/* * Copyright (c) 2018 The WebRTC project authors. All Rights Reserved. * * Use of this source code is governed by a BSD-style license * that can be found in the LICENSE file in the root of the source * tree. An additional intellectual property rights grant can be found * in the file PATENTS. All contributing project authors may * be found in the AUTHORS file in the root of the source tree. */ #ifndef TEST_ENCODER_PROXY_FACTORY_H_ #define TEST_ENCODER_PROXY_FACTORY_H_ #include #include #include "api/video_codecs/video_encoder.h" #include "api/video_codecs/video_encoder_factory.h" #include "rtc_base/ptr_util.h" namespace webrtc { namespace test { // An encoder factory with a single underlying VideoEncoder object, // intended for test purposes. Each call to CreateVideoEncoder returns // a proxy for the same encoder, typically an instance of FakeEncoder. class EncoderProxyFactory final : public VideoEncoderFactory { public: explicit EncoderProxyFactory(VideoEncoder* encoder) : encoder_(encoder) { codec_info_.is_hardware_accelerated = false; codec_info_.has_internal_source = false; } // Unused by tests. std::vector GetSupportedFormats() const override { RTC_NOTREACHED(); return {}; } CodecInfo QueryVideoEncoder(const SdpVideoFormat& format) const override { return codec_info_; } std::unique_ptr CreateVideoEncoder( const SdpVideoFormat& format) override { return rtc::MakeUnique(encoder_); } void SetIsHardwareAccelerated(bool is_hardware_accelerated) { codec_info_.is_hardware_accelerated = is_hardware_accelerated; } void SetHasInternalSource(bool has_internal_source) { codec_info_.has_internal_source = has_internal_source; } private: // Wrapper class, since CreateVideoEncoder needs to surrender // ownership to the object it returns. class EncoderProxy final : public VideoEncoder { public: explicit EncoderProxy(VideoEncoder* encoder) : encoder_(encoder) {} private: int32_t Encode(const VideoFrame& input_image, const CodecSpecificInfo* codec_specific_info, const std::vector* frame_types) override { return encoder_->Encode(input_image, codec_specific_info, frame_types); } int32_t InitEncode(const VideoCodec* config, int32_t number_of_cores, size_t max_payload_size) override { return encoder_->InitEncode(config, number_of_cores, max_payload_size); } VideoEncoder::ScalingSettings GetScalingSettings() const override { return encoder_->GetScalingSettings(); } int32_t RegisterEncodeCompleteCallback( EncodedImageCallback* callback) override { return encoder_->RegisterEncodeCompleteCallback(callback); } int32_t Release() override { return encoder_->Release(); } int32_t SetChannelParameters(uint32_t packet_loss, int64_t rtt) override { return encoder_->SetChannelParameters(packet_loss, rtt); } int32_t SetRateAllocation(const VideoBitrateAllocation& rate_allocation, uint32_t framerate) override { return encoder_->SetRateAllocation(rate_allocation, framerate); } const char* ImplementationName() const override { return encoder_->ImplementationName(); } VideoEncoder* const encoder_; }; VideoEncoder* const encoder_; CodecInfo codec_info_; }; } // namespace test } // namespace webrtc #endif // TEST_ENCODER_PROXY_FACTORY_H_