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widevine_key_source.cc
1 // Copyright 2014 Google Inc. All rights reserved.
2 //
3 // Use of this source code is governed by a BSD-style
4 // license that can be found in the LICENSE file or at
5 // https://developers.google.com/open-source/licenses/bsd
6 
7 #include "packager/media/base/widevine_key_source.h"
8 
9 #include <set>
10 
11 #include "packager/base/base64.h"
12 #include "packager/base/bind.h"
13 #include "packager/base/json/json_reader.h"
14 #include "packager/base/json/json_writer.h"
15 #include "packager/base/memory/ref_counted.h"
16 #include "packager/base/stl_util.h"
17 #include "packager/media/base/fixed_key_source.h"
18 #include "packager/media/base/http_key_fetcher.h"
19 #include "packager/media/base/producer_consumer_queue.h"
20 #include "packager/media/base/protection_system_specific_info.h"
21 #include "packager/media/base/rcheck.h"
22 #include "packager/media/base/request_signer.h"
23 #include "packager/media/base/widevine_pssh_data.pb.h"
24 
25 namespace shaka {
26 namespace {
27 
28 const bool kEnableKeyRotation = true;
29 
30 const char kLicenseStatusOK[] = "OK";
31 // Server may return INTERNAL_ERROR intermittently, which is a transient error
32 // and the next client request may succeed without problem.
33 const char kLicenseStatusTransientError[] = "INTERNAL_ERROR";
34 
35 // Number of times to retry requesting keys in case of a transient error from
36 // the server.
37 const int kNumTransientErrorRetries = 5;
38 const int kFirstRetryDelayMilliseconds = 1000;
39 
40 // Default crypto period count, which is the number of keys to fetch on every
41 // key rotation enabled request.
42 const int kDefaultCryptoPeriodCount = 10;
43 const int kGetKeyTimeoutInSeconds = 5 * 60; // 5 minutes.
44 const int kKeyFetchTimeoutInSeconds = 60; // 1 minute.
45 
46 bool Base64StringToBytes(const std::string& base64_string,
47  std::vector<uint8_t>* bytes) {
48  DCHECK(bytes);
49  std::string str;
50  if (!base::Base64Decode(base64_string, &str))
51  return false;
52  bytes->assign(str.begin(), str.end());
53  return true;
54 }
55 
56 void BytesToBase64String(const std::vector<uint8_t>& bytes,
57  std::string* base64_string) {
58  DCHECK(base64_string);
59  base::Base64Encode(base::StringPiece(reinterpret_cast<const char*>
60  (bytes.data()), bytes.size()),
61  base64_string);
62 }
63 
64 bool GetKeyFromTrack(const base::DictionaryValue& track_dict,
65  std::vector<uint8_t>* key) {
66  DCHECK(key);
67  std::string key_base64_string;
68  RCHECK(track_dict.GetString("key", &key_base64_string));
69  VLOG(2) << "Key:" << key_base64_string;
70  RCHECK(Base64StringToBytes(key_base64_string, key));
71  return true;
72 }
73 
74 bool GetKeyIdFromTrack(const base::DictionaryValue& track_dict,
75  std::vector<uint8_t>* key_id) {
76  DCHECK(key_id);
77  std::string key_id_base64_string;
78  RCHECK(track_dict.GetString("key_id", &key_id_base64_string));
79  VLOG(2) << "Keyid:" << key_id_base64_string;
80  RCHECK(Base64StringToBytes(key_id_base64_string, key_id));
81  return true;
82 }
83 
84 bool GetPsshDataFromTrack(const base::DictionaryValue& track_dict,
85  std::vector<uint8_t>* pssh_data) {
86  DCHECK(pssh_data);
87 
88  const base::ListValue* pssh_list;
89  RCHECK(track_dict.GetList("pssh", &pssh_list));
90  // Invariant check. We don't want to crash in release mode if possible.
91  // The following code handles it gracefully if GetSize() does not return 1.
