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crypt-gpgme.c
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crypt-gpgme.c
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/* crypt-gpgme.c - GPGME based crypto operations
* Copyright (C) 1996-7,2007 Michael R. Elkins <[email protected]>
* Copyright (C) 1998,1999,2000 Thomas Roessler <[email protected]>
* Copyright (C) 2001 Thomas Roessler <[email protected]>
* Oliver Ehli <[email protected]>
* Copyright (C) 2002, 2003, 2004 g10 Code GmbH
* Copyright (C) 2012 Michael R. Elkins <[email protected]>
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
*/
#if HAVE_CONFIG_H
# include "config.h"
#endif
#ifdef CRYPT_BACKEND_GPGME
#include "mutt.h"
#include "mutt_crypt.h"
#include "mutt_menu.h"
#include "mutt_curses.h"
#include "mime.h"
#include "copy.h"
#include "pager.h"
#include "sort.h"
#include <sys/wait.h>
#include <string.h>
#include <stdlib.h>
#include <unistd.h>
#include <sys/stat.h>
#include <errno.h>
#include <ctype.h>
#include <gpgme.h>
#ifdef HAVE_LOCALE_H
#include <locale.h>
#endif
#ifdef HAVE_LANGINFO_D_T_FMT
#include <langinfo.h>
#endif
#ifdef HAVE_SYS_TIME_H
# include <sys/time.h>
#endif
#ifdef HAVE_SYS_RESOURCE_H
# include <sys/resource.h>
#endif
/*
* Helper macros.
*/
#define digitp(p) (*(p) >= '0' && *(p) <= '9')
#define hexdigitp(a) (digitp (a) \
|| (*(a) >= 'A' && *(a) <= 'F') \
|| (*(a) >= 'a' && *(a) <= 'f'))
#define xtoi_1(p) (*(p) <= '9'? (*(p)- '0'): \
*(p) <= 'F'? (*(p)-'A'+10):(*(p)-'a'+10))
#define xtoi_2(p) ((xtoi_1(p) * 16) + xtoi_1((p)+1))
#define PKA_NOTATION_NAME "[email protected]"
#define is_pka_notation(notation) ((notation)->name && \
! strcmp ((notation)->name, \
PKA_NOTATION_NAME))
/* Values used for comparing addresses. */
#define CRYPT_KV_VALID 1
#define CRYPT_KV_ADDR 2
#define CRYPT_KV_STRING 4
#define CRYPT_KV_STRONGID 8
#define CRYPT_KV_MATCH (CRYPT_KV_ADDR|CRYPT_KV_STRING)
/*
* Type definitions.
*/
struct crypt_cache
{
char *what;
char *dflt;
struct crypt_cache *next;
};
struct dn_array_s
{
char *key;
char *value;
};
/* We work based on user IDs, getting from a user ID to the key is
check and does not need any memory (gpgme uses reference counting). */
typedef struct crypt_keyinfo
{
struct crypt_keyinfo *next;
gpgme_key_t kobj;
int idx; /* and the user ID at this index */
const char *uid; /* and for convenience point to this user ID */
unsigned int flags; /* global and per uid flags (for convenience)*/
} crypt_key_t;
typedef struct crypt_entry
{
size_t num;
crypt_key_t *key;
} crypt_entry_t;
static struct crypt_cache *id_defaults = NULL;
static gpgme_key_t signature_key = NULL;
static char *current_sender = NULL;
/*
* General helper functions.
*/
/* return true when s points to a digit or letter. */
static int
digit_or_letter (const unsigned char *s)
{
return ( (*s >= '0' && *s < '9')
|| (*s >= 'A' && *s <= 'Z')
|| (*s >= 'a' && *s <= 'z'));
}
/* Print the utf-8 encoded string BUF of length LEN bytes to stream
FP. Convert the character set. */
static void
print_utf8 (FILE *fp, const char *buf, size_t len)
{
char *tstr;
tstr = safe_malloc (len+1);
memcpy (tstr, buf, len);
tstr[len] = 0;
/* fromcode "utf-8" is sure, so we don't want
* charset-hook corrections: flags must be 0.
*/
mutt_convert_string (&tstr, "utf-8", Charset, 0);
fputs (tstr, fp);
FREE (&tstr);
}
/*
* Key management.
