log_error (_("error initializing reader object: %s\n"),
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gpg_strerror (err));
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ksba_reader_release (*reader);
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*reader = NULL;
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http_close (hd, 0);
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}
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else
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{
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/* The ksba reader misses a user pointer thus we need
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to come up with our own way of associating a file
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pointer (or well the callback context) with the
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reader. It is only required when closing the
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reader thus there is no performance issue doing it
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this way. FIXME: We now have a close notification
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which might be used here. */
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register_file_reader (*reader, cb_ctx);
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http_close (hd, 1);
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}
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}
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break;
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case 301: /* Redirection (perm.). */
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case 302: /* Redirection (temp.). */
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{
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const char *s = http_get_header (hd, "Location");
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log_info (_("URL '%s' redirected to '%s' (%u)\n"),
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url, s?s:"[none]", http_get_status_code (hd));
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if (s && *s && redirects_left-- )
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{
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xfree (free_this); url = NULL;
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free_this = xtrystrdup (s);
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if (!free_this)
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err = gpg_error_from_errno (errno);
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else
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{
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url = free_this;
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http_close (hd, 0);
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/* Note, that our implementation of redirection
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actually handles a redirect to LDAP. */
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goto once_more;
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}
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}
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else
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err = gpg_error (GPG_ERR_NO_DATA);
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log_error (_("too many redirections\n")); /* Or no "Location". */
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http_close (hd, 0);
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}
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break;
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case 99999: /* Made up status code for error reporting. */
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log_error (_("error retrieving '%s': %s\n"),
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url, gpg_strerror (err));
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break;
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default:
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log_error (_("error retrieving '%s': http status %u\n"),
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url, http_get_status_code (hd));
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err = gpg_error (GPG_ERR_NO_DATA);
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http_close (hd, 0);
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}
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}
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else /* Let the LDAP code try other schemes. */
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{
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if (opt.disable_ldap)
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{
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log_error (_("CRL access not possible due to disabled %s\n"),
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"LDAP");
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err = gpg_error (GPG_ERR_NOT_SUPPORTED);
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}
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else
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err = url_fetch_ldap (ctrl, url, NULL, 0, reader);
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}
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xfree (free_this);
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return err;
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}
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/* Fetch CRL for ISSUER using a default server. Return the entire CRL
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as a newly opened stream returned in R_FP. */
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gpg_error_t
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crl_fetch_default (ctrl_t ctrl, const char *issuer, ksba_reader_t *reader)
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{
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if (opt.disable_ldap)
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{
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log_error (_("CRL access not possible due to disabled %s\n"),
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"LDAP");
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return gpg_error (GPG_ERR_NOT_SUPPORTED);
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}
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return attr_fetch_ldap (ctrl, issuer, "certificateRevocationList",
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reader);
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}
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/* Fetch a CA certificate for DN using the default server. This
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function only initiates the fetch; fetch_next_cert must be used to
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actually read the certificate; end_cert_fetch to end the
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operation. */
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gpg_error_t
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ca_cert_fetch (ctrl_t ctrl, cert_fetch_context_t *context, const char *dn)
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{
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if (opt.disable_ldap)
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{
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log_error (_("CRL access not possible due to disabled %s\n"),
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"LDAP");
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return gpg_error (GPG_ERR_NOT_SUPPORTED);
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}
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return start_default_fetch_ldap (ctrl, context, dn, "cACertificate");
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}
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gpg_error_t
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start_cert_fetch (ctrl_t ctrl, cert_fetch_context_t *context,
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strlist_t patterns, const ldap_server_t server)
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{
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if (opt.disable_ldap)
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{
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log_error (_("certificate search not possible due to disabled %s\n"),
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"LDAP");
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return gpg_error (GPG_ERR_NOT_SUPPORTED);
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}
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return start_cert_fetch_ldap (ctrl, context, patterns, server);
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}
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gpg_error_t
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fetch_next_cert (cert_fetch_context_t context,
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unsigned char **value, size_t * valuelen)
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{
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return fetch_next_cert_ldap (context, value, valuelen);
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}
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/* Fetch the next data from CONTEXT, assuming it is a certificate and return
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it as a cert object in R_CERT. */
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gpg_error_t
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fetch_next_ksba_cert (cert_fetch_context_t context, ksba_cert_t *r_cert)
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{
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gpg_error_t err;
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unsigned char *value;
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size_t valuelen;
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ksba_cert_t cert;
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*r_cert = NULL;
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err = fetch_next_cert_ldap (context, &value, &valuelen);
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if (!err && !value)
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err = gpg_error (GPG_ERR_BUG);
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if (err)
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return err;
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err = ksba_cert_new (&cert);
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if (err)
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{
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xfree (value);
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return err;
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}
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err = ksba_cert_init_from_mem (cert, value, valuelen);
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xfree (value);
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if (err)
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{
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ksba_cert_release (cert);
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return err;
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}
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*r_cert = cert;
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return 0;
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}
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void
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end_cert_fetch (cert_fetch_context_t context)
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{
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return end_cert_fetch_ldap (context);
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}
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/* Lookup a cert by it's URL. */
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gpg_error_t
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fetch_cert_by_url (ctrl_t ctrl, const char *url,
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unsigned char **value, size_t *valuelen)
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{
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const unsigned char *cert_image;
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size_t cert_image_n;
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ksba_reader_t reader;
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ksba_cert_t cert;
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gpg_error_t err;
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*value = NULL;
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*valuelen = 0;
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cert_image = NULL;
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reader = NULL;
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cert = NULL;
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err = url_fetch_ldap (ctrl, url, NULL, 0, &reader);
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if (err)
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goto leave;
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err = ksba_cert_new (&cert);
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if (err)
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goto leave;
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err = ksba_cert_read_der (cert, reader);
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if (err)
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goto leave;
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cert_image = ksba_cert_get_image (cert, &cert_image_n);
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if (!cert_image || !cert_image_n)
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{
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err = gpg_error (GPG_ERR_INV_CERT_OBJ);
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goto leave;
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}
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*value = xtrymalloc (cert_image_n);
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if (!*value)
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{
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err = gpg_error_from_syserror ();
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goto leave;
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}
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memcpy (*value, cert_image, cert_image_n);
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*valuelen = cert_image_n;
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leave:
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ksba_cert_release (cert);
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ldap_wrapper_release_context (reader);
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return err;
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}
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/* This function is to be used to close the reader object. In
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addition to running ksba_reader_release it also releases the LDAP
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or HTTP contexts associated with that reader. */
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void
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crl_close_reader (ksba_reader_t reader)
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{
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struct reader_cb_context_s *cb_ctx;
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if (!reader)
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return;
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/* Check whether this is a HTTP one. */
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cb_ctx = get_file_reader (reader);
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if (cb_ctx)
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{
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/* This is an HTTP context. */
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if (cb_ctx->fp)
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es_fclose (cb_ctx->fp);
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/* Release the base64 decoder state. */
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if (cb_ctx->is_pem)
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b64dec_finish (&cb_ctx->b64state);
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/* Release the callback context. */
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xfree (cb_ctx);
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}
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else /* This is an ldap wrapper context (Currently not used). */
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ldap_wrapper_release_context (reader);
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/* Now get rid of the reader object. */
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ksba_reader_release (reader);
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}
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