92  DCHECK_EQ(1u, pssh_list->GetSize());
93 
94  const base::DictionaryValue* pssh_dict;
95  RCHECK(pssh_list->GetDictionary(0, &pssh_dict));
96  std::string drm_type;
97  RCHECK(pssh_dict->GetString("drm_type", &drm_type));
98  if (drm_type != "WIDEVINE") {
99  LOG(ERROR) << "Expecting drm_type 'WIDEVINE', get '" << drm_type << "'.";
100  return false;
101  }
102  std::string pssh_data_base64_string;
103  RCHECK(pssh_dict->GetString("data", &pssh_data_base64_string));
104 
105  VLOG(2) << "Pssh Data:" << pssh_data_base64_string;
106  RCHECK(Base64StringToBytes(pssh_data_base64_string, pssh_data));
107  return true;
108 }
109 
110 } // namespace
111 
112 namespace media {
113 
114 // A ref counted wrapper for EncryptionKeyMap.
115 class WidevineKeySource::RefCountedEncryptionKeyMap
116  : public base::RefCountedThreadSafe<RefCountedEncryptionKeyMap> {
117  public:
118  explicit RefCountedEncryptionKeyMap(EncryptionKeyMap* encryption_key_map) {
119  DCHECK(encryption_key_map);
120  encryption_key_map_.swap(*encryption_key_map);
121  }
122 
123  std::map<KeySource::TrackType, EncryptionKey*>& map() {
124  return encryption_key_map_;
125  }
126 
127  private:
128  friend class base::RefCountedThreadSafe<RefCountedEncryptionKeyMap>;
129 
130  ~RefCountedEncryptionKeyMap() { STLDeleteValues(&encryption_key_map_); }
131 
132  EncryptionKeyMap encryption_key_map_;
133 
134  DISALLOW_COPY_AND_ASSIGN(RefCountedEncryptionKeyMap);
135 };
136 
137 WidevineKeySource::WidevineKeySource(const std::string& server_url,
138  bool add_common_pssh)
139  : key_production_thread_("KeyProductionThread",
140  base::Bind(&WidevineKeySource::FetchKeysTask,
141  base::Unretained(this))),
142  key_fetcher_(new HttpKeyFetcher(kKeyFetchTimeoutInSeconds)),
143  server_url_(server_url),
144  crypto_period_count_(kDefaultCryptoPeriodCount),
145  add_common_pssh_(add_common_pssh),
146  key_production_started_(false),
147  start_key_production_(base::WaitableEvent::ResetPolicy::AUTOMATIC,
148  base::WaitableEvent::InitialState::NOT_SIGNALED),
149  first_crypto_period_index_(0) {
150  key_production_thread_.Start();
151 }
152 
153 WidevineKeySource::~WidevineKeySource() {
154  if (key_pool_)
155  key_pool_->Stop();
156  if (key_production_thread_.HasBeenStarted()) {
157  // Signal the production thread to start key production if it is not
158  // signaled yet so the thread can be joined.
159  start_key_production_.Signal();
160  key_production_thread_.Join();
161  }
162  STLDeleteValues(&encryption_key_map_);
163 }
164 
165 Status WidevineKeySource::FetchKeys(const std::vector<uint8_t>& content_id,
166  const std::string& policy) {
167  base::AutoLock scoped_lock(lock_);
168  request_dict_.Clear();
169  std::string content_id_base64_string;
170  BytesToBase64String(content_id, &content_id_base64_string);
171  request_dict_.SetString("content_id", content_id_base64_string);
172  request_dict_.SetString("policy", policy);
173  return FetchKeysInternal(!kEnableKeyRotation, 0, false);
174 }
175 
176 Status WidevineKeySource::FetchKeys(const std::vector<uint8_t>& pssh_box) {
177  const std::vector<uint8_t> widevine_system_id(
178  kWidevineSystemId, kWidevineSystemId + arraysize(kWidevineSystemId));
179 
181  if (!info.Parse(pssh_box.data(), pssh_box.size()))
182  return Status(error::PARSER_FAILURE, "Error parsing the PSSH box.");
183 
184  if (info.system_id() == widevine_system_id) {
185  base::AutoLock scoped_lock(lock_);
186  request_dict_.Clear();
187  std::string pssh_data_base64_string;
188 
189  BytesToBase64String(info.pssh_data(), &pssh_data_base64_string);
190  request_dict_.SetString("pssh_data", pssh_data_base64_string);
191  return FetchKeysInternal(!kEnableKeyRotation, 0, false);
192  } else if (!info.key_ids().empty()) {
193  // This is not a Widevine PSSH box. Try making the request for the key-IDs.
194  // Even if this is a different key-system, it should still work. Either
195  // the server will not recognize it and return an error, or it will
196  // recognize it and the key must be correct (or the content is bad).
