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1 // Copyright 2013 The Chromium Authors. All rights reserved. | 1 // Copyright 2013 The Chromium Authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "media/base/key_systems.h" | 5 #include "media/base/key_systems.h" |
6 | 6 |
7 #include <string> | 7 #include <string> |
8 | 8 |
9 #include "base/containers/hash_tables.h" | 9 #include "base/containers/hash_tables.h" |
10 #include "base/lazy_instance.h" | 10 #include "base/lazy_instance.h" |
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67 {"vp9", EME_CODEC_WEBM_VP9}, | 67 {"vp9", EME_CODEC_WEBM_VP9}, |
68 {"vp9.0", EME_CODEC_WEBM_VP9}, | 68 {"vp9.0", EME_CODEC_WEBM_VP9}, |
69 #if defined(USE_PROPRIETARY_CODECS) | 69 #if defined(USE_PROPRIETARY_CODECS) |
70 {"mp4a", EME_CODEC_MP4_AAC}, | 70 {"mp4a", EME_CODEC_MP4_AAC}, |
71 {"avc1", EME_CODEC_MP4_AVC1}, | 71 {"avc1", EME_CODEC_MP4_AVC1}, |
72 {"avc3", EME_CODEC_MP4_AVC1} | 72 {"avc3", EME_CODEC_MP4_AVC1} |
73 #endif // defined(USE_PROPRIETARY_CODECS) | 73 #endif // defined(USE_PROPRIETARY_CODECS) |
74 }; | 74 }; |
75 | 75 |
76 static void AddClearKey(std::vector<KeySystemInfo>* concrete_key_systems) { | 76 static void AddClearKey(std::vector<KeySystemInfo>* concrete_key_systems) { |
77 KeySystemInfo info(kClearKeyKeySystem); | 77 KeySystemInfo info; |
78 info.key_system = kClearKeyKeySystem; | |
78 | 79 |
79 // On Android, Vorbis, VP8, AAC and AVC1 are supported in MediaCodec: | 80 // On Android, Vorbis, VP8, AAC and AVC1 are supported in MediaCodec: |
80 // http://developer.android.com/guide/appendix/media-formats.html | 81 // http://developer.android.com/guide/appendix/media-formats.html |
81 // VP9 support is device dependent. | 82 // VP9 support is device dependent. |
82 | 83 |
83 info.supported_init_data_types = EME_INIT_DATA_TYPE_WEBM; | 84 info.supported_init_data_types = EME_INIT_DATA_TYPE_WEBM; |
84 info.supported_codecs = EME_CODEC_WEBM_ALL; | 85 info.supported_codecs = EME_CODEC_WEBM_ALL; |
85 | 86 |
86 #if defined(OS_ANDROID) | 87 #if defined(OS_ANDROID) |
87 // Temporarily disable VP9 support for Android. | 88 // Temporarily disable VP9 support for Android. |
88 // TODO(xhwang): Use mime_util.h to query VP9 support on Android. | 89 // TODO(xhwang): Use mime_util.h to query VP9 support on Android. |
89 info.supported_codecs &= ~EME_CODEC_WEBM_VP9; | 90 info.supported_codecs &= ~EME_CODEC_WEBM_VP9; |
90 | 91 |
91 // Opus is not supported on Android yet. http://crbug.com/318436. | 92 // Opus is not supported on Android yet. http://crbug.com/318436. |
92 // TODO(sandersd): Check for platform support to set this bit. | 93 // TODO(sandersd): Check for platform support to set this bit. |
93 info.supported_codecs &= ~EME_CODEC_WEBM_OPUS; | 94 info.supported_codecs &= ~EME_CODEC_WEBM_OPUS; |
94 #endif // defined(OS_ANDROID) | 95 #endif // defined(OS_ANDROID) |
95 | 96 |
96 #if defined(USE_PROPRIETARY_CODECS) | 97 #if defined(USE_PROPRIETARY_CODECS) |
97 info.supported_init_data_types |= EME_INIT_DATA_TYPE_CENC; | 98 info.supported_init_data_types |= EME_INIT_DATA_TYPE_CENC; |
98 info.supported_codecs |= EME_CODEC_MP4_ALL; | 99 info.supported_codecs |= EME_CODEC_MP4_ALL; |
99 #endif // defined(USE_PROPRIETARY_CODECS) | 100 #endif // defined(USE_PROPRIETARY_CODECS) |
100 | 101 |
102 info.persistent_license_support = EME_SESSION_TYPE_NOT_SUPPORTED; | |
103 info.persistent_release_message_support = EME_SESSION_TYPE_NOT_SUPPORTED; | |
104 info.persistent_state_support = EME_FEATURE_NOT_SUPPORTED; | |
105 info.distinctive_identifier_support = EME_FEATURE_NOT_SUPPORTED; | |
106 | |
101 info.use_aes_decryptor = true; | 107 info.use_aes_decryptor = true; |
102 | 108 |
103 concrete_key_systems->push_back(info); | 109 concrete_key_systems->push_back(info); |
104 } | 110 } |
105 | 111 |
106 class KeySystems { | 112 class KeySystems { |
107 public: | 113 public: |
108 static KeySystems& GetInstance(); | 114 static KeySystems& GetInstance(); |
