1 /*
2 * Copyright (C) 2016 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 #define ATRACE_TAG ATRACE_TAG_RESOURCES
18
19 #include "androidfw/AssetManager2.h"
20
21 #include <algorithm>
22 #include <iterator>
23 #include <map>
24 #include <set>
25
26 #include "android-base/logging.h"
27 #include "android-base/stringprintf.h"
28 #include "androidfw/ResourceUtils.h"
29 #include "androidfw/Util.h"
30 #include "utils/ByteOrder.h"
31 #include "utils/Trace.h"
32
33 #ifdef _WIN32
34 #ifdef ERROR
35 #undef ERROR
36 #endif
37 #endif
38
39 namespace android {
40
41 struct FindEntryResult {
42 // A pointer to the resource table entry for this resource.
43 // If the size of the entry is > sizeof(ResTable_entry), it can be cast to
44 // a ResTable_map_entry and processed as a bag/map.
45 ResTable_entry_handle entry;
46
47 // The configuration for which the resulting entry was defined. This is already swapped to host
48 // endianness.
49 ResTable_config config;
50
51 // The bitmask of configuration axis with which the resource value varies.
52 uint32_t type_flags;
53
54 // The dynamic package ID map for the package from which this resource came from.
55 const DynamicRefTable* dynamic_ref_table;
56
57 // The package name of the resource.
58 const std::string* package_name;
59
60 // The string pool reference to the type's name. This uses a different string pool than
61 // the global string pool, but this is hidden from the caller.
62 StringPoolRef type_string_ref;
63
64 // The string pool reference to the entry's name. This uses a different string pool than
65 // the global string pool, but this is hidden from the caller.
66 StringPoolRef entry_string_ref;
67 };
68
AssetManager2()69 AssetManager2::AssetManager2() {
70 memset(&configuration_, 0, sizeof(configuration_));
71 }
72
SetApkAssets(const std::vector<const ApkAssets * > & apk_assets,bool invalidate_caches,bool filter_incompatible_configs)73 bool AssetManager2::SetApkAssets(const std::vector<const ApkAssets*>& apk_assets,
74 bool invalidate_caches, bool filter_incompatible_configs) {
75 apk_assets_ = apk_assets;
76 BuildDynamicRefTable();
77 RebuildFilterList(filter_incompatible_configs);
78 if (invalidate_caches) {
79 InvalidateCaches(static_cast<uint32_t>(-1));
80 }
81 return true;
82 }
83
BuildDynamicRefTable()84 void AssetManager2::BuildDynamicRefTable() {
85 package_groups_.clear();
86 package_ids_.fill(0xff);
87
88 // A mapping from apk assets path to the runtime package id of its first loaded package.
89 std::unordered_map<std::string, uint8_t> apk_assets_package_ids;
90
91 // Overlay resources are not directly referenced by an application so their resource ids
92 // can change throughout the application's lifetime. Assign overlay package ids last.
93 std::vector<const ApkAssets*> sorted_apk_assets(apk_assets_);
94 std::stable_partition(sorted_apk_assets.begin(), sorted_apk_assets.end(), [](const ApkAssets* a) {
95 return !a->IsOverlay();
96 });
97
98 // The assets cookie must map to the position of the apk assets in the unsorted apk assets list.
99 std::unordered_map<const ApkAssets*, ApkAssetsCookie> apk_assets_cookies;
100 apk_assets_cookies.reserve(apk_assets_.size());
101 for (size_t i = 0, n = apk_assets_.size(); i < n; i++) {
102 apk_assets_cookies[apk_assets_[i]] = static_cast<ApkAssetsCookie>(i);
103 }
104
105 // 0x01 is reserved for the android package.
106 int next_package_id = 0x02;
107 for (const ApkAssets* apk_assets : sorted_apk_assets) {
108 const LoadedArsc* loaded_arsc = apk_assets->GetLoadedArsc();
109 for (const std::unique_ptr<const LoadedPackage>& package : loaded_arsc->GetPackages()) {
110 // Get the package ID or assign one if a shared library.
111 int package_id;
112 if (package->IsDynamic()) {
113 package_id = next_package_id++;
114 } else {
115 package_id = package->GetPackageId();
116 }
117
118 // Add the mapping for package ID to index if not present.
119 uint8_t idx = package_ids_[package_id];
120 if (idx == 0xff) {
121 package_ids_[package_id] = idx = static_cast<uint8_t>(package_groups_.size());
122 package_groups_.push_back({});
123
124 if (apk_assets->IsOverlay()) {
125 // The target package must precede the overlay package in the apk assets paths in order
126 // to take effect.
127 const auto& loaded_idmap = apk_assets->GetLoadedIdmap();
128 auto target_package_iter = apk_assets_package_ids.find(loaded_idmap->TargetApkPath());
129 if (target_package_iter == apk_assets_package_ids.end()) {
130 LOG(INFO) << "failed to find target package for overlay "
131 << loaded_idmap->OverlayApkPath();
132 } else {
133 const uint8_t target_package_id = target_package_iter->second;
134 const uint8_t target_idx = package_ids_[target_package_id];
135 CHECK(target_idx != 0xff) << "overlay added to apk_assets_package_ids but does not"
136 << " have an assigned package group";
137
138 PackageGroup& target_package_group = package_groups_[target_idx];
139
140 // Create a special dynamic reference table for the overlay to rewrite references to
141 // overlay resources as references to the target resources they overlay.
142 auto overlay_table = std::make_shared<OverlayDynamicRefTable>(
143 loaded_idmap->GetOverlayDynamicRefTable(target_package_id));
144 package_groups_.back().dynamic_ref_table = overlay_table;
145
146 // Add the overlay resource map to the target package's set of overlays.
147 target_package_group.overlays_.push_back(
148 ConfiguredOverlay{loaded_idmap->GetTargetResourcesMap(target_package_id,
149 overlay_table.get()),
150 apk_assets_cookies[apk_assets]});
151 }
152 }
153
154 DynamicRefTable* ref_table = package_groups_.back().dynamic_ref_table.get();
155 ref_table->mAssignedPackageId = package_id;
156 ref_table->mAppAsLib = package->IsDynamic() && package->GetPackageId() == 0x7f;
157 }
158 PackageGroup* package_group = &package_groups_[idx];
159
160 // Add the package and to the set of packages with the same ID.
161 package_group->packages_.push_back(ConfiguredPackage{package.get(), {}});
162 package_group->cookies_.push_back(apk_assets_cookies[apk_assets]);
163
164 // Add the package name -> build time ID mappings.
165 for (const DynamicPackageEntry& entry : package->GetDynamicPackageMap()) {
166 String16 package_name(entry.package_name.c_str(), entry.package_name.size());
167 package_group->dynamic_ref_table->mEntries.replaceValueFor(
168 package_name, static_cast<uint8_t>(entry.package_id));
169 }
170
171 apk_assets_package_ids.insert(std::make_pair(apk_assets->GetPath(), package_id));
172 }
173 }
174
175 // Now assign the runtime IDs so that we have a build-time to runtime ID map.
