1 /*
2 * Copyright (c) 2023 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #define LOG_TAG "TlvUtil"
17
18 #include "tlv_util.h"
19 #include "udmf_utils.h"
20 #include "logger.h"
21 #include "tlv_object.h"
22
23 namespace OHOS {
24 namespace TLVUtil {
CountBufferSize(const std::nullptr_t & input,TLVObject & data)25 template <> size_t CountBufferSize(const std::nullptr_t &input, TLVObject &data)
26 {
27 return data.CountHead();
28 }
29
Writing(const std::nullptr_t & input,TLVObject & data,TAG tag)30 template <> bool Writing(const std::nullptr_t &input, TLVObject &data, TAG tag)
31 {
32 InitWhenFirst(input, data);
33 return data.WriteHead(static_cast<uint16_t>(tag), 0);
34 }
35
Reading(std::nullptr_t & output,TLVObject & data,const TLVHead & head)36 template <> bool Reading(std::nullptr_t &output, TLVObject &data, const TLVHead &head)
37 {
38 return data.Read(output, head);
39 }
40
CountBufferSize(const std::monostate & input,TLVObject & data)41 template <> size_t CountBufferSize(const std::monostate &input, TLVObject &data)
42 {
43 return data.Count(input);
44 }
45
Writing(const std::monostate & input,TLVObject & data,TAG tag)46 template <> bool Writing(const std::monostate &input, TLVObject &data, TAG tag)
47 {
48 InitWhenFirst(input, data);
49 return data.Write(tag, input);
50 }
51
Reading(std::monostate & output,TLVObject & data,const TLVHead & head)52 template <> bool Reading(std::monostate &output, TLVObject &data, const TLVHead &head)
53 {
54 return data.Read(output, head);
55 }
56
CountBufferSize(const std::string & input,TLVObject & data)57 template <> size_t CountBufferSize(const std::string &input, TLVObject &data)
58 {
59 return data.Count(input);
60 }
61
Writing(const std::string & input,TLVObject & data,TAG tag)62 template <> bool Writing(const std::string &input, TLVObject &data, TAG tag)
63 {
64 InitWhenFirst(input, data);
65 return data.Write(tag, input);
66 }
67
Reading(std::string & output,TLVObject & data,const TLVHead & head)68 template <> bool Reading(std::string &output, TLVObject &data, const TLVHead &head)
69 {
70 return data.Read(output, head);
71 }
72
CountBufferSize(const std::vector<uint8_t> & input,TLVObject & data)73 template <> size_t CountBufferSize(const std::vector<uint8_t> &input, TLVObject &data)
74 {
75 return data.Count(input);
76 }
77
Writing(const std::vector<uint8_t> & input,TLVObject & data,TAG tag)78 template <> bool Writing(const std::vector<uint8_t> &input, TLVObject &data, TAG tag)
79 {
80 InitWhenFirst(input, data);
81 return data.Write(tag, input);
82 }
83
Reading(std::vector<uint8_t> & output,TLVObject & data,const TLVHead & head)84 template <> bool Reading(std::vector<uint8_t> &output, TLVObject &data, const TLVHead &head)
85 {
86 return data.Read(output, head);
87 }
88
CountBufferSize(const UDType & input,TLVObject & data)89 template <> size_t CountBufferSize(const UDType &input, TLVObject &data)
90 {
91 int32_t type = input;
92 return data.CountBasic(type);
93 }
94
Writing(const UDType & input,TLVObject & data,TAG tag)95 template <> bool Writing(const UDType &input, TLVObject &data, TAG tag)
96 {
97 InitWhenFirst(input, data);
