1 /*
2  * Copyright (C) 2019 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 "avb_util.h"
18 
19 #include <unistd.h>
20 
21 #include <array>
22 #include <sstream>
23 
24 #include <android-base/file.h>
25 #include <android-base/strings.h>
26 #include <android-base/unique_fd.h>
27 
28 #include "util.h"
29 
30 using android::base::Basename;
31 using android::base::ReadFileToString;
32 using android::base::StartsWith;
33 using android::base::unique_fd;
34 
35 namespace android {
36 namespace fs_mgr {
37 
38 // Constructs dm-verity arguments for sending DM_TABLE_LOAD ioctl to kernel.
39 // See the following link for more details:
40 // https://gitlab.com/cryptsetup/cryptsetup/wikis/DMVerity
ConstructVerityTable(const FsAvbHashtreeDescriptor & hashtree_desc,const std::string & blk_device,android::dm::DmTable * table)41 bool ConstructVerityTable(const FsAvbHashtreeDescriptor& hashtree_desc,
42                           const std::string& blk_device, android::dm::DmTable* table) {
43     // Loads androidboot.veritymode from kernel cmdline.
44     std::string verity_mode;
45     if (!fs_mgr_get_boot_config("veritymode", &verity_mode)) {
46         verity_mode = "enforcing";  // Defaults to enforcing when it's absent.
47     }
48 
49     // Converts veritymode to the format used in kernel.
50     std::string dm_verity_mode;
51     if (verity_mode == "panicking") {
52         dm_verity_mode = "panic_on_corruption";
53     } else if (verity_mode == "enforcing") {
54         dm_verity_mode = "restart_on_corruption";
55     } else if (verity_mode == "logging") {
56         dm_verity_mode = "ignore_corruption";
57     } else if (verity_mode != "eio") {  // Default dm_verity_mode is eio.
58         LERROR << "Unknown androidboot.veritymode: " << verity_mode;
59         return false;
60     }
61 
62     std::ostringstream hash_algorithm;
63     hash_algorithm << hashtree_desc.hash_algorithm;
64 
65     android::dm::DmTargetVerity target(
66             0, hashtree_desc.image_size / 512, hashtree_desc.dm_verity_version, blk_device,
67             blk_device, hashtree_desc.data_block_size, hashtree_desc.hash_block_size,
68             hashtree_desc.image_size / hashtree_desc.data_block_size,
69             hashtree_desc.tree_offset / hashtree_desc.hash_block_size, hash_algorithm.str(),
70             hashtree_desc.root_digest, hashtree_desc.salt);
71     if (hashtree_desc.fec_size > 0) {
72         target.UseFec(blk_device, hashtree_desc.fec_num_roots,
73                       hashtree_desc.fec_offset / hashtree_desc.data_block_size,
74                       hashtree_desc.fec_offset / hashtree_desc.data_block_size);
75     }
76     if (!dm_verity_mode.empty()) {
77         target.SetVerityMode(dm_verity_mode);
78     }
79     // Always use ignore_zero_blocks.
80     target.IgnoreZeroBlocks();
81 
82     if (hashtree_desc.flags & AVB_HASHTREE_DESCRIPTOR_FLAGS_CHECK_AT_MOST_ONCE) {
83         target.CheckAtMostOnce();
84     }
85 
86     LINFO << "Built verity table: '" << target.GetParameterString() << "'";
87 
88     return table->AddTarget(std::make_unique<android::dm::DmTargetVerity>(target));
89 }
90 
HashtreeDmVeritySetup(FstabEntry * fstab_entry,const FsAvbHashtreeDescriptor & hashtree_desc,bool wait_for_verity_dev)91 bool HashtreeDmVeritySetup(FstabEntry* fstab_entry, const FsAvbHashtreeDescriptor& hashtree_desc,
92                            bool wait_for_verity_dev) {
93     android::dm::DmTable table;
94     if (!ConstructVerityTable(hashtree_desc, fstab_entry->blk_device, &table) || !table.valid()) {
95         LERROR << "Failed to construct verity table.";
96         return false;
97     }
98     table.set_readonly(true);
99 
100     std::chrono::milliseconds timeout = {};
101     if (wait_for_verity_dev) timeout = 1s;
102 
103     std::string dev_path;
104     const std::string device_name(GetVerityDeviceName(*fstab_entry));
105     android::dm::DeviceMapper& dm = android::dm::DeviceMapper::Instance();
106     if (!dm.CreateDevice(device_name, table, &dev_path, timeout)) {
107         LERROR << "Couldn't create verity device!";
108         return false;
109     }
110 
111     // Marks the underlying block device as read-only.
