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1 /*
2  * Copyright (C) 2015 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 LOG_TAG "PersistableBundle"
18 
19 #include <binder/PersistableBundle.h>
20 
21 #include <limits>
22 
23 #include <binder/IBinder.h>
24 #include <binder/Parcel.h>
25 #include <log/log.h>
26 #include <utils/Errors.h>
27 
28 #include "ParcelValTypes.h"
29 
30 using android::BAD_TYPE;
31 using android::BAD_VALUE;
32 using android::NO_ERROR;
33 using android::Parcel;
34 using android::status_t;
35 using android::UNEXPECTED_NULL;
36 
37 using android::binder::VAL_BOOLEAN;
38 using android::binder::VAL_INTEGER;
39 using android::binder::VAL_LONG;
40 using android::binder::VAL_DOUBLE;
41 using android::binder::VAL_STRING;
42 using android::binder::VAL_BOOLEANARRAY;
43 using android::binder::VAL_INTARRAY;
44 using android::binder::VAL_LONGARRAY;
45 using android::binder::VAL_DOUBLEARRAY;
46 using android::binder::VAL_STRINGARRAY;
47 using android::binder::VAL_PERSISTABLEBUNDLE;
48 
49 using std::map;
50 using std::set;
51 using std::vector;
52 
53 enum {
54     // Keep them in sync with BUNDLE_MAGIC* in frameworks/base/core/java/android/os/BaseBundle.java.
55     BUNDLE_MAGIC = 0x4C444E42,
56     BUNDLE_MAGIC_NATIVE = 0x4C444E44,
57 };
58 
59 namespace {
60 template <typename T>
getValue(const android::String16 & key,T * out,const map<android::String16,T> & map)61 bool getValue(const android::String16& key, T* out, const map<android::String16, T>& map) {
62     const auto& it = map.find(key);
63     if (it == map.end()) return false;
64     *out = it->second;
65     return true;
66 }
67 
68 template <typename T>
getKeys(const map<android::String16,T> & map)69 set<android::String16> getKeys(const map<android::String16, T>& map) {
70     if (map.empty()) return set<android::String16>();
71     set<android::String16> keys;
72     for (const auto& key_value_pair : map) {
73         keys.emplace(key_value_pair.first);
74     }
75     return keys;
76 }
77 }  // namespace
78 
79 namespace android {
80 
81 namespace os {
82 
83 #define RETURN_IF_FAILED(calledOnce)                                     \
84     {                                                                    \
85         status_t returnStatus = calledOnce;                              \
86         if (returnStatus) {                                              \
87             ALOGE("Failed at %s:%d (%s)", __FILE__, __LINE__, __func__); \
88             return returnStatus;                                         \
89          }                                                               \
90     }
91 
92 #define RETURN_IF_ENTRY_ERASED(map, key)                                 \
93     {                                                                    \
94         size_t num_erased = (map).erase(key);                            \
95         if (num_erased) {                                                \
96             ALOGE("Failed at %s:%d (%s)", __FILE__, __LINE__, __func__); \
97             return num_erased;                                           \
98          }                                                               \
99     }
100 
writeToParcel(Parcel * parcel) const101 status_t PersistableBundle::writeToParcel(Parcel* parcel) const {
102     /*
103      * Keep implementation in sync with writeToParcelInner() in
104      * frameworks/base/core/java/android/os/BaseBundle.java.
105      */
106 
107     // Special case for empty bundles.
108     if (empty()) {
109         RETURN_IF_FAILED(parcel->writeInt32(0));
110         return NO_ERROR;
111     }
112 
113     size_t length_pos = parcel->dataPosition();
114     RETURN_IF_FAILED(parcel->writeInt32(1));  // dummy, will hold length
115     RETURN_IF_FAILED(parcel->writeInt32(BUNDLE_MAGIC_NATIVE));
116 
117     size_t start_pos = parcel->dataPosition();
118     RETURN_IF_FAILED(writeToParcelInner(parcel));
119     size_t end_pos = parcel->dataPosition();
120 
121     // Backpatch length. This length value includes the length header.