*/
/* Return the keyID for the key K. Note that this string is valid as
long as K is valid */
static const char *crypt_keyid (crypt_key_t *k)
{
const char *s = "????????";
if (k->kobj && k->kobj->subkeys)
{
s = k->kobj->subkeys->keyid;
if ((! option (OPTPGPLONGIDS)) && (strlen (s) == 16))
/* Return only the short keyID. */
s += 8;
}
return s;
}
/* Return the hexstring fingerprint from the key K. */
static const char *crypt_fpr (crypt_key_t *k)
{
const char *s = "";
if (k->kobj && k->kobj->subkeys)
s = k->kobj->subkeys->fpr;
return s;
}
/* Parse FLAGS and return a statically allocated(!) string with them. */
static char *crypt_key_abilities (int flags)
{
static char buff[3];
if (!(flags & KEYFLAG_CANENCRYPT))
buff[0] = '-';
else if (flags & KEYFLAG_PREFER_SIGNING)
buff[0] = '.';
else
buff[0] = 'e';
if (!(flags & KEYFLAG_CANSIGN))
buff[1] = '-';
else if (flags & KEYFLAG_PREFER_ENCRYPTION)
buff[1] = '.';
else
buff[1] = 's';
buff[2] = '\0';
return buff;
}
/* Parse FLAGS and return a character describing the most important flag. */
static char crypt_flags (int flags)
{
if (flags & KEYFLAG_REVOKED)
return 'R';
else if (flags & KEYFLAG_EXPIRED)
return 'X';
else if (flags & KEYFLAG_DISABLED)
return 'd';
else if (flags & KEYFLAG_CRITICAL)
return 'c';
else
return ' ';
}
/* Return a copy of KEY. */
static crypt_key_t *crypt_copy_key (crypt_key_t *key)
{
crypt_key_t *k;
k = safe_calloc (1, sizeof *k);
k->kobj = key->kobj;
gpgme_key_ref (key->kobj);
k->idx = key->idx;
k->uid = key->uid;
k->flags = key->flags;
return k;
}
/* Release all the keys at the address of KEYLIST and set the address
to NULL. */
static void crypt_free_key (crypt_key_t **keylist)
{
while (*keylist)
{
crypt_key_t *k = (*keylist)->next;
FREE (&k);
*keylist = k;
}
}
/* Return trute when key K is valid. */
static int crypt_key_is_valid (crypt_key_t *k)
{
if (k->flags & KEYFLAG_CANTUSE)
return 0;
return 1;
}
/* Return true whe validity of KEY is sufficient. */
static int crypt_id_is_strong (crypt_key_t *key)
{
gpgme_validity_t val = GPGME_VALIDITY_UNKNOWN;
gpgme_user_id_t uid = NULL;
unsigned int is_strong = 0;
unsigned int i = 0;
if ((key->flags & KEYFLAG_ISX509))
return 1;
for (i = 0, uid = key->kobj->uids; (i < key->idx) && uid;
i++, uid = uid->next)
;
if (uid)
val = uid->validity;
switch (val)
{
case GPGME_VALIDITY_UNKNOWN:
case GPGME_VALIDITY_UNDEFINED:
case GPGME_VALIDITY_NEVER:
case GPGME_VALIDITY_MARGINAL:
is_strong = 0;
break;
case GPGME_VALIDITY_FULL:
case GPGME_VALIDITY_ULTIMATE:
is_strong = 1;
break;
}
return is_strong;
}
/* Return true when the KEY is valid, i.e. not marked as unusable. */
static int crypt_id_is_valid (crypt_key_t *key)
{
return ! (key->flags & KEYFLAG_CANTUSE);
}
/* Return a bit vector describing how well the addresses ADDR and
U_ADDR match and whether KEY is valid. */
static int crypt_id_matches_addr (ADDRESS *addr, ADDRESS *u_addr,
crypt_key_t *key)
{
int rv = 0;
if (crypt_id_is_valid (key))
rv |= CRYPT_KV_VALID;
if (crypt_id_is_strong (key))
rv |= CRYPT_KV_STRONGID;
if (addr->mailbox && u_addr->mailbox
&& mutt_strcasecmp (addr->mailbox, u_addr->mailbox) == 0)
rv |= CRYPT_KV_ADDR;
if (addr->personal && u_addr->personal
&& mutt_strcasecmp (addr->personal, u_addr->personal) == 0)
rv |= CRYPT_KV_STRING;
return rv;
}
/*
* GPGME convenient functions.