112     SetBlockDeviceReadOnly(fstab_entry->blk_device);
113 
114     // Updates fstab_rec->blk_device to verity device name.
115     fstab_entry->blk_device = dev_path;
116     return true;
117 }
118 
GetHashtreeDescriptor(const std::string & partition_name,const std::vector<VBMetaData> & vbmeta_images)119 std::unique_ptr<FsAvbHashtreeDescriptor> GetHashtreeDescriptor(
120         const std::string& partition_name, const std::vector<VBMetaData>& vbmeta_images) {
121     bool found = false;
122     const uint8_t* desc_partition_name;
123     auto hashtree_desc = std::make_unique<FsAvbHashtreeDescriptor>();
124 
125     for (const auto& vbmeta : vbmeta_images) {
126         size_t num_descriptors;
127         std::unique_ptr<const AvbDescriptor* [], decltype(&avb_free)> descriptors(
128                 avb_descriptor_get_all(vbmeta.data(), vbmeta.size(), &num_descriptors), avb_free);
129 
130         if (!descriptors || num_descriptors < 1) {
131             continue;
132         }
133 
134         for (size_t n = 0; n < num_descriptors && !found; n++) {
135             AvbDescriptor desc;
136             if (!avb_descriptor_validate_and_byteswap(descriptors[n], &desc)) {
137                 LWARNING << "Descriptor[" << n << "] is invalid";
138                 continue;
139             }
140             if (desc.tag == AVB_DESCRIPTOR_TAG_HASHTREE) {
141                 desc_partition_name =
142                         (const uint8_t*)descriptors[n] + sizeof(AvbHashtreeDescriptor);
143                 if (!avb_hashtree_descriptor_validate_and_byteswap(
144                         (AvbHashtreeDescriptor*)descriptors[n], hashtree_desc.get())) {
145                     continue;
146                 }
147                 if (hashtree_desc->partition_name_len != partition_name.length()) {
148                     continue;
149                 }
150                 // Notes that desc_partition_name is not NUL-terminated.
151                 std::string hashtree_partition_name((const char*)desc_partition_name,
152                                                     hashtree_desc->partition_name_len);
153                 if (hashtree_partition_name == partition_name) {
154                     found = true;
155                 }
156             }
157         }
158 
159         if (found) break;
160     }
161 
162     if (!found) {
163         LERROR << "Hashtree descriptor not found: " << partition_name;
164         return nullptr;
165     }
166 
167     hashtree_desc->partition_name = partition_name;
168 
169     const uint8_t* desc_salt = desc_partition_name + hashtree_desc->partition_name_len;
170     hashtree_desc->salt = BytesToHex(desc_salt, hashtree_desc->salt_len);
171 
172     const uint8_t* desc_digest = desc_salt + hashtree_desc->salt_len;
173     hashtree_desc->root_digest = BytesToHex(desc_digest, hashtree_desc->root_digest_len);
174 
175     return hashtree_desc;
176 }
177 
LoadAvbHashtreeToEnableVerity(FstabEntry * fstab_entry,bool wait_for_verity_dev,const std::vector<VBMetaData> & vbmeta_images,const std::string & ab_suffix,const std::string & ab_other_suffix)178 bool LoadAvbHashtreeToEnableVerity(FstabEntry* fstab_entry, bool wait_for_verity_dev,
179                                    const std::vector<VBMetaData>& vbmeta_images,
180                                    const std::string& ab_suffix,
181                                    const std::string& ab_other_suffix) {
182     // Derives partition_name from blk_device to query the corresponding AVB HASHTREE descriptor
183     // to setup dm-verity. The partition_names in AVB descriptors are without A/B suffix.
