xref: /aosp_15_r20/system/update_engine/aosp/dynamic_partition_control_android.cc (revision 5a9231315b4521097b8dc3750bc806fcafe0c72f)
1 //
2 // Copyright (C) 2018 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 "update_engine/aosp/dynamic_partition_control_android.h"
18 
19 #include <algorithm>
20 #include <chrono>  // NOLINT(build/c++11) - using libsnapshot / liblp API
21 #include <cstdint>
22 #include <iterator>
23 #include <map>
24 #include <memory>
25 #include <set>
26 #include <string>
27 #include <string_view>
28 #include <utility>
29 #include <vector>
30 
31 #include <android-base/properties.h>
32 #include <android-base/strings.h>
33 #include <base/files/file_util.h>
34 #include <base/logging.h>
35 #include <android-base/stringprintf.h>
36 #include <bootloader_message/bootloader_message.h>
37 #include <fs_mgr.h>
38 #include <fs_mgr_dm_linear.h>
39 #include <fs_mgr_overlayfs.h>
40 #include <libavb/libavb.h>
41 #include <libdm/dm.h>
42 #include <liblp/liblp.h>
43 #include <libsnapshot/cow_writer.h>
44 #include <libsnapshot/snapshot.h>
45 #include <libsnapshot/snapshot_stub.h>
46 
47 #include "update_engine/aosp/cleanup_previous_update_action.h"
48 #include "update_engine/aosp/dynamic_partition_utils.h"
49 #include "update_engine/common/boot_control_interface.h"
50 #include "update_engine/common/dynamic_partition_control_interface.h"
51 #include "update_engine/common/error_code.h"
52 #include "update_engine/common/platform_constants.h"
53 #include "update_engine/common/utils.h"
54 #include "update_engine/payload_consumer/cow_writer_file_descriptor.h"
55 #include "update_engine/payload_consumer/delta_performer.h"
56 
57 using android::base::GetBoolProperty;
58 using android::base::GetProperty;
59 using android::base::Join;
60 using android::base::StringPrintf;
61 using android::dm::DeviceMapper;
62 using android::dm::DmDeviceState;
63 using android::fs_mgr::CreateLogicalPartition;
64 using android::fs_mgr::CreateLogicalPartitionParams;
65 using android::fs_mgr::DestroyLogicalPartition;
66 using android::fs_mgr::Fstab;
67 using android::fs_mgr::MetadataBuilder;
68 using android::fs_mgr::Partition;
69 using android::fs_mgr::PartitionOpener;
70 using android::fs_mgr::SlotSuffixForSlotNumber;
71 using android::snapshot::OptimizeSourceCopyOperation;
72 using android::snapshot::Return;
73 using android::snapshot::SnapshotManager;
74 using android::snapshot::SnapshotManagerStub;
75 using android::snapshot::UpdateState;
76 
77 namespace chromeos_update_engine {
78 
79 constexpr char kUseDynamicPartitions[] = "ro.boot.dynamic_partitions";
80 constexpr char kRetrfoitDynamicPartitions[] =
81     "ro.boot.dynamic_partitions_retrofit";
82 constexpr char kVirtualAbEnabled[] = "ro.virtual_ab.enabled";
83 constexpr char kVirtualAbRetrofit[] = "ro.virtual_ab.retrofit";
84 constexpr char kVirtualAbCompressionEnabled[] =
85     "ro.virtual_ab.compression.enabled";
86 constexpr auto&& kVirtualAbCompressionXorEnabled =
87     "ro.virtual_ab.compression.xor.enabled";
88 constexpr char kVirtualAbUserspaceSnapshotsEnabled[] =
89     "ro.virtual_ab.userspace.snapshots.enabled";
90 
91 // Currently, android doesn't have a retrofit prop for VAB Compression. However,
92 // struct FeatureFlag forces us to determine if a feature is 'retrofit'. So this
93 // is here just to simplify code. Replace it with real retrofit prop name once
94 // there is one.
95 constexpr char kVirtualAbCompressionRetrofit[] = "";
96 constexpr char kPostinstallFstabPrefix[] = "ro.postinstall.fstab.prefix";
97 // Map timeout for dynamic partitions.
98 constexpr std::chrono::milliseconds kMapTimeout{1000};
99 // Map timeout for dynamic partitions with snapshots. Since several devices
100 // needs to be mapped, this timeout is longer than |kMapTimeout|.
101 constexpr std::chrono::milliseconds kMapSnapshotTimeout{10000};
102 
~DynamicPartitionControlAndroid()103 DynamicPartitionControlAndroid::~DynamicPartitionControlAndroid() {
104   std::set<std::string> mapped = mapped_devices_;
105   LOG(INFO) << "Destroying [" << Join(mapped, ", ") << "] from device mapper";
106   for (const auto& device_name : mapped) {
107     ignore_result(UnmapPartitionOnDeviceMapper(device_name));
108   }
109   metadata_device_.reset();
110 }
111 
GetFeatureFlag(const char * enable_prop,const char * retrofit_prop)112 static FeatureFlag GetFeatureFlag(const char* enable_prop,
113                                   const char* retrofit_prop) {
114   // Default retrofit to false if retrofit_prop is empty.
115   bool retrofit = retrofit_prop && retrofit_prop[0] != '\0' &&
116                   GetBoolProperty(retrofit_prop, false);
117   bool enabled = GetBoolProperty(enable_prop, false);
118   if (retrofit && !enabled) {
119     LOG(ERROR) << retrofit_prop << " is true but " << enable_prop
120                << " is not. These sysprops are inconsistent. Assume that "
121                << enable_prop << " is true from now on.";
122   }
123   if (retrofit) {
124     return FeatureFlag(FeatureFlag::Value::RETROFIT);
125   }
126   if (enabled) {
127     return FeatureFlag(FeatureFlag::Value::LAUNCH);
128   }
129   return FeatureFlag(FeatureFlag::Value::NONE);
130 }
131 
DynamicPartitionControlAndroid(uint32_t source_slot)132 DynamicPartitionControlAndroid::DynamicPartitionControlAndroid(
133     uint32_t source_slot)
134     : dynamic_partitions_(
135           GetFeatureFlag(kUseDynamicPartitions, kRetrfoitDynamicPartitions)),
136       virtual_ab_(GetFeatureFlag(kVirtualAbEnabled, kVirtualAbRetrofit)),
137       virtual_ab_compression_(GetFeatureFlag(kVirtualAbCompressionEnabled,
138                                              kVirtualAbCompressionRetrofit)),
139       virtual_ab_compression_xor_(
140           GetFeatureFlag(kVirtualAbCompressionXorEnabled, "")),
141       virtual_ab_userspace_snapshots_(
142           GetFeatureFlag(kVirtualAbUserspaceSnapshotsEnabled, nullptr)),
143       source_slot_(source_slot) {
144   if (GetVirtualAbFeatureFlag().IsEnabled()) {
145     snapshot_ = SnapshotManager::New();
146   } else {
147     snapshot_ = SnapshotManagerStub::New();
148   }
149   CHECK(snapshot_ != nullptr) << "Cannot initialize SnapshotManager.";
150 }
151 
GetDynamicPartitionsFeatureFlag()152 FeatureFlag DynamicPartitionControlAndroid::GetDynamicPartitionsFeatureFlag() {
153   return dynamic_partitions_;
154 }
155 
GetVirtualAbFeatureFlag()156 FeatureFlag DynamicPartitionControlAndroid::GetVirtualAbFeatureFlag() {
157   return virtual_ab_;
158 }
159 
160 FeatureFlag
GetVirtualAbCompressionFeatureFlag()161 DynamicPartitionControlAndroid::GetVirtualAbCompressionFeatureFlag() {
162   if constexpr (constants::kIsRecovery) {
163     // Don't attempt VABC in recovery
164     return FeatureFlag(FeatureFlag::Value::NONE);
165   }
166   return virtual_ab_compression_;
167 }
168 
169 FeatureFlag
GetVirtualAbCompressionXorFeatureFlag()170 DynamicPartitionControlAndroid::GetVirtualAbCompressionXorFeatureFlag() {
171   return virtual_ab_compression_xor_;
172 }
173 
OptimizeOperation(const std::string & partition_name,const InstallOperation & operation,InstallOperation * optimized)174 bool DynamicPartitionControlAndroid::OptimizeOperation(
175     const std::string& partition_name,
176     const InstallOperation& operation,
177     InstallOperation* optimized) {
178   switch (operation.type()) {
179     case InstallOperation::SOURCE_COPY:
180       return target_supports_snapshot_ &&
181              GetVirtualAbFeatureFlag().IsEnabled() &&
182              mapped_devices_.count(partition_name +
183                                    SlotSuffixForSlotNumber(target_slot_)) > 0 &&
184              OptimizeSourceCopyOperation(operation, optimized);
185       break;
186     default:
187       break;
188   }
189   return false;
190 }
191 
192 constexpr auto&& kRWSourcePartitionSuffix = "_ota";
GetDeviceName(std::string partition_name,uint32_t slot) const193 std::string DynamicPartitionControlAndroid::GetDeviceName(
194     std::string partition_name, uint32_t slot) const {
195   if (partition_name.ends_with(kRWSourcePartitionSuffix)) {
196     return partition_name;
197   }
198   if (!partition_name.ends_with("_a") && !partition_name.ends_with("_b")) {
199     partition_name += slot ? "_b" : "_a";
200   }
201   if (slot == source_slot_) {
202     return partition_name + kRWSourcePartitionSuffix;
203   }
204   return partition_name;
205 }
206 
MapPartitionInternal(const std::string & super_device,const std::string & target_partition_name,uint32_t slot,bool force_writable,std::string * path)207 bool DynamicPartitionControlAndroid::MapPartitionInternal(
208     const std::string& super_device,
209     const std::string& target_partition_name,
210     uint32_t slot,
211     bool force_writable,
212     std::string* path) {
213   auto device_name = GetDeviceName(target_partition_name, slot);
214   CreateLogicalPartitionParams params = {
215       .block_device = super_device,
216       .metadata_slot = slot,
217       .partition_name = target_partition_name,
218       .force_writable = force_writable,
219       .device_name = device_name};
220   bool success = false;
221   if (GetVirtualAbFeatureFlag().IsEnabled() && target_supports_snapshot_ &&
222       slot != source_slot_ && force_writable && ExpectMetadataMounted()) {
223     // Only target partitions are mapped with force_writable. On Virtual
224     // A/B devices, target partitions may overlap with source partitions, so
225     // they must be mapped with snapshot.
