Compare commits
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66447b2510 | ||
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9f3805733b | ||
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4e8fdc7603 |
@@ -276,7 +276,7 @@
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CODE_SIGN_IDENTITY = "Apple Development";
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CODE_SIGN_STYLE = Automatic;
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COMBINE_HIDPI_IMAGES = YES;
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CURRENT_PROJECT_VERSION = 37;
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CURRENT_PROJECT_VERSION = 40;
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DEVELOPMENT_ASSET_PATHS = "\"meetingnotes/Preview Content\"";
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DEVELOPMENT_TEAM = G9LVHZAJNX;
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ENABLE_HARDENED_RUNTIME = YES;
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@@ -290,7 +290,7 @@
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"@executable_path/../Frameworks",
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);
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MACOSX_DEPLOYMENT_TARGET = 15.0;
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MARKETING_VERSION = 1.1.25;
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MARKETING_VERSION = 1.1.28;
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ONLY_ACTIVE_ARCH = NO;
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OTHER_SWIFT_FLAGS = "$(inherited) -D ENABLE_TCC_SPI";
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PRODUCT_BUNDLE_IDENTIFIER = net.jamesbone.meetingnotes;
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@@ -312,7 +312,7 @@
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CODE_SIGN_IDENTITY = "Apple Development";
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CODE_SIGN_STYLE = Automatic;
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COMBINE_HIDPI_IMAGES = YES;
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CURRENT_PROJECT_VERSION = 37;
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CURRENT_PROJECT_VERSION = 40;
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DEVELOPMENT_ASSET_PATHS = "\"meetingnotes/Preview Content\"";
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DEVELOPMENT_TEAM = G9LVHZAJNX;
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ENABLE_HARDENED_RUNTIME = YES;
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@@ -326,7 +326,7 @@
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"@executable_path/../Frameworks",
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);
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MACOSX_DEPLOYMENT_TARGET = 15.0;
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MARKETING_VERSION = 1.1.25;
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MARKETING_VERSION = 1.1.28;
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ONLY_ACTIVE_ARCH = YES;
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OTHER_SWIFT_FLAGS = "$(inherited) -D ENABLE_TCC_SPI";
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PRODUCT_BUNDLE_IDENTIFIER = net.jamesbone.meetingnotes;
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@@ -443,14 +443,15 @@ final class AudioManager: NSObject, ObservableObject {
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let channelCount = buffers.reduce(UInt32(0)) { $0 + $1.mNumberChannels }
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guard channelCount > 0 else { return nil }
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// HAL tap metadata can advertise interleaved stereo while the callback
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// supplies one mono buffer per channel (or the reverse). Constructing a
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// PCM buffer with that mismatched layout halves its frame count and
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// produces 2x-speed system audio. The callback's AudioBufferList is the
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// authoritative layout for the memory we are copying.
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// HAL I/O proc samples use the canonical Float32 representation. The
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// tap's stream description can advertise a different common format;
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// using that to interpret the callback bytes can halve the frame count
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// (for example, treating four-byte Float32 samples as eight-byte
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// Float64 samples). The callback's AudioBufferList is authoritative for
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// its channel layout, while its sample rate comes from the input stream.
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let isInterleaved = buffers.count == 1 && channelCount > 1
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return AVAudioFormat(
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commonFormat: advertisedFormat.commonFormat,
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commonFormat: .pcmFormatFloat32,
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sampleRate: advertisedFormat.sampleRate,
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channels: AVAudioChannelCount(channelCount),
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interleaved: isInterleaved
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@@ -461,20 +462,27 @@ final class AudioManager: NSObject, ObservableObject {
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from inputData: UnsafePointer<AudioBufferList>,
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format: AVAudioFormat
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) -> AVAudioPCMBuffer? {
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guard let borrowedBuffer = AVAudioPCMBuffer(
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pcmFormat: format,
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bufferListNoCopy: inputData,
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deallocator: nil
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), borrowedBuffer.frameLength > 0,
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let ownedBuffer = AVAudioPCMBuffer(
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pcmFormat: format,
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frameCapacity: borrowedBuffer.frameLength
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) else { return nil }
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ownedBuffer.frameLength = borrowedBuffer.frameLength
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let sourceBuffers = UnsafeMutableAudioBufferListPointer(
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UnsafeMutablePointer(mutating: inputData)
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)
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let frameLengths = sourceBuffers.compactMap { source -> AVAudioFrameCount? in
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let bytesPerFrame = Int(source.mNumberChannels) * MemoryLayout<Float32>.size
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guard bytesPerFrame > 0,
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Int(source.mDataByteSize).isMultiple(of: bytesPerFrame) else { return nil }
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return AVAudioFrameCount(Int(source.mDataByteSize) / bytesPerFrame)
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}
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guard frameLengths.count == sourceBuffers.count,
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let frameLength = frameLengths.first,
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frameLength > 0,
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frameLengths.allSatisfy({ $0 == frameLength }),
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let ownedBuffer = AVAudioPCMBuffer(
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pcmFormat: format,
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frameCapacity: frameLength
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) else { return nil }
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// Set the frame count explicitly instead of asking AVAudioPCMBuffer to
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// infer it from potentially inconsistent tap metadata.
