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 "variables.h"
18
19 #include <inttypes.h>
20 #include <stdio.h>
21
22 #include <android-base/file.h>
23 #include <android-base/logging.h>
24 #include <android-base/properties.h>
25 #include <android-base/stringprintf.h>
26 #include <android-base/strings.h>
27 #include <android/hardware/boot/1.1/IBootControl.h>
28 #include <ext4_utils/ext4_utils.h>
29 #include <fs_mgr.h>
30 #include <liblp/liblp.h>
31
32 #include "BootControlClient.h"
33 #include "fastboot_device.h"
34 #include "flashing.h"
35 #include "utility.h"
36
37 #ifdef FB_ENABLE_FETCH
38 static constexpr bool kEnableFetch = true;
39 #else
40 static constexpr bool kEnableFetch = false;
41 #endif
42
43 using MergeStatus = android::hal::BootControlClient::MergeStatus;
44 using aidl::android::hardware::fastboot::FileSystemType;
45 using namespace android::fs_mgr;
46 using namespace std::string_literals;
47
48 constexpr char kFastbootProtocolVersion[] = "0.4";
49
GetVersion(FastbootDevice *,const std::vector<std::string> &,std::string * message)50 bool GetVersion(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
51 std::string* message) {
52 *message = kFastbootProtocolVersion;
53 return true;
54 }
55
GetBootloaderVersion(FastbootDevice *,const std::vector<std::string> &,std::string * message)56 bool GetBootloaderVersion(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
57 std::string* message) {
58 *message = android::base::GetProperty("ro.bootloader", "");
59 return true;
60 }
61
GetBasebandVersion(FastbootDevice *,const std::vector<std::string> &,std::string * message)62 bool GetBasebandVersion(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
63 std::string* message) {
64 *message = android::base::GetProperty("ro.build.expect.baseband", "");
65 return true;
66 }
67
GetOsVersion(FastbootDevice *,const std::vector<std::string> &,std::string * message)68 bool GetOsVersion(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
69 std::string* message) {
70 *message = android::base::GetProperty("ro.build.version.release", "");
71 return true;
72 }
73
GetVndkVersion(FastbootDevice *,const std::vector<std::string> &,std::string * message)74 bool GetVndkVersion(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
75 std::string* message) {
76 *message = android::base::GetProperty("ro.vndk.version", "");
77 return true;
78 }
79
GetProduct(FastbootDevice *,const std::vector<std::string> &,std::string * message)80 bool GetProduct(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
81 std::string* message) {
82 *message = android::base::GetProperty("ro.product.device", "");
83 return true;
84 }
85
GetSerial(FastbootDevice *,const std::vector<std::string> &,std::string * message)86 bool GetSerial(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
87 std::string* message) {
88 *message = android::base::GetProperty("ro.serialno", "");
89 return true;
90 }
91
GetSecure(FastbootDevice *,const std::vector<std::string> &,std::string * message)92 bool GetSecure(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
93 std::string* message) {
94 *message = android::base::GetBoolProperty("ro.secure", "") ? "yes" : "no";
95 return true;
96 }
97
GetVariant(FastbootDevice * device,const std::vector<std::string> &,std::string * message)98 bool GetVariant(FastbootDevice* device, const std::vector<std::string>& /* args */,
99 std::string* message) {
100 auto fastboot_hal = device->fastboot_hal();
101 if (!fastboot_hal) {
102 *message = "Fastboot HAL not found";
103 return false;
104 }
105 std::string device_variant = "";
106 auto status = fastboot_hal->getVariant(&device_variant);
107
108 if (!status.isOk()) {
109 *message = "Unable to get device variant";
110 LOG(ERROR) << message->c_str() << status.getDescription();
111 return false;
112 }
113
114 *message = device_variant;
