32 Commits

Author SHA1 Message Date
Sebastian @ HfG 96bd5f30e6 upgrade to libremidi 5.1, raylib and raygui latest 2025-06-13 19:06:09 +02:00
sebastian bd642576bb Minimal guide added 2024-11-24 19:54:38 +01:00
Sebastian 96a19d55ef signal ui is next! 2024-11-07 00:01:54 +01:00
Sebastian e519b7c758 scale groups of nodes is so cool! 2024-11-06 15:35:25 +01:00
Sebastian 95620a5f07 two node snap for triangles 2024-11-06 02:28:37 +01:00
Sebastian @ HfG 9878b7b2a4 alsa lib removed 2024-11-05 17:44:12 +01:00
Sebastian 4a346350f4 static id fixed 2024-11-05 00:51:25 +01:00
Sebastian @ HfG dc7eae1931 changed the name! 2024-11-04 19:28:12 +01:00
Sebastian 0c797807dd id is not set correctly, fix needed 2024-11-04 09:53:08 +01:00
Sebastian 374efbe47c state save/load working! signal pause/play button added, and speed control is now better. 2024-11-04 01:00:59 +01:00
Sebastian bfd8bb192e partial reload from json working, but edges make problems 2024-11-03 15:15:42 +01:00
Sebastian 7bdd68bdcc json is loading, but does nothing yet 2024-11-03 03:48:49 +01:00
Sebastian a4ea20b2b3 still in the middle of json export, last attempt did not work 2024-11-02 23:12:38 +01:00
Sebastian 522e9d456a json serialization beginnings, but still much to do 2024-11-02 15:52:16 +01:00
Sebastian 70d0a186a4 split edge: check, copy paste: check with a little bug 2024-11-02 02:06:26 +01:00
Sebastian 41cad27806 copy paste mysteries with ghost nodes and disappearing connections 2024-11-01 14:46:51 +01:00
Sebastian a10335ed47 polar snapping now very goood! 2024-11-01 14:08:27 +01:00
Sebastian 19b2c9549f conversion to smart pointers done but still buggy 2024-11-01 02:38:47 +01:00
Sebastian c0eb7c98ba heavy restructuring with smart pointers, not finished 2024-10-31 01:43:00 +01:00
Sebastian f7a13e48b7 fishy loss of changes here... 2024-10-30 14:55:24 +01:00
Sebastian ba5874837c connection split button added, but no functionality yes 2024-10-30 11:27:37 +01:00
Sebastian c0f5138765 a little clean up 2024-10-30 02:03:03 +01:00
Sebastian ad7b0e4524 GEO mode for signals takes direction of next connection into account 2024-10-30 02:00:40 +01:00
Sebastian c63eeed1b4 polar snapping (almost bug free) 2024-10-29 00:50:39 +01:00
Sebastian fc48c2e7ed merge win32 2024-10-28 21:52:28 +01:00
Sebastian @ HfG 1e3755148c working on win32 uwp! and libremidi update 2024-10-28 19:24:18 +01:00
Sebastian 06cb6d8319 distance to closest node displayed, timing problems with midi notes being sent 1 to 3ms too early, or too late 2024-10-28 02:07:47 +01:00
Sebastian 58766cc373 node ui note / gate display changed 2024-10-27 00:48:13 +02:00
Sebastian bd17288ab0 node ui and interaction improvements 2024-10-27 00:40:57 +02:00
Sebastian cb08f69e3b copy nodes with connections 2024-10-26 16:31:23 +02:00
Sebastian 53289bb9e2 tidied up main 2024-10-26 02:28:49 +02:00
Sebastian d747f80d11 cosmetics 2024-10-26 02:25:46 +02:00
170 changed files with 44607 additions and 5026 deletions
+2
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@@ -1,4 +1,6 @@
build/** build/**
.cache .cache
viseq viseq
viseq.exe
compile_commands.json compile_commands.json
*.json
+2924
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File diff suppressed because it is too large Load Diff
+33
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@@ -0,0 +1,33 @@
CXX = g++
CXXFLAGS = -std=c++23 -Wall -g -fno-omit-frame-pointer -gdwarf-4 -Og -Wnarrowing -DLIBREMIDI_WINUWP=1
CXXINC = -Iinclude
LDLIBS = -lraylibdll -pthread -lwindowsapp
LDFLAGS = -L./lib -L/usr/lib -L/usr/local/lib
hdr_files = ${wildcard src/*.h}
src_files = ${wildcard src/*.cpp}
src_files += ${wildcard include/libremidi/*.cpp}
all: viseq
viseq: $(src_files) $(hdr_files)
mkdir -p build
$(CXX) ${wildcard build/*.o} -o viseq $(LDFLAGS) $(LDLIBS)
$(src_files): %.cpp : %_src
$(CXX) -c $@ -o build/$(*F).o $(CXXFLAGS) $(CXXINC)
$(hdr_files): %.h : %_hdr
@echo "G++ >---------- $(*F).h -----------<"
%_src:
@echo "G++ >---------- $(*F).cpp -----------<"
%_hdr:
@echo "G++ >---------- $(*F).h -----------<"
clean:
rm -f build/*
rm -f viseq
+57
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@@ -0,0 +1,57 @@
# VISEQ - THE VISUAL SEQUENCER
## BUILD
### LINUX
```
make
```
### WINDOWS
You need MingW64.