*/
/* Create a new gpgme context and return it. With FOR_SMIME set to
true, the protocol of the context is set to CMS. */
static gpgme_ctx_t create_gpgme_context (int for_smime)
{
gpgme_error_t err;
gpgme_ctx_t ctx;
err = gpgme_new (&ctx);
if (err)
{
mutt_error (_("error creating gpgme context: %s\n"), gpgme_strerror (err));
sleep (2);
mutt_exit (1);
}
if (for_smime)
{
err = gpgme_set_protocol (ctx, GPGME_PROTOCOL_CMS);
if (err)
{
mutt_error (_("error enabling CMS protocol: %s\n"),
gpgme_strerror (err));
sleep (2);
mutt_exit (1);
}
}
return ctx;
}
/* Create a new gpgme data object. This is a wrapper to die on
error. */
static gpgme_data_t create_gpgme_data (void)
{
gpgme_error_t err;
gpgme_data_t data;
err = gpgme_data_new (&data);
if (err)
{
mutt_error (_("error creating gpgme data object: %s\n"),
gpgme_strerror (err));
sleep (2);
mutt_exit (1);
}
return data;
}
/* Create a new GPGME Data object from the mail body A. With CONVERT
passed as true, the lines are converted to CR,LF if required.
Return NULL on error or the gpgme_data_t object on success. */
static gpgme_data_t body_to_data_object (BODY *a, int convert)
{
char tempfile[_POSIX_PATH_MAX];
FILE *fptmp;
int err = 0;
gpgme_data_t data;
mutt_mktemp (tempfile, sizeof (tempfile));
fptmp = safe_fopen (tempfile, "w+");
if (!fptmp)
{
mutt_perror (tempfile);
return NULL;
}
mutt_write_mime_header (a, fptmp);
fputc ('\n', fptmp);
mutt_write_mime_body (a, fptmp);
if (convert)
{
int c, hadcr = 0;
unsigned char buf[1];
data = create_gpgme_data ();
rewind (fptmp);
while ((c = fgetc (fptmp)) != EOF)
{
if (c == '\r')
hadcr = 1;
else
{
if (c == '\n' && !hadcr)
{
buf[0] = '\r';
gpgme_data_write (data, buf, 1);
}
hadcr = 0;
}
/* FIXME: This is quite suboptimal */
buf[0] = c;
gpgme_data_write (data, buf, 1);
}
safe_fclose (&fptmp);
gpgme_data_seek (data, 0, SEEK_SET);
}
else
{
safe_fclose (&fptmp);
err = gpgme_data_new_from_file (&data, tempfile, 1);
}
unlink (tempfile);
if (err)
{
mutt_error (_("error allocating data object: %s\n"), gpgme_strerror (err));
return NULL;
}
return data;
}
/* Create a GPGME data object from the stream FP but limit the object
to LENGTH bytes starting at OFFSET bytes from the beginning of the
file. */
static gpgme_data_t file_to_data_object (FILE *fp, long offset, long length)
{
int err = 0;
gpgme_data_t data;
err = gpgme_data_new_from_filepart (&data, NULL, fp, offset, length);
if (err)
{
mutt_error (_("error allocating data object: %s\n"), gpgme_strerror (err));
return NULL;
}
return data;
}
/* Write a GPGME data object to the stream FP. */
static int data_object_to_stream (gpgme_data_t data, FILE *fp)
{
int err;
char buf[4096], *p;
ssize_t nread;
err = ((gpgme_data_seek (data, 0, SEEK_SET) == -1)
? gpgme_error_from_errno (errno) : 0);
if (err)
{
mutt_error (_("error rewinding data object: %s\n"), gpgme_strerror (err));
return -1;
}
while ((nread = gpgme_data_read (data, buf, sizeof (buf))))
{
/* fixme: we are not really converting CRLF to LF but just
skipping CR. Doing it correctly needs a more complex logic */
for (p=buf; nread; p++, nread--)
{
if (*p != '\r')
putc (*p, fp);
}
if (ferror (fp))
{
mutt_perror ("[tempfile]");
return -1;
}
}
if (nread == -1)
{
mutt_error (_("error reading data object: %s\n"), strerror (errno));
return -1;
}
return 0;
}
/* Copy a data object to a newly created temporay file and return that
filename. Caller must free. With RET_FP not NULL, don't close the
stream but return it there. */
static char *data_object_to_tempfile (gpgme_data_t data, FILE **ret_fp)
{
int err;
char tempfile[_POSIX_PATH_MAX];
FILE *fp;
size_t nread = 0;
mutt_mktemp (tempfile, sizeof (tempfile));
fp = safe_fopen (tempfile, "w+");
if (!fp)
{
mutt_perror (tempfile);
return NULL;
}
err = ((gpgme_data_seek (data, 0, SEEK_SET) == -1)
? gpgme_error_from_errno (errno) : 0);
if (!err)
{
char buf[4096];
while ((nread = gpgme_data_read (data, buf, sizeof (buf))))
{
if (fwrite (buf, nread, 1, fp) != 1)
{
mutt_perror (tempfile);
safe_fclose (&fp);
unlink (tempfile);
return NULL;
}
}
}
if (ret_fp)
rewind (fp);
else
safe_fclose (&fp);
if (nread == -1)
{
mutt_error (_("error reading data object: %s\n"), gpgme_strerror (err));
unlink (tempfile);
safe_fclose (&fp);
return NULL;
}
if (ret_fp)
*ret_fp = fp;
return safe_strdup (tempfile);
}
/* Create a GpgmeRecipientSet from the keys in the string KEYLIST.