98 int32_t type = input;
99 return data.WriteBasic(tag, type);
100 }
101
Reading(UDType & output,TLVObject & data,const TLVHead & head)102 template <> bool Reading(UDType &output, TLVObject &data, const TLVHead &head)
103 {
104 int32_t type;
105 if (!Reading(type, data, head)) {
106 return false;
107 }
108 if (type < UDType::ENTITY || type >= UDType::UD_BUTT) {
109 return false;
110 }
111 output = static_cast<UDType>(type);
112 return true;
113 }
114
CountBufferSize(const DataStatus & input,TLVObject & data)115 template <> size_t CountBufferSize(const DataStatus &input, TLVObject &data)
116 {
117 int32_t status = input;
118 return data.CountBasic(status);
119 }
120
Writing(const DataStatus & input,TLVObject & data,TAG tag)121 template <> bool Writing(const DataStatus &input, TLVObject &data, TAG tag)
122 {
123 InitWhenFirst(input, data);
124 int32_t status = input;
125 return data.WriteBasic(tag, status);
126 }
127
Reading(DataStatus & output,TLVObject & data,const TLVHead & head)128 template <> bool Reading(DataStatus &output, TLVObject &data, const TLVHead &head)
129 {
130 int32_t status;
131 if (!data.ReadBasic(status, head)) {
132 return false;
133 }
134 if (status < DataStatus::WORKING || status >= DataStatus::FADE) {
135 return false;
136 }
137 output = static_cast<DataStatus>(status);
138 return true;
139 }
140
CountBufferSize(const Object & input,TLVObject & data)141 template <> size_t CountBufferSize(const Object &input, TLVObject &data)
142 {
143 return data.CountHead() + CountBufferSize(input.value_, data);
144 }
145
Writing(const Object & input,TLVObject & data,TAG tag)146 template <> bool Writing(const Object &input, TLVObject &data, TAG tag)
147 {
148 InitWhenFirst(input, data);
149 auto tagCursor = data.GetCursor();
150 data.OffsetHead();
151 if (!Writing(input.value_, data, TAG::TAG_OBJECT_VALUE)) {
152 return false;
153 }
154 return data.WriteBackHead(static_cast<uint16_t>(tag), tagCursor, data.GetCursor() - tagCursor - sizeof(TLVHead));
155 }
Reading(Object & output,TLVObject & data,const TLVHead & head)156 template <> bool Reading(Object &output, TLVObject &data, const TLVHead &head)
157 {
158 TLVHead headValue{};
159 if (!data.ReadHead(headValue)) {
160 return false;
161 }
162 if (headValue.tag != static_cast<uint16_t>(TAG::TAG_OBJECT_VALUE)) {
163 return false;
164 }
165 if (!Reading(output.value_, data, headValue)) {
166 return false;
167 }
168 return true;
169 }
170
CountBufferSize(const UnifiedKey & input,TLVObject & data)171 template <> size_t CountBufferSize(const UnifiedKey &input, TLVObject &data)
172 {
173 return data.CountHead() + data.Count(input.key) + data.Count(input.intention) + data.Count(input.bundleName) +
174 data.Count(input.groupId);
175 }
Writing(const UnifiedKey & input,TLVObject & data,TAG tag)176 template <> bool Writing(const UnifiedKey &input, TLVObject &data, TAG tag)
177 {
178 InitWhenFirst(input, data);
179 auto tagCursor = data.GetCursor();
180 data.OffsetHead();
181 if (!data.Write(TAG::TAG_KEY, input.key)) {
182 return false;
183 }
184 if (!data.Write(TAG::TAG_INTENTION, input.intention)) {
185 return false;
186 }
