diff --git a/kbx/keybox-init.c b/kbx/keybox-init.c index 9a65c1345..2223f4d15 100644 --- a/kbx/keybox-init.c +++ b/kbx/keybox-init.c @@ -1,334 +1,330 @@ /* keybox-init.c - Initialization of the library * Copyright (C) 2001 Free Software Foundation, Inc. * * 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 #include "keybox-defs.h" #include "../common/mischelp.h" static KB_NAME kb_names; /* Register a filename for plain keybox files. Returns 0 on success, * GPG_ERR_EEXIST if it has already been registered, or another error * code. On success or with error code GPG_ERR_EEXIST a token usable * to access the keybox handle is stored at R_TOKEN, NULL is stored * for all other errors. */ gpg_error_t keybox_register_file (const char *fname, int secret, void **r_token) { KB_NAME kr; *r_token = NULL; for (kr=kb_names; kr; kr = kr->next) { if (same_file_p (kr->fname, fname) ) { *r_token = kr; return gpg_error (GPG_ERR_EEXIST); /* Already registered. */ } } kr = xtrymalloc (sizeof *kr + strlen (fname)); if (!kr) return gpg_error_from_syserror (); strcpy (kr->fname, fname); kr->secret = !!secret; kr->handle_table = NULL; kr->handle_table_size = 0; kr->lockhd = NULL; kr->is_locked = 0; kr->did_full_scan = 0; /* keep a list of all issued pointers */ kr->next = kb_names; kb_names = kr; /* create the offset table the first time a function here is used */ /* if (!kb_offtbl) */ /* kb_offtbl = new_offset_hash_table (); */ *r_token = kr; return 0; } int keybox_is_writable (void *token) { KB_NAME r = token; return r? !access (r->fname, W_OK) : 0; } static KEYBOX_HANDLE do_keybox_new (KB_NAME resource, int secret, int for_openpgp) { KEYBOX_HANDLE hd; int idx; assert (resource && !resource->secret == !secret); hd = xtrycalloc (1, sizeof *hd); if (hd) { hd->kb = resource; hd->secret = !!secret; hd->for_openpgp = for_openpgp; if (!resource->handle_table) { resource->handle_table_size = 3; resource->handle_table = xtrycalloc (resource->handle_table_size, sizeof *resource->handle_table); if (!resource->handle_table) { resource->handle_table_size = 0; xfree (hd); return NULL; } } for (idx=0; idx < resource->handle_table_size; idx++) if (!resource->handle_table[idx]) { resource->handle_table[idx] = hd; break; } if (!(idx < resource->handle_table_size)) { KEYBOX_HANDLE *tmptbl; size_t newsize; newsize = resource->handle_table_size + 5; tmptbl = xtryrealloc (resource->handle_table, newsize * sizeof (*tmptbl)); if (!tmptbl) { xfree (hd); return NULL; } resource->handle_table = tmptbl; resource->handle_table_size = newsize; resource->handle_table[idx] = hd; for (idx++; idx < resource->handle_table_size; idx++) resource->handle_table[idx] = NULL; } } return hd; } /* Create a new handle for the resource associated with TOKEN. SECRET is just a cross-check. This is the OpenPGP version. The returned handle must be released using keybox_release. */ KEYBOX_HANDLE keybox_new_openpgp (void *token, int secret) { KB_NAME resource = token; return do_keybox_new (resource, secret, 1); } /* Create a new handle for the resource associated with TOKEN. SECRET is just a cross-check. This is the X.509 version. The returned handle must be released using keybox_release. */ KEYBOX_HANDLE keybox_new_x509 (void *token, int secret) { KB_NAME resource = token; return do_keybox_new (resource, secret, 0); } void keybox_release (KEYBOX_HANDLE hd) { if (!hd) return; if (hd->kb->handle_table) { int idx; for (idx=0; idx < hd->kb->handle_table_size; idx++) if (hd->kb->handle_table[idx] == hd) hd->kb->handle_table[idx] = NULL; } _keybox_release_blob (hd->found.blob); _keybox_release_blob (hd->saved_found.blob); if (hd->fp) { fclose (hd->fp); hd->fp = NULL; } xfree (hd->word_match.name); xfree (hd->word_match.pattern); xfree (hd); } /* Save the current found state in HD for later retrieval by keybox_restore_found_state. Only one state may be saved. */ void keybox_push_found_state (KEYBOX_HANDLE hd) { if (hd->saved_found.blob) { _keybox_release_blob (hd->saved_found.blob); hd->saved_found.blob = NULL; } hd->saved_found = hd->found; hd->found.blob = NULL; } /* Restore the saved found state in HD. */ void keybox_pop_found_state (KEYBOX_HANDLE hd) { if (hd->found.blob) { _keybox_release_blob (hd->found.blob); hd->found.blob = NULL; } hd->found = hd->saved_found; hd->saved_found.blob = NULL; } const char * keybox_get_resource_name (KEYBOX_HANDLE hd) { if (!hd || !hd->kb) return NULL; return hd->kb->fname; } int keybox_set_ephemeral (KEYBOX_HANDLE hd, int yes) { if (!hd) return gpg_error (GPG_ERR_INV_HANDLE); hd->ephemeral = yes; return 0; } /* Close the file of the resource identified by HD. For consistent results this function closes the files of all handles pointing to the resource identified by HD. */ void _keybox_close_file (KEYBOX_HANDLE hd) { int idx; KEYBOX_HANDLE roverhd; if (!hd || !hd->kb || !hd->kb->handle_table) return; for (idx=0; idx < hd->kb->handle_table_size; idx++) if ((roverhd = hd->kb->handle_table[idx])) { if (roverhd->fp) { fclose (roverhd->fp); roverhd->fp = NULL; } } assert (!hd->fp); } /* * Lock the keybox at handle HD, or unlock if YES is false. TIMEOUT * is the value used for dotlock_take. In general -1 should be used * when taking a lock; use 0 when releasing a lock. */ gpg_error_t keybox_lock (KEYBOX_HANDLE hd, int yes, long timeout) { gpg_error_t err = 0; KB_NAME kb = hd->kb; if (!keybox_is_writable (kb)) return 0; /* Make sure the lock handle has been created. */ if (!kb->lockhd) { kb->lockhd = dotlock_create (kb->fname, 0); if (!kb->lockhd) { err = gpg_error_from_syserror (); log_info ("can't allocate lock for '%s'\n", kb->fname ); return err; } } if (yes) /* Take the lock. */ { if (!kb->is_locked) { #ifdef HAVE_W32_SYSTEM - /* Under Windows we need to close the file before we try - * to lock it. This is because another process might have - * taken the lock and is using keybox_file_rename to - * rename the base file. How if our dotlock_take below is - * waiting for the lock but we have the base file still - * open, keybox_file_rename will never succeed as we are - * in a deadlock. */ - if (hd->fp) - { - fclose (hd->fp); - hd->fp = NULL; - } + /* Under Windows we need to close the file before we try + * to lock it. This is because another process might have + * taken the lock and is using keybox_file_rename to + * rename the base file. Now if our dotlock_take below is + * waiting for the lock but we have the base file still + * open, keybox_file_rename will