blob: b195fa09e2427623b1765fbef1d8e207cf7a1de7 [file] [log] [blame]
Ethan Yonker93382822018-11-01 15:25:31 -05001/*
2 * Copyright (C) 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "KeyBuffer.h"
18#include "MetadataCrypt.h"
19
20#include <string>
21#include <thread>
22#include <vector>
23#include <algorithm>
24
25#include <fcntl.h>
26#include <sys/ioctl.h>
27#include <sys/param.h>
28#include <sys/stat.h>
29#include <sys/types.h>
30
31#include <linux/dm-ioctl.h>
32
33//#include <android-base/logging.h>
34#include <android-base/properties.h>
35#include <android-base/unique_fd.h>
36#include <cutils/fs.h>
37//#include <fs_mgr.h>
38
39//#include "EncryptInplace.h"
40#include "KeyStorage4.h"
41#include "KeyUtil.h"
42//#include "secontext.h"
43#include "Utils.h"
44//#include "VoldUtil.h"
45
46#include <iostream>
47#define LOG(x) std::cout
48#define PLOG(x) std::cout
49#include <linux/fs.h>
50
51#define DM_CRYPT_BUF_SIZE 4096
52#define TABLE_LOAD_RETRIES 10
53#define DEFAULT_KEY_TARGET_TYPE "default-key"
54
55using android::vold::KeyBuffer;
56
57static const std::string kDmNameUserdata = "userdata";
58
59void get_blkdev_size(int fd, unsigned long* nr_sec) {
60 if ((ioctl(fd, BLKGETSIZE, nr_sec)) == -1) {
61 *nr_sec = 0;
62 }
63}
64
65static const char* kLookup = "0123456789abcdef";
66
67android::status_t StrToHex(const KeyBuffer& str, KeyBuffer& hex) {
68 hex.clear();
69 for (size_t i = 0; i < str.size(); i++) {
70 hex.push_back(kLookup[(str.data()[i] & 0xF0) >> 4]);
71 hex.push_back(kLookup[str.data()[i] & 0x0F]);
72 }
73 return android::OK;
74}
75
76/*static bool mount_via_fs_mgr(const char* mount_point, const char* blk_device) {
77 // fs_mgr_do_mount runs fsck. Use setexeccon to run trusted
78 // partitions in the fsck domain.
79 if (setexeccon(secontextFsck())) {
80 PLOG(ERROR) << "Failed to setexeccon";
81 return false;
82 }
83 auto mount_rc = fs_mgr_do_mount(fstab_default, const_cast<char*>(mount_point),
84 const_cast<char*>(blk_device), nullptr);
85 if (setexeccon(nullptr)) {
86 PLOG(ERROR) << "Failed to clear setexeccon";
87 return false;
88 }
89 if (mount_rc != 0) {
90 LOG(ERROR) << "fs_mgr_do_mount failed with rc " << mount_rc;
91 return false;
92 }
93 LOG(DEBUG) << "Mounted " << mount_point;
94 return true;
95}*/
96
97static bool read_key(const std::string& key_dir, bool create_if_absent, KeyBuffer* key) {
98 /*if (!data_rec->key_dir) {
99 LOG(ERROR) << "Failed to get key_dir";
100 return false;
101 }
102 std::string key_dir = data_rec->key_dir;*/
103 auto dir = key_dir + "/key";
104 LOG(DEBUG) << "key_dir/key: " << dir << "\n";
105 /*if (fs_mkdirs(dir.c_str(), 0700)) {
106 PLOG(ERROR) << "Creating directories: " << dir;
107 return false;
108 }*/
109 auto temp = key_dir + "/tmp";
110 if (!android::vold::retrieveKey(create_if_absent, dir, temp, key)) return false;
111 return true;
112}
113
114static KeyBuffer default_key_params(const std::string& real_blkdev, const KeyBuffer& key) {