187 if (!data.Write(TAG::TAG_BUNDLE_NAME, input.bundleName)) {
188 return false;
189 }
190 if (!data.Write(TAG::TAG_GROUP_ID, input.groupId)) {
191 return false;
192 }
193 return data.WriteBackHead(static_cast<uint16_t>(tag), tagCursor, data.GetCursor() - tagCursor - sizeof(TLVHead));
194 }
195
Reading(UnifiedKey & output,TLVObject & data,const TLVHead & head)196 template <> bool Reading(UnifiedKey &output, TLVObject &data, const TLVHead &head)
197 {
198 auto endCursor = data.GetCursor() + head.len;
199 while (data.GetCursor() < endCursor) {
200 TLVHead headItem{};
201 if (!data.ReadHead(headItem)) {
202 return false;
203 }
204 switch (headItem.tag) {
205 case static_cast<uint16_t>(TAG::TAG_KEY):
206 if (!data.Read(output.key, headItem)) {
207 return false;
208 }
209 break;
210 case static_cast<uint16_t>(TAG::TAG_INTENTION):
211 if (!data.Read(output.intention, headItem)) {
212 return false;
213 }
214 break;
215 case static_cast<uint16_t>(TAG::TAG_BUNDLE_NAME):
216 if (!data.Read(output.bundleName, headItem)) {
217 return false;
218 }
219 break;
220 case static_cast<uint16_t>(TAG::TAG_GROUP_ID):
221 if (!data.Read(output.groupId, headItem)) {
222 return false;
223 }
224 break;
225 default:
226 data.Skip(headItem);
227 }
228 }
229 return true;
230 }
231
CountBufferSize(const UnifiedData & input,TLVObject & data)232 template <> size_t CountBufferSize(const UnifiedData &input, TLVObject &data)
233 {
234 std::string version = UTILS::GetCurrentSdkVersion();
235 return data.CountHead() + data.Count(version) + TLVUtil::CountBufferSize(input.GetRecords(), data);
236 }
237
Writing(const UnifiedData & input,TLVObject & data,TAG tag)238 template <> bool Writing(const UnifiedData &input, TLVObject &data, TAG tag)
239 {
240 InitWhenFirst(input, data);
241 auto tagCursor = data.GetCursor();
242 data.OffsetHead();
243 std::string version = UTILS::GetCurrentSdkVersion();
244 if (!data.Write(TAG::TAG_VERSION, version)) {
245 return false;
246 }
247 if (!TLVUtil::Writing(input.GetRecords(), data, TAG::TAG_UNIFIED_RECORD)) {
248 return false;
249 }
250 return data.WriteBackHead(static_cast<uint16_t>(tag), tagCursor, data.GetCursor() - tagCursor - sizeof(TLVHead));
251 }
252
Reading(UnifiedData & output,TLVObject & data,const TLVHead & head)253 template <> bool Reading(UnifiedData &output, TLVObject &data, const TLVHead &head)
254 {
255 auto endCursor = data.GetCursor() + head.len;
256 while (data.GetCursor() < endCursor) {
257 TLVHead headItem{};
258 if (!data.ReadHead(headItem)) {
259 return false;
260 }
261 if (headItem.tag == static_cast<uint16_t>(TAG::TAG_VERSION)) {
262 data.Skip(headItem);
263 continue;
264 }
265 if (headItem.tag == static_cast<uint16_t>(TAG::TAG_UNIFIED_RECORD)) {
266 auto records = output.GetRecords();
267 if (!Reading(records, data, headItem)) {
268 return false;
269 }
270 output.SetRecords(records);
271 continue;
272 }
273 data.Skip(headItem);
274 }
275 return true;
276 }
277
CountBufferSize(const UnifiedRecord & input,TLVObject & data)278 template <> size_t CountBufferSize(const UnifiedRecord &input, TLVObject &data)
279 {
280 std::string version = UTILS::GetCurrentSdkVersion();