226     // One exception is when /metadata is not mounted. Fallback to
227     // CreateLogicalPartition as snapshots are not created in the first place.
228     params.timeout_ms = kMapSnapshotTimeout;
229     success = snapshot_->MapUpdateSnapshot(params, path);
230   } else {
231     params.timeout_ms = kMapTimeout;
232     success = CreateLogicalPartition(params, path);
233   }
234 
235   if (!success) {
236     LOG(ERROR) << "Cannot map " << target_partition_name << " in "
237                << super_device << " on device mapper.";
238     return false;
239   }
240   LOG(INFO) << "Succesfully mapped " << target_partition_name
241             << " to device mapper (force_writable = " << force_writable
242             << "); device path at " << *path;
243   mapped_devices_.insert(params.device_name);
244   return true;
245 }
246 
MapPartitionOnDeviceMapper(const std::string & super_device,const std::string & target_partition_name,uint32_t slot,bool force_writable,std::string * path)247 bool DynamicPartitionControlAndroid::MapPartitionOnDeviceMapper(
248     const std::string& super_device,
249     const std::string& target_partition_name,
250     uint32_t slot,
251     bool force_writable,
252     std::string* path) {
253   auto device_name = GetDeviceName(target_partition_name, slot);
254   DmDeviceState state = GetState(device_name);
255   if (state == DmDeviceState::ACTIVE) {
256     if (mapped_devices_.find(device_name) != mapped_devices_.end()) {
257       if (GetDmDevicePathByName(target_partition_name, path)) {
258         LOG(INFO) << target_partition_name
259                   << " is mapped on device mapper: " << *path;
260         return true;
261       }
262       LOG(ERROR) << target_partition_name << " is mapped but path is unknown.";
263       return false;
264     }
265     // If target_partition_name is not in mapped_devices_ but state is ACTIVE,
266     // the device might be mapped incorrectly before. Attempt to unmap it.
267     // Note that for source partitions, if GetState() == ACTIVE, callers (e.g.
268     // BootControlAndroid) should not call MapPartitionOnDeviceMapper, but
269     // should directly call GetDmDevicePathByName.
270     LOG(INFO) << "Destroying `" << device_name << "` from device mapper";
271     if (!UnmapPartitionOnDeviceMapper(device_name)) {
272       LOG(ERROR) << target_partition_name
273                  << " is mapped before the update, and it cannot be unmapped.";
274       return false;
275     }
276     state = GetState(device_name);
277     if (state != DmDeviceState::INVALID) {
278       LOG(ERROR) << target_partition_name << " is unmapped but state is "
279                  << static_cast<std::underlying_type_t<DmDeviceState>>(state);
280       return false;
281     }
282   }
283   if (state == DmDeviceState::INVALID) {
284     return MapPartitionInternal(
285         super_device, target_partition_name, slot, force_writable, path);
286   }
287 
288   LOG(ERROR) << target_partition_name
289              << " is mapped on device mapper but state is unknown: "
290              << static_cast<std::underlying_type_t<DmDeviceState>>(state);
291   return false;
292 }
293 
UnmapPartitionOnDeviceMapper(const std::string & target_partition_name)294 bool DynamicPartitionControlAndroid::UnmapPartitionOnDeviceMapper(
295     const std::string& target_partition_name) {
296   auto device_name = target_partition_name;
297   if (target_partition_name.ends_with("_a") ||
298       target_partition_name.ends_with("_b")) {
299     auto slot = target_partition_name.ends_with("_a") ? 0 : 1;
300     device_name = GetDeviceName(target_partition_name, slot);
301   }
302   if (DeviceMapper::Instance().GetState(device_name) !=
303       DmDeviceState::INVALID) {
304     // Partitions at target slot on non-Virtual A/B devices are mapped as
305     // dm-linear. Also, on Virtual A/B devices, system_other may be mapped for
306     // preopt apps as dm-linear.
307     // Call DestroyLogicalPartition to handle these cases.
308     bool success = DestroyLogicalPartition(device_name);
309 
310     // On a Virtual A/B device, |target_partition_name| may be a leftover from
311     // a paused update. Clean up any underlying devices.
312     if (ExpectMetadataMounted() &&
313         !device_name.ends_with(kRWSourcePartitionSuffix)) {
314       success &= snapshot_->UnmapUpdateSnapshot(device_name);
315     } else {
316       LOG(INFO) << "Skip UnmapUpdateSnapshot(" << device_name << ")";
317     }
318 
319     if (!success) {
320       LOG(ERROR) << "Cannot unmap " << device_name << " from device mapper.";
321       return false;
322     }
323     LOG(INFO) << "Successfully unmapped " << device_name
324               << " from device mapper.";
325   }
326   mapped_devices_.erase(device_name);
327   return true;
328 }
329 
UnmapAllPartitions()330 bool DynamicPartitionControlAndroid::UnmapAllPartitions() {
331   snapshot_->UnmapAllSnapshots();
332   if (mapped_devices_.empty()) {
333     return false;
334   }
335   // UnmapPartitionOnDeviceMapper removes objects from mapped_devices_, hence
336   // a copy is needed for the loop.