176 const auto package_groups_end = package_groups_.end();
177 for (auto iter = package_groups_.begin(); iter != package_groups_end; ++iter) {
178 const std::string& package_name = iter->packages_[0].loaded_package_->GetPackageName();
179 for (auto iter2 = package_groups_.begin(); iter2 != package_groups_end; ++iter2) {
180 iter2->dynamic_ref_table->addMapping(String16(package_name.c_str(), package_name.size()),
181 iter->dynamic_ref_table->mAssignedPackageId);
182 }
183 }
184 }
185
DumpToLog() const186 void AssetManager2::DumpToLog() const {
187 base::ScopedLogSeverity _log(base::INFO);
188
189 LOG(INFO) << base::StringPrintf("AssetManager2(this=%p)", this);
190
191 std::string list;
192 for (const auto& apk_assets : apk_assets_) {
193 base::StringAppendF(&list, "%s,", apk_assets->GetPath().c_str());
194 }
195 LOG(INFO) << "ApkAssets: " << list;
196
197 list = "";
198 for (size_t i = 0; i < package_ids_.size(); i++) {
199 if (package_ids_[i] != 0xff) {
200 base::StringAppendF(&list, "%02x -> %d, ", (int)i, package_ids_[i]);
201 }
202 }
203 LOG(INFO) << "Package ID map: " << list;
204
205 for (const auto& package_group: package_groups_) {
206 list = "";
207 for (const auto& package : package_group.packages_) {
208 const LoadedPackage* loaded_package = package.loaded_package_;
209 base::StringAppendF(&list, "%s(%02x%s), ", loaded_package->GetPackageName().c_str(),
210 loaded_package->GetPackageId(),
211 (loaded_package->IsDynamic() ? " dynamic" : ""));
212 }
213 LOG(INFO) << base::StringPrintf("PG (%02x): ",
214 package_group.dynamic_ref_table->mAssignedPackageId)
215 << list;
216
217 for (size_t i = 0; i < 256; i++) {
218 if (package_group.dynamic_ref_table->mLookupTable[i] != 0) {
219 LOG(INFO) << base::StringPrintf(" e[0x%02x] -> 0x%02x", (uint8_t) i,
220 package_group.dynamic_ref_table->mLookupTable[i]);
221 }
222 }
223 }
224 }
225
GetStringPoolForCookie(ApkAssetsCookie cookie) const226 const ResStringPool* AssetManager2::GetStringPoolForCookie(ApkAssetsCookie cookie) const {
227 if (cookie < 0 || static_cast<size_t>(cookie) >= apk_assets_.size()) {
228 return nullptr;
229 }
230 return apk_assets_[cookie]->GetLoadedArsc()->GetStringPool();
231 }
232
GetDynamicRefTableForPackage(uint32_t package_id) const233 const DynamicRefTable* AssetManager2::GetDynamicRefTableForPackage(uint32_t package_id) const {
234 if (package_id >= package_ids_.size()) {
235 return nullptr;
236 }
237
238 const size_t idx = package_ids_[package_id];
239 if (idx == 0xff) {
240 return nullptr;
241 }
242 return package_groups_[idx].dynamic_ref_table.get();
243 }
244
GetDynamicRefTableForCookie(ApkAssetsCookie cookie) const245 std::shared_ptr<const DynamicRefTable> AssetManager2::GetDynamicRefTableForCookie(
246 ApkAssetsCookie cookie) const {
247 for (const PackageGroup& package_group : package_groups_) {
248 for (const ApkAssetsCookie& package_cookie : package_group.cookies_) {
249 if (package_cookie == cookie) {
250 return package_group.dynamic_ref_table;
251 }
252 }
253 }
254 return nullptr;
255 }
256
257 const std::unordered_map<std::string, std::string>*
GetOverlayableMapForPackage(uint32_t package_id) const258 AssetManager2::GetOverlayableMapForPackage(uint32_t package_id) const {
259
260 if (package_id >= package_ids_.size()) {
261 return nullptr;
262 }
263
264 const size_t idx = package_ids_[package_id];
265 if (idx == 0xff) {
266 return nullptr;
267 }
268
269 const PackageGroup& package_group = package_groups_[idx];
270 if (package_group.packages_.size() == 0) {
271 return nullptr;
272 }
273
274 const auto loaded_package = package_group.packages_[0].loaded_package_;
275 return &loaded_package->GetOverlayableMap();
276 }
277
GetOverlayablesToString(const android::StringPiece & package_name,std::string * out) const278 bool AssetManager2::GetOverlayablesToString(const android::StringPiece& package_name,
279 std::string* out) const {
280 uint8_t package_id = 0U;
281 for (const auto& apk_assets : apk_assets_) {
282 const LoadedArsc* loaded_arsc = apk_assets->GetLoadedArsc();
283 if (loaded_arsc == nullptr) {
284 continue;
285 }
286
287 const auto& loaded_packages = loaded_arsc->GetPackages();
288 if (loaded_packages.empty()) {
289 continue;
290 }
291
292 const auto& loaded_package = loaded_packages[0];
293 if (loaded_package->GetPackageName() == package_name) {
294 package_id = GetAssignedPackageId(loaded_package.get());
295 break;
296 }
297 }
298
299 if (package_id == 0U) {
300 ANDROID_LOG(ERROR) << base::StringPrintf("No package with name '%s", package_name.data());
301 return false;
302 }
303
304 const size_t idx = package_ids_[package_id];
305 if (idx == 0xff) {
306 return false;
307 }
308
309 std::string output;
310 for (const ConfiguredPackage& package : package_groups_[idx].packages_) {
311 const LoadedPackage* loaded_package = package.loaded_package_;
312 for (auto it = loaded_package->begin(); it != loaded_package->end(); it++) {
313 const OverlayableInfo* info = loaded_package->GetOverlayableInfo(*it);
314 if (info != nullptr) {
315 ResourceName res_name;
316 if (!GetResourceName(*it, &res_name)) {
317 ANDROID_LOG(ERROR) << base::StringPrintf(
318 "Unable to retrieve name of overlayable resource 0x%08x", *it);
319 return false;
320 }
321
322 const std::string name = ToFormattedResourceString(&res_name);
323 output.append(base::StringPrintf(
324 "resource='%s' overlayable='%s' actor='%s' policy='0x%08x'\n",
325 name.c_str(), info->name.c_str(), info->actor.c_str(), info->policy_flags));
326 }
327 }
328 }
329
330 *out = std::move(output);
331 return true;
332 }
333
ContainsAllocatedTable() const334 bool AssetManager2::ContainsAllocatedTable() const {
335 return std::find_if(apk_assets_.begin(), apk_assets_.end(),
336 std::mem_fn(&ApkAssets::IsTableAllocated)) != apk_assets_.end();
337 }
338
SetConfiguration(const ResTable_config & configuration)339 void AssetManager2::SetConfiguration(const ResTable_config& configuration) {
340 const int diff = configuration_.diff(configuration);
341 configuration_ = configuration;
342
343 if (diff) {
344 RebuildFilterList();
345 InvalidateCaches(static_cast<uint32_t>(diff));
346 }
347 }
348
GetNonSystemOverlayPaths() const349 std::set<std::string> AssetManager2::GetNonSystemOverlayPaths() const {
350 std::set<std::string> non_system_overlays;
351 for (const PackageGroup& package_group : package_groups_) {
352 bool found_system_package = false;
353 for (const ConfiguredPackage& package : package_group.packages_) {
354 if (package.loaded_package_->IsSystem()) {
355 found_system_package = true;
356 break;
357 }
358 }
359
360 if (!found_system_package) {
361 for (const ConfiguredOverlay& overlay : package_group.overlays_) {
362 non_system_overlays.insert(apk_assets_[overlay.cookie]->GetPath());
363 }
364 }
365 }
366
367 return non_system_overlays;
368 }
369
GetResourceConfigurations(bool exclude_system,bool exclude_mipmap) const370 std::set<ResTable_config> AssetManager2::GetResourceConfigurations(bool exclude_system,
371 bool exclude_mipmap) const {
372 ATRACE_NAME("AssetManager::GetResourceConfigurations");
373 const auto non_system_overlays =
374 (exclude_system) ? GetNonSystemOverlayPaths() : std::set<std::string>();
375
376 std::set<ResTable_config> configurations;
377 for (const PackageGroup& package_group : package_groups_) {
378 for (size_t i = 0; i < package_group.packages_.size(); i++) {
379 const ConfiguredPackage& package = package_group.packages_[i];
380 if (exclude_system && package.loaded_package_->IsSystem()) {
381 continue;
382 }
383
384 auto apk_assets = apk_assets_[package_group.cookies_[i]];
385 if (exclude_system && apk_assets->IsOverlay()
386 && non_system_overlays.find(apk_assets->GetPath()) == non_system_overlays.end()) {
387 // Exclude overlays that target system resources.
388 continue;
389 }
390
391 package.loaded_package_->CollectConfigurations(exclude_mipmap, &configurations);
392 }
393 }
394 return configurations;
395 }
396
GetResourceLocales(bool exclude_system,bool merge_equivalent_languages) const397 std::set<std::string> AssetManager2::GetResourceLocales(bool exclude_system,
398 bool merge_equivalent_languages) const {
399 ATRACE_NAME("AssetManager::GetResourceLocales");
400 std::set<std::string> locales;
401 const auto non_system_overlays =
402 (exclude_system) ? GetNonSystemOverlayPaths() : std::set<std::string>();
403
404 for (const PackageGroup& package_group : package_groups_) {
405 for (size_t i = 0; i < package_group.packages_.size(); i++) {
406 const ConfiguredPackage& package = package_group.packages_[i];
407 if (exclude_system && package.loaded_package_->IsSystem()) {
408 continue;
409 }
410
411 auto apk_assets = apk_assets_[package_group.cookies_[i]];
412 if (exclude_system && apk_assets->IsOverlay()
413 && non_system_overlays.find(apk_assets->GetPath()) == non_system_overlays.end()) {
414 // Exclude overlays that target system resources.
415 continue;
416 }
417
418 package.loaded_package_->CollectLocales(merge_equivalent_languages, &locales);
419 }
420 }
421 return locales;
422 }
423
Open(const std::string & filename,Asset::AccessMode mode) const424 std::unique_ptr<Asset> AssetManager2::Open(const std::string& filename,
425 Asset::AccessMode mode) const {
426 const std::string new_path = "assets/" + filename;
427 return OpenNonAsset(new_path, mode);
428 }
429
Open(const std::string & filename,ApkAssetsCookie cookie,Asset::AccessMode mode) const430 std::unique_ptr<Asset> AssetManager2::Open(const std::string& filename, ApkAssetsCookie cookie,
431 Asset::AccessMode mode) const {
432 const std::string new_path = "assets/" + filename;
433 return OpenNonAsset(new_path, cookie, mode);
434 }
435
OpenDir(const std::string & dirname) const436 std::unique_ptr<AssetDir> AssetManager2::OpenDir(const std::string& dirname) const {
437 ATRACE_NAME("AssetManager::OpenDir");
438
439 std::string full_path = "assets/" + dirname;
440 std::unique_ptr<SortedVector<AssetDir::FileInfo>> files =
441 util::make_unique<SortedVector<AssetDir::FileInfo>>();
442
443 // Start from the back.
444 for (auto iter = apk_assets_.rbegin(); iter != apk_assets_.rend(); ++iter) {
445 const ApkAssets* apk_assets = *iter;
446 if (apk_assets->IsOverlay()) {
447 continue;
448 }
449
450 auto func = [&](const StringPiece& name, FileType type) {
451 AssetDir::FileInfo info;
452 info.setFileName(String8(name.data(), name.size()));
453 info.setFileType(type);
454 info.setSourceName(String8(apk_assets->GetPath().c_str()));
455 files->add(info);
456 };
457
458 if (!apk_assets->GetAssetsProvider()->ForEachFile(full_path, func)) {
459 return {};
460 }
461 }
462
463 std::unique_ptr<AssetDir> asset_dir = util::make_unique<AssetDir>();
464 asset_dir->setFileList(files.release());
465 return asset_dir;
466 }
467
468 // Search in reverse because that's how we used to do it and we need to preserve behaviour.