122     parcel->setDataPosition(length_pos);
123     size_t length = end_pos - start_pos;
124     if (length > std::numeric_limits<int32_t>::max()) {
125         ALOGE("Parcel length (%zu) too large to store in 32-bit signed int", length);
126         return BAD_VALUE;
127     }
128     RETURN_IF_FAILED(parcel->writeInt32(static_cast<int32_t>(length)));
129     parcel->setDataPosition(end_pos);
130     return NO_ERROR;
131 }
132 
readFromParcel(const Parcel * parcel)133 status_t PersistableBundle::readFromParcel(const Parcel* parcel) {
134     /*
135      * Keep implementation in sync with readFromParcelInner() in
136      * frameworks/base/core/java/android/os/BaseBundle.java.
137      */
138     int32_t length = parcel->readInt32();
139     if (length < 0) {
140         ALOGE("Bad length in parcel: %d", length);
141         return UNEXPECTED_NULL;
142     }
143 
144     return readFromParcelInner(parcel, static_cast<size_t>(length));
145 }
146 
empty() const147 bool PersistableBundle::empty() const {
148     return size() == 0u;
149 }
150 
size() const151 size_t PersistableBundle::size() const {
152     return (mBoolMap.size() +
153             mIntMap.size() +
154             mLongMap.size() +
155             mDoubleMap.size() +
156             mStringMap.size() +
157             mBoolVectorMap.size() +
158             mIntVectorMap.size() +
159             mLongVectorMap.size() +
160             mDoubleVectorMap.size() +
161             mStringVectorMap.size() +
162             mPersistableBundleMap.size());
163 }
164 
erase(const String16 & key)165 size_t PersistableBundle::erase(const String16& key) {
166     RETURN_IF_ENTRY_ERASED(mBoolMap, key);
167     RETURN_IF_ENTRY_ERASED(mIntMap, key);
168     RETURN_IF_ENTRY_ERASED(mLongMap, key);
169     RETURN_IF_ENTRY_ERASED(mDoubleMap, key);
170     RETURN_IF_ENTRY_ERASED(mStringMap, key);
171     RETURN_IF_ENTRY_ERASED(mBoolVectorMap, key);
172     RETURN_IF_ENTRY_ERASED(mIntVectorMap, key);
173     RETURN_IF_ENTRY_ERASED(mLongVectorMap, key);
174     RETURN_IF_ENTRY_ERASED(mDoubleVectorMap, key);
175     RETURN_IF_ENTRY_ERASED(mStringVectorMap, key);
176     return mPersistableBundleMap.erase(key);
177 }
178 
putBoolean(const String16 & key,bool value)179 void PersistableBundle::putBoolean(const String16& key, bool value) {
180     erase(key);
181     mBoolMap[key] = value;
182 }
183 
putInt(const String16 & key,int32_t value)184 void PersistableBundle::putInt(const String16& key, int32_t value) {
185     erase(key);
186     mIntMap[key] = value;
187 }
188 
putLong(const String16 & key,int64_t value)189 void PersistableBundle::putLong(const String16& key, int64_t value) {
190     erase(key);
191     mLongMap[key] = value;
192 }
193 
putDouble(const String16 & key,double value)194 void PersistableBundle::putDouble(const String16& key, double value) {
195     erase(key);
196     mDoubleMap[key] = value;
197 }
198 
putString(const String16 & key,const String16 & value)199 void PersistableBundle::putString(const String16& key, const String16& value) {
200     erase(key);
201     mStringMap[key] = value;
202 }
203 
putBooleanVector(const String16 & key,const vector<bool> & value)204 void PersistableBundle::putBooleanVector(const String16& key, const vector<bool>& value) {
205     erase(key);
206     mBoolVectorMap[key] = value;
207 }
208 
putIntVector(const String16 & key,const vector<int32_t> & value)209 void PersistableBundle::putIntVector(const String16& key, const vector<int32_t>& value) {
210     erase(key);
211     mIntVectorMap[key] = value;
212 }
213 
putLongVector(const String16 & key,const vector<int64_t> & value)214 void PersistableBundle::putLongVector(const String16& key, const vector<int64_t>& value) {
215     erase(key);
216     mLongVectorMap[key] = value;
217 }
218 
putDoubleVector(const String16 & key,const vector<double> & value)219 void PersistableBundle::putDoubleVector(const String16& key, const vector<double>& value) {
220     erase(key);
221     mDoubleVectorMap[key] = value;
222 }
223 
putStringVector(const String16 & key,const vector<String16> & value)224 void PersistableBundle::putStringVector(const String16& key, const vector<String16>& value) {
225     erase(key);
226     mStringVectorMap[key] = value;
227 }
228 
