Decklink cards accept 2, 8 or 16 audio channels. If obs audio output is setup to n channels ( 8 >= n > 2), and the decklink card captures n channels, one needs to squash the silent channels (n+1, .., 8) or sampling issues occur. This had been done on windows but is required also on macOs and linux. The commit adds the fix for macOS and linux. Some code factoring has also been done. Closes obsproject/obs-studio#1350
403 lines
9.5 KiB
C++
403 lines
9.5 KiB
C++
#include "decklink-device-instance.hpp"
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#include "audio-repack.hpp"
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#include <util/platform.h>
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#include <util/threading.h>
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#include <sstream>
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#define LOG(level, message, ...) blog(level, "%s: " message, \
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obs_source_get_name(this->decklink->GetSource()), ##__VA_ARGS__)
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static inline enum video_format ConvertPixelFormat(BMDPixelFormat format)
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{
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switch (format) {
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case bmdFormat8BitBGRA: return VIDEO_FORMAT_BGRX;
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default:
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case bmdFormat8BitYUV:;
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}
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return VIDEO_FORMAT_UYVY;
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}
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static inline int ConvertChannelFormat(speaker_layout format)
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{
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switch (format) {
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case SPEAKERS_2POINT1:
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case SPEAKERS_4POINT0:
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case SPEAKERS_4POINT1:
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case SPEAKERS_5POINT1:
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case SPEAKERS_7POINT1:
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return 8;
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default:
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case SPEAKERS_STEREO:
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return 2;
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}
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}
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static inline audio_repack_mode_t ConvertRepackFormat(speaker_layout format)
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{
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switch (format) {
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case SPEAKERS_2POINT1:
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return repack_mode_8to3ch;
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case SPEAKERS_4POINT0:
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return repack_mode_8to4ch;
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case SPEAKERS_4POINT1:
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return repack_mode_8to5ch;
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case SPEAKERS_5POINT1:
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return repack_mode_8to6ch;
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case SPEAKERS_7POINT1:
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default:
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assert(false && "No repack requested");
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return (audio_repack_mode_t)-1;
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}
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}
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DeckLinkDeviceInstance::DeckLinkDeviceInstance(DeckLink *decklink_,
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DeckLinkDevice *device_) :
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currentFrame(), currentPacket(), decklink(decklink_), device(device_)
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{
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currentPacket.samples_per_sec = 48000;
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currentPacket.speakers = SPEAKERS_STEREO;
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currentPacket.format = AUDIO_FORMAT_16BIT;
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}
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DeckLinkDeviceInstance::~DeckLinkDeviceInstance()
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{
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}
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void DeckLinkDeviceInstance::HandleAudioPacket(
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IDeckLinkAudioInputPacket *audioPacket,
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const uint64_t timestamp)
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{
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if (audioPacket == nullptr)
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return;
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void *bytes;
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if (audioPacket->GetBytes(&bytes) != S_OK) {
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LOG(LOG_WARNING, "Failed to get audio packet data");
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return;
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}
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const uint32_t frameCount = (uint32_t)audioPacket->GetSampleFrameCount();
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currentPacket.frames = frameCount;
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currentPacket.timestamp = timestamp;
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if (decklink && !decklink->buffering) {
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currentPacket.timestamp = os_gettime_ns();
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currentPacket.timestamp -=
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(uint64_t)frameCount * 1000000000ULL /
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(uint64_t)currentPacket.samples_per_sec;
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}
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int maxdevicechannel = device->GetMaxChannel();
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if (channelFormat != SPEAKERS_UNKNOWN &&
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channelFormat != SPEAKERS_MONO &&
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channelFormat != SPEAKERS_STEREO &&
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channelFormat != SPEAKERS_7POINT1 &&
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maxdevicechannel >= 8) {
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if (audioRepacker->repack((uint8_t *)bytes, frameCount) < 0) {
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LOG(LOG_ERROR, "Failed to convert audio packet data");
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return;
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}
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currentPacket.data[0] = (*audioRepacker)->packet_buffer;
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} else {
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currentPacket.data[0] = (uint8_t *)bytes;
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}
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nextAudioTS = timestamp +
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((uint64_t)frameCount * 1000000000ULL / 48000ULL) + 1;
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obs_source_output_audio(decklink->GetSource(), ¤tPacket);
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}
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void DeckLinkDeviceInstance::HandleVideoFrame(
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IDeckLinkVideoInputFrame *videoFrame, const uint64_t timestamp)
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{
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if (videoFrame == nullptr)
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return;
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void *bytes;
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if (videoFrame->GetBytes(&bytes) != S_OK) {
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LOG(LOG_WARNING, "Failed to get video frame data");
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return;
