• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Copyright (C) 2007 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 "install/install.h"
18 
19 #include <ctype.h>
20 #include <errno.h>
21 #include <fcntl.h>
22 #include <inttypes.h>
23 #include <limits.h>
24 #include <string.h>
25 #include <sys/stat.h>
26 #include <sys/wait.h>
27 #include <unistd.h>
28 
29 #include <algorithm>
30 #include <atomic>
31 #include <chrono>
32 #include <condition_variable>
33 #include <filesystem>
34 #include <functional>
35 #include <limits>
36 #include <mutex>
37 #include <thread>
38 #include <vector>
39 
40 #include <android-base/file.h>
41 #include <android-base/logging.h>
42 #include <android-base/parsedouble.h>
43 #include <android-base/parseint.h>
44 #include <android-base/properties.h>
45 #include <android-base/stringprintf.h>
46 #include <android-base/strings.h>
47 #include <android-base/unique_fd.h>
48 
49 #include "install/spl_check.h"
50 #include "install/wipe_data.h"
51 #include "install/wipe_device.h"
52 #include "otautil/error_code.h"
53 #include "otautil/package.h"
54 #include "otautil/paths.h"
55 #include "otautil/sysutil.h"
56 #include "otautil/verifier.h"
57 #include "private/setup_commands.h"
58 #include "recovery_ui/ui.h"
59 #include "recovery_utils/roots.h"
60 #include "recovery_utils/thermalutil.h"
61 
62 using namespace std::chrono_literals;
63 
64 static constexpr int kRecoveryApiVersion = 3;
65 // We define RECOVERY_API_VERSION in Android.mk, which will be picked up by build system and packed
66 // into target_files.zip. Assert the version defined in code and in Android.mk are consistent.
67 static_assert(kRecoveryApiVersion == RECOVERY_API_VERSION, "Mismatching recovery API versions.");
68 
69 // Default allocation of progress bar segments to operations
70 static constexpr int VERIFICATION_PROGRESS_TIME = 60;
71 static constexpr float VERIFICATION_PROGRESS_FRACTION = 0.25;
72 // The charater used to separate dynamic fingerprints. e.x. sargo|aosp-sargo
73 static const char* FINGERPRING_SEPARATOR = "|";
74 static constexpr auto&& RELEASE_KEYS_TAG = "release-keys";
75 // If brick packages are smaller than |MEMORY_PACKAGE_LIMIT|, read the entire package into memory
76 static constexpr size_t MEMORY_PACKAGE_LIMIT = 1024 * 1024;
77 
78 static std::condition_variable finish_log_temperature;
79 static bool isInStringList(const std::string& target_token, const std::string& str_list,
80                            const std::string& deliminator);
81 
ReadMetadataFromPackage(ZipArchiveHandle zip,std::map<std::string,std::string> * metadata)82 bool ReadMetadataFromPackage(ZipArchiveHandle zip, std::map<std::string, std::string>* metadata) {
83   CHECK(metadata != nullptr);
84 
85   static constexpr const char* METADATA_PATH = "META-INF/com/android/metadata";
86   ZipEntry64 entry;
87   if (FindEntry(zip, METADATA_PATH, &entry) != 0) {
88     LOG(ERROR) << "Failed to find " << METADATA_PATH;
89     return false;
90   }
91 
92   uint32_t length = entry.uncompressed_length;
93   std::string metadata_string(length, '\0');
94   int32_t err =
95       ExtractToMemory(zip, &entry, reinterpret_cast<uint8_t*>(&metadata_string[0]), length);
96   if (err != 0) {
97     LOG(ERROR) << "Failed to extract " << METADATA_PATH << ": " << ErrorCodeString(err);
98     return false;
99   }
100 
101   for (const std::string& line : android::base::Split(metadata_string, "\n")) {
102     size_t eq = line.find('=');
103     if (eq != std::string::npos) {
104       metadata->emplace(android::base::Trim(line.substr(0, eq)),
105                         android::base::Trim(line.substr(eq + 1)));
106     }
107   }
108 
109   return true;
110 }
111 
112 // Gets the value for the given key in |metadata|. Returns an emtpy string if the key isn't
113 // present.
get_value(const std::map<std::string,std::string> & metadata,const std::string & key)114 static std::string get_value(const std::map<std::string, std::string>& metadata,
115                              const std::string& key) {
116   const auto& it = metadata.find(key);
117   return (it == metadata.end()) ? "" : it->second;
118 }
119 
OtaTypeToString(OtaType type)120 static std::string OtaTypeToString(OtaType type) {
121   switch (type) {
122     case OtaType::AB:
123       return "AB";
124     case OtaType::BLOCK:
125       return "BLOCK";
126     case OtaType::BRICK:
127       return "BRICK";
128   }
129 }
130 
131 // Read the build.version.incremental of src/tgt from the metadata and log it to last_install.