469 // This is unfortunate, because ClassLoaders delegate to the parent first, so the order
470 // is inconsistent for split APKs.
OpenNonAsset(const std::string & filename,Asset::AccessMode mode,ApkAssetsCookie * out_cookie) const471 std::unique_ptr<Asset> AssetManager2::OpenNonAsset(const std::string& filename,
472 Asset::AccessMode mode,
473 ApkAssetsCookie* out_cookie) const {
474 for (int32_t i = apk_assets_.size() - 1; i >= 0; i--) {
475 // Prevent RRO from modifying assets and other entries accessed by file
476 // path. Explicitly asking for a path in a given package (denoted by a
477 // cookie) is still OK.
478 if (apk_assets_[i]->IsOverlay()) {
479 continue;
480 }
481
482 std::unique_ptr<Asset> asset = apk_assets_[i]->GetAssetsProvider()->Open(filename, mode);
483 if (asset) {
484 if (out_cookie != nullptr) {
485 *out_cookie = i;
486 }
487 return asset;
488 }
489 }
490
491 if (out_cookie != nullptr) {
492 *out_cookie = kInvalidCookie;
493 }
494 return {};
495 }
496
OpenNonAsset(const std::string & filename,ApkAssetsCookie cookie,Asset::AccessMode mode) const497 std::unique_ptr<Asset> AssetManager2::OpenNonAsset(const std::string& filename,
498 ApkAssetsCookie cookie,
499 Asset::AccessMode mode) const {
500 if (cookie < 0 || static_cast<size_t>(cookie) >= apk_assets_.size()) {
501 return {};
502 }
503 return apk_assets_[cookie]->GetAssetsProvider()->Open(filename, mode);
504 }
505
FindEntry(uint32_t resid,uint16_t density_override,bool,bool ignore_configuration,FindEntryResult * out_entry) const506 ApkAssetsCookie AssetManager2::FindEntry(uint32_t resid, uint16_t density_override,
507 bool /*stop_at_first_match*/,
508 bool ignore_configuration,
509 FindEntryResult* out_entry) const {
510 if (resource_resolution_logging_enabled_) {
511 // Clear the last logged resource resolution.
512 ResetResourceResolution();
513 last_resolution_.resid = resid;
514 }
515
516 // Might use this if density_override != 0.
517 ResTable_config density_override_config;
518
519 // Select our configuration or generate a density override configuration.
520 const ResTable_config* desired_config = &configuration_;
521 if (density_override != 0 && density_override != configuration_.density) {
522 density_override_config = configuration_;
523 density_override_config.density = density_override;
524 desired_config = &density_override_config;
525 }
526
527 // Retrieve the package group from the package id of the resource id.
528 if (!is_valid_resid(resid)) {
529 LOG(ERROR) << base::StringPrintf("Invalid ID 0x%08x.", resid);
530 return kInvalidCookie;
531 }
532
533 const uint32_t package_id = get_package_id(resid);
534 const uint8_t type_idx = get_type_id(resid) - 1;
535 const uint16_t entry_idx = get_entry_id(resid);
536 uint8_t package_idx = package_ids_[package_id];
537 if (package_idx == 0xff) {
538 ANDROID_LOG(ERROR) << base::StringPrintf("No package ID %02x found for ID 0x%08x.",
539 package_id, resid);
540 return kInvalidCookie;
541 }
542
543 const PackageGroup& package_group = package_groups_[package_idx];
544 ApkAssetsCookie cookie = FindEntryInternal(package_group, type_idx, entry_idx, *desired_config,
545 false /* stop_at_first_match */,
546 ignore_configuration, out_entry);
547 if (UNLIKELY(cookie == kInvalidCookie)) {
548 return kInvalidCookie;
549 }
550
551 if (!apk_assets_[cookie]->IsLoader()) {
552 for (const auto& id_map : package_group.overlays_) {
553 auto overlay_entry = id_map.overlay_res_maps_.Lookup(resid);
554 if (!overlay_entry) {
555 // No id map entry exists for this target resource.
556 continue;
557 }
558
559 if (overlay_entry.IsTableEntry()) {
560 // The target resource is overlaid by an inline value not represented by a resource.
561 out_entry->entry = overlay_entry.GetTableEntry();
562 out_entry->dynamic_ref_table = id_map.overlay_res_maps_.GetOverlayDynamicRefTable();
563 cookie = id_map.cookie;
564 continue;
565 }
566
567 FindEntryResult overlay_result;
568 ApkAssetsCookie overlay_cookie = FindEntry(overlay_entry.GetResourceId(), density_override,
569 false /* stop_at_first_match */,
570 ignore_configuration, &overlay_result);
571 if (UNLIKELY(overlay_cookie == kInvalidCookie)) {
572 continue;
573 }
574
575 if (!overlay_result.config.isBetterThan(out_entry->config, desired_config)
576 && overlay_result.config.compare(out_entry->config) != 0) {
577 // The configuration of the entry for the overlay must be equal to or better than the target
578 // configuration to be chosen as the better value.
579 continue;
580 }
581
582 cookie = overlay_cookie;
583 out_entry->entry = std::move(overlay_result.entry);
584 out_entry->config = overlay_result.config;
585 out_entry->dynamic_ref_table = id_map.overlay_res_maps_.GetOverlayDynamicRefTable();
586 if (resource_resolution_logging_enabled_) {
587 last_resolution_.steps.push_back(
588 Resolution::Step{Resolution::Step::Type::OVERLAID, overlay_result.config.toString(),
589 overlay_result.package_name});
590 }
591 }
592 }
593
594 if (resource_resolution_logging_enabled_) {
595 last_resolution_.cookie = cookie;
596 last_resolution_.type_string_ref = out_entry->type_string_ref;
597 last_resolution_.entry_string_ref = out_entry->entry_string_ref;
598 }
599
600 return cookie;
601 }
602
FindEntryInternal(const PackageGroup & package_group,uint8_t type_idx,uint16_t entry_idx,const ResTable_config & desired_config,bool,bool ignore_configuration,FindEntryResult * out_entry) const603 ApkAssetsCookie AssetManager2::FindEntryInternal(const PackageGroup& package_group,
604 uint8_t type_idx, uint16_t entry_idx,
605 const ResTable_config& desired_config,
606 bool /*stop_at_first_match*/,
607 bool ignore_configuration,
608 FindEntryResult* out_entry) const {
609 ApkAssetsCookie best_cookie = kInvalidCookie;
610 const LoadedPackage* best_package = nullptr;
611 const ResTable_type* best_type = nullptr;
612 const ResTable_config* best_config = nullptr;
613 ResTable_config best_config_copy;
614 uint32_t best_offset = 0u;
615 uint32_t type_flags = 0u;
616
617 Resolution::Step::Type resolution_type = Resolution::Step::Type::NO_ENTRY;
618 std::vector<Resolution::Step> resolution_steps;
619
620 // If desired_config is the same as the set configuration, then we can use our filtered list
621 // and we don't need to match the configurations, since they already matched.
622 const bool use_fast_path = !ignore_configuration && &desired_config == &configuration_;
623
624 const size_t package_count = package_group.packages_.size();
625 for (size_t pi = 0; pi < package_count; pi++) {
626 const ConfiguredPackage& loaded_package_impl = package_group.packages_[pi];
627 const LoadedPackage* loaded_package = loaded_package_impl.loaded_package_;
628 ApkAssetsCookie cookie = package_group.cookies_[pi];
629
630 // If the type IDs are offset in this package, we need to take that into account when searching
631 // for a type.
632 const TypeSpec* type_spec = loaded_package->GetTypeSpecByTypeIndex(type_idx);
633 if (UNLIKELY(type_spec == nullptr)) {
634 continue;
635 }
636
637 // If the package is an overlay or custom loader,
638 // then even configurations that are the same MUST be chosen.
639 const bool package_is_loader = loaded_package->IsCustomLoader();
640 type_flags |= type_spec->GetFlagsForEntryIndex(entry_idx);
641
642 if (use_fast_path) {
643 const FilteredConfigGroup& filtered_group = loaded_package_impl.filtered_configs_[type_idx];
644 const std::vector<ResTable_config>& candidate_configs = filtered_group.configurations;
645 const size_t type_count = candidate_configs.size();
646 for (uint32_t i = 0; i < type_count; i++) {
647 const ResTable_config& this_config = candidate_configs[i];
648
649 // We can skip calling ResTable_config::match() because we know that all candidate
650 // configurations that do NOT match have been filtered-out.
651 if (best_config == nullptr) {
652 resolution_type = Resolution::Step::Type::INITIAL;
653 } else if (this_config.isBetterThan(*best_config, &desired_config)) {
654 resolution_type = (package_is_loader) ? Resolution::Step::Type::BETTER_MATCH_LOADER
655 : Resolution::Step::Type::BETTER_MATCH;
656 } else if (package_is_loader && this_config.compare(*best_config) == 0) {
657 resolution_type = Resolution::Step::Type::OVERLAID_LOADER;
658 } else {
659 if (resource_resolution_logging_enabled_) {
660 resolution_type = (package_is_loader) ? Resolution::Step::Type::SKIPPED_LOADER
661 : Resolution::Step::Type::SKIPPED;
662 resolution_steps.push_back(Resolution::Step{resolution_type,
663 this_config.toString(),
664 &loaded_package->GetPackageName()});
665 }
666 continue;
667 }
668
669 // The configuration matches and is better than the previous selection.
