mirror of
https://gitlab.com/cryptsetup/cryptsetup.git
synced 2026-01-09 00:45:32 +01:00
481 lines
14 KiB
C
481 lines
14 KiB
C
/*
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* veritysetup - setup cryptographic volumes for dm-verity
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*
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* Copyright (C) 2012, Red Hat, Inc. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* version 2 as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "cryptsetup.h"
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#define PACKAGE_VERITY "veritysetup"
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static int use_superblock = 1;
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static const char *hash_algorithm = NULL;
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static int hash_type = 1;
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static int data_block_size = DEFAULT_VERITY_DATA_BLOCK;
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static int hash_block_size = DEFAULT_VERITY_HASH_BLOCK;
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static uint64_t data_blocks = 0;
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static const char *salt_string = NULL;
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static uint64_t hash_offset = 0;
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static const char *opt_uuid = NULL;
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static int opt_version_mode = 0;
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static const char **action_argv;
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static int action_argc;
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static int _prepare_format(struct crypt_params_verity *params,
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const char *data_device,
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uint32_t flags)
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{
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char *salt = NULL;
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int len;
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params->hash_name = hash_algorithm ?: DEFAULT_VERITY_HASH;
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params->data_device = data_device;
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if (salt_string && !strcmp(salt_string, "-")) {
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params->salt_size = 0;
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params->salt = NULL;
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} else if (salt_string) {
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len = crypt_hex_to_bytes(salt_string, &salt, 0);
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if (len < 0) {
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log_err(_("Invalid salt string specified.\n"));
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return -EINVAL;
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}
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params->salt_size = len;
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params->salt = salt;
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} else {
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params->salt_size = DEFAULT_VERITY_SALT_SIZE;
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params->salt = NULL;
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}
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params->data_block_size = data_block_size;
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params->hash_block_size = hash_block_size;
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params->data_size = data_blocks;
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params->hash_area_offset = hash_offset;
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params->hash_type = hash_type;
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params->flags = flags;
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return 0;
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}
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static int action_format(int arg)
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{
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struct crypt_device *cd = NULL;
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struct crypt_params_verity params = {};
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uint32_t flags = CRYPT_VERITY_CREATE_HASH;
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struct stat st;
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int r;
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/* Try to create hash image if doesn't exist */
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if (stat(action_argv[1], &st) < 0) {
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log_dbg("Creating hash image %s.", action_argv[1]);
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r = open(action_argv[1], O_WRONLY | O_CREAT, S_IRUSR | S_IWUSR);
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if (r < 0) {
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log_err(_("Cannot create hash image %s for writing.\n"), action_argv[1]);
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return -EINVAL;
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}
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close(r);
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}
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if ((r = crypt_init(&cd, action_argv[1])))
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goto out;
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if (!use_superblock)
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flags |= CRYPT_VERITY_NO_HEADER;
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r = _prepare_format(¶ms, action_argv[0], flags);
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if (r < 0)
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goto out;
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r = crypt_format(cd, CRYPT_VERITY, NULL, NULL, opt_uuid, NULL, 0, ¶ms);
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if (!r)
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crypt_dump(cd);
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out:
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crypt_free(cd);
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free(CONST_CAST(char*)params.salt);
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return r;
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}
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static int _activate(const char *dm_device,
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const char *data_device,
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const char *hash_device,
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const char *root_hash,
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uint32_t flags)
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{
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struct crypt_device *cd = NULL;
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struct crypt_params_verity params = {};
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uint32_t activate_flags = CRYPT_ACTIVATE_READONLY;
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char *root_hash_bytes = NULL;
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ssize_t hash_size;
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int r;
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if ((r = crypt_init(&cd, hash_device)))
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goto out;
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if (use_superblock) {
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params.flags = flags;
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params.hash_area_offset = hash_offset;
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r = crypt_load(cd, CRYPT_VERITY, ¶ms);
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} else {
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r = _prepare_format(¶ms, data_device, flags | CRYPT_VERITY_NO_HEADER);
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if (r < 0)
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goto out;
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r = crypt_format(cd, CRYPT_VERITY, NULL, NULL, NULL, NULL, 0, ¶ms);
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}