115 KeyBuffer hex_key;
116 if (/*android::vold::*/StrToHex(key, hex_key) != android::OK) {
117 LOG(ERROR) << "Failed to turn key to hex\n";
118 return KeyBuffer();
119 }
120 auto res = KeyBuffer() + "AES-256-XTS " + hex_key + " " + real_blkdev.c_str() + " 0";
121 return res;
122}
123
124static bool get_number_of_sectors(const std::string& real_blkdev, uint64_t *nr_sec) {
125 android::base::unique_fd dev_fd(TEMP_FAILURE_RETRY(open(
126 real_blkdev.c_str(), O_RDONLY | O_CLOEXEC, 0)));
127 if (dev_fd == -1) {
128 PLOG(ERROR) << "Unable to open " << real_blkdev << " to measure size\n";
129 return false;
130 }
131 unsigned long res;
132 // TODO: should use BLKGETSIZE64
133 get_blkdev_size(dev_fd.get(), &res);
134 if (res == 0) {
135 PLOG(ERROR) << "Unable to measure size of " << real_blkdev << "\n";
136 return false;
137 }
138 *nr_sec = res;
139 return true;
140}
141
142static struct dm_ioctl* dm_ioctl_init(char *buffer, size_t buffer_size,
143 const std::string& dm_name) {
144 if (buffer_size < sizeof(dm_ioctl)) {
145 LOG(ERROR) << "dm_ioctl buffer too small\n";
146 return nullptr;
147 }
148
149 memset(buffer, 0, buffer_size);
150 struct dm_ioctl* io = (struct dm_ioctl*) buffer;
151 io->data_size = buffer_size;
152 io->data_start = sizeof(struct dm_ioctl);
153 io->version[0] = 4;
154 io->version[1] = 0;
155 io->version[2] = 0;
156 io->flags = 0;
157 dm_name.copy(io->name, sizeof(io->name));
158 return io;
159}
160
161static bool create_crypto_blk_dev(const std::string& dm_name, uint64_t nr_sec,
162 const std::string& target_type, const KeyBuffer& crypt_params,
163 std::string* crypto_blkdev) {
164 PLOG(INFO) << "starting create_crypto_blk_dev\n";
165 android::base::unique_fd dm_fd(TEMP_FAILURE_RETRY(open(
166 "/dev/device-mapper", O_RDWR | O_CLOEXEC, 0)));
167 if (dm_fd == -1) {
168 PLOG(ERROR) << "Cannot open device-mapper\n";
169 return false;
170 }
171 alignas(struct dm_ioctl) char buffer[DM_CRYPT_BUF_SIZE];
172 auto io = dm_ioctl_init(buffer, sizeof(buffer), dm_name);
173 if (!io || ioctl(dm_fd.get(), DM_DEV_CREATE, io) != 0) {
174 PLOG(ERROR) << "Cannot create dm-crypt device " << dm_name << "\n";
175 return false;
176 }
177
178 // Get the device status, in particular, the name of its device file
179 io = dm_ioctl_init(buffer, sizeof(buffer), dm_name);
180 if (ioctl(dm_fd.get(), DM_DEV_STATUS, io) != 0) {
181 PLOG(ERROR) << "Cannot retrieve dm-crypt device status " << dm_name << "\n";
182 return false;
183 }
184 *crypto_blkdev = std::string() + "/dev/block/dm-" + std::to_string(
185 (io->dev & 0xff) | ((io->dev >> 12) & 0xfff00));
186
187 io = dm_ioctl_init(buffer, sizeof(buffer), dm_name);
188 size_t paramix = io->data_start + sizeof(struct dm_target_spec);
189 size_t nullix = paramix + crypt_params.size();
190 size_t endix = (nullix + 1 + 7) & 8; // Add room for \0 and align to 8 byte boundary
191
192 if (endix > sizeof(buffer)) {
193 LOG(ERROR) << "crypt_params too big for DM_CRYPT_BUF_SIZE\n";