670 // Find the entry value if it exists for this configuration.
671 const ResTable_type* type = filtered_group.types[i];
672 const uint32_t offset = LoadedPackage::GetEntryOffset(type, entry_idx);
673 if (offset == ResTable_type::NO_ENTRY) {
674 if (resource_resolution_logging_enabled_) {
675 if (package_is_loader) {
676 resolution_type = Resolution::Step::Type::NO_ENTRY_LOADER;
677 } else {
678 resolution_type = Resolution::Step::Type::NO_ENTRY;
679 }
680 resolution_steps.push_back(Resolution::Step{resolution_type,
681 this_config.toString(),
682 &loaded_package->GetPackageName()});
683 }
684 continue;
685 }
686
687 best_cookie = cookie;
688 best_package = loaded_package;
689 best_type = type;
690 best_config = &this_config;
691 best_offset = offset;
692
693 if (resource_resolution_logging_enabled_) {
694 last_resolution_.steps.push_back(Resolution::Step{resolution_type,
695 this_config.toString(),
696 &loaded_package->GetPackageName()});
697 }
698 }
699 } else {
700 // This is the slower path, which doesn't use the filtered list of configurations.
701 // Here we must read the ResTable_config from the mmapped APK, convert it to host endianness
702 // and fill in any new fields that did not exist when the APK was compiled.
703 // Furthermore when selecting configurations we can't just record the pointer to the
704 // ResTable_config, we must copy it.
705 const auto iter_end = type_spec->types + type_spec->type_count;
706 for (auto iter = type_spec->types; iter != iter_end; ++iter) {
707 ResTable_config this_config{};
708
709 if (!ignore_configuration) {
710 this_config.copyFromDtoH((*iter)->config);
711 if (!this_config.match(desired_config)) {
712 continue;
713 }
714
715 if (best_config == nullptr) {
716 resolution_type = Resolution::Step::Type::INITIAL;
717 } else if (this_config.isBetterThan(*best_config, &desired_config)) {
718 resolution_type = (package_is_loader) ? Resolution::Step::Type::BETTER_MATCH_LOADER
719 : Resolution::Step::Type::BETTER_MATCH;
720 } else if (package_is_loader && this_config.compare(*best_config) == 0) {
721 resolution_type = Resolution::Step::Type::OVERLAID_LOADER;
722 } else {
723 continue;
724 }
725 }
726
727 // The configuration matches and is better than the previous selection.
728 // Find the entry value if it exists for this configuration.
729 const uint32_t offset = LoadedPackage::GetEntryOffset(*iter, entry_idx);
730 if (offset == ResTable_type::NO_ENTRY) {
731 continue;
732 }
733
734 best_cookie = cookie;
735 best_package = loaded_package;
736 best_type = *iter;
737 best_config_copy = this_config;
738 best_config = &best_config_copy;
739 best_offset = offset;
740
741 if (ignore_configuration) {
742 // Any configuration will suffice, so break.
743 break;
744 }
745
746 if (resource_resolution_logging_enabled_) {
747 last_resolution_.steps.push_back(Resolution::Step{resolution_type,
748 this_config.toString(),
749 &loaded_package->GetPackageName()});
750 }
751 }
752 }
753 }
754
755 if (UNLIKELY(best_cookie == kInvalidCookie)) {
756 return kInvalidCookie;
757 }
758
759 const ResTable_entry* best_entry = LoadedPackage::GetEntryFromOffset(best_type, best_offset);
760 if (UNLIKELY(best_entry == nullptr)) {
761 return kInvalidCookie;
762 }
763
764 out_entry->entry = ResTable_entry_handle::unmanaged(best_entry);
765 out_entry->config = *best_config;
766 out_entry->type_flags = type_flags;
767 out_entry->package_name = &best_package->GetPackageName();
768 out_entry->type_string_ref = StringPoolRef(best_package->GetTypeStringPool(), best_type->id - 1);
769 out_entry->entry_string_ref =
770 StringPoolRef(best_package->GetKeyStringPool(), best_entry->key.index);
771 out_entry->dynamic_ref_table = package_group.dynamic_ref_table.get();
772
773 return best_cookie;
774 }
775
ResetResourceResolution() const776 void AssetManager2::ResetResourceResolution() const {
777 last_resolution_.cookie = kInvalidCookie;
778 last_resolution_.resid = 0;
779 last_resolution_.steps.clear();
780 last_resolution_.type_string_ref = StringPoolRef();
781 last_resolution_.entry_string_ref = StringPoolRef();
782 }
783
SetResourceResolutionLoggingEnabled(bool enabled)784 void AssetManager2::SetResourceResolutionLoggingEnabled(bool enabled) {
785 resource_resolution_logging_enabled_ = enabled;
786 if (!enabled) {
787 ResetResourceResolution();
788 }
789 }
790
GetLastResourceResolution() const791 std::string AssetManager2::GetLastResourceResolution() const {
792 if (!resource_resolution_logging_enabled_) {
793 LOG(ERROR) << "Must enable resource resolution logging before getting path.";
794 return std::string();
795 }
796
797 auto cookie = last_resolution_.cookie;
798 if (cookie == kInvalidCookie) {
799 LOG(ERROR) << "AssetManager hasn't resolved a resource to read resolution path.";
800 return std::string();
801 }
802
803 uint32_t resid = last_resolution_.resid;
804 std::vector<Resolution::Step>& steps = last_resolution_.steps;
805
806 ResourceName resource_name;
807 std::string resource_name_string;
808
809 const LoadedPackage* package =
810 apk_assets_[cookie]->GetLoadedArsc()->GetPackageById(get_package_id(resid));
811
812 if (package != nullptr) {
813 ToResourceName(last_resolution_.type_string_ref,
814 last_resolution_.entry_string_ref,
815 package->GetPackageName(),
816 &resource_name);
817 resource_name_string = ToFormattedResourceString(&resource_name);
818 }
819
820 std::stringstream log_stream;
821 log_stream << base::StringPrintf("Resolution for 0x%08x ", resid)
822 << resource_name_string
823 << "\n\tFor config -"
824 << configuration_.toString();
825
826 std::string prefix;
827 for (Resolution::Step step : steps) {
828 switch (step.type) {
829 case Resolution::Step::Type::INITIAL:
830 prefix = "Found initial";
831 break;
832 case Resolution::Step::Type::BETTER_MATCH:
833 prefix = "Found better";
834 break;
835 case Resolution::Step::Type::BETTER_MATCH_LOADER:
836 prefix = "Found better in loader";
837 break;
838 case Resolution::Step::Type::OVERLAID:
839 prefix = "Overlaid";
840 break;
841 case Resolution::Step::Type::OVERLAID_LOADER:
842 prefix = "Overlaid by loader";
843 break;
844 case Resolution::Step::Type::SKIPPED:
845 prefix = "Skipped";
846 break;
847 case Resolution::Step::Type::SKIPPED_LOADER:
848 prefix = "Skipped loader";
849 break;
850 case Resolution::Step::Type::NO_ENTRY:
851 prefix = "No entry";
852 break;
853 case Resolution::Step::Type::NO_ENTRY_LOADER:
854 prefix = "No entry for loader";
855 break;
856 }
857
858 if (!prefix.empty()) {
859 log_stream << "\n\t" << prefix << ": " << *step.package_name;
860
861 if (!step.config_name.isEmpty()) {
862 log_stream << " -" << step.config_name;
863 }
864 }
865 }
866
867 return log_stream.str();
868 }
869
GetResourceName(uint32_t resid,ResourceName * out_name) const870 bool AssetManager2::GetResourceName(uint32_t resid, ResourceName* out_name) const {
871 FindEntryResult entry;
872 ApkAssetsCookie cookie = FindEntry(resid, 0u /* density_override */,
873 true /* stop_at_first_match */,
874 true /* ignore_configuration */, &entry);
875 if (cookie == kInvalidCookie) {
876 return false;
877 }
878
879 return ToResourceName(entry.type_string_ref,
880 entry.entry_string_ref,
881 *entry.package_name,
882 out_name);
883 }
884
GetResourceFlags(uint32_t resid,uint32_t * out_flags) const885 bool AssetManager2::GetResourceFlags(uint32_t resid, uint32_t* out_flags) const {
886 FindEntryResult entry;
887 ApkAssetsCookie cookie = FindEntry(resid, 0u /* density_override */,
888 false /* stop_at_first_match */,
889 true /* ignore_configuration */, &entry);
890 if (cookie != kInvalidCookie) {
891 *out_flags = entry.type_flags;
892 return true;
893 }
894 return false;
895 }
896
GetResource(uint32_t resid,bool may_be_bag,uint16_t density_override,Res_value * out_value,ResTable_config * out_selected_config,uint32_t * out_flags) const897 ApkAssetsCookie AssetManager2::GetResource(uint32_t resid, bool may_be_bag,
898 uint16_t density_override, Res_value* out_value,
899 ResTable_config* out_selected_config,
900 uint32_t* out_flags) const {
901 FindEntryResult entry;
902 ApkAssetsCookie cookie = FindEntry(resid, density_override, false /* stop_at_first_match */,
903 false /* ignore_configuration */, &entry);
904 if (cookie == kInvalidCookie) {
905 return kInvalidCookie;
906 }
907
908 const ResTable_entry* table_entry = *entry.entry;
909 if (dtohs(table_entry->flags) & ResTable_entry::FLAG_COMPLEX) {
910 if (!may_be_bag) {
911 LOG(ERROR) << base::StringPrintf("Resource %08x is a complex map type.", resid);
912 return kInvalidCookie;
913 }
914
915 // Create a reference since we can't represent this complex type as a Res_value.