```
make -f MakefileMingW64
```
## USAGE
### CHANGING NODES
Nodes can be moved around, connected and modified. A right-cick opens a context menu with settings. Midi settings can also be changed with the mouse-wheel and modifier keys while hovering a node. All selected nodes can be changed at once. Draw a selectionbox around all nodes that you want to change, or select them by holding shift while clicking or dragging.
#### MOUSE WHEEL
- ctrl + wheel -> change midi note
- shift + wheel -> change midi velocity
- alt + wheel -> change midi gate
#### DRAGGING NODES
While dragging nodes one can use ctrl and shift to activate two different snapping modes. Ctrl enables snap to grid, while shift enables snap to next nodes. The grid is divided into 32nd notes. Snap to next nodes shows the time divisions to the closest nodes and can snap to two nodes at once.
#### SELECTING NODES
Dragging the mouse on the canvas, creates a selection rectangle. All nodes in the rectanlge will be highlighted. Using the above mentioned modification methods, one can change all selected nodes at once.
All selected nodes can also be moved together.
### CONNECTIONS
Connect nodes by dragging from the orbiting circle to another node. A new connection appears. Connections can be closed for signals in one, or both directions. Click the small green circle and it will block traffic in this direction.
#### DISTRIBUTION MODES
Nodes can have three distribution modes, "Geometric", "RR" (Round Robin), and "Random".
**Geometric Distribution**
Geometric distribution means that signals take the straightest path that is available, when more than two paths are available. By moving around nodes so that another connection becomes the straighter path, one can divert signals to other areas of the canvas.
**Round Robin Distribution**
Round Robin means, that every signal that arrives at a node with RR distribution switches the node to the next connection. With multiple signals in one path, this can lead to some beautiful patterns emerging.
**Random Distribution**
Random distribution sends every arriving signal to a random connection.
+41
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@@ -0,0 +1,41 @@
#pragma once
#if __cplusplus
extern "C" {
#endif
//! MIDI API specifier arguments.
//! To get information on which feature is supported by each back-end, check their backend file
//! in e.g. backends/winmm.hpp, etc.
typedef enum libremidi_api
{
UNSPECIFIED = 0x0, /*!< Search for a working compiled API. */
// MIDI 1.0 APIs
COREMIDI = 0x1, /*!< macOS CoreMidi API. */
ALSA_SEQ, /*!< Linux ALSA Sequencer API. */
ALSA_RAW, /*!< Linux Raw ALSA API. */
JACK_MIDI, /*!< JACK Low-Latency MIDI Server API. */
WINDOWS_MM, /*!< Microsoft Multimedia MIDI API. */
WINDOWS_UWP, /*!< Microsoft WinRT MIDI API. */
WEBMIDI, /*!< Web MIDI API through Emscripten */
PIPEWIRE, /*!< PipeWire */
KEYBOARD, /*!< Computer keyboard input */
NETWORK, /*!< MIDI over IP */
// MIDI 2.0 APIs
ALSA_RAW_UMP = 0x1000, /*!< Raw ALSA API for MIDI 2.0 */
ALSA_SEQ_UMP, /*!< Linux ALSA Sequencer API for MIDI 2.0 */
COREMIDI_UMP, /*!< macOS CoreMidi API for MIDI 2.0. Requires macOS 11+ */
WINDOWS_MIDI_SERVICES, /*!< Windows API for MIDI 2.0. Requires Windows 11 */
KEYBOARD_UMP, /*!< Computer keyboard input */
NETWORK_UMP, /*!< MIDI2 over IP */
JACK_UMP, /*!< MIDI2 over JACK, type "32 bit raw UMP". Requires PipeWire v1.4+. */
PIPEWIRE_UMP, /*!< MIDI2 over PipeWire. Requires v1.4+. */
DUMMY = 0xFFFF /*!< A compilable but non-functional API. */
} libremidi_api;
#if __cplusplus
}
#endif
+15 -24
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@@ -1,4 +1,5 @@
#pragma once #pragma once
#include <libremidi/api-c.h>
#include <libremidi/config.hpp> #include <libremidi/config.hpp>
#include <string_view> #include <string_view>
@@ -9,28 +10,7 @@ namespace libremidi
//! MIDI API specifier arguments. //! MIDI API specifier arguments.
//! To get information on which feature is supported by each back-end, check their backend file //! To get information on which feature is supported by each back-end, check their backend file
//! in