never succeed as we are + * in a deadlock. */ + _keybox_close_file (hd); #endif /*HAVE_W32_SYSTEM*/ if (dotlock_take (kb->lockhd, timeout)) { err = gpg_error_from_syserror (); if (!timeout && gpg_err_code (err) == GPG_ERR_EACCES) ; /* No diagnostic if we only tried to lock. */ else log_info ("can't lock '%s'\n", kb->fname ); } else kb->is_locked = 1; } } else /* Release the lock. */ { if (kb->is_locked) { if (dotlock_release (kb->lockhd)) { err = gpg_error_from_syserror (); log_info ("can't unlock '%s'\n", kb->fname ); } else kb->is_locked = 0; } } return err; } diff --git a/kbx/keybox-search.c b/kbx/keybox-search.c index 101e1b5ea..1600861a8 100644 --- a/kbx/keybox-search.c +++ b/kbx/keybox-search.c @@ -1,1315 +1,1347 @@ /* keybox-search.c - Search operations * Copyright (C) 2001, 2002, 2003, 2004, 2012, * 2013 Free Software Foundation, Inc. * * 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 #include "keybox-defs.h" #include #include "../common/host2net.h" #include "../common/mbox-util.h" #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)) struct sn_array_s { int snlen; unsigned char *sn; }; #define get32(a) buf32_to_ulong ((a)) #define get16(a) buf16_to_ulong ((a)) static inline unsigned int blob_get_blob_flags (KEYBOXBLOB blob) { const unsigned char *buffer; size_t length; buffer = _keybox_get_blob_image (blob, &length); if (length < 8) return 0; /* oops */ return get16 (buffer + 6); } /* Return the first keyid from the blob. Returns true if available. */ static int blob_get_first_keyid (KEYBOXBLOB blob, u32 *kid) { const unsigned char *buffer; size_t length, nkeys, keyinfolen; int fpr32; buffer = _keybox_get_blob_image (blob, &length); if (length < 48) return 0; /* blob too short */ fpr32 = buffer[5] == 2; if (fpr32 && length < 56) return 0; /* blob to short */ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18); if (!nkeys || keyinfolen < (fpr32?56:28)) return 0; /* invalid blob */ if (fpr32 && (get16 (buffer + 20 + 32) & 0x80)) { /* 32 byte fingerprint. */ kid[0] = get32 (buffer + 20); kid[1] = get32 (buffer + 20 + 4); } else /* 20 byte fingerprint. */ { kid[0] = get32 (buffer + 20 + 12); kid[1] = get32 (buffer + 20 + 16); } return 1; } /* Return information on the flag WHAT within the blob BUFFER,LENGTH. Return the offset and the length (in bytes) of the flag in FLAGOFF,FLAG_SIZE. */ gpg_err_code_t _keybox_get_flag_location (const unsigned char *buffer, size_t length, int what, size_t *flag_off, size_t *flag_size) { size_t pos; size_t nkeys, keyinfolen; size_t nuids, uidinfolen; size_t nserial; size_t nsigs, siginfolen, siginfooff; switch (what) { case KEYBOX_FLAG_BLOB: if (length < 8) return GPG_ERR_INV_OBJ; *flag_off = 6; *flag_size = 2; break; case KEYBOX_FLAG_OWNERTRUST: case KEYBOX_FLAG_VALIDITY: case KEYBOX_FLAG_CREATED_AT: case KEYBOX_FLAG_SIG_INFO: if (length < 20) return GPG_ERR_INV_OBJ; /* Key info. */ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18 ); if (keyinfolen < 28) return GPG_ERR_INV_OBJ; pos = 20 + keyinfolen*nkeys; if (pos+2 > length) return GPG_ERR_INV_OBJ; /* Out of bounds. */ /* Serial number. */ nserial = get16 (buffer+pos); pos += 2 + nserial; if (pos+4 > length) return GPG_ERR_INV_OBJ; /* Out of bounds. */ /* User IDs. */ nuids = get16 (buffer + pos); pos += 2; uidinfolen = get16 (buffer + pos); pos += 2; if (uidinfolen < 12 ) return GPG_ERR_INV_OBJ; pos += uidinfolen*nuids; if (pos+4 > length) return GPG_ERR_INV_OBJ ; /* Out of bounds. */ /* Signature info. */ siginfooff = pos; nsigs = get16 (buffer + pos); pos += 2; siginfolen = get16 (buffer + pos); pos += 2; if (siginfolen < 4 ) return GPG_ERR_INV_OBJ; pos += siginfolen*nsigs; if (pos+1+1+2+4+4+4+4 > length) return GPG_ERR_INV_OBJ ; /* Out of bounds. */ *flag_size = 1; *flag_off = pos; switch (what) { case KEYBOX_FLAG_VALIDITY: *flag_off += 1; break; case KEYBOX_FLAG_CREATED_AT: *flag_size = 4; *flag_off += 1+2+4+4+4; break; case KEYBOX_FLAG_SIG_INFO: *flag_size = siginfolen * nsigs; *flag_off = siginfooff; break; default: break; } break; default: return GPG_ERR_INV_FLAG; } return 0; } /* Return one of the flags WHAT in VALUE from the blob BUFFER of LENGTH bytes. Return 0 on success or an raw error code. */ static gpg_err_code_t get_flag_from_image (const unsigned char *buffer, size_t length, int what, unsigned int *value) { gpg_err_code_t ec; size_t pos, size; *value = 0; ec = _keybox_get_flag_location (buffer, length, what, &pos, &size); if (!ec) switch (size) { case 1: *value = buffer[pos]; break; case 2: *value = get16 (buffer + pos); break; case 4: *value = get32 (buffer + pos); break; default: ec = GPG_ERR_BUG; break; } return ec; } static int blob_cmp_sn (KEYBOXBLOB blob, const unsigned char *sn, int snlen) { const unsigned char *buffer; size_t length; size_t pos, off; size_t nkeys, keyinfolen; size_t nserial; buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* blob too short */ /*keys*/ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18 ); if (keyinfolen < 28) return 0; /* invalid blob */ pos = 20 + keyinfolen*nkeys; if (pos+2 > length) return 0; /* out of bounds */ /*serial*/ nserial = get16 (buffer+pos); off = pos + 2; if (off+nserial > length) return 0; /* out of bounds */ return nserial == snlen && !memcmp (buffer+off, sn, snlen); } /* Returns 0 if not found or the number of the key which was found. For X.509 this is always 1, for OpenPGP this is 1 for the primary key and 2 and more for the subkeys. */ static int blob_cmp_fpr (KEYBOXBLOB blob, const unsigned char *fpr, unsigned int fprlen) { const unsigned char *buffer; size_t length; size_t pos, off; size_t nkeys, keyinfolen; int idx, fpr32, storedfprlen; buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* blob too short */ fpr32 = buffer[5] == 2; /*keys*/ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18 ); if (keyinfolen < (fpr32?56:28)) return 0; /* invalid blob */ pos = 20; if (pos + (uint64_t)keyinfolen*nkeys > (uint64_t)length) return 0; /* out of bounds */ for (idx=0; idx < nkeys; idx++) { off = pos + idx*keyinfolen; if (fpr32) storedfprlen = (get16 (buffer + off + 32) & 0x80)? 