916 out_value->dataType = Res_value::TYPE_REFERENCE;
917 out_value->data = resid;
918 *out_selected_config = entry.config;
919 *out_flags = entry.type_flags;
920 return cookie;
921 }
922
923 const Res_value* device_value = reinterpret_cast<const Res_value*>(
924 reinterpret_cast<const uint8_t*>(table_entry) + dtohs(table_entry->size));
925 out_value->copyFrom_dtoh(*device_value);
926
927 // Convert the package ID to the runtime assigned package ID.
928 entry.dynamic_ref_table->lookupResourceValue(out_value);
929
930 *out_selected_config = entry.config;
931 *out_flags = entry.type_flags;
932 return cookie;
933 }
934
ResolveReference(ApkAssetsCookie cookie,Res_value * in_out_value,ResTable_config * in_out_selected_config,uint32_t * in_out_flags,uint32_t * out_last_reference) const935 ApkAssetsCookie AssetManager2::ResolveReference(ApkAssetsCookie cookie, Res_value* in_out_value,
936 ResTable_config* in_out_selected_config,
937 uint32_t* in_out_flags,
938 uint32_t* out_last_reference) const {
939 constexpr const int kMaxIterations = 20;
940
941 for (size_t iteration = 0u; in_out_value->dataType == Res_value::TYPE_REFERENCE &&
942 in_out_value->data != 0u && iteration < kMaxIterations;
943 iteration++) {
944 *out_last_reference = in_out_value->data;
945 uint32_t new_flags = 0u;
946 cookie = GetResource(in_out_value->data, true /*may_be_bag*/, 0u /*density_override*/,
947 in_out_value, in_out_selected_config, &new_flags);
948 if (cookie == kInvalidCookie) {
949 return kInvalidCookie;
950 }
951 if (in_out_flags != nullptr) {
952 *in_out_flags |= new_flags;
953 }
954 if (*out_last_reference == in_out_value->data) {
955 // This reference can't be resolved, so exit now and let the caller deal with it.
956 return cookie;
957 }
958 }
959 return cookie;
960 }
961
GetBagResIdStack(uint32_t resid)962 const std::vector<uint32_t> AssetManager2::GetBagResIdStack(uint32_t resid) {
963 auto cached_iter = cached_bag_resid_stacks_.find(resid);
964 if (cached_iter != cached_bag_resid_stacks_.end()) {
965 return cached_iter->second;
966 } else {
967 auto found_resids = std::vector<uint32_t>();
968 GetBag(resid, found_resids);
969 // Cache style stacks if they are not already cached.
970 cached_bag_resid_stacks_[resid] = found_resids;
971 return found_resids;
972 }
973 }
974
GetBag(uint32_t resid)975 const ResolvedBag* AssetManager2::GetBag(uint32_t resid) {
976 auto found_resids = std::vector<uint32_t>();
977 auto bag = GetBag(resid, found_resids);
978
979 // Cache style stacks if they are not already cached.
980 auto cached_iter = cached_bag_resid_stacks_.find(resid);
981 if (cached_iter == cached_bag_resid_stacks_.end()) {
982 cached_bag_resid_stacks_[resid] = found_resids;
983 }
984 return bag;
985 }
986
compare_bag_entries(const ResolvedBag::Entry & entry1,const ResolvedBag::Entry & entry2)987 static bool compare_bag_entries(const ResolvedBag::Entry& entry1,
988 const ResolvedBag::Entry& entry2) {
989 return entry1.key < entry2.key;
990 }
991
GetBag(uint32_t resid,std::vector<uint32_t> & child_resids)992 const ResolvedBag* AssetManager2::GetBag(uint32_t resid, std::vector<uint32_t>& child_resids) {
993 auto cached_iter = cached_bags_.find(resid);
994 if (cached_iter != cached_bags_.end()) {
995 return cached_iter->second.get();
996 }
997
998 FindEntryResult entry;
999 ApkAssetsCookie cookie = FindEntry(resid, 0u /* density_override */,
1000 false /* stop_at_first_match */,
1001 false /* ignore_configuration */,
1002 &entry);
1003 if (cookie == kInvalidCookie) {
1004 return nullptr;
1005 }
1006
1007 // Check that the size of the entry header is at least as big as
1008 // the desired ResTable_map_entry. Also verify that the entry
1009 // was intended to be a map.
1010 const ResTable_entry* table_entry = *entry.entry;
1011 if (dtohs(table_entry->size) < sizeof(ResTable_map_entry) ||
1012 (dtohs(table_entry->flags) & ResTable_entry::FLAG_COMPLEX) == 0) {
1013 // Not a bag, nothing to do.
1014 return nullptr;
1015 }
1016
1017 const ResTable_map_entry* map = reinterpret_cast<const ResTable_map_entry*>(table_entry);
1018 const ResTable_map* map_entry =
1019 reinterpret_cast<const ResTable_map*>(reinterpret_cast<const uint8_t*>(map) + map->size);
1020 const ResTable_map* const map_entry_end = map_entry + dtohl(map->count);
1021
1022 // Keep track of ids that have already been seen to prevent infinite loops caused by circular
1023 // dependencies between bags
1024 child_resids.push_back(resid);
1025
1026 uint32_t parent_resid = dtohl(map->parent.ident);
1027 if (parent_resid == 0U || std::find(child_resids.begin(), child_resids.end(), parent_resid)
1028 != child_resids.end()) {
1029 // There is no parent or a circular dependency exist, meaning there is nothing to inherit and
1030 // we can do a simple copy of the entries in the map.
1031 const size_t entry_count = map_entry_end - map_entry;
1032 util::unique_cptr<ResolvedBag> new_bag{reinterpret_cast<ResolvedBag*>(
1033 malloc(sizeof(ResolvedBag) + (entry_count * sizeof(ResolvedBag::Entry))))};
1034
1035 bool sort_entries = false;
1036 ResolvedBag::Entry* new_entry = new_bag->entries;
1037 for (; map_entry != map_entry_end; ++map_entry) {
1038 uint32_t new_key = dtohl(map_entry->name.ident);
1039 if (!is_internal_resid(new_key)) {
1040 // Attributes, arrays, etc don't have a resource id as the name. They specify
1041 // other data, which would be wrong to change via a lookup.
1042 if (entry.dynamic_ref_table->lookupResourceId(&new_key) != NO_ERROR) {
1043 LOG(ERROR) << base::StringPrintf("Failed to resolve key 0x%08x in bag 0x%08x.", new_key,
1044 resid);
1045 return nullptr;
1046 }
1047 }
1048 new_entry->cookie = cookie;
1049 new_entry->key = new_key;
1050 new_entry->key_pool = nullptr;
1051 new_entry->type_pool = nullptr;
1052 new_entry->style = resid;
1053 new_entry->value.copyFrom_dtoh(map_entry->value);
1054 status_t err = entry.dynamic_ref_table->lookupResourceValue(&new_entry->value);
1055 if (err != NO_ERROR) {
1056 LOG(ERROR) << base::StringPrintf(
1057 "Failed to resolve value t=0x%02x d=0x%08x for key 0x%08x.", new_entry->value.dataType,
1058 new_entry->value.data, new_key);
1059 return nullptr;
1060 }
1061 sort_entries = sort_entries ||
1062 (new_entry != new_bag->entries && (new_entry->key < (new_entry - 1U)->key));
1063 ++new_entry;
1064 }
1065
1066 if (sort_entries) {
1067 std::sort(new_bag->entries, new_bag->entries + entry_count, compare_bag_entries);
1068 }
1069
1070 new_bag->type_spec_flags = entry.type_flags;
1071 new_bag->entry_count = static_cast<uint32_t>(entry_count);
1072 ResolvedBag* result = new_bag.get();
1073 cached_bags_[resid] = std::move(new_bag);
1074 return result;
1075 }
1076
1077 // In case the parent is a dynamic reference, resolve it.
1078 entry.dynamic_ref_table->lookupResourceId(&parent_resid);
1079
1080 // Get the parent and do a merge of the keys.
1081 const ResolvedBag* parent_bag = GetBag(parent_resid, child_resids);
1082 if (parent_bag == nullptr) {
1083 // Failed to get the parent that should exist.
1084 LOG(ERROR) << base::StringPrintf("Failed to find parent 0x%08x of bag 0x%08x.", parent_resid,
1085 resid);
1086 return nullptr;
1087 }
1088
1089 // Create the max possible entries we can make. Once we construct the bag,
1090 // we will realloc to fit to size.
1091 const size_t max_count = parent_bag->entry_count + dtohl(map->count);
1092 util::unique_cptr<ResolvedBag> new_bag{reinterpret_cast<ResolvedBag*>(
1093 malloc(sizeof(ResolvedBag) + (max_count * sizeof(ResolvedBag::Entry))))};
1094 ResolvedBag::Entry* new_entry = new_bag->entries;
1095
1096 const ResolvedBag::Entry* parent_entry = parent_bag->entries;
1097 const ResolvedBag::Entry* const parent_entry_end = parent_entry + parent_bag->entry_count;
1098
1099 // The keys are expected to be in sorted order. Merge the two bags.