109 | 115 |
110 void UpdateIfNeeded(); | 116 void UpdateIfNeeded(); |
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124 bool is_prefixed); | 130 bool is_prefixed); |
125 | 131 |
126 std::string GetKeySystemNameForUMA(const std::string& key_system) const; | 132 std::string GetKeySystemNameForUMA(const std::string& key_system) const; |
127 | 133 |
128 bool UseAesDecryptor(const std::string& concrete_key_system); | 134 bool UseAesDecryptor(const std::string& concrete_key_system); |
129 | 135 |
130 #if defined(ENABLE_PEPPER_CDMS) | 136 #if defined(ENABLE_PEPPER_CDMS) |
131 std::string GetPepperType(const std::string& concrete_key_system); | 137 std::string GetPepperType(const std::string& concrete_key_system); |
132 #endif | 138 #endif |
133 | 139 |
140 bool IsPersistentLicenseSessionSupported( | |
141 const std::string& key_system, | |
142 bool is_permission_granted); | |
143 | |
144 bool IsPersistentReleaseMessageSessionSupported( | |
145 const std::string& key_system, | |
146 bool is_permission_granted); | |
147 | |
148 bool IsPersistentStateRequirementSupported( | |
149 const std::string& key_system, | |
150 EmeFeatureRequirement requirement, | |
151 bool is_permission_granted); | |
152 | |
153 bool IsDistinctiveIdentifierRequirementSupported( | |
154 const std::string& key_system, | |
155 EmeFeatureRequirement requirement, | |
156 bool is_permission_granted); | |
157 | |
134 void AddContainerMask(const std::string& container, uint32 mask); | 158 void AddContainerMask(const std::string& container, uint32 mask); |
135 void AddCodecMask(const std::string& codec, uint32 mask); | 159 void AddCodecMask(const std::string& codec, uint32 mask); |
136 | 160 |
137 private: | 161 private: |
138 void InitializeUMAInfo(); | 162 void InitializeUMAInfo(); |
139 | 163 |
140 void UpdateSupportedKeySystems(); | 164 void UpdateSupportedKeySystems(); |
141 | 165 |
142 void AddConcreteSupportedKeySystems( | 166 void AddConcreteSupportedKeySystems( |
143 const std::vector<KeySystemInfo>& concrete_key_systems); | 167 const std::vector<KeySystemInfo>& concrete_key_systems); |
144 | 168 |
145 void AddConcreteSupportedKeySystem( | |
146 const std::string& key_system, | |
147 bool use_aes_decryptor, | |
148 #if defined(ENABLE_PEPPER_CDMS) | |
149 const std::string& pepper_type, | |
150 #endif | |
151 SupportedInitDataTypes supported_init_data_types, | |
152 SupportedCodecs supported_codecs, | |
153 const std::string& parent_key_system); | |
154 | |
155 friend struct base::DefaultLazyInstanceTraits<KeySystems>; | 169 friend struct base::DefaultLazyInstanceTraits<KeySystems>; |
156 | 170 |
157 struct KeySystemProperties { | 171 typedef base::hash_map<std::string, KeySystemInfo> KeySystemInfoMap; |
158 KeySystemProperties() | |
159 : use_aes_decryptor(false), supported_codecs(EME_CODEC_NONE) {} | |
160 | |
161 bool use_aes_decryptor; | |
162 #if defined(ENABLE_PEPPER_CDMS) | |
163 std::string pepper_type; | |
164 #endif | |
165 SupportedInitDataTypes supported_init_data_types; | |
166 SupportedCodecs supported_codecs; | |
167 }; | |
168 | |
169 typedef base::hash_map<std::string, KeySystemProperties> | |
170 KeySystemPropertiesMap; | |
171 typedef base::hash_map<std::string, std::string> ParentKeySystemMap; | 172 typedef base::hash_map<std::string, std::string> ParentKeySystemMap; |
172 typedef base::hash_map<std::string, SupportedCodecs> ContainerCodecsMap; | 173 typedef base::hash_map<std::string, SupportedCodecs> ContainerCodecsMap; |
173 typedef base::hash_map<std::string, EmeCodec> CodecsMap; | 174 typedef base::hash_map<std::string, EmeCodec> CodecsMap; |
174 typedef base::hash_map<std::string, EmeInitDataType> InitDataTypesMap; | 175 typedef base::hash_map<std::string, EmeInitDataType> InitDataTypesMap; |
175 typedef base::hash_map<std::string, std::string> KeySystemNameForUMAMap; | 176 typedef base::hash_map<std::string, std::string> KeySystemNameForUMAMap; |
176 | 177 |
