blob: 524196c8011f59f68781caf13542c8d8371650ca [file] [log] [blame]
Hridya Valsarajudea91b42018-07-17 11:14:01 -07001/*
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 "commands.h"
18
Yifan Honga4eb4752021-02-16 19:37:21 -080019#include <inttypes.h>
Hridya Valsarajudea91b42018-07-17 11:14:01 -070020#include <sys/socket.h>
21#include <sys/un.h>
22
David Anderson220ddb12019-10-31 18:02:41 -070023#include <unordered_set>
24
Hridya Valsarajudea91b42018-07-17 11:14:01 -070025#include <android-base/logging.h>
26#include <android-base/parseint.h>
27#include <android-base/properties.h>
28#include <android-base/stringprintf.h>
29#include <android-base/strings.h>
30#include <android-base/unique_fd.h>
David Andersonab8f4662019-10-21 16:45:59 -070031#include <android/hardware/boot/1.1/IBootControl.h>
Hridya Valsarajudea91b42018-07-17 11:14:01 -070032#include <cutils/android_reboot.h>
David Anderson12211d12018-07-24 15:21:20 -070033#include <ext4_utils/wipe.h>
David Anderson5cbd2e42018-09-27 10:53:04 -070034#include <fs_mgr.h>
David Anderson2ffc31b2020-03-23 23:43:45 -070035#include <fs_mgr/roots.h>
David Anderson1d504e32019-01-15 14:38:20 -080036#include <libgsi/libgsi.h>
David Anderson0d4277d2018-07-31 13:27:37 -070037#include <liblp/builder.h>
38#include <liblp/liblp.h>
David Anderson220ddb12019-10-31 18:02:41 -070039#include <libsnapshot/snapshot.h>
Yifan Honga4eb4752021-02-16 19:37:21 -080040#include <storage_literals/storage_literals.h>
David Anderson0d4277d2018-07-31 13:27:37 -070041#include <uuid/uuid.h>
Hridya Valsarajudea91b42018-07-17 11:14:01 -070042
Hridya Valsaraju31d2c262018-07-20 13:35:50 -070043#include "constants.h"
Hridya Valsarajudea91b42018-07-17 11:14:01 -070044#include "fastboot_device.h"
David Anderson12211d12018-07-24 15:21:20 -070045#include "flashing.h"
Hridya Valsaraju31d2c262018-07-20 13:35:50 -070046#include "utility.h"
47
Yifan Honga4eb4752021-02-16 19:37:21 -080048#ifdef FB_ENABLE_FETCH
49static constexpr bool kEnableFetch = true;
50#else
51static constexpr bool kEnableFetch = false;
52#endif
53
David Anderson27475322019-06-11 14:00:08 -070054using android::fs_mgr::MetadataBuilder;
Hridya Valsaraju31d2c262018-07-20 13:35:50 -070055using ::android::hardware::hidl_string;
56using ::android::hardware::boot::V1_0::BoolResult;
57using ::android::hardware::boot::V1_0::CommandResult;
58using ::android::hardware::boot::V1_0::Slot;
David Andersonab8f4662019-10-21 16:45:59 -070059using ::android::hardware::boot::V1_1::MergeStatus;
Hridya Valsarajua15fe312018-09-14 13:58:21 -070060using ::android::hardware::fastboot::V1_0::Result;
61using ::android::hardware::fastboot::V1_0::Status;
David Anderson220ddb12019-10-31 18:02:41 -070062using android::snapshot::SnapshotManager;
David Andersonab8f4662019-10-21 16:45:59 -070063using IBootControl1_1 = ::android::hardware::boot::V1_1::IBootControl;
Hridya Valsarajua15fe312018-09-14 13:58:21 -070064
Yifan Honga4eb4752021-02-16 19:37:21 -080065using namespace android::storage_literals;
66
David Anderson0f626632018-08-31 16:44:25 -070067struct VariableHandlers {
68 // Callback to retrieve the value of a single variable.
69 std::function<bool(FastbootDevice*, const std::vector<std::string>&, std::string*)> get;
70 // Callback to retrieve all possible argument combinations, for getvar all.