putPersistableBundle(const String16 & key,const PersistableBundle & value)229 void PersistableBundle::putPersistableBundle(const String16& key, const PersistableBundle& value) {
230     erase(key);
231     mPersistableBundleMap[key] = value;
232 }
233 
getBoolean(const String16 & key,bool * out) const234 bool PersistableBundle::getBoolean(const String16& key, bool* out) const {
235     return getValue(key, out, mBoolMap);
236 }
237 
getInt(const String16 & key,int32_t * out) const238 bool PersistableBundle::getInt(const String16& key, int32_t* out) const {
239     return getValue(key, out, mIntMap);
240 }
241 
getLong(const String16 & key,int64_t * out) const242 bool PersistableBundle::getLong(const String16& key, int64_t* out) const {
243     return getValue(key, out, mLongMap);
244 }
245 
getDouble(const String16 & key,double * out) const246 bool PersistableBundle::getDouble(const String16& key, double* out) const {
247     return getValue(key, out, mDoubleMap);
248 }
249 
getString(const String16 & key,String16 * out) const250 bool PersistableBundle::getString(const String16& key, String16* out) const {
251     return getValue(key, out, mStringMap);
252 }
253 
getBooleanVector(const String16 & key,vector<bool> * out) const254 bool PersistableBundle::getBooleanVector(const String16& key, vector<bool>* out) const {
255     return getValue(key, out, mBoolVectorMap);
256 }
257 
getIntVector(const String16 & key,vector<int32_t> * out) const258 bool PersistableBundle::getIntVector(const String16& key, vector<int32_t>* out) const {
259     return getValue(key, out, mIntVectorMap);
260 }
261 
getLongVector(const String16 & key,vector<int64_t> * out) const262 bool PersistableBundle::getLongVector(const String16& key, vector<int64_t>* out) const {
263     return getValue(key, out, mLongVectorMap);
264 }
265 
getDoubleVector(const String16 & key,vector<double> * out) const266 bool PersistableBundle::getDoubleVector(const String16& key, vector<double>* out) const {
267     return getValue(key, out, mDoubleVectorMap);
268 }
269 
getStringVector(const String16 & key,vector<String16> * out) const270 bool PersistableBundle::getStringVector(const String16& key, vector<String16>* out) const {
271     return getValue(key, out, mStringVectorMap);
272 }
273 
getPersistableBundle(const String16 & key,PersistableBundle * out) const274 bool PersistableBundle::getPersistableBundle(const String16& key, PersistableBundle* out) const {
275     return getValue(key, out, mPersistableBundleMap);
276 }
277 
getBooleanKeys() const278 set<String16> PersistableBundle::getBooleanKeys() const {
279     return getKeys(mBoolMap);
280 }
281 
getIntKeys() const282 set<String16> PersistableBundle::getIntKeys() const {
283     return getKeys(mIntMap);
284 }
285 
getLongKeys() const286 set<String16> PersistableBundle::getLongKeys() const {
287     return getKeys(mLongMap);
288 }
289 
getDoubleKeys() const290 set<String16> PersistableBundle::getDoubleKeys() const {
291     return getKeys(mDoubleMap);
292 }
293 
getStringKeys() const294 set<String16> PersistableBundle::getStringKeys() const {
295     return getKeys(mStringMap);
296 }
297 
getBooleanVectorKeys() const298 set<String16> PersistableBundle::getBooleanVectorKeys() const {
299     return getKeys(mBoolVectorMap);
300 }
301 
getIntVectorKeys() const302 set<String16> PersistableBundle::getIntVectorKeys() const {
303     return getKeys(mIntVectorMap);
304 }
305 
getLongVectorKeys() const306 set<String16> PersistableBundle::getLongVectorKeys() const {
307     return getKeys(mLongVectorMap);
308 }
309 
getDoubleVectorKeys() const310 set<String16> PersistableBundle::getDoubleVectorKeys() const {
311     return getKeys(mDoubleVectorMap);
312 }
313 
getStringVectorKeys() const314 set<String16> PersistableBundle::getStringVectorKeys() const {
315     return getKeys(mStringVectorMap);
316 }
317 
getPersistableBundleKeys() const318 set<String16> PersistableBundle::getPersistableBundleKeys() const {
319     return getKeys(mPersistableBundleMap);
320 }
321 
writeToParcelInner(Parcel * parcel) const322 status_t PersistableBundle::writeToParcelInner(Parcel* parcel) const {
323     /*
324      * To keep this implementation in sync with writeArrayMapInternal() in
325      * frameworks/base/core/java/android/os/Parcel.java, the number of key
326      * value pairs must be written into the parcel before writing the key-value
327      * pairs themselves.