337   std::set<std::string> mapped;
338   std::copy_if(mapped_devices_.begin(),
339                mapped_devices_.end(),
340                std::inserter(mapped, mapped.end()),
341                [](auto&& device_name) {
342                  return !std::string_view(device_name)
343                              .ends_with(kRWSourcePartitionSuffix);
344                });
345   LOG(INFO) << "Destroying [" << Join(mapped, ", ") << "] from device mapper";
346   for (const auto& device_name : mapped) {
347     ignore_result(UnmapPartitionOnDeviceMapper(device_name));
348   }
349   return true;
350 }
351 
Cleanup()352 void DynamicPartitionControlAndroid::Cleanup() {
353   std::set<std::string> mapped = mapped_devices_;
354   LOG(INFO) << "Destroying [" << Join(mapped, ", ") << "] from device mapper";
355   for (const auto& device_name : mapped) {
356     ignore_result(UnmapPartitionOnDeviceMapper(device_name));
357   }
358   LOG(INFO) << "UnmapAllPartitions done";
359   metadata_device_.reset();
360   if (GetVirtualAbFeatureFlag().IsEnabled()) {
361     snapshot_ = SnapshotManager::New();
362   } else {
363     snapshot_ = SnapshotManagerStub::New();
364   }
365   CHECK(snapshot_ != nullptr) << "Cannot initialize SnapshotManager.";
366   LOG(INFO) << "SnapshotManager initialized.";
367 }
368 
DeviceExists(const std::string & path)369 bool DynamicPartitionControlAndroid::DeviceExists(const std::string& path) {
370   return base::PathExists(base::FilePath(path));
371 }
372 
GetState(const std::string & name)373 android::dm::DmDeviceState DynamicPartitionControlAndroid::GetState(
374     const std::string& name) {
375   return DeviceMapper::Instance().GetState(name);
376 }
377 
GetDmDevicePathByName(const std::string & name,std::string * path)378 bool DynamicPartitionControlAndroid::GetDmDevicePathByName(
379     const std::string& name, std::string* path) {
380   return DeviceMapper::Instance().GetDmDevicePathByName(name, path);
381 }
382 
383 std::unique_ptr<MetadataBuilder>
LoadMetadataBuilder(const std::string & super_device,uint32_t slot)384 DynamicPartitionControlAndroid::LoadMetadataBuilder(
385     const std::string& super_device, uint32_t slot) {
386   auto builder = MetadataBuilder::New(PartitionOpener(), super_device, slot);
387   if (builder == nullptr) {
388     LOG(WARNING) << "No metadata slot " << BootControlInterface::SlotName(slot)
389                  << " in " << super_device;
390     return nullptr;
391   }
392   LOG(INFO) << "Loaded metadata from slot "
393             << BootControlInterface::SlotName(slot) << " in " << super_device;
394   return builder;
395 }
396 
397 std::unique_ptr<MetadataBuilder>
LoadMetadataBuilder(const std::string & super_device,uint32_t source_slot,uint32_t target_slot)398 DynamicPartitionControlAndroid::LoadMetadataBuilder(
399     const std::string& super_device,
400     uint32_t source_slot,
401     uint32_t target_slot) {
402   bool always_keep_source_slot = !target_supports_snapshot_;
403   auto builder = MetadataBuilder::NewForUpdate(PartitionOpener(),
404                                                super_device,
405                                                source_slot,
406                                                target_slot,
407                                                always_keep_source_slot);
408   if (builder == nullptr) {
409     LOG(WARNING) << "No metadata slot "
410                  << BootControlInterface::SlotName(source_slot) << " in "
411                  << super_device;
412     return nullptr;
413   }
414   LOG(INFO) << "Created metadata for new update from slot "
415             << BootControlInterface::SlotName(source_slot) << " in "
416             << super_device;
417   return builder;
418 }
419 
StoreMetadata(const std::string & super_device,MetadataBuilder * builder,uint32_t target_slot)420 bool DynamicPartitionControlAndroid::StoreMetadata(
421     const std::string& super_device,
422     MetadataBuilder* builder,
423     uint32_t target_slot) {
424   auto metadata = builder->Export();
425   if (metadata == nullptr) {
426     LOG(ERROR) << "Cannot export metadata to slot "
427                << BootControlInterface::SlotName(target_slot) << " in "
428                << super_device;
429     return false;
430   }
431 
432   if (GetDynamicPartitionsFeatureFlag().IsRetrofit()) {
433     if (!FlashPartitionTable(super_device, *metadata)) {
434       LOG(ERROR) << "Cannot write metadata to " << super_device;
435       return false;
436     }
437     LOG(INFO) << "Written metadata to " << super_device;
438   } else {
439     if (!UpdatePartitionTable(super_device, *metadata, target_slot)) {
440       LOG(ERROR) << "Cannot write metadata to slot "
441                  << BootControlInterface::SlotName(target_slot) << " in "
442                  << super_device;
443       return false;
444     }
445     LOG(INFO) << "Copied metadata to slot "
446               << BootControlInterface::SlotName(target_slot) << " in "
447               << super_device;
448   }
449 
450   return true;
451 }
452 
GetDeviceDir(std::string * out)453 bool DynamicPartitionControlAndroid::GetDeviceDir(std::string* out) {
454   // We can't use fs_mgr to look up |partition_name| because fstab
455   // doesn't list every slot partition (it uses the slotselect option
456   // to mask the suffix).
457   //
458   // We can however assume that there's an entry for the /misc mount
459   // point and use that to get the device file for the misc
460   // partition. This helps us locate the disk that |partition_name|
461   // resides on. From there we'll assume that a by-name scheme is used
462   // so we can just replace the trailing "misc" by the given
463   // |partition_name| and suffix corresponding to |slot|, e.g.
464   //
465   //   /dev/block/platform/soc.0/7824900.sdhci/by-name/misc ->
466   //   /dev/block/platform/soc.0/7824900.sdhci/by-name/boot_a
467   //
468   // If needed, it's possible to relax the by-name assumption in the
469   // future by trawling /sys/block looking for the appropriate sibling
470   // of misc and then finding an entry in /dev matching the sysfs
471   // entry.
472 
473   std::string err, misc_device = get_bootloader_message_blk_device(&err);
474   if (misc_device.empty()) {
475     LOG(ERROR) << "Unable to get misc block device: " << err;
476     return false;
477   }
478 
479   if (!utils::IsSymlink(misc_device.c_str())) {
480     LOG(ERROR) << "Device file " << misc_device << " for /misc "
481                << "is not a symlink.";
482     return false;
483   }
484   *out = base::FilePath(misc_device).DirName().value();
485   return true;
486 }
487 
PreparePartitionsForUpdate(uint32_t source_slot,uint32_t target_slot,const DeltaArchiveManifest & manifest,bool update,uint64_t * required_size,ErrorCode * error)488 bool DynamicPartitionControlAndroid::PreparePartitionsForUpdate(
489     uint32_t source_slot,
490     uint32_t target_slot,
491     const DeltaArchiveManifest& manifest,
492     bool update,
493     uint64_t* required_size,
494     ErrorCode* error) {
495   source_slot_ = source_slot;
496   target_slot_ = target_slot;
497   if (required_size != nullptr) {
498     *required_size = 0;
499   }
500 
501   if (fs_mgr_overlayfs_is_setup()) {
502     // Non DAP devices can use overlayfs as well.
503     LOG(ERROR)
504         << "overlayfs overrides are active and can interfere with our "
505            "resources.\n"
506         << "run adb enable-verity to deactivate if required and try again.";
507     if (error) {
508       *error = ErrorCode::kOverlayfsenabledError;
509       return false;
510     }
511   }
512 
513   // If metadata is erased but not formatted, it is possible to not mount
514   // it in recovery. It is acceptable to skip mounting and choose fallback path
515   // (PrepareDynamicPartitionsForUpdate) when sideloading full OTAs.
516   TEST_AND_RETURN_FALSE(EnsureMetadataMounted() || IsRecovery());
517 
518   if (update) {
519     TEST_AND_RETURN_FALSE(EraseSystemOtherAvbFooter(source_slot, target_slot));
520   }
521 
522   if (!GetDynamicPartitionsFeatureFlag().IsEnabled()) {
523     return true;
524   }
525 
526   if (target_slot == source_slot) {
527     LOG(ERROR) << "Cannot call PreparePartitionsForUpdate on current slot.";
528     return false;
529   }
530 
531   if (!SetTargetBuildVars(manifest)) {
532     return false;
533   }
534   for (auto& list : dynamic_partition_list_) {
535     list.clear();
536   }
537 
538   // Although the current build supports dynamic partitions, the given payload
539   // doesn't use it for target partitions. This could happen when applying a
540   // retrofit update. Skip updating the partition metadata for the target slot.
541   if (!is_target_dynamic_) {
542     return true;
543   }
544 
545   if (!update)
546     return true;
547 
548   bool delete_source = false;
549 
550   if (GetVirtualAbFeatureFlag().IsEnabled()) {
551     // On Virtual A/B device, either CancelUpdate() or BeginUpdate() must be
552     // called before calling UnmapUpdateSnapshot.
553     // - If target_supports_snapshot_, PrepareSnapshotPartitionsForUpdate()
554     //   calls BeginUpdate() which resets update state
555     // - If !target_supports_snapshot_ or PrepareSnapshotPartitionsForUpdate
556     //   failed in recovery, explicitly CancelUpdate().
557     if (target_supports_snapshot_) {
558       if (PrepareSnapshotPartitionsForUpdate(
559               source_slot, target_slot, manifest, required_size)) {
560         return true;
561       }
562 
563       // Virtual A/B device doing Virtual A/B update in Android mode must use
564       // snapshots.
565       if (!IsRecovery()) {
566         LOG(ERROR) << "PrepareSnapshotPartitionsForUpdate failed in Android "
567                    << "mode";
568         return false;
569       }
570 
571       delete_source = true;
572       LOG(INFO) << "PrepareSnapshotPartitionsForUpdate failed in recovery. "
573                 << "Attempt to overwrite existing partitions if possible";
574     } else {
575       // Downgrading to an non-Virtual A/B build or is secondary OTA.
576       LOG(INFO) << "Using regular A/B on Virtual A/B because package disabled "
577                 << "snapshots.";
578     }
579 
580     // In recovery, if /metadata is not mounted, it is likely that metadata
581     // partition is erased and not formatted yet. After sideloading, when
582     // rebooting into the new version, init will erase metadata partition,
583     // hence the failure of CancelUpdate() can be ignored here.
584     // However, if metadata is mounted and CancelUpdate fails, sideloading
585     // should not proceed because during next boot, snapshots will overlay on
586     // the devices incorrectly.
587     if (ExpectMetadataMounted()) {
588       TEST_AND_RETURN_FALSE(snapshot_->CancelUpdate());
589     } else {
590       LOG(INFO) << "Skip canceling previous update because metadata is not "
591                 << "mounted";
592     }
593   }
594 
595   // TODO(xunchang) support partial update on non VAB enabled devices.
596   TEST_AND_RETURN_FALSE(PrepareDynamicPartitionsForUpdate(
597       source_slot, target_slot, manifest, delete_source));
598 
599   if (required_size != nullptr) {
600     *required_size = 0;
601   }
602   return true;
603 }
604 
SetTargetBuildVars(const DeltaArchiveManifest & manifest)605 bool DynamicPartitionControlAndroid::SetTargetBuildVars(
606     const DeltaArchiveManifest& manifest) {
607   // Precondition: current build supports dynamic partition.