184     std::string partition_name = DeriveAvbPartitionName(*fstab_entry, ab_suffix, ab_other_suffix);
185 
186     if (partition_name.empty()) {
187         LERROR << "partition name is empty, cannot lookup AVB descriptors";
188         return false;
189     }
190 
191     std::unique_ptr<FsAvbHashtreeDescriptor> hashtree_descriptor =
192             GetHashtreeDescriptor(partition_name, vbmeta_images);
193     if (!hashtree_descriptor) {
194         return false;
195     }
196 
197     // Converts HASHTREE descriptor to verity table to load into kernel.
198     // When success, the new device path will be returned, e.g., /dev/block/dm-2.
199     return HashtreeDmVeritySetup(fstab_entry, *hashtree_descriptor, wait_for_verity_dev);
200 }
201 
202 // Converts a AVB partition_name (without A/B suffix) to a device partition name.
203 // e.g.,       "system" => "system_a",
204 //       "system_other" => "system_b".
205 //
206 // If the device is non-A/B, converts it to a partition name without suffix.
207 // e.g.,       "system" => "system",
208 //       "system_other" => "system".
AvbPartitionToDevicePatition(const std::string & avb_partition_name,const std::string & ab_suffix,const std::string & ab_other_suffix)209 std::string AvbPartitionToDevicePatition(const std::string& avb_partition_name,
210                                          const std::string& ab_suffix,
211                                          const std::string& ab_other_suffix) {
212     bool is_other_slot = false;
213     std::string sanitized_partition_name(avb_partition_name);
214 
215     auto other_suffix = sanitized_partition_name.rfind("_other");
216     if (other_suffix != std::string::npos) {
217         sanitized_partition_name.erase(other_suffix);  // converts system_other => system
218         is_other_slot = true;
219     }
220 
221     auto append_suffix = is_other_slot ? ab_other_suffix : ab_suffix;
222     return sanitized_partition_name + append_suffix;
223 }
224 
225 // Converts fstab_entry.blk_device (with ab_suffix) to a AVB partition name.
226 // e.g., "/dev/block/by-name/system_a", slot_select       => "system",
227 //       "/dev/block/by-name/system_b", slot_select_other => "system_other".
228 //
229 // Or for a logical partition (with ab_suffix):
230 // e.g., "system_a", slot_select       => "system",
231 //       "system_b", slot_select_other => "system_other".
DeriveAvbPartitionName(const FstabEntry & fstab_entry,const std::string & ab_suffix,const std::string & ab_other_suffix)232 std::string DeriveAvbPartitionName(const FstabEntry& fstab_entry, const std::string& ab_suffix,
233                                    const std::string& ab_other_suffix) {
234     std::string partition_name;
235     if (fstab_entry.fs_mgr_flags.logical) {
236         partition_name = fstab_entry.logical_partition_name;
237     } else {
238         partition_name = Basename(fstab_entry.blk_device);
239     }
240 
241     if (fstab_entry.fs_mgr_flags.slot_select) {
242         auto found = partition_name.rfind(ab_suffix);
243         if (found != std::string::npos) {
244             partition_name.erase(found);  // converts system_a => system
245         }
246     } else if (fstab_entry.fs_mgr_flags.slot_select_other) {
247         auto found = partition_name.rfind(ab_other_suffix);
248         if (found != std::string::npos) {
249             partition_name.erase(found);  // converts system_b => system
250         }
251         partition_name += "_other";  // converts system => system_other
252     }
253 
254     return partition_name;
255 }
256 
GetTotalSize(int fd)257 off64_t GetTotalSize(int fd) {
258     off64_t saved_current = lseek64(fd, 0, SEEK_CUR);
259     if (saved_current == -1) {
260         PERROR << "Failed to get current position";
261         return -1;
262     }
263 
264     // lseek64() returns the resulting offset location from the beginning of the file.
265     off64_t total_size = lseek64(fd, 0, SEEK_END);
266     if (total_size == -1) {
267         PERROR << "Failed to lseek64 to end of the partition";
268         return -1;
269     }
270 
271     // Restores the original offset.
