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2024-10-28 19:24:18 +01:00

327 lines
7.7 KiB
C++

#if !defined(LIBREMIDI_HEADER_ONLY)
#include <libremidi/libremidi.hpp>
#endif
#include <libremidi/backends.hpp>
#include <libremidi/detail/midi_api.hpp>
#include <array>
#include <cassert>
namespace libremidi
{
static LIBREMIDI_INLINE std::unique_ptr<midi_out_api>
make_midi_out_impl(auto base_conf, std::any api_conf)
{
std::unique_ptr<midi_out_api> ptr;
auto from_api = [&]<typename T>(T& /*backend*/) mutable {
if (auto conf = std::any_cast<typename T::midi_out_configuration>(&api_conf))
{
ptr = libremidi::make<typename T::midi_out>(std::move(base_conf), std::move(*conf));
return true;
}
return false;
};
std::apply([&](auto&&... b) { (from_api(b) || ...); }, midi1::available_backends);
std::apply([&](auto&&... b) { (from_api(b) || ...); }, midi2::available_backends);
return ptr;
}
static LIBREMIDI_INLINE std::unique_ptr<midi_out_api>
make_midi_out(const output_configuration& base_conf)
{
for (const auto& api : available_apis())
{
try
{
if (auto ret = make_midi_out_impl(base_conf, midi_out_configuration_for(api)))
return ret;
}
catch (const std::exception& e)
{
}
}
for (const auto& api : available_ump_apis())
{
try
{
if (auto ret = make_midi_out_impl(base_conf, midi_out_configuration_for(api)))
return ret;
}
catch (const std::exception& e)
{
}
}
return std::make_unique<midi_out_dummy>(output_configuration{}, dummy_configuration{});
}
static LIBREMIDI_INLINE std::unique_ptr<midi_out_api>
make_midi_out(const output_configuration& base_conf, const std::any& api_conf)
{
if (!api_conf.has_value())
{
return make_midi_out(base_conf);
}
else if (auto api_p = std::any_cast<libremidi::API>(&api_conf))
{
if (*api_p == libremidi::API::UNSPECIFIED)
{
return make_midi_out(base_conf);
}
else
{
return make_midi_out_impl(base_conf, midi_out_configuration_for(*api_p));
}
}
else
{
if (auto api = libremidi::midi_api(api_conf); api == libremidi::API::UNSPECIFIED)
return make_midi_out(base_conf);
else
return make_midi_out_impl(base_conf, api_conf);
}
}
LIBREMIDI_INLINE midi_out::midi_out(const output_configuration& base_conf) noexcept
: impl_{make_midi_out(base_conf)}
{
}
LIBREMIDI_INLINE
midi_out::midi_out(output_configuration base_conf, std::any api_conf)
: impl_{make_midi_out(base_conf, api_conf)}
{
if (!impl_)
{
error_handler e;
e.libremidi_handle_error(base_conf, "Could not open midi out for the given api");
impl_ = std::make_unique<midi_out_dummy>(output_configuration{}, dummy_configuration{});
}
}
LIBREMIDI_INLINE midi_out::~midi_out() = default;
LIBREMIDI_INLINE midi_out::midi_out(midi_out&& other) noexcept
: impl_{std::move(other.impl_)}
{
other.impl_
= std::make_unique<libremidi::midi_out_dummy>(output_configuration{}, dummy_configuration{});
}
LIBREMIDI_INLINE midi_out& midi_out::operator=(midi_out&& other) noexcept
{
this->impl_ = std::move(other.impl_);
other.impl_
= std::make_unique<libremidi::midi_out_dummy>(output_configuration{}, dummy_configuration{});
return *this;
}
LIBREMIDI_INLINE
stdx::error midi_out::set_port_name(std::string_view portName) const
{
if(impl_->is_port_open())
return impl_->set_port_name(portName);
return std::errc::not_connected;
}
LIBREMIDI_INLINE
libremidi::API midi_out::get_current_api() const noexcept
{
return impl_->get_current_api();
}
LIBREMIDI_INLINE
stdx::error midi_out::open_port(const output_port& port, std::string_view portName) const
{
if (auto err = impl_->is_client_open(); err != stdx::error{})
return std::errc::not_connected;
if (impl_->is_port_open())
return std::errc::operation_not_supported;
auto ret = impl_->open_port(port, portName);
if (ret == stdx::error{})
{
impl_->connected_ = true;
impl_->port_open_ = true;
}
return ret;
}
LIBREMIDI_INLINE