71 std::function<std::vector<std::vector<std::string>>(FastbootDevice*)> get_all_args;
72};
73
David Anderson220ddb12019-10-31 18:02:41 -070074static bool IsSnapshotUpdateInProgress(FastbootDevice* device) {
75 auto hal = device->boot1_1();
76 if (!hal) {
77 return false;
78 }
79 auto merge_status = hal->getSnapshotMergeStatus();
80 return merge_status == MergeStatus::SNAPSHOTTED || merge_status == MergeStatus::MERGING;
81}
82
83static bool IsProtectedPartitionDuringMerge(FastbootDevice* device, const std::string& name) {
84 static const std::unordered_set<std::string> ProtectedPartitionsDuringMerge = {
85 "userdata", "metadata", "misc"};
86 if (ProtectedPartitionsDuringMerge.count(name) == 0) {
87 return false;
88 }
89 return IsSnapshotUpdateInProgress(device);
90}
91
David Anderson0f626632018-08-31 16:44:25 -070092static void GetAllVars(FastbootDevice* device, const std::string& name,
93 const VariableHandlers& handlers) {
94 if (!handlers.get_all_args) {
95 std::string message;
96 if (!handlers.get(device, std::vector<std::string>(), &message)) {
97 return;
98 }
99 device->WriteInfo(android::base::StringPrintf("%s:%s", name.c_str(), message.c_str()));
100 return;
101 }
102
103 auto all_args = handlers.get_all_args(device);
104 for (const auto& args : all_args) {
105 std::string message;
106 if (!handlers.get(device, args, &message)) {
107 continue;
108 }
109 std::string arg_string = android::base::Join(args, ":");
110 device->WriteInfo(android::base::StringPrintf("%s:%s:%s", name.c_str(), arg_string.c_str(),
111 message.c_str()));
112 }
113}
114
David Andersonebc8fe12022-06-17 19:17:43 -0700115const std::unordered_map<std::string, VariableHandlers> kVariableMap = {
116 {FB_VAR_VERSION, {GetVersion, nullptr}},
117 {FB_VAR_VERSION_BOOTLOADER, {GetBootloaderVersion, nullptr}},
118 {FB_VAR_VERSION_BASEBAND, {GetBasebandVersion, nullptr}},
119 {FB_VAR_VERSION_OS, {GetOsVersion, nullptr}},
120 {FB_VAR_VERSION_VNDK, {GetVndkVersion, nullptr}},
121 {FB_VAR_PRODUCT, {GetProduct, nullptr}},
122 {FB_VAR_SERIALNO, {GetSerial, nullptr}},
123 {FB_VAR_VARIANT, {GetVariant, nullptr}},
124 {FB_VAR_SECURE, {GetSecure, nullptr}},
125 {FB_VAR_UNLOCKED, {GetUnlocked, nullptr}},
126 {FB_VAR_MAX_DOWNLOAD_SIZE, {GetMaxDownloadSize, nullptr}},
127 {FB_VAR_CURRENT_SLOT, {::GetCurrentSlot, nullptr}},
128 {FB_VAR_SLOT_COUNT, {GetSlotCount, nullptr}},
129 {FB_VAR_HAS_SLOT, {GetHasSlot, GetAllPartitionArgsNoSlot}},
130 {FB_VAR_SLOT_SUCCESSFUL, {GetSlotSuccessful, nullptr}},
131 {FB_VAR_SLOT_UNBOOTABLE, {GetSlotUnbootable, nullptr}},
132 {FB_VAR_PARTITION_SIZE, {GetPartitionSize, GetAllPartitionArgsWithSlot}},
133 {FB_VAR_PARTITION_TYPE, {GetPartitionType, GetAllPartitionArgsWithSlot}},
134 {FB_VAR_IS_LOGICAL, {GetPartitionIsLogical, GetAllPartitionArgsWithSlot}},
135 {FB_VAR_IS_USERSPACE, {GetIsUserspace, nullptr}},
136 {FB_VAR_OFF_MODE_CHARGE_STATE, {GetOffModeChargeState, nullptr}},
137 {FB_VAR_BATTERY_VOLTAGE, {GetBatteryVoltage, nullptr}},
138 {FB_VAR_BATTERY_SOC_OK, {GetBatterySoCOk, nullptr}},
139 {FB_VAR_HW_REVISION, {GetHardwareRevision, nullptr}},
140 {FB_VAR_SUPER_PARTITION_NAME, {GetSuperPartitionName, nullptr}},
141 {FB_VAR_SNAPSHOT_UPDATE_STATUS, {GetSnapshotUpdateStatus, nullptr}},
142 {FB_VAR_CPU_ABI, {GetCpuAbi, nullptr}},
143 {FB_VAR_SYSTEM_FINGERPRINT, {GetSystemFingerprint, nullptr}},
144 {FB_VAR_VENDOR_FINGERPRINT, {GetVendorFingerprint, nullptr}},
145 {FB_VAR_DYNAMIC_PARTITION, {GetDynamicPartition, nullptr}},
146 {FB_VAR_FIRST_API_LEVEL, {GetFirstApiLevel, nullptr}},
147 {FB_VAR_SECURITY_PATCH_LEVEL, {GetSecurityPatchLevel, nullptr}},
148 {FB_VAR_TREBLE_ENABLED, {GetTrebleEnabled, nullptr}},
149 {FB_VAR_MAX_FETCH_SIZE, {GetMaxFetchSize, nullptr}},
150};
David Anderson0f626632018-08-31 16:44:25 -0700151
David Andersonebc8fe12022-06-17 19:17:43 -0700152static bool GetVarAll(FastbootDevice* device) {
153 for (const auto& [name, handlers] : kVariableMap) {
154 GetAllVars(device, name, handlers);
155 }
156 return true;
157}
158
159const std::unordered_map<std::string, std::function<bool(FastbootDevice*)>> kSpecialVars = {
160 {"all", GetVarAll},
161 {"dmesg", GetDmesg},
162};
163
164bool GetVarHandler(FastbootDevice* device, const std::vector<std::string>& args) {
David Anderson0f626632018-08-31 16:44:25 -0700165 if (args.size() < 2) {
166 return device->WriteFail("Missing argument");
167 }
168
David Andersonebc8fe12022-06-17 19:17:43 -0700169 // "all" and "dmesg" are multiline and handled specially.
170 auto found_special = kSpecialVars.find(args[1]);
171 if (found_special != kSpecialVars.end()) {
172 if (!found_special->second(device)) {
173 return false;
David Anderson0f626632018-08-31 16:44:25 -0700174 }
175 return device->WriteOkay("");
176 }
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700177
178 // args[0] is command name, args[1] is variable.