272     if (lseek64(fd, saved_current, SEEK_SET) == -1) {
273         PERROR << "Failed to lseek64 to the original offset: " << saved_current;
274     }
275 
276     return total_size;
277 }
278 
GetAvbFooter(int fd)279 std::unique_ptr<AvbFooter> GetAvbFooter(int fd) {
280     std::array<uint8_t, AVB_FOOTER_SIZE> footer_buf;
281     auto footer = std::make_unique<AvbFooter>();
282 
283     off64_t footer_offset = GetTotalSize(fd) - AVB_FOOTER_SIZE;
284 
285     ssize_t num_read =
286             TEMP_FAILURE_RETRY(pread64(fd, footer_buf.data(), AVB_FOOTER_SIZE, footer_offset));
287     if (num_read < 0 || num_read != AVB_FOOTER_SIZE) {
288         PERROR << "Failed to read AVB footer at offset: " << footer_offset;
289         return nullptr;
290     }
291 
292     if (!avb_footer_validate_and_byteswap((const AvbFooter*)footer_buf.data(), footer.get())) {
293         PERROR << "AVB footer verification failed at offset " << footer_offset;
294         return nullptr;
295     }
296 
297     return footer;
298 }
299 
ValidatePublicKeyBlob(const uint8_t * key,size_t length,const std::string & expected_key_blob)300 bool ValidatePublicKeyBlob(const uint8_t* key, size_t length,
301                            const std::string& expected_key_blob) {
302     if (expected_key_blob.empty()) {  // no expectation of the key, return true.
303         return true;
304     }
305     if (expected_key_blob.size() != length) {
306         return false;
307     }
308     if (0 == memcmp(key, expected_key_blob.data(), length)) {
309         return true;
310     }
311     return false;
312 }
313 
ValidatePublicKeyBlob(const std::string & key_blob_to_validate,const std::vector<std::string> & allowed_key_paths)314 bool ValidatePublicKeyBlob(const std::string& key_blob_to_validate,
315                            const std::vector<std::string>& allowed_key_paths) {
316     std::string allowed_key_blob;
317     if (key_blob_to_validate.empty()) {
318         LWARNING << "Failed to validate an empty key";
319         return false;
320     }
321     for (const auto& path : allowed_key_paths) {
322         if (ReadFileToString(path, &allowed_key_blob)) {
323             if (key_blob_to_validate == allowed_key_blob) return true;
324         }
325     }
326     return false;
327 }
328 
VerifyVBMetaSignature(const VBMetaData & vbmeta,const std::string & expected_public_key_blob,std::string * out_public_key_data)329 VBMetaVerifyResult VerifyVBMetaSignature(const VBMetaData& vbmeta,
330                                          const std::string& expected_public_key_blob,
331                                          std::string* out_public_key_data) {
332     const uint8_t* pk_data;
333     size_t pk_len;
334     ::AvbVBMetaVerifyResult vbmeta_ret;
335 
336     vbmeta_ret = avb_vbmeta_image_verify(vbmeta.data(), vbmeta.size(), &pk_data, &pk_len);
337 
338     if (out_public_key_data != nullptr) {
339         out_public_key_data->clear();
340         if (pk_len > 0) {
341             out_public_key_data->append(reinterpret_cast<const char*>(pk_data), pk_len);
342         }
343     }
344 
345     switch (vbmeta_ret) {
346         case AVB_VBMETA_VERIFY_RESULT_OK:
347             if (pk_data == nullptr || pk_len <= 0) {
348                 LERROR << vbmeta.partition()
349                        << ": Error verifying vbmeta image: failed to get public key";
350                 return VBMetaVerifyResult::kError;
351             }
352             if (!ValidatePublicKeyBlob(pk_data, pk_len, expected_public_key_blob)) {
353                 LERROR << vbmeta.partition() << ": Error verifying vbmeta image: public key used to"
354                        << " sign data does not match key in chain descriptor";
355                 return VBMetaVerifyResult::kErrorVerification;
356             }
357             return VBMetaVerifyResult::kSuccess;
358         case AVB_VBMETA_VERIFY_RESULT_OK_NOT_SIGNED:
359         case AVB_VBMETA_VERIFY_RESULT_HASH_MISMATCH:
360         case AVB_VBMETA_VERIFY_RESULT_SIGNATURE_MISMATCH:
361             LERROR << vbmeta.partition() << ": Error verifying vbmeta image: "
362                    << avb_vbmeta_verify_result_to_string(vbmeta_ret);
363             return VBMetaVerifyResult::kErrorVerification;
364         case AVB_VBMETA_VERIFY_RESULT_INVALID_VBMETA_HEADER:
365             // No way to continue this case.