ReadSourceTargetBuild(const std::map<std::string,std::string> & metadata,std::vector<std::string> * log_buffer)132 static void ReadSourceTargetBuild(const std::map<std::string, std::string>& metadata,
133                                   std::vector<std::string>* log_buffer) {
134   // Examples of the pre-build and post-build strings in metadata:
135   //   pre-build-incremental=2943039
136   //   post-build-incremental=2951741
137   auto source_build = get_value(metadata, "pre-build-incremental");
138   if (!source_build.empty()) {
139     log_buffer->push_back("source_build: " + source_build);
140   }
141 
142   auto target_build = get_value(metadata, "post-build-incremental");
143   if (!target_build.empty()) {
144     log_buffer->push_back("target_build: " + target_build);
145   }
146 }
147 
148 // Checks the build version, fingerprint and timestamp in the metadata of the A/B package.
149 // Downgrading is not allowed unless explicitly enabled in the package and only for
150 // incremental packages.
CheckAbSpecificMetadata(const std::map<std::string,std::string> & metadata)151 static bool CheckAbSpecificMetadata(const std::map<std::string, std::string>& metadata) {
152   // Incremental updates should match the current build.
153   auto device_pre_build = android::base::GetProperty("ro.build.version.incremental", "");
154   auto pkg_pre_build = get_value(metadata, "pre-build-incremental");
155   if (!pkg_pre_build.empty() && pkg_pre_build != device_pre_build) {
156     LOG(ERROR) << "Package is for source build " << pkg_pre_build << " but expected "
157                << device_pre_build;
158     return false;
159   }
160 
161   auto device_fingerprint = android::base::GetProperty("ro.build.fingerprint", "");
162   auto pkg_pre_build_fingerprint = get_value(metadata, "pre-build");
163   if (!pkg_pre_build_fingerprint.empty() &&
164       !isInStringList(device_fingerprint, pkg_pre_build_fingerprint, FINGERPRING_SEPARATOR)) {
165     LOG(ERROR) << "Package is for source build " << pkg_pre_build_fingerprint << " but expected "
166                << device_fingerprint;
167     return false;
168   }
169 
170   // Check for downgrade version.
171   int64_t build_timestamp =
172       android::base::GetIntProperty("ro.build.date.utc", std::numeric_limits<int64_t>::max());
173   int64_t pkg_post_timestamp = 0;
174   // We allow to full update to the same version we are running, in case there
175   // is a problem with the current copy of that version.
176   auto pkg_post_timestamp_string = get_value(metadata, "post-timestamp");
177   if (pkg_post_timestamp_string.empty() ||
178       !android::base::ParseInt(pkg_post_timestamp_string, &pkg_post_timestamp) ||
179       pkg_post_timestamp < build_timestamp) {
180     if (get_value(metadata, "ota-downgrade") != "yes") {
181       LOG(ERROR) << "Update package is older than the current build, expected a build "
182                     "newer than timestamp "
183                  << build_timestamp << " but package has timestamp " << pkg_post_timestamp
184                  << " and downgrade not allowed.";
185       return false;
186     }
187     if (pkg_pre_build_fingerprint.empty()) {
188       LOG(ERROR) << "Downgrade package must have a pre-build version set, not allowed.";
189       return false;
190     }
191   }
192 
193   return true;
194 }
195 
CheckPackageMetadata(const std::map<std::string,std::string> & metadata,OtaType ota_type)196 bool CheckPackageMetadata(const std::map<std::string, std::string>& metadata, OtaType ota_type) {
197   auto package_ota_type = get_value(metadata, "ota-type");
198   auto expected_ota_type = OtaTypeToString(ota_type);
199   if (ota_type != OtaType::AB && ota_type != OtaType::BRICK) {
200     LOG(INFO) << "Skip package metadata check for ota type " << expected_ota_type;
201     return true;
202   }
203 
204   if (package_ota_type != expected_ota_type) {
205     LOG(ERROR) << "Unexpected ota package type, expects " << expected_ota_type << ", actual "
206                << package_ota_type;
207     return false;
208   }
209 
210   auto device = android::base::GetProperty("ro.product.device", "");
211   auto pkg_device = get_value(metadata, "pre-device");
212   // device name can be a | separated list, so need to check
213   if (pkg_device.empty() || !isInStringList(device, pkg_device, FINGERPRING_SEPARATOR)) {
214     LOG(ERROR) << "Package is for product " << pkg_device << " but expected " << device;
215     return false;
216   }
217 
218   // We allow the package to not have any serialno; and we also allow it to carry multiple serial
219   // numbers split by "|"; e.g. serialno=serialno1|serialno2|serialno3 ... We will fail the
220   // verification if the device's serialno doesn't match any of these carried numbers.