179 auto found_variable = kVariableMap.find(args[1]);
180 if (found_variable == kVariableMap.end()) {
David Anderson1fb3fd72018-08-31 14:40:22 -0700181 return device->WriteFail("Unknown variable");
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700182 }
183
David Anderson1fb3fd72018-08-31 14:40:22 -0700184 std::string message;
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700185 std::vector<std::string> getvar_args(args.begin() + 2, args.end());
David Anderson0f626632018-08-31 16:44:25 -0700186 if (!found_variable->second.get(device, getvar_args, &message)) {
David Anderson1fb3fd72018-08-31 14:40:22 -0700187 return device->WriteFail(message);
188 }
189 return device->WriteOkay(message);
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700190}
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700191
josephjang29069752020-09-23 16:28:03 +0800192bool OemPostWipeData(FastbootDevice* device) {
193 auto fastboot_hal = device->fastboot_hal();
194 if (!fastboot_hal) {
195 return false;
196 }
197
198 Result ret;
199 auto ret_val = fastboot_hal->doOemSpecificErase([&](Result result) { ret = result; });
200 if (!ret_val.isOk()) {
201 return false;
202 }
203 if (ret.status == Status::NOT_SUPPORTED) {
204 return false;
205 } else if (ret.status != Status::SUCCESS) {
206 device->WriteStatus(FastbootResult::FAIL, ret.message);
207 } else {
208 device->WriteStatus(FastbootResult::OKAY, "Erasing succeeded");
209 }
210
211 return true;
212}
213
David Anderson12211d12018-07-24 15:21:20 -0700214bool EraseHandler(FastbootDevice* device, const std::vector<std::string>& args) {
215 if (args.size() < 2) {
216 return device->WriteStatus(FastbootResult::FAIL, "Invalid arguments");
217 }
Hridya Valsarajud1e62312018-10-08 09:13:17 -0700218
219 if (GetDeviceLockStatus()) {
220 return device->WriteStatus(FastbootResult::FAIL, "Erase is not allowed on locked devices");
221 }
222
David Anderson220ddb12019-10-31 18:02:41 -0700223 const auto& partition_name = args[1];
224 if (IsProtectedPartitionDuringMerge(device, partition_name)) {
225 auto message = "Cannot erase " + partition_name + " while a snapshot update is in progress";
226 return device->WriteFail(message);
227 }
228
David Anderson12211d12018-07-24 15:21:20 -0700229 PartitionHandle handle;
David Anderson220ddb12019-10-31 18:02:41 -0700230 if (!OpenPartition(device, partition_name, &handle)) {
David Anderson12211d12018-07-24 15:21:20 -0700231 return device->WriteStatus(FastbootResult::FAIL, "Partition doesn't exist");
232 }
233 if (wipe_block_device(handle.fd(), get_block_device_size(handle.fd())) == 0) {
josephjang29069752020-09-23 16:28:03 +0800234 //Perform oem PostWipeData if Android userdata partition has been erased
235 bool support_oem_postwipedata = false;
236 if (partition_name == "userdata") {
237 support_oem_postwipedata = OemPostWipeData(device);
238 }
239
240 if (!support_oem_postwipedata) {
241 return device->WriteStatus(FastbootResult::OKAY, "Erasing succeeded");
242 } else {
243 //Write device status in OemPostWipeData(), so just return true
244 return true;
245 }
David Anderson12211d12018-07-24 15:21:20 -0700246 }
247 return device->WriteStatus(FastbootResult::FAIL, "Erasing failed");
248}
249
Hridya Valsarajua15fe312018-09-14 13:58:21 -0700250bool OemCmdHandler(FastbootDevice* device, const std::vector<std::string>& args) {
251 auto fastboot_hal = device->fastboot_hal();
252 if (!fastboot_hal) {
253 return device->WriteStatus(FastbootResult::FAIL, "Unable to open fastboot HAL");
254 }
255
josephjangad90b452020-09-16 16:27:42 +0800256 //Disable "oem postwipedata userdata" to prevent user wipe oem userdata only.
257 if (args[0] == "oem postwipedata userdata") {
258 return device->WriteStatus(FastbootResult::FAIL, "Unable to do oem postwipedata userdata");
259 }
260
Hridya Valsarajua15fe312018-09-14 13:58:21 -0700261 Result ret;
262 auto ret_val = fastboot_hal->doOemCommand(args[0], [&](Result result) { ret = result; });
263 if (!ret_val.isOk()) {
264 return device->WriteStatus(FastbootResult::FAIL, "Unable to do OEM command");
265 }
266 if (ret.status != Status::SUCCESS) {
267 return device->WriteStatus(FastbootResult::FAIL, ret.message);
268 }
269
Michael Bestasbcf76802022-05-11 22:24:40 +0300270 device->WriteInfo(ret.message);
Hridya Valsarajua15fe312018-09-14 13:58:21 -0700271 return device->WriteStatus(FastbootResult::OKAY, ret.message);
272}
273
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700274bool DownloadHandler(FastbootDevice* device, const std::vector<std::string>& args) {
275 if (args.size() < 2) {
276 return device->WriteStatus(FastbootResult::FAIL, "size argument unspecified");
277 }
Hridya Valsarajud1e62312018-10-08 09:13:17 -0700278
279 if (GetDeviceLockStatus()) {
280 return device->WriteStatus(FastbootResult::FAIL,
281 "Download is not allowed on locked devices");
282 }
283
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700284 // arg[0] is the command name, arg[1] contains size of data to be downloaded
Keith Mok3724bbc2021-12-30 20:08:04 +0000285 // which should always be 8 bytes
286 if (args[1].length() != 8) {
287 return device->WriteStatus(FastbootResult::FAIL,
288 "Invalid size (length of size != 8)");
289 }
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700290 unsigned int size;
Hridya Valsarajuaae84e82018-10-08 13:10:25 -0700291 if (!android::base::ParseUint("0x" + args[1], &size, kMaxDownloadSizeDefault)) {
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700292 return device->WriteStatus(FastbootResult::FAIL, "Invalid size");
293 }
Keith Mok3724bbc2021-12-30 20:08:04 +0000294 if (size == 0) {
295 return device->WriteStatus(FastbootResult::FAIL, "Invalid size (0)");
296 }
David Anderson12211d12018-07-24 15:21:20 -0700297 device->download_data().resize(size);
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700298 if (!device->WriteStatus(FastbootResult::DATA, android::base::StringPrintf("%08x", size))) {
299 return false;
300 }
301
David Anderson12211d12018-07-24 15:21:20 -0700302 if (device->HandleData(true, &device->download_data())) {
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700303 return device->WriteStatus(FastbootResult::OKAY, "");
304 }
305
306 PLOG(ERROR) << "Couldn't download data";
307 return device->WriteStatus(FastbootResult::FAIL, "Couldn't download data");
308}
309
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700310bool SetActiveHandler(FastbootDevice* device, const std::vector<std::string>& args) {
311 if (args.size() < 2) {
312 return device->WriteStatus(FastbootResult::FAIL, "Missing slot argument");
313 }
314
Hridya Valsarajud1e62312018-10-08 09:13:17 -0700315 if (GetDeviceLockStatus()) {
316 return device->WriteStatus(FastbootResult::FAIL,
317 "set_active command is not allowed on locked devices");
318 }
319
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700320 Slot slot;
321 if (!GetSlotNumber(args[1], &slot)) {
David Anderson220ddb12019-10-31 18:02:41 -0700322 // Slot suffix needs to be between 'a' and 'z'.