328      */
329     size_t num_entries = size();
330     if (num_entries > std::numeric_limits<int32_t>::max()) {
331         ALOGE("The size of this PersistableBundle (%zu) too large to store in 32-bit signed int",
332               num_entries);
333         return BAD_VALUE;
334     }
335     RETURN_IF_FAILED(parcel->writeInt32(static_cast<int32_t>(num_entries)));
336 
337     for (const auto& key_val_pair : mBoolMap) {
338         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
339         RETURN_IF_FAILED(parcel->writeInt32(VAL_BOOLEAN));
340         RETURN_IF_FAILED(parcel->writeBool(key_val_pair.second));
341     }
342     for (const auto& key_val_pair : mIntMap) {
343         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
344         RETURN_IF_FAILED(parcel->writeInt32(VAL_INTEGER));
345         RETURN_IF_FAILED(parcel->writeInt32(key_val_pair.second));
346     }
347     for (const auto& key_val_pair : mLongMap) {
348         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
349         RETURN_IF_FAILED(parcel->writeInt32(VAL_LONG));
350         RETURN_IF_FAILED(parcel->writeInt64(key_val_pair.second));
351     }
352     for (const auto& key_val_pair : mDoubleMap) {
353         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
354         RETURN_IF_FAILED(parcel->writeInt32(VAL_DOUBLE));
355         RETURN_IF_FAILED(parcel->writeDouble(key_val_pair.second));
356     }
357     for (const auto& key_val_pair : mStringMap) {
358         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
359         RETURN_IF_FAILED(parcel->writeInt32(VAL_STRING));
360         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.second));
361     }
362     for (const auto& key_val_pair : mBoolVectorMap) {
363         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
364         RETURN_IF_FAILED(parcel->writeInt32(VAL_BOOLEANARRAY));
365         RETURN_IF_FAILED(parcel->writeBoolVector(key_val_pair.second));
366     }
367     for (const auto& key_val_pair : mIntVectorMap) {
368         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
369         RETURN_IF_FAILED(parcel->writeInt32(VAL_INTARRAY));
370         RETURN_IF_FAILED(parcel->writeInt32Vector(key_val_pair.second));
371     }
372     for (const auto& key_val_pair : mLongVectorMap) {
373         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
374         RETURN_IF_FAILED(parcel->writeInt32(VAL_LONGARRAY));
375         RETURN_IF_FAILED(parcel->writeInt64Vector(key_val_pair.second));
376     }
377     for (const auto& key_val_pair : mDoubleVectorMap) {
378         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
379         RETURN_IF_FAILED(parcel->writeInt32(VAL_DOUBLEARRAY));
380         RETURN_IF_FAILED(parcel->writeDoubleVector(key_val_pair.second));
381     }
382     for (const auto& key_val_pair : mStringVectorMap) {
383         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
384         RETURN_IF_FAILED(parcel->writeInt32(VAL_STRINGARRAY));
385         RETURN_IF_FAILED(parcel->writeString16Vector(key_val_pair.second));
386     }
387     for (const auto& key_val_pair : mPersistableBundleMap) {
388         RETURN_IF_FAILED(parcel->writeString16(key_val_pair.first));
389         RETURN_IF_FAILED(parcel->writeInt32(VAL_PERSISTABLEBUNDLE));
390         RETURN_IF_FAILED(key_val_pair.second.writeToParcel(parcel));
391     }
392     return NO_ERROR;
393 }
394 
readFromParcelInner(const Parcel * parcel,size_t length)395 status_t PersistableBundle::readFromParcelInner(const Parcel* parcel, size_t length) {
396     /*
397      * Note: we don't actually use length for anything other than an empty PersistableBundle
398      * check, since we do not actually need to copy in an entire Parcel, unlike in the Java
399      * implementation.
