diff --git a/g10/keylist.c b/g10/keylist.c index ac46691ec..d62bc2006 100644 --- a/g10/keylist.c +++ b/g10/keylist.c @@ -1,1895 +1,1895 @@ /* keylist.c - Print information about OpenPGP keys * Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, * 2008, 2010, 2012 Free Software Foundation, Inc. * Copyright (C) 2013, 2014 Werner Koch * * This file is part of GnuPG. * * GnuPG 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 3 of the License, or * (at your option) any later version. * * GnuPG 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, see . */ #include #include #include #include #include #include #ifdef HAVE_DOSISH_SYSTEM #include /* for setmode() */ #endif #include "gpg.h" #include "options.h" #include "packet.h" #include "status.h" #include "keydb.h" #include "photoid.h" #include "util.h" #include "ttyio.h" #include "trustdb.h" #include "main.h" #include "i18n.h" #include "status.h" #include "call-agent.h" #include "mbox-util.h" static void list_all (int, int); static void list_one (strlist_t names, int secret, int mark_secret); static void locate_one (ctrl_t ctrl, strlist_t names); static void print_card_serialno (const char *serialno); struct keylist_context { int check_sigs; /* If set signatures shall be verified. */ int inv_sigs; /* Counter used if CHECK_SIGS is set. */ int no_key; /* Counter used if CHECK_SIGS is set. */ int oth_err; /* Counter used if CHECK_SIGS is set. */ }; static void list_keyblock (kbnode_t keyblock, int secret, int has_secret, int fpr, struct keylist_context *listctx); /* The stream used to write attribute packets to. */ static estream_t attrib_fp; /* Release resources from a keylist context. */ static void keylist_context_release (struct keylist_context *listctx) { (void)listctx; /* Nothing to release. */ } /* List the keys. If list is NULL, all available keys are listed. With LOCATE_MODE set the locate algorithm is used to find a key. */ void public_key_list (ctrl_t ctrl, strlist_t list, int locate_mode) { #ifndef NO_TRUST_MODELS if (opt.with_colons) { byte trust_model, marginals, completes, cert_depth, min_cert_level; ulong created, nextcheck; read_trust_options (&trust_model, &created, &nextcheck, &marginals, &completes, &cert_depth, &min_cert_level); es_fprintf (es_stdout, "tru:"); if (nextcheck && nextcheck <= make_timestamp ()) es_fprintf (es_stdout, "o"); if (trust_model != opt.trust_model) es_fprintf (es_stdout, "t"); if (opt.trust_model == TM_PGP || opt.trust_model == TM_CLASSIC) { if (marginals != opt.marginals_needed) es_fprintf (es_stdout, "m"); if (completes != opt.completes_needed) es_fprintf (es_stdout, "c"); if (cert_depth != opt.max_cert_depth) es_fprintf (es_stdout, "d"); if (min_cert_level != opt.min_cert_level) es_fprintf (es_stdout, "l"); } es_fprintf (es_stdout, ":%d:%lu:%lu", trust_model, created, nextcheck); /* Only show marginals, completes, and cert_depth in the classic or PGP trust models since they are not meaningful otherwise. */ if (trust_model == TM_PGP || trust_model == TM_CLASSIC) es_fprintf (es_stdout, ":%d:%d:%d", marginals, completes, cert_depth); es_fprintf (es_stdout, "\n"); } #endif /*!NO_TRUST_MODELS*/ /* We need to do the stale check right here because it might need to update the keyring while we already have the keyring open. This is very bad for W32 because of a sharing violation. For real OSes it might lead to false results if we are later listing a keyring which is associated with the inode of a deleted file. */ check_trustdb_stale (); if (locate_mode) locate_one (ctrl, list); else if (!list) list_all (0, opt.with_secret); else list_one (list, 0, opt.with_secret); } void secret_key_list (ctrl_t ctrl, strlist_t list) { (void)ctrl; check_trustdb_stale (); if (!list) list_all (1, 0); else /* List by user id */ list_one (list, 1, 0); } void print_seckey_info (PKT_public_key *pk) { u32 keyid[2]; char *p; char pkstrbuf[PUBKEY_STRING_SIZE]; keyid_from_pk (pk, keyid); p = get_user_id_native (keyid); tty_printf ("\nsec %s/%s %s %s\n", pubkey_string (pk, pkstrbuf, sizeof pkstrbuf), keystr (keyid), datestr_from_pk (pk), p); xfree (p); } /* Print information about the public key. With FP passed as NULL, the tty output interface is used, otherwise output is directted to the given stream. */ void print_pubkey_info (estream_t fp, PKT_public_key * pk) { u32 keyid[2]; char *p; char pkstrbuf[PUBKEY_STRING_SIZE]; keyid_from_pk (pk, keyid); /* If the pk was chosen by a particular user ID, that is the one to print. */ if (pk->user_id) p = utf8_to_native (pk->user_id->name, pk->user_id->len, 0); else p = get_user_id_native (keyid); if (fp) tty_printf ("\n"); tty_fprintf (fp, "pub %s/%s %s %s\n", pubkey_string (pk, pkstrbuf, sizeof pkstrbuf), keystr (keyid), datestr_from_pk (pk), p); xfree (p); } /* Print basic information of a secret key including the card serial number information. */ #ifdef ENABLE_CARD_SUPPORT void print_card_key_info (estream_t fp, kbnode_t keyblock) { kbnode_t node; char *hexgrip; char *serialno; int s2k_char; char pkstrbuf[PUBKEY_STRING_SIZE]; for (node = keyblock; node; node = node->next) { if (node->pkt->pkttype == PKT_PUBLIC_KEY || node->pkt->pkttype == PKT_PUBLIC_SUBKEY) { int rc; PKT_public_key *pk = node->pkt->pkt.public_key; serialno = NULL; rc = hexkeygrip_from_pk (pk, &hexgrip); if (rc) { log_error ("error computing a keygrip: %s\n", gpg_strerror (rc)); s2k_char = '?'; } else if (!agent_get_keyinfo (NULL, hexgrip, &serialno)) s2k_char = serialno? '>':' '; else s2k_char = '#'; /* Key not found. */ tty_fprintf (fp, "%s%c %s/%s ", node->pkt->pkttype == PKT_PUBLIC_KEY ? "sec" : "ssb", s2k_char, pubkey_string (pk, pkstrbuf, sizeof pkstrbuf), keystr_from_pk (pk)); tty_fprintf (fp, _("created: %s"), datestr_from_pk (pk)); tty_fprintf (fp, " "); tty_fprintf (fp, _("expires: %s"), expirestr_from_pk (pk)); if (serialno) { tty_fprintf (fp, "\n "); tty_fprintf (fp, _("card-no: ")); if (strlen (serialno) == 32 && !strncmp (serialno, "D27600012401", 12)) { /* This is an OpenPGP card. Print the relevant part. */ /* Example: D2760001240101010001000003470000 */ /* xxxxyyyyyyyy */ tty_fprintf (fp, "%.*s %.*s", 4, serialno+16, 8, serialno+20); } else tty_fprintf (fp, "%s", serialno); } tty_fprintf (fp, "\n"); xfree (hexgrip); xfree (serialno); } } } #endif /*ENABLE_CARD_SUPPORT*/ /* Flags = 0x01 hashed 0x02 critical. */ static void status_one_subpacket (sigsubpkttype_t type, size_t len, int flags, const byte * buf) { char status[40]; /* Don't print these. */ if (len > 256) return; snprintf (status, sizeof status, "%d %u %u ", type, flags, (unsigned int) len); write_status_text_and_buffer (STATUS_SIG_SUBPACKET, status, buf, len, 0); } /* Print a policy URL. Allowed values for MODE are: * 0 - print to stdout. * 1 - use log_info and emit status messages. * 2 - emit only status messages. */ void show_policy_url (PKT_signature * sig, int indent, int mode) { const byte *p; size_t len; int seq = 0, crit; estream_t fp = mode ? log_get_stream () : es_stdout; while ((p = enum_sig_subpkt (sig->hashed, SIGSUBPKT_POLICY, &len, &seq, &crit))) { if (mode != 2) { int i; const char *str; for (i = 0; i < indent; i++) es_putc (' ', fp); if (crit) str = _("Critical signature policy: "); else str = _("Signature policy: "); if (mode) log_info ("%s", str); else es_fprintf (fp, "%s", str); print_utf8_buffer (fp, p, len); es_fprintf (fp, "\n"); } if (mode) write_status_buffer (STATUS_POLICY_URL, p, len, 0); } } /* mode=0 for stdout. mode=1 for log_info + status messages mode=2 for status messages only */ /* TODO: use this */ void show_keyserver_url (PKT_signature * sig, int indent, int mode) { const byte *p; size_t len; int seq = 0, crit; estream_t fp = mode ? log_get_stream () : es_stdout; while ((p = enum_sig_subpkt (sig->hashed, SIGSUBPKT_PREF_KS, &len, &seq, &crit))) { if (mode != 2) { int i; const char *str; for (i = 0; i < indent; i++) es_putc (' ', es_stdout); if (crit) str = _("Critical preferred keyserver: "); else str = _("Preferred keyserver: "); if (mode) log_info ("%s", str); else es_fprintf (es_stdout, "%s", str); print_utf8_buffer (fp, p, len); es_fprintf (fp, "\n"); } if (mode) status_one_subpacket (SIGSUBPKT_PREF_KS, len, (crit ? 0x02 : 0) | 0x01, p); } } /* mode=0 for stdout. mode=1 for log_info + status messages mode=2 for status messages only Defined bits in WHICH: 1 == standard notations 2 == user notations */ void show_notation (PKT_signature * sig, int indent, int mode, int which) { estream_t fp = mode ? log_get_stream () : es_stdout; struct notation *nd, *notations; if (which == 0) which = 3; notations = sig_to_notation (sig); /* There may be multiple notations in the same sig. */ for (nd = notations; nd; nd = nd->next) { if (mode != 2) { int has_at = !!strchr (nd->name, '@'); if ((which & 1 && !has_at) || (which & 2 && has_at)) { int i; const char *str; for (i = 0; i < indent; i++) es_putc (' ', es_stdout); if (nd->flags.critical) str = _("Critical signature notation: "); else str = _("Signature notation: "); if (mode) log_info ("%s", str); else es_fprintf (es_stdout, "%s", str); /* This is all UTF8 */ print_utf8_buffer (fp, nd->name, strlen (nd->name)); es_fprintf (fp, "="); print_utf8_buffer (fp, nd->value, strlen (nd->value)); /* (We need to use log_printf so that the next call to a log function does not insert an extra LF.) */ if (mode) log_printf ("\n"); else es_putc ('\n', fp); } } if (mode) { write_status_buffer (STATUS_NOTATION_NAME, nd->name, strlen (nd->name), 0); write_status_buffer (STATUS_NOTATION_DATA, nd->value, strlen (nd->value), 50); } } free_notation (notations); } static void print_signature_stats (struct keylist_context *s) { if (!s->check_sigs) return; /* Signature checking was not requested. */ if (s->inv_sigs == 1) tty_printf (_("1 bad signature\n")); else if (s->inv_sigs) tty_printf (_("%d bad signatures\n"), s->inv_sigs); if (s->no_key == 1) tty_printf (_("1 signature not checked due to a missing key\n")); else if (s->no_key) tty_printf (_("%d signatures not checked due to missing keys\n"), s->no_key); if (s->oth_err == 1) tty_printf (_("1 signature not checked due to an error\n")); else if (s->oth_err) tty_printf (_("%d signatures not checked due to errors\n"), s->oth_err); } /* List all keys. If SECRET is true only secret keys are listed. If MARK_SECRET is true secret keys are indicated in a public key listing. */ static void list_all (int secret, int mark_secret) { KEYDB_HANDLE hd; KBNODE keyblock = NULL; int rc = 0; int any_secret; const char *lastresname, *resname; struct keylist_context listctx; memset (&listctx, 0, sizeof (listctx)); if (opt.check_sigs) listctx.check_sigs = 1; hd = keydb_new (); if (!hd) rc = gpg_error (GPG_ERR_GENERAL); else rc = keydb_search_first (hd); if (rc) { if (gpg_err_code (rc) != GPG_ERR_NOT_FOUND) log_error ("keydb_search_first failed: %s\n", gpg_strerror (rc)); goto leave; } lastresname = NULL; do { rc = keydb_get_keyblock (hd, &keyblock); if (rc) { if (gpg_err_code (rc) == GPG_ERR_LEGACY_KEY) continue; /* Skip legacy keys. */ log_error ("keydb_get_keyblock failed: %s\n", gpg_strerror (rc)); goto leave; } if (secret || mark_secret) any_secret = !agent_probe_any_secret_key (NULL, keyblock); else any_secret = 0; if (secret && !any_secret) ; /* Secret key listing requested but this isn't one. */ else { if (!opt.with_colons) { resname = keydb_get_resource_name (hd); if (lastresname != resname) { int i; es_fprintf (es_stdout, "%s\n", resname); for (i = strlen (resname); i; i--) es_putc ('-', es_stdout); es_putc ('\n', es_stdout); lastresname = resname; } } merge_keys_and_selfsig (keyblock); list_keyblock (keyblock, secret, any_secret, opt.fingerprint, &listctx); } release_kbnode (keyblock); keyblock = NULL; } while (!(rc = keydb_search_next (hd))); es_fflush (es_stdout); if (rc && gpg_err_code (rc) != GPG_ERR_NOT_FOUND) log_error ("keydb_search_next failed: %s\n", gpg_strerror (rc)); if (keydb_get_skipped_counter (hd)) log_info (_("Warning: %lu key(s) skipped due to their large size\n"), keydb_get_skipped_counter (hd)); if (opt.check_sigs && !opt.with_colons) print_signature_stats (&listctx); leave: keylist_context_release (&listctx); release_kbnode (keyblock); keydb_release (hd); } static void list_one (strlist_t names, int secret, int mark_secret) { int rc = 0; KBNODE keyblock = NULL; GETKEY_CTX ctx; const char *resname; const char *keyring_str = _("Keyring"); int i; struct keylist_context listctx; memset (&listctx, 0, sizeof (listctx)); if (!secret && opt.check_sigs) listctx.check_sigs = 1; /* fixme: using the bynames function has the disadvantage that we * don't know wether one of the names given was not found. OTOH, * this function has the advantage to list the names in the * sequence as defined by the keyDB and does not duplicate * outputs. A solution could be do test whether all given have * been listed (this needs a way to use the keyDB search * functions) or to have the search function return indicators for * found names. Yet another way is to use the keydb search * facilities directly. */ rc = getkey_bynames (&ctx, NULL, names, secret, &keyblock); if (rc) { log_error ("error reading key: %s\n", gpg_strerror (rc)); get_pubkey_end (ctx); return; } do { if ((opt.list_options & LIST_SHOW_KEYRING) && !opt.with_colons) { resname = keydb_get_resource_name (get_ctx_handle (ctx)); es_fprintf (es_stdout, "%s: %s\n", keyring_str, resname); for (i = strlen (resname) + strlen (keyring_str) + 2; i; i--) es_putc ('-', es_stdout); es_putc ('\n', es_stdout); } list_keyblock (keyblock, secret, mark_secret, opt.fingerprint, &listctx); release_kbnode (keyblock); } while (!getkey_next (ctx, NULL, &keyblock)); getkey_end (ctx); if (opt.check_sigs && !opt.with_colons) print_signature_stats (&listctx); keylist_context_release (&listctx); } static void locate_one (ctrl_t ctrl, strlist_t names) { int rc = 0; strlist_t sl; GETKEY_CTX ctx = NULL; KBNODE keyblock = NULL; struct keylist_context listctx; memset (&listctx, 0, sizeof (listctx)); if (opt.check_sigs) listctx.check_sigs = 1; for (sl = names; sl; sl = sl->next) { rc = get_pubkey_byname (ctrl, &ctx, NULL, sl->d, &keyblock, NULL, 1, 0); if (rc) { if (gpg_err_code (rc) != GPG_ERR_NO_PUBKEY) log_error ("error reading key: %s\n", gpg_strerror (rc)); } else { do { list_keyblock (keyblock, 0, 0, opt.fingerprint, &listctx); release_kbnode (keyblock); } while (ctx && !get_pubkey_next (ctx, NULL, &keyblock)); get_pubkey_end (ctx); ctx = NULL; } } if (opt.check_sigs && !opt.with_colons) print_signature_stats (&listctx); keylist_context_release (&listctx); } static void print_key_data (PKT_public_key * pk) { int n = pk ? pubkey_get_npkey (pk->pubkey_algo) : 0; int i; for (i = 0; i < n; i++) { es_fprintf (es_stdout, "pkd:%d:%u:", i, mpi_get_nbits (pk->pkey[i])); mpi_print (es_stdout, pk->pkey[i], 1); es_putc (':', es_stdout); es_putc ('\n', es_stdout); } } static void print_capabilities (PKT_public_key *pk, KBNODE keyblock) { unsigned int use = pk->pubkey_usage; int c_printed = 0; if (use & PUBKEY_USAGE_ENC) es_putc ('e', es_stdout); if (use & PUBKEY_USAGE_SIG) { es_putc ('s', es_stdout); if (pk->flags.primary) { es_putc ('c', es_stdout); /* The PUBKEY_USAGE_CERT flag was introduced later and we used to always print 'c' for a primary key. To avoid any regression here we better track whether we printed 'c' already. */ c_printed = 1; } } if ((use & PUBKEY_USAGE_CERT) && !c_printed) es_putc ('c', es_stdout); if ((use & PUBKEY_USAGE_AUTH)) es_putc ('a', es_stdout); if ((use & PUBKEY_USAGE_UNKNOWN)) es_putc ('?', es_stdout); if (keyblock) { /* Figure out the usable capabilities. */ KBNODE k; int enc = 0, sign = 0, cert = 0, auth = 0, disabled = 0; for (k = keyblock; k; k = k->next) { if (k->pkt->pkttype == PKT_PUBLIC_KEY || k->pkt->pkttype == PKT_PUBLIC_SUBKEY) { pk = k->pkt->pkt.public_key; if (pk->flags.primary) disabled = pk_is_disabled (pk); if (pk->flags.valid && !pk->flags.revoked && !pk->has_expired) { if (pk->pubkey_usage & PUBKEY_USAGE_ENC) enc = 1; if (pk->pubkey_usage & PUBKEY_USAGE_SIG) { sign = 1; if (pk->flags.primary) cert = 1; } if (pk->pubkey_usage & PUBKEY_USAGE_CERT) cert = 1; if ((pk->pubkey_usage & PUBKEY_USAGE_AUTH)) auth = 1; } } } if (enc) es_putc ('E', es_stdout); if (sign) es_putc ('S', es_stdout); if (cert) es_putc ('C', es_stdout); if (auth) es_putc ('A', es_stdout); if (disabled) es_putc ('D', es_stdout); } es_putc (':', es_stdout); } /* FLAGS: 0x01 hashed 0x02 critical */ static void print_one_subpacket (sigsubpkttype_t type, size_t len, int flags, const byte * buf) { size_t i; es_fprintf (es_stdout, "spk:%d:%u:%u:", type, flags, (unsigned int) len); for (i = 0; i < len; i++) { /* printable ascii other than : and % */ if (buf[i] >= 32 && buf[i] <= 126 && buf[i] != ':' && buf[i] != '%') es_fprintf (es_stdout, "%c", buf[i]); else es_fprintf (es_stdout, "%%%02X", buf[i]); } es_fprintf (es_stdout, "\n"); } void print_subpackets_colon (PKT_signature * sig) { byte *i; assert (opt.show_subpackets); for (i = opt.show_subpackets; *i; i++) { const byte *p; size_t len; int seq, crit; seq = 0; while ((p = enum_sig_subpkt (sig->hashed, *i, &len, &seq, &crit))) print_one_subpacket (*i, len, 0x01 | (crit ? 0x02 : 0), p); seq = 0; while ((p = enum_sig_subpkt (sig->unhashed, *i, &len, &seq, &crit))) print_one_subpacket (*i, len, 0x00 | (crit ? 0x02 : 0), p); } } void dump_attribs (const PKT_user_id *uid, PKT_public_key *pk) { int i; if (!attrib_fp) return; for (i = 0; i < uid->numattribs; i++) { if (is_status_enabled ()) { byte array[MAX_FINGERPRINT_LEN], *p; char buf[(MAX_FINGERPRINT_LEN * 2) + 90]; size_t j, n; if (!pk) BUG (); fingerprint_from_pk (pk, array, &n); p = array; for (j = 0; j < n; j++, p++) sprintf (buf + 2 * j, "%02X", *p); sprintf (buf + strlen (buf), " %lu %u %u %u %lu %lu %u", (ulong) uid->attribs[i].len, uid->attribs[i].type, i + 1, uid->numattribs, (ulong) uid->created, (ulong) uid->expiredate, ((uid->is_primary ? 0x01 : 0) | (uid-> is_revoked ? 0x02 : 0) | (uid->is_expired ? 0x04 : 0))); write_status_text (STATUS_ATTRIBUTE, buf); } es_fwrite (uid->attribs[i].data, uid->attribs[i].len, 1, attrib_fp); es_fflush (attrib_fp); } } /* Print IPGP cert records instead of a standard key listing. */ static void list_keyblock_pka (kbnode_t keyblock) { kbnode_t kbctx; kbnode_t node; PKT_public_key *pk; char pkstrbuf[PUBKEY_STRING_SIZE]; char *hexfpr; /* Get the keyid from the keyblock. */ node = find_kbnode (keyblock, PKT_PUBLIC_KEY); if (!node) { log_error ("Oops; key lost!\n"); dump_kbnode (keyblock); return; } pk = node->pkt->pkt.public_key; es_fprintf (es_stdout, ";; pub %s/%s %s\n;; ", pubkey_string (pk, pkstrbuf, sizeof pkstrbuf), keystr_from_pk (pk), datestr_from_pk (pk)); print_fingerprint (NULL, pk, 10); hexfpr = hexfingerprint (pk); for (kbctx = NULL; (node = walk_kbnode (keyblock, &kbctx, 0));) { if (node->pkt->pkttype == PKT_USER_ID) { PKT_user_id *uid = node->pkt->pkt.user_id; char *mbox; char *p; if (pk && (uid->is_expired || uid->is_revoked) && !(opt.list_options & LIST_SHOW_UNUSABLE_UIDS)) continue; es_fputs (";; uid ", es_stdout); print_utf8_buffer (es_stdout, uid->name, uid->len); es_putc ('\n', es_stdout); mbox = mailbox_from_userid (uid->name); if (mbox && (p = strchr (mbox, '@'))) { char hashbuf[20]; char *hash; unsigned int len; *p++ = 0; es_fprintf (es_stdout, "$ORIGIN _pka.%s.\n", p); gcry_md_hash_buffer (GCRY_MD_SHA1, hashbuf, mbox, strlen (mbox)); hash = zb32_encode (hashbuf, 8*20); if (hash) { len = strlen (hexfpr)/2; es_fprintf (es_stdout, "%s TYPE37 \\# %u 0006 0000 00 %02X %s\n", hash, 6 + len, len, hexfpr); xfree (hash); } } xfree (mbox); } } es_putc ('\n', es_stdout); xfree (hexfpr); } static void list_keyblock_print (KBNODE keyblock, int secret, int fpr, struct keylist_context *listctx) { int rc; KBNODE kbctx; KBNODE node; PKT_public_key *pk; int skip_sigs = 0; int s2k_char; char *hexgrip = NULL; char *serialno = NULL; char pkstrbuf[PUBKEY_STRING_SIZE]; /* Get the keyid from the keyblock. */ node = find_kbnode (keyblock, PKT_PUBLIC_KEY); if (!node) { log_error ("Oops; key lost!\n"); dump_kbnode (keyblock); return; } pk = node->pkt->pkt.public_key; if (secret || opt.with_keygrip) { rc = hexkeygrip_from_pk (pk, &hexgrip); if (rc) log_error ("error computing a keygrip: %s\n", gpg_strerror (rc)); } if (secret) { if (!agent_get_keyinfo (NULL, hexgrip, &serialno)) s2k_char = serialno? '>':' '; else s2k_char = '#'; /* Key not found. */ } else s2k_char = ' '; check_trustdb_stale (); es_fprintf (es_stdout, "%s%c %s/%s %s", secret? "sec":"pub", s2k_char, pubkey_string (pk, pkstrbuf, sizeof pkstrbuf), keystr_from_pk (pk), datestr_from_pk (pk)); if ((opt.list_options & LIST_SHOW_USAGE)) { es_fprintf (es_stdout, " [%s]", usagestr_from_pk (pk, 0)); } if (pk->flags.revoked) { es_fprintf (es_stdout, " ["); es_fprintf (es_stdout, _("revoked: %s"), revokestr_from_pk (pk)); es_fprintf (es_stdout, "]"); } else if (pk->has_expired) { es_fprintf (es_stdout, " ["); es_fprintf (es_stdout, _("expired: %s"), expirestr_from_pk (pk)); es_fprintf (es_stdout, "]"); } else if (pk->expiredate) { es_fprintf (es_stdout, " ["); es_fprintf (es_stdout, _("expires: %s"), expirestr_from_pk (pk)); es_fprintf (es_stdout, "]"); } #if 0 /* I need to think about this some more. It's easy enough