115 return true;
116 }
117
GetBatteryVoltageHelper(FastbootDevice * device,int32_t * battery_voltage)118 bool GetBatteryVoltageHelper(FastbootDevice* device, int32_t* battery_voltage) {
119 using aidl::android::hardware::health::HealthInfo;
120
121 auto health_hal = device->health_hal();
122 if (!health_hal) {
123 return false;
124 }
125
126 HealthInfo health_info;
127 auto res = health_hal->getHealthInfo(&health_info);
128 if (!res.isOk()) return false;
129 *battery_voltage = health_info.batteryVoltageMillivolts;
130 return true;
131 }
132
GetBatterySoCHelper(FastbootDevice * device,int32_t * battery_soc)133 bool GetBatterySoCHelper(FastbootDevice* device, int32_t* battery_soc) {
134 using aidl::android::hardware::health::HealthInfo;
135
136 auto health_hal = device->health_hal();
137 if (!health_hal) {
138 return false;
139 }
140
141 HealthInfo health_info;
142 auto res = health_hal->getHealthInfo(&health_info);
143 if (!res.isOk()) return false;
144 *battery_soc = health_info.batteryLevel;
145 return true;
146 }
147
GetBatterySoCOk(FastbootDevice * device,const std::vector<std::string> &,std::string * message)148 bool GetBatterySoCOk(FastbootDevice* device, const std::vector<std::string>& /* args */,
149 std::string* message) {
150 int32_t battery_voltage = 0;
151 if (!GetBatteryVoltageHelper(device, &battery_voltage)) {
152 *message = "Unable to read battery voltage";
153 return false;
154 }
155
156 auto fastboot_hal = device->fastboot_hal();
157 if (!fastboot_hal) {
158 *message = "Fastboot HAL not found";
159 return false;
160 }
161
162 auto voltage_threshold = 0;
163 auto status = fastboot_hal->getBatteryVoltageFlashingThreshold(&voltage_threshold);
164 if (!status.isOk()) {
165 *message = "Unable to get battery voltage flashing threshold";
166 LOG(ERROR) << message->c_str() << status.getDescription();
167 return false;
168 }
169 *message = battery_voltage >= voltage_threshold ? "yes" : "no";
170
171 return true;
172 }
173
GetOffModeChargeState(FastbootDevice * device,const std::vector<std::string> &,std::string * message)174 bool GetOffModeChargeState(FastbootDevice* device, const std::vector<std::string>& /* args */,
175 std::string* message) {
176 auto fastboot_hal = device->fastboot_hal();
177 if (!fastboot_hal) {
178 *message = "Fastboot HAL not found";
179 return false;
180 }
181 bool off_mode_charging_state = false;
182 auto status = fastboot_hal->getOffModeChargeState(&off_mode_charging_state);
183 if (!status.isOk()) {
184 *message = "Unable to get off mode charge state";
185 LOG(ERROR) << message->c_str() << status.getDescription();
186 return false;
187 }
188 *message = off_mode_charging_state ? "1" : "0";
189 return true;
190 }
191
GetBatteryVoltage(FastbootDevice * device,const std::vector<std::string> &,std::string * message)192 bool GetBatteryVoltage(FastbootDevice* device, const std::vector<std::string>& /* args */,
193 std::string* message) {
194 int32_t battery_voltage = 0;
195 if (GetBatteryVoltageHelper(device, &battery_voltage)) {
196 *message = std::to_string(battery_voltage);
197 return true;
198 }
199 *message = "Unable to get battery voltage";
200 return false;
201 }
202
GetBatterySoC(FastbootDevice * device,const std::vector<std::string> &,std::string * message)203 bool GetBatterySoC(FastbootDevice* device, const std::vector<std::string>& /* args */,
204 std::string* message) {
205 int32_t battery_soc = 0;
206 if (GetBatterySoCHelper(device, &battery_soc)) {
207 *message = std::to_string(battery_soc);
208 return true;
209 }
210 *message = "Unable to get battery soc";
211 return false;
212 }
213
GetCurrentSlot(FastbootDevice * device,const std::vector<std::string> &,std::string * message)214 bool GetCurrentSlot(FastbootDevice* device, const std::vector<std::string>& /* args */,
215 std::string* message) {
216 std::string suffix = device->GetCurrentSlot();