281 return data.CountHead() + data.Count(version) + data.CountBasic(static_cast<int32_t>(input.GetType())) +
282 data.Count(input.GetUid()) + CountBufferSize(input.GetOriginValue(), data);
283 }
284
Writing(const UnifiedRecord & input,TLVObject & data,TAG tag)285 template <> bool Writing(const UnifiedRecord &input, TLVObject &data, TAG tag)
286 {
287 InitWhenFirst(input, data);
288 auto tagCursor = data.GetCursor();
289 data.OffsetHead();
290 std::string version = UTILS::GetCurrentSdkVersion();
291 if (!data.Write(TAG::TAG_VERSION, version)) {
292 return false;
293 }
294 if (!data.WriteBasic(TAG::TAG_UD_TYPE, static_cast<int32_t>(input.GetType()))) {
295 return false;
296 }
297 if (!data.Write(TAG::TAG_UID, input.GetUid())) {
298 return false;
299 }
300 if (!TLVUtil::Writing(input.GetOriginValue(), data, TAG::TAG_RECORD_VALUE)) {
301 return false;
302 }
303 return data.WriteBackHead(static_cast<uint16_t>(tag), tagCursor, data.GetCursor() - tagCursor - sizeof(TLVHead));
304 }
305
Reading(UnifiedRecord & output,TLVObject & data,const TLVHead & head)306 template <> bool Reading(UnifiedRecord &output, TLVObject &data, const TLVHead &head)
307 {
308 auto endCursor = data.GetCursor() + head.len;
309 UDType dataType;
310 std::string uid;
311 ValueType value;
312 while (data.GetCursor() < endCursor) {
313 TLVHead headItem{};
314 if (!data.ReadHead(headItem)) {
315 return false;
316 }
317 switch (headItem.tag) {
318 case static_cast<uint16_t>(TAG::TAG_VERSION):
319 data.Skip(headItem);
320 break;
321 case static_cast<uint16_t>(TAG::TAG_UD_TYPE):
322 if (!TLVUtil::Reading(dataType, data, headItem)) {
323 return false;
324 }
325 output.SetType(dataType);
326 break;
327 case static_cast<uint16_t>(TAG::TAG_UID):
328 if (!data.Read(uid, headItem)) {
329 return false;
330 }
331 output.SetUid(uid);
332 break;
333 case static_cast<uint16_t>(TAG::TAG_RECORD_VALUE):
334 if (!TLVUtil::Reading(value, data, headItem)) {
335 return false;
336 }
337 output.SetValue(value);
338 break;
339 default:
340 data.Skip(headItem);
341 }
342 }
343 return true;
344 }
345
CountBufferSize(const Runtime & input,TLVObject & data)346 template <> size_t CountBufferSize(const Runtime &input, TLVObject &data)
347 {
348 std::string version = UTILS::GetCurrentSdkVersion();
349 return data.CountHead() + data.CountBasic(input.isPrivate) + data.CountBasic(input.dataVersion) +
350 data.CountBasic(input.recordTotalNum) + data.CountBasic(input.tokenId) +
351 data.CountBasic(static_cast<int64_t>(input.createTime)) +
352 data.CountBasic(static_cast<int64_t>(input.lastModifiedTime)) +
353 data.CountBasic(static_cast<int32_t>(input.dataStatus)) + data.Count(input.sourcePackage) +
354 data.Count(input.createPackage) + data.Count(input.deviceId) + TLVUtil::CountBufferSize(input.key, data) +
355 data.Count(version) + TLVUtil::CountBufferSize(input.privileges, data);
356 }
357
Writing(const Runtime & input,TLVObject & data,TAG tag)358 template <> bool Writing(const Runtime &input, TLVObject &data, TAG tag)
359 {
360 InitWhenFirst(input, data);
361 auto tagCursor = data.GetCursor();
362 data.OffsetHead();
363 std::string version = UTILS::GetCurrentSdkVersion();