221 
222   auto pkg_serial_no = get_value(metadata, "serialno");
223   if (!pkg_serial_no.empty()) {
224     auto device_serial_no = android::base::GetProperty("ro.serialno", "");
225     bool serial_number_match = false;
226     for (const auto& number : android::base::Split(pkg_serial_no, "|")) {
227       if (device_serial_no == android::base::Trim(number)) {
228         serial_number_match = true;
229       }
230     }
231     if (!serial_number_match) {
232       LOG(ERROR) << "Package is for serial " << pkg_serial_no;
233       return false;
234     }
235   } else if (ota_type == OtaType::BRICK) {
236     const auto device_build_tag = android::base::GetProperty("ro.build.tags", "");
237     if (device_build_tag.empty()) {
238       LOG(ERROR) << "Unable to determine device build tags, serial number is missing from package. "
239                     "Rejecting the brick OTA package.";
240       return false;
241     }
242     if (device_build_tag == RELEASE_KEYS_TAG) {
243       LOG(ERROR) << "Device is release key build, serial number is missing from package. "
244                     "Rejecting the brick OTA package.";
245       return false;
246     }
247     LOG(INFO)
248         << "Serial number is missing from brick OTA package, permitting anyway because device is "
249         << device_build_tag;
250   }
251 
252   if (ota_type == OtaType::AB) {
253     return CheckAbSpecificMetadata(metadata);
254   }
255 
256   return true;
257 }
258 
ExtractPayloadProperties(ZipArchiveHandle zip)259 static std::string ExtractPayloadProperties(ZipArchiveHandle zip) {
260   // For A/B updates we extract the payload properties to a buffer and obtain the RAW payload offset
261   // in the zip file.
262   static constexpr const char* AB_OTA_PAYLOAD_PROPERTIES = "payload_properties.txt";
263   ZipEntry64 properties_entry;
264   if (FindEntry(zip, AB_OTA_PAYLOAD_PROPERTIES, &properties_entry) != 0) {
265     LOG(ERROR) << "Failed to find " << AB_OTA_PAYLOAD_PROPERTIES;
266     return {};
267   }
268   auto properties_entry_length = properties_entry.uncompressed_length;
269   if (properties_entry_length > std::numeric_limits<size_t>::max()) {
270     LOG(ERROR) << "Failed to extract " << AB_OTA_PAYLOAD_PROPERTIES
271                << " because's uncompressed size exceeds size of address space. "
272                << properties_entry_length;
273     return {};
274   }
275   std::string payload_properties(properties_entry_length, '\0');
276   int32_t err =
277       ExtractToMemory(zip, &properties_entry, reinterpret_cast<uint8_t*>(payload_properties.data()),
278                       properties_entry_length);
279   if (err != 0) {
280     LOG(ERROR) << "Failed to extract " << AB_OTA_PAYLOAD_PROPERTIES << ": " << ErrorCodeString(err);
281     return {};
282   }
283   return payload_properties;
284 }
285 
SetUpAbUpdateCommands(const std::string & package,ZipArchiveHandle zip,int status_fd,std::vector<std::string> * cmd)286 bool SetUpAbUpdateCommands(const std::string& package, ZipArchiveHandle zip, int status_fd,
287                            std::vector<std::string>* cmd) {
288   CHECK(cmd != nullptr);
289 
290   // For A/B updates we extract the payload properties to a buffer and obtain the RAW payload offset
291   // in the zip file.