177 KeySystems(); | 178 KeySystems(); |
178 ~KeySystems() {} | 179 ~KeySystems() {} |
179 | 180 |
180 EmeInitDataType GetInitDataTypeForName( | 181 EmeInitDataType GetInitDataTypeForName( |
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195 SupportedCodecs key_system_supported_codecs) const; | 196 SupportedCodecs key_system_supported_codecs) const; |
196 | 197 |
197 // Returns true if all |codecs| are supported in |container| by checking | 198 // Returns true if all |codecs| are supported in |container| by checking |
198 // |key_system_supported_codecs|. | 199 // |key_system_supported_codecs|. |
199 bool IsSupportedContainerAndCodecs( | 200 bool IsSupportedContainerAndCodecs( |
200 const std::string& container, | 201 const std::string& container, |
201 const std::vector<std::string>& codecs, | 202 const std::vector<std::string>& codecs, |
202 SupportedCodecs key_system_supported_codecs) const; | 203 SupportedCodecs key_system_supported_codecs) const; |
203 | 204 |
204 // Map from key system string to capabilities. | 205 // Map from key system string to capabilities. |
205 KeySystemPropertiesMap concrete_key_system_map_; | 206 KeySystemInfoMap concrete_key_system_map_; |
206 | 207 |
207 // Map from parent key system to the concrete key system that should be used | 208 // Map from parent key system to the concrete key system that should be used |
208 // to represent its capabilities. | 209 // to represent its capabilities. |
209 ParentKeySystemMap parent_key_system_map_; | 210 ParentKeySystemMap parent_key_system_map_; |
210 | 211 |
211 KeySystemsSupportUMA key_systems_support_uma_; | 212 KeySystemsSupportUMA key_systems_support_uma_; |
212 | 213 |
213 InitDataTypesMap init_data_type_name_map_; | 214 InitDataTypesMap init_data_type_name_map_; |
214 ContainerCodecsMap container_to_codec_mask_map_; | 215 ContainerCodecsMap container_to_codec_mask_map_; |
215 CodecsMap codec_string_map_; | 216 CodecsMap codec_string_map_; |
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330 | 331 |
331 AddConcreteSupportedKeySystems(key_systems_info); | 332 AddConcreteSupportedKeySystems(key_systems_info); |
332 } | 333 } |
333 | 334 |
334 void KeySystems::AddConcreteSupportedKeySystems( | 335 void KeySystems::AddConcreteSupportedKeySystems( |
335 const std::vector<KeySystemInfo>& concrete_key_systems) { | 336 const std::vector<KeySystemInfo>& concrete_key_systems) { |
336 DCHECK(thread_checker_.CalledOnValidThread()); | 337 DCHECK(thread_checker_.CalledOnValidThread()); |
337 DCHECK(concrete_key_system_map_.empty()); | 338 DCHECK(concrete_key_system_map_.empty()); |
338 DCHECK(parent_key_system_map_.empty()); | 339 DCHECK(parent_key_system_map_.empty()); |
339 | 340 |
340 for (size_t i = 0; i < concrete_key_systems.size(); ++i) { | 341 for (const KeySystemInfo& info : concrete_key_systems) { |
341 const KeySystemInfo& key_system_info = concrete_key_systems[i]; | 342 DCHECK(!info.key_system.empty()); |
342 AddConcreteSupportedKeySystem(key_system_info.key_system, | 343 DCHECK_NE(info.persistent_license_support, EME_SESSION_TYPE_INVALID); |
343 key_system_info.use_aes_decryptor, | 344 DCHECK_NE(info.persistent_release_message_support, |
345 EME_SESSION_TYPE_INVALID); | |
346 DCHECK_NE(info.persistent_state_support, EME_FEATURE_INVALID); | |
ddorwin
2015/02/20 01:39:49
We need the same checks for persistent state as we
sandersd (OOO until July 31)
2015/02/20 01:46:26
Done.
| |
347 DCHECK_NE(info.distinctive_identifier_support, EME_FEATURE_INVALID); | |
348 // Never use REQUESTABLE for distinctive identifiers, use | |
349 // REQUESTABLE_WITH_PERMISSION instead. | |
350 DCHECK_NE(info.distinctive_identifier_support, | |
351 EME_FEATURE_REQUESTABLE) << "Use REQUESTABLE_WITH_PERMISSION"; | |
352 // But actually for now we only support NOT_SUPPORTED or ALWAYS_ENABLED, | |
ddorwin
2015/02/20 01:39:49
With all the complexity, a whitelist instead of a
sandersd (OOO until July 31)
2015/02/20 01:46:26
Done.