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ownedBuffer.frameLength = frameLength
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let destinationBuffers = UnsafeMutableAudioBufferListPointer(
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ownedBuffer.mutableAudioBufferList
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)
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@@ -116,6 +116,47 @@ extension AudioObjectID {
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try read(kAudioTapPropertyFormat, defaultValue: AudioStreamBasicDescription())
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}
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/// Reads the virtual format of the first input stream exposed by this device.
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///
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/// An aggregate device can adapt a tap to the active output hardware. Its
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/// input stream format is therefore the format delivered to the I/O proc,
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/// which can differ from the tap object's originally advertised format.
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func readInputStreamBasicDescription() throws -> AudioStreamBasicDescription {
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var streamsAddress = AudioObjectPropertyAddress(
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mSelector: kAudioDevicePropertyStreams,
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mScope: kAudioObjectPropertyScopeGlobal,
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mElement: kAudioObjectPropertyElementMain
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)
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var dataSize: UInt32 = 0
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var status = AudioObjectGetPropertyDataSize(self, &streamsAddress, 0, nil, &dataSize)
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guard status == noErr else {
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throw "Error reading device stream list size: \(status)"
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}
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var streamIDs = [AudioObjectID](
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repeating: .unknown,
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count: Int(dataSize) / MemoryLayout<AudioObjectID>.size
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)
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status = AudioObjectGetPropertyData(self, &streamsAddress, 0, nil, &dataSize, &streamIDs)
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guard status == noErr else {
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throw "Error reading device stream list: \(status)"
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}
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for streamID in streamIDs {
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let direction: UInt32 = try streamID.read(
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kAudioStreamPropertyDirection,
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defaultValue: 0
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)
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guard direction == 1 else { continue }
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return try streamID.read(
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kAudioStreamPropertyVirtualFormat,
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defaultValue: AudioStreamBasicDescription()
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)
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}
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throw "Device has no input stream."
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}
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private func requireSystemObject() throws {
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if self != .system { throw "Only supported for the system object." }
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}
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@@ -307,4 +348,4 @@ extension AudioObjectID {
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func getDeviceName() throws -> String {
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return try readString(kAudioDevicePropertyDeviceNameCFString)
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}
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}
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}
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@@ -138,11 +138,11 @@ final class ProcessTap {
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tapDescription = CATapDescription(stereoMixdownOfProcesses: [process.objectID])
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logger.debug("Configuring tap for single process objectID: \(process.objectID)")
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case .systemAudio:
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// Keep the HAL tap's buffer layout consistent with the default
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// output stream. AudioManager performs the stereo-to-mono mix when
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// it converts the captured audio to the 16 kHz transcription file.
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tapDescription = CATapDescription(stereoGlobalTapButExcludeProcesses: [])
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logger.debug("Configuring a stereo global system audio tap.")
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// The transcription file is mono, so ask Core Audio for a mono
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// mixdown at the source. This avoids interpreting a stereo HAL
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// buffer as half as many frames before the 16 kHz conversion.
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tapDescription = CATapDescription(monoGlobalTapButExcludeProcesses: [])
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logger.info("Configuring a mono global system audio tap.")
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}
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tapDescription.uuid = UUID()
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@@ -248,8 +248,20 @@ final class ProcessTap {
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do {
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logger.debug("Attempting to read audio tap stream basic description for tapID #\(tapID)...")
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self.tapStreamDescription = try tapID.readAudioTapStreamBasicDescription()
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logger.debug("Successfully read tap stream description: \(String(describing: self.tapStreamDescription))")
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let advertisedDescription = try tapID.readAudioTapStreamBasicDescription()
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// The aggregate device may adapt the tap to the active hardware's
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// sample rate. Its input stream is the format actually delivered
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// to the I/O proc, so use that rather than the tap's pre-aggregate
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// advertisement. Using the latter can halve the written duration
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// when, for example, a 48 kHz tap is delivered at 24 kHz.
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do {
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self.tapStreamDescription = try aggregateDeviceID.readInputStreamBasicDescription()
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logger.info("Using aggregate input stream description: \(String(describing: self.tapStreamDescription), privacy: .public); tap advertised: \(String(describing: advertisedDescription), privacy: .public)")
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} catch {
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self.tapStreamDescription = advertisedDescription
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logger.warning("Could not read aggregate input stream format; using tap format: \(error, privacy: .public)")
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}
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} catch {
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logger.error("Failed to read audio tap stream basic description for tapID #\(tapID): \(error)")
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throw error // Propagate error
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Block a user