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700323 return device->WriteStatus(FastbootResult::FAIL, "Bad slot suffix");
324 }
325
326 // Non-A/B devices will not have a boot control HAL.
327 auto boot_control_hal = device->boot_control_hal();
328 if (!boot_control_hal) {
329 return device->WriteStatus(FastbootResult::FAIL,
330 "Cannot set slot: boot control HAL absent");
331 }
332 if (slot >= boot_control_hal->getNumberSlots()) {
333 return device->WriteStatus(FastbootResult::FAIL, "Slot out of range");
334 }
David Anderson220ddb12019-10-31 18:02:41 -0700335
336 // If the slot is not changing, do nothing.
Hridya Valsaraju45719a82020-03-02 13:03:47 -0800337 if (args[1] == device->GetCurrentSlot()) {
David Anderson220ddb12019-10-31 18:02:41 -0700338 return device->WriteOkay("");
339 }
340
341 // Check how to handle the current snapshot state.
342 if (auto hal11 = device->boot1_1()) {
343 auto merge_status = hal11->getSnapshotMergeStatus();
344 if (merge_status == MergeStatus::MERGING) {
345 return device->WriteFail("Cannot change slots while a snapshot update is in progress");
346 }
347 // Note: we allow the slot change if the state is SNAPSHOTTED. First-
348 // stage init does not have access to the HAL, and uses the slot number
349 // and /metadata OTA state to determine whether a slot change occurred.
350 // Booting into the old slot would erase the OTA, and switching A->B->A
351 // would simply resume it if no boots occur in between. Re-flashing
352 // partitions implicitly cancels the OTA, so leaving the state as-is is
353 // safe.
354 if (merge_status == MergeStatus::SNAPSHOTTED) {
355 device->WriteInfo(
356 "Changing the active slot with a snapshot applied may cancel the"
357 " update.");
358 }
359 }
360
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700361 CommandResult ret;
362 auto cb = [&ret](CommandResult result) { ret = result; };
363 auto result = boot_control_hal->setActiveBootSlot(slot, cb);
Hridya Valsaraju20bdf892018-10-10 11:02:19 -0700364 if (result.isOk() && ret.success) {
365 // Save as slot suffix to match the suffix format as returned from
366 // the boot control HAL.
367 auto current_slot = "_" + args[1];
368 device->set_active_slot(current_slot);
369 return device->WriteStatus(FastbootResult::OKAY, "");
370 }
Hridya Valsaraju31d2c262018-07-20 13:35:50 -0700371 return device->WriteStatus(FastbootResult::FAIL, "Unable to set slot");
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700372}
373
374bool ShutDownHandler(FastbootDevice* device, const std::vector<std::string>& /* args */) {
375 auto result = device->WriteStatus(FastbootResult::OKAY, "Shutting down");
376 android::base::SetProperty(ANDROID_RB_PROPERTY, "shutdown,fastboot");
377 device->CloseDevice();
378 TEMP_FAILURE_RETRY(pause());
379 return result;
380}
381
382bool RebootHandler(FastbootDevice* device, const std::vector<std::string>& /* args */) {
383 auto result = device->WriteStatus(FastbootResult::OKAY, "Rebooting");
384 android::base::SetProperty(ANDROID_RB_PROPERTY, "reboot,from_fastboot");
385 device->CloseDevice();
386 TEMP_FAILURE_RETRY(pause());
387 return result;
388}
389
390bool RebootBootloaderHandler(FastbootDevice* device, const std::vector<std::string>& /* args */) {
391 auto result = device->WriteStatus(FastbootResult::OKAY, "Rebooting bootloader");
392 android::base::SetProperty(ANDROID_RB_PROPERTY, "reboot,bootloader");
393 device->CloseDevice();
394 TEMP_FAILURE_RETRY(pause());
395 return result;
396}
397
398bool RebootFastbootHandler(FastbootDevice* device, const std::vector<std::string>& /* args */) {
399 auto result = device->WriteStatus(FastbootResult::OKAY, "Rebooting fastboot");
400 android::base::SetProperty(ANDROID_RB_PROPERTY, "reboot,fastboot");
401 device->CloseDevice();
402 TEMP_FAILURE_RETRY(pause());
403 return result;
404}
405
406static bool EnterRecovery() {
407 const char msg_switch_to_recovery = 'r';
408
409 android::base::unique_fd sock(socket(AF_UNIX, SOCK_STREAM, 0));
410 if (sock < 0) {
411 PLOG(ERROR) << "Couldn't create sock";
412 return false;
413 }
414
415 struct sockaddr_un addr = {.sun_family = AF_UNIX};
416 strncpy(addr.sun_path, "/dev/socket/recovery", sizeof(addr.sun_path) - 1);
Yifan Hong07e947f2021-03-22 19:21:34 -0700417 if (connect(sock.get(), (struct sockaddr*)&addr, sizeof(addr)) < 0) {
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700418 PLOG(ERROR) << "Couldn't connect to recovery";
419 return false;
420 }
421 // Switch to recovery will not update the boot reason since it does not
422 // require a reboot.
