1// Copyright (C) 2019 The Android Open Source Project 2// 3// Licensed under the Apache License, Version 2.0 (the "License"); 4// you may not use this file except in compliance with the License. 5// You may obtain a copy of the License at 6// 7// http://www.apache.org/licenses/LICENSE-2.0 8// 9// Unless required by applicable law or agreed to in writing, software 10// distributed under the License is distributed on an "AS IS" BASIS, 11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 12// See the License for the specific language governing permissions and 13// limitations under the License. 14 15syntax = "proto3"; 16package android.snapshot; 17 18option optimize_for = LITE_RUNTIME; 19 20// Next: 4 21enum SnapshotState { 22 // No snapshot is found. 23 NONE = 0; 24 25 // The snapshot has been created and possibly written to. Rollbacks are 26 // possible by destroying the snapshot. 27 CREATED = 1; 28 29 // Changes are being merged. No rollbacks are possible beyond this point. 30 MERGING = 2; 31 32 // Changes have been merged, Future reboots may map the base device 33 // directly. 34 MERGE_COMPLETED = 3; 35} 36 37// Next: 3 38enum MergePhase { 39 // No merge is in progress. 40 NO_MERGE = 0; 41 42 // Shrunk partitions can merge. 43 FIRST_PHASE = 1; 44 45 // Grown partitions can merge. 46 SECOND_PHASE = 2; 47} 48 49// Next: 13 50message SnapshotStatus { 51 // Name of the snapshot. This is usually the name of the snapshotted 52 // logical partition; for example, "system_b". 53 string name = 1; 54 55 SnapshotState state = 2; 56 57 // Size of the full (base) device. 58 uint64 device_size = 3; 59 60 // Size of the snapshot. This is the sum of lengths of ranges in the base 61 // device that needs to be snapshotted during the update. 62 // This must be less than or equal to |device_size|. 63 // This value is 0 if no snapshot is needed for this device because 64 // no changes 65 uint64 snapshot_size = 4; 66 67 // Size of the "COW partition". A COW partition is a special logical 68 // partition represented in the super partition metadata. This partition and 69 // the "COW image" form the "COW device" that supports the snapshot device. 70 // 71 // When SnapshotManager creates a COW device, it first searches for unused 72 // blocks in the super partition, and use those before creating the COW 73 // image if the COW partition is not big enough. 74 // 75 // This value is 0 if no space in super is left for the COW partition. 76 // |cow_partition_size + cow_file_size| must not be zero if |snapshot_size| 77 // is non-zero. 78 uint64 cow_partition_size = 5; 79 80 // Size of the "COW file", or "COW image". A COW file / image is created 81 // when the "COW partition" is not big enough to store changes to the 82 // snapshot device. 83 // 84 // This value is 0 if |cow_partition_size| is big enough to hold all changes 85 // to the snapshot device. 86 uint64 cow_file_size = 6; 87 88 // Sectors allocated for the COW device. Recording this value right after 89 // the update and before the merge allows us to infer the progress of the 90 // merge process. 91 // This is non-zero when |state| == MERGING or MERGE_COMPLETED. 92 uint64 sectors_allocated = 7; 93 94 // Metadata sectors allocated for the COW device. Recording this value right 95 // before the update and before the merge allows us to infer the progress of 96 // the merge process. 97 // This is non-zero when |state| == MERGING or MERGE_COMPLETED. 98 uint64 metadata_sectors = 8; 99 100 // True if compression is enabled, false otherwise. 101 bool compression_enabled = 9; 102 103 // The old partition size (if none existed, this will be zero). 104 uint64 old_partition_size = 10; 105 106 // Compression algorithm (none, gz, or brotli). 107 string compression_algorithm = 11; 108 109 // Estimated COW size from OTA manifest. 