608   CHECK(GetDynamicPartitionsFeatureFlag().IsEnabled());
609 
610   bool is_target_dynamic =
611       !manifest.dynamic_partition_metadata().groups().empty();
612   bool target_supports_snapshot =
613       manifest.dynamic_partition_metadata().snapshot_enabled();
614 
615   if (manifest.partial_update()) {
616     // Partial updates requires DAP. On partial updates that does not involve
617     // dynamic partitions, groups() can be empty, so also assume
618     // is_target_dynamic in this case. This assumption should be safe because we
619     // also check target_supports_snapshot below, which presumably also implies
620     // target build supports dynamic partition.
621     if (!is_target_dynamic) {
622       LOG(INFO) << "Assuming target build supports dynamic partitions for "
623                    "partial updates.";
624       is_target_dynamic = true;
625     }
626 
627     // Partial updates requires Virtual A/B. Double check that both current
628     // build and target build supports Virtual A/B.
629     if (!GetVirtualAbFeatureFlag().IsEnabled()) {
630       LOG(ERROR) << "Partial update cannot be applied on a device that does "
631                     "not support snapshots.";
632       return false;
633     }
634     if (!target_supports_snapshot) {
635       LOG(ERROR) << "Cannot apply partial update to a build that does not "
636                     "support snapshots.";
637       return false;
638     }
639   }
640 
641   // Store the flags.
642   is_target_dynamic_ = is_target_dynamic;
643   // If !is_target_dynamic_, leave target_supports_snapshot_ unset because
644   // snapshots would not work without dynamic partition.
645   if (is_target_dynamic_) {
646     target_supports_snapshot_ = target_supports_snapshot;
647   }
648   return true;
649 }
650 
651 namespace {
652 // Try our best to erase AVB footer.
653 class AvbFooterEraser {
654  public:
AvbFooterEraser(const std::string & path)655   explicit AvbFooterEraser(const std::string& path) : path_(path) {}
Erase()656   bool Erase() {
657     // Try to mark the block device read-only. Ignore any
658     // failure since this won't work when passing regular files.
659     ignore_result(utils::SetBlockDeviceReadOnly(path_, false /* readonly */));
660 
661     fd_.reset(new EintrSafeFileDescriptor());
662     int flags = O_WRONLY | O_TRUNC | O_CLOEXEC | O_SYNC;
663     TEST_AND_RETURN_FALSE(fd_->Open(path_.c_str(), flags));
664 
665     // Need to write end-AVB_FOOTER_SIZE to end.
666     static_assert(AVB_FOOTER_SIZE > 0);
667     off64_t offset = fd_->Seek(-AVB_FOOTER_SIZE, SEEK_END);
668     TEST_AND_RETURN_FALSE_ERRNO(offset >= 0);
669     uint64_t write_size = AVB_FOOTER_SIZE;
670     LOG(INFO) << "Zeroing " << path_ << " @ [" << offset << ", "
671               << (offset + write_size) << "] (" << write_size << " bytes)";
672     brillo::Blob zeros(write_size);
673     TEST_AND_RETURN_FALSE(utils::WriteAll(fd_, zeros.data(), zeros.size()));
674     return true;
675   }
~AvbFooterEraser()676   ~AvbFooterEraser() {
677     TEST_AND_RETURN(fd_ != nullptr && fd_->IsOpen());
678     if (!fd_->Close()) {
679       LOG(WARNING) << "Failed to close fd for " << path_;
680     }
681   }
682 
683  private:
684   std::string path_;
685   FileDescriptorPtr fd_;
686 };
687 
688 }  // namespace
689 
690 std::optional<bool>
IsAvbEnabledOnSystemOther()691 DynamicPartitionControlAndroid::IsAvbEnabledOnSystemOther() {
692   auto prefix = GetProperty(kPostinstallFstabPrefix, "");
693   if (prefix.empty()) {
694     LOG(WARNING) << "Cannot get " << kPostinstallFstabPrefix;
695     return std::nullopt;
696   }
697   auto path = base::FilePath(prefix).Append("etc/fstab.postinstall").value();
698   return IsAvbEnabledInFstab(path);
699 }
700 
IsAvbEnabledInFstab(const std::string & path)701 std::optional<bool> DynamicPartitionControlAndroid::IsAvbEnabledInFstab(
702     const std::string& path) {
703   Fstab fstab;
704   if (!ReadFstabFromFile(path, &fstab)) {
705     PLOG(WARNING) << "Cannot read fstab from " << path;
706     if (errno == ENOENT) {
707       return false;
708     }
709     return std::nullopt;
710   }
711   for (const auto& entry : fstab) {
712     if (!entry.avb_keys.empty()) {
713       return true;
714     }
715   }
716   return false;
717 }
718 
GetSystemOtherPath(uint32_t source_slot,uint32_t target_slot,const std::string & partition_name_suffix,std::string * path,bool * should_unmap)719 bool DynamicPartitionControlAndroid::GetSystemOtherPath(
720     uint32_t source_slot,
721     uint32_t target_slot,
722     const std::string& partition_name_suffix,
723     std::string* path,
724     bool* should_unmap) {
725   path->clear();
726   *should_unmap = false;
727 
728   // Check that AVB is enabled on system_other before erasing.
729   auto has_avb = IsAvbEnabledOnSystemOther();
730   TEST_AND_RETURN_FALSE(has_avb.has_value());
731   if (!has_avb.value()) {
732     LOG(INFO) << "AVB is not enabled on system_other. Skip erasing.";
733     return true;
734   }
735 
736   if (!IsRecovery()) {
737     // Found unexpected avb_keys for system_other on devices retrofitting
738     // dynamic partitions. Previous crash in update_engine may leave logical
739     // partitions mapped on physical system_other partition. It is difficult to
740     // handle these cases. Just fail.
741     if (GetDynamicPartitionsFeatureFlag().IsRetrofit()) {
742       LOG(ERROR) << "Cannot erase AVB footer on system_other on devices with "
743                  << "retrofit dynamic partitions. They should not have AVB "
744                  << "enabled on system_other.";
745       return false;
746     }
747   }
748 
749   std::string device_dir_str;
750   TEST_AND_RETURN_FALSE(GetDeviceDir(&device_dir_str));
751   base::FilePath device_dir(device_dir_str);
752 
753   // On devices without dynamic partition, search for static partitions.
754   if (!GetDynamicPartitionsFeatureFlag().IsEnabled()) {
755     *path = device_dir.Append(partition_name_suffix).value();
756     TEST_AND_RETURN_FALSE(DeviceExists(*path));
757     return true;
758   }
759 
760   auto source_super_device =
761       device_dir.Append(GetSuperPartitionName(source_slot)).value();
762 
763   auto builder = LoadMetadataBuilder(source_super_device, source_slot);
764   if (builder == nullptr) {
765     if (IsRecovery()) {
766       // It might be corrupted for some reason. It should still be able to
767       // sideload.
768       LOG(WARNING) << "Super partition metadata cannot be read from the source "
769                    << "slot, skip erasing.";
770       return true;
771     } else {
772       // Device has booted into Android mode, indicating that the super
773       // partition metadata should be there.
774       LOG(ERROR) << "Super partition metadata cannot be read from the source "
775                  << "slot. This is unexpected on devices with dynamic "
776                  << "partitions enabled.";
777       return false;
778     }
779   }
780   auto p = builder->FindPartition(partition_name_suffix);
781   if (p == nullptr) {
782     // If the source slot is flashed without system_other, it does not exist
783     // in super partition metadata at source slot. It is safe to skip it.
784     LOG(INFO) << "Can't find " << partition_name_suffix
785               << " in metadata source slot, skip erasing.";
786     return true;
787   }
788   // System_other created by flashing tools should be erased.
789   // If partition is created by update_engine (via NewForUpdate), it is a
790   // left-over partition from the previous update and does not contain
791   // system_other, hence there is no need to erase.
792   // Note the reverse is not necessary true. If the flag is not set, we don't
793   // know if the partition is created by update_engine or by flashing tools
794   // because older versions of super partition metadata does not contain this
795   // flag. It is okay to erase the AVB footer anyways.
796   if (p->attributes() & LP_PARTITION_ATTR_UPDATED) {
797     LOG(INFO) << partition_name_suffix
798               << " does not contain system_other, skip erasing.";
799     return true;
800   }
801 
802   if (p->size() < AVB_FOOTER_SIZE) {
803     LOG(INFO) << partition_name_suffix << " has length " << p->size()
804               << "( < AVB_FOOTER_SIZE " << AVB_FOOTER_SIZE
805               << "), skip erasing.";
806     return true;
807   }
808 
809   // Delete any pre-existing device with name |partition_name_suffix| and
810   // also remove it from |mapped_devices_|.
811   // In recovery, metadata might not be mounted, and
812   // UnmapPartitionOnDeviceMapper might fail. However,
813   // it is unusual that system_other has already been mapped. Hence, just skip.