The keys must be space delimited. */
static gpgme_key_t *create_recipient_set (const char *keylist,
gpgme_protocol_t protocol)
{
int err;
const char *s;
char buf[100];
int i;
gpgme_key_t *rset = NULL;
unsigned int rset_n = 0;
gpgme_key_t key = NULL;
gpgme_ctx_t context = NULL;
err = gpgme_new (&context);
if (! err)
err = gpgme_set_protocol (context, protocol);
if (! err)
{
s = keylist;
do {
while (*s == ' ')
s++;
for (i=0; *s && *s != ' ' && i < sizeof(buf)-1;)
buf[i++] = *s++;
buf[i] = 0;
if (*buf)
{
if (i>1 && buf[i-1] == '!')
{
/* The user selected to override the validity of that
key. */
buf[i-1] = 0;
err = gpgme_get_key (context, buf, &key, 0);
if (! err)
key->uids->validity = GPGME_VALIDITY_FULL;
buf[i-1] = '!';
}
else
err = gpgme_get_key (context, buf, &key, 0);
if (! err)
{
safe_realloc (&rset, sizeof (*rset) * (rset_n + 1));
rset[rset_n++] = key;
}
else
{
mutt_error (_("error adding recipient `%s': %s\n"),
buf, gpgme_strerror (err));
FREE (&rset);
return NULL;
}
}
} while (*s);
}
/* NULL terminate. */
safe_realloc (&rset, sizeof (*rset) * (rset_n + 1));
rset[rset_n++] = NULL;
if (context)
gpgme_release (context);
return rset;
}
/* Make sure that the correct signer is set. Returns 0 on success. */
static int set_signer (gpgme_ctx_t ctx, int for_smime)
{
char *signid = for_smime ? SmimeDefaultKey: PgpSignAs;
gpgme_error_t err;
gpgme_ctx_t listctx;
gpgme_key_t key, key2;
if (!signid || !*signid)
return 0;
listctx = create_gpgme_context (for_smime);
err = gpgme_op_keylist_start (listctx, signid, 1);
if (!err)
err = gpgme_op_keylist_next (listctx, &key);
if (err)
{
gpgme_release (listctx);
mutt_error (_("secret key `%s' not found: %s\n"),
signid, gpgme_strerror (err));
return -1;
}
err = gpgme_op_keylist_next (listctx, &key2);
if (!err)
{
gpgme_key_release (key);
gpgme_key_release (key2);
gpgme_release (listctx);
mutt_error (_("ambiguous specification of secret key `%s'\n"),
signid);
return -1;
}
gpgme_op_keylist_end (listctx);
gpgme_release (listctx);
gpgme_signers_clear (ctx);
err = gpgme_signers_add (ctx, key);
gpgme_key_release (key);
if (err)
{
mutt_error (_("error setting secret key `%s': %s\n"),
signid, gpgme_strerror (err));
return -1;
}
return 0;
}
static gpgme_error_t
set_pka_sig_notation (gpgme_ctx_t ctx)
{
gpgme_error_t err;
err = gpgme_sig_notation_add (ctx,
PKA_NOTATION_NAME, current_sender, 0);
if (err)
{
mutt_error (_("error setting PKA signature notation: %s\n"),
gpgme_strerror (err));
mutt_sleep (2);
}
return err;
}
/* Encrypt the gpgme data object PLAINTEXT to the recipients in RSET
and return an allocated filename to a temporary file containing the