Yifan Hong07e947f2021-03-22 19:21:34 -0700423 auto ret = write(sock.get(), &msg_switch_to_recovery, sizeof(msg_switch_to_recovery));
Hridya Valsarajudea91b42018-07-17 11:14:01 -0700424 if (ret != sizeof(msg_switch_to_recovery)) {
425 PLOG(ERROR) << "Couldn't write message to switch to recovery";
426 return false;
427 }
428
429 return true;
430}
431
432bool RebootRecoveryHandler(FastbootDevice* device, const std::vector<std::string>& /* args */) {
433 auto status = true;
434 if (EnterRecovery()) {
435 status = device->WriteStatus(FastbootResult::OKAY, "Rebooting to recovery");
436 } else {
437 status = device->WriteStatus(FastbootResult::FAIL, "Unable to reboot to recovery");
438 }
439 device->CloseDevice();
440 TEMP_FAILURE_RETRY(pause());
441 return status;
442}
David Anderson0d4277d2018-07-31 13:27:37 -0700443
444// Helper class for opening a handle to a MetadataBuilder and writing the new
445// partition table to the same place it was read.
446class PartitionBuilder {
447 public:
David Andersond25f1c32018-11-09 20:41:33 -0800448 explicit PartitionBuilder(FastbootDevice* device, const std::string& partition_name);
David Anderson0d4277d2018-07-31 13:27:37 -0700449
450 bool Write();
451 bool Valid() const { return !!builder_; }
452 MetadataBuilder* operator->() const { return builder_.get(); }
453
454 private:
David Anderson4d307b02018-12-17 17:07:34 -0800455 FastbootDevice* device_;
David Anderson0d4277d2018-07-31 13:27:37 -0700456 std::string super_device_;
David Andersond25f1c32018-11-09 20:41:33 -0800457 uint32_t slot_number_;
David Anderson0d4277d2018-07-31 13:27:37 -0700458 std::unique_ptr<MetadataBuilder> builder_;
459};
460
David Anderson4d307b02018-12-17 17:07:34 -0800461PartitionBuilder::PartitionBuilder(FastbootDevice* device, const std::string& partition_name)
462 : device_(device) {
David Andersond25f1c32018-11-09 20:41:33 -0800463 std::string slot_suffix = GetSuperSlotSuffix(device, partition_name);
David Anderson27475322019-06-11 14:00:08 -0700464 slot_number_ = android::fs_mgr::SlotNumberForSlotSuffix(slot_suffix);
David Andersond25f1c32018-11-09 20:41:33 -0800465 auto super_device = FindPhysicalPartition(fs_mgr_get_super_partition_name(slot_number_));
David Anderson0d4277d2018-07-31 13:27:37 -0700466 if (!super_device) {
467 return;
468 }
469 super_device_ = *super_device;
David Andersond25f1c32018-11-09 20:41:33 -0800470 builder_ = MetadataBuilder::New(super_device_, slot_number_);
David Anderson0d4277d2018-07-31 13:27:37 -0700471}
472
473bool PartitionBuilder::Write() {
David Anderson27475322019-06-11 14:00:08 -0700474 auto metadata = builder_->Export();
David Anderson0d4277d2018-07-31 13:27:37 -0700475 if (!metadata) {
476 return false;
477 }
David Anderson4d307b02018-12-17 17:07:34 -0800478 return UpdateAllPartitionMetadata(device_, super_device_, *metadata.get());
David Anderson0d4277d2018-07-31 13:27:37 -0700479}
480
481bool CreatePartitionHandler(FastbootDevice* device, const std::vector<std::string>& args) {
482 if (args.size() < 3) {
483 return device->WriteFail("Invalid partition name and size");
484 }
485
Hridya Valsarajudca328d2018-09-24 16:01:35 -0700486 if (GetDeviceLockStatus()) {
487 return device->WriteStatus(FastbootResult::FAIL, "Command not available on locked devices");
488 }
489
David Anderson0d4277d2018-07-31 13:27:37 -0700490 uint64_t partition_size;
491 std::string partition_name = args[1];
492 if (!android::base::ParseUint(args[2].c_str(), &partition_size)) {
493 return device->WriteFail("Invalid partition size");
494 }
495
David Andersond25f1c32018-11-09 20:41:33 -0800496 PartitionBuilder builder(device, partition_name);
David Anderson0d4277d2018-07-31 13:27:37 -0700497 if (!builder.Valid()) {
498 return device->WriteFail("Could not open super partition");
499 }
500 // TODO(112433293) Disallow if the name is in the physical table as well.