814   LOG(INFO) << "Destroying `" << partition_name_suffix
815             << "` from device mapper";
816   TEST_AND_RETURN_FALSE(UnmapPartitionOnDeviceMapper(partition_name_suffix));
817   // Use CreateLogicalPartition directly to avoid mapping with existing
818   // snapshots.
819   CreateLogicalPartitionParams params = {
820       .block_device = source_super_device,
821       .metadata_slot = source_slot,
822       .partition_name = partition_name_suffix,
823       .force_writable = true,
824       .timeout_ms = kMapTimeout,
825   };
826   TEST_AND_RETURN_FALSE(CreateLogicalPartition(params, path));
827   *should_unmap = true;
828   return true;
829 }
830 
EraseSystemOtherAvbFooter(uint32_t source_slot,uint32_t target_slot)831 bool DynamicPartitionControlAndroid::EraseSystemOtherAvbFooter(
832     uint32_t source_slot, uint32_t target_slot) {
833   LOG(INFO) << "Erasing AVB footer of system_other partition before update.";
834 
835   const std::string target_suffix = SlotSuffixForSlotNumber(target_slot);
836   const std::string partition_name_suffix = "system" + target_suffix;
837 
838   std::string path;
839   bool should_unmap = false;
840 
841   TEST_AND_RETURN_FALSE(GetSystemOtherPath(
842       source_slot, target_slot, partition_name_suffix, &path, &should_unmap));
843 
844   if (path.empty()) {
845     return true;
846   }
847 
848   bool ret = AvbFooterEraser(path).Erase();
849 
850   // Delete |partition_name_suffix| from device mapper and from
851   // |mapped_devices_| again so that it does not interfere with update process.
852   // In recovery, metadata might not be mounted, and
853   // UnmapPartitionOnDeviceMapper might fail. However, DestroyLogicalPartition
854   // should be called. If DestroyLogicalPartition does fail, it is still okay
855   // to skip the error here and let Prepare*() fail later.
856   if (should_unmap) {
857     LOG(INFO) << "Destroying `" << partition_name_suffix
858               << "` from device mapper";
859     TEST_AND_RETURN_FALSE(UnmapPartitionOnDeviceMapper(partition_name_suffix));
860   }
861 
862   return ret;
863 }
864 
PrepareDynamicPartitionsForUpdate(uint32_t source_slot,uint32_t target_slot,const DeltaArchiveManifest & manifest,bool delete_source)865 bool DynamicPartitionControlAndroid::PrepareDynamicPartitionsForUpdate(
866     uint32_t source_slot,
867     uint32_t target_slot,
868     const DeltaArchiveManifest& manifest,
869     bool delete_source) {
870   const std::string target_suffix = SlotSuffixForSlotNumber(target_slot);
871 
872   // Unmap all the target dynamic partitions because they would become
873   // inconsistent with the new metadata.
874   for (const auto& group : manifest.dynamic_partition_metadata().groups()) {
875     for (const auto& partition_name : group.partition_names()) {
876       if (!UnmapPartitionOnDeviceMapper(partition_name + target_suffix)) {
877         return false;
878       }
879     }
880   }
881 
882   std::string device_dir_str;
883   TEST_AND_RETURN_FALSE(GetDeviceDir(&device_dir_str));
884   base::FilePath device_dir(device_dir_str);
885   auto source_device =
886       device_dir.Append(GetSuperPartitionName(source_slot)).value();
887 
888   auto builder = LoadMetadataBuilder(source_device, source_slot, target_slot);
889   if (builder == nullptr) {
890     LOG(ERROR) << "No metadata at "
891                << BootControlInterface::SlotName(source_slot);
892     return false;
893   }
894 
895   if (delete_source) {
896     TEST_AND_RETURN_FALSE(
897         DeleteSourcePartitions(builder.get(), source_slot, manifest));
898   }
899 
900   TEST_AND_RETURN_FALSE(
901       UpdatePartitionMetadata(builder.get(), target_slot, manifest));
902 
903   auto target_device =
904       device_dir.Append(GetSuperPartitionName(target_slot)).value();
905 
906   return StoreMetadata(target_device, builder.get(), target_slot);
907 }
908 
909 DynamicPartitionControlAndroid::SpaceLimit
GetSpaceLimit(bool use_snapshot)910 DynamicPartitionControlAndroid::GetSpaceLimit(bool use_snapshot) {
911   // On device retrofitting dynamic partitions, allocatable_space = "super",
912   // where "super" is the sum of all block devices for that slot. Since block
913   // devices are dedicated for the corresponding slot, there's no need to halve
914   // the allocatable space.
915   if (GetDynamicPartitionsFeatureFlag().IsRetrofit())
916     return SpaceLimit::ERROR_IF_EXCEEDED_SUPER;
917 
918   // On device launching dynamic partitions w/o VAB, regardless of recovery
919   // sideload, super partition must be big enough to hold both A and B slots of
920   // groups. Hence,
921   // allocatable_space = super / 2
922   if (!GetVirtualAbFeatureFlag().IsEnabled())
923     return SpaceLimit::ERROR_IF_EXCEEDED_HALF_OF_SUPER;
924 
925   // Source build supports VAB. Super partition must be big enough to hold
926   // one slot of groups (ERROR_IF_EXCEEDED_SUPER). However, there are cases
927   // where additional warning messages needs to be written.
928 
929   // If using snapshot updates, implying that target build also uses VAB,
930   // allocatable_space = super
931   if (use_snapshot)
932     return SpaceLimit::ERROR_IF_EXCEEDED_SUPER;
933 
934   // Source build supports VAB but not using snapshot updates. There are
935   // several cases, as listed below.
936   // Sideloading: allocatable_space = super.
937   if (IsRecovery())
938     return SpaceLimit::ERROR_IF_EXCEEDED_SUPER;
939 
940   // On launch VAB device, this implies secondary payload.
941   // Technically, we don't have to check anything, but sum(groups) < super
942   // still applies.
943   if (!GetVirtualAbFeatureFlag().IsRetrofit())
944     return SpaceLimit::ERROR_IF_EXCEEDED_SUPER;
945 
946   // On retrofit VAB device, either of the following:
947   // - downgrading: allocatable_space = super / 2
948   // - secondary payload: don't check anything
949   // These two cases are indistinguishable,
950   // hence emit warning if sum(groups) > super / 2
951   return SpaceLimit::WARN_IF_EXCEEDED_HALF_OF_SUPER;
952 }
953 
CheckSuperPartitionAllocatableSpace(android::fs_mgr::MetadataBuilder * builder,const DeltaArchiveManifest & manifest,bool use_snapshot)954 bool DynamicPartitionControlAndroid::CheckSuperPartitionAllocatableSpace(
955     android::fs_mgr::MetadataBuilder* builder,
956     const DeltaArchiveManifest& manifest,
957     bool use_snapshot) {
958   uint64_t sum_groups = 0;
959   for (const auto& group : manifest.dynamic_partition_metadata().groups()) {
960     sum_groups += group.size();
961   }
962 
963   uint64_t full_space = builder->AllocatableSpace();
964   uint64_t half_space = full_space / 2;
965   constexpr const char* fmt =
966       "The maximum size of all groups for the target slot (%" PRIu64
967       ") has exceeded %sallocatable space for dynamic partitions %" PRIu64 ".";
968   switch (GetSpaceLimit(use_snapshot)) {
969     case SpaceLimit::ERROR_IF_EXCEEDED_HALF_OF_SUPER: {
970       if (sum_groups > half_space) {
971         LOG(ERROR) << StringPrintf(fmt, sum_groups, "HALF OF ", half_space);
972         return false;
973       }
974       // If test passes, it implies that the following two conditions also pass.