enciphered text. With USE_SMIME set to true, the smime backend is
used. With COMBINED_SIGNED a PGP message is signed and
encrypted. Returns NULL in case of error */
static char *encrypt_gpgme_object (gpgme_data_t plaintext, gpgme_key_t *rset,
int use_smime, int combined_signed)
{
gpgme_error_t err;
gpgme_ctx_t ctx;
gpgme_data_t ciphertext;
char *outfile;
ctx = create_gpgme_context (use_smime);
if (!use_smime)
gpgme_set_armor (ctx, 1);
ciphertext = create_gpgme_data ();
if (combined_signed)
{
if (set_signer (ctx, use_smime))
{
gpgme_data_release (ciphertext);
gpgme_release (ctx);
return NULL;
}
if (option (OPTCRYPTUSEPKA))
{
err = set_pka_sig_notation (ctx);
if (err)
{
gpgme_data_release (ciphertext);
gpgme_release (ctx);
return NULL;
}
}
err = gpgme_op_encrypt_sign (ctx, rset, GPGME_ENCRYPT_ALWAYS_TRUST,
plaintext, ciphertext);
}
else
err = gpgme_op_encrypt (ctx, rset, GPGME_ENCRYPT_ALWAYS_TRUST,
plaintext, ciphertext);
mutt_need_hard_redraw ();
if (err)
{
mutt_error (_("error encrypting data: %s\n"), gpgme_strerror (err));
gpgme_data_release (ciphertext);
gpgme_release (ctx);
return NULL;
}
gpgme_release (ctx);
outfile = data_object_to_tempfile (ciphertext, NULL);
gpgme_data_release (ciphertext);
return outfile;
}
/* Find the "micalg" parameter from the last Gpgme operation on
context CTX. It is expected that this operation was a sign
operation. Return the algorithm name as a C string in buffer BUF
which must have been allocated by the caller with size BUFLEN.
Returns 0 on success or -1 in case of an error. The return string
is truncted to BUFLEN - 1. */
static int get_micalg (gpgme_ctx_t ctx, int use_smime, char *buf, size_t buflen)
{
gpgme_sign_result_t result = NULL;
const char *algorithm_name = NULL;
if (buflen < 5)
return -1;
*buf = 0;
result = gpgme_op_sign_result (ctx);
if (result && result->signatures)
{
algorithm_name = gpgme_hash_algo_name (result->signatures->hash_algo);
if (algorithm_name)
{
if (use_smime)
{
/* convert GPGME raw hash name to RFC 2633 format */
snprintf (buf, buflen, "%s", algorithm_name);
ascii_strlower (buf);
} else {
/* convert GPGME raw hash name to RFC 3156 format */
snprintf (buf, buflen, "pgp-%s", algorithm_name);
ascii_strlower (buf + 4);
}
}
}
return *buf? 0:-1;
}
static void print_time(time_t t, STATE *s)
{
char p[STRING];
setlocale (LC_TIME, "");
#ifdef HAVE_LANGINFO_D_T_FMT
strftime (p, sizeof (p), nl_langinfo (D_T_FMT), localtime (&t));
#else
strftime (p, sizeof (p), "%c", localtime (&t));
#endif
setlocale (LC_TIME, "C");
state_attach_puts (p, s);
}
/*
* Implementation of `sign_message'.