197  return FetchKeys(info.key_ids());
198  } else {
199  return Status(error::NOT_FOUND, "No key IDs given in PSSH box.");
200  }
201 }
202 
204  const std::vector<std::vector<uint8_t>>& key_ids) {
205  base::AutoLock scoped_lock(lock_);
206  request_dict_.Clear();
207  std::string pssh_data_base64_string;
208 
209  // Generate Widevine PSSH data from the key-IDs.
210  WidevinePsshData widevine_pssh_data;
211  for (size_t i = 0; i < key_ids.size(); i++) {
212  widevine_pssh_data.add_key_id(key_ids[i].data(), key_ids[i].size());
213  }
214 
215  const std::string serialized_string = widevine_pssh_data.SerializeAsString();
216  std::vector<uint8_t> pssh_data(serialized_string.begin(),
217  serialized_string.end());
218 
219  BytesToBase64String(pssh_data, &pssh_data_base64_string);
220  request_dict_.SetString("pssh_data", pssh_data_base64_string);
221  return FetchKeysInternal(!kEnableKeyRotation, 0, false);
222 }
223 
225  base::AutoLock scoped_lock(lock_);
226  request_dict_.Clear();
227  // Javascript/JSON does not support int64_t or unsigned numbers. Use double
228  // instead as 32-bit integer can be lossless represented using double.
229  request_dict_.SetDouble("asset_id", asset_id);
230  return FetchKeysInternal(!kEnableKeyRotation, 0, true);
231 }
232 
233 Status WidevineKeySource::GetKey(TrackType track_type, EncryptionKey* key) {
234  DCHECK(key);
235  if (encryption_key_map_.find(track_type) == encryption_key_map_.end()) {
236  return Status(error::INTERNAL_ERROR,
237  "Cannot find key of type " + TrackTypeToString(track_type));
238  }
239  *key = *encryption_key_map_[track_type];
240  return Status::OK;
241 }
242 
243 Status WidevineKeySource::GetKey(const std::vector<uint8_t>& key_id,
244  EncryptionKey* key) {
245  DCHECK(key);
246  for (std::map<TrackType, EncryptionKey*>::iterator iter =
247  encryption_key_map_.begin();
248  iter != encryption_key_map_.end();
249  ++iter) {
250  if (iter->second->key_id == key_id) {
251  *key = *iter->second;
252  return Status::OK;
253  }
254  }
255  return Status(error::INTERNAL_ERROR,
256  "Cannot find key with specified key ID");
257 }
258 
259 Status WidevineKeySource::GetCryptoPeriodKey(uint32_t crypto_period_index,
260  TrackType track_type,
261  EncryptionKey* key) {
262  DCHECK(key_production_thread_.HasBeenStarted());
263  // TODO(kqyang): This is not elegant. Consider refactoring later.
264  {
265  base::AutoLock scoped_lock(lock_);
266  if (!key_production_started_) {
267  // Another client may have a slightly smaller starting crypto period
268  // index. Set the initial value to account for that.
269  first_crypto_period_index_ =
270  crypto_period_index ? crypto_period_index - 1 : 0;
271  DCHECK(!key_pool_);
272  key_pool_.reset(new EncryptionKeyQueue(crypto_period_count_,
273  first_crypto_period_index_));
274  start_key_production_.Signal();
275  key_production_started_ = true;
276  }
277  }
278  return GetKeyInternal(crypto_period_index, track_type, key);
279 }
280 
281 void WidevineKeySource::set_signer(std::unique_ptr<RequestSigner> signer) {
282  signer_ = std::move(signer);
283 }
284 
286  std::unique_ptr<KeyFetcher> key_fetcher) {
287  key_fetcher_ = std::move(key_fetcher);
288 }
289 
290 Status WidevineKeySource::GetKeyInternal(uint32_t crypto_period_index,
291  TrackType track_type,
292  EncryptionKey* key) {
293  DCHECK(key_pool_);
294  DCHECK(key);
295  DCHECK_LE(track_type, NUM_VALID_TRACK_TYPES);
296  DCHECK_NE(track_type, TRACK_TYPE_UNKNOWN);
297 
298  scoped_refptr<RefCountedEncryptionKeyMap> ref_counted_encryption_key_map;
299  Status status =
300  key_pool_->Peek(crypto_period_index, &ref_counted_encryption_key_map,
301  kGetKeyTimeoutInSeconds * 1000);
302  if (!status.ok()) {
303  if (status.error_code() == error::STOPPED) {
304  CHECK(!common_encryption_request_status_.ok());
305  return common_encryption_request_status_;
306  }
307  return status;
308  }
309 
310  EncryptionKeyMap& encryption_key_map = ref_counted_encryption_key_map->map();
311  if (encryption_key_map.find(track_type) == encryption_key_map.end()) {
312  return Status(error::INTERNAL_ERROR,
313  "Cannot find key of type " + TrackTypeToString(track_type));
314  }
315  *key = *encryption_key_map[track_type];
316  return Status::OK;
317 }
318 
319 void WidevineKeySource::FetchKeysTask() {
320  // Wait until key production is signaled.