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if (r < 0)
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goto out;
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r = crypt_set_data_device(cd, data_device);
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if (r < 0)
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goto out;
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hash_size = crypt_get_volume_key_size(cd);
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if (crypt_hex_to_bytes(root_hash, &root_hash_bytes, 0) != hash_size) {
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log_err(_("Invalid root hash string specified.\n"));
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r = -EINVAL;
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goto out;
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}
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r = crypt_activate_by_volume_key(cd, dm_device,
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root_hash_bytes,
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hash_size,
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activate_flags);
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out:
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crypt_free(cd);
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free(root_hash_bytes);
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free(CONST_CAST(char*)params.salt);
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return r;
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}
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static int action_create(int arg)
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{
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return _activate(action_argv[0],
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action_argv[1],
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action_argv[2],
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action_argv[3], 0);
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}
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static int action_verify(int arg)
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{
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return _activate(NULL,
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action_argv[0],
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action_argv[1],
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action_argv[2],
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CRYPT_VERITY_CHECK_HASH);
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}
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static int action_remove(int arg)
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{
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struct crypt_device *cd = NULL;
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int r;
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r = crypt_init_by_name(&cd, action_argv[0]);
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if (r == 0)
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r = crypt_deactivate(cd, action_argv[0]);
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crypt_free(cd);
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return r;
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}
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static int action_status(int arg)
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{
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crypt_status_info ci;
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struct crypt_active_device cad;
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struct crypt_params_verity vp = {};
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struct crypt_device *cd = NULL;
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struct stat st;
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char *backing_file;
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unsigned i, path = 0;
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int r = 0;
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/* perhaps a path, not a dm device name */
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if (strchr(action_argv[0], '/') && !stat(action_argv[0], &st))
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path = 1;
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ci = crypt_status(NULL, action_argv[0]);
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switch (ci) {
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case CRYPT_INVALID:
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r = -EINVAL;
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break;
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case CRYPT_INACTIVE:
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if (path)
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log_std("%s is inactive.\n", action_argv[0]);
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else
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log_std("%s/%s is inactive.\n", crypt_get_dir(), action_argv[0]);
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r = -ENODEV;
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break;
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case CRYPT_ACTIVE:
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case CRYPT_BUSY:
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if (path)
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log_std("%s is active%s.\n", action_argv[0],
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ci == CRYPT_BUSY ? " and is in use" : "");
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else
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log_std("%s/%s is active%s.\n", crypt_get_dir(), action_argv[0],
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ci == CRYPT_BUSY ? " and is in use" : "");
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r = crypt_init_by_name_and_header(&cd, action_argv[0], NULL);
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if (r < 0 || !crypt_get_type(cd))
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goto out;
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log_std(" type: %s\n", crypt_get_type(cd));
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r = crypt_get_active_device(cd, action_argv[0], &cad);
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if (r < 0)
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goto out;
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log_std(" status: %s\n",
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cad.flags & CRYPT_ACTIVATE_CORRUPTED ? "corrupted" : "verified");
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r = crypt_get_verity_info(cd, &vp);
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if (r < 0)
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goto out;
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log_std(" hash type: %u\n", vp.hash_type);
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log_std(" data block: %u\n", vp.data_block_size);
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log_std(" hash block: %u\n", vp.hash_block_size);
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log_std(" hash name: %s\n", vp.hash_name);
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log_std(" salt: ");
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if (vp.salt_size)
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for(i = 0; i < vp.salt_size; i++)
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log_std("%02hhx", (const char)vp.salt[i]);
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else
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log_std("-");
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log_std("\n");
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log_std(" data device: %s\n", vp.data_device);
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if (crypt_loop_device(vp.data_device)) {
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backing_file = crypt_loop_backing_file(vp.data_device);
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log_std(" data loop: %s\n", backing_file);
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free(backing_file);
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}
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log_std(" size: %" PRIu64 " sectors\n", cad.size);
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log_std(" mode: %s\n", cad.flags & CRYPT_ACTIVATE_READONLY ?