| |
353 // since there are no CDMs that implement REQUESTABLE_WITH_PERMISSION | |
354 // correctly. http://crbug.com/457482 | |
355 DCHECK_NE(info.distinctive_identifier_support, | |
356 EME_FEATURE_REQUESTABLE_WITH_PERMISSION); | |
357 if (info.persistent_state_support == EME_FEATURE_NOT_SUPPORTED) { | |
358 DCHECK_EQ(info.persistent_license_support, | |
359 EME_SESSION_TYPE_NOT_SUPPORTED); | |
360 DCHECK_EQ(info.persistent_release_message_support, | |
361 EME_SESSION_TYPE_NOT_SUPPORTED); | |
362 } | |
363 DCHECK(!IsSupportedKeySystem(info.key_system)) | |
364 << "Key system '" << info.key_system << "' already registered"; | |
365 DCHECK(!parent_key_system_map_.count(info.key_system)) | |
366 << "'" << info.key_system << "' is already registered as a parent"; | |
344 #if defined(ENABLE_PEPPER_CDMS) | 367 #if defined(ENABLE_PEPPER_CDMS) |
345 key_system_info.pepper_type, | 368 DCHECK_EQ(info.use_aes_decryptor, info.pepper_type.empty()); |
346 #endif | 369 #endif |
347 key_system_info.supported_init_data_types, | 370 |
348 key_system_info.supported_codecs, | 371 concrete_key_system_map_[info.key_system] = info; |
349 key_system_info.parent_key_system); | 372 |
373 if (!info.parent_key_system.empty()) { | |
374 DCHECK(!IsConcreteSupportedKeySystem(info.parent_key_system)) | |
375 << "Parent '" << info.parent_key_system << "' " | |
376 << "already registered concrete"; | |
377 DCHECK(!parent_key_system_map_.count(info.parent_key_system)) | |
378 << "Parent '" << info.parent_key_system << "' already registered"; | |
379 parent_key_system_map_[info.parent_key_system] = info.key_system; | |
380 } | |
350 } | 381 } |
351 } | 382 } |
352 | 383 |
353 void KeySystems::AddConcreteSupportedKeySystem( | |
354 const std::string& concrete_key_system, | |
355 bool use_aes_decryptor, | |
356 #if defined(ENABLE_PEPPER_CDMS) | |
357 const std::string& pepper_type, | |
358 #endif | |
359 SupportedInitDataTypes supported_init_data_types, | |
360 SupportedCodecs supported_codecs, | |
361 const std::string& parent_key_system) { | |
362 DCHECK(thread_checker_.CalledOnValidThread()); | |
363 DCHECK(!IsConcreteSupportedKeySystem(concrete_key_system)) | |
364 << "Key system '" << concrete_key_system << "' already registered"; | |
365 DCHECK(!parent_key_system_map_.count(concrete_key_system)) | |
366 << "'" << concrete_key_system << " is already registered as a parent"; | |
367 | |
368 KeySystemProperties properties; | |
369 properties.use_aes_decryptor = use_aes_decryptor; | |
370 #if defined(ENABLE_PEPPER_CDMS) | |
371 DCHECK_EQ(use_aes_decryptor, pepper_type.empty()); | |
372 properties.pepper_type = pepper_type; | |
373 #endif | |
374 | |
375 properties.supported_init_data_types = supported_init_data_types; | |
376 properties.supported_codecs = supported_codecs; | |
377 | |
378 concrete_key_system_map_[concrete_key_system] = properties; | |
379 | |
380 if (!parent_key_system.empty()) { | |
381 DCHECK(!IsConcreteSupportedKeySystem(parent_key_system)) | |
382 << "Parent '" << parent_key_system << "' already registered concrete"; | |
383 DCHECK(!parent_key_system_map_.count(parent_key_system)) | |
384 << "Parent '" << parent_key_system << "' already registered"; | |
385 parent_key_system_map_[parent_key_system] = concrete_key_system; | |
386 } | |
387 } | |
388 | |
389 bool KeySystems::IsConcreteSupportedKeySystem(const std::string& key_system) { | 384 bool KeySystems::IsConcreteSupportedKeySystem(const std::string& key_system) { |
390 DCHECK(thread_checker_.CalledOnValidThread()); | 385 DCHECK(thread_checker_.CalledOnValidThread()); |
391 return concrete_key_system_map_.count(key_system) != 0; | 386 return concrete_key_system_map_.count(key_system) != 0; |
392 } | 387 } |
393 | 388 |
394 bool KeySystems::IsSupportedContainer( | 389 bool KeySystems::IsSupportedContainer( |
395 const std::string& container, | 390 const std::string& container, |
396 SupportedCodecs key_system_supported_codecs) const { | 391 SupportedCodecs key_system_supported_codecs) const { |
397 DCHECK(thread_checker_.CalledOnValidThread()); | 392 DCHECK(thread_checker_.CalledOnValidThread()); |