1100 bool sort_entries = false;
1101 while (map_entry != map_entry_end && parent_entry != parent_entry_end) {
1102 uint32_t child_key = dtohl(map_entry->name.ident);
1103 if (!is_internal_resid(child_key)) {
1104 if (entry.dynamic_ref_table->lookupResourceId(&child_key) != NO_ERROR) {
1105 LOG(ERROR) << base::StringPrintf("Failed to resolve key 0x%08x in bag 0x%08x.", child_key,
1106 resid);
1107 return nullptr;
1108 }
1109 }
1110
1111 if (child_key <= parent_entry->key) {
1112 // Use the child key if it comes before the parent
1113 // or is equal to the parent (overrides).
1114 new_entry->cookie = cookie;
1115 new_entry->key = child_key;
1116 new_entry->key_pool = nullptr;
1117 new_entry->type_pool = nullptr;
1118 new_entry->value.copyFrom_dtoh(map_entry->value);
1119 new_entry->style = resid;
1120 status_t err = entry.dynamic_ref_table->lookupResourceValue(&new_entry->value);
1121 if (err != NO_ERROR) {
1122 LOG(ERROR) << base::StringPrintf(
1123 "Failed to resolve value t=0x%02x d=0x%08x for key 0x%08x.", new_entry->value.dataType,
1124 new_entry->value.data, child_key);
1125 return nullptr;
1126 }
1127 ++map_entry;
1128 } else {
1129 // Take the parent entry as-is.
1130 memcpy(new_entry, parent_entry, sizeof(*new_entry));
1131 }
1132
1133 sort_entries = sort_entries ||
1134 (new_entry != new_bag->entries && (new_entry->key < (new_entry - 1U)->key));
1135 if (child_key >= parent_entry->key) {
1136 // Move to the next parent entry if we used it or it was overridden.
1137 ++parent_entry;
1138 }
1139 // Increment to the next entry to fill.
1140 ++new_entry;
1141 }
1142
1143 // Finish the child entries if they exist.
1144 while (map_entry != map_entry_end) {
1145 uint32_t new_key = dtohl(map_entry->name.ident);
1146 if (!is_internal_resid(new_key)) {
1147 if (entry.dynamic_ref_table->lookupResourceId(&new_key) != NO_ERROR) {
1148 LOG(ERROR) << base::StringPrintf("Failed to resolve key 0x%08x in bag 0x%08x.", new_key,
1149 resid);
1150 return nullptr;
1151 }
1152 }
1153 new_entry->cookie = cookie;
1154 new_entry->key = new_key;
1155 new_entry->key_pool = nullptr;
1156 new_entry->type_pool = nullptr;
1157 new_entry->value.copyFrom_dtoh(map_entry->value);
1158 new_entry->style = resid;
1159 status_t err = entry.dynamic_ref_table->lookupResourceValue(&new_entry->value);
1160 if (err != NO_ERROR) {
1161 LOG(ERROR) << base::StringPrintf("Failed to resolve value t=0x%02x d=0x%08x for key 0x%08x.",
1162 new_entry->value.dataType, new_entry->value.data, new_key);
1163 return nullptr;
1164 }
1165 sort_entries = sort_entries ||
1166 (new_entry != new_bag->entries && (new_entry->key < (new_entry - 1U)->key));
1167 ++map_entry;
1168 ++new_entry;
1169 }
1170
1171 // Finish the parent entries if they exist.
1172 if (parent_entry != parent_entry_end) {
1173 // Take the rest of the parent entries as-is.
1174 const size_t num_entries_to_copy = parent_entry_end - parent_entry;
1175 memcpy(new_entry, parent_entry, num_entries_to_copy * sizeof(*new_entry));
1176 new_entry += num_entries_to_copy;
1177 }
1178
1179 // Resize the resulting array to fit.
1180 const size_t actual_count = new_entry - new_bag->entries;
1181 if (actual_count != max_count) {
1182 new_bag.reset(reinterpret_cast<ResolvedBag*>(realloc(
1183 new_bag.release(), sizeof(ResolvedBag) + (actual_count * sizeof(ResolvedBag::Entry)))));
1184 }
1185
1186 if (sort_entries) {
1187 std::sort(new_bag->entries, new_bag->entries + actual_count, compare_bag_entries);
1188 }
1189
1190 // Combine flags from the parent and our own bag.
1191 new_bag->type_spec_flags = entry.type_flags | parent_bag->type_spec_flags;
1192 new_bag->entry_count = static_cast<uint32_t>(actual_count);
1193 ResolvedBag* result = new_bag.get();
1194 cached_bags_[resid] = std::move(new_bag);
1195 return result;
1196 }
1197
Utf8ToUtf16(const StringPiece & str,std::u16string * out)1198 static bool Utf8ToUtf16(const StringPiece& str, std::u16string* out) {
1199 ssize_t len =
1200 utf8_to_utf16_length(reinterpret_cast<const uint8_t*>(str.data()), str.size(), false);
1201 if (len < 0) {
1202 return false;
1203 }
1204 out->resize(static_cast<size_t>(len));
1205 utf8_to_utf16(reinterpret_cast<const uint8_t*>(str.data()), str.size(), &*out->begin(),
1206 static_cast<size_t>(len + 1));
1207 return true;
1208 }
1209
GetResourceId(const std::string & resource_name,const std::string & fallback_type,const std::string & fallback_package) const1210 uint32_t AssetManager2::GetResourceId(const std::string& resource_name,
1211 const std::string& fallback_type,
1212 const std::string& fallback_package) const {
1213 StringPiece package_name, type, entry;
1214 if (!ExtractResourceName(resource_name, &package_name, &type, &entry)) {
1215 return 0u;
1216 }
1217
1218 if (entry.empty()) {
1219 return 0u;
1220 }
1221
1222 if (package_name.empty()) {
1223 package_name = fallback_package;
1224 }
1225
1226 if (type.empty()) {
1227 type = fallback_type;
1228 }
1229
1230 std::u16string type16;
1231 if (!Utf8ToUtf16(type, &type16)) {
1232 return 0u;
1233 }
1234
1235 std::u16string entry16;
1236 if (!Utf8ToUtf16(entry, &entry16)) {
1237 return 0u;
1238 }
1239
1240 const StringPiece16 kAttr16 = u"attr";
1241 const static std::u16string kAttrPrivate16 = u"^attr-private";
1242
1243 for (const PackageGroup& package_group : package_groups_) {
1244 for (const ConfiguredPackage& package_impl : package_group.packages_) {
1245 const LoadedPackage* package = package_impl.loaded_package_;
1246 if (package_name != package->GetPackageName()) {
1247 // All packages in the same group are expected to have the same package name.
1248 break;
1249 }
1250
1251 uint32_t resid = package->FindEntryByName(type16, entry16);
1252 if (resid == 0u && kAttr16 == type16) {
1253 // Private attributes in libraries (such as the framework) are sometimes encoded
1254 // under the type '^attr-private' in order to leave the ID space of public 'attr'
1255 // free for future additions. Check '^attr-private' for the same name.
1256 resid = package->FindEntryByName(kAttrPrivate16, entry16);
1257 }
1258
1259 if (resid != 0u) {
1260 return fix_package_id(resid, package_group.dynamic_ref_table->mAssignedPackageId);
1261 }
1262 }
1263 }
1264 return 0u;
1265 }
1266
RebuildFilterList(bool filter_incompatible_configs)1267 void AssetManager2::RebuildFilterList(bool filter_incompatible_configs) {
1268 for (PackageGroup& group : package_groups_) {
1269 for (ConfiguredPackage& impl : group.packages_) {
1270 // Destroy it.
1271 impl.filtered_configs_.~ByteBucketArray();
1272
1273 // Re-create it.
1274 new (&impl.filtered_configs_) ByteBucketArray<FilteredConfigGroup>();
1275
1276 // Create the filters here.
1277 impl.loaded_package_->ForEachTypeSpec([&](const TypeSpec* spec, uint8_t type_index) {
1278 FilteredConfigGroup& group = impl.filtered_configs_.editItemAt(type_index);
1279 const auto iter_end = spec->types + spec->type_count;
1280 for (auto iter = spec->types; iter != iter_end; ++iter) {
1281 ResTable_config this_config;
1282 this_config.copyFromDtoH((*iter)->config);
1283 if (!filter_incompatible_configs || this_config.match(configuration_)) {
1284 group.configurations.push_back(this_config);
1285 group.types.push_back(*iter);
1286 }
1287 }
1288 });
1289 }
1290 }
1291 }
1292
InvalidateCaches(uint32_t diff)1293 void AssetManager2::InvalidateCaches(uint32_t diff) {
1294 cached_bag_resid_stacks_.clear();
1295
1296 if (diff == 0xffffffffu) {
1297 // Everything must go.
1298 cached_bags_.clear();
1299 return;
1300 }
1301
1302 // Be more conservative with what gets purged. Only if the bag has other possible
1303 // variations with respect to what changed (diff) should we remove it.