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"readonly" : "read/write");
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log_std(" hash device: %s\n", vp.hash_device);
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if (crypt_loop_device(vp.hash_device)) {
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backing_file = crypt_loop_backing_file(vp.hash_device);
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log_std(" hash loop: %s\n", backing_file);
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free(backing_file);
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}
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log_std(" hash offset: %" PRIu64 " sectors\n",
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vp.hash_area_offset * vp.hash_block_size / 512);
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}
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out:
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crypt_free(cd);
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if (r == -ENOTSUP)
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r = 0;
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return r;
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}
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static int action_dump(int arg)
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{
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struct crypt_device *cd = NULL;
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struct crypt_params_verity params = {};
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int r;
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if ((r = crypt_init(&cd, action_argv[0])))
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return r;
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params.hash_area_offset = hash_offset;
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r = crypt_load(cd, CRYPT_VERITY, ¶ms);
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if (!r)
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crypt_dump(cd);
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crypt_free(cd);
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return r;
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}
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static struct action_type {
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const char *type;
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int (*handler)(int);
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int required_action_argc;
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const char *arg_desc;
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const char *desc;
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} action_types[] = {
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{ "format", action_format, 2, N_("<data_device> <hash_device>"),N_("format device") },
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{ "verify", action_verify, 3, N_("<data_device> <hash_device> <root_hash>"),N_("verify device") },
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{ "create", action_create, 4, N_("<name> <data_device> <hash_device> <root_hash>"),N_("create active device") },
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{ "remove", action_remove, 1, N_("<name>"),N_("remove (deactivate) device") },
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{ "status", action_status, 1, N_("<name>"),N_("show active device status") },
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{ "dump", action_dump, 1, N_("<hash_device>"),N_("show on-disk information") },
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{ NULL, NULL, 0, NULL, NULL }
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};
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static void help(poptContext popt_context,
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enum poptCallbackReason reason __attribute__((unused)),
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struct poptOption *key,
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const char *arg __attribute__((unused)),
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void *data __attribute__((unused)))
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{
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struct action_type *action;
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if (key->shortName == '?') {
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log_std("%s %s\n", PACKAGE_VERITY, PACKAGE_VERSION);
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poptPrintHelp(popt_context, stdout, 0);
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log_std(_("\n"
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"<action> is one of:\n"));
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for(action = action_types; action->type; action++)
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log_std("\t%s %s - %s\n", action->type, _(action->arg_desc), _(action->desc));
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log_std(_("\n"
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"<name> is the device to create under %s\n"
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"<data_device> is the data device\n"
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"<hash_device> is the device containing verification data\n"
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"<root_hash> hash of the root node on <hash_device>\n"),
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crypt_get_dir());
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log_std(_("\nDefault compiled-in dm-verity parameters:\n"
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"\tHash: %s, Data block (bytes): %u, "
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"Hash block (bytes): %u, Salt size: %u, Hash format: %u\n"),
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DEFAULT_VERITY_HASH, DEFAULT_VERITY_DATA_BLOCK,
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DEFAULT_VERITY_HASH_BLOCK, DEFAULT_VERITY_SALT_SIZE,
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1);
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exit(EXIT_SUCCESS);
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} else
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usage(popt_context, EXIT_SUCCESS, NULL, NULL);
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}
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static int run_action(struct action_type *action)
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{
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int r;
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log_dbg("Running command %s.", action->type);
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r = action->handler(0);
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show_status(r);
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return translate_errno(r);
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}
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int main(int argc, const char **argv)
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{
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static char *popt_tmp;
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static const char *null_action_argv[] = {NULL};
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static struct poptOption popt_help_options[] = {
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{ NULL, '\0', POPT_ARG_CALLBACK, help, 0, NULL, NULL },
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{ "help", '?', POPT_ARG_NONE, NULL, 0, N_("Show this help message"), NULL },
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{ "usage", '\0', POPT_ARG_NONE, NULL, 0, N_("Display brief usage"), NULL },
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POPT_TABLEEND
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};
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static struct poptOption popt_options[] = {
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{ NULL, '\0', POPT_ARG_INCLUDE_TABLE, popt_help_options, 0, N_("Help options:"), NULL },