292   const auto payload_properties = ExtractPayloadProperties(zip);
293   if (payload_properties.empty()) {
294     return false;
295   }
296 
297   static constexpr const char* AB_OTA_PAYLOAD = "payload.bin";
298   ZipEntry64 payload_entry;
299   if (FindEntry(zip, AB_OTA_PAYLOAD, &payload_entry) != 0) {
300     LOG(ERROR) << "Failed to find " << AB_OTA_PAYLOAD;
301     return false;
302   }
303   long payload_offset = payload_entry.offset;
304   *cmd = {
305     "/system/bin/update_engine_sideload",
306     "--payload=file://" + package,
307     android::base::StringPrintf("--offset=%ld", payload_offset),
308     "--headers=" + std::string(payload_properties.begin(), payload_properties.end()),
309     android::base::StringPrintf("--status_fd=%d", status_fd),
310   };
311   return true;
312 }
313 
SetUpNonAbUpdateCommands(const std::string & package,ZipArchiveHandle zip,int retry_count,int status_fd,std::vector<std::string> * cmd)314 bool SetUpNonAbUpdateCommands(const std::string& package, ZipArchiveHandle zip, int retry_count,
315                               int status_fd, std::vector<std::string>* cmd) {
316   CHECK(cmd != nullptr);
317 
318   // In non-A/B updates we extract the update binary from the package.
319   static constexpr const char* UPDATE_BINARY_NAME = "META-INF/com/google/android/update-binary";
320   ZipEntry64 binary_entry;
321   if (FindEntry(zip, UPDATE_BINARY_NAME, &binary_entry) != 0) {
322     LOG(ERROR) << "Failed to find update binary " << UPDATE_BINARY_NAME;
323     return false;
324   }
325 
326   const std::string binary_path = Paths::Get().temporary_update_binary();
327   unlink(binary_path.c_str());
328   android::base::unique_fd fd(
329       open(binary_path.c_str(), O_CREAT | O_WRONLY | O_TRUNC | O_CLOEXEC, 0755));
330   if (fd == -1) {
331     PLOG(ERROR) << "Failed to create " << binary_path;
332     return false;
333   }
334 
335   if (auto error = ExtractEntryToFile(zip, &binary_entry, fd); error != 0) {
336     LOG(ERROR) << "Failed to extract " << UPDATE_BINARY_NAME << ": " << ErrorCodeString(error);
337     return false;
338   }
339 
340   // When executing the update binary contained in the package, the arguments passed are:
341   //   - the version number for this interface
342   //   - an FD to which the program can write in order to update the progress bar.
343   //   - the name of the package zip file.
344   //   - an optional argument "retry" if this update is a retry of a failed update attempt.
345   *cmd = {
346     binary_path,
347     std::to_string(kRecoveryApiVersion),
348     std::to_string(status_fd),
349     package,
350   };
351   if (retry_count > 0) {
352     cmd->push_back("retry");
353   }
354   return true;
355 }
356 
log_max_temperature(int * max_temperature,const std::atomic<bool> & logger_finished)357 static void log_max_temperature(int* max_temperature, const std::atomic<bool>& logger_finished) {
358   CHECK(max_temperature != nullptr);
359   std::mutex mtx;
360   std::unique_lock<std::mutex> lck(mtx);
361   while (!logger_finished.load() &&
362          finish_log_temperature.wait_for(lck, 20s) == std::cv_status::timeout) {
363     *max_temperature = std::max(*max_temperature, GetMaxValueFromThermalZone());
364   }
365 }
366 
PerformPowerwashIfRequired(ZipArchiveHandle zip,Device * device)367 static bool PerformPowerwashIfRequired(ZipArchiveHandle zip, Device *device) {
368   const auto payload_properties = ExtractPayloadProperties(zip);
369   if (payload_properties.find("POWERWASH=1") != std::string::npos) {
370     LOG(INFO) << "Payload properties has POWERWASH=1, wiping userdata...";
371     return WipeData(device);
372   }
373   return true;
374 }
375 
376 // If the package contains an update binary, extract it and run it.
