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viseq/include/libremidi/backends/android/midi_in.hpp
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#pragma once
#include <libremidi/backends/android/config.hpp>
#include <libremidi/backends/android/helpers.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
#include <atomic>
#include <chrono>
#include <thread>
NAMESPACE_LIBREMIDI
{
namespace android
{
class midi_in
: public midi1::in_api
, public error_handler
{
public:
explicit midi_in(
libremidi::input_configuration&& conf, libremidi::android::input_configuration aconf)
: configuration{std::move(conf)}
{
if (!context::client_name.empty() && context::client_name != aconf.client_name)
{
libremidi_handle_error(
configuration, "Android backend only supports one client name per process");
return;
}
context::client_name = std::string(aconf.client_name);
client_open_ = stdx::error{};
}
~midi_in() override { close_port(); }
libremidi::API get_current_api() const noexcept override
{
return libremidi::API::ANDROID_AMIDI;
}
stdx::error open_port(const input_port& port, std::string_view /*name*/) override
{
if (is_port_open())
{
libremidi_handle_error(configuration, "midi_in::open_port: a port is already open");
return std::errc{};
}
const unsigned int port_number = port.port;
auto env = context::get_thread_env();
if (!env)
{
libremidi_handle_error(configuration, "midi_in::open_port: failed to get JNI environment");
return std::errc{};
}
auto ctx = context::get_context(env);
if (!ctx)
{
libremidi_handle_error(configuration, "midi_in::open_port: failed to get Android context");
return std::errc{};
}
context::refresh_midi_devices(env, ctx, false);
if (port_number >= context::midi_devices.size())
{
libremidi_handle_error(configuration, "midi_in::open_port: invalid port number");
return std::errc{};
}
port_open = true;
running = true;
context::open_device(context::midi_devices[port_number], this, false);
return stdx::error{};
}
stdx::error close_port() override
{
if (!is_port_open())
return std::errc{};
running = false;
if (poll_thread.joinable())
{
poll_thread.join();
}
if (midi_output_port)
{
AMidiOutputPort_close(midi_output_port);
midi_output_port = nullptr;
}
if (receive_device)
{
AMidiDevice_release(receive_device);
receive_device = nullptr;
}
port_open = false;
return stdx::error{};
}
bool is_port_open() const noexcept { return port_open; }
void start_midi_thread() { poll_thread = std::thread(&midi_in::poll_midi, this); }
timestamp absolute_timestamp() const noexcept override { return system_ns(); }
void poll_midi()
{
static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = false,
.absolute_is_monotonic = false,
.has_samples = false,
};
uint8_t buffer[1024];
int32_t op_code;
int64_t timestamp;
size_t num_bytes;
while (running)
{
std::this_thread::sleep_for(std::chrono::milliseconds(1));
ssize_t num_messages = AMidiOutputPort_receive(
midi_output_port, &op_code, buffer, sizeof(buffer), &num_bytes, &timestamp);
if (num_messages < 0)
{
LOGE("Error receiving MIDI data: %d", (int)num_messages);
continue;
}
if (num_messages > 0 && num_bytes > 0)
{
const auto to_ns = [=] { return timestamp; };
m_processing.on_bytes_multi(
{buffer, buffer + num_bytes},
m_processing.timestamp<timestamp_info>(to_ns, timestamp));
}
}
}
static void open_callback(midi_in* self, AMidiDevice* device)
{
self->receive_device = device;
AMidiOutputPort_open(device, 0, &self->midi_output_port);
self->start_midi_thread();
}
private:
libremidi::input_configuration configuration;
AMidiDevice* receive_device = nullptr;
AMidiOutputPort* midi_output_port = nullptr;
std::thread poll_thread;
std::atomic<bool> port_open{false};
std::atomic<bool> running{false};
midi1::input_state_machine m_processing{this->configuration};
};
}
}