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{ "version", '\0', POPT_ARG_NONE, &opt_version_mode, 0, N_("Print package version"), NULL },
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{ "verbose", 'v', POPT_ARG_NONE, &opt_verbose, 0, N_("Shows more detailed error messages"), NULL },
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{ "debug", '\0', POPT_ARG_NONE, &opt_debug, 0, N_("Show debug messages"), NULL },
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{ "no-superblock", 0, POPT_ARG_VAL, &use_superblock, 0, N_("Do not use verity superblock"), NULL },
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{ "format", 0, POPT_ARG_INT, &hash_type, 0, N_("Format type (1 - normal, 0 - original Chrome OS)"), N_("number") },
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{ "data-block-size", 0, POPT_ARG_INT, &data_block_size, 0, N_("Block size on the data device"), N_("bytes") },
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{ "hash-block-size", 0, POPT_ARG_INT, &hash_block_size, 0, N_("Block size on the hash device"), N_("bytes") },
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{ "data-blocks", 0, POPT_ARG_STRING, &popt_tmp, 1, N_("The number of blocks in the data file"), N_("blocks") },
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{ "hash-offset", 0, POPT_ARG_STRING, &popt_tmp, 2, N_("Starting offset on the hash device"), N_("bytes") },
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{ "hash", 'h', POPT_ARG_STRING, &hash_algorithm, 0, N_("Hash algorithm"), N_("string") },
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{ "salt", 's', POPT_ARG_STRING, &salt_string, 0, N_("Salt"), N_("hex string") },
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{ "uuid", '\0', POPT_ARG_STRING, &opt_uuid, 0, N_("UUID for device to use."), NULL },
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POPT_TABLEEND
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};
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poptContext popt_context;
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struct action_type *action;
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const char *aname;
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int r;
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crypt_set_log_callback(NULL, tool_log, NULL);
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setlocale(LC_ALL, "");
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bindtextdomain(PACKAGE, LOCALEDIR);
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textdomain(PACKAGE);
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popt_context = poptGetContext("verity", argc, argv, popt_options, 0);
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poptSetOtherOptionHelp(popt_context,
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_("[OPTION...] <action> <action-specific>"));
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while((r = poptGetNextOpt(popt_context)) > 0) {
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unsigned long long ull_value;
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char *endp;
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errno = 0;
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ull_value = strtoull(popt_tmp, &endp, 10);
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if (*endp || !*popt_tmp || !isdigit(*popt_tmp) ||
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(errno == ERANGE && ull_value == ULLONG_MAX) ||
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(errno != 0 && ull_value == 0))
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r = POPT_ERROR_BADNUMBER;
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switch(r) {
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case 1:
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data_blocks = ull_value;
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break;
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case 2:
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hash_offset = ull_value;
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break;
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}
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if (r < 0)
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break;
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}
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if (r < -1)
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usage(popt_context, EXIT_FAILURE, poptStrerror(r),
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poptBadOption(popt_context, POPT_BADOPTION_NOALIAS));
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if (opt_version_mode) {
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log_std("%s %s\n", PACKAGE_VERITY, PACKAGE_VERSION);
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poptFreeContext(popt_context);
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exit(EXIT_SUCCESS);
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}
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if (!(aname = poptGetArg(popt_context)))
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usage(popt_context, EXIT_FAILURE, _("Argument <action> missing."),
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poptGetInvocationName(popt_context));
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for(action = action_types; action->type; action++)
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if (strcmp(action->type, aname) == 0)
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break;
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if (!action->type)
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usage(popt_context, EXIT_FAILURE, _("Unknown action."),
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poptGetInvocationName(popt_context));
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action_argc = 0;
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action_argv = poptGetArgs(popt_context);
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/* Make return values of poptGetArgs more consistent in case of remaining argc = 0 */
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if(!action_argv)
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action_argv = null_action_argv;
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/* Count args, somewhat unnice, change? */
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while(action_argv[action_argc] != NULL)
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action_argc++;
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if(action_argc < action->required_action_argc) {
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char buf[128];
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snprintf(buf, 128,_("%s: requires %s as arguments"), action->type, action->arg_desc);
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usage(popt_context, EXIT_FAILURE, buf,
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poptGetInvocationName(popt_context));
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}
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if (data_block_size < 0 || hash_block_size < 0 || hash_type < 0) {
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usage(popt_context, EXIT_FAILURE,
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_("Negative number for option not permitted."),
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poptGetInvocationName(popt_context));
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}
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if (opt_debug) {
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opt_verbose = 1;
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crypt_set_debug_level(-1);
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dbg_version_and_cmd(argc, argv);
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}
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r = run_action(action);
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poptFreeContext(popt_context);
|
|
return r;
|
|
}
|