501 if (builder->FindPartition(partition_name)) {
502 return device->WriteFail("Partition already exists");
503 }
504
David Anderson27475322019-06-11 14:00:08 -0700505 auto partition = builder->AddPartition(partition_name, 0);
David Anderson0d4277d2018-07-31 13:27:37 -0700506 if (!partition) {
507 return device->WriteFail("Failed to add partition");
508 }
509 if (!builder->ResizePartition(partition, partition_size)) {
510 builder->RemovePartition(partition_name);
511 return device->WriteFail("Not enough space for partition");
512 }
513 if (!builder.Write()) {
514 return device->WriteFail("Failed to write partition table");
515 }
516 return device->WriteOkay("Partition created");
517}
518
519bool DeletePartitionHandler(FastbootDevice* device, const std::vector<std::string>& args) {
520 if (args.size() < 2) {
521 return device->WriteFail("Invalid partition name and size");
522 }
523
Hridya Valsarajudca328d2018-09-24 16:01:35 -0700524 if (GetDeviceLockStatus()) {
525 return device->WriteStatus(FastbootResult::FAIL, "Command not available on locked devices");
526 }
527
David Andersond25f1c32018-11-09 20:41:33 -0800528 std::string partition_name = args[1];
529
530 PartitionBuilder builder(device, partition_name);
David Anderson0d4277d2018-07-31 13:27:37 -0700531 if (!builder.Valid()) {
532 return device->WriteFail("Could not open super partition");
533 }
David Andersond25f1c32018-11-09 20:41:33 -0800534 builder->RemovePartition(partition_name);
David Anderson0d4277d2018-07-31 13:27:37 -0700535 if (!builder.Write()) {
536 return device->WriteFail("Failed to write partition table");
537 }
538 return device->WriteOkay("Partition deleted");
539}
540
541bool ResizePartitionHandler(FastbootDevice* device, const std::vector<std::string>& args) {
542 if (args.size() < 3) {
543 return device->WriteFail("Invalid partition name and size");
544 }
545
Hridya Valsarajudca328d2018-09-24 16:01:35 -0700546 if (GetDeviceLockStatus()) {
547 return device->WriteStatus(FastbootResult::FAIL, "Command not available on locked devices");
548 }
549
David Anderson0d4277d2018-07-31 13:27:37 -0700550 uint64_t partition_size;
551 std::string partition_name = args[1];
552 if (!android::base::ParseUint(args[2].c_str(), &partition_size)) {
553 return device->WriteFail("Invalid partition size");
554 }
555
David Andersond25f1c32018-11-09 20:41:33 -0800556 PartitionBuilder builder(device, partition_name);
David Anderson0d4277d2018-07-31 13:27:37 -0700557 if (!builder.Valid()) {
558 return device->WriteFail("Could not open super partition");
559 }
560
David Anderson27475322019-06-11 14:00:08 -0700561 auto partition = builder->FindPartition(partition_name);
David Anderson0d4277d2018-07-31 13:27:37 -0700562 if (!partition) {
563 return device->WriteFail("Partition does not exist");
564 }
David Andersonad970fc2019-08-27 14:01:16 -0700565
566 // Remove the updated flag to cancel any snapshots.
567 uint32_t attrs = partition->attributes();
568 partition->set_attributes(attrs & ~LP_PARTITION_ATTR_UPDATED);
569
David Anderson0d4277d2018-07-31 13:27:37 -0700570 if (!builder->ResizePartition(partition, partition_size)) {
571 return device->WriteFail("Not enough space to resize partition");
572 }
573 if (!builder.Write()) {
574 return device->WriteFail("Failed to write partition table");
575 }
576 return device->WriteOkay("Partition resized");
577}
David Anderson38b3c7a2018-08-15 16:27:42 -0700578
David Andersonad970fc2019-08-27 14:01:16 -0700579void CancelPartitionSnapshot(FastbootDevice* device, const std::string& partition_name) {
580 PartitionBuilder builder(device, partition_name);
581 if (!builder.Valid()) return;
582
583 auto partition = builder->FindPartition(partition_name);
584 if (!partition) return;
585
586 // Remove the updated flag to cancel any snapshots.
587 uint32_t attrs = partition->attributes();
588 partition->set_attributes(attrs & ~LP_PARTITION_ATTR_UPDATED);
589
590 builder.Write();
591}
592
593bool FlashHandler(FastbootDevice* device, const std::vector<std::string>& args) {
594 if (args.size() < 2) {
595 return device->WriteStatus(FastbootResult::FAIL, "Invalid arguments");
596 }
597
598 if (GetDeviceLockStatus()) {
599 return device->WriteStatus(FastbootResult::FAIL,
600 "Flashing is not allowed on locked devices");
601 }
602
603 const auto& partition_name = args[1];
David Anderson220ddb12019-10-31 18:02:41 -0700604 if (IsProtectedPartitionDuringMerge(device, partition_name)) {
605 auto message = "Cannot flash " + partition_name + " while a snapshot update is in progress";
606 return device->WriteFail(message);
607 }
608
David Andersonad970fc2019-08-27 14:01:16 -0700609 if (LogicalPartitionExists(device, partition_name)) {
610 CancelPartitionSnapshot(device, partition_name);
611 }
612
613 int ret = Flash(device, partition_name);
614 if (ret < 0) {
615 return device->WriteStatus(FastbootResult::FAIL, strerror(-ret));
616 }
617 return device->WriteStatus(FastbootResult::OKAY, "Flashing succeeded");
618}
619
David Anderson38b3c7a2018-08-15 16:27:42 -0700620bool UpdateSuperHandler(FastbootDevice* device, const std::vector<std::string>& args) {
621 if (args.size() < 2) {
622 return device->WriteFail("Invalid arguments");
623 }
Hridya Valsarajudca328d2018-09-24 16:01:35 -0700624
625 if (GetDeviceLockStatus()) {
626 return device->WriteStatus(FastbootResult::FAIL, "Command not available on locked devices");
627 }
628
David Anderson38b3c7a2018-08-15 16:27:42 -0700629 bool wipe = (args.size() >= 3 && args[2] == "wipe");
630 return UpdateSuper(device, args[1], wipe);
631}
David Anderson1d504e32019-01-15 14:38:20 -0800632
David Anderson3d782d52019-01-29 13:09:49 -0800633bool GsiHandler(FastbootDevice* device, const std::vector<std::string>& args) {
David Anderson1d504e32019-01-15 14:38:20 -0800634 if (args.size() != 2) {
635 return device->WriteFail("Invalid arguments");
636 }
David Anderson3d782d52019-01-29 13:09:49 -0800637
638 AutoMountMetadata mount_metadata;
639 if (!mount_metadata) {
640 return device->WriteFail("Could not find GSI install");
641 }
642
643 if (!android::gsi::IsGsiInstalled()) {
644 return device->WriteStatus(FastbootResult::FAIL, "No GSI is installed");
645 }
646
David Anderson1d504e32019-01-15 14:38:20 -0800647 if (args[1] == "wipe") {
648 if (!android::gsi::UninstallGsi()) {
649 return device->WriteStatus(FastbootResult::FAIL, strerror(errno));
650 }
651 } else if (args[1] == "disable") {
652 if (!android::gsi::DisableGsi()) {
653 return device->WriteStatus(FastbootResult::FAIL, strerror(errno));
654 }
655 }
656 return device->WriteStatus(FastbootResult::OKAY, "Success");
657}
David Andersonab8f4662019-10-21 16:45:59 -0700658
659bool SnapshotUpdateHandler(FastbootDevice* device, const std::vector<std::string>& args) {
660 // Note that we use the HAL rather than mounting /metadata, since we want
661 // our results to match the bootloader.