to include, but it looks sort of confusing in the listing... */ if (opt.list_options & LIST_SHOW_VALIDITY) { int validity = get_validity (pk, NULL); es_fprintf (es_stdout, " [%s]", trust_value_to_string (validity)); } #endif if (pk->pubkey_algo >= 100) es_fprintf (es_stdout, " [experimental algorithm %d]", pk->pubkey_algo); es_fprintf (es_stdout, "\n"); if (fpr) print_fingerprint (NULL, pk, 0); if (opt.with_keygrip && hexgrip) es_fprintf (es_stdout, " Keygrip = %s\n", hexgrip); if (serialno) print_card_serialno (serialno); if (opt.with_key_data) print_key_data (pk); for (kbctx = NULL; (node = walk_kbnode (keyblock, &kbctx, 0));) { - if (node->pkt->pkttype == PKT_USER_ID && !opt.fast_list_mode) + if (node->pkt->pkttype == PKT_USER_ID) { PKT_user_id *uid = node->pkt->pkt.user_id; if ((uid->is_expired || uid->is_revoked) && !(opt.list_options & LIST_SHOW_UNUSABLE_UIDS)) { skip_sigs = 1; continue; } else skip_sigs = 0; if (attrib_fp && uid->attrib_data != NULL) dump_attribs (uid, pk); if ((uid->is_revoked || uid->is_expired) || (opt.list_options & LIST_SHOW_UID_VALIDITY)) { const char *validity; int indent; validity = uid_trust_string_fixed (pk, uid); indent = (keystrlen () + 9) - atoi (uid_trust_string_fixed (NULL, NULL)); if (indent < 0 || indent > 40) indent = 0; es_fprintf (es_stdout, "uid%*s%s ", indent, "", validity); } else es_fprintf (es_stdout, "uid%*s", (int) keystrlen () + 10, ""); print_utf8_buffer (es_stdout, uid->name, uid->len); es_putc ('\n', es_stdout); if ((opt.list_options & LIST_SHOW_PHOTOS) && uid->attribs != NULL) show_photos (uid->attribs, uid->numattribs, pk, uid); } else if (node->pkt->pkttype == PKT_PUBLIC_SUBKEY) { PKT_public_key *pk2 = node->pkt->pkt.public_key; if ((pk2->flags.revoked || pk2->has_expired) && !(opt.list_options & LIST_SHOW_UNUSABLE_SUBKEYS)) { skip_sigs = 1; continue; } else skip_sigs = 0; xfree (serialno); serialno = NULL; xfree (hexgrip); hexgrip = NULL; if (secret || opt.with_keygrip) { rc = hexkeygrip_from_pk (pk2, &hexgrip); if (rc) log_error ("error computing a keygrip: %s\n", gpg_strerror (rc)); } if (secret) { if (!agent_get_keyinfo (NULL, hexgrip, &serialno)) s2k_char = serialno? '>':' '; else s2k_char = '#'; /* Key not found. */ } else s2k_char = ' '; es_fprintf (es_stdout, "%s%c %s/%s %s", secret? "ssb":"sub", s2k_char, pubkey_string (pk2, pkstrbuf, sizeof pkstrbuf), keystr_from_pk (pk2), datestr_from_pk (pk2)); if (pk2->pubkey_algo == PUBKEY_ALGO_ECDSA || pk2->pubkey_algo == PUBKEY_ALGO_EDDSA || pk2->pubkey_algo == PUBKEY_ALGO_ECDH) { char *curve = openpgp_oid_to_str (pk2->pkey[0]); const char *name = openpgp_oid_to_curve (curve); if (!*name || *name == '?') name = curve; es_fprintf (es_stdout, " %s", name); xfree (curve); } if ((opt.list_options & LIST_SHOW_USAGE)) { es_fprintf (es_stdout, " [%s]", usagestr_from_pk (pk2, 0)); } if (pk2->flags.revoked) { es_fprintf (es_stdout, " ["); es_fprintf (es_stdout, _("revoked: %s"), revokestr_from_pk (pk2)); es_fprintf (es_stdout, "]"); } else if (pk2->has_expired) { es_fprintf (es_stdout, " ["); es_fprintf (es_stdout, _("expired: %s"), expirestr_from_pk (pk2)); es_fprintf (es_stdout, "]"); } else if (pk2->expiredate) { es_fprintf (es_stdout, " ["); es_fprintf (es_stdout, _("expires: %s"), expirestr_from_pk (pk2)); es_fprintf (es_stdout, "]"); } es_putc ('\n', es_stdout); if (fpr > 1) { print_fingerprint (NULL, pk2, 0); if (serialno) print_card_serialno (serialno); } if (opt.with_keygrip && hexgrip) es_fprintf (es_stdout, " Keygrip = %s\n", hexgrip); if (opt.with_key_data) print_key_data (pk2); } else if (opt.list_sigs && node->pkt->pkttype == PKT_SIGNATURE && !skip_sigs) { PKT_signature *sig = node->pkt->pkt.signature; int sigrc; char *sigstr; if (listctx->check_sigs) { rc = check_key_signature (keyblock, node, NULL); switch (gpg_err_code (rc)) { case 0: sigrc = '!'; break; case GPG_ERR_BAD_SIGNATURE: listctx->inv_sigs++; sigrc = '-'; break; case GPG_ERR_NO_PUBKEY: case GPG_ERR_UNUSABLE_PUBKEY: listctx->no_key++; continue; default: listctx->oth_err++; sigrc = '%'; break; } /* TODO: Make sure a cached sig record here still has the pk that issued it. See also keyedit.c:print_and_check_one_sig */ } else { rc = 0; sigrc = ' '; } if (sig->sig_class == 0x20 || sig->sig_class == 0x28 || sig->sig_class == 0x30) sigstr = "rev"; else if ((sig->sig_class & ~3) == 0x10) sigstr = "sig"; else if (sig->sig_class == 0x18) sigstr = "sig"; else if (sig->sig_class == 0x1F) sigstr = "sig"; else { es_fprintf (es_stdout, "sig " "[unexpected signature class 0x%02x]\n", sig->sig_class); continue; } es_fputs (sigstr, es_stdout); es_fprintf (es_stdout, "%c%c %c%c%c%c%c%c %s %s", sigrc, (sig->sig_class - 0x10 > 0 && sig->sig_class - 0x10 < 4) ? '0' + sig->sig_class - 0x10 : ' ', sig->flags.exportable ? ' ' : 'L', sig->flags.revocable ? ' ' : 'R', sig->flags.policy_url ? 'P' : ' ', sig->flags.notation ? 'N' : ' ', sig->flags.expired ? 'X' : ' ', (sig->trust_depth > 9) ? 