TryUpdateBinary(Package * package,bool * wipe_cache,std::vector<std::string> * log_buffer,int retry_count,int * max_temperature,Device * device)377 static InstallResult TryUpdateBinary(Package* package, bool* wipe_cache,
378                                      std::vector<std::string>* log_buffer, int retry_count,
379                                      int* max_temperature, Device* device) {
380   auto ui = device->GetUI();
381   std::map<std::string, std::string> metadata;
382   auto zip = package->GetZipArchiveHandle();
383   if (!ReadMetadataFromPackage(zip, &metadata)) {
384     LOG(ERROR) << "Failed to parse metadata in the zip file";
385     return INSTALL_CORRUPT;
386   }
387 
388   const bool package_is_ab = get_value(metadata, "ota-type") == OtaTypeToString(OtaType::AB);
389   const bool package_is_brick = get_value(metadata, "ota-type") == OtaTypeToString(OtaType::BRICK);
390   if (package_is_brick) {
391     LOG(INFO) << "Installing a brick package";
392     if (package->GetType() == PackageType::kFile &&
393         package->GetPackageSize() < MEMORY_PACKAGE_LIMIT) {
394       std::vector<uint8_t> content(package->GetPackageSize());
395       if (package->ReadFullyAtOffset(content.data(), content.size(), 0)) {
396         auto memory_package = Package::CreateMemoryPackage(std::move(content), {});
397         return WipeAbDevice(device, memory_package.get()) ? INSTALL_SUCCESS : INSTALL_ERROR;
398       }
399     }
400     return WipeAbDevice(device, package) ? INSTALL_SUCCESS : INSTALL_ERROR;
401   }
402   bool device_supports_ab = android::base::GetBoolProperty("ro.build.ab_update", false);
403   bool ab_device_supports_nonab =
404       android::base::GetBoolProperty("ro.virtual_ab.allow_non_ab", false);
405   bool device_only_supports_ab = device_supports_ab && !ab_device_supports_nonab;
406 
407   const auto current_spl = android::base::GetProperty("ro.build.version.security_patch", "");
408   if (ViolatesSPLDowngrade(zip, current_spl)) {
409     LOG(ERROR) << "Denying OTA because it's SPL downgrade";
410     return INSTALL_ERROR;
411   }
412 
413   if (package_is_ab) {
414     CHECK(package->GetType() == PackageType::kFile);
415   }
416 
417   // Verify against the metadata in the package first. Expects A/B metadata if:
418   // Package declares itself as an A/B package
419   // Package does not declare itself as an A/B package, but device only supports A/B;
420   //   still calls CheckPackageMetadata to get a meaningful error message.
421   if (package_is_ab || device_only_supports_ab) {
422     if (!CheckPackageMetadata(metadata, OtaType::AB)) {
423       log_buffer->push_back(android::base::StringPrintf("error: %d", kUpdateBinaryCommandFailure));
424       return INSTALL_ERROR;
425     }
426   }
427 
428   ReadSourceTargetBuild(metadata, log_buffer);
429 
430   // The updater in child process writes to the pipe to communicate with recovery.
431   android::base::unique_fd pipe_read, pipe_write;
432   // Explicitly disable O_CLOEXEC using 0 as the flags (last) parameter to Pipe
433   // so that the child updater process will recieve a non-closed fd.
434   if (!android::base::Pipe(&pipe_read, &pipe_write, 0)) {
435     PLOG(ERROR) << "Failed to create pipe for updater-recovery communication";
436     return INSTALL_CORRUPT;
437   }
438 
439   // The updater-recovery communication protocol.
440   //
441   //   progress <frac> <secs>
442   //       fill up the next <frac> part of of the progress bar over <secs> seconds. If <secs> is
443   //       zero, use `set_progress` commands to manually control the progress of this segment of the
444   //       bar.
445   //
446   //   set_progress <frac>
447   //       <frac> should be between 0.0 and 1.0; sets the progress bar within the segment defined by
448   //       the most recent progress command.
449   //
450   //   ui_print <string>
451   //       display <string> on the screen.
452   //
453   //   wipe_cache
454   //       a wipe of cache will be performed following a successful installation.
455   //
456   //   clear_display
457   //       turn off the text display.
458   //
459   //   enable_reboot
460   //       packages can explicitly request that they want the user to be able to reboot during
461   //       installation (useful for debugging packages that don't exit).
462   //
463   //   retry_update
464   //       updater encounters some issue during the update. It requests a reboot to retry the same
465   //       package automatically.
466   //
467   //   log <string>
468   //       updater requests logging the string (e.g. cause of the failure).
469   //
470 
471   std::string package_path = package->GetPath();
472 
473   std::vector<std::string> args;
474   if (auto setup_result =
475           package_is_ab
476               ? SetUpAbUpdateCommands(package_path, zip, pipe_write.get(), &args)
477               : SetUpNonAbUpdateCommands(package_path, zip, retry_count, pipe_write.get(), &args);
478       !setup_result) {
479     log_buffer->push_back(android::base::StringPrintf("error: %d", kUpdateBinaryCommandFailure));
480     return INSTALL_CORRUPT;
481   }
482 
483   pid_t pid = fork();
484   if (pid == -1) {
485     PLOG(ERROR) << "Failed to fork update binary";
486     log_buffer->push_back(android::base::StringPrintf("error: %d", kForkUpdateBinaryFailure));
487     return INSTALL_ERROR;
488   }
489 
490   if (pid == 0) {
491     umask(022);
492     pipe_read.reset();
493 
494     // Convert the std::string vector to a NULL-terminated char* vector suitable for execv.