32:20; else storedfprlen = 20; if (storedfprlen == fprlen && !memcmp (buffer + off, fpr, storedfprlen)) return idx+1; /* found */ } return 0; /* not found */ } /* Helper for has_short_kid and has_long_kid. */ static int blob_cmp_fpr_part (KEYBOXBLOB blob, const unsigned char *fpr, int fproff, int fprlen) { const unsigned char *buffer; size_t length; size_t pos, off; size_t nkeys, keyinfolen; int idx, fpr32, storedfprlen; buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* blob too short */ fpr32 = buffer[5] == 2; /*keys*/ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18 ); if (keyinfolen < (fpr32?56:28)) return 0; /* invalid blob */ pos = 20; if (pos + (uint64_t)keyinfolen*nkeys > (uint64_t)length) return 0; /* out of bounds */ if (fpr32) fproff = 0; /* keyid are the high-order bits. */ for (idx=0; idx < nkeys; idx++) { off = pos + idx*keyinfolen; if (fpr32) storedfprlen = (get16 (buffer + off + 32) & 0x80)? 32:20; else storedfprlen = 20; if (storedfprlen == fproff + fprlen && !memcmp (buffer + off + fproff, fpr, fprlen)) return idx+1; /* found */ } return 0; /* not found */ } static int blob_cmp_name (KEYBOXBLOB blob, int idx, const char *name, size_t namelen, int substr, int x509) { const unsigned char *buffer; size_t length; size_t pos, off, len; size_t nkeys, keyinfolen; size_t nuids, uidinfolen; size_t nserial; buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* blob too short */ /*keys*/ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18 ); if (keyinfolen < 28) return 0; /* invalid blob */ pos = 20 + keyinfolen*nkeys; if ((uint64_t)pos+2 > (uint64_t)length) return 0; /* out of bounds */ /*serial*/ nserial = get16 (buffer+pos); pos += 2 + nserial; if (pos+4 > length) return 0; /* out of bounds */ /* user ids*/ nuids = get16 (buffer + pos); pos += 2; uidinfolen = get16 (buffer + pos); pos += 2; if (uidinfolen < 12 /* should add a: || nuidinfolen > MAX_UIDINFOLEN */) return 0; /* invalid blob */ if (pos + uidinfolen*nuids > length) return 0; /* out of bounds */ if (idx < 0) { /* Compare all names. Note that for X.509 we start with index 1 so to skip the issuer at index 0. */ for (idx = !!x509; idx < nuids; idx++) { size_t mypos = pos; mypos += idx*uidinfolen; off = get32 (buffer+mypos); len = get32 (buffer+mypos+4); if ((uint64_t)off+(uint64_t)len > (uint64_t)length) return 0; /* error: better stop here out of bounds */ if (len < 1) continue; /* empty name */ if (substr) { if (ascii_memcasemem (buffer+off, len, name, namelen)) return idx+1; /* found */ } else { if (len == namelen && !memcmp (buffer+off, name, len)) return idx+1; /* found */ } } } else { if (idx > nuids) return 0; /* no user ID with that idx */ pos += idx*uidinfolen; off = get32 (buffer+pos); len = get32 (buffer+pos+4); if (off+len > length) return 0; /* out of bounds */ if (len < 1) return 0; /* empty name */ if (substr) { if (ascii_memcasemem (buffer+off, len, name, namelen)) return idx+1; /* found */ } else { if (len == namelen && !memcmp (buffer+off, name, len)) return idx+1; /* found */ } } return 0; /* not found */ } /* Compare all email addresses of the subject. With SUBSTR given as True a substring search is done in the mail address. The X509 flag indicated whether the search is done on an X.509 blob. */ static int blob_cmp_mail (KEYBOXBLOB blob, const char *name, size_t namelen, int substr, int x509) { const unsigned char *buffer; size_t length; size_t pos, off, len; size_t nkeys, keyinfolen; size_t nuids, uidinfolen; size_t nserial; int idx; /* fixme: this code is common to blob_cmp_mail */ buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* blob too short */ /*keys*/ nkeys = get16 (buffer + 16); keyinfolen = get16 (buffer + 18 ); if (keyinfolen < 28) return 0; /* invalid blob */ pos = 20 + keyinfolen*nkeys; if (pos+2 > length) return 0; /* out of bounds */ /*serial*/ nserial = get16 (buffer+pos); pos += 2 + nserial; if (pos+4 > length) return 0; /* out of bounds */ /* user ids*/ nuids = get16 (buffer + pos); pos += 2; uidinfolen = get16 (buffer + pos); pos += 2; if (uidinfolen < 12 /* should add a: || nuidinfolen > MAX_UIDINFOLEN */) return 0; /* invalid blob */ if (pos + uidinfolen*nuids > length) return 0; /* out of bounds */ if (namelen < 1) return 0; /* Note that for X.509 we start at index 1 because index 0 is used for the issuer name. */ for (idx=!!x509 ;idx < nuids; idx++) { size_t mypos = pos; size_t mylen; mypos += idx*uidinfolen; off = get32 (buffer+mypos); len = get32 (buffer+mypos+4); if ((uint64_t)off+(uint64_t)len > (uint64_t)length) return 0; /* error: better stop here - out of bounds */ if (x509) { if (len < 2 || buffer[off] != '<') continue; /* empty name or trailing 0 not stored */ len--; /* one back */ if ( len < 3 || buffer[off+len] != '>') continue; /* not a proper email address */ off++; len--; } else /* OpenPGP. */ { /* We need to forward to the mailbox part. */ mypos = off; mylen = len; for ( ; len && buffer[off] != '<'; len--, off++) ; if (len < 2 || buffer[off] != '<') { /* Mailbox not explicitly given or too short. Restore OFF and LEN and check whether the entire string resembles a mailbox without the angle brackets. */ off = mypos; len = mylen; if (!is_valid_mailbox_mem (buffer+off, len)) continue; /* Not a mail address. */ } else /* Seems to be standard user id with mail address. */ { off++; /* Point to first char of the mail address. */ len--; /* Search closing '>'. */ for (mypos=off; len && buffer[mypos] != '>'; len--, mypos++) ; if (!len || buffer[mypos] != '>' || off == mypos) continue; /* Not a proper mail address. */ len = mypos - off; } } if (substr) { if (ascii_memcasemem (buffer+off, len, name, namelen)) return idx+1; /* found */ } else { if (len == namelen && !ascii_memcasecmp (buffer+off, name, len)) return idx+1; /* found */ } } return 0; /* not found */ } /* Return true if the key in BLOB matches the 20 bytes keygrip GRIP. * We don't have the keygrips as meta data, thus we need to parse the * certificate. Fixme: We might want to return proper error codes * instead of failing a search for invalid certificates etc. */ static int blob_openpgp_has_grip (KEYBOXBLOB blob, const unsigned char *grip) { int rc = 0; const unsigned char *buffer; size_t length; size_t cert_off, cert_len; struct _keybox_openpgp_info info; struct _keybox_openpgp_key_info *k; buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* Too short. */ cert_off = get32 (buffer+8); cert_len = get32 (buffer+12); if ((uint64_t)cert_off+(uint64_t)cert_len > (uint64_t)length) return 0; /* Too short. */ if (_keybox_parse_openpgp (buffer + cert_off, cert_len, NULL, &info)) return 0; /* Parse error. */ if (!memcmp (info.primary.grip, grip, 20)) { rc = 1; goto leave; } if (info.nsubkeys) { k = &info.subkeys; do { if (!memcmp (k->grip, grip, 20)) { rc = 1; goto leave; } k = k->next; } while (k); } leave: _keybox_destroy_openpgp_info (&info); return rc; } #ifdef KEYBOX_WITH_X509 /* Return true if the key in BLOB matches the 20 bytes keygrip GRIP. We don't have the keygrips as meta data, thus we need to parse the certificate. Fixme: We might want to return proper error codes instead of failing a search for invalid certificates etc. */ static int blob_x509_has_grip (KEYBOXBLOB blob, const unsigned char *grip) { int rc; const unsigned char *buffer; size_t length; size_t cert_off, cert_len; ksba_reader_t reader = NULL; ksba_cert_t cert = NULL; ksba_sexp_t p = NULL; gcry_sexp_t s_pkey; unsigned char array[20]; unsigned char *rcp; size_t n; buffer = _keybox_get_blob_image (blob, &length); if (length < 40) return 0; /* Too short. */ cert_off = get32 (buffer+8); cert_len = get32 (buffer+12); if ((uint64_t)cert_off+(uint64_t)cert_len > (uint64_t)length) return 0; /* Too short. */ rc = ksba_reader_new (&reader); if (rc) return 0; /* Problem with ksba. */ rc = ksba_reader_set_mem (reader, buffer+cert_off, cert_len); if (rc) goto failed; rc = ksba_cert_new (&cert); if (rc) goto failed; rc = ksba_cert_read_der (cert, reader); if (rc) goto failed; p = ksba_cert_get_public_key (cert); if (!p) goto failed; n = gcry_sexp_canon_len (p, 0, NULL, NULL); if (!n) goto failed; rc = gcry_sexp_sscan (&s_pkey, NULL, (char*)p, n); if (rc) { gcry_sexp_release (s_pkey); goto failed; } rcp = gcry_pk_get_keygrip (s_pkey, array); gcry_sexp_release (s_pkey); if (!rcp) goto failed; /* Can't calculate keygrip. */ xfree (p); ksba_cert_release (cert); ksba_reader_release (reader); return !memcmp (array, grip, 20); failed: xfree (p); ksba_cert_release (cert); ksba_reader_release (reader); return 0; } #endif /*KEYBOX_WITH_X509*/ /* The has_foo functions are used as helpers for search */ static inline int has_short_kid (KEYBOXBLOB blob, u32 lkid) { unsigned char buf[4]; buf[0] = lkid >> 24; buf[1] = lkid >> 16; buf[2] = lkid >> 8; buf[3] = lkid; return blob_cmp_fpr_part (blob, buf, 16, 4); } static inline int has_long_kid (KEYBOXBLOB blob, u32 mkid, u32 lkid) { unsigned char buf[8]; buf[0] = mkid >> 24; buf[1] = mkid >> 16; buf[2] = mkid >> 8; buf[3] = mkid; buf[4] = lkid >> 24; buf[5] = lkid >> 16; buf[6] = lkid >> 8; buf[7] = lkid; return blob_cmp_fpr_part (blob, buf, 12, 8); } static inline int has_fingerprint (KEYBOXBLOB blob, const unsigned char *fpr, unsigned int fprlen) { return blob_cmp_fpr (blob, fpr, fprlen); } static inline int has_keygrip (KEYBOXBLOB blob, const unsigned char *grip) { if (blob_get_type (blob) == KEYBOX_BLOBTYPE_PGP) return blob_openpgp_has_grip (blob, grip); #ifdef KEYBOX_WITH_X509 if (blob_get_type (blob) == KEYBOX_BLOBTYPE_X509) return blob_x509_has_grip (blob, grip); #endif return 0; } static inline int has_issuer (KEYBOXBLOB blob, const char *name) { size_t namelen; return_val_if_fail (name, 0); if (blob_get_type (blob) != KEYBOX_BLOBTYPE_X509) return 0; namelen = strlen (name); return blob_cmp_name (blob, 0 /* issuer */, name, namelen, 0, 1); } static inline int has_issuer_sn (KEYBOXBLOB blob, const char *name, const unsigned char *sn, int snlen) { size_t namelen; return_val_if_fail (name, 0); return_val_if_fail (sn, 0); if (blob_get_type (blob) != KEYBOX_BLOBTYPE_X509) return 0; namelen = strlen (name); return (blob_cmp_sn (blob, sn, snlen) && blob_cmp_name (blob, 0 /* issuer */, name, namelen, 0, 1)); } static inline int has_sn (KEYBOXBLOB blob, const unsigned char *sn, int snlen) { return_val_if_fail (sn, 0); if (blob_get_type (blob) != KEYBOX_BLOBTYPE_X509) return 0; return blob_cmp_sn (blob, sn, snlen); } static inline int has_subject (KEYBOXBLOB blob, const char *name) { size_t namelen; return_val_if_fail (name, 0); if (blob_get_type (blob) != KEYBOX_BLOBTYPE_X509) return 0; namelen = strlen (name); return blob_cmp_name (blob, 1 /* subject */, name, namelen, 0, 1); } static inline int has_username (KEYBOXBLOB blob, const char *name, int substr) { size_t namelen; int btype; return_val_if_fail (name, 0); btype = blob_get_type (blob); if (btype != KEYBOX_BLOBTYPE_PGP && btype != KEYBOX_BLOBTYPE_X509) return 0; namelen = strlen (name); return blob_cmp_name (blob, -1 /* all subject/user names */, name, namelen, substr, (btype == KEYBOX_BLOBTYPE_X509)); } static inline int has_mail (KEYBOXBLOB blob, const char *name, int substr) { size_t namelen; int btype; return_val_if_fail (name, 0); btype = blob_get_type (blob); if (btype != KEYBOX_BLOBTYPE_PGP && btype != KEYBOX_BLOBTYPE_X509) return 0; if (btype == KEYBOX_BLOBTYPE_PGP && *name == '<') name++; /* Hack to remove the leading '<' for gpg. */ namelen = strlen (name); if (namelen && name[namelen-1] == '>') namelen--; return blob_cmp_mail (blob, name, namelen, substr, (btype == KEYBOX_BLOBTYPE_X509)); } static void release_sn_array (struct sn_array_s *array, size_t size) { size_t n; for (n=0; n < size; n++) xfree (array[n].sn); xfree (array); } /* Helper to open the file. */ static gpg_error_t open_file (KEYBOX_HANDLE hd) { hd->fp = fopen (hd->kb->fname, "rb"); if (!hd->fp) { hd->error = gpg_error_from_syserror (); return hd->error; } return 0; } /* The search API */ gpg_error_t keybox_search_reset (KEYBOX_HANDLE hd) { if (!hd) return gpg_error (GPG_ERR_INV_VALUE); if (hd->found.blob) { _keybox_release_blob (hd->found.blob); hd->found.blob = NULL; } if (hd->fp) { if (fseeko (hd->fp, 0, SEEK_SET)) { /* Ooops. Seek did not work. Close so that the search will * open the file again. */ fclose (hd->fp); hd->fp = NULL; } } hd->error = 0; hd->eof = 0; return 0; } /* Note: When in ephemeral mode the search function does visit all blobs but in standard mode, blobs flagged as ephemeral are ignored. If WANT_BLOBTYPE is not 0 only blobs of this type are considered. The value at R_SKIPPED is updated by the number of skipped long records (counts PGP and X.509). */ gpg_error_t keybox_search (KEYBOX_HANDLE hd, KEYBOX_SEARCH_DESC *desc, size_t ndesc, keybox_blobtype_t want_blobtype, size_t *r_descindex, unsigned long *r_skipped) { gpg_error_t rc; size_t n; int need_words, any_skip; KEYBOXBLOB blob = NULL; struct sn_array_s *sn_array = NULL; int pk_no, uid_no; + off_t lastfoundoff; if (!hd) return gpg_error (GPG_ERR_INV_VALUE); - /* clear last found result */ + /* Clear last found result but reord the offset of the last found + * blob which we may need later. */ if (hd->found.blob) { + lastfoundoff = _keybox_get_blob_fileoffset (hd->found.blob); _keybox_release_blob (hd->found.blob); hd->found.blob = NULL; } + else + lastfoundoff = 0; if (hd->error) return hd->error; /* still in error state */ if (hd->eof) return -1; /* still EOF */ /* figure out what information we need */ need_words = any_skip = 0; for (n=0; n < ndesc; n++) { switch (desc[n].mode) { case KEYDB_SEARCH_MODE_WORDS: need_words = 1; break; case KEYDB_SEARCH_MODE_FIRST: /* always restart the search in this mode */ keybox_search_reset (hd); + lastfoundoff = 0; break; default: break; } if (desc[n].skipfnc) any_skip = 1; if (desc[n].snlen == -1 && !sn_array) { sn_array = xtrycalloc (ndesc, sizeof *sn_array); if (!sn_array) return (hd->error = gpg_error_from_syserror ()); } } (void)need_words; /* Not yet implemented. */ if (!hd->fp) { rc = open_file (hd); if (rc) { xfree (sn_array); return rc; } + /* log_debug ("%s: re-opened file\n", __func__); */ + if (ndesc && desc[0].mode == KEYDB_SEARCH_MODE_NEXT && lastfoundoff) + { + /* Search mode is next and the last search operation + * returned a blob which also was not the first one. We now + * need to skip over that blob and hope that the file has + * not changed. */ + if (fseeko (hd->fp, lastfoundoff, SEEK_SET)) + { + rc = gpg_error_from_syserror (); + log_debug ("%s: seeking to last found offset failed: %s\n", + __func__, gpg_strerror (rc)); + xfree (sn_array); + return gpg_error (GPG_ERR_NOTHING_FOUND); + } + /* log_debug ("%s: re-opened file and sought to last offset\n", */ + /* __func__); */ + rc = _keybox_read_blob (NULL, hd->fp, NULL); + if (rc) + { + log_debug ("%s: skipping last found blob failed: %s\n", + __func__, gpg_strerror (rc)); + xfree (sn_array); + return gpg_error (GPG_ERR_NOTHING_FOUND); + } + } } /* Kludge: We need to convert an SN given as hexstring to its binary representation - in some cases we are not able to store it in the search descriptor, because due to the way we use it, it is not possible to free allocated memory. */ if (sn_array) { const unsigned char *s; int i, odd; size_t snlen; for (n=0; n < ndesc; n++) { if (!desc[n].sn) ; else if (desc[n].snlen == -1) { unsigned char *sn; s = desc[n].sn; for (i=0; *s && *s != '/'; s++, i++) ; odd = (i & 1); snlen = (i+1)/2; sn_array[n].sn = xtrymalloc (snlen); if (!sn_array[n].sn) { hd->error = gpg_error_from_syserror (); release_sn_array (sn_array, n); return hd->error; } sn_array[n].snlen = snlen; sn = sn_array[n].sn; s = desc[n].sn; if (odd) { *sn++ = xtoi_1 (s); s++; } for (; *s && *s != '/'; s += 2) *sn++ = xtoi_2 (s); } else { const unsigned char *sn; sn = desc[n].sn; snlen = desc[n].snlen; sn_array[n].sn = xtrymalloc (snlen); if (!sn_array[n].sn) { hd->error = gpg_error_from_syserror (); release_sn_array (sn_array, n); return hd->error; } sn_array[n].snlen = snlen; memcpy (sn_array[n].sn, sn, snlen); } } } pk_no = uid_no = 0; for (;;) { unsigned int blobflags; int blobtype; _keybox_release_blob (blob); blob = NULL; rc = _keybox_read_blob (&blob, hd->fp, NULL); if (gpg_err_code (rc) == GPG_ERR_TOO_LARGE && gpg_err_source (rc) == GPG_ERR_SOURCE_KEYBOX) { ++*r_skipped; continue; /* Skip too large records. */ } if (rc) break; blobtype = blob_get_type (blob); if (blobtype == KEYBOX_BLOBTYPE_HEADER) continue; if (want_blobtype && blobtype != want_blobtype) continue; blobflags = blob_get_blob_flags (blob); if (!hd->ephemeral && (blobflags & 2)) continue; /* Not in ephemeral mode but blob is flagged ephemeral. */ for (n=0; n < ndesc; n++) { switch (desc[n].mode) { case KEYDB_SEARCH_MODE_NONE: never_reached (); break; case KEYDB_SEARCH_MODE_EXACT: uid_no = has_username (blob, desc[n].u.name, 0); if (uid_no) goto found; break; case KEYDB_SEARCH_MODE_MAIL: uid_no = has_mail (blob, desc[n].u.name, 0); if (uid_no) goto found; break; case KEYDB_SEARCH_MODE_MAILSUB: uid_no = has_mail (blob, desc[n].u.name, 1); if (uid_no) goto found; break; case KEYDB_SEARCH_MODE_SUBSTR: uid_no = has_username (blob, desc[n].u.name, 1); if (uid_no) goto found; break; case KEYDB_SEARCH_MODE_MAILEND: case KEYDB_SEARCH_MODE_WORDS: /* not yet implemented */ break; case KEYDB_SEARCH_MODE_ISSUER: if (has_issuer (blob, desc[n].u.name)) goto found; break; case KEYDB_SEARCH_MODE_ISSUER_SN: if (has_issuer_sn (blob, desc[n].u.name, sn_array? sn_array[n].sn : desc[n].sn, sn_array? sn_array[n].snlen : desc[n].snlen)) goto found; break; case KEYDB_SEARCH_MODE_SN: if (has_sn (blob, sn_array? sn_array[n].sn : desc[n].sn, sn_array? sn_array[n].snlen : desc[n].snlen)) goto found; break; case KEYDB_SEARCH_MODE_SUBJECT: if (has_subject (blob, desc[n].u.name)) goto found; break; case KEYDB_SEARCH_MODE_SHORT_KID: pk_no = has_short_kid (blob, desc[n].u.kid[1]); if (pk_no) goto found; break; case KEYDB_SEARCH_MODE_LONG_KID: pk_no = has_long_kid (blob, desc[n].u.kid[0], desc[n].u.kid[1]); if (pk_no) goto found; break; case KEYDB_SEARCH_MODE_FPR: pk_no = has_fingerprint (blob, desc[n].u.fpr, desc[n].fprlen); if (pk_no) goto found; break; case KEYDB_SEARCH_MODE_KEYGRIP: if (has_keygrip (blob, desc[n].u.grip)) goto found; break; case KEYDB_SEARCH_MODE_FIRST: goto found; break; case KEYDB_SEARCH_MODE_NEXT: goto found; break; default: rc = gpg_error (GPG_ERR_INV_VALUE); goto found; } } continue; found: /* Record which DESC we matched on. Note this value is only meaningful if this function returns with no errors. */ if(r_descindex) *r_descindex = n; for (n=any_skip?0:ndesc; n < ndesc; n++) { u32 kid[2]; if (desc[n].skipfnc && blob_get_first_keyid (blob, kid) && desc[n].skipfnc (desc[n].skipfncvalue, kid, uid_no)) break; } if (n == ndesc) break; /* got it */ } if (!rc) { hd->found.blob = blob; hd->found.pk_no = pk_no; hd->found.uid_no = uid_no; } else if (rc == -1 || gpg_err_code (rc) == GPG_ERR_EOF) { _keybox_release_blob (blob); hd->eof = 1; } else { _keybox_release_blob (blob); hd->error = rc; } if (sn_array) release_sn_array (sn_array, ndesc); return rc; } /* Functions to return a certificate or a keyblock. To be used after a successful search operation. */ /* Return the last found keyblock. Returns 0 on success and stores a * new iobuf at R_IOBUF. R_UID_NO and R_PK_NO are used to return the * number of the key or user id which was matched the search criteria; * if not known they are set to 0. */ gpg_error_t keybox_get_keyblock (KEYBOX_HANDLE hd, iobuf_t *r_iobuf, int *r_pk_no, int *r_uid_no) { gpg_error_t err; const unsigned char *buffer; size_t length; size_t image_off, image_len; size_t siginfo_off, siginfo_len; *r_iobuf = NULL; if (!hd) return gpg_error (GPG_ERR_INV_VALUE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); if (blob_get_type (hd->found.blob) != KEYBOX_BLOBTYPE_PGP) return gpg_error (GPG_ERR_WRONG_BLOB_TYPE); buffer = _keybox_get_blob_image (hd->found.blob, &length); if (length < 40) return gpg_error (GPG_ERR_TOO_SHORT); image_off = get32 (buffer+8); image_len = get32 (buffer+12); if ((uint64_t)image_off+(uint64_t)image_len > (uint64_t)length) return gpg_error (GPG_ERR_TOO_SHORT); err = _keybox_get_flag_location (buffer, length, KEYBOX_FLAG_SIG_INFO, &siginfo_off, &siginfo_len); if (err) return err; *r_pk_no = hd->found.pk_no; *r_uid_no = hd->found.uid_no; *r_iobuf = iobuf_temp_with_content (buffer+image_off, image_len); return 0; } #ifdef KEYBOX_WITH_X509 /* Return the last found cert. Caller must free it. */ int keybox_get_cert (KEYBOX_HANDLE hd, ksba_cert_t *r_cert) { const unsigned char *buffer; size_t length; size_t cert_off, cert_len; ksba_reader_t reader = NULL; ksba_cert_t cert = NULL; int rc; if (!hd) return gpg_error (GPG_ERR_INV_VALUE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); if (blob_get_type (hd->found.blob) != KEYBOX_BLOBTYPE_X509) return gpg_error (GPG_ERR_WRONG_BLOB_TYPE); buffer = _keybox_get_blob_image (hd->found.blob, &length); if (length < 40) return gpg_error (GPG_ERR_TOO_SHORT); cert_off = get32 (buffer+8); cert_len = get32 (buffer+12); if ((uint64_t)cert_off+(uint64_t)cert_len > (uint64_t)length) return gpg_error (GPG_ERR_TOO_SHORT); rc = ksba_reader_new (&reader); if (rc) return rc; rc = ksba_reader_set_mem (reader, buffer+cert_off, cert_len); if (rc) { ksba_reader_release (reader); /* fixme: need to map the error codes */ return gpg_error (GPG_ERR_GENERAL); } rc = ksba_cert_new (&cert); if (rc) { ksba_reader_release (reader); return rc; } rc = ksba_cert_read_der (cert, reader); if (rc) { ksba_cert_release (cert); ksba_reader_release (reader); /* fixme: need to map the error codes */ return gpg_error (GPG_ERR_GENERAL); } *r_cert = cert; ksba_reader_release (reader); return 0; } #endif /*KEYBOX_WITH_X509*/ /* Return the flags named WHAT at the address of VALUE. IDX is used only for certain flags and should be 0 if not required. */ int keybox_get_flags (KEYBOX_HANDLE hd, int what, int idx, unsigned int *value) { const unsigned char *buffer; size_t length; gpg_err_code_t ec; (void)idx; /* Not yet used. */ if (!hd) return gpg_error (GPG_ERR_INV_VALUE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); buffer = _keybox_get_blob_image (hd->found.blob, &length); ec = get_flag_from_image (buffer, length, what, value); return ec? gpg_error (ec):0; } off_t keybox_offset (KEYBOX_HANDLE hd) { if (!hd->fp) return 0; return ftello (hd->fp); } gpg_error_t keybox_seek (KEYBOX_HANDLE hd, off_t offset) { gpg_error_t err; if (hd->error) return hd->error; /* still in error state */ if (! hd->fp) { if (!offset) { /* No need to open the file. An unopened file is effectively at offset 0. */ return 0; } err = open_file (hd); if (err) return err; } err = fseeko (hd->fp, offset, SEEK_SET); hd->error = gpg_error_from_errno (err); return hd->error; } diff --git a/kbx/keybox-update.c b/kbx/keybox-update.c index 580330f52..e09fefc41 100644 --- a/kbx/keybox-update.c +++ b/kbx/keybox-update.c @@ -1,797 +1,797 @@ /* keybox-update.c - keybox update operations * Copyright (C) 2001, 2003, 2004, 2012 Free Software Foundation, Inc. * * 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 #include #include #include "keybox-defs.h" #include "../common/sysutils.h" #include "../common/host2net.h" #include "../common/utilproto.h" #define EXTSEP_S "." #define FILECOPY_INSERT 1 #define FILECOPY_DELETE 2 #define FILECOPY_UPDATE 3 #if !defined(HAVE_FSEEKO) && !defined(fseeko) #ifdef HAVE_LIMITS_H # include #endif #ifndef LONG_MAX # define LONG_MAX ((long) ((unsigned long) -1 >> 1)) #endif #ifndef LONG_MIN # define LONG_MIN (-1 - LONG_MAX) #endif /**************** * A substitute for fseeko, for hosts that don't have it. */ static int fseeko (FILE * stream, off_t newpos, int whence) { while (newpos != (long) newpos) { long pos = newpos < 0 ? LONG_MIN : LONG_MAX; if (fseek (stream, pos, whence) != 0) return -1; newpos -= pos; whence = SEEK_CUR; } return fseek (stream, (long) newpos, whence); } #endif /* !defined(HAVE_FSEEKO) && !defined(fseeko) */ static int create_tmp_file (const char *template, char **r_bakfname, char **r_tmpfname, FILE **r_fp) { gpg_error_t err; err = keybox_tmp_names (template, 0, r_bakfname, r_tmpfname); if (!err) { *r_fp = fopen (*r_tmpfname, "wb"); if (!*r_fp) { err = gpg_error_from_syserror (); xfree (*r_tmpfname); *r_tmpfname = NULL; xfree (*r_bakfname); *r_bakfname = NULL; } } return err; } static int rename_tmp_file (const char *bakfname, const char *tmpfname, const char *fname, int secret ) { int rc=0; int block = 0; /* restrict the permissions for secret keyboxs */ #ifndef HAVE_DOSISH_SYSTEM /* if (secret && !opt.preserve_permissions) */ /* { */ /* if (chmod (tmpfname, S_IRUSR | S_IWUSR) ) */ /* { */ /* log_debug ("chmod of '%s' failed: %s\n", */ /* tmpfname, strerror(errno) ); */ /* return KEYBOX_Write_File; */ /* } */ /* } */ #endif /* fixme: invalidate close caches (not used with stdio)*/ /* iobuf_ioctl (NULL, IOBUF_IOCTL_INVALIDATE_CACHE, 0, (char*)tmpfname ); */ /* iobuf_ioctl (NULL, IOBUF_IOCTL_INVALIDATE_CACHE, 0, (char*)bakfname ); */ /* iobuf_ioctl (NULL, IOBUF_IOCTL_INVALIDATE_CACHE, 0, (char*)fname ); */ /* First make a backup file except for secret keyboxes. */ if (!secret) { block = 1; rc = gnupg_rename_file (fname, bakfname, &block); if (rc) goto leave; } /* Then rename the file. */ rc = gnupg_rename_file (tmpfname, fname, NULL); if (block) { gnupg_unblock_all_signals (); block = 0; } /* if (rc) */ /* { */ /* if (secret) */ /* { */ /* log_info ("WARNING: 2 files with confidential" */ /* " information exists.