398 DCHECK(!container.empty()); | 393 DCHECK(!container.empty()); |
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449 // Unprefixed EME only supports concrete key systems. | 444 // Unprefixed EME only supports concrete key systems. |
450 return concrete_key_system_map_.count(key_system) != 0; | 445 return concrete_key_system_map_.count(key_system) != 0; |
451 } | 446 } |
452 | 447 |
453 bool KeySystems::IsSupportedKeySystemWithInitDataType( | 448 bool KeySystems::IsSupportedKeySystemWithInitDataType( |
454 const std::string& key_system, | 449 const std::string& key_system, |
455 const std::string& init_data_type) { | 450 const std::string& init_data_type) { |
456 DCHECK(thread_checker_.CalledOnValidThread()); | 451 DCHECK(thread_checker_.CalledOnValidThread()); |
457 | 452 |
458 // Locate |key_system|. Only concrete key systems are supported in unprefixed. | 453 // Locate |key_system|. Only concrete key systems are supported in unprefixed. |
459 KeySystemPropertiesMap::const_iterator key_system_iter = | 454 KeySystemInfoMap::const_iterator key_system_iter = |
460 concrete_key_system_map_.find(key_system); | 455 concrete_key_system_map_.find(key_system); |
461 if (key_system_iter == concrete_key_system_map_.end()) | 456 if (key_system_iter == concrete_key_system_map_.end()) |
462 return false; | 457 return false; |
463 | 458 |
464 // Check |init_data_type| and |key_system| x |init_data_type|. | 459 // Check |init_data_type| and |key_system| x |init_data_type|. |
465 const KeySystemProperties& properties = key_system_iter->second; | 460 const KeySystemInfo& info = key_system_iter->second; |
466 EmeInitDataType eme_init_data_type = GetInitDataTypeForName(init_data_type); | 461 EmeInitDataType eme_init_data_type = GetInitDataTypeForName(init_data_type); |
467 return (properties.supported_init_data_types & eme_init_data_type) != 0; | 462 return (info.supported_init_data_types & eme_init_data_type) != 0; |
468 } | 463 } |
469 | 464 |
470 // TODO(sandersd): Reorganize to be more similar to | 465 // TODO(sandersd): Reorganize to be more similar to |
471 // IsKeySystemSupportedWithInitDataType(). Note that a fork may still be | 466 // IsKeySystemSupportedWithInitDataType(). Note that a fork may still be |
472 // required; http://crbug.com/417461. | 467 // required; http://crbug.com/417461. |
473 bool KeySystems::IsSupportedKeySystemWithMediaMimeType( | 468 bool KeySystems::IsSupportedKeySystemWithMediaMimeType( |
474 const std::string& mime_type, | 469 const std::string& mime_type, |
475 const std::vector<std::string>& codecs, | 470 const std::vector<std::string>& codecs, |
476 const std::string& key_system, | 471 const std::string& key_system, |
477 bool is_prefixed) { | 472 bool is_prefixed) { |
478 DCHECK(thread_checker_.CalledOnValidThread()); | 473 DCHECK(thread_checker_.CalledOnValidThread()); |
479 const bool report_to_uma = is_prefixed; | 474 const bool report_to_uma = is_prefixed; |
480 | 475 |
481 // If |is_prefixed| and |key_system| is a parent key system, use its concrete | 476 // If |is_prefixed| and |key_system| is a parent key system, use its concrete |
482 // child. | 477 // child. |
483 const std::string& concrete_key_system = is_prefixed ? | 478 const std::string& concrete_key_system = is_prefixed ? |
484 PrefixedGetConcreteKeySystemNameFor(key_system) : | 479 PrefixedGetConcreteKeySystemNameFor(key_system) : |
485 key_system; | 480 key_system; |
486 | 481 |
487 bool has_type = !mime_type.empty(); | 482 bool has_type = !mime_type.empty(); |
488 | 483 |
489 if (report_to_uma) | 484 if (report_to_uma) |
490 key_systems_support_uma_.ReportKeySystemQuery(key_system, has_type); | 485 key_systems_support_uma_.ReportKeySystemQuery(key_system, has_type); |
491 | 486 |
492 // Check key system support. | 487 // Check key system support. |
493 KeySystemPropertiesMap::const_iterator key_system_iter = | 488 KeySystemInfoMap::const_iterator key_system_iter = |
494 concrete_key_system_map_.find(concrete_key_system); | 489 concrete_key_system_map_.find(concrete_key_system); |