366             LERROR << vbmeta.partition() << ": Error verifying vbmeta image: invalid vbmeta header";
367             break;
368         case AVB_VBMETA_VERIFY_RESULT_UNSUPPORTED_VERSION:
369             // No way to continue this case.
370             LERROR << vbmeta.partition()
371                    << ": Error verifying vbmeta image: unsupported AVB version";
372             break;
373         default:
374             LERROR << "Unknown vbmeta image verify return value: " << vbmeta_ret;
375             break;
376     }
377 
378     return VBMetaVerifyResult::kError;
379 }
380 
VerifyVBMetaData(int fd,const std::string & partition_name,const std::string & expected_public_key_blob,std::string * out_public_key_data,VBMetaVerifyResult * out_verify_result)381 std::unique_ptr<VBMetaData> VerifyVBMetaData(int fd, const std::string& partition_name,
382                                              const std::string& expected_public_key_blob,
383                                              std::string* out_public_key_data,
384                                              VBMetaVerifyResult* out_verify_result) {
385     uint64_t vbmeta_offset = 0;
386     uint64_t vbmeta_size = VBMetaData::kMaxVBMetaSize;
387     bool is_vbmeta_partition = StartsWith(partition_name, "vbmeta");
388 
389     if (out_verify_result) {
390         *out_verify_result = VBMetaVerifyResult::kError;
391     }
392 
393     if (!is_vbmeta_partition) {
394         std::unique_ptr<AvbFooter> footer = GetAvbFooter(fd);
395         if (!footer) {
396             return nullptr;
397         }
398         vbmeta_offset = footer->vbmeta_offset;
399         vbmeta_size = footer->vbmeta_size;
400     }
401 
402     if (vbmeta_size > VBMetaData::kMaxVBMetaSize) {
403         LERROR << "VbMeta size in footer exceeds kMaxVBMetaSize";
404         return nullptr;
405     }
406 
407     auto vbmeta = std::make_unique<VBMetaData>(vbmeta_size, partition_name);
408     ssize_t num_read = TEMP_FAILURE_RETRY(pread64(fd, vbmeta->data(), vbmeta_size, vbmeta_offset));
409     // Allows partial read for vbmeta partition, because its vbmeta_size is kMaxVBMetaSize.
410     if (num_read < 0 || (!is_vbmeta_partition && static_cast<uint64_t>(num_read) != vbmeta_size)) {
411         PERROR << partition_name << ": Failed to read vbmeta at offset " << vbmeta_offset
412                << " with size " << vbmeta_size;
413         return nullptr;
414     }
415 
416     auto verify_result =
417             VerifyVBMetaSignature(*vbmeta, expected_public_key_blob, out_public_key_data);
418 
419     if (out_verify_result != nullptr) {
420         *out_verify_result = verify_result;
421     }
422 
423     if (verify_result == VBMetaVerifyResult::kSuccess ||
424         verify_result == VBMetaVerifyResult::kErrorVerification) {
425         return vbmeta;
426     }
427 
428     return nullptr;
429 }
430 
RollbackDetected(const std::string & partition_name ATTRIBUTE_UNUSED,uint64_t rollback_index ATTRIBUTE_UNUSED)431 bool RollbackDetected(const std::string& partition_name ATTRIBUTE_UNUSED,
432                       uint64_t rollback_index ATTRIBUTE_UNUSED) {
433     // TODO(bowgotsai): Support rollback protection.
