2014-02-14 23:21:05 +00:00
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// Copyright 2014 Google Inc. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file or at
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// https://developers.google.com/open-source/licenses/bsd
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2013-11-12 20:34:58 +00:00
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#include "media/base/encryptor_source.h"
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2014-04-15 22:18:26 +00:00
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#include "base/strings/string_number_conversions.h"
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2014-01-13 19:34:08 +00:00
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#include "media/base/aes_encryptor.h"
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2014-04-15 22:18:26 +00:00
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#include "media/base/buffer_writer.h"
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2014-01-13 19:34:08 +00:00
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2013-11-12 20:34:58 +00:00
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namespace {
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2014-01-13 19:34:08 +00:00
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const uint8 kWidevineSystemId[] = {0xed, 0xef, 0x8b, 0xa9, 0x79, 0xd6,
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0x4a, 0xce, 0xa3, 0xc8, 0x27, 0xdc,
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0xd5, 0x1d, 0x21, 0xed};
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2013-11-12 20:34:58 +00:00
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} // namespace
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namespace media {
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2014-04-15 22:18:26 +00:00
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EncryptionKey::EncryptionKey() {}
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EncryptionKey::~EncryptionKey() {}
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2013-11-12 20:34:58 +00:00
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EncryptorSource::~EncryptorSource() {}
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2014-04-15 22:18:26 +00:00
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Status EncryptorSource::GetKey(TrackType track_type, EncryptionKey* key) {
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DCHECK(key);
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DCHECK(encryption_key_);
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*key = *encryption_key_;
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return Status::OK;
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}
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scoped_ptr<EncryptorSource> EncryptorSource::CreateFromHexStrings(
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const std::string& key_id_hex,
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const std::string& key_hex,
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const std::string& pssh_data_hex,
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const std::string& iv_hex) {
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scoped_ptr<EncryptionKey> encryption_key(new EncryptionKey());
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if (!base::HexStringToBytes(key_id_hex, &encryption_key->key_id)) {
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LOG(ERROR) << "Cannot parse key_id_hex " << key_id_hex;
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return scoped_ptr<EncryptorSource>();
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}
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if (!base::HexStringToBytes(key_hex, &encryption_key->key)) {
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LOG(ERROR) << "Cannot parse key_hex " << key_hex;
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return scoped_ptr<EncryptorSource>();
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}
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std::vector<uint8> pssh_data;
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if (!base::HexStringToBytes(pssh_data_hex, &pssh_data)) {
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LOG(ERROR) << "Cannot parse pssh_hex " << pssh_data_hex;
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return scoped_ptr<EncryptorSource>();
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}
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if (!iv_hex.empty()) {
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if (!base::HexStringToBytes(iv_hex, &encryption_key->iv)) {
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LOG(ERROR) << "Cannot parse iv_hex " << iv_hex;
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return scoped_ptr<EncryptorSource>();
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}
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}
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encryption_key->pssh = PsshBoxFromPsshData(pssh_data);
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return scoped_ptr<EncryptorSource>(
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new EncryptorSource(encryption_key.Pass()));
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}
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EncryptorSource::TrackType EncryptorSource::GetTrackTypeFromString(
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const std::string& track_type_string) {
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if (track_type_string == "SD")
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return TRACK_TYPE_SD;
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if (track_type_string == "HD")
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return TRACK_TYPE_HD;
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if (track_type_string == "AUDIO")
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return TRACK_TYPE_AUDIO;
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LOG(WARNING) << "Unexpected track type: " << track_type_string;
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return TRACK_TYPE_UNKNOWN;
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}
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std::string EncryptorSource::TrackTypeToString(TrackType track_type) {
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switch (track_type) {
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case TRACK_TYPE_SD:
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return "SD";
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case TRACK_TYPE_HD:
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return "HD";
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case TRACK_TYPE_AUDIO:
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return "AUDIO";
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default:
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NOTIMPLEMENTED() << "Unknown track type: " << track_type;
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return "UNKNOWN";
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2014-01-13 19:34:08 +00:00
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}
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2014-04-15 22:18:26 +00:00
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}
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std::vector<uint8> EncryptorSource::PsshBoxFromPsshData(
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const std::vector<uint8>& pssh_data) {
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const uint8 kPsshFourCC[] = {'p', 's', 's', 'h'};
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const uint32 kVersionAndFlags = 0;
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const uint32 pssh_data_size = pssh_data.size();
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const uint32 total_size =
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sizeof(total_size) + sizeof(kPsshFourCC) + sizeof(kVersionAndFlags) +
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sizeof(kWidevineSystemId) + sizeof(pssh_data_size) + pssh_data_size;
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BufferWriter writer;
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writer.AppendInt(total_size);
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writer.AppendArray(kPsshFourCC, sizeof(kPsshFourCC));
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writer.AppendInt(kVersionAndFlags);
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writer.AppendArray(kWidevineSystemId, sizeof(kWidevineSystemId));
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writer.AppendInt(pssh_data_size);
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writer.AppendVector(pssh_data);
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return std::vector<uint8>(writer.Buffer(), writer.Buffer() + writer.Size());
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}
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EncryptorSource::EncryptorSource() {}
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EncryptorSource::EncryptorSource(scoped_ptr<EncryptionKey> encryption_key)
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: encryption_key_(encryption_key.Pass()) {
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DCHECK(encryption_key_);
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2014-01-13 19:34:08 +00:00
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}
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2013-11-12 20:34:58 +00:00
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} // namespace media
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