194 return false;
195 }
196
197 io->target_count = 1;
198 auto tgt = (struct dm_target_spec *) (buffer + io->data_start);
199 tgt->status = 0;
200 tgt->sector_start = 0;
201 tgt->length = nr_sec;
202 target_type.copy(tgt->target_type, sizeof(tgt->target_type));
203 memcpy(buffer + paramix, crypt_params.data(),
204 std::min(crypt_params.size(), sizeof(buffer) - paramix));
205 buffer[nullix] = '\0';
206 tgt->next = endix;
207
208 for (int i = 0; ; i++) {
209 if (ioctl(dm_fd.get(), DM_TABLE_LOAD, io) == 0) {
210 break;
211 }
212 if (i+1 >= TABLE_LOAD_RETRIES) {
213 PLOG(ERROR) << "DM_TABLE_LOAD ioctl failed\n";
214 return false;
215 }
216 PLOG(INFO) << "DM_TABLE_LOAD ioctl failed, retrying\n";
217 usleep(500000);
218 }
219
220 // Resume this device to activate it
221 io = dm_ioctl_init(buffer, sizeof(buffer), dm_name);
222 if (ioctl(dm_fd.get(), DM_DEV_SUSPEND, io)) {
223 PLOG(ERROR) << "Cannot resume dm-crypt device " << dm_name << "\n";
224 return false;
225 }
226 return true;
227}
228
229bool e4crypt_mount_metadata_encrypted(const std::string& mount_point, bool needs_encrypt, const std::string& key_dir, const std::string& blk_device, std::string* crypto_blkdev) {
230 LOG(DEBUG) << "e4crypt_mount_metadata_encrypted: " << mount_point << " " << needs_encrypt << "\n";
231 /*auto encrypted_state = android::base::GetProperty("ro.crypto.state", "");
232 if (encrypted_state != "") {
233 LOG(DEBUG) << "e4crypt_enable_crypto got unexpected starting state: " << encrypted_state;
234 return false;
235 }
236 auto data_rec = fs_mgr_get_entry_for_mount_point(fstab_default, mount_point);
237 if (!data_rec) {
238 LOG(ERROR) << "Failed to get data_rec";
239 return false;
240 }*/
241 KeyBuffer key;
242 if (!read_key(key_dir, needs_encrypt, &key)) return false;
243 uint64_t nr_sec;
244 if (!get_number_of_sectors(blk_device, &nr_sec)) return false;
245 //std::string crypto_blkdev;
246 if (!create_crypto_blk_dev(kDmNameUserdata, nr_sec, DEFAULT_KEY_TARGET_TYPE,
247 default_key_params(blk_device, key), /*&*/crypto_blkdev))
248 return false;
249 // FIXME handle the corrupt case
250 /*if (needs_encrypt) {
251 LOG(INFO) << "Beginning inplace encryption, nr_sec: " << nr_sec;
252 off64_t size_already_done = 0;
253 auto rc =
254 cryptfs_enable_inplace(const_cast<char*>(crypto_blkdev.c_str()), data_rec->blk_device,
255 nr_sec, &size_already_done, nr_sec, 0, false);
256 if (rc != 0) {
257 LOG(ERROR) << "Inplace crypto failed with code: " << rc;
258 return false;
259 }
260 if (static_cast<uint64_t>(size_already_done) != nr_sec) {
261 LOG(ERROR) << "Inplace crypto only got up to sector: " << size_already_done;
262 return false;
263 }
264 LOG(INFO) << "Inplace encryption complete";
265 }
266
267 LOG(DEBUG) << "Mounting metadata-encrypted filesystem:" << mount_point;
268 mount_via_fs_mgr(data_rec->mount_point, crypto_blkdev.c_str());*/
269 LOG(DEBUG) << "crypto block device '" << *crypto_blkdev << "\n";
270 return true;
271}