434     return false;
435 }
436 
GetChainPartitionInfo(const VBMetaData & vbmeta,bool * fatal_error)437 std::vector<ChainInfo> GetChainPartitionInfo(const VBMetaData& vbmeta, bool* fatal_error) {
438     CHECK(fatal_error != nullptr);
439     std::vector<ChainInfo> chain_partitions;
440 
441     size_t num_descriptors;
442     std::unique_ptr<const AvbDescriptor* [], decltype(&avb_free)> descriptors(
443             avb_descriptor_get_all(vbmeta.data(), vbmeta.size(), &num_descriptors), avb_free);
444 
445     if (!descriptors || num_descriptors < 1) {
446         return {};
447     }
448 
449     for (size_t i = 0; i < num_descriptors; i++) {
450         AvbDescriptor desc;
451         if (!avb_descriptor_validate_and_byteswap(descriptors[i], &desc)) {
452             LERROR << "Descriptor[" << i << "] is invalid in vbmeta: " << vbmeta.partition();
453             *fatal_error = true;
454             return {};
455         }
456         if (desc.tag == AVB_DESCRIPTOR_TAG_CHAIN_PARTITION) {
457             AvbChainPartitionDescriptor chain_desc;
458             if (!avb_chain_partition_descriptor_validate_and_byteswap(
459                         (AvbChainPartitionDescriptor*)descriptors[i], &chain_desc)) {
460                 LERROR << "Chain descriptor[" << i
461                        << "] is invalid in vbmeta: " << vbmeta.partition();
462                 *fatal_error = true;
463                 return {};
464             }
465             const char* chain_partition_name =
466                     ((const char*)descriptors[i]) + sizeof(AvbChainPartitionDescriptor);
467             const char* chain_public_key_blob =
468                     chain_partition_name + chain_desc.partition_name_len;
469             chain_partitions.emplace_back(
470                     std::string(chain_partition_name, chain_desc.partition_name_len),
471                     std::string(chain_public_key_blob, chain_desc.public_key_len));
472         }
473     }
474 
475     return chain_partitions;
476 }
477 
478 // Loads the vbmeta from a given path.
LoadAndVerifyVbmetaByPath(const std::string & image_path,const std::string & partition_name,const std::string & expected_public_key_blob,bool allow_verification_error,bool rollback_protection,bool is_chained_vbmeta,std::string * out_public_key_data,bool * out_verification_disabled,VBMetaVerifyResult * out_verify_result)479 std::unique_ptr<VBMetaData> LoadAndVerifyVbmetaByPath(
480         const std::string& image_path, const std::string& partition_name,
481         const std::string& expected_public_key_blob, bool allow_verification_error,
482         bool rollback_protection, bool is_chained_vbmeta, std::string* out_public_key_data,
483         bool* out_verification_disabled, VBMetaVerifyResult* out_verify_result) {
484     if (out_verify_result) {
485         *out_verify_result = VBMetaVerifyResult::kError;
486     }
487 
488     // Ensures the device path (might be a symlink created by init) is ready to access.
489     if (!WaitForFile(image_path, 1s)) {
490         PERROR << "No such path: " << image_path;
491         return nullptr;
492     }
493 
494     unique_fd fd(TEMP_FAILURE_RETRY(open(image_path.c_str(), O_RDONLY | O_CLOEXEC)));
495     if (fd < 0) {
496         PERROR << "Failed to open: " << image_path;
497         return nullptr;
498     }
499 
500     VBMetaVerifyResult verify_result;
501     std::unique_ptr<VBMetaData> vbmeta = VerifyVBMetaData(
502             fd, partition_name, expected_public_key_blob, out_public_key_data, &verify_result);
503     if (!vbmeta) {
504         LERROR << partition_name << ": Failed to load vbmeta, result: " << verify_result;
505         return nullptr;
506     }
507     vbmeta->set_vbmeta_path(image_path);
508 
509     if (!allow_verification_error && verify_result == VBMetaVerifyResult::kErrorVerification) {
510         LERROR << partition_name << ": allow verification error is not allowed";
511         return nullptr;
512     }
513 
514     std::unique_ptr<AvbVBMetaImageHeader> vbmeta_header =
515             vbmeta->GetVBMetaHeader(true /* update_vbmeta_size */);
516     if (!vbmeta_header) {
517         LERROR << partition_name << ": Failed to get vbmeta header";
518         return nullptr;
519     }
520 
521     if (rollback_protection && RollbackDetected(partition_name, vbmeta_header->rollback_index)) {
522         return nullptr;
523     }
524 
525     // vbmeta flags can only be set by the top-level vbmeta image.
