4.9 KiB
4.9 KiB
AV Combiner Node — Implementation Steps
Takes video from one upstream node and audio from another, outputs both as new MXL flows. Does NOT need a sync group — audio and video run at different rates and are handled independently.
Step 1 — Frontend (dmf-studio-ui/src/nodeTypes.ts)
Add the node definition. Port IDs use video_in-in / video_out-out pattern so that
handleToPort() produces distinct keys (video_in_flow_id vs video_out_flow_id).
avcombiner: {
type: 'avcombiner',
label: 'AV Combiner',
ports: [
{ id: 'video_in-in', kind: 'video', direction: 'in' },
{ id: 'audio_in-in', kind: 'audio', direction: 'in' },
{ id: 'video_out-out', kind: 'video', direction: 'out' },
{ id: 'audio_out-out', kind: 'audio', direction: 'out' },
],
params: [],
},
Config keys the node receives:
video_in_flow_id.id— input video flow UUIDaudio_in_flow_id.id— input audio flow UUIDvideo_out_flow_id.id— output video flow UUIDaudio_out_flow_id.id— output audio flow UUID
Step 2 — CMake
Create nodes/avcombiner/CMakeLists.txt:
add_executable(dmf-node-avcombiner main.cpp)
target_compile_features(dmf-node-avcombiner PRIVATE cxx_std_20)
target_link_libraries(dmf-node-avcombiner PRIVATE dmf-shared)
install(TARGETS dmf-node-avcombiner RUNTIME DESTINATION bin)
In the root CMakeLists.txt, add alongside the other nodes:
add_subdirectory(nodes/avcombiner)
Step 3 — nodes/avcombiner/main.cpp
Structure (follow the same patterns as ndiout):
1. Check video_in_flow_id and video_out_flow_id both present — exit if not
2. Check audio_in_flow_id and audio_out_flow_id (optional — audio is optional)
3. Wait for video input flow active (mxlIsFlowActive loop, 100ms sleep)
4. Create video input reader (mxlCreateFlowReader)
5. Get video config info (mxlFlowReaderGetConfigInfo → video_stride)
6. Read video format from flow_def (dmf::read_video_flow_info(domain(), flow_id))
→ width, height, fps_num, fps_den
7. If has_audio:
Wait for audio input flow active
Create audio input reader
Read audio format from flow_def (dmf::read_audio_flow_info(domain(), flow_id))
→ sample_rate, channels, samples_per_grain
8. Create video output writer (mxlCreateFlowWriter with make_video_flow_def)
→ video_out_stride from configInfo.discrete.sliceSizes[0]
9. If has_audio:
Create audio output writer (mxlCreateFlowWriter with make_audio_flow_def)
10. Init clocks:
video_index = mxlGetCurrentIndex(&video_rate)
audio_index = mxlGetCurrentIndex(&audio_rate) // if has_audio
11. Main loop (same pattern as ndiout):
// Audio — non-blocking
if (has_audio) {
mxlFlowReaderGetSamplesNonBlocking(audio_in_reader, audio_index, samples_per_grain, &in_slice)
if OK:
mxlFlowWriterOpenSamples(audio_out_writer, audio_index, samples_per_grain, &out_slice)
memcpy each channel fragment (frag0, frag1 wrap pattern)
mxlFlowWriterCommitSamples
audio_index += samples_per_grain
if TOO_LATE: jump to headIndex
}
// Video — non-blocking
mxlFlowReaderGetGrainNonBlocking(video_in_reader, video_index, &grain, &in_buf)
if OK:
mxlFlowWriterOpenGrain(video_out_writer, video_index, &out_grain, &out_buf)
memcpy(out_buf, in_buf, video_out_stride * height)
mxlFlowWriterCommitGrain
video_index++
if TOO_EARLY: mxlSleepForNs(1ms)
if TOO_LATE: jump to headIndex
Audio memcpy pattern (wrapped ring buffer)
MXL audio slices can wrap around the ring buffer — always copy both fragments:
const size_t frag0 = in_slice.base.fragments[0].size / sizeof(float);
const size_t frag1 = in_slice.base.fragments[1].size / sizeof(float);
for (int c = 0; c < channels; ++c) {
const auto* src0 = reinterpret_cast<const float*>(
static_cast<const uint8_t*>(in_slice.base.fragments[0].pointer) + c * in_slice.stride);
auto* dst0 = reinterpret_cast<float*>(
static_cast<uint8_t*>(out_slice.base.fragments[0].pointer) + c * out_slice.stride);
std::memcpy(dst0, src0, frag0 * sizeof(float));
if (frag1 > 0) {
const auto* src1 = reinterpret_cast<const float*>(
static_cast<const uint8_t*>(in_slice.base.fragments[1].pointer) + c * in_slice.stride);
auto* dst1 = reinterpret_cast<float*>(
static_cast<uint8_t*>(out_slice.base.fragments[1].pointer) + c * out_slice.stride);
std::memcpy(dst1, src1, frag1 * sizeof(float));
}
}
Reference nodes
- Input flow setup (wait + reader + flow_def read):
nodes/ndiout/main.cpp,nodes/decklinkout/main.cpp - Output flow setup (writer creation):
nodes/ndiin/main.cpp,nodes/decklinkin/main.cpp - Audio memcpy pattern:
nodes/ndiout/main.cpplines 172–190 make_video_flow_def/make_audio_flow_def/read_video_flow_info/read_audio_flow_info:shared/FlowDef.hpp