David Anderson220ddb12019-10-31 18:02:41 -0700662 auto hal = device->boot1_1();
David Andersonab8f4662019-10-21 16:45:59 -0700663 if (!hal) return device->WriteFail("Not supported");
664
David Andersonab8f4662019-10-21 16:45:59 -0700665 // If no arguments, return the same thing as a getvar. Note that we get the
666 // HAL first so we can return "not supported" before we return the less
667 // specific error message below.
668 if (args.size() < 2 || args[1].empty()) {
669 std::string message;
670 if (!GetSnapshotUpdateStatus(device, {}, &message)) {
671 return device->WriteFail("Could not determine update status");
672 }
673 device->WriteInfo(message);
674 return device->WriteOkay("");
675 }
676
David Anderson220ddb12019-10-31 18:02:41 -0700677 MergeStatus status = hal->getSnapshotMergeStatus();
678
679 if (args.size() != 2) {
David Andersonab8f4662019-10-21 16:45:59 -0700680 return device->WriteFail("Invalid arguments");
681 }
David Anderson220ddb12019-10-31 18:02:41 -0700682 if (args[1] == "cancel") {
683 switch (status) {
684 case MergeStatus::SNAPSHOTTED:
685 case MergeStatus::MERGING:
686 hal->setSnapshotMergeStatus(MergeStatus::CANCELLED);
687 break;
688 default:
689 break;
690 }
691 } else if (args[1] == "merge") {
692 if (status != MergeStatus::MERGING) {
693 return device->WriteFail("No snapshot merge is in progress");
694 }
David Andersonab8f4662019-10-21 16:45:59 -0700695
David Anderson565577f2021-02-04 20:14:18 -0800696 auto sm = SnapshotManager::New();
David Anderson220ddb12019-10-31 18:02:41 -0700697 if (!sm) {
698 return device->WriteFail("Unable to create SnapshotManager");
699 }
David Anderson5a0177d2020-04-30 18:53:23 -0700700 if (!sm->FinishMergeInRecovery()) {
David Anderson220ddb12019-10-31 18:02:41 -0700701 return device->WriteFail("Unable to finish snapshot merge");
702 }
703 } else {
704 return device->WriteFail("Invalid parameter to snapshot-update");
David Andersonab8f4662019-10-21 16:45:59 -0700705 }
706 return device->WriteStatus(FastbootResult::OKAY, "Success");
707}
Yifan Honga4eb4752021-02-16 19:37:21 -0800708
709namespace {
710// Helper of FetchHandler.
711class PartitionFetcher {
712 public:
713 static bool Fetch(FastbootDevice* device, const std::vector<std::string>& args) {
714 if constexpr (!kEnableFetch) {
715 return device->WriteFail("Fetch is not allowed on user build");
716 }
717
718 if (GetDeviceLockStatus()) {
719 return device->WriteFail("Fetch is not allowed on locked devices");
720 }
721
722 PartitionFetcher fetcher(device, args);
723 if (fetcher.Open()) {
724 fetcher.Fetch();
725 }
726 CHECK(fetcher.ret_.has_value());
727 return *fetcher.ret_;
728 }
729
730 private:
731 PartitionFetcher(FastbootDevice* device, const std::vector<std::string>& args)
732 : device_(device), args_(&args) {}
733 // Return whether the partition is successfully opened.
734 // If successfully opened, ret_ is left untouched. Otherwise, ret_ is set to the value
735 // that FetchHandler should return.
