Files
2024-10-09 02:01:23 +02:00

179 lines
4.9 KiB
C++

#pragma once
#include <libremidi/backends/coremidi/config.hpp>
#include <libremidi/backends/coremidi/helpers.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
namespace libremidi
{
class midi_in_core final
: public midi1::in_api
, private coremidi_data
, public error_handler
{
public:
struct
: input_configuration
, coremidi_input_configuration
{
} configuration;
midi_in_core(input_configuration&& conf, coremidi_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
if (auto result = init_client(configuration); result != noErr)
{
error<driver_error>(
this->configuration,
"midi_in_core: error creating MIDI client object: " + std::to_string(result));
return;
}
}
~midi_in_core() override
{
// Close a connection if it exists.
midi_in_core::close_port();
if (this->endpoint)
MIDIEndpointDispose(this->endpoint);
close_client();
}
void close_client()
{
if (!configuration.context)
MIDIClientDispose(this->client);
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_core: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_in_core: set_port_name unsupported");
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI; }
bool open_port(const input_port& info, std::string_view portName) override
{
CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false);
auto source = locate_object(*this, info, kMIDIObjectType_Source);
if (source == 0)
return false;
// Create our local sink
MIDIPortRef port;
OSStatus result = MIDIInputPortCreate(
this->client, toCFString(portName).get(), midiInputCallback, (void*)this, &port);
if (result != noErr)
{
close_client();
error<driver_error>(
this->configuration, "midi_in_core::open_port: error creating macOS MIDI input port: "
+ std::to_string(result));
return false;
}
// Make the connection.
if (result = MIDIPortConnectSource(port, source, nullptr); result != noErr)
{
MIDIPortDispose(port);
close_client();
error<driver_error>(
this->configuration, "midi_in_core::open_port: error connecting macOS MIDI input port.");
return false;
}
// Save our api-specific port information.
this->port = port;
return true;
}
bool open_virtual_port(std::string_view portName) override
{
// Create a virtual MIDI input destination.
MIDIEndpointRef endpoint;
OSStatus result = MIDIDestinationCreate(
this->client, toCFString(portName).get(), midiInputCallback, (void*)this, &endpoint);
if (result != noErr)
{
error<driver_error>(
this->configuration,
"midi_in_core::open_virtual_port: error creating virtual macOS MIDI "
"destination.");
return false;
}
// Save our api-specific connection information.
this->endpoint = endpoint;
return true;
}
void close_port() override
{
if (this->endpoint)
{
MIDIEndpointDispose(this->endpoint);
this->endpoint = 0;
}
if (this->port)
{
MIDIPortDispose(this->port);
this->port = 0;
}
}
timestamp absolute_timestamp() const noexcept override
{
return coremidi_data::time_in_nanos(LIBREMIDI_AUDIO_GET_CURRENT_HOST_TIME());
}
static void midiInputCallback(const MIDIPacketList* list, void* procRef, void* /*srcRef*/)
{
static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = true,
.absolute_is_monotonic = false,
.has_samples = false,
};
auto& self = *(midi_in_core*)procRef;
const MIDIPacket* packet = &list->packet[0];
for (unsigned int i = 0; i < list->numPackets; ++i)
{
// My interpretation of the CoreMIDI documentation: all message
// types, except sysex, are complete within a packet and there may
// be several of them in a single packet. Sysex messages can be
// broken across multiple packets and PacketLists but are bundled
// alone within each packet (these packets do not contain other
// message types). If sysex messages are split across multiple
// MIDIPacketLists, they must be handled by multiple calls to this
// function.
if (packet->length == 0)
{
packet = MIDIPacketNext(packet);
continue;
}
auto to_ns = [packet] { return time_in_nanos(packet->timeStamp); };
self.m_processing.on_bytes_multi(
{packet->data, packet->data + packet->length},
self.m_processing.timestamp<timestamp_info>(to_ns, 0));
packet = MIDIPacketNext(packet);
}
}
midi1::input_state_machine m_processing{this->configuration};
};
}