400      */
401     if (length == 0) {
402         // Empty PersistableBundle or end of data.
403         return NO_ERROR;
404     }
405 
406     int32_t magic;
407     RETURN_IF_FAILED(parcel->readInt32(&magic));
408     if (magic != BUNDLE_MAGIC && magic != BUNDLE_MAGIC_NATIVE) {
409         ALOGE("Bad magic number for PersistableBundle: 0x%08x", magic);
410         return BAD_VALUE;
411     }
412 
413     /*
414      * To keep this implementation in sync with unparcel() in
415      * frameworks/base/core/java/android/os/BaseBundle.java, the number of
416      * key-value pairs must be read from the parcel before reading the key-value
417      * pairs themselves.
418      */
419     int32_t num_entries;
420     RETURN_IF_FAILED(parcel->readInt32(&num_entries));
421 
422     for (; num_entries > 0; --num_entries) {
423         String16 key;
424         int32_t value_type;
425         RETURN_IF_FAILED(parcel->readString16(&key));
426         RETURN_IF_FAILED(parcel->readInt32(&value_type));
427 
428         /*
429          * We assume that both the C++ and Java APIs ensure that all keys in a PersistableBundle
430          * are unique.
431          */
432         switch (value_type) {
433             case VAL_STRING: {
434                 RETURN_IF_FAILED(parcel->readString16(&mStringMap[key]));
435                 break;
436             }
437             case VAL_INTEGER: {
438                 RETURN_IF_FAILED(parcel->readInt32(&mIntMap[key]));
439                 break;
440             }
441             case VAL_LONG: {
442                 RETURN_IF_FAILED(parcel->readInt64(&mLongMap[key]));
443                 break;
444             }
445             case VAL_DOUBLE: {
446                 RETURN_IF_FAILED(parcel->readDouble(&mDoubleMap[key]));
447                 break;
448             }
449             case VAL_BOOLEAN: {
450                 RETURN_IF_FAILED(parcel->readBool(&mBoolMap[key]));
451                 break;
452             }
453             case VAL_STRINGARRAY: {
454                 RETURN_IF_FAILED(parcel->readString16Vector(&mStringVectorMap[key]));
455                 break;
456             }
457             case VAL_INTARRAY: {
458                 RETURN_IF_FAILED(parcel->readInt32Vector(&mIntVectorMap[key]));
459                 break;
460             }
461             case VAL_LONGARRAY: {
462                 RETURN_IF_FAILED(parcel->readInt64Vector(&mLongVectorMap[key]));
463                 break;
464             }
465             case VAL_BOOLEANARRAY: {
466                 RETURN_IF_FAILED(parcel->readBoolVector(&mBoolVectorMap[key]));
467                 break;
468             }
469             case VAL_PERSISTABLEBUNDLE: {
470                 RETURN_IF_FAILED(mPersistableBundleMap[key].readFromParcel(parcel));
471                 break;
472             }
473             case VAL_DOUBLEARRAY: {
474                 RETURN_IF_FAILED(parcel->readDoubleVector(&mDoubleVectorMap[key]));
475                 break;
476             }
477             default: {
478                 ALOGE("Unrecognized type: %d", value_type);
479                 return BAD_TYPE;
480                 break;
481             }
482         }
483     }
484 
485     return NO_ERROR;
486 }
487 
488 }  // namespace os
489 
490 }  // namespace android
491