Files
2025-06-13 19:06:09 +02:00

320 lines
8.1 KiB
C++

#pragma once
#include <libremidi/backends/jack/error_domain.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/semaphore.hpp>
#include <atomic>
#include <cstdint>
#include <cstring>
#include <memory>
namespace libremidi
{
struct jack_client
{
jack_client_t* client{};
static std::string get_port_display_name(jack_port_t* port)
{
auto p1 = std::make_unique<char[]>(jack_port_name_size());
auto p2 = std::make_unique<char[]>(jack_port_name_size());
char* aliases[3] = {p1.get(), p2.get(), nullptr};
int n = jack_port_get_aliases(port, aliases);
if (n > 1)
{
return aliases[1];
}
else if (n > 0)
{
std::string str = aliases[0];
if (str.starts_with("alsa_pcm:"))
str.erase(0, strlen("alsa_pcm:"));
return str;
}
else
{
const auto short_name = jack_port_short_name(port);
if (short_name && strlen(short_name) > 0)
return short_name;
return jack_port_name(port);
}
}
template <bool Input>
static auto to_port_info(jack_client_t* client, jack_port_t* port)
-> std::conditional_t<Input, input_port, output_port>
{
return {{
.client = reinterpret_cast<std::uintptr_t>(client),
.port = 0,
.manufacturer = "",
.device_name = "",
.port_name = jack_port_name(port),
.display_name = get_port_display_name(port),
}};
}
template <bool Input>
static auto get_ports(
jack_client_t* client, const char* pattern, const char* type, const JackPortFlags flags,
bool midi2) noexcept -> std::vector<std::conditional_t<Input, input_port, output_port>>
{
std::vector<std::conditional_t<Input, input_port, output_port>> ret;
if (!client)
return {};
const char** ports = jack_get_ports(client, pattern, type, flags);
if (ports == nullptr)
return {};
int i = 0;
while (ports[i] != nullptr)
{
// FIXME this does not take into account filtering sw / hw ports
auto port = jack_port_by_name(client, ports[i]);
if (port)
{
if (bool(midi2) == bool(jack_port_flags(port) & 0x20))
ret.push_back(to_port_info<Input>(client, port));
}
i++;
}
jack_free(ports);
return ret;
}
};
struct jack_helpers : jack_client
{
struct port_handle
{
port_handle& operator=(jack_port_t* p)
{
impl.get()->store(p);
return *this;
}
operator jack_port_t*() const noexcept
{
if (impl)
return impl.get()->load();
return {};
}
std::shared_ptr<std::atomic<jack_port_t*>> impl
= std::make_shared<std::atomic<jack_port_t*>>(nullptr);
} port;
int64_t this_instance{};
semaphore_pair_lock thread_lock;
jack_helpers()
{
static std::atomic_int64_t instance{};
this_instance = ++instance;
}
template <typename Self>
jack_status_t connect(Self& self)
{
auto& configuration = self.configuration;
if (this->client)
return jack_status_t{};
// Initialize JACK client
if (configuration.context)
{
if (!configuration.set_process_func)
return JackFailure;
configuration.set_process_func(
{.token = this_instance,
.callback = [&self, p = std::weak_ptr{this->port.impl}](jack_nframes_t nf) -> int {
if (auto pt = p.lock())
if (pt->load())
self.process(nf);
self.thread_lock.check_client_released();
return 0;
}});
this->client = configuration.context;
return jack_status_t{};
}
else
{
jack_status_t status{};
this->client
= jack_client_open(configuration.client_name.c_str(), JackNoStartServer, &status);
if (this->client != nullptr)
{
if(status & JackNameNotUnique) {
self.libremidi_handle_warning(self.configuration, "JACK client with the same name already exists, renamed.");
}
jack_set_process_callback(
this->client,
+[](jack_nframes_t nf, void* ctx) -> int {
auto& self = *static_cast<Self*>(ctx);
jack_port_t* port = self.port;
// Is port created?