217 *message = suffix.size() == 2 ? suffix.substr(1) : suffix;
218 return true;
219 }
220
GetSlotCount(FastbootDevice * device,const std::vector<std::string> &,std::string * message)221 bool GetSlotCount(FastbootDevice* device, const std::vector<std::string>& /* args */,
222 std::string* message) {
223 auto boot_control_hal = device->boot_control_hal();
224 if (!boot_control_hal) {
225 *message = "0";
226 } else {
227 *message = std::to_string(boot_control_hal->GetNumSlots());
228 }
229 return true;
230 }
231
GetSlotSuccessful(FastbootDevice * device,const std::vector<std::string> & args,std::string * message)232 bool GetSlotSuccessful(FastbootDevice* device, const std::vector<std::string>& args,
233 std::string* message) {
234 if (args.empty()) {
235 *message = "Missing argument";
236 return false;
237 }
238 int32_t slot = -1;
239 if (!GetSlotNumber(args[0], &slot)) {
240 *message = "Invalid slot";
241 return false;
242 }
243 auto boot_control_hal = device->boot_control_hal();
244 if (!boot_control_hal) {
245 *message = "Device has no slots";
246 return false;
247 }
248 if (boot_control_hal->IsSlotMarkedSuccessful(slot).value_or(false)) {
249 *message = "no";
250 } else {
251 *message = "yes";
252 }
253 return true;
254 }
255
GetSlotUnbootable(FastbootDevice * device,const std::vector<std::string> & args,std::string * message)256 bool GetSlotUnbootable(FastbootDevice* device, const std::vector<std::string>& args,
257 std::string* message) {
258 if (args.empty()) {
259 *message = "Missing argument";
260 return false;
261 }
262 int32_t slot = -1;
263 if (!GetSlotNumber(args[0], &slot)) {
264 *message = "Invalid slot";
265 return false;
266 }
267 auto boot_control_hal = device->boot_control_hal();
268 if (!boot_control_hal) {
269 *message = "Device has no slots";
270 return false;
271 }
272 if (!boot_control_hal->IsSlotBootable(slot).value_or(false)) {
273 *message = "yes";
274 } else {
275 *message = "no";
276 }
277 return true;
278 }
279
GetMaxDownloadSize(FastbootDevice *,const std::vector<std::string> &,std::string * message)280 bool GetMaxDownloadSize(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
281 std::string* message) {
282 *message = android::base::StringPrintf("0x%X", kMaxDownloadSizeDefault);
283 return true;
284 }
285
GetUnlocked(FastbootDevice *,const std::vector<std::string> &,std::string * message)286 bool GetUnlocked(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
287 std::string* message) {
288 *message = GetDeviceLockStatus() ? "no" : "yes";
289 return true;
290 }
291
GetHasSlot(FastbootDevice * device,const std::vector<std::string> & args,std::string * message)292 bool GetHasSlot(FastbootDevice* device, const std::vector<std::string>& args,
293 std::string* message) {
294 if (args.empty()) {
295 *message = "Missing argument";
296 return false;
297 }
298 std::string slot_suffix = device->GetCurrentSlot();
299 if (slot_suffix.empty()) {
300 *message = "no";
301 return true;
302 }
303 std::string partition_name = args[0] + slot_suffix;
304 if (FindPhysicalPartition(partition_name) || LogicalPartitionExists(device, partition_name)) {
305 *message = "yes";
306 } else {
307 *message = "no";
308 }
309 return true;
310 }
311
GetPartitionSize(FastbootDevice * device,const std::vector<std::string> & args,std::string * message)312 bool GetPartitionSize(FastbootDevice* device, const std::vector<std::string>& args,
313 std::string* message) {
314 if (args.size() < 1) {
315 *message = "Missing argument";
316 return false;
317 }
318 // Zero-length partitions cannot be created through device-mapper, so we
319 // special case them here.
320 bool is_zero_length;
321 if (LogicalPartitionExists(device, args[0], &is_zero_length) && is_zero_length) {
322 *message = "0x0";
323 return true;
324 }
325 // Otherwise, open the partition as normal.