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}
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currentFrame.data[0] = (uint8_t *)bytes;
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currentFrame.linesize[0] = (uint32_t)videoFrame->GetRowBytes();
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currentFrame.width = (uint32_t)videoFrame->GetWidth();
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currentFrame.height = (uint32_t)videoFrame->GetHeight();
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currentFrame.timestamp = timestamp;
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obs_source_output_video(decklink->GetSource(), ¤tFrame);
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}
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void DeckLinkDeviceInstance::FinalizeStream()
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{
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input->SetCallback(nullptr);
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input->DisableVideoInput();
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if (channelFormat != SPEAKERS_UNKNOWN)
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input->DisableAudioInput();
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if (audioRepacker != nullptr)
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{
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delete audioRepacker;
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audioRepacker = nullptr;
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}
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mode = nullptr;
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}
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//#define LOG_SETUP_VIDEO_FORMAT 1
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void DeckLinkDeviceInstance::SetupVideoFormat(DeckLinkDeviceMode *mode_)
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{
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if (mode_ == nullptr)
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return;
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currentFrame.format = ConvertPixelFormat(pixelFormat);
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colorSpace = decklink->GetColorSpace();
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if (colorSpace == VIDEO_CS_DEFAULT) {
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const BMDDisplayModeFlags flags = mode_->GetDisplayModeFlags();
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if (flags & bmdDisplayModeColorspaceRec709)
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activeColorSpace = VIDEO_CS_709;
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else if (flags & bmdDisplayModeColorspaceRec601)
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activeColorSpace = VIDEO_CS_601;
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else
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activeColorSpace = VIDEO_CS_DEFAULT;
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} else {
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activeColorSpace = colorSpace;
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}
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colorRange = decklink->GetColorRange();
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currentFrame.full_range = colorRange == VIDEO_RANGE_FULL;
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video_format_get_parameters(activeColorSpace, colorRange,
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currentFrame.color_matrix, currentFrame.color_range_min,
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currentFrame.color_range_max);
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#ifdef LOG_SETUP_VIDEO_FORMAT
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LOG(LOG_INFO, "Setup video format: %s, %s, %s",
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pixelFormat == bmdFormat8BitYUV ? "YUV" : "RGB",
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activeColorSpace == VIDEO_CS_709 ? "BT.709" : "BT.601",
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colorRange == VIDEO_RANGE_FULL ? "full" : "limited");
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#endif
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}
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bool DeckLinkDeviceInstance::StartCapture(DeckLinkDeviceMode *mode_)
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{
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if (mode != nullptr)
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return false;
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if (mode_ == nullptr)
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return false;
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LOG(LOG_INFO, "Starting capture...");
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if (!device->GetInput(&input))
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return false;
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BMDVideoInputFlags flags;
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bool isauto = mode_->GetName() == "Auto";
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if (isauto) {
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displayMode = bmdModeNTSC;
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pixelFormat = bmdFormat8BitYUV;
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flags = bmdVideoInputEnableFormatDetection;
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} else {
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displayMode = mode_->GetDisplayMode();
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pixelFormat = decklink->GetPixelFormat();
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flags = bmdVideoInputFlagDefault;
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}
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const HRESULT videoResult = input->EnableVideoInput(displayMode,
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pixelFormat, flags);
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if (videoResult != S_OK) {
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LOG(LOG_ERROR, "Failed to enable video input");
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return false;
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}
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SetupVideoFormat(mode_);
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channelFormat = decklink->GetChannelFormat();
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currentPacket.speakers = channelFormat;
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int maxdevicechannel = device->GetMaxChannel();
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if (channelFormat != SPEAKERS_UNKNOWN) {
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const int channel = ConvertChannelFormat(channelFormat);
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const HRESULT audioResult = input->EnableAudioInput(
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bmdAudioSampleRate48kHz, bmdAudioSampleType16bitInteger,
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channel);
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if (audioResult != S_OK)
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LOG(LOG_WARNING, "Failed to enable audio input; continuing...");
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if (channelFormat != SPEAKERS_UNKNOWN &&
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channelFormat != SPEAKERS_MONO &&
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channelFormat != SPEAKERS_STEREO &&
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channelFormat != SPEAKERS_7POINT1 &&
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maxdevicechannel >= 8) {
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const audio_repack_mode_t repack_mode = ConvertRepackFormat
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(channelFormat);
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audioRepacker = new AudioRepacker(repack_mode);
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}
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}
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if (input->SetCallback(this) != S_OK) {
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LOG(LOG_ERROR, "Failed to set callback");
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FinalizeStream();
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return false;
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}
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if (input->StartStreams() != S_OK) {
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LOG(LOG_ERROR, "Failed to start streams");