975       break;
976     }
977     case SpaceLimit::WARN_IF_EXCEEDED_HALF_OF_SUPER: {
978       if (sum_groups > half_space) {
979         LOG(WARNING) << StringPrintf(fmt, sum_groups, "HALF OF ", half_space)
980                      << " This is allowed for downgrade or secondary OTA on "
981                         "retrofit VAB device.";
982       }
983       // still check sum(groups) < super
984       [[fallthrough]];
985     }
986     case SpaceLimit::ERROR_IF_EXCEEDED_SUPER: {
987       if (sum_groups > full_space) {
988         LOG(ERROR) << android::base::StringPrintf(
989             fmt, sum_groups, "", full_space);
990         return false;
991       }
992       break;
993     }
994   }
995 
996   return true;
997 }
998 
PrepareSnapshotPartitionsForUpdate(uint32_t source_slot,uint32_t target_slot,const DeltaArchiveManifest & manifest,uint64_t * required_size)999 bool DynamicPartitionControlAndroid::PrepareSnapshotPartitionsForUpdate(
1000     uint32_t source_slot,
1001     uint32_t target_slot,
1002     const DeltaArchiveManifest& manifest,
1003     uint64_t* required_size) {
1004   TEST_AND_RETURN_FALSE(ExpectMetadataMounted());
1005 
1006   std::string device_dir_str;
1007   TEST_AND_RETURN_FALSE(GetDeviceDir(&device_dir_str));
1008   base::FilePath device_dir(device_dir_str);
1009   auto super_device =
1010       device_dir.Append(GetSuperPartitionName(source_slot)).value();
1011   auto builder = LoadMetadataBuilder(super_device, source_slot);
1012   if (builder == nullptr) {
1013     LOG(ERROR) << "No metadata at "
1014                << BootControlInterface::SlotName(source_slot);
1015     return false;
1016   }
1017 
1018   TEST_AND_RETURN_FALSE(
1019       CheckSuperPartitionAllocatableSpace(builder.get(), manifest, true));
1020 
1021   if (!snapshot_->BeginUpdate()) {
1022     LOG(ERROR) << "Cannot begin new update.";
1023     return false;
1024   }
1025   auto ret = snapshot_->CreateUpdateSnapshots(manifest);
1026   if (!ret) {
1027     LOG(ERROR) << "Cannot create update snapshots: " << ret.string();
1028     if (required_size != nullptr &&
1029         ret.error_code() == Return::ErrorCode::NO_SPACE) {
1030       *required_size = ret.required_size();
1031     }
1032     return false;
1033   }
1034   return true;
1035 }
1036 
GetSuperPartitionName(uint32_t slot)1037 std::string DynamicPartitionControlAndroid::GetSuperPartitionName(
1038     uint32_t slot) {
1039   return fs_mgr_get_super_partition_name(slot);
1040 }
1041 
UpdatePartitionMetadata(MetadataBuilder * builder,uint32_t target_slot,const DeltaArchiveManifest & manifest)1042 bool DynamicPartitionControlAndroid::UpdatePartitionMetadata(
1043     MetadataBuilder* builder,
1044     uint32_t target_slot,
1045     const DeltaArchiveManifest& manifest) {
1046   // Check preconditions.
1047   if (GetVirtualAbFeatureFlag().IsEnabled()) {
1048     CHECK(!target_supports_snapshot_ || IsRecovery())
1049         << "Must use snapshot on VAB device when target build supports VAB and "
1050            "not sideloading.";
1051     LOG_IF(INFO, !target_supports_snapshot_)
1052         << "Not using snapshot on VAB device because target build does not "
1053            "support snapshot. Secondary or downgrade OTA?";
1054     LOG_IF(INFO, IsRecovery())
1055         << "Not using snapshot on VAB device because sideloading.";
1056   }
1057 
1058   // If applying downgrade from Virtual A/B to non-Virtual A/B, the left-over
1059   // COW group needs to be deleted to ensure there are enough space to create
1060   // target partitions.
1061   builder->RemoveGroupAndPartitions(android::snapshot::kCowGroupName);
1062 
1063   const std::string target_suffix = SlotSuffixForSlotNumber(target_slot);
1064   DeleteGroupsWithSuffix(builder, target_suffix);
1065 
1066   TEST_AND_RETURN_FALSE(
1067       CheckSuperPartitionAllocatableSpace(builder, manifest, false));
1068 
1069   // name of partition(e.g. "system") -> size in bytes
1070   std::map<std::string, uint64_t> partition_sizes;
1071   for (const auto& partition : manifest.partitions()) {
1072     partition_sizes.emplace(partition.partition_name(),
1073                             partition.new_partition_info().size());
1074   }
1075 
1076   for (const auto& group : manifest.dynamic_partition_metadata().groups()) {
1077     auto group_name_suffix = group.name() + target_suffix;
1078     if (!builder->AddGroup(group_name_suffix, group.size())) {
1079       LOG(ERROR) << "Cannot add group " << group_name_suffix << " with size "
1080                  << group.size();
1081       return false;
1082     }
1083     LOG(INFO) << "Added group " << group_name_suffix << " with size "
1084               << group.size();
1085 
1086     for (const auto& partition_name : group.partition_names()) {
1087       auto partition_sizes_it = partition_sizes.find(partition_name);
1088       if (partition_sizes_it == partition_sizes.end()) {
1089         // TODO(tbao): Support auto-filling partition info for framework-only
1090         // OTA.
1091         LOG(ERROR) << "dynamic_partition_metadata contains partition "
1092                    << partition_name << " but it is not part of the manifest. "
1093                    << "This is not supported.";
1094         return false;
1095       }
1096       uint64_t partition_size = partition_sizes_it->second;
1097 
1098       auto partition_name_suffix = partition_name + target_suffix;
1099       Partition* p = builder->AddPartition(
1100           partition_name_suffix, group_name_suffix, LP_PARTITION_ATTR_READONLY);
1101       if (!p) {
1102         LOG(ERROR) << "Cannot add partition " << partition_name_suffix
1103                    << " to group " << group_name_suffix;
1104         return false;
1105       }
1106       if (!builder->ResizePartition(p, partition_size)) {
1107         LOG(ERROR) << "Cannot resize partition " << partition_name_suffix
1108                    << " to size " << partition_size << ". Not enough space?";
1109         return false;
1110       }
1111       if (p->size() < partition_size) {
1112         LOG(ERROR) << "Partition " << partition_name_suffix
1113                    << " was expected to have size " << partition_size
1114                    << ", but instead has size " << p->size();
1115         return false;
1116       }
1117       LOG(INFO) << "Added partition " << partition_name_suffix << " to group "
1118                 << group_name_suffix << " with size " << partition_size;
1119     }
1120   }
1121 
1122   return true;
1123 }
1124 
FinishUpdate(bool powerwash_required)1125 bool DynamicPartitionControlAndroid::FinishUpdate(bool powerwash_required) {
1126   if (ExpectMetadataMounted()) {
1127     if (snapshot_->GetUpdateState() == UpdateState::Initiated) {
1128       LOG(INFO) << "Snapshot writes are done.";
1129       return snapshot_->FinishedSnapshotWrites(powerwash_required);
1130     }
1131   } else {
1132     LOG(INFO) << "Skip FinishedSnapshotWrites() because /metadata is not "
1133               << "mounted";
1134   }
1135   return true;
1136 }
1137 
GetPartitionDevice(const std::string & partition_name,uint32_t slot,uint32_t current_slot,bool not_in_payload,std::string * device,bool * is_dynamic)1138 bool DynamicPartitionControlAndroid::GetPartitionDevice(
1139     const std::string& partition_name,
1140     uint32_t slot,
1141     uint32_t current_slot,
1142     bool not_in_payload,
1143     std::string* device,
1144     bool* is_dynamic) {
1145   auto partition_dev =
1146       GetPartitionDevice(partition_name, slot, current_slot, not_in_payload);
1147   if (!partition_dev.has_value()) {
1148     return false;
1149   }
1150   if (device) {
1151     *device = std::move(partition_dev->rw_device_path);
1152   }
1153   if (is_dynamic) {
1154     *is_dynamic = partition_dev->is_dynamic;
1155   }
1156   return true;
1157 }
1158 
GetPartitionDevice(const std::string & partition_name,uint32_t slot,uint32_t current_slot,std::string * device)1159 bool DynamicPartitionControlAndroid::GetPartitionDevice(
1160     const std::string& partition_name,
1161     uint32_t slot,
1162     uint32_t current_slot,
1163     std::string* device) {
1164   return GetPartitionDevice(
1165       partition_name, slot, current_slot, false, device, nullptr);
1166 }
1167 
GetStaticDevicePath(const base::FilePath & device_dir,const std::string & partition_name_suffixed)1168 static std::string GetStaticDevicePath(
1169     const base::FilePath& device_dir,
1170     const std::string& partition_name_suffixed) {
1171   base::FilePath path = device_dir.Append(partition_name_suffixed);
1172   return path.value();
1173 }
1174 
1175 std::optional<PartitionDevice>
GetPartitionDevice(const std::string & partition_name,uint32_t slot,uint32_t current_slot,bool not_in_payload)1176 DynamicPartitionControlAndroid::GetPartitionDevice(
1177     const std::string& partition_name,
1178     uint32_t slot,
1179     uint32_t current_slot,
1180     bool not_in_payload) {
1181   std::string device_dir_str;
1182   if (!GetDeviceDir(&device_dir_str)) {
1183     LOG(ERROR) << "Failed to GetDeviceDir()";
1184     return {};
1185   }
1186   const base::FilePath device_dir(device_dir_str);
1187   // When VABC is enabled, we can't get device path for dynamic partitions in
1188   // target slot.
1189   const auto& partition_name_suffix =
1190       partition_name + SlotSuffixForSlotNumber(slot);
1191   if (UpdateUsesSnapshotCompression() && slot != current_slot &&
1192       IsDynamicPartition(partition_name, slot)) {
1193     return {
1194         {.readonly_device_path = base::FilePath{std::string{VABC_DEVICE_DIR}}
1195                                      .Append(partition_name_suffix)
1196                                      .value(),
1197          .is_dynamic = true}};
1198   }
1199 
1200   // When looking up target partition devices, treat them as static if the
1201   // current payload doesn't encode them as dynamic partitions. This may happen
1202   // when applying a retrofit update on top of a dynamic-partitions-enabled
1203   // build.