495 if (key_system_iter == concrete_key_system_map_.end()) | 490 if (key_system_iter == concrete_key_system_map_.end()) |
496 return false; | 491 return false; |
497 | 492 |
498 if (report_to_uma) | 493 if (report_to_uma) |
499 key_systems_support_uma_.ReportKeySystemSupport(key_system, false); | 494 key_systems_support_uma_.ReportKeySystemSupport(key_system, false); |
500 | 495 |
501 if (!has_type) { | 496 if (!has_type) { |
502 DCHECK(codecs.empty()); | 497 DCHECK(codecs.empty()); |
503 return true; | 498 return true; |
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528 key_system_name_for_uma_map_.find(key_system); | 523 key_system_name_for_uma_map_.find(key_system); |
529 if (iter == key_system_name_for_uma_map_.end()) | 524 if (iter == key_system_name_for_uma_map_.end()) |
530 return kUnknownKeySystemNameForUMA; | 525 return kUnknownKeySystemNameForUMA; |
531 | 526 |
532 return iter->second; | 527 return iter->second; |
533 } | 528 } |
534 | 529 |
535 bool KeySystems::UseAesDecryptor(const std::string& concrete_key_system) { | 530 bool KeySystems::UseAesDecryptor(const std::string& concrete_key_system) { |
536 DCHECK(thread_checker_.CalledOnValidThread()); | 531 DCHECK(thread_checker_.CalledOnValidThread()); |
537 | 532 |
538 KeySystemPropertiesMap::const_iterator key_system_iter = | 533 KeySystemInfoMap::const_iterator key_system_iter = |
539 concrete_key_system_map_.find(concrete_key_system); | 534 concrete_key_system_map_.find(concrete_key_system); |
540 if (key_system_iter == concrete_key_system_map_.end()) { | 535 if (key_system_iter == concrete_key_system_map_.end()) { |
541 DLOG(FATAL) << concrete_key_system << " is not a known concrete system"; | 536 DLOG(FATAL) << concrete_key_system << " is not a known concrete system"; |
542 return false; | 537 return false; |
543 } | 538 } |
544 | 539 |
545 return key_system_iter->second.use_aes_decryptor; | 540 return key_system_iter->second.use_aes_decryptor; |
546 } | 541 } |
547 | 542 |
548 #if defined(ENABLE_PEPPER_CDMS) | 543 #if defined(ENABLE_PEPPER_CDMS) |
549 std::string KeySystems::GetPepperType(const std::string& concrete_key_system) { | 544 std::string KeySystems::GetPepperType(const std::string& concrete_key_system) { |
550 DCHECK(thread_checker_.CalledOnValidThread()); | 545 DCHECK(thread_checker_.CalledOnValidThread()); |
551 | 546 |
552 KeySystemPropertiesMap::const_iterator key_system_iter = | 547 KeySystemInfoMap::const_iterator key_system_iter = |
553 concrete_key_system_map_.find(concrete_key_system); | 548 concrete_key_system_map_.find(concrete_key_system); |
554 if (key_system_iter == concrete_key_system_map_.end()) { | 549 if (key_system_iter == concrete_key_system_map_.end()) { |
555 DLOG(FATAL) << concrete_key_system << " is not a known concrete system"; | 550 DLOG(FATAL) << concrete_key_system << " is not a known concrete system"; |
556 return std::string(); | 551 return std::string(); |
557 } | 552 } |
558 | 553 |
559 const std::string& type = key_system_iter->second.pepper_type; | 554 const std::string& type = key_system_iter->second.pepper_type; |
560 DLOG_IF(FATAL, type.empty()) << concrete_key_system << " is not Pepper-based"; | 555 DLOG_IF(FATAL, type.empty()) << concrete_key_system << " is not Pepper-based"; |
561 return type; | 556 return type; |
562 } | 557 } |
563 #endif | 558 #endif |
564 | 559 |
560 bool KeySystems::IsPersistentLicenseSessionSupported( | |
561 const std::string& key_system, | |
562 bool is_permission_granted) { | |
563 DCHECK(thread_checker_.CalledOnValidThread()); | |
564 | |
565 KeySystemInfoMap::const_iterator key_system_iter = | |
566 concrete_key_system_map_.find(key_system); | |
567 if (key_system_iter == concrete_key_system_map_.end()) { | |
568 NOTREACHED(); | |
569 return false; | |
570 } | |
571 | |
572 switch (key_system_iter->second.persistent_license_support) { | |
573 case EME_SESSION_TYPE_INVALID: | |
574 NOTREACHED(); | |
575 return false; | |
576 case EME_SESSION_TYPE_NOT_SUPPORTED: | |
577 return false; | |
578 case EME_SESSION_TYPE_SUPPORTED_WITH_PERMISSION: | |