*/
/* Sign the MESSAGE in body A either using OpenPGP or S/MIME when
USE_SMIME is passed as true. Returns the new body or NULL on
error. */
static BODY *sign_message (BODY *a, int use_smime)
{
BODY *t;
char *sigfile;
int err = 0;
char buf[100];
gpgme_ctx_t ctx;
gpgme_data_t message, signature;
gpgme_sign_result_t sigres;
convert_to_7bit (a); /* Signed data _must_ be in 7-bit format. */
message = body_to_data_object (a, 1);
if (!message)
return NULL;
signature = create_gpgme_data ();
ctx = create_gpgme_context (use_smime);
if (!use_smime)
gpgme_set_armor (ctx, 1);
if (set_signer (ctx, use_smime))
{
gpgme_data_release (signature);
gpgme_release (ctx);
return NULL;
}
if (option (OPTCRYPTUSEPKA))
{
err = set_pka_sig_notation (ctx);
if (err)
{
gpgme_data_release (signature);
gpgme_data_release (message);
gpgme_release (ctx);
return NULL;
}
}
err = gpgme_op_sign (ctx, message, signature, GPGME_SIG_MODE_DETACH );
mutt_need_hard_redraw ();
gpgme_data_release (message);
if (err)
{
gpgme_data_release (signature);
gpgme_release (ctx);
mutt_error (_("error signing data: %s\n"), gpgme_strerror (err));
return NULL;
}
/* Check for zero signatures generated. This can occur when $pgp_sign_as is
* unset and there is no default key specified in ~/.gnupg/gpg.conf
*/
sigres = gpgme_op_sign_result (ctx);
if (!sigres->signatures)
{
gpgme_data_release (signature);
gpgme_release (ctx);
mutt_error (_("$pgp_sign_as unset and no default key specified in ~/.gnupg/gpg.conf"));
return NULL;
}
sigfile = data_object_to_tempfile (signature, NULL);
gpgme_data_release (signature);
if (!sigfile)
{
gpgme_release (ctx);
return NULL;
}
t = mutt_new_body ();
t->type = TYPEMULTIPART;
t->subtype = safe_strdup ("signed");
t->encoding = ENC7BIT;
t->use_disp = 0;
t->disposition = DISPINLINE;
mutt_generate_boundary (&t->parameter);
mutt_set_parameter ("protocol",
use_smime? "application/pkcs7-signature"
: "application/pgp-signature",
&t->parameter);
/* Get the micalg from gpgme. Old gpgme versions don't support this
for S/MIME so we assume sha-1 in this case. */
if (!get_micalg (ctx, use_smime, buf, sizeof buf))
mutt_set_parameter ("micalg", buf, &t->parameter);
else if (use_smime)
mutt_set_parameter ("micalg", "sha1", &t->parameter);
gpgme_release (ctx);
t->parts = a;
a = t;
t->parts->next = mutt_new_body ();
t = t->parts->next;
t->type = TYPEAPPLICATION;
if (use_smime)
{
t->subtype = safe_strdup ("pkcs7-signature");
mutt_set_parameter ("name", "smime.p7s", &t->parameter);
t->encoding = ENCBASE64;
t->use_disp = 1;
t->disposition = DISPATTACH;
t->d_filename = safe_strdup ("smime.p7s");
}
else
{
t->subtype = safe_strdup ("pgp-signature");
t->use_disp = 0;
t->disposition = DISPNONE;
t->encoding = ENC7BIT;
}
t->filename = sigfile;
t->unlink = 1; /* ok to remove this file after sending. */
return a;
}
BODY *pgp_gpgme_sign_message (BODY *a)
{
return sign_message (a, 0);
}
BODY *smime_gpgme_sign_message (BODY *a)
{
return sign_message (a, 1);
}
/*
* Implementation of `encrypt_message'.
*/
/* Encrypt the mail body A to all keys given as space separated keyids
or fingerprints in KEYLIST and return the encrypted body. */
BODY *pgp_gpgme_encrypt_message (BODY *a, char *keylist, int sign)
{
char *outfile = NULL;
BODY *t;
gpgme_key_t *rset = NULL;
gpgme_data_t plaintext;
rset = create_recipient_set (keylist, GPGME_PROTOCOL_OpenPGP);
if (!rset)
return NULL;
if (sign)
convert_to_7bit (a);
plaintext = body_to_data_object (a, 0);
if (!plaintext)
{
FREE (&rset);
return NULL;
}
outfile = encrypt_gpgme_object (plaintext, rset, 0, sign);
gpgme_data_release (plaintext);
FREE (&rset);
if (!outfile)
return NULL;
t = mutt_new_body ();
t->type = TYPEMULTIPART;
t->subtype = safe_strdup ("encrypted");
t->encoding = ENC7BIT;
t->use_disp = 0;
t->disposition = DISPINLINE;
mutt_generate_boundary(&t->parameter);
mutt_set_parameter("protocol", "application/pgp-encrypted", &t->parameter);
t->parts = mutt_new_body ();
t->parts->type = TYPEAPPLICATION;
t->parts->subtype = safe_strdup ("pgp-encrypted");
t->parts->encoding = ENC7BIT;
t->parts->next = mutt_new_body ();
t->parts->next->type = TYPEAPPLICATION;
t->parts->next->subtype = safe_strdup ("octet-stream");
t->parts->next->encoding = ENC7BIT;
t->parts->next->filename = outfile;
t->parts->next->use_disp = 1;
t->parts->next->disposition = DISPATTACH;
t->parts->next->unlink = 1; /* delete after sending the message */
t->parts->next->d_filename = safe_strdup ("msg.asc"); /* non pgp/mime
can save */
return t;