736 bool Open() {
Yifan Hongbcd27702021-02-16 19:37:32 -0800737 if (args_->size() < 2) {
738 ret_ = device_->WriteFail("Missing partition arg");
Yifan Honga4eb4752021-02-16 19:37:21 -0800739 return false;
740 }
741
Yifan Hongbcd27702021-02-16 19:37:32 -0800742 partition_name_ = args_->at(1);
743 if (std::find(kAllowedPartitions.begin(), kAllowedPartitions.end(), partition_name_) ==
744 kAllowedPartitions.end()) {
745 ret_ = device_->WriteFail("Fetch is only allowed on [" +
746 android::base::Join(kAllowedPartitions, ", ") + "]");
747 return false;
748 }
749
Konstantin Vyshetsky81cc1192021-11-04 10:27:06 -0700750 if (!OpenPartition(device_, partition_name_, &handle_, O_RDONLY)) {
Yifan Honga4eb4752021-02-16 19:37:21 -0800751 ret_ = device_->WriteFail(
752 android::base::StringPrintf("Cannot open %s", partition_name_.c_str()));
753 return false;
754 }
755
756 partition_size_ = get_block_device_size(handle_.fd());
757 if (partition_size_ == 0) {
758 ret_ = device_->WriteOkay(android::base::StringPrintf("Partition %s has size 0",
759 partition_name_.c_str()));
760 return false;
761 }
762
763 start_offset_ = 0;
764 if (args_->size() >= 3) {
765 if (!android::base::ParseUint(args_->at(2), &start_offset_)) {
766 ret_ = device_->WriteFail("Invalid offset, must be integer");
767 return false;
768 }
769 if (start_offset_ > std::numeric_limits<off64_t>::max()) {
770 ret_ = device_->WriteFail(
771 android::base::StringPrintf("Offset overflows: %" PRIx64, start_offset_));
772 return false;
773 }
774 }
775 if (start_offset_ > partition_size_) {
776 ret_ = device_->WriteFail(android::base::StringPrintf(
777 "Invalid offset 0x%" PRIx64 ", partition %s has size 0x%" PRIx64, start_offset_,
778 partition_name_.c_str(), partition_size_));
779 return false;
780 }
781 uint64_t maximum_total_size_to_read = partition_size_ - start_offset_;
782 total_size_to_read_ = maximum_total_size_to_read;
783 if (args_->size() >= 4) {
784 if (!android::base::ParseUint(args_->at(3), &total_size_to_read_)) {
785 ret_ = device_->WriteStatus(FastbootResult::FAIL, "Invalid size, must be integer");
786 return false;
787 }
788 }
789 if (total_size_to_read_ == 0) {
790 ret_ = device_->WriteOkay("Read 0 bytes");
791 return false;
792 }
793 if (total_size_to_read_ > maximum_total_size_to_read) {
794 ret_ = device_->WriteFail(android::base::StringPrintf(
795 "Invalid size to read 0x%" PRIx64 ", partition %s has size 0x%" PRIx64
796 " and fetching from offset 0x%" PRIx64,
797 total_size_to_read_, partition_name_.c_str(), partition_size_, start_offset_));
798 return false;
799 }
800
801 if (total_size_to_read_ > kMaxFetchSizeDefault) {
802 ret_ = device_->WriteFail(android::base::StringPrintf(
803 "Cannot fetch 0x%" PRIx64
804 " bytes because it exceeds maximum transport size 0x%x",
805 partition_size_, kMaxDownloadSizeDefault));
806 return false;
807 }
808
809 return true;
810 }
811
812 // Assume Open() returns true.
813 // After execution, ret_ is set to the value that FetchHandler should return.
814 void Fetch() {
815 CHECK(start_offset_ <= std::numeric_limits<off64_t>::max());
816 if (lseek64(handle_.fd(), start_offset_, SEEK_SET) != static_cast<off64_t>(start_offset_)) {
817 ret_ = device_->WriteFail(android::base::StringPrintf(
818 "On partition %s, unable to lseek(0x%" PRIx64 ": %s", partition_name_.c_str(),
819 start_offset_, strerror(errno)));
820 return;
821 }
822
823 if (!device_->WriteStatus(FastbootResult::DATA,
824 android::base::StringPrintf(
825 "%08x", static_cast<uint32_t>(total_size_to_read_)))) {
826 ret_ = false;
827 return;
828 }
829 uint64_t end_offset = start_offset_ + total_size_to_read_;
830 std::vector<char> buf(1_MiB);
831 uint64_t current_offset = start_offset_;
832 while (current_offset < end_offset) {
833 // On any error, exit. We can't return a status message to the driver because
834 // we are in the middle of writing data, so just let the driver guess what's wrong
835 // by ending the data stream prematurely.
836 uint64_t remaining = end_offset - current_offset;
837 uint64_t chunk_size = std::min<uint64_t>(buf.size(), remaining);
838 if (!android::base::ReadFully(handle_.fd(), buf.data(), chunk_size)) {
839 PLOG(ERROR) << std::hex << "Unable to read 0x" << chunk_size << " bytes from "
840 << partition_name_ << " @ offset 0x" << current_offset;
841 ret_ = false;
842 return;
843 }
844 if (!device_->HandleData(false /* is read */, buf.data(), chunk_size)) {
845 PLOG(ERROR) << std::hex << "Unable to send 0x" << chunk_size << " bytes of "
846 << partition_name_ << " @ offset 0x" << current_offset;
847 ret_ = false;
848 return;
849 }
850 current_offset += chunk_size;
851 }
852
853 ret_ = device_->WriteOkay(android::base::StringPrintf(
854 "Fetched %s (offset=0x%" PRIx64 ", size=0x%" PRIx64, partition_name_.c_str(),
855 start_offset_, total_size_to_read_));
856 }
857
Yifan Hongbcd27702021-02-16 19:37:32 -0800858 static constexpr std::array<const char*, 3> kAllowedPartitions{
859 "vendor_boot",
860 "vendor_boot_a",
861 "vendor_boot_b",
862 };
863
Yifan Honga4eb4752021-02-16 19:37:21 -0800864 FastbootDevice* device_;
865 const std::vector<std::string>* args_ = nullptr;
866 std::string partition_name_;
867 PartitionHandle handle_;
868 uint64_t partition_size_ = 0;
869 uint64_t start_offset_ = 0;
870 uint64_t total_size_to_read_ = 0;
871
872 // What FetchHandler should return.
873 std::optional<bool> ret_ = std::nullopt;
874};
875} // namespace
876
877bool FetchHandler(FastbootDevice* device, const std::vector<std::string>& args) {
878 return PartitionFetcher::Fetch(device, args);
879}