579 return is_permission_granted; | |
580 case EME_SESSION_TYPE_SUPPORTED: | |
581 return true; | |
582 } | |
583 | |
584 NOTREACHED(); | |
585 return false; | |
586 } | |
587 | |
588 bool KeySystems::IsPersistentReleaseMessageSessionSupported( | |
589 const std::string& key_system, | |
590 bool is_permission_granted) { | |
591 DCHECK(thread_checker_.CalledOnValidThread()); | |
592 | |
593 KeySystemInfoMap::const_iterator key_system_iter = | |
594 concrete_key_system_map_.find(key_system); | |
595 if (key_system_iter == concrete_key_system_map_.end()) { | |
596 NOTREACHED(); | |
597 return false; | |
598 } | |
599 | |
600 switch (key_system_iter->second.persistent_release_message_support) { | |
601 case EME_SESSION_TYPE_INVALID: | |
602 NOTREACHED(); | |
603 return false; | |
604 case EME_SESSION_TYPE_NOT_SUPPORTED: | |
605 return false; | |
606 case EME_SESSION_TYPE_SUPPORTED_WITH_PERMISSION: | |
607 return is_permission_granted; | |
608 case EME_SESSION_TYPE_SUPPORTED: | |
609 return true; | |
610 } | |
611 | |
612 NOTREACHED(); | |
613 return false; | |
614 } | |
615 | |
616 bool KeySystems::IsPersistentStateRequirementSupported( | |
617 const std::string& key_system, | |
618 EmeFeatureRequirement requirement, | |
619 bool is_permission_granted) { | |
620 DCHECK(thread_checker_.CalledOnValidThread()); | |
621 | |
622 KeySystemInfoMap::const_iterator key_system_iter = | |
623 concrete_key_system_map_.find(key_system); | |
624 if (key_system_iter == concrete_key_system_map_.end()) { | |
625 NOTREACHED(); | |
626 return false; | |
627 } | |
628 | |
629 switch (key_system_iter->second.persistent_state_support) { | |
630 case EME_FEATURE_INVALID: | |
631 NOTREACHED(); | |
632 return false; | |
633 case EME_FEATURE_NOT_SUPPORTED: | |
634 return requirement != EME_FEATURE_REQUIRED; | |
635 case EME_FEATURE_REQUESTABLE_WITH_PERMISSION: | |
636 return (requirement != EME_FEATURE_REQUIRED) || is_permission_granted; | |
637 case EME_FEATURE_REQUESTABLE: | |
638 return true; | |
639 case EME_FEATURE_ALWAYS_ENABLED: | |
640 // Persistent state does not require user permission, but the session | |
641 // types thet use it might. | |
642 return requirement != EME_FEATURE_NOT_ALLOWED; | |
643 } | |
644 | |
645 NOTREACHED(); | |
646 return false; | |
647 } | |
648 | |
649 bool KeySystems::IsDistinctiveIdentifierRequirementSupported( | |
650 const std::string& key_system, | |
651 EmeFeatureRequirement requirement, | |
652 bool is_permission_granted) { | |
653 DCHECK(thread_checker_.CalledOnValidThread()); | |
654 | |
655 KeySystemInfoMap::const_iterator key_system_iter = | |
656 concrete_key_system_map_.find(key_system); | |
657 if (key_system_iter == concrete_key_system_map_.end()) { | |
658 NOTREACHED(); | |
659 return false; | |
660 } | |
661 | |
662 switch (key_system_iter->second.distinctive_identifier_support) { | |
663 case EME_FEATURE_INVALID: | |
664 NOTREACHED(); | |
665 return false; | |
666 case EME_FEATURE_NOT_SUPPORTED: | |
667 return requirement != EME_FEATURE_REQUIRED; | |
668 case EME_FEATURE_REQUESTABLE_WITH_PERMISSION: | |
669 return (requirement != EME_FEATURE_REQUIRED) || is_permission_granted; | |
670 case EME_FEATURE_REQUESTABLE: | |
671 NOTREACHED(); | |
672 return true; | |
673 case EME_FEATURE_ALWAYS_ENABLED: | |
674 // Distinctive identifiers always require user permission. | |
675 return (requirement != EME_FEATURE_NOT_ALLOWED) && is_permission_granted; | |
676 } | |
677 | |
678 NOTREACHED(); | |
679 return false; | |
680 } | |
681 | |
565 void KeySystems::AddContainerMask(const std::string& container, uint32 mask) { | 682 void KeySystems::AddContainerMask(const std::string& container, uint32 mask) { |
566 DCHECK(thread_checker_.CalledOnValidThread()); | 683 DCHECK(thread_checker_.CalledOnValidThread()); |
567 DCHECK(!container_to_codec_mask_map_.count(container)); | 684 DCHECK(!container_to_codec_mask_map_.count(container)); |
568 container_to_codec_mask_map_[container] = static_cast<EmeCodec>(mask); | 685 container_to_codec_mask_map_[container] = static_cast<EmeCodec>(mask); |