\n"); */ /* log_info ("%s is the unchanged one\n", fname ); */ /* log_info ("%s is the new one\n", tmpfname ); */ /* log_info ("Please fix this possible security flaw\n"); */ /* } */ /* } */ leave: if (block) gnupg_unblock_all_signals (); return rc; } /* Perform insert/delete/update operation. MODE is one of FILECOPY_INSERT, FILECOPY_DELETE, FILECOPY_UPDATE. FOR_OPENPGP indicates that this is called due to an OpenPGP keyblock change. */ static int blob_filecopy (int mode, const char *fname, KEYBOXBLOB blob, int secret, int for_openpgp, off_t start_offset) { FILE *fp, *newfp; int rc=0; char *bakfname = NULL; char *tmpfname = NULL; char buffer[4096]; /* (Must be at least 32 bytes) */ int nread, nbytes; /* Open the source file. Because we do a rename, we have to check the permissions of the file */ if (access (fname, W_OK)) return gpg_error_from_syserror (); fp = fopen (fname, "rb"); if (mode == FILECOPY_INSERT && !fp && errno == ENOENT) { /* Insert mode but file does not exist: Create a new keybox file. */ newfp = fopen (fname, "wb"); if (!newfp ) return gpg_error_from_syserror (); rc = _keybox_write_header_blob (newfp, for_openpgp); if (rc) { fclose (newfp); return rc; } rc = _keybox_write_blob (blob, newfp); if (rc) { fclose (newfp); return rc; } if ( fclose (newfp) ) return gpg_error_from_syserror (); /* if (chmod( fname, S_IRUSR | S_IWUSR )) */ /* { */ /* log_debug ("%s: chmod failed: %s\n", fname, strerror(errno) ); */ /* return KEYBOX_File_Error; */ /* } */ return 0; /* Ready. */ } if (!fp) { rc = gpg_error_from_syserror (); goto leave; } /* Create the new file. On success NEWFP is initialized. */ rc = create_tmp_file (fname, &bakfname, &tmpfname, &newfp); if (rc) { fclose (fp); goto leave; } /* prepare for insert */ if (mode == FILECOPY_INSERT) { int first_record = 1; /* Copy everything to the new file. If this is for OpenPGP, we make sure that the openpgp flag is set in the header. (We failsafe the blob type.) */ while ( (nread = fread (buffer, 1, DIM(buffer), fp)) > 0 ) { if (first_record && for_openpgp && buffer[4] == KEYBOX_BLOBTYPE_HEADER) { first_record = 0; buffer[7] |= 0x02; /* OpenPGP data may be available. */ } if (fwrite (buffer, nread, 1, newfp) != 1) { rc = gpg_error_from_syserror (); fclose (fp); fclose (newfp); goto leave; } } if (ferror (fp)) { rc = gpg_error_from_syserror (); fclose (fp); fclose (newfp); goto leave; } } /* Prepare for delete or update. */ if ( mode == FILECOPY_DELETE || mode == FILECOPY_UPDATE ) { off_t current = 0; /* Copy first part to the new file. */ while ( current < start_offset ) { nbytes = DIM(buffer); if (current + nbytes > start_offset) nbytes = start_offset - current; nread = fread (buffer, 1, nbytes, fp); if (!nread) break; current += nread; if (fwrite (buffer, nread, 1, newfp) != 1) { rc = gpg_error_from_syserror (); fclose (fp); fclose (newfp); goto leave; } } if (ferror (fp)) { rc = gpg_error_from_syserror (); fclose (fp); fclose (newfp); goto leave; } /* Skip this blob. */ rc = _keybox_read_blob (NULL, fp, NULL); if (rc) { fclose (fp); fclose (newfp); return rc; } } /* Do an insert or update. */ if ( mode == FILECOPY_INSERT || mode == FILECOPY_UPDATE ) { rc = _keybox_write_blob (blob, newfp); if (rc) { fclose (fp); fclose (newfp); return rc; } } /* Copy the rest of the packet for an delete or update. */ if (mode == FILECOPY_DELETE || mode == FILECOPY_UPDATE) { while ( (nread = fread (buffer, 1, DIM(buffer), fp)) > 0 ) { if (fwrite (buffer, nread, 1, newfp) != 1) { rc = gpg_error_from_syserror (); fclose (fp); fclose (newfp); goto leave; } } if (ferror (fp)) { rc = gpg_error_from_syserror (); fclose (fp); fclose (newfp); goto leave; } } /* Close both files. */ if (fclose(fp)) { rc = gpg_error_from_syserror (); fclose (newfp); goto leave; } if (fclose(newfp)) { rc = gpg_error_from_syserror (); goto leave; } rc = rename_tmp_file (bakfname, tmpfname, fname, secret); leave: xfree(bakfname); xfree(tmpfname); return rc; } /* Insert the OpenPGP keyblock {IMAGE,IMAGELEN} into HD. */ gpg_error_t keybox_insert_keyblock (KEYBOX_HANDLE hd, const void *image, size_t imagelen) { gpg_error_t err; const char *fname; KEYBOXBLOB blob; size_t nparsed; struct _keybox_openpgp_info info; if (!hd) return gpg_error (GPG_ERR_INV_HANDLE); if (!hd->kb) return gpg_error (GPG_ERR_INV_HANDLE); fname = hd->kb->fname; if (!fname) return gpg_error (GPG_ERR_INV_HANDLE); /* Close this one otherwise we will mess up the position for a next search. Fixme: it would be better to adjust the position after the write operation. */ _keybox_close_file (hd); err = _keybox_parse_openpgp (image, imagelen, &nparsed, &info); if (err) return err; assert (nparsed <= imagelen); err = _keybox_create_openpgp_blob (&blob, &info, image, imagelen, hd->ephemeral); _keybox_destroy_openpgp_info (&info); if (!err) { err = blob_filecopy (FILECOPY_INSERT, fname, blob, hd->secret, 1, 0); _keybox_release_blob (blob); /* if (!rc && !hd->secret && kb_offtbl) */ /* { */ /* update_offset_hash_table_from_kb (kb_offtbl, kb, 0); */ /* } */ } return err; } /* Update the current key at HD with the given OpenPGP keyblock in {IMAGE,IMAGELEN}. */ gpg_error_t keybox_update_keyblock (KEYBOX_HANDLE hd, const void *image, size_t imagelen) { gpg_error_t err; const char *fname; off_t off; KEYBOXBLOB blob; size_t nparsed; struct _keybox_openpgp_info info; if (!hd || !image || !imagelen) return gpg_error (GPG_ERR_INV_VALUE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); if (blob_get_type (hd->found.blob) != KEYBOX_BLOBTYPE_PGP) return gpg_error (GPG_ERR_WRONG_BLOB_TYPE); fname = hd->kb->fname; if (!fname) return gpg_error (GPG_ERR_INV_HANDLE); off = _keybox_get_blob_fileoffset (hd->found.blob); if (off == (off_t)-1) return gpg_error (GPG_ERR_GENERAL); - /* Close this the file so that we do no mess up the position for a + /* Close the file so that we do no mess up the position for a next search. */ _keybox_close_file (hd); /* Build a new blob. */ err = _keybox_parse_openpgp (image, imagelen, &nparsed, &info); if (err) return err; assert (nparsed <= imagelen); err = _keybox_create_openpgp_blob (&blob, &info, image, imagelen, hd->ephemeral); _keybox_destroy_openpgp_info (&info); /* Update the keyblock. */ if (!err) { err = blob_filecopy (FILECOPY_UPDATE, fname, blob, hd->secret, 1, off); _keybox_release_blob (blob); } return err; } #ifdef KEYBOX_WITH_X509 int keybox_insert_cert (KEYBOX_HANDLE hd, ksba_cert_t cert, unsigned char *sha1_digest) { int rc; const char *fname; KEYBOXBLOB blob; if (!hd) return gpg_error (GPG_ERR_INV_HANDLE); if (!hd->kb) return gpg_error (GPG_ERR_INV_HANDLE); fname = hd->kb->fname; if (!fname) return gpg_error (GPG_ERR_INV_HANDLE); /* Close this one otherwise we will mess up the position for a next search. Fixme: it would be better to adjust the position after the write operation. */ _keybox_close_file (hd); rc = _keybox_create_x509_blob (&blob, cert, sha1_digest, hd->ephemeral); if (!rc) { rc = blob_filecopy (FILECOPY_INSERT, fname, blob, hd->secret, 0, 0); _keybox_release_blob (blob); /* if (!rc && !hd->secret && kb_offtbl) */ /* { */ /* update_offset_hash_table_from_kb (kb_offtbl, kb, 0); */ /* } */ } return rc; } int keybox_update_cert (KEYBOX_HANDLE hd, ksba_cert_t cert, unsigned char *sha1_digest) { (void)hd; (void)cert; (void)sha1_digest; return -1; } #endif /*KEYBOX_WITH_X509*/ /* Note: We assume that the keybox has been locked before the current search was executed. This is needed so that we can depend on the offset information of the flags. */ int keybox_set_flags (KEYBOX_HANDLE hd, int what, int idx, unsigned int value) { off_t off; const char *fname; FILE *fp; gpg_err_code_t ec; size_t flag_pos, flag_size; const unsigned char *buffer; size_t length; (void)idx; /* Not yet used. */ if (!hd) return gpg_error (GPG_ERR_INV_VALUE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); if (!hd->kb) return gpg_error (GPG_ERR_INV_HANDLE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); fname = hd->kb->fname; if (!fname) return gpg_error (GPG_ERR_INV_HANDLE); off = _keybox_get_blob_fileoffset (hd->found.blob); if (off == (off_t)-1) return gpg_error (GPG_ERR_GENERAL); buffer = _keybox_get_blob_image (hd->found.blob, &length); ec = _keybox_get_flag_location (buffer, length, what, &flag_pos, &flag_size); if (ec) return gpg_error (ec); off += flag_pos; _keybox_close_file (hd); fp = fopen (hd->kb->fname, "r+b"); if (!fp) return gpg_error_from_syserror (); ec = 0; if (fseeko (fp, off, SEEK_SET)) ec = gpg_err_code_from_syserror (); else { unsigned char tmp[4]; tmp[0] = value >> 24; tmp[1] = value >> 16; tmp[2] = value >> 8; tmp[3] = value; switch (flag_size) { case 1: case 2: case 4: if (fwrite (tmp+4-flag_size, flag_size, 1, fp) != 1) ec = gpg_err_code_from_syserror (); break; default: ec = GPG_ERR_BUG; break; } } if (fclose (fp)) { if (!ec) ec = gpg_err_code_from_syserror (); } return gpg_error (ec); } int keybox_delete (KEYBOX_HANDLE hd) { off_t off; const char *fname; FILE *fp; int rc; if (!hd) return gpg_error (GPG_ERR_INV_VALUE); if (!hd->found.blob) return gpg_error (GPG_ERR_NOTHING_FOUND); if (!hd->kb) return gpg_error (GPG_ERR_INV_HANDLE); fname = hd->kb->fname; if (!fname) return gpg_error (GPG_ERR_INV_HANDLE); off = _keybox_get_blob_fileoffset (hd->found.blob); if (off == (off_t)-1) return gpg_error (GPG_ERR_GENERAL); off += 4; _keybox_close_file (hd); fp = fopen (hd->kb->fname, "r+b"); if (!fp) return gpg_error_from_syserror (); if (fseeko (fp, off, SEEK_SET)) rc = gpg_error_from_syserror (); else if (putc (0, fp) == EOF) rc = gpg_error_from_syserror (); else rc = 0; if (fclose (fp)) { if (!rc) rc = gpg_error_from_syserror (); } return rc; } /* Compress the keybox file. This should be run with the file locked. */ int keybox_compress (KEYBOX_HANDLE hd) { int read_rc, rc; const char *fname; FILE *fp, *newfp; char *bakfname = NULL; char *tmpfname = NULL; int first_blob; KEYBOXBLOB blob = NULL; u32 cut_time; int any_changes = 0; int skipped_deleted; if (!hd) return gpg_error (GPG_ERR_INV_HANDLE); if (!hd->kb) return gpg_error (GPG_ERR_INV_HANDLE); if (hd->secret) return gpg_error (GPG_ERR_NOT_IMPLEMENTED); fname = hd->kb->fname; if (!fname) return gpg_error (GPG_ERR_INV_HANDLE); _keybox_close_file (hd); /* Open the source file. Because we do a rename, we have to check the permissions of the file */ if (access (fname, W_OK)) return gpg_error_from_syserror (); fp = fopen (fname, "rb"); if (!fp && errno == ENOENT) return 0; /* Ready. File has been deleted right after the access above. */ if (!fp) { rc = gpg_error_from_syserror (); return rc; } /* A quick test to see if we need to compress the file at all. We schedule a compress run after 3 hours. */ if ( !_keybox_read_blob (&blob, fp, NULL) ) { const unsigned char *buffer; size_t length; buffer = _keybox_get_blob_image (blob, &length); if (length > 4 && buffer[4] == KEYBOX_BLOBTYPE_HEADER) { u32 last_maint = buf32_to_u32 (buffer+20); if ( (last_maint + 3*3600) > time (NULL) ) { fclose (fp); _keybox_release_blob (blob); return 0; /* Compress run not yet needed. */ } } _keybox_release_blob (blob); fseek (fp, 0, SEEK_SET); clearerr (fp); } /* Create the new file. */ rc = create_tmp_file (fname, &bakfname, &tmpfname, &newfp); if (rc) { fclose (fp); return rc;; } /* Processing loop. By reading using _keybox_read_blob we automagically skip any blobs flagged as deleted. Thus what we only have to do is to check all ephemeral flagged blocks whether their time has come and write out all other blobs. */ cut_time = time(NULL) - 86400; first_blob = 1; skipped_deleted = 0; for (rc=0; !(read_rc = _keybox_read_blob (&blob, fp, &skipped_deleted)); _keybox_release_blob (blob), blob = NULL ) { unsigned int blobflags; const unsigned char *buffer; size_t length, pos, size; u32 created_at; if (skipped_deleted) any_changes = 1; buffer = _keybox_get_blob_image (blob, &length); if (first_blob) { first_blob = 0; if (length > 4 && buffer[4] == KEYBOX_BLOBTYPE_HEADER) { /* Write out the blob with an updated maintenance time stamp and if needed (ie. used by gpg) set the openpgp flag. */ _keybox_update_header_blob (blob, hd->for_openpgp); rc = _keybox_write_blob (blob, newfp); if (rc) break; continue; } /* The header blob is missing. Insert it. */ rc = _keybox_write_header_blob (newfp, hd->for_openpgp); if (rc) break; any_changes = 1; } else if (length > 4 && buffer[4] == KEYBOX_BLOBTYPE_HEADER) { /* Oops: There is another header record - remove it. */ any_changes = 1; continue; } if (_keybox_get_flag_location (buffer, length, KEYBOX_FLAG_BLOB, &pos, &size) || size != 2) { rc = gpg_error (GPG_ERR_BUG); break; } blobflags = buf16_to_uint (buffer+pos); if ((blobflags & KEYBOX_FLAG_BLOB_EPHEMERAL)) { /* This is an ephemeral blob. */ if (_keybox_get_flag_location (buffer, length, KEYBOX_FLAG_CREATED_AT, &pos, &size) || size != 4) created_at = 0; /* oops. */ else created_at = buf32_to_u32 (buffer+pos); if (created_at && created_at < cut_time) { any_changes = 1; continue; /* Skip this blob. */ } } rc = _keybox_write_blob (blob, newfp); if (rc) break; } if (skipped_deleted) any_changes = 1; _keybox_release_blob (blob); blob = NULL; if (!rc && read_rc == -1) rc = 0; else if (!rc) rc = read_rc; /* Close both files. */ if (fclose(fp) && !rc) rc = gpg_error_from_syserror (); if (fclose(newfp) && !rc) rc = gpg_error_from_syserror (); /* Rename or remove the temporary file. */ if (rc || !any_changes) gnupg_remove (tmpfname); else rc = rename_tmp_file (bakfname, tmpfname, fname, hd->secret); xfree(bakfname); xfree(tmpfname); return rc; }