326 PartitionHandle handle;
327 if (!OpenPartition(device, args[0], &handle)) {
328 *message = "Could not open partition";
329 return false;
330 }
331 uint64_t size = get_block_device_size(handle.fd());
332 *message = android::base::StringPrintf("0x%" PRIX64, size);
333 return true;
334 }
335
GetPartitionType(FastbootDevice * device,const std::vector<std::string> & args,std::string * message)336 bool GetPartitionType(FastbootDevice* device, const std::vector<std::string>& args,
337 std::string* message) {
338 if (args.size() < 1) {
339 *message = "Missing argument";
340 return false;
341 }
342
343 std::string partition_name = args[0];
344 if (!FindPhysicalPartition(partition_name) && !LogicalPartitionExists(device, partition_name)) {
345 *message = "Invalid partition";
346 return false;
347 }
348
349 auto fastboot_hal = device->fastboot_hal();
350 if (!fastboot_hal) {
351 *message = "raw";
352 return true;
353 }
354
355 FileSystemType type;
356 auto status = fastboot_hal->getPartitionType(args[0], &type);
357
358 if (!status.isOk()) {
359 *message = "Unable to retrieve partition type";
360 LOG(ERROR) << message->c_str() << status.getDescription();
361 } else {
362 switch (type) {
363 case FileSystemType::RAW:
364 *message = "raw";
365 return true;
366 case FileSystemType::EXT4:
367 *message = "ext4";
368 return true;
369 case FileSystemType::F2FS:
370 *message = "f2fs";
371 return true;
372 default:
373 *message = "Unknown file system type";
374 }
375 }
376
377 return false;
378 }
379
GetPartitionIsLogical(FastbootDevice * device,const std::vector<std::string> & args,std::string * message)380 bool GetPartitionIsLogical(FastbootDevice* device, const std::vector<std::string>& args,
381 std::string* message) {
382 if (args.size() < 1) {
383 *message = "Missing argument";
384 return false;
385 }
386 // Note: if a partition name is in both the GPT and the super partition, we
387 // return "true", to be consistent with prefering to flash logical partitions
388 // over physical ones.
389 std::string partition_name = args[0];
390 if (LogicalPartitionExists(device, partition_name)) {
391 *message = "yes";
392 return true;
393 }
394 if (FindPhysicalPartition(partition_name)) {
395 *message = "no";
396 return true;
397 }
398 *message = "Partition not found";
399 return false;
400 }
401
GetIsUserspace(FastbootDevice *,const std::vector<std::string> &,std::string * message)402 bool GetIsUserspace(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
403 std::string* message) {
404 *message = "yes";
405 return true;
406 }
407
GetIsForceDebuggable(FastbootDevice *,const std::vector<std::string> &,std::string * message)408 bool GetIsForceDebuggable(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
409 std::string* message) {
410 *message = android::base::GetBoolProperty("ro.force.debuggable", false) ? "yes" : "no";
411 return true;
412 }
413
GetAllPartitionArgsWithSlot(FastbootDevice * device)414 std::vector<std::vector<std::string>> GetAllPartitionArgsWithSlot(FastbootDevice* device) {
415 std::vector<std::vector<std::string>> args;
416 auto partitions = ListPartitions(device);
417 for (const auto& partition : partitions) {
418 args.emplace_back(std::initializer_list<std::string>{partition});
419 }
420 return args;
421 }
422
GetAllPartitionArgsNoSlot(FastbootDevice * device)423 std::vector<std::vector<std::string>> GetAllPartitionArgsNoSlot(FastbootDevice* device) {
424 auto partitions = ListPartitions(device);
425
426 std::string slot_suffix = device->GetCurrentSlot();
427 if (!slot_suffix.empty()) {
428 auto names = std::move(partitions);
429 for (const auto& name : names) {
430 std::string slotless_name = name;
431 if (android::base::EndsWith(name, "_a") || android::base::EndsWith(name, "_b")) {
432 slotless_name = name.substr(0, name.rfind("_"));
433 }