495     auto chr_args = StringVectorToNullTerminatedArray(args);
496     execv(chr_args[0], chr_args.data());
497     // We shouldn't use LOG/PLOG in the forked process, since they may cause the child process to
498     // hang. This deadlock results from an improperly copied mutex in the ui functions.
499     // (Bug: 34769056)
500     fprintf(stdout, "E:Can't run %s (%s)\n", chr_args[0], strerror(errno));
501     _exit(EXIT_FAILURE);
502   }
503   pipe_write.reset();
504 
505   std::atomic<bool> logger_finished(false);
506   std::thread temperature_logger(log_max_temperature, max_temperature, std::ref(logger_finished));
507 
508   *wipe_cache = false;
509   bool retry_update = false;
510 
511   char buffer[1024];
512   FILE* from_child = android::base::Fdopen(std::move(pipe_read), "r");
513   while (fgets(buffer, sizeof(buffer), from_child) != nullptr) {
514     std::string line(buffer);
515     size_t space = line.find_first_of(" \n");
516     std::string command(line.substr(0, space));
517     if (command.empty()) continue;
518 
519     // Get rid of the leading and trailing space and/or newline.
520     std::string args = space == std::string::npos ? "" : android::base::Trim(line.substr(space));
521 
522     if (command == "progress") {
523       std::vector<std::string> tokens = android::base::Split(args, " ");
524       double fraction;
525       int seconds;
526       if (tokens.size() == 2 && android::base::ParseDouble(tokens[0].c_str(), &fraction) &&
527           android::base::ParseInt(tokens[1], &seconds)) {
528         ui->ShowProgress(fraction * (1 - VERIFICATION_PROGRESS_FRACTION), seconds);
529       } else {
530         LOG(ERROR) << "invalid \"progress\" parameters: " << line;
531       }
532     } else if (command == "set_progress") {
533       std::vector<std::string> tokens = android::base::Split(args, " ");
534       double fraction;
535       if (tokens.size() == 1 && android::base::ParseDouble(tokens[0].c_str(), &fraction)) {
536         ui->SetProgress(fraction);
537       } else {
538         LOG(ERROR) << "invalid \"set_progress\" parameters: " << line;
539       }
540     } else if (command == "ui_print") {
541       ui->PrintOnScreenOnly("%s\n", args.c_str());
542       fflush(stdout);
543     } else if (command == "wipe_cache") {
544       *wipe_cache = true;
545     } else if (command == "clear_display") {
546       ui->SetBackground(RecoveryUI::NONE);
547     } else if (command == "enable_reboot") {
548       // packages can explicitly request that they want the user
549       // to be able to reboot during installation (useful for
550       // debugging packages that don't exit).
551       ui->SetEnableReboot(true);
552     } else if (command == "retry_update") {
553       retry_update = true;
554     } else if (command == "log") {
555       if (!args.empty()) {
556         // Save the logging request from updater and write to last_install later.
557         log_buffer->push_back(args);
558       } else {
559         LOG(ERROR) << "invalid \"log\" parameters: " << line;
560       }
561     } else {
562       LOG(ERROR) << "unknown command [" << command << "]";
563     }
564   }
565   fclose(from_child);
566 
567   int status;
568   waitpid(pid, &status, 0);
569 
570   logger_finished.store(true);
571   finish_log_temperature.notify_one();
572   temperature_logger.join();
573 
574   if (retry_update) {
575     return INSTALL_RETRY;
576   }
577   if (WIFEXITED(status)) {
578     if (WEXITSTATUS(status) != EXIT_SUCCESS) {
579       LOG(ERROR) << "Error in " << package_path << " (status " << WEXITSTATUS(status) << ")";
580       return INSTALL_ERROR;
581     }
582   } else if (WIFSIGNALED(status)) {
583     LOG(ERROR) << "Error in " << package_path << " (killed by signal " << WTERMSIG(status) << ")";
584     return INSTALL_ERROR;
585   } else {
586     LOG(FATAL) << "Invalid status code " << status;
587   }
588   if (package_is_ab) {
589     PerformPowerwashIfRequired(zip, device);
590   }
591 
592   return INSTALL_SUCCESS;
593 }
594 
VerifyAndInstallPackage(Package * package,bool * wipe_cache,std::vector<std::string> * log_buffer,int retry_count,int * max_temperature,Device * device)595 static InstallResult VerifyAndInstallPackage(Package* package, bool* wipe_cache,
596                                              std::vector<std::string>* log_buffer, int retry_count,
597                                              int* max_temperature, Device* device) {
598   auto ui = device->GetUI();
599   ui->SetBackground(RecoveryUI::INSTALLING_UPDATE);
600   // Give verification half the progress bar...