stdx::error midi_out::open_virtual_port(std::string_view portName) const
{
if (auto err = impl_->is_client_open(); err != stdx::error{})
return std::errc::not_connected;
if (impl_->is_port_open())
return std::errc::operation_not_supported;
auto ret = impl_->open_virtual_port(portName);
if (ret == stdx::error{})
impl_->port_open_ = true;
return ret;
}
LIBREMIDI_INLINE
stdx::error midi_out::close_port() const
{
if (auto err = impl_->is_client_open(); err != stdx::error{})
return std::errc::not_connected;
auto ret = impl_->close_port();
impl_->connected_ = false;
impl_->port_open_ = false;
return ret;
}
LIBREMIDI_INLINE
bool midi_out::is_port_open() const noexcept
{
return impl_->is_port_open();
}
LIBREMIDI_INLINE
bool midi_out::is_port_connected() const noexcept
{
return impl_->is_port_connected();
}
LIBREMIDI_INLINE
stdx::error midi_out::send_message(const libremidi::message& message) const
{
return send_message(message.bytes.data(), message.bytes.size());
}
LIBREMIDI_INLINE
stdx::error midi_out::send_message(std::span<const unsigned char> message) const
{
return send_message(message.data(), message.size());
}
LIBREMIDI_INLINE
stdx::error midi_out::send_message(unsigned char b0) const
{
return send_message(&b0, 1);
}
LIBREMIDI_INLINE
stdx::error midi_out::send_message(unsigned char b0, unsigned char b1) const
{
return send_message(std::to_array({b0, b1}));
}
LIBREMIDI_INLINE
stdx::error midi_out::send_message(unsigned char b0, unsigned char b1, unsigned char b2) const
{
return send_message(std::to_array({b0, b1, b2}));
}
LIBREMIDI_INLINE
stdx::error midi_out::send_message(const unsigned char* message, size_t size) const
{
#if defined(LIBREMIDI_ASSERTIONS)
assert(size > 0);
#endif
return impl_->send_message(message, size);
}
LIBREMIDI_INLINE
int64_t midi_out::current_time()
{
return impl_->current_time();
}
LIBREMIDI_INLINE
stdx::error midi_out::schedule_message(int64_t ts, const unsigned char* message, size_t size) const
{
#if defined(LIBREMIDI_ASSERTIONS)
assert(size > 0);
#endif
return impl_->schedule_message(ts, message, size);
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(const uint32_t* message, size_t size) const
{
#if defined(LIBREMIDI_ASSERTIONS)
assert(size > 0);
assert(size <= 4);
#endif
return impl_->send_ump(message, size);
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(const libremidi::ump& message) const
{
return send_ump(message.data, message.size());
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(std::span<const uint32_t> message) const
{
return send_ump(message.data(), message.size());
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(uint32_t b0) const
{
return send_ump(&b0, 1);
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(uint32_t b0, uint32_t b1) const
{
return send_ump(std::to_array({b0, b1}));
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(uint32_t b0, uint32_t b1, uint32_t b2) const
{
return send_ump(std::to_array({b0, b1, b2}));
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(uint32_t b0, uint32_t b1, uint32_t b2, uint32_t b3) const
{
return send_ump(std::to_array({b0, b1, b2, b3}));
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(int32_t b0) const
{
return send_ump(reinterpret_cast<uint32_t*>(&b0), 1);
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(int64_t b01) const
{
auto ptr = reinterpret_cast<uint32_t*>(&b01);
uint32_t msg[2]{ptr[1], ptr[0]};
return send_ump(msg, 2);
}
LIBREMIDI_INLINE
stdx::error midi_out::send_ump(uint64_t b01) const
{
auto ptr = reinterpret_cast<uint32_t*>(&b01);
uint32_t msg[2]{ptr[1], ptr[0]};
return send_ump(msg, 2);
}
LIBREMIDI_INLINE
stdx::error midi_out::schedule_ump(int64_t ts, const uint32_t* message, size_t size) const
{
#if defined(LIBREMIDI_ASSERTIONS)
assert(size > 0);
#endif
return impl_->schedule_ump(ts, message, size);
}
}