526     if (is_chained_vbmeta && vbmeta_header->flags != 0) {
527         LERROR << partition_name << ": chained vbmeta image has non-zero flags";
528         return nullptr;
529     }
530 
531     // Checks if verification has been disabled by setting a bit in the image.
532     if (out_verification_disabled) {
533         if (vbmeta_header->flags & AVB_VBMETA_IMAGE_FLAGS_VERIFICATION_DISABLED) {
534             LWARNING << "VERIFICATION_DISABLED bit is set for partition: " << partition_name;
535             *out_verification_disabled = true;
536         } else {
537             *out_verification_disabled = false;
538         }
539     }
540 
541     if (out_verify_result) {
542         *out_verify_result = verify_result;
543     }
544 
545     return vbmeta;
546 }
547 
LoadAndVerifyVbmetaByPartition(const std::string & partition_name,const std::string & ab_suffix,const std::string & ab_other_suffix,const std::string & expected_public_key_blob,bool allow_verification_error,bool load_chained_vbmeta,bool rollback_protection,std::function<std::string (const std::string &)> device_path_constructor,bool is_chained_vbmeta,std::vector<VBMetaData> * out_vbmeta_images)548 VBMetaVerifyResult LoadAndVerifyVbmetaByPartition(
549     const std::string& partition_name, const std::string& ab_suffix,
550     const std::string& ab_other_suffix, const std::string& expected_public_key_blob,
551     bool allow_verification_error, bool load_chained_vbmeta, bool rollback_protection,
552     std::function<std::string(const std::string&)> device_path_constructor, bool is_chained_vbmeta,
553     std::vector<VBMetaData>* out_vbmeta_images) {
554     auto image_path = device_path_constructor(
555         AvbPartitionToDevicePatition(partition_name, ab_suffix, ab_other_suffix));
556 
557     bool verification_disabled = false;
558     VBMetaVerifyResult verify_result;
559     auto vbmeta = LoadAndVerifyVbmetaByPath(image_path, partition_name, expected_public_key_blob,
560                                             allow_verification_error, rollback_protection,
561                                             is_chained_vbmeta, nullptr /* out_public_key_data */,
562                                             &verification_disabled, &verify_result);
563 
564     if (!vbmeta) {
565         return VBMetaVerifyResult::kError;
566     }
567     if (out_vbmeta_images) {
568         out_vbmeta_images->emplace_back(std::move(*vbmeta));
569     }
570 
571     // Only loads chained vbmeta if AVB verification is NOT disabled.
572     if (!verification_disabled && load_chained_vbmeta) {
573         bool fatal_error = false;
574         auto chain_partitions = GetChainPartitionInfo(*out_vbmeta_images->rbegin(), &fatal_error);
575         if (fatal_error) {
576             return VBMetaVerifyResult::kError;
577         }
578         for (auto& chain : chain_partitions) {
579             auto sub_ret = LoadAndVerifyVbmetaByPartition(
580                 chain.partition_name, ab_suffix, ab_other_suffix, chain.public_key_blob,
581                 allow_verification_error, load_chained_vbmeta, rollback_protection,
582                 device_path_constructor, true, /* is_chained_vbmeta */
583                 out_vbmeta_images);
584             if (sub_ret != VBMetaVerifyResult::kSuccess) {
585                 verify_result = sub_ret;  // might be 'ERROR' or 'ERROR VERIFICATION'.
586                 if (verify_result == VBMetaVerifyResult::kError) {
587                     return verify_result;  // stop here if we got an 'ERROR'.
588                 }
589             }
590         }
591     }
592 
593     return verify_result;
594 }
595 
596 }  // namespace fs_mgr
597 }  // namespace android
598