569 } | 686 } |
570 | 687 |
571 void KeySystems::AddCodecMask(const std::string& codec, uint32 mask) { | 688 void KeySystems::AddCodecMask(const std::string& codec, uint32 mask) { |
572 DCHECK(thread_checker_.CalledOnValidThread()); | 689 DCHECK(thread_checker_.CalledOnValidThread()); |
573 DCHECK(!codec_string_map_.count(codec)); | 690 DCHECK(!codec_string_map_.count(codec)); |
574 codec_string_map_[codec] = static_cast<EmeCodec>(mask); | 691 codec_string_map_[codec] = static_cast<EmeCodec>(mask); |
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645 bool CanUseAesDecryptor(const std::string& concrete_key_system) { | 762 bool CanUseAesDecryptor(const std::string& concrete_key_system) { |
646 return KeySystems::GetInstance().UseAesDecryptor(concrete_key_system); | 763 return KeySystems::GetInstance().UseAesDecryptor(concrete_key_system); |
647 } | 764 } |
648 | 765 |
649 #if defined(ENABLE_PEPPER_CDMS) | 766 #if defined(ENABLE_PEPPER_CDMS) |
650 std::string GetPepperType(const std::string& concrete_key_system) { | 767 std::string GetPepperType(const std::string& concrete_key_system) { |
651 return KeySystems::GetInstance().GetPepperType(concrete_key_system); | 768 return KeySystems::GetInstance().GetPepperType(concrete_key_system); |
652 } | 769 } |
653 #endif | 770 #endif |
654 | 771 |
772 bool IsPersistentLicenseSessionSupported( | |
773 const std::string& key_system, | |
774 bool is_permission_granted) { | |
775 return KeySystems::GetInstance().IsPersistentLicenseSessionSupported( | |
776 key_system, is_permission_granted); | |
777 } | |
778 | |
779 bool IsPersistentReleaseMessageSessionSupported( | |
780 const std::string& key_system, | |
781 bool is_permission_granted) { | |
782 return KeySystems::GetInstance().IsPersistentReleaseMessageSessionSupported( | |
783 key_system, is_permission_granted); | |
784 } | |
785 | |
786 bool IsPersistentStateRequirementSupported( | |
787 const std::string& key_system, | |
788 EmeFeatureRequirement requirement, | |
789 bool is_permission_granted) { | |
790 return KeySystems::GetInstance().IsPersistentStateRequirementSupported( | |
791 key_system, requirement, is_permission_granted); | |
792 } | |
793 | |
794 bool IsDistinctiveIdentifierRequirementSupported( | |
795 const std::string& key_system, | |
796 EmeFeatureRequirement requirement, | |
797 bool is_permission_granted) { | |
798 return KeySystems::GetInstance().IsDistinctiveIdentifierRequirementSupported( | |
799 key_system, requirement, is_permission_granted); | |
800 } | |
801 | |
655 // These two functions are for testing purpose only. The declaration in the | 802 // These two functions are for testing purpose only. The declaration in the |
656 // header file is guarded by "#if defined(UNIT_TEST)" so that they can be used | 803 // header file is guarded by "#if defined(UNIT_TEST)" so that they can be used |
657 // by tests but not non-test code. However, this .cc file is compiled as part of | 804 // by tests but not non-test code. However, this .cc file is compiled as part of |
658 // "media" where "UNIT_TEST" is not defined. So we need to specify | 805 // "media" where "UNIT_TEST" is not defined. So we need to specify |
659 // "MEDIA_EXPORT" here again so that they are visible to tests. | 806 // "MEDIA_EXPORT" here again so that they are visible to tests. |
660 | 807 |
661 MEDIA_EXPORT void AddContainerMask(const std::string& container, | 808 MEDIA_EXPORT void AddContainerMask(const std::string& container, uint32 mask) { |
662 uint32 mask) { | |
663 KeySystems::GetInstance().AddContainerMask(container, mask); | 809 KeySystems::GetInstance().AddContainerMask(container, mask); |
664 } | 810 } |
665 | 811 |
666 MEDIA_EXPORT void AddCodecMask(const std::string& codec, uint32 mask) { | 812 MEDIA_EXPORT void AddCodecMask(const std::string& codec, uint32 mask) { |
667 KeySystems::GetInstance().AddCodecMask(codec, mask); | 813 KeySystems::GetInstance().AddCodecMask(codec, mask); |
668 } | 814 } |
669 | 815 |
670 } // namespace media | 816 } // namespace media |
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