321  start_key_production_.Wait();
322  if (!key_pool_ || key_pool_->Stopped())
323  return;
324 
325  Status status = FetchKeysInternal(kEnableKeyRotation,
326  first_crypto_period_index_,
327  false);
328  while (status.ok()) {
329  first_crypto_period_index_ += crypto_period_count_;
330  status = FetchKeysInternal(kEnableKeyRotation,
331  first_crypto_period_index_,
332  false);
333  }
334  common_encryption_request_status_ = status;
335  key_pool_->Stop();
336 }
337 
338 Status WidevineKeySource::FetchKeysInternal(bool enable_key_rotation,
339  uint32_t first_crypto_period_index,
340  bool widevine_classic) {
341  std::string request;
342  FillRequest(enable_key_rotation,
343  first_crypto_period_index,
344  &request);
345 
346  std::string message;
347  Status status = GenerateKeyMessage(request, &message);
348  if (!status.ok())
349  return status;
350  VLOG(1) << "Message: " << message;
351 
352  std::string raw_response;
353  int64_t sleep_duration = kFirstRetryDelayMilliseconds;
354 
355  // Perform client side retries if seeing server transient error to workaround
356  // server limitation.
357  for (int i = 0; i < kNumTransientErrorRetries; ++i) {
358  status = key_fetcher_->FetchKeys(server_url_, message, &raw_response);
359  if (status.ok()) {
360  VLOG(1) << "Retry [" << i << "] Response:" << raw_response;
361 
362  std::string response;
363  if (!DecodeResponse(raw_response, &response)) {
364  return Status(error::SERVER_ERROR,
365  "Failed to decode response '" + raw_response + "'.");
366  }
367 
368  bool transient_error = false;
369  if (ExtractEncryptionKey(enable_key_rotation,
370  widevine_classic,
371  response,
372  &transient_error))
373  return Status::OK;
374 
375  if (!transient_error) {
376  return Status(
377  error::SERVER_ERROR,
378  "Failed to extract encryption key from '" + response + "'.");
379  }
380  } else if (status.error_code() != error::TIME_OUT) {
381  return status;
382  }
383 
384  // Exponential backoff.
385  if (i != kNumTransientErrorRetries - 1) {
386  base::PlatformThread::Sleep(
387  base::TimeDelta::FromMilliseconds(sleep_duration));
388  sleep_duration *= 2;
389  }
390  }
391  return Status(error::SERVER_ERROR,
392  "Failed to recover from server internal error.");
393 }
394 
395 void WidevineKeySource::FillRequest(bool enable_key_rotation,
396  uint32_t first_crypto_period_index,
397  std::string* request) {
398  DCHECK(request);
399  DCHECK(!request_dict_.empty());
400 
401  // Build tracks.
402  base::ListValue* tracks = new base::ListValue();
403 
404  base::DictionaryValue* track_sd = new base::DictionaryValue();
405  track_sd->SetString("type", "SD");
406  tracks->Append(track_sd);
407  base::DictionaryValue* track_hd = new base::DictionaryValue();
408  track_hd->SetString("type", "HD");
409  tracks->Append(track_hd);
410  base::DictionaryValue* track_audio = new base::DictionaryValue();
411  track_audio->SetString("type", "AUDIO");
412  tracks->Append(track_audio);
413 
414  request_dict_.Set("tracks", tracks);
415 
416  // Build DRM types.
417  base::ListValue* drm_types = new base::ListValue();
418  drm_types->AppendString("WIDEVINE");
419  request_dict_.Set("drm_types", drm_types);
420 
421  // Build key rotation fields.