434 if (std::find(partitions.begin(), partitions.end(), slotless_name) ==
435 partitions.end()) {
436 partitions.emplace_back(slotless_name);
437 }
438 }
439 }
440
441 std::vector<std::vector<std::string>> args;
442 for (const auto& partition : partitions) {
443 args.emplace_back(std::initializer_list<std::string>{partition});
444 }
445 return args;
446 }
447
GetHardwareRevision(FastbootDevice *,const std::vector<std::string> &,std::string * message)448 bool GetHardwareRevision(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
449 std::string* message) {
450 *message = android::base::GetProperty("ro.revision", "");
451 return true;
452 }
453
GetSuperPartitionName(FastbootDevice * device,const std::vector<std::string> &,std::string * message)454 bool GetSuperPartitionName(FastbootDevice* device, const std::vector<std::string>& /* args */,
455 std::string* message) {
456 uint32_t slot_number = SlotNumberForSlotSuffix(device->GetCurrentSlot());
457 *message = fs_mgr_get_super_partition_name(slot_number);
458 return true;
459 }
460
GetSnapshotUpdateStatus(FastbootDevice * device,const std::vector<std::string> &,std::string * message)461 bool GetSnapshotUpdateStatus(FastbootDevice* device, const std::vector<std::string>& /* args */,
462 std::string* message) {
463 // Note that we use the HAL rather than mounting /metadata, since we want
464 // our results to match the bootloader.
465 auto hal = device->boot1_1();
466 if (!hal) {
467 *message = "not supported";
468 return false;
469 }
470
471 MergeStatus status = hal->getSnapshotMergeStatus();
472 switch (status) {
473 case MergeStatus::SNAPSHOTTED:
474 *message = "snapshotted";
475 break;
476 case MergeStatus::MERGING:
477 *message = "merging";
478 break;
479 default:
480 *message = "none";
481 break;
482 }
483 return true;
484 }
485
GetCpuAbi(FastbootDevice *,const std::vector<std::string> &,std::string * message)486 bool GetCpuAbi(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
487 std::string* message) {
488 *message = android::base::GetProperty("ro.product.cpu.abi", "");
489 return true;
490 }
491
GetSystemFingerprint(FastbootDevice *,const std::vector<std::string> &,std::string * message)492 bool GetSystemFingerprint(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
493 std::string* message) {
494 *message = android::base::GetProperty("ro.system.build.fingerprint", "");
495 if (message->empty()) {
496 *message = android::base::GetProperty("ro.build.fingerprint", "");
497 }
498 return true;
499 }
500
GetVendorFingerprint(FastbootDevice *,const std::vector<std::string> &,std::string * message)501 bool GetVendorFingerprint(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
502 std::string* message) {
503 *message = android::base::GetProperty("ro.vendor.build.fingerprint", "");
504 return true;
505 }
506
GetDynamicPartition(FastbootDevice *,const std::vector<std::string> &,std::string * message)507 bool GetDynamicPartition(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
508 std::string* message) {
509 *message = android::base::GetProperty("ro.boot.dynamic_partitions", "");
510 return true;
511 }
512
GetFirstApiLevel(FastbootDevice *,const std::vector<std::string> &,std::string * message)513 bool GetFirstApiLevel(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
514 std::string* message) {
515 *message = android::base::GetProperty("ro.product.first_api_level", "");
516 return true;
517 }
518
GetSecurityPatchLevel(FastbootDevice *,const std::vector<std::string> &,std::string * message)519 bool GetSecurityPatchLevel(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
520 std::string* message) {
521 *message = android::base::GetProperty("ro.build.version.security_patch", "");
522 return true;
523 }
524