601   ui->SetProgressType(RecoveryUI::DETERMINATE);
602   ui->ShowProgress(VERIFICATION_PROGRESS_FRACTION, VERIFICATION_PROGRESS_TIME);
603 
604   // Verify package.
605   if (!verify_package(package, ui)) {
606     log_buffer->push_back(android::base::StringPrintf("error: %d", kZipVerificationFailure));
607     return INSTALL_CORRUPT;
608   }
609 
610   // Verify and install the contents of the package.
611   ui->Print("Installing update...\n");
612   if (retry_count > 0) {
613     ui->Print("Retry attempt: %d\n", retry_count);
614   }
615   ui->SetEnableReboot(false);
616   auto result =
617       TryUpdateBinary(package, wipe_cache, log_buffer, retry_count, max_temperature, device);
618   ui->SetEnableReboot(true);
619   ui->Print("\n");
620 
621   return result;
622 }
623 
InstallPackage(Package * package,const std::string_view package_id,bool should_wipe_cache,int retry_count,Device * device)624 InstallResult InstallPackage(Package* package, const std::string_view package_id,
625                              bool should_wipe_cache, int retry_count, Device* device) {
626   auto ui = device->GetUI();
627   auto start = std::chrono::system_clock::now();
628 
629   int start_temperature = GetMaxValueFromThermalZone();
630   int max_temperature = start_temperature;
631 
632   InstallResult result;
633   std::vector<std::string> log_buffer;
634 
635   ui->Print("Supported API: %d\n", kRecoveryApiVersion);
636 
637   ui->Print("Finding update package...\n");
638   LOG(INFO) << "Update package id: " << package_id;
639   if (!package) {
640     log_buffer.push_back(android::base::StringPrintf("error: %d", kMapFileFailure));
641     result = INSTALL_CORRUPT;
642   } else if (setup_install_mounts() != 0) {
643     LOG(ERROR) << "failed to set up expected mounts for install; aborting";
644     result = INSTALL_ERROR;
645   } else {
646     bool updater_wipe_cache = false;
647     result = VerifyAndInstallPackage(package, &updater_wipe_cache, &log_buffer, retry_count,
648                                      &max_temperature, device);
649     should_wipe_cache = should_wipe_cache || updater_wipe_cache;
650   }
651 
652   // Measure the time spent to apply OTA update in seconds.
653   std::chrono::duration<double> duration = std::chrono::system_clock::now() - start;
654   int time_total = static_cast<int>(duration.count());
655 
656   bool has_cache = volume_for_mount_point("/cache") != nullptr;
657   // Skip logging the uncrypt_status on devices without /cache.
658   if (has_cache) {
659     static constexpr const char* UNCRYPT_STATUS = "/cache/recovery/uncrypt_status";
660     if (ensure_path_mounted(UNCRYPT_STATUS) != 0) {
661       LOG(WARNING) << "Can't mount " << UNCRYPT_STATUS;
662     } else {
663       std::string uncrypt_status;
664       if (!android::base::ReadFileToString(UNCRYPT_STATUS, &uncrypt_status)) {
665         PLOG(WARNING) << "failed to read uncrypt status";
666       } else if (!android::base::StartsWith(uncrypt_status, "uncrypt_")) {
667         LOG(WARNING) << "corrupted uncrypt_status: " << uncrypt_status;
668       } else {
669         log_buffer.push_back(android::base::Trim(uncrypt_status));
670       }
671     }
672   }
673 
674   // The first two lines need to be the package name and install result.
675   std::vector<std::string> log_header = {
676     std::string(package_id),
677     result == INSTALL_SUCCESS ? "1" : "0",
678     "time_total: " + std::to_string(time_total),
679     "retry: " + std::to_string(retry_count),
680   };
681 
682   int end_temperature = GetMaxValueFromThermalZone();
683   max_temperature = std::max(end_temperature, max_temperature);
684   if (start_temperature > 0) {
685     log_buffer.push_back("temperature_start: " + std::to_string(start_temperature));
686   }
687   if (end_temperature > 0) {
688     log_buffer.push_back("temperature_end: " + std::to_string(end_temperature));
689   }
690   if (max_temperature > 0) {
691     log_buffer.push_back("temperature_max: " + std::to_string(max_temperature));
692   }
693 
694   std::string log_content =
695       android::base::Join(log_header, "\n") + "\n" + android::base::Join(log_buffer, "\n") + "\n";
696   const std::string& install_file = Paths::Get().temporary_install_file();
697   if (!android::base::WriteStringToFile(log_content, install_file)) {
698     PLOG(ERROR) << "failed to write " << install_file;
699   }
700 
701   // Write a copy into last_log.