364 if (!TLVUtil::Writing(version, data, TAG::TAG_VERSION)) {
365 return false;
366 }
367 if (!TLVUtil::Writing(input.key, data, TAG::TAG_KEY)) {
368 return false;
369 }
370 if (!data.WriteBasic(TAG::TAG_IS_PRIVATE, input.isPrivate)) {
371 return false;
372 }
373 if (!TLVUtil::Writing(input.privileges, data, TAG::TAG_PRIVILEGE)) {
374 return false;
375 }
376 if (!data.WriteBasic(TAG::TAG_CREATE_TIME, static_cast<int64_t>(input.createTime))) {
377 return false;
378 }
379 if (!data.Write(TAG::TAG_SOURCE_PACKAGE, input.sourcePackage)) {
380 return false;
381 }
382 if (!data.WriteBasic(TAG::TAG_DATA_STATUS, static_cast<int32_t>(input.dataStatus))) {
383 return false;
384 }
385 if (!data.WriteBasic(TAG::TAG_DATA_VERSION, input.dataVersion)) {
386 return false;
387 }
388 if (!data.WriteBasic(TAG::TAG_LAST_MODIFIED_TIME, static_cast<int64_t>(input.lastModifiedTime))) {
389 return false;
390 }
391 if (!data.Write(TAG::TAG_CREATE_PACKAGE, input.createPackage)) {
392 return false;
393 }
394 if (!data.Write(TAG::TAG_DEVICE_ID, input.deviceId)) {
395 return false;
396 }
397 if (!data.WriteBasic(TAG::TAG_RECORD_TOTAL_NUM, input.recordTotalNum)) {
398 return false;
399 }
400 if (!data.WriteBasic(TAG::TAG_TOKEN_ID, input.tokenId)) {
401 return false;
402 }
403 return data.WriteBackHead(static_cast<uint16_t>(tag), tagCursor, data.GetCursor() - tagCursor - sizeof(TLVHead));
404 }
405
Reading(Runtime & output,TLVObject & data,const TLVHead & head)406 template <> bool Reading(Runtime &output, TLVObject &data, const TLVHead &head)
407 {
408 auto endCursor = data.GetCursor() + head.len;
409 while (data.GetCursor() < endCursor) {
410 TLVHead headItem{};
411 if (!data.ReadHead(headItem)) {
412 return false;
413 }
414 bool result = true;
415 int64_t createTime = 0;
416 int64_t lastModifiedTime = 0;
417 switch (headItem.tag) {
418 case static_cast<uint16_t>(TAG::TAG_KEY):
419 result = TLVUtil::Reading(output.key, data, headItem);
420 break;
421 case static_cast<uint16_t>(TAG::TAG_IS_PRIVATE):
422 result = data.ReadBasic(output.isPrivate, headItem);
423 break;
424 case static_cast<uint16_t>(TAG::TAG_PRIVILEGE):
425 result = TLVUtil::Reading(output.privileges, data, headItem);
426 break;
427 case static_cast<uint16_t>(TAG::TAG_CREATE_TIME):
428 result = data.ReadBasic(createTime, headItem);
429 output.createTime = static_cast<time_t>(createTime);
430 break;
431 case static_cast<uint16_t>(TAG::TAG_SOURCE_PACKAGE):
432 result = data.Read(output.sourcePackage, headItem);
433 break;
434 case static_cast<uint16_t>(TAG::TAG_DATA_STATUS):
435 result = TLVUtil::Reading(output.dataStatus, data, headItem);
436 break;
437 case static_cast<uint16_t>(TAG::TAG_DATA_VERSION):
438 result = data.ReadBasic(output.dataVersion, headItem);
439 break;
440 case static_cast<uint16_t>(TAG::TAG_LAST_MODIFIED_TIME):
441 result = data.ReadBasic(lastModifiedTime, headItem);
442 output.lastModifiedTime = static_cast<time_t>(lastModifiedTime);
443 break;
444 case static_cast<uint16_t>(TAG::TAG_CREATE_PACKAGE):
445 result = data.Read(output.createPackage, headItem);
446 break;
447 case static_cast<uint16_t>(TAG::TAG_DEVICE_ID):