110 uint64 estimated_cow_size = 12; 111} 112 113// Next: 8 114enum UpdateState { 115 // No update or merge is in progress. 116 None = 0; 117 118 // An update is applying; snapshots may already exist. 119 Initiated = 1; 120 121 // An update is pending, but has not been successfully booted yet. 122 Unverified = 2; 123 124 // The kernel is merging in the background. 125 Merging = 3; 126 127 // Post-merge cleanup steps could not be completed due to a transient 128 // error, but the next reboot will finish any pending operations. 129 MergeNeedsReboot = 4; 130 131 // Merging is complete, and needs to be acknowledged. 132 MergeCompleted = 5; 133 134 // Merging failed due to an unrecoverable error. 135 MergeFailed = 6; 136 137 // The update was implicitly cancelled, either by a rollback or a flash 138 // operation via fastboot. This state can only be returned by WaitForMerge. 139 Cancelled = 7; 140}; 141 142// Next 14: 143// 144// To understand the source of each failure, read snapshot.cpp. To handle new 145// sources of failure, avoid reusing an existing code; add a new code instead. 146enum MergeFailureCode { 147 Ok = 0; 148 ReadStatus = 1; 149 GetTableInfo = 2; 150 UnknownTable = 3; 151 GetTableParams = 4; 152 ActivateNewTable = 5; 153 AcquireLock = 6; 154 ListSnapshots = 7; 155 WriteStatus = 8; 156 UnknownTargetType = 9; 157 QuerySnapshotStatus = 10; 158 ExpectedMergeTarget = 11; 159 UnmergedSectorsAfterCompletion = 12; 160 UnexpectedMergeState = 13; 161 GetCowPathConsistencyCheck = 14; 162 OpenCowConsistencyCheck = 15; 163 ParseCowConsistencyCheck = 16; 164 OpenCowDirectConsistencyCheck = 17; 165 MemAlignConsistencyCheck = 18; 166 DirectReadConsistencyCheck = 19; 167 WrongMergeCountConsistencyCheck = 20; 168}; 169 170// Next: 8 171message SnapshotUpdateStatus { 172 UpdateState state = 1; 173 174 // Total number of sectors allocated in the COW files before performing the 175 // merge operation. This field is used to keep track of the total number 176 // of sectors modified to monitor and show the progress of the merge during 177 // an update. 178 uint64 sectors_allocated = 2; 179 180 // Total number of sectors of all the snapshot devices. 181 uint64 total_sectors = 3; 182 183 // Sectors allocated for metadata in all the snapshot devices. 184 uint64 metadata_sectors = 4; 185 186 // Whether compression/dm-user was used for any snapshots. 187 bool compression_enabled = 5; 188 189 // Merge phase (if state == MERGING). 190 MergePhase merge_phase = 6; 191 192 // Merge failure code, filled if state == MergeFailed. 193 MergeFailureCode merge_failure_code = 7; 194 195 // Source build fingerprint. 196 string source_build_fingerprint = 8; 197} 198 199// Next: 10 200message SnapshotMergeReport { 201 // Status of the update after the merge attempts. 202 UpdateState state = 1; 203 204 // Number of reboots that occurred after issuing and before completeing the 205 // merge of all the snapshot devices. 206 int32 resume_count = 2; 207 208 // Total size of all the COW images before the update. 209 uint64 cow_file_size = 3; 210 211 // Whether compression/dm-user was used for any snapshots. 212 bool compression_enabled = 4; 213 214 // Total size used by COWs, including /data and the super partition. 215 uint64 total_cow_size_bytes = 5; 216 217 // Sum of the estimated COW fields in the OTA manifest. 218 uint64 estimated_cow_size_bytes = 6; 219 220 // Time from boot to sys.boot_completed, in milliseconds. 221 uint32 boot_complete_time_ms = 7; 222 223 // Time from sys.boot_completed to merge start, in milliseconds. 224 uint32 boot_complete_to_merge_start_time_ms = 8; 225 226 // Merge failure code, filled if state == MergeFailed. 227 MergeFailureCode merge_failure_code = 9; 228 229 // The source fingerprint at the time the OTA was downloaded. 230 string source_build_fingerprint = 10; 231} 232