702   LOG(INFO) << log_content;
703 
704   if (result == INSTALL_SUCCESS && should_wipe_cache) {
705     if (!WipeCache(ui, nullptr)) {
706       result = INSTALL_ERROR;
707     }
708   }
709 
710   return result;
711 }
712 
verify_package(Package * package,RecoveryUI * ui)713 bool verify_package(Package* package, RecoveryUI* ui) {
714   static constexpr const char* CERTIFICATE_ZIP_FILE = "/system/etc/security/otacerts.zip";
715   std::vector<Certificate> loaded_keys = LoadKeysFromZipfile(CERTIFICATE_ZIP_FILE);
716   if (loaded_keys.empty()) {
717     LOG(ERROR) << "Failed to load keys";
718     return false;
719   }
720   LOG(INFO) << loaded_keys.size() << " key(s) loaded from " << CERTIFICATE_ZIP_FILE;
721 
722   // Verify package.
723   ui->Print("Verifying update package...\n");
724   auto t0 = std::chrono::system_clock::now();
725   int err = verify_file(package, loaded_keys);
726   std::chrono::duration<double> duration = std::chrono::system_clock::now() - t0;
727   ui->Print("Update package verification took %.1f s (result %d).\n", duration.count(), err);
728   if (err != VERIFY_SUCCESS) {
729     LOG(ERROR) << "Signature verification failed";
730     LOG(ERROR) << "error: " << kZipVerificationFailure;
731     return false;
732   }
733   return true;
734 }
735 
SetupPackageMount(const std::string & package_path,bool * should_use_fuse)736 bool SetupPackageMount(const std::string& package_path, bool* should_use_fuse) {
737   CHECK(should_use_fuse != nullptr);
738 
739   if (package_path.empty()) {
740     return false;
741   }
742 
743   *should_use_fuse = true;
744   if (package_path[0] == '@') {
745     auto block_map_path = package_path.substr(1);
746     if (ensure_path_mounted(block_map_path) != 0) {
747       LOG(ERROR) << "Failed to mount " << block_map_path;
748       return false;
749     }
750     // uncrypt only produces block map only if the package stays on /data.
751     *should_use_fuse = false;
752     return true;
753   }
754 
755   // Package is not a block map file.
756   if (ensure_path_mounted(package_path) != 0) {
757     LOG(ERROR) << "Failed to mount " << package_path;
758     return false;
759   }
760 
761   // Reject the package if the input path doesn't equal the canonicalized path.
762   // e.g. /cache/../sdcard/update_package.
763   std::error_code ec;
764   auto canonical_path = std::filesystem::canonical(package_path, ec);
765   if (ec) {
766     LOG(ERROR) << "Failed to get canonical of " << package_path << ", " << ec.message();
767     return false;
768   }
769   if (canonical_path.string() != package_path) {
770     LOG(ERROR) << "Installation aborts. The canonical path " << canonical_path.string()
771                << " doesn't equal the original path " << package_path;
772     return false;
773   }
774 
775   constexpr const char* CACHE_ROOT = "/cache";
776   if (android::base::StartsWith(package_path, CACHE_ROOT)) {
777     *should_use_fuse = false;
778   }
779   return true;
780 }
781 
782 // Check if `target_token` is in string `str_list`, where `str_list` is expected to be a
783 // list delimited by `deliminator`
784 // E.X. isInStringList("a", "a|b|c|d", "|") => true
785 // E.X. isInStringList("abc", "abc", "|") => true
isInStringList(const std::string & target_token,const std::string & str_list,const std::string & deliminator)786 static bool isInStringList(const std::string& target_token, const std::string& str_list,
787                            const std::string& deliminator) {
788   if (target_token.length() > str_list.length()) {
789     return false;
790   } else if (target_token.length() == str_list.length() || deliminator.length() == 0) {
791     return target_token == str_list;
792   }
793   auto&& list = android::base::Split(str_list, deliminator);
794   return std::find(list.begin(), list.end(), target_token) != list.end();
795 }
796