'T' : (sig->trust_depth > 0) ? '0' + sig->trust_depth : ' ', keystr (sig->keyid), datestr_from_sig (sig)); if (opt.list_options & LIST_SHOW_SIG_EXPIRE) es_fprintf (es_stdout, " %s", expirestr_from_sig (sig)); es_fprintf (es_stdout, " "); if (sigrc == '%') es_fprintf (es_stdout, "[%s] ", gpg_strerror (rc)); else if (sigrc == '?') ; else if (!opt.fast_list_mode) { size_t n; char *p = get_user_id (sig->keyid, &n); print_utf8_buffer (es_stdout, p, n); xfree (p); } es_putc ('\n', es_stdout); if (sig->flags.policy_url && (opt.list_options & LIST_SHOW_POLICY_URLS)) show_policy_url (sig, 3, 0); if (sig->flags.notation && (opt.list_options & LIST_SHOW_NOTATIONS)) show_notation (sig, 3, 0, ((opt. list_options & LIST_SHOW_STD_NOTATIONS) ? 1 : 0) + ((opt. list_options & LIST_SHOW_USER_NOTATIONS) ? 2 : 0)); if (sig->flags.pref_ks && (opt.list_options & LIST_SHOW_KEYSERVER_URLS)) show_keyserver_url (sig, 3, 0); /* fixme: check or list other sigs here */ } } es_putc ('\n', es_stdout); xfree (serialno); xfree (hexgrip); } void print_revokers (estream_t fp, PKT_public_key * pk) { /* print the revoker record */ if (!pk->revkey && pk->numrevkeys) BUG (); else { int i, j; for (i = 0; i < pk->numrevkeys; i++) { byte *p; es_fprintf (fp, "rvk:::%d::::::", pk->revkey[i].algid); p = pk->revkey[i].fpr; for (j = 0; j < 20; j++, p++) es_fprintf (fp, "%02X", *p); es_fprintf (fp, ":%02x%s:\n", pk->revkey[i].class, (pk->revkey[i].class & 0x40) ? "s" : ""); } } } /* List a key in colon mode. If SECRET is true this is a secret key record (i.e. requested via --list-secret-key). If HAS_SECRET a secret key is available even if SECRET is not set. */ static void list_keyblock_colon (KBNODE keyblock, int secret, int has_secret, int fpr) { int rc; KBNODE kbctx; KBNODE node; PKT_public_key *pk; u32 keyid[2]; int trustletter = 0; int ulti_hack = 0; int i; char *p; char *hexgrip = NULL; char *serialno = NULL; int stubkey; /* Get the keyid from the keyblock. */ node = find_kbnode (keyblock, PKT_PUBLIC_KEY); if (!node) { log_error ("Oops; key lost!\n"); dump_kbnode (keyblock); return; } pk = node->pkt->pkt.public_key; if (secret || has_secret || opt.with_keygrip || opt.with_key_data) { rc = hexkeygrip_from_pk (pk, &hexgrip); if (rc) log_error ("error computing a keygrip: %s\n", gpg_strerror (rc)); } stubkey = 0; if ((secret||has_secret) && agent_get_keyinfo (NULL, hexgrip, &serialno)) stubkey = 1; /* Key not found. */ keyid_from_pk (pk, keyid); es_fputs (secret? "sec:":"pub:", es_stdout); if (!pk->flags.valid) es_putc ('i', es_stdout); else if (pk->flags.revoked) es_putc ('r', es_stdout); else if (pk->has_expired) es_putc ('e', es_stdout); else if (opt.fast_list_mode || opt.no_expensive_trust_checks) ; else { trustletter = get_validity_info (pk, NULL); if (trustletter == 'u') ulti_hack = 1; es_putc (trustletter, es_stdout); } es_fprintf (es_stdout, ":%u:%d:%08lX%08lX:%s:%s::", nbits_from_pk (pk), pk->pubkey_algo, (ulong) keyid[0], (ulong) keyid[1], colon_datestr_from_pk (pk), colon_strtime (pk->expiredate)); if (!opt.fast_list_mode && !opt.no_expensive_trust_checks) es_putc (get_ownertrust_info (pk), es_stdout); es_putc (':', es_stdout); es_putc (':', es_stdout); es_putc (':', es_stdout); print_capabilities (pk, keyblock); es_putc (':', es_stdout); /* End of field 13. */ es_putc (':', es_stdout); /* End of field 14. */ if (secret || has_secret) { if (stubkey) es_putc ('#', es_stdout); else if (serialno) es_fputs (serialno, es_stdout); else if (has_secret) es_putc ('+', es_stdout); } es_putc (':', es_stdout); /* End of field 15. */ es_putc (':', es_stdout); /* End of field 16. */ if (pk->pubkey_algo == PUBKEY_ALGO_ECDSA || pk->pubkey_algo == PUBKEY_ALGO_EDDSA || pk->pubkey_algo == PUBKEY_ALGO_ECDH) { char *curve = openpgp_oid_to_str (pk->pkey[0]); const char *name = openpgp_oid_to_curve (curve); if (!*name || *name == '?') name = curve; es_fputs (name, es_stdout); xfree (curve); } es_putc (':', es_stdout); /* End of field 17. */ es_putc ('\n', es_stdout); print_revokers (es_stdout, pk); if (fpr) print_fingerprint (NULL, pk, 0); if (opt.with_key_data || opt.with_keygrip) { if (hexgrip) es_fprintf (es_stdout, "grp:::::::::%s:\n", hexgrip); if (opt.with_key_data) print_key_data (pk); } for (kbctx = NULL; (node = walk_kbnode (keyblock, &kbctx, 0));) { - if (node->pkt->pkttype == PKT_USER_ID && !opt.fast_list_mode) + if (node->pkt->pkttype == PKT_USER_ID) { char *str; PKT_user_id *uid = node->pkt->pkt.user_id; if (attrib_fp && node->pkt->pkt.user_id->attrib_data != NULL) dump_attribs (node->pkt->pkt.user_id, pk); /* * Fixme: We need a valid flag here too */ str = uid->attrib_data ? "uat" : "uid"; if (uid->is_revoked) es_fprintf (es_stdout, "%s:r::::", str); else if (uid->is_expired) es_fprintf (es_stdout, "%s:e::::", str); else if (opt.no_expensive_trust_checks) es_fprintf (es_stdout, "%s:::::", str); else { int uid_validity; if (!ulti_hack) uid_validity = get_validity_info (pk, uid); else uid_validity = 'u'; es_fprintf (es_stdout, "%s:%c::::", str, uid_validity); } es_fprintf (es_stdout, "%s:", colon_strtime (uid->created)); es_fprintf (es_stdout, "%s:", colon_strtime (uid->expiredate)); namehash_from_uid (uid); for (i = 0; i < 20; i++) es_fprintf (es_stdout, "%02X", uid->namehash[i]); es_fprintf (es_stdout, "::"); if (uid->attrib_data) es_fprintf (es_stdout, "%u %lu", uid->numattribs, uid->attrib_len); else es_write_sanitized (es_stdout, uid->name, uid->len, ":", NULL); es_putc (':', es_stdout); es_putc ('\n', es_stdout); } else if (node->pkt->pkttype == PKT_PUBLIC_SUBKEY) { u32 keyid2[2]; PKT_public_key *pk2; pk2 = node->pkt->pkt.public_key; xfree (hexgrip); hexgrip = NULL; xfree (serialno); serialno = NULL; if (secret || has_secret || opt.with_keygrip || opt.with_key_data) { rc = hexkeygrip_from_pk (pk2, &hexgrip); if (rc) log_error ("error computing a keygrip: %s\n", gpg_strerror (rc)); } stubkey = 0; if ((secret||has_secret) && agent_get_keyinfo (NULL, hexgrip, &serialno)) stubkey = 1; /* Key not found. */ keyid_from_pk (pk2, keyid2); es_fputs (secret? "ssb:":"sub:", es_stdout); if (!pk2->flags.valid) es_putc ('i', es_stdout); else if (pk2->flags.revoked) es_putc ('r', es_stdout); else if (pk2->has_expired) es_putc ('e', es_stdout); else if (opt.fast_list_mode || opt.no_expensive_trust_checks) ; else { /* TRUSTLETTER should always be defined here. */ if (trustletter) es_fprintf (es_stdout, "%c", trustletter); } es_fprintf (es_stdout, ":%u:%d:%08lX%08lX:%s:%s:::::", nbits_from_pk (pk2), pk2->pubkey_algo, (ulong) keyid2[0], (ulong) keyid2[1], colon_datestr_from_pk (pk2), colon_strtime (pk2->expiredate) /* fixme: add LID and ownertrust here */ ); print_capabilities (pk2, NULL); es_putc (':', es_stdout); /* End of field 13. */ es_putc (':', es_stdout); /* End of field 14. */ if (secret || has_secret) { if (stubkey) es_putc ('#', es_stdout); else if (serialno) es_fputs (serialno, es_stdout); else if (has_secret) es_putc ('+', es_stdout); } es_putc (':', es_stdout); /* End of field 15. */ es_putc (':', es_stdout); /* End of field 16. */ if (pk->pubkey_algo == PUBKEY_ALGO_ECDSA || pk->pubkey_algo == PUBKEY_ALGO_EDDSA || pk->pubkey_algo == PUBKEY_ALGO_ECDH) { char *curve = openpgp_oid_to_str (pk->pkey[0]); const char *name = openpgp_oid_to_curve (curve); if (!*name || *name == '?') name = curve; es_fputs (name, es_stdout); xfree (curve); } es_putc (':', es_stdout); /* End of field 17. */ es_putc ('\n', es_stdout); if (fpr > 1) print_fingerprint (NULL, pk2, 0); if (opt.with_key_data || opt.with_keygrip) { if (hexgrip) es_fprintf (es_stdout, "grp:::::::::%s:\n", hexgrip); if (opt.with_key_data) print_key_data (pk2); } } else if (opt.list_sigs && node->pkt->pkttype == PKT_SIGNATURE) { PKT_signature *sig = node->pkt->pkt.signature; int sigrc, fprokay = 0; char *sigstr; size_t fplen; byte fparray[MAX_FINGERPRINT_LEN]; if (sig->sig_class == 0x20 || sig->sig_class == 0x28 || sig->sig_class == 0x30) sigstr = "rev"; else if ((sig->sig_class & ~3) == 0x10) sigstr = "sig"; else if (sig->sig_class == 0x18) sigstr = "sig"; else if (sig->sig_class == 0x1F) sigstr = "sig"; else { es_fprintf (es_stdout, "sig::::::::::%02x%c:\n", sig->sig_class, sig->flags.exportable ? 'x' : 'l'); continue; } if (opt.check_sigs) { PKT_public_key *signer_pk = NULL; fflush (stdout); if (opt.no_sig_cache) signer_pk = xmalloc_clear (sizeof (PKT_public_key)); rc = check_key_signature2 (keyblock, node, NULL, signer_pk, NULL, NULL, NULL); switch (gpg_err_code (rc)) { case 0: sigrc = '!'; break; case GPG_ERR_BAD_SIGNATURE: sigrc = '-'; break; case GPG_ERR_NO_PUBKEY: case GPG_ERR_UNUSABLE_PUBKEY: sigrc = '?'; break; default: sigrc = '%'; break; } if (opt.no_sig_cache) { if (!rc) { fingerprint_from_pk (signer_pk, fparray, &fplen); fprokay = 1; } free_public_key (signer_pk); } } else { rc = 0; sigrc = ' '; } es_fputs (sigstr, es_stdout); es_putc (':', es_stdout); if (sigrc != ' ') es_putc (sigrc, es_stdout); es_fprintf (es_stdout, "::%d:%08lX%08lX:%s:%s:", sig->pubkey_algo, (ulong) sig->keyid[0], (ulong) sig->keyid[1], colon_datestr_from_sig (sig), colon_expirestr_from_sig (sig)); if (sig->trust_depth || sig->trust_value) es_fprintf (es_stdout, "%d %d", sig->trust_depth, sig->trust_value); es_fprintf (es_stdout, ":"); if (sig->trust_regexp) es_write_sanitized (es_stdout, sig->trust_regexp, strlen (sig->trust_regexp), ":", NULL); es_fprintf (es_stdout, ":"); if (sigrc == '%') es_fprintf (es_stdout, "[%s] ", gpg_strerror (rc)); else if (sigrc == '?') ; else if (!opt.fast_list_mode) { size_t n; p = get_user_id (sig->keyid, &n); es_write_sanitized (es_stdout, p, n, ":", NULL); xfree (p); } es_fprintf (es_stdout, ":%02x%c::", sig->sig_class, sig->flags.exportable ? 'x' : 'l'); if (opt.no_sig_cache && opt.check_sigs && fprokay) { for (i = 0; i < fplen; i++) es_fprintf (es_stdout, "%02X", fparray[i]); } es_fprintf (es_stdout, ":::%d:\n", sig->digest_algo); if (opt.show_subpackets) print_subpackets_colon (sig); /* fixme: check or list other sigs here */ } } xfree (hexgrip); xfree (serialno); } /* * Reorder the keyblock so that the primary user ID (and not attribute * packet) comes first. Fixme: Replace this by a generic sort * function. */ static void do_reorder_keyblock (KBNODE keyblock, int attr) { KBNODE primary = NULL, primary0 = NULL, primary2 = NULL; KBNODE last, node; for (node = keyblock; node; primary0 = node, node = node->next) { if (node->pkt->pkttype == PKT_USER_ID && ((attr && node->pkt->pkt.user_id->attrib_data) || (!attr && !node->pkt->pkt.user_id->attrib_data)) && node->pkt->pkt.user_id->is_primary) { primary = primary2 = node; for (node = node->next; node; primary2 = node, node = node->next) { if (node->pkt->pkttype == PKT_USER_ID || node->pkt->pkttype == PKT_PUBLIC_SUBKEY || node->pkt->pkttype == PKT_SECRET_SUBKEY) { break; } } break; } } if (!primary) return; /* No primary key flag found (should not happen). */ for (last = NULL, node = keyblock; node; last = node, node = node->next) { if (node->pkt->pkttype == PKT_USER_ID) break; } assert (node); assert (last); /* The user ID is never the first packet. */ assert (primary0); /* Ditto (this is the node before primary). */ if (node == primary) return; /* Already the first one. */ last->next = primary; primary0->next = primary2->next; primary2->next = node; } void reorder_keyblock (KBNODE keyblock) { do_reorder_keyblock (keyblock, 1); do_reorder_keyblock (keyblock, 0); } static void list_keyblock (KBNODE keyblock, int secret, int has_secret, int fpr, struct keylist_context *listctx) { reorder_keyblock (keyblock); if (opt.print_pka_records) list_keyblock_pka (keyblock); else if (opt.with_colons) list_keyblock_colon (keyblock, secret, has_secret, fpr); else list_keyblock_print (keyblock, secret, fpr, listctx); if (secret) es_fflush (es_stdout); } /* Public function used by keygen to list a keyblock. */ void list_keyblock_direct (kbnode_t keyblock, int secret, int has_secret, int fpr) { struct keylist_context listctx; memset (&listctx, 0, sizeof (listctx)); list_keyblock (keyblock, secret, has_secret, fpr, &listctx); keylist_context_release (&listctx); } /* Print an hex digit in ICAO spelling. */ static void print_icao_hexdigit (estream_t fp, int c) { static const char *list[16] = { "Zero", "One", "Two", "Three", "Four", "Five", "Six", "Seven", "Eight", "Niner", "Alfa", "Bravo", "Charlie", "Delta", "Echo", "Foxtrot" }; tty_fprintf (fp, "%s", list[c&15]); } /* * Function to print the finperprint. * mode 0: as used in key listings, opt.with_colons is honored * 1: print using log_info () * 2: direct use of tty * 3: direct use of tty but only primary key. * 10: Same as 0 but with_colons etc is ignored. * * Modes 1 and 2 will try and print both subkey and primary key * fingerprints. A MODE with bit 7 set is used internally. If * OVERRIDE_FP is not NULL that stream will be used in 0 instead * of es_stdout or instead of the TTY in modes 2 and 3. */ void print_fingerprint (estream_t override_fp, PKT_public_key *pk, int mode) { byte array[MAX_FINGERPRINT_LEN], *p; size_t i, n; estream_t fp; const char *text; int primary = 0; int with_colons = opt.with_colons; int with_icao = opt.with_icao_spelling; if (mode == 10) { mode = 0; with_colons = 0; with_icao = 0; } if (pk->main_keyid[0] == pk->keyid[0] && pk->main_keyid[1] == pk->keyid[1]) primary = 1; /* Just to be safe */ if ((mode & 0x80) && !primary) { log_error ("primary key is not really primary!\n"); return; } mode &= ~0x80; if (!primary && (mode == 1 || mode == 2)) { PKT_public_key *primary_pk = xmalloc_clear (sizeof (*primary_pk)); get_pubkey (primary_pk, pk->main_keyid); print_fingerprint (override_fp, primary_pk, (mode | 0x80)); free_public_key (primary_pk); } if (mode == 1) { fp = log_get_stream (); if (primary) text = _("Primary key fingerprint:"); else text = _(" Subkey fingerprint:"); } else if (mode == 2) { fp = override_fp; /* Use tty or given stream. */ if (primary) /* TRANSLATORS: this should fit into 24 bytes to that the * fingerprint data is properly aligned with the user ID */ text = _(" Primary key fingerprint:"); else text = _(" Subkey fingerprint:"); } else if (mode == 3) { fp = override_fp; /* Use tty or given stream. */ text = _(" Key fingerprint ="); } else { fp = override_fp? override_fp : es_stdout; text = _(" Key fingerprint ="); } fingerprint_from_pk (pk, array, &n); p = array; if (with_colons && !mode) { es_fprintf (fp, "fpr:::::::::"); for (i = 0; i < n; i++, p++) es_fprintf (fp, "%02X", *p); es_putc (':', fp); } else { tty_fprintf (fp, "%s", text); if (n == 20) { for (i = 0; i < n; i++, i++, p += 2) tty_fprintf (fp, "%s %02X%02X", i==10? " ":"", *p, p[1]); } else { for (i = 0; i < n; i++, p++) tty_fprintf (fp, "%s %02X", (i && !(i % 8))? " ":"", *p); } } tty_fprintf (fp, "\n"); if (!with_colons && with_icao) { p = array; tty_fprintf (fp, "%*s\"", (int)strlen(text)+1, ""); for (i = 0; i < n; i++, p++) { if (!i) ; else if (!(i%4)) tty_fprintf (fp, "\n%*s ", (int)strlen(text)+1, ""); else if (!(i%2)) tty_fprintf (fp, " "); else tty_fprintf (fp, " "); print_icao_hexdigit (fp, *p >> 4); tty_fprintf (fp, " "); print_icao_hexdigit (fp, *p & 15); } tty_fprintf (fp, "\"\n"); } } /* Print the serial number of an OpenPGP card if available. */ static void print_card_serialno (const char *serialno) { if (!serialno) return; if (opt.with_colons) return; /* Handled elsewhere. */ es_fputs (_(" Card serial no. ="), es_stdout); es_putc (' ', es_stdout); if (strlen (serialno) == 32 && !strncmp (serialno, "D27600012401", 12)) { /* This is an OpenPGP card. Print the relevant part. */ /* Example: D2760001240101010001000003470000 */ /* xxxxyyyyyyyy */ es_fprintf (es_stdout, "%.*s %.*s", 4, serialno+16, 8, serialno+20); } else es_fputs (serialno, es_stdout); es_putc ('\n', es_stdout); } void set_attrib_fd (int fd) { static int last_fd = -1; if (fd != -1 && last_fd == fd) return; /* Fixme: Do we need to check for the log stream here? */ if (attrib_fp && attrib_fp != log_get_stream ()) es_fclose (attrib_fp); attrib_fp = NULL; if (fd == -1) return; #ifdef HAVE_DOSISH_SYSTEM setmode (fd, O_BINARY); #endif if (fd == 1) attrib_fp = es_stdout; else if (fd == 2) attrib_fp = es_stderr; else attrib_fp = es_fdopen (fd, "wb"); if (!attrib_fp) { log_fatal ("can't open fd %d for attribute output: %s\n", fd, strerror (errno)); } last_fd = fd; }