1204   std::string device;
1205   if (GetDynamicPartitionsFeatureFlag().IsEnabled() &&
1206       (slot == current_slot || is_target_dynamic_)) {
1207     auto status = GetDynamicPartitionDevice(device_dir,
1208                                             partition_name_suffix,
1209                                             slot,
1210                                             current_slot,
1211                                             not_in_payload,
1212                                             &device);
1213     switch (status) {
1214       case DynamicPartitionDeviceStatus::SUCCESS:
1215         return {{.rw_device_path = device,
1216                  .readonly_device_path = device,
1217                  .is_dynamic = true}};
1218 
1219       case DynamicPartitionDeviceStatus::TRY_STATIC:
1220         break;
1221       case DynamicPartitionDeviceStatus::ERROR:  // fallthrough
1222       default:
1223         LOG(ERROR) << "Unhandled dynamic partition status " << (int)status;
1224         return {};
1225     }
1226   }
1227   // Try static partitions.
1228   auto static_path = GetStaticDevicePath(device_dir, partition_name_suffix);
1229   if (!DeviceExists(static_path)) {
1230     LOG(ERROR) << "Device file " << static_path << " does not exist.";
1231     return {};
1232   }
1233 
1234   return {{.rw_device_path = static_path,
1235            .readonly_device_path = static_path,
1236            .is_dynamic = false}};
1237 }
1238 
IsSuperBlockDevice(const base::FilePath & device_dir,uint32_t current_slot,const std::string & partition_name_suffix)1239 bool DynamicPartitionControlAndroid::IsSuperBlockDevice(
1240     const base::FilePath& device_dir,
1241     uint32_t current_slot,
1242     const std::string& partition_name_suffix) {
1243   std::string source_device =
1244       device_dir.Append(GetSuperPartitionName(current_slot)).value();
1245   auto source_metadata = LoadMetadataBuilder(source_device, current_slot);
1246   return source_metadata->HasBlockDevice(partition_name_suffix);
1247 }
1248 
1249 DynamicPartitionControlAndroid::DynamicPartitionDeviceStatus
GetDynamicPartitionDevice(const base::FilePath & device_dir,const std::string & partition_name_suffix,uint32_t slot,uint32_t current_slot,bool not_in_payload,std::string * device)1250 DynamicPartitionControlAndroid::GetDynamicPartitionDevice(
1251     const base::FilePath& device_dir,
1252     const std::string& partition_name_suffix,
1253     uint32_t slot,
1254     uint32_t current_slot,
1255     bool not_in_payload,
1256     std::string* device) {
1257   std::string super_device =
1258       device_dir.Append(GetSuperPartitionName(slot)).value();
1259   auto device_name = GetDeviceName(partition_name_suffix, slot);
1260 
1261   auto builder = LoadMetadataBuilder(super_device, slot);
1262   if (builder == nullptr) {
1263     LOG(ERROR) << "No metadata in slot "
1264                << BootControlInterface::SlotName(slot);
1265     return DynamicPartitionDeviceStatus::ERROR;
1266   }
1267   if (builder->FindPartition(partition_name_suffix) == nullptr) {
1268     LOG(INFO) << partition_name_suffix
1269               << " is not in super partition metadata.";
1270 
1271     if (IsSuperBlockDevice(device_dir, current_slot, partition_name_suffix)) {
1272       LOG(ERROR) << "The static partition " << partition_name_suffix
1273                  << " is a block device for current metadata."
1274                  << "It cannot be used as a logical partition.";
1275       return DynamicPartitionDeviceStatus::ERROR;
1276     }
1277 
1278     return DynamicPartitionDeviceStatus::TRY_STATIC;
1279   }
1280 
1281   if (slot == current_slot) {
1282     if (GetState(device_name) != DmDeviceState::ACTIVE) {
1283       LOG(WARNING) << device_name << " is at current slot but it is "
1284                    << "not mapped. Now try to map it.";
1285     } else {
1286       if (GetDmDevicePathByName(device_name, device)) {
1287         LOG(INFO) << device_name << " is mapped on device mapper: " << *device;
1288         return DynamicPartitionDeviceStatus::SUCCESS;
1289       }
1290       LOG(ERROR) << partition_name_suffix << "is mapped but path is unknown.";
1291       return DynamicPartitionDeviceStatus::ERROR;
1292     }
1293   }
1294 
1295   const bool force_writable = !not_in_payload;
1296   if (MapPartitionOnDeviceMapper(
1297           super_device, partition_name_suffix, slot, force_writable, device)) {
1298     return DynamicPartitionDeviceStatus::SUCCESS;
1299   }
1300   return DynamicPartitionDeviceStatus::ERROR;
1301 }
1302 
set_fake_mapped_devices(const std::set<std::string> & fake)1303 void DynamicPartitionControlAndroid::set_fake_mapped_devices(
1304     const std::set<std::string>& fake) {
1305   mapped_devices_ = fake;
1306 }
1307 
IsRecovery()1308 bool DynamicPartitionControlAndroid::IsRecovery() {
1309   return constants::kIsRecovery;
1310 }
1311 
IsIncrementalUpdate(const DeltaArchiveManifest & manifest)1312 static bool IsIncrementalUpdate(const DeltaArchiveManifest& manifest) {
1313   const auto& partitions = manifest.partitions();
1314   return std::any_of(partitions.begin(), partitions.end(), [](const auto& p) {
1315     return p.has_old_partition_info();
1316   });
1317 }
1318 
DeleteSourcePartitions(MetadataBuilder * builder,uint32_t source_slot,const DeltaArchiveManifest & manifest)1319 bool DynamicPartitionControlAndroid::DeleteSourcePartitions(
1320     MetadataBuilder* builder,
1321     uint32_t source_slot,
1322     const DeltaArchiveManifest& manifest) {
1323   TEST_AND_RETURN_FALSE(IsRecovery());
1324 
1325   if (IsIncrementalUpdate(manifest)) {
1326     LOG(ERROR) << "Cannot sideload incremental OTA because snapshots cannot "
1327                << "be created.";
1328     if (GetVirtualAbFeatureFlag().IsLaunch()) {
1329       LOG(ERROR) << "Sideloading incremental updates on devices launches "
1330                  << " Virtual A/B is not supported.";
1331     }
1332     return false;
1333   }
1334 
1335   LOG(INFO) << "Will overwrite existing partitions. Slot "
1336             << BootControlInterface::SlotName(source_slot)
1337             << " may be unbootable until update finishes!";
1338   const std::string source_suffix = SlotSuffixForSlotNumber(source_slot);
1339   DeleteGroupsWithSuffix(builder, source_suffix);
1340 
1341   return true;
1342 }
1343 
1344 std::unique_ptr<AbstractAction>
GetCleanupPreviousUpdateAction(BootControlInterface * boot_control,PrefsInterface * prefs,CleanupPreviousUpdateActionDelegateInterface * delegate)1345 DynamicPartitionControlAndroid::GetCleanupPreviousUpdateAction(
1346     BootControlInterface* boot_control,
1347     PrefsInterface* prefs,
1348     CleanupPreviousUpdateActionDelegateInterface* delegate) {
1349   if (!GetVirtualAbFeatureFlag().IsEnabled()) {
1350     return std::make_unique<NoOpAction>();
1351   }
1352   return std::make_unique<CleanupPreviousUpdateAction>(
1353       prefs, boot_control, snapshot_.get(), delegate);
1354 }
1355 
ResetUpdate(PrefsInterface * prefs)1356 bool DynamicPartitionControlAndroid::ResetUpdate(PrefsInterface* prefs) {
1357   if (!GetVirtualAbFeatureFlag().IsEnabled()) {
1358     return true;
1359   }
1360   for (auto& list : dynamic_partition_list_) {
1361     list.clear();
1362   }
1363 
1364   LOG(INFO) << __func__ << " resetting update state and deleting snapshots.";
1365   TEST_AND_RETURN_FALSE(prefs != nullptr);
1366 
1367   // If the device has already booted into the target slot,
1368   // ResetUpdateProgress may pass but CancelUpdate fails.
1369   // This is expected. A scheduled CleanupPreviousUpdateAction should free
1370   // space when it is done.