GetTrebleEnabled(FastbootDevice *,const std::vector<std::string> &,std::string * message)525 bool GetTrebleEnabled(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
526 std::string* message) {
527 *message = android::base::GetProperty("ro.treble.enabled", "");
528 return true;
529 }
530
GetMaxFetchSize(FastbootDevice *,const std::vector<std::string> &,std::string * message)531 bool GetMaxFetchSize(FastbootDevice* /* device */, const std::vector<std::string>& /* args */,
532 std::string* message) {
533 if (!kEnableFetch) {
534 *message = "fetch not supported on user builds";
535 return false;
536 }
537 *message = android::base::StringPrintf("0x%X", kMaxFetchSizeDefault);
538 return true;
539 }
540
GetDmesg(FastbootDevice * device)541 bool GetDmesg(FastbootDevice* device) {
542 if (GetDeviceLockStatus()) {
543 return device->WriteFail("Cannot use when device flashing is locked");
544 }
545
546 std::unique_ptr<FILE, decltype(&::fclose)> fp(popen("/system/bin/dmesg", "re"), ::fclose);
547 if (!fp) {
548 PLOG(ERROR) << "popen /system/bin/dmesg";
549 return device->WriteFail("Unable to run dmesg: "s + strerror(errno));
550 }
551
552 ssize_t rv;
553 size_t n = 0;
554 char* str = nullptr;
555 while ((rv = ::getline(&str, &n, fp.get())) > 0) {
556 if (str[rv - 1] == '\n') {
557 rv--;
558 }
559 device->WriteInfo(std::string(str, rv));
560 }
561
562 int saved_errno = errno;
563 ::free(str);
564
565 if (rv < 0 && saved_errno) {
566 LOG(ERROR) << "dmesg getline: " << strerror(saved_errno);
567 device->WriteFail("Unable to read dmesg: "s + strerror(saved_errno));
568 return false;
569 }
570
571 return true;
572 }
573
GetBatterySerialNumber(FastbootDevice * device,const std::vector<std::string> &,std::string * message)574 bool GetBatterySerialNumber(FastbootDevice* device, const std::vector<std::string>&,
575 std::string* message) {
576 auto health_hal = device->health_hal();
577 if (!health_hal) {
578 return false;
579 }
580
581 if (GetDeviceLockStatus()) {
582 return device->WriteFail("Device is locked");
583 }
584
585 *message = "unsupported";
586
587 int32_t version = 0;
588 auto res = health_hal->getInterfaceVersion(&version);
589 if (!res.isOk()) {
590 return device->WriteFail("Unable to query battery data");
591 }
592 if (version >= 3) {
593 using aidl::android::hardware::health::BatteryHealthData;
594
595 BatteryHealthData data;
596 auto res = health_hal->getBatteryHealthData(&data);
597 if (!res.isOk()) {
598 return device->WriteFail("Unable to query battery data");
599 }
600 if (data.batterySerialNumber) {
601 *message = *data.batterySerialNumber;
602 }
603 }
604 return true;
605 }
606
GetBatteryPartStatus(FastbootDevice * device,const std::vector<std::string> &,std::string * message)607 bool GetBatteryPartStatus(FastbootDevice* device, const std::vector<std::string>&,
608 std::string* message) {
609 auto health_hal = device->health_hal();
610 if (!health_hal) {
611 return false;
612 }
613
614 using aidl::android::hardware::health::BatteryPartStatus;
615
616 BatteryPartStatus status = BatteryPartStatus::UNSUPPORTED;
617
618 int32_t version = 0;
619 auto res = health_hal->getInterfaceVersion(&version);
620 if (!res.isOk()) {
621 return device->WriteFail("Unable to query battery data");
622 }
623 if (version >= 3) {
624 using aidl::android::hardware::health::BatteryHealthData;
625
626 BatteryHealthData data;
627 auto res = health_hal->getBatteryHealthData(&data);
628 if (!res.isOk()) {
629 return device->WriteFail("Unable to query battery data");
630 }
631 status = data.batteryPartStatus;
632 }
633 switch (status) {
634 case BatteryPartStatus::UNSUPPORTED:
635 *message = "unsupported";
636 break;
637 case BatteryPartStatus::ORIGINAL:
638 *message = "original";
639 break;
640 case BatteryPartStatus::REPLACED:
641 *message = "replaced";
642 break;
643 default:
644 *message = "unknown";
645 break;
646 }
647 return true;
648 }
649