448 result = data.Read(output.deviceId, headItem);
449 break;
450 case static_cast<uint16_t>(TAG::TAG_RECORD_TOTAL_NUM):
451 result = data.ReadBasic(output.recordTotalNum, headItem);
452 break;
453 case static_cast<uint16_t>(TAG::TAG_TOKEN_ID):
454 result = data.ReadBasic(output.tokenId, headItem);
455 break;
456 default:
457 result = data.Skip(headItem);
458 }
459 if (!result) {
460 return false;
461 }
462 }
463 return true;
464 }
465
CountBufferSize(const Privilege & input,TLVObject & data)466 template <> size_t CountBufferSize(const Privilege &input, TLVObject &data)
467 {
468 return data.CountHead() + data.CountBasic(input.tokenId) + data.Count(input.readPermission) +
469 data.Count(input.writePermission);
470 }
471
Writing(const Privilege & input,TLVObject & data,TAG tag)472 template <> bool Writing(const Privilege &input, TLVObject &data, TAG tag)
473 {
474 InitWhenFirst(input, data);
475 auto tagCursor = data.GetCursor();
476 data.OffsetHead();
477 if (!data.WriteBasic(TAG::TAG_TOKEN_ID, input.tokenId)) {
478 return false;
479 }
480 if (!data.Write(TAG::TAG_READPERMISSION, input.readPermission)) {
481 return false;
482 }
483 if (!data.Write(TAG::TAG_WRITEPERMISSION, input.writePermission)) {
484 return false;
485 }
486 return data.WriteBackHead(static_cast<uint16_t>(tag), tagCursor, data.GetCursor() - tagCursor - sizeof(TLVHead));
487 }
488
Reading(Privilege & output,TLVObject & data,const TLVHead & head)489 template <> bool Reading(Privilege &output, TLVObject &data, const TLVHead &head)
490 {
491 auto endCursor = data.GetCursor() + head.len;
492 while (data.GetCursor() < endCursor) {
493 TLVHead headItem{};
494 if (!data.ReadHead(headItem)) {
495 return false;
496 }
497 switch (headItem.tag) {
498 case static_cast<uint16_t>(TAG::TAG_TOKEN_ID):
499 if (!data.ReadBasic(output.tokenId, headItem)) {
500 return false;
501 }
502 break;
503 case static_cast<uint16_t>(TAG::TAG_READPERMISSION):
504 if (!data.Read(output.readPermission, headItem)) {
505 return false;
506 }
507 break;
508 case static_cast<uint16_t>(TAG::TAG_WRITEPERMISSION):
509 if (!data.Read(output.writePermission, headItem)) {
510 return false;
511 }
512 break;
513 default:
514 data.Skip(headItem);
515 }
516 }
517 return true;
518 }
519
CountBufferSize(const std::shared_ptr<OHOS::Media::PixelMap> & input,TLVObject & data)520 template <> size_t CountBufferSize(const std::shared_ptr<OHOS::Media::PixelMap> &input, TLVObject &data)
521 {
522 std::vector<std::uint8_t> val;
523 if (!input->EncodeTlv(val)) {
524 LOG_ERROR(UDMF_FRAMEWORK, "Encode pixelMap error when CountBufferSize");
525 return 0;
526 }
527 return CountBufferSize(val, data);
528 }
529
Writing(const std::shared_ptr<OHOS::Media::PixelMap> & input,TLVObject & data,TAG tag)530 template <> bool Writing(const std::shared_ptr<OHOS::Media::PixelMap> &input, TLVObject &data, TAG tag)
531 {
532 InitWhenFirst(input, data);
533 std::vector<std::uint8_t> val;
534 if (!input->EncodeTlv(val)) {
535 LOG_ERROR(UDMF_FRAMEWORK, "Encode pixelMap error when Writing");
536 return false;
537 }
538 return data.Write(tag, val);
539 }
540