422  if (enable_key_rotation) {
423  // Javascript/JSON does not support int64_t or unsigned numbers. Use double
424  // instead as 32-bit integer can be lossless represented using double.
425  request_dict_.SetDouble("first_crypto_period_index",
426  first_crypto_period_index);
427  request_dict_.SetInteger("crypto_period_count", crypto_period_count_);
428  }
429 
430  base::JSONWriter::WriteWithOptions(
431  request_dict_,
432  // Write doubles that have no fractional part as a normal integer, i.e.
433  // without using exponential notation or appending a '.0'.
434  base::JSONWriter::OPTIONS_OMIT_DOUBLE_TYPE_PRESERVATION, request);
435 }
436 
437 Status WidevineKeySource::GenerateKeyMessage(const std::string& request,
438  std::string* message) {
439  DCHECK(message);
440 
441  std::string request_base64_string;
442  base::Base64Encode(request, &request_base64_string);
443 
444  base::DictionaryValue request_dict;
445  request_dict.SetString("request", request_base64_string);
446 
447  // Sign the request.
448  if (signer_) {
449  std::string signature;
450  if (!signer_->GenerateSignature(request, &signature))
451  return Status(error::INTERNAL_ERROR, "Signature generation failed.");
452 
453  std::string signature_base64_string;
454  base::Base64Encode(signature, &signature_base64_string);
455 
456  request_dict.SetString("signature", signature_base64_string);
457  request_dict.SetString("signer", signer_->signer_name());
458  }
459 
460  base::JSONWriter::Write(request_dict, message);
461  return Status::OK;
462 }
463 
464 bool WidevineKeySource::DecodeResponse(
465  const std::string& raw_response,
466  std::string* response) {
467  DCHECK(response);
468 
469  // Extract base64 formatted response from JSON formatted raw response.
470  // TODO(kqyang): Remove ".release()" when base is updated to use unique_ptr.
471  std::unique_ptr<base::Value> root(
472  base::JSONReader::Read(raw_response).release());
473  if (!root) {
474  LOG(ERROR) << "'" << raw_response << "' is not in JSON format.";
475  return false;
476  }
477  const base::DictionaryValue* response_dict = NULL;
478  RCHECK(root->GetAsDictionary(&response_dict));
479 
480  std::string response_base64_string;
481  RCHECK(response_dict->GetString("response", &response_base64_string));
482  RCHECK(base::Base64Decode(response_base64_string, response));
483  return true;
484 }
485 
486 bool WidevineKeySource::ExtractEncryptionKey(
487  bool enable_key_rotation,
488  bool widevine_classic,
489  const std::string& response,
490  bool* transient_error) {
491  DCHECK(transient_error);
492  *transient_error = false;
493 
494  // TODO(kqyang): Remove ".release()" when base is updated to use unique_ptr.
495  std::unique_ptr<base::Value> root(base::JSONReader::Read(response).release());
496  if (!root) {
497  LOG(ERROR) << "'" << response << "' is not in JSON format.";
498  return false;
499  }
500 
501  const base::DictionaryValue* license_dict = NULL;
502  RCHECK(root->GetAsDictionary(&license_dict));
503 
504  std::string license_status;
505  RCHECK(license_dict->GetString("status", &license_status));
506  if (license_status != kLicenseStatusOK) {
507  LOG(ERROR) << "Received non-OK license response: " << response;
508  *transient_error = (license_status == kLicenseStatusTransientError);
509  return false;
510  }
511 
512  const base::ListValue* tracks;
513  RCHECK(license_dict->GetList("tracks", &tracks));
514  // Should have at least one track per crypto_period.