1304 for (auto iter = cached_bags_.cbegin(); iter != cached_bags_.cend();) {
1305 if (diff & iter->second->type_spec_flags) {
1306 iter = cached_bags_.erase(iter);
1307 } else {
1308 ++iter;
1309 }
1310 }
1311 }
1312
GetAssignedPackageId(const LoadedPackage * package) const1313 uint8_t AssetManager2::GetAssignedPackageId(const LoadedPackage* package) const {
1314 for (auto& package_group : package_groups_) {
1315 for (auto& package2 : package_group.packages_) {
1316 if (package2.loaded_package_ == package) {
1317 return package_group.dynamic_ref_table->mAssignedPackageId;
1318 }
1319 }
1320 }
1321 return 0;
1322 }
1323
NewTheme()1324 std::unique_ptr<Theme> AssetManager2::NewTheme() {
1325 return std::unique_ptr<Theme>(new Theme(this));
1326 }
1327
Theme(AssetManager2 * asset_manager)1328 Theme::Theme(AssetManager2* asset_manager) : asset_manager_(asset_manager) {
1329 }
1330
1331 Theme::~Theme() = default;
1332
1333 namespace {
1334
1335 struct ThemeEntry {
1336 ApkAssetsCookie cookie;
1337 uint32_t type_spec_flags;
1338 Res_value value;
1339 };
1340
1341 struct ThemeType {
1342 int entry_count;
1343 ThemeEntry entries[0];
1344 };
1345
1346 constexpr size_t kTypeCount = std::numeric_limits<uint8_t>::max() + 1;
1347
1348 } // namespace
1349
1350 struct Theme::Package {
1351 // Each element of Type will be a dynamically sized object
1352 // allocated to have the entries stored contiguously with the Type.
1353 std::array<util::unique_cptr<ThemeType>, kTypeCount> types;
1354 };
1355
ApplyStyle(uint32_t resid,bool force)1356 bool Theme::ApplyStyle(uint32_t resid, bool force) {
1357 ATRACE_NAME("Theme::ApplyStyle");
1358
1359 const ResolvedBag* bag = asset_manager_->GetBag(resid);
1360 if (bag == nullptr) {
1361 return false;
1362 }
1363
1364 // Merge the flags from this style.
1365 type_spec_flags_ |= bag->type_spec_flags;
1366
1367 int last_type_idx = -1;
1368 int last_package_idx = -1;
1369 Package* last_package = nullptr;
1370 ThemeType* last_type = nullptr;
1371
1372 // Iterate backwards, because each bag is sorted in ascending key ID order, meaning we will only
1373 // need to perform one resize per type.
1374 using reverse_bag_iterator = std::reverse_iterator<const ResolvedBag::Entry*>;
1375 const auto bag_iter_end = reverse_bag_iterator(begin(bag));
1376 for (auto bag_iter = reverse_bag_iterator(end(bag)); bag_iter != bag_iter_end; ++bag_iter) {
1377 const uint32_t attr_resid = bag_iter->key;
1378
1379 // If the resource ID passed in is not a style, the key can be some other identifier that is not
1380 // a resource ID. We should fail fast instead of operating with strange resource IDs.
1381 if (!is_valid_resid(attr_resid)) {
1382 return false;
1383 }
1384
1385 // We don't use the 0-based index for the type so that we can avoid doing ID validation
1386 // upon lookup. Instead, we keep space for the type ID 0 in our data structures. Since
1387 // the construction of this type is guarded with a resource ID check, it will never be
1388 // populated, and querying type ID 0 will always fail.
1389 const int package_idx = get_package_id(attr_resid);
1390 const int type_idx = get_type_id(attr_resid);
1391 const int entry_idx = get_entry_id(attr_resid);
1392
1393 if (last_package_idx != package_idx) {
1394 std::unique_ptr<Package>& package = packages_[package_idx];
1395 if (package == nullptr) {
1396 package.reset(new Package());
1397 }
1398 last_package_idx = package_idx;
1399 last_package = package.get();
1400 last_type_idx = -1;
1401 }
1402
1403 if (last_type_idx != type_idx) {
1404 util::unique_cptr<ThemeType>& type = last_package->types[type_idx];
1405 if (type == nullptr) {
1406 // Allocate enough memory to contain this entry_idx. Since we're iterating in reverse over
1407 // a sorted list of attributes, this shouldn't be resized again during this method call.
1408 type.reset(reinterpret_cast<ThemeType*>(
1409 calloc(sizeof(ThemeType) + (entry_idx + 1) * sizeof(ThemeEntry), 1)));
1410 type->entry_count = entry_idx + 1;
1411 } else if (entry_idx >= type->entry_count) {
1412 // Reallocate the memory to contain this entry_idx. Since we're iterating in reverse over
1413 // a sorted list of attributes, this shouldn't be resized again during this method call.
1414 const int new_count = entry_idx + 1;
1415 type.reset(reinterpret_cast<ThemeType*>(
1416 realloc(type.release(), sizeof(ThemeType) + (new_count * sizeof(ThemeEntry)))));
1417
1418 // Clear out the newly allocated space (which isn't zeroed).
1419 memset(type->entries + type->entry_count, 0,
1420 (new_count - type->entry_count) * sizeof(ThemeEntry));
1421 type->entry_count = new_count;
1422 }
1423 last_type_idx = type_idx;
1424 last_type = type.get();
1425 }
1426
1427 ThemeEntry& entry = last_type->entries[entry_idx];
1428 if (force || (entry.value.dataType == Res_value::TYPE_NULL &&
1429 entry.value.data != Res_value::DATA_NULL_EMPTY)) {
1430 entry.cookie = bag_iter->cookie;
1431 entry.type_spec_flags |= bag->type_spec_flags;
1432 entry.value = bag_iter->value;
1433 }
1434 }
1435 return true;
1436 }
1437
GetAttribute(uint32_t resid,Res_value * out_value,uint32_t * out_flags) const1438 ApkAssetsCookie Theme::GetAttribute(uint32_t resid, Res_value* out_value,
1439 uint32_t* out_flags) const {
1440 int cnt = 20;
1441
1442 uint32_t type_spec_flags = 0u;
1443
1444 do {
1445 const int package_idx = get_package_id(resid);
1446 const Package* package = packages_[package_idx].get();
1447 if (package != nullptr) {
1448 // The themes are constructed with a 1-based type ID, so no need to decrement here.
1449 const int type_idx = get_type_id(resid);
1450 const ThemeType* type = package->types[type_idx].get();
1451 if (type != nullptr) {
1452 const int entry_idx = get_entry_id(resid);
1453 if (entry_idx < type->entry_count) {
1454 const ThemeEntry& entry = type->entries[entry_idx];
1455 type_spec_flags |= entry.type_spec_flags;
1456
1457 if (entry.value.dataType == Res_value::TYPE_ATTRIBUTE) {
1458 if (cnt > 0) {
1459 cnt--;
1460 resid = entry.value.data;
1461 continue;
1462 }
1463 return kInvalidCookie;
1464 }
1465
1466 // @null is different than @empty.
1467 if (entry.value.dataType == Res_value::TYPE_NULL &&
1468 entry.value.data != Res_value::DATA_NULL_EMPTY) {
1469 return kInvalidCookie;
1470 }
1471
1472 *out_value = entry.value;
1473 *out_flags = type_spec_flags;
1474 return entry.cookie;
1475 }
1476 }
1477 }
1478 break;
1479 } while (true);
1480 return kInvalidCookie;
1481 }
1482
ResolveAttributeReference(ApkAssetsCookie cookie,Res_value * in_out_value,ResTable_config * in_out_selected_config,uint32_t * in_out_type_spec_flags,uint32_t * out_last_ref) const1483 ApkAssetsCookie Theme::ResolveAttributeReference(ApkAssetsCookie cookie, Res_value* in_out_value,
1484 ResTable_config* in_out_selected_config,
1485 uint32_t* in_out_type_spec_flags,
1486 uint32_t* out_last_ref) const {
1487 if (in_out_value->dataType == Res_value::TYPE_ATTRIBUTE) {
1488 uint32_t new_flags;
1489 cookie = GetAttribute(in_out_value->data, in_out_value, &new_flags);
1490 if (cookie == kInvalidCookie) {
1491 return kInvalidCookie;
1492 }
1493
1494 if (in_out_type_spec_flags != nullptr) {
1495 *in_out_type_spec_flags |= new_flags;
1496 }
1497 }
1498 return asset_manager_->ResolveReference(cookie, in_out_value, in_out_selected_config,
1499 in_out_type_spec_flags, out_last_ref);
1500 }
1501
Clear()1502 void Theme::Clear() {
1503 type_spec_flags_ = 0u;
1504 for (std::unique_ptr<Package>& package : packages_) {
1505 package.reset();
1506 }
1507 }
1508
SetTo(const Theme & o)1509 void Theme::SetTo(const Theme& o) {
1510 if (this == &o) {
1511 return;
1512 }
1513
1514 type_spec_flags_ = o.type_spec_flags_;
1515
1516 if (asset_manager_ == o.asset_manager_) {
1517 // The theme comes from the same asset manager so all theme data can be copied exactly
1518 for (size_t p = 0; p < packages_.size(); p++) {
1519 const Package *package = o.packages_[p].get();
1520 if (package == nullptr) {
1521 // The other theme doesn't have this package, clear ours.
1522 packages_[p].reset();
1523 continue;
1524 }
1525
1526 if (packages_[p] == nullptr) {
1527 // The other theme has this package, but we don't. Make one.
1528 packages_[p].reset(new Package());
1529 }
1530
1531 for (size_t t = 0; t < package->types.size(); t++) {
1532 const ThemeType *type = package->types[t].get();
1533 if (type == nullptr) {
1534 // The other theme doesn't have this type, clear ours.
1535 packages_[p]->types[t].reset();
1536 continue;
1537 }
1538
1539 // Create a new type and update it to theirs.