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FinalizeStream();
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return false;
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}
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mode = mode_;
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return true;
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}
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bool DeckLinkDeviceInstance::StopCapture(void)
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{
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if (mode == nullptr || input == nullptr)
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return false;
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LOG(LOG_INFO, "Stopping capture of '%s'...",
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GetDevice()->GetDisplayName().c_str());
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input->StopStreams();
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FinalizeStream();
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return true;
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}
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#define TIME_BASE 1000000000
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HRESULT STDMETHODCALLTYPE DeckLinkDeviceInstance::VideoInputFrameArrived(
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IDeckLinkVideoInputFrame *videoFrame,
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IDeckLinkAudioInputPacket *audioPacket)
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{
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BMDTimeValue videoTS = 0;
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BMDTimeValue videoDur = 0;
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BMDTimeValue audioTS = 0;
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if (videoFrame) {
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videoFrame->GetStreamTime(&videoTS, &videoDur, TIME_BASE);
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lastVideoTS = (uint64_t)videoTS;
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}
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if (audioPacket) {
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BMDTimeValue newAudioTS = 0;
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int64_t diff;
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audioPacket->GetPacketTime(&newAudioTS, TIME_BASE);
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audioTS = newAudioTS + audioOffset;
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diff = (int64_t)audioTS - (int64_t)nextAudioTS;
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if (diff > 10000000LL) {
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audioOffset -= diff;
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audioTS = newAudioTS + audioOffset;
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} else if (diff < -1000000) {
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audioOffset = 0;
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audioTS = newAudioTS;
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}
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}
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if (videoFrame && videoTS >= 0)
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HandleVideoFrame(videoFrame, (uint64_t)videoTS);
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if (audioPacket && audioTS >= 0)
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HandleAudioPacket(audioPacket, (uint64_t)audioTS);
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return S_OK;
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}
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HRESULT STDMETHODCALLTYPE DeckLinkDeviceInstance::VideoInputFormatChanged(
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BMDVideoInputFormatChangedEvents events,
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IDeckLinkDisplayMode *newMode,
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BMDDetectedVideoInputFormatFlags detectedSignalFlags)
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{
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input->PauseStreams();
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mode->SetMode(newMode);
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if (events & bmdVideoInputDisplayModeChanged) {
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displayMode = mode->GetDisplayMode();
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}
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if (events & bmdVideoInputColorspaceChanged) {
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switch (detectedSignalFlags) {
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case bmdDetectedVideoInputRGB444:
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pixelFormat = bmdFormat8BitBGRA;
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break;
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default:
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case bmdDetectedVideoInputYCbCr422:
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pixelFormat = bmdFormat8BitYUV;
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break;
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}
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}
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const HRESULT videoResult = input->EnableVideoInput(displayMode,
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pixelFormat, bmdVideoInputEnableFormatDetection);
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if (videoResult != S_OK) {
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LOG(LOG_ERROR, "Failed to enable video input");
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input->StopStreams();
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FinalizeStream();
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return E_FAIL;
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}
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SetupVideoFormat(mode);
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input->FlushStreams();
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input->StartStreams();
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return S_OK;
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}
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ULONG STDMETHODCALLTYPE DeckLinkDeviceInstance::AddRef(void)
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{
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return os_atomic_inc_long(&refCount);
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}
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HRESULT STDMETHODCALLTYPE DeckLinkDeviceInstance::QueryInterface(REFIID iid,
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LPVOID *ppv)
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{
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HRESULT result = E_NOINTERFACE;
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*ppv = nullptr;
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CFUUIDBytes unknown = CFUUIDGetUUIDBytes(IUnknownUUID);
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if (memcmp(&iid, &unknown, sizeof(REFIID)) == 0) {
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*ppv = this;
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AddRef();
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result = S_OK;
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} else if (memcmp(&iid, &IID_IDeckLinkNotificationCallback,
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sizeof(REFIID)) == 0) {
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*ppv = (IDeckLinkNotificationCallback *)this;
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AddRef();
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result = S_OK;
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}
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return result;
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}
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ULONG STDMETHODCALLTYPE DeckLinkDeviceInstance::Release(void)
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{
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const long newRefCount = os_atomic_dec_long(&refCount);
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if (newRefCount == 0) {
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delete this;
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return 0;
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}
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return newRefCount;
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}
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