Reading(std::shared_ptr<OHOS::Media::PixelMap> & output,TLVObject & data,const TLVHead & head)541 template <> bool Reading(std::shared_ptr<OHOS::Media::PixelMap> &output, TLVObject &data, const TLVHead &head)
542 {
543 std::vector<std::uint8_t> val;
544 if (!data.Read(val, head)) {
545 LOG_ERROR(UDMF_FRAMEWORK, "Reading u8 vector error.");
546 return false;
547 }
548 output = std::shared_ptr<OHOS::Media::PixelMap>(OHOS::Media::PixelMap::DecodeTlv(val));
549 if (output == nullptr) {
550 LOG_ERROR(UDMF_FRAMEWORK, "DecodeTlv pixelMap error when Reading.");
551 return false;
552 }
553 return true;
554 }
555
CountBufferSize(const std::shared_ptr<OHOS::AAFwk::Want> & input,TLVObject & data)556 template <> size_t CountBufferSize(const std::shared_ptr<OHOS::AAFwk::Want> &input, TLVObject &data)
557 {
558 Parcel parcel;
559 if (!input->Marshalling(parcel)) {
560 LOG_ERROR(UDMF_FRAMEWORK, "Marshalling want error when Count");
561 return 0;
562 }
563 auto size = parcel.GetDataSize();
564 std::vector<std::uint8_t> val(size);
565 return CountBufferSize(val, data);
566 }
567
Writing(const std::shared_ptr<OHOS::AAFwk::Want> & input,TLVObject & data,TAG tag)568 template <> bool Writing(const std::shared_ptr<OHOS::AAFwk::Want> &input, TLVObject &data, TAG tag)
569 {
570 InitWhenFirst(input, data);
571 Parcel parcel;
572 if (!input->Marshalling(parcel)) {
573 LOG_ERROR(UDMF_FRAMEWORK, "Marshalling want error in tlv write. tag=%{public}hu", tag);
574 return false;
575 }
576 auto size = parcel.GetDataSize();
577 auto buffer = parcel.GetData();
578 std::vector<std::uint8_t> val(size);
579 if (size != 0) {
580 auto err = memcpy_s(val.data(), size, reinterpret_cast<const void *>(buffer), size);
581 if (err != EOK) {
582 LOG_ERROR(UDMF_FRAMEWORK, "memcpy error in tlv write want. tag=%{public}hu", tag);
583 return false;
584 }
585 }
586 return data.Write(tag, val);
587 }
588
Reading(std::shared_ptr<OHOS::AAFwk::Want> & output,TLVObject & data,const TLVHead & head)589 template <> bool Reading(std::shared_ptr<OHOS::AAFwk::Want> &output, TLVObject &data, const TLVHead &head)
590 {
591 std::vector<std::uint8_t> val;
592 if (!data.Read(val, head)) {
593 LOG_ERROR(UDMF_FRAMEWORK, "Reading u8 vector error.");
594 return false;
595 }
596
597 std::shared_ptr<Parcel> parcel = std::make_shared<Parcel>();
598 auto buffer = malloc(val.size());
599 if (buffer == nullptr) {
600 LOG_ERROR(UDMF_FRAMEWORK, "malloc error in tlv read. tag=%{public}hu", head.tag);
601 return false;
602 }
603 auto err = memcpy_s(buffer, val.size(), val.data(), val.size());
604 if (err != EOK) {
605 LOG_ERROR(UDMF_FRAMEWORK, "memcpy_s error in tlv read want. tag=%{public}hu", head.tag);
606 return false;
607 }
608 if (!parcel->ParseFrom((uintptr_t)buffer, head.len)) {
609 LOG_ERROR(UDMF_FRAMEWORK, "ParseFrom error in tlv read want. tag=%{public}hu", head.tag);
610 return false;
611 }
612 auto want = AAFwk::Want::Unmarshalling(*parcel);
613 if (want == nullptr) {
614 LOG_ERROR(UDMF_FRAMEWORK, "Unmarshalling want error in tlv read. tag=%{public}hu", head.tag);
615 return false;
616 }
617 output = std::shared_ptr<OHOS::AAFwk::Want>(want);
618 return true;
619 }
620 } // namespace TLVUtil
621 } // namespace OHOS
622