515  RCHECK(enable_key_rotation ? tracks->GetSize() >= 1 * crypto_period_count_
516  : tracks->GetSize() >= 1);
517 
518  int current_crypto_period_index = first_crypto_period_index_;
519 
520  EncryptionKeyMap encryption_key_map;
521  for (size_t i = 0; i < tracks->GetSize(); ++i) {
522  const base::DictionaryValue* track_dict;
523  RCHECK(tracks->GetDictionary(i, &track_dict));
524 
525  if (enable_key_rotation) {
526  int crypto_period_index;
527  RCHECK(
528  track_dict->GetInteger("crypto_period_index", &crypto_period_index));
529  if (crypto_period_index != current_crypto_period_index) {
530  if (crypto_period_index != current_crypto_period_index + 1) {
531  LOG(ERROR) << "Expecting crypto period index "
532  << current_crypto_period_index << " or "
533  << current_crypto_period_index + 1 << "; Seen "
534  << crypto_period_index << " at track " << i;
535  return false;
536  }
537  if (!PushToKeyPool(&encryption_key_map))
538  return false;
539  ++current_crypto_period_index;
540  }
541  }
542 
543  std::string track_type_str;
544  RCHECK(track_dict->GetString("type", &track_type_str));
545  TrackType track_type = GetTrackTypeFromString(track_type_str);
546  DCHECK_NE(TRACK_TYPE_UNKNOWN, track_type);
547  RCHECK(encryption_key_map.find(track_type) == encryption_key_map.end());
548 
549  std::unique_ptr<EncryptionKey> encryption_key(new EncryptionKey());
550 
551  if (!GetKeyFromTrack(*track_dict, &encryption_key->key))
552  return false;
553 
554  // Get key ID and PSSH data for CENC content only.
555  if (!widevine_classic) {
556  if (!GetKeyIdFromTrack(*track_dict, &encryption_key->key_id))
557  return false;
558 
559  ProtectionSystemSpecificInfo info;
560  info.add_key_id(encryption_key->key_id);
561  info.set_system_id(kWidevineSystemId, arraysize(kWidevineSystemId));
562  info.set_pssh_box_version(0);
563 
564  std::vector<uint8_t> pssh_data;
565  if (!GetPsshDataFromTrack(*track_dict, &pssh_data))
566  return false;
567  info.set_pssh_data(pssh_data);
568 
569  encryption_key->key_system_info.push_back(info);
570  }
571  encryption_key_map[track_type] = encryption_key.release();
572  }
573 
574  // If the flag exists, create a common system ID PSSH box that contains the
575  // key IDs of all the keys.
576  if (add_common_pssh_ && !widevine_classic) {
577  std::set<std::vector<uint8_t>> key_ids;
578  for (const EncryptionKeyMap::value_type& pair : encryption_key_map) {
579  key_ids.insert(pair.second->key_id);
580  }
581 
582  // Create a common system PSSH box.
583  ProtectionSystemSpecificInfo info;
584  info.set_system_id(kCommonSystemId, arraysize(kCommonSystemId));
585  info.set_pssh_box_version(1);
586  for (const std::vector<uint8_t>& key_id : key_ids) {
587  info.add_key_id(key_id);
588  }
589 
590  for (const EncryptionKeyMap::value_type& pair : encryption_key_map) {
591  pair.second->key_system_info.push_back(info);
592  }
593  }
594 
595  DCHECK(!encryption_key_map.empty());
596  if (!enable_key_rotation) {
597  encryption_key_map_ = encryption_key_map;
598  return true;
599  }
600  return PushToKeyPool(&encryption_key_map);
601 }
602 
603 bool WidevineKeySource::PushToKeyPool(
604  EncryptionKeyMap* encryption_key_map) {
605  DCHECK(key_pool_);
606  DCHECK(encryption_key_map);
607  Status status =
608  key_pool_->Push(scoped_refptr<RefCountedEncryptionKeyMap>(
609  new RefCountedEncryptionKeyMap(encryption_key_map)),
610  kInfiniteTimeout);
611  encryption_key_map->clear();
612  if (!status.ok()) {
613  DCHECK_EQ(error::STOPPED, status.error_code());
614  return false;
615  }
616  return true;
617 }
618 
619 } // namespace media
620 } // namespace shaka
Status FetchKeys(const std::vector< uint8_t > &pssh_box) override
Status GetCryptoPeriodKey(uint32_t crypto_period_index, TrackType track_type, EncryptionKey *key) override
Status GetKey(TrackType track_type, EncryptionKey *key) override
static std::string TrackTypeToString(TrackType track_type)
Convert TrackType to string.
Definition: key_source.cc:33
static TrackType GetTrackTypeFromString(const std::string &track_type_string)
Convert string representation of track type to enum representation.
Definition: key_source.cc:19
void set_key_fetcher(std::unique_ptr< KeyFetcher > key_fetcher)
WidevineKeySource(const std::string &server_url, bool add_common_pssh)
void set_signer(std::unique_ptr< RequestSigner > signer)
bool Parse(const uint8_t *data, size_t data_size)