if (port == nullptr)
return 0;
self.process(nf);
self.thread_lock.check_client_released();
return 0;
},
&self);
jack_activate(this->client);
}
return status;
}
}
template <typename Self>
void disconnect(Self& self)
{
if (self.configuration.context)
{
if (self.configuration.clear_process_func)
{
self.configuration.clear_process_func(this_instance);
}
}
if (this->client && !self.configuration.context)
jack_client_close(this->client);
self.client_open_ = std::errc::not_connected;
}
stdx::error create_local_port(
const auto& self, std::string_view portName, const char* type, JackPortFlags flags)
{
// full name: "client_name:port_name\0"
if (portName.empty())
portName = flags & JackPortIsInput ? "i" : "o";
if (self.configuration.client_name.size() + portName.size() + 2u
>= static_cast<size_t>(jack_port_name_size()))
{
self.libremidi_handle_error(
self.configuration, "port name length limit exceeded");
return std::errc::invalid_argument;
}
if (!this->port)
{
this->port = jack_port_register(this->client, portName.data(), type, flags, 0);
}
if (!this->port)
{
self.libremidi_handle_error(self.configuration, "error creating port");
return std::errc::operation_not_supported;
}
return stdx::error{};
}
stdx::error do_close_port()
{
if (this->port == nullptr)
return stdx::error{};
// 1. Ensure that the next time the cycle runs it sees the port as nullptr
jack_port_t* port_ptr = this->port.impl->load();
this->port = nullptr;
// 2. Signal through the semaphore and wait for the signal return
this->thread_lock.prepare_release_client();
// 3. Now we are sure that the client is not going to use the port anymore
int err = jack_port_unregister(this->client, port_ptr);
return from_errc(err);
}
};
struct jack_queue
{
public:
static constexpr auto size_sz = sizeof(int32_t);
jack_queue() = default;
jack_queue(const jack_queue&) = delete;
jack_queue(jack_queue&&) = delete;
jack_queue& operator=(const jack_queue&) = delete;
jack_queue& operator=(jack_queue&& other) noexcept
{
ringbuffer = other.ringbuffer;
ringbuffer_space = other.ringbuffer_space;
other.ringbuffer = nullptr;
return *this;
}
explicit jack_queue(int64_t sz) noexcept
{
ringbuffer = jack_ringbuffer_create(sz);
ringbuffer_space = jack_ringbuffer_write_space(ringbuffer);
}
~jack_queue() noexcept
{
if (ringbuffer)
jack_ringbuffer_free(ringbuffer);
}
stdx::error write(const unsigned char* data, int64_t sz) const noexcept
{
if (static_cast<std::size_t>(sz + size_sz) > ringbuffer_space)
return std::errc::no_buffer_space;
while (jack_ringbuffer_write_space(ringbuffer) < sz + size_sz)
sched_yield();
jack_ringbuffer_write(ringbuffer, reinterpret_cast<char*>(&sz), size_sz);
jack_ringbuffer_write(ringbuffer, reinterpret_cast<const char*>(data), sz);
return stdx::error{};
}
void read(void* jack_events) const noexcept
{
int32_t sz;
while (jack_ringbuffer_peek(ringbuffer, reinterpret_cast<char*>(&sz), size_sz) == size_sz
&& jack_ringbuffer_read_space(ringbuffer) >= size_sz + sz)
{
jack_ringbuffer_read_advance(ringbuffer, size_sz);
if (auto midi = jack_midi_event_reserve(jack_events, 0, sz))
jack_ringbuffer_read(ringbuffer, reinterpret_cast<char*>(midi), sz);
else
jack_ringbuffer_read_advance(ringbuffer, sz);
}
}
jack_ringbuffer_t* ringbuffer{};
std::size_t ringbuffer_space{}; // actual writable size, usually 1 less than ringbuffer
};
struct jack_midi1
{
static constexpr const char* port_type = "8 bit raw midi";
};
struct jack_midi2
{
static constexpr const char* port_type = "32 bit raw UMP";
};
}