// Copyright (c) 2011 The Chromium Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE file. #include "remoting/base/decoder_vp8.h" #include "media/base/media.h" #include "media/base/yuv_convert.h" #include "remoting/base/util.h" extern "C" { #define VPX_CODEC_DISABLE_COMPAT 1 #include "third_party/libvpx/libvpx.h" } namespace remoting { DecoderVp8::DecoderVp8() : state_(kUninitialized), codec_(NULL) { } DecoderVp8::~DecoderVp8() { if (codec_) { vpx_codec_err_t ret = vpx_codec_destroy(codec_); CHECK(ret == VPX_CODEC_OK) << "Failed to destroy codec"; } delete codec_; } void DecoderVp8::Initialize(scoped_refptr frame) { DCHECK_EQ(kUninitialized, state_); if (frame->format() != media::VideoFrame::RGB32) { LOG(INFO) << "DecoderVp8 only supports RGB32 as output"; state_ = kError; return; } frame_ = frame; state_ = kReady; } Decoder::DecodeResult DecoderVp8::DecodePacket(const VideoPacket* packet) { DCHECK_EQ(kReady, state_); // Initialize the codec as needed. if (!codec_) { codec_ = new vpx_codec_ctx_t(); // TODO(hclam): Scale the number of threads with number of cores of the // machine. vpx_codec_dec_cfg config; config.w = 0; config.h = 0; config.threads = 2; vpx_codec_err_t ret = vpx_codec_dec_init( codec_, vpx_codec_vp8_dx(), &config, 0); if (ret != VPX_CODEC_OK) { LOG(INFO) << "Cannot initialize codec."; delete codec_; codec_ = NULL; state_ = kError; return DECODE_ERROR; } } // Do the actual decoding. vpx_codec_err_t ret = vpx_codec_decode( codec_, reinterpret_cast(packet->data().data()), packet->data().size(), NULL, 0); if (ret != VPX_CODEC_OK) { LOG(INFO) << "Decoding failed:" << vpx_codec_err_to_string(ret) << "\n" << "Details: " << vpx_codec_error(codec_) << "\n" << vpx_codec_error_detail(codec_); return DECODE_ERROR; } // Gets the decoded data. vpx_codec_iter_t iter = NULL; vpx_image_t* image = vpx_codec_get_frame(codec_, &iter); if (!image) { LOG(INFO) << "No video frame decoded"; return DECODE_ERROR; } // Perform YUV conversion. uint8* data_start = frame_->data(media::VideoFrame::kRGBPlane); int stride = frame_->stride(media::VideoFrame::kRGBPlane); // Propogate updated rects. updated_rects_.clear(); for (int i = 0; i < packet->dirty_rects_size(); ++i) { gfx::Rect r = gfx::Rect(packet->dirty_rects(i).x(), packet->dirty_rects(i).y(), packet->dirty_rects(i).width(), packet->dirty_rects(i).height()); // Perform color space conversion only on the updated rectangle. ConvertYUVToRGB32WithRect(image->planes[0], image->planes[1], image->planes[2], data_start, r.x(), r.y(), r.width(), r.height(), image->stride[0], image->stride[1], stride); updated_rects_.push_back(r); } return DECODE_DONE; } void DecoderVp8::GetUpdatedRects(UpdatedRects* rects) { rects->swap(updated_rects_); } void DecoderVp8::Reset() { frame_ = NULL; state_ = kUninitialized; } bool DecoderVp8::IsReadyForData() { return state_ == kReady; } VideoPacketFormat::Encoding DecoderVp8::Encoding() { return VideoPacketFormat::ENCODING_VP8; } } // namespace remoting