1540 const size_t type_alloc_size = sizeof(ThemeType) + (type->entry_count * sizeof(ThemeEntry));
1541 void *copied_data = malloc(type_alloc_size);
1542 memcpy(copied_data, type, type_alloc_size);
1543 packages_[p]->types[t].reset(reinterpret_cast<ThemeType *>(copied_data));
1544 }
1545 }
1546 } else {
1547 std::map<ApkAssetsCookie, ApkAssetsCookie> src_to_dest_asset_cookies;
1548 typedef std::map<int, int> SourceToDestinationRuntimePackageMap;
1549 std::map<ApkAssetsCookie, SourceToDestinationRuntimePackageMap> src_asset_cookie_id_map;
1550
1551 // Determine which ApkAssets are loaded in both theme AssetManagers.
1552 std::vector<const ApkAssets*> src_assets = o.asset_manager_->GetApkAssets();
1553 for (size_t i = 0; i < src_assets.size(); i++) {
1554 const ApkAssets* src_asset = src_assets[i];
1555
1556 std::vector<const ApkAssets*> dest_assets = asset_manager_->GetApkAssets();
1557 for (size_t j = 0; j < dest_assets.size(); j++) {
1558 const ApkAssets* dest_asset = dest_assets[j];
1559
1560 // Map the runtime package of the source apk asset to the destination apk asset.
1561 if (src_asset->GetPath() == dest_asset->GetPath()) {
1562 const std::vector<std::unique_ptr<const LoadedPackage>>& src_packages =
1563 src_asset->GetLoadedArsc()->GetPackages();
1564 const std::vector<std::unique_ptr<const LoadedPackage>>& dest_packages =
1565 dest_asset->GetLoadedArsc()->GetPackages();
1566
1567 SourceToDestinationRuntimePackageMap package_map;
1568
1569 // The source and destination package should have the same number of packages loaded in
1570 // the same order.
1571 const size_t N = src_packages.size();
1572 CHECK(N == dest_packages.size())
1573 << " LoadedArsc " << src_asset->GetPath() << " differs number of packages.";
1574 for (size_t p = 0; p < N; p++) {
1575 auto& src_package = src_packages[p];
1576 auto& dest_package = dest_packages[p];
1577 CHECK(src_package->GetPackageName() == dest_package->GetPackageName())
1578 << " Package " << src_package->GetPackageName() << " differs in load order.";
1579
1580 int src_package_id = o.asset_manager_->GetAssignedPackageId(src_package.get());
1581 int dest_package_id = asset_manager_->GetAssignedPackageId(dest_package.get());
1582 package_map[src_package_id] = dest_package_id;
1583 }
1584
1585 src_to_dest_asset_cookies.insert(std::make_pair(i, j));
1586 src_asset_cookie_id_map.insert(std::make_pair(i, package_map));
1587 break;
1588 }
1589 }
1590 }
1591
1592 // Reset the data in the destination theme.
1593 for (size_t p = 0; p < packages_.size(); p++) {
1594 if (packages_[p] != nullptr) {
1595 packages_[p].reset();
1596 }
1597 }
1598
1599 for (size_t p = 0; p < packages_.size(); p++) {
1600 const Package *package = o.packages_[p].get();
1601 if (package == nullptr) {
1602 continue;
1603 }
1604
1605 for (size_t t = 0; t < package->types.size(); t++) {
1606 const ThemeType *type = package->types[t].get();
1607 if (type == nullptr) {
1608 continue;
1609 }
1610
1611 for (size_t e = 0; e < type->entry_count; e++) {
1612 const ThemeEntry &entry = type->entries[e];
1613 if (entry.value.dataType == Res_value::TYPE_NULL &&
1614 entry.value.data != Res_value::DATA_NULL_EMPTY) {
1615 continue;
1616 }
1617
1618 bool is_reference = (entry.value.dataType == Res_value::TYPE_ATTRIBUTE
1619 || entry.value.dataType == Res_value::TYPE_REFERENCE
1620 || entry.value.dataType == Res_value::TYPE_DYNAMIC_ATTRIBUTE
1621 || entry.value.dataType == Res_value::TYPE_DYNAMIC_REFERENCE)
1622 && entry.value.data != 0x0;
1623
1624 // If the attribute value represents an attribute or reference, the package id of the
1625 // value needs to be rewritten to the package id of the value in the destination.
1626 uint32_t attribute_data = entry.value.data;
1627 if (is_reference) {
1628 // Determine the package id of the reference in the destination AssetManager.
1629 auto value_package_map = src_asset_cookie_id_map.find(entry.cookie);
1630 if (value_package_map == src_asset_cookie_id_map.end()) {
1631 continue;
1632 }
1633
1634 auto value_dest_package = value_package_map->second.find(
1635 get_package_id(entry.value.data));
1636 if (value_dest_package == value_package_map->second.end()) {
1637 continue;
1638 }
1639
1640 attribute_data = fix_package_id(entry.value.data, value_dest_package->second);
1641 }
1642
1643 // Find the cookie of the value in the destination. If the source apk is not loaded in the
1644 // destination, only copy resources that do not reference resources in the source.
1645 ApkAssetsCookie data_dest_cookie;
1646 auto value_dest_cookie = src_to_dest_asset_cookies.find(entry.cookie);
1647 if (value_dest_cookie != src_to_dest_asset_cookies.end()) {
1648 data_dest_cookie = value_dest_cookie->second;
1649 } else {
1650 if (is_reference || entry.value.dataType == Res_value::TYPE_STRING) {
1651 continue;
1652 } else {
1653 data_dest_cookie = 0x0;
1654 }
1655 }
1656
1657 // The package id of the attribute needs to be rewritten to the package id of the
1658 // attribute in the destination.
1659 int attribute_dest_package_id = p;
1660 if (attribute_dest_package_id != 0x01) {
1661 // Find the cookie of the attribute resource id in the source AssetManager
1662 FindEntryResult attribute_entry_result;
1663 ApkAssetsCookie attribute_cookie =
1664 o.asset_manager_->FindEntry(make_resid(p, t, e), 0 /* density_override */ ,
1665 true /* stop_at_first_match */,
1666 true /* ignore_configuration */,
1667 &attribute_entry_result);
1668
1669 // Determine the package id of the attribute in the destination AssetManager.
1670 auto attribute_package_map = src_asset_cookie_id_map.find(attribute_cookie);
1671 if (attribute_package_map == src_asset_cookie_id_map.end()) {
1672 continue;
1673 }
1674 auto attribute_dest_package = attribute_package_map->second.find(
1675 attribute_dest_package_id);
1676 if (attribute_dest_package == attribute_package_map->second.end()) {
1677 continue;
1678 }
1679 attribute_dest_package_id = attribute_dest_package->second;
1680 }
1681
1682 // Lazily instantiate the destination package.
1683 std::unique_ptr<Package>& dest_package = packages_[attribute_dest_package_id];
1684 if (dest_package == nullptr) {
1685 dest_package.reset(new Package());
1686 }
1687
1688 // Lazily instantiate and resize the destination type.
1689 util::unique_cptr<ThemeType>& dest_type = dest_package->types[t];
1690 if (dest_type == nullptr || dest_type->entry_count < type->entry_count) {
1691 const size_t type_alloc_size = sizeof(ThemeType)
1692 + (type->entry_count * sizeof(ThemeEntry));
1693 void* dest_data = malloc(type_alloc_size);
1694 memset(dest_data, 0, type->entry_count * sizeof(ThemeEntry));
1695
1696 // Copy the existing destination type values if the type is resized.
1697 if (dest_type != nullptr) {
1698 memcpy(dest_data, type, sizeof(ThemeType)
1699 + (dest_type->entry_count * sizeof(ThemeEntry)));
1700 }
1701
1702 dest_type.reset(reinterpret_cast<ThemeType *>(dest_data));
1703 dest_type->entry_count = type->entry_count;
1704 }
1705
1706 dest_type->entries[e].cookie = data_dest_cookie;
1707 dest_type->entries[e].value.dataType = entry.value.dataType;
1708 dest_type->entries[e].value.data = attribute_data;
1709 dest_type->entries[e].type_spec_flags = entry.type_spec_flags;
1710 }
1711 }
1712 }
1713 }
1714 }
1715
Dump() const1716 void Theme::Dump() const {
1717 base::ScopedLogSeverity _log(base::INFO);
1718 LOG(INFO) << base::StringPrintf("Theme(this=%p, AssetManager2=%p)", this, asset_manager_);
1719
1720 for (int p = 0; p < packages_.size(); p++) {
1721 auto& package = packages_[p];
1722 if (package == nullptr) {
1723 continue;
1724 }
1725
1726 for (int t = 0; t < package->types.size(); t++) {
1727 auto& type = package->types[t];
1728 if (type == nullptr) {
1729 continue;
1730 }
1731
1732 for (int e = 0; e < type->entry_count; e++) {
1733 auto& entry = type->entries[e];
1734 if (entry.value.dataType == Res_value::TYPE_NULL &&
1735 entry.value.data != Res_value::DATA_NULL_EMPTY) {
1736 continue;
1737 }
1738
1739 LOG(INFO) << base::StringPrintf(" entry(0x%08x)=(0x%08x) type=(0x%02x), cookie(%d)",
1740 make_resid(p, t, e), entry.value.data,
1741 entry.value.dataType, entry.cookie);
1742 }
1743 }
1744 }
1745 }
1746
1747 } // namespace android
1748