1371   TEST_AND_RETURN_FALSE(DeltaPerformer::ResetUpdateProgress(
1372       prefs, false /* quick */, false /* skip dynamic partitions metadata */));
1373 
1374   if (ExpectMetadataMounted()) {
1375     TEST_AND_RETURN_FALSE(snapshot_->CancelUpdate());
1376   } else {
1377     LOG(INFO) << "Skip cancelling update in ResetUpdate because /metadata is "
1378               << "not mounted";
1379   }
1380 
1381   return true;
1382 }
1383 
ListDynamicPartitionsForSlot(uint32_t slot,uint32_t current_slot,std::vector<std::string> * partitions)1384 bool DynamicPartitionControlAndroid::ListDynamicPartitionsForSlot(
1385     uint32_t slot,
1386     uint32_t current_slot,
1387     std::vector<std::string>* partitions) {
1388   CHECK(slot == source_slot_ || target_slot_ != UINT32_MAX)
1389       << " source slot: " << source_slot_ << " target slot: " << target_slot_
1390       << " slot: " << slot
1391       << " attempting to query dynamic partition metadata for target slot "
1392          "before PreparePartitionForUpdate() is called. The "
1393          "metadata in target slot isn't valid until "
1394          "PreparePartitionForUpdate() is called, contining execution would "
1395          "likely cause problems.";
1396   bool slot_enables_dynamic_partitions =
1397       GetDynamicPartitionsFeatureFlag().IsEnabled();
1398   // Check if the target slot has dynamic partitions, this may happen when
1399   // applying a retrofit package.
1400   if (slot != current_slot) {
1401     slot_enables_dynamic_partitions =
1402         slot_enables_dynamic_partitions && is_target_dynamic_;
1403   }
1404 
1405   if (!slot_enables_dynamic_partitions) {
1406     LOG(INFO) << "Dynamic partition is not enabled for slot " << slot;
1407     return true;
1408   }
1409 
1410   std::string device_dir_str;
1411   TEST_AND_RETURN_FALSE(GetDeviceDir(&device_dir_str));
1412   base::FilePath device_dir(device_dir_str);
1413   auto super_device = device_dir.Append(GetSuperPartitionName(slot)).value();
1414   auto builder = LoadMetadataBuilder(super_device, slot);
1415   TEST_AND_RETURN_FALSE(builder != nullptr);
1416 
1417   std::vector<std::string> result;
1418   auto suffix = SlotSuffixForSlotNumber(slot);
1419   for (const auto& group : builder->ListGroups()) {
1420     for (const auto& partition : builder->ListPartitionsInGroup(group)) {
1421       std::string_view partition_name = partition->name();
1422       if (!android::base::ConsumeSuffix(&partition_name, suffix)) {
1423         continue;
1424       }
1425       result.emplace_back(partition_name);
1426     }
1427   }
1428   *partitions = std::move(result);
1429   return true;
1430 }
1431 
VerifyExtentsForUntouchedPartitions(uint32_t source_slot,uint32_t target_slot,const std::vector<std::string> & partitions)1432 bool DynamicPartitionControlAndroid::VerifyExtentsForUntouchedPartitions(
1433     uint32_t source_slot,
1434     uint32_t target_slot,
1435     const std::vector<std::string>& partitions) {
1436   std::string device_dir_str;
1437   TEST_AND_RETURN_FALSE(GetDeviceDir(&device_dir_str));
1438   base::FilePath device_dir(device_dir_str);
1439 
1440   auto source_super_device =
1441       device_dir.Append(GetSuperPartitionName(source_slot)).value();
1442   auto source_builder = LoadMetadataBuilder(source_super_device, source_slot);
1443   TEST_AND_RETURN_FALSE(source_builder != nullptr);
1444 
1445   auto target_super_device =
1446       device_dir.Append(GetSuperPartitionName(target_slot)).value();
1447   auto target_builder = LoadMetadataBuilder(target_super_device, target_slot);
1448   TEST_AND_RETURN_FALSE(target_builder != nullptr);
1449 
1450   return MetadataBuilder::VerifyExtentsAgainstSourceMetadata(
1451       *source_builder, source_slot, *target_builder, target_slot, partitions);
1452 }
1453 
ExpectMetadataMounted()1454 bool DynamicPartitionControlAndroid::ExpectMetadataMounted() {
1455   // No need to mount metadata for non-Virtual A/B devices.
1456   if (!GetVirtualAbFeatureFlag().IsEnabled()) {
1457     return false;
1458   }
1459   // Intentionally not checking |metadata_device_| in Android mode.
1460   // /metadata should always be mounted in Android mode. If it isn't, let caller
1461   // fails when calling into SnapshotManager.
1462   if (!IsRecovery()) {
1463     return true;
1464   }
1465   // In recovery mode, explicitly check |metadata_device_|.
1466   return metadata_device_ != nullptr;
1467 }
1468 
EnsureMetadataMounted()1469 bool DynamicPartitionControlAndroid::EnsureMetadataMounted() {
1470   // No need to mount metadata for non-Virtual A/B devices.
1471   if (!GetVirtualAbFeatureFlag().IsEnabled()) {
1472     return true;
1473   }
1474 
1475   if (metadata_device_ == nullptr) {
1476     metadata_device_ = snapshot_->EnsureMetadataMounted();
1477   }
1478   return metadata_device_ != nullptr;
1479 }
1480 
1481 std::unique_ptr<android::snapshot::ICowWriter>
OpenCowWriter(const std::string & partition_name,const std::optional<std::string> & source_path,std::optional<uint64_t> label)1482 DynamicPartitionControlAndroid::OpenCowWriter(
1483     const std::string& partition_name,
1484     const std::optional<std::string>& source_path,
1485     std::optional<uint64_t> label) {
1486   auto suffix = SlotSuffixForSlotNumber(target_slot_);
1487 
1488   auto super_device = GetSuperDevice();
1489   if (!super_device.has_value()) {
1490     return nullptr;
1491   }
1492   CreateLogicalPartitionParams params = {
1493       .block_device = super_device->value(),
1494       .metadata_slot = target_slot_,
1495       .partition_name = partition_name + suffix,
1496       .force_writable = true,
1497       .timeout_ms = kMapSnapshotTimeout};
1498   // TODO(zhangkelvin) Open an APPEND mode CowWriter once there's an API to do
1499   // it.
1500   return snapshot_->OpenSnapshotWriter(params, label);
1501 }  // namespace chromeos_update_engine
1502 
OpenCowFd(const std::string & unsuffixed_partition_name,const std::optional<std::string> & source_path,bool is_append)1503 std::unique_ptr<FileDescriptor> DynamicPartitionControlAndroid::OpenCowFd(
1504     const std::string& unsuffixed_partition_name,
1505     const std::optional<std::string>& source_path,
1506     bool is_append) {
1507   auto cow_writer = OpenCowWriter(
1508       unsuffixed_partition_name, source_path, {kEndOfInstallLabel});
1509   if (cow_writer == nullptr) {
1510     LOG(ERROR) << "OpenCowWriter failed";
1511     return nullptr;
1512   }
1513   auto fd = cow_writer->OpenFileDescriptor(source_path);
1514   if (fd == nullptr) {
1515     LOG(ERROR) << "ICowReader::OpenFileDescriptor failed";
1516     return nullptr;
1517   }
1518   return std::make_unique<CowWriterFileDescriptor>(
1519       std::move(cow_writer), std::move(fd), source_path);
1520 }
1521 
GetSuperDevice()1522 std::optional<base::FilePath> DynamicPartitionControlAndroid::GetSuperDevice() {
1523   std::string device_dir_str;
1524   if (!GetDeviceDir(&device_dir_str)) {
1525     LOG(ERROR) << "Failed to get device dir!";
1526     return {};
1527   }
1528   base::FilePath device_dir(device_dir_str);
1529   auto super_device = device_dir.Append(GetSuperPartitionName(target_slot_));
1530   return super_device;
1531 }
1532 
MapAllPartitions()1533 bool DynamicPartitionControlAndroid::MapAllPartitions() {
1534   return snapshot_->MapAllSnapshots(kMapSnapshotTimeout);
1535 }
1536 
IsDynamicPartition(const std::string & partition_name,uint32_t slot)1537 bool DynamicPartitionControlAndroid::IsDynamicPartition(
1538     const std::string& partition_name, uint32_t slot) {
1539   if (slot >= dynamic_partition_list_.size()) {
1540     LOG(ERROR) << "Seeing unexpected slot # " << slot << " currently assuming "
1541                << dynamic_partition_list_.size() << " slots";
1542     return false;
1543   }
1544   auto& dynamic_partition_list = dynamic_partition_list_[slot];
1545   if (dynamic_partition_list.empty() &&
1546       GetDynamicPartitionsFeatureFlag().IsEnabled()) {
1547     // Use the DAP config of the target slot.
1548     CHECK(ListDynamicPartitionsForSlot(
1549         slot, source_slot_, &dynamic_partition_list));
1550   }
1551   return std::find(dynamic_partition_list.begin(),
1552                    dynamic_partition_list.end(),
1553                    partition_name) != dynamic_partition_list.end();
1554 }
1555 
UpdateUsesSnapshotCompression()1556 bool DynamicPartitionControlAndroid::UpdateUsesSnapshotCompression() {
1557   return GetVirtualAbFeatureFlag().IsEnabled() &&
1558          snapshot_->UpdateUsesCompression();
1559 }
1560 
1561 FeatureFlag
GetVirtualAbUserspaceSnapshotsFeatureFlag()1562 DynamicPartitionControlAndroid::GetVirtualAbUserspaceSnapshotsFeatureFlag() {
1563   return virtual_ab_userspace_snapshots_;
1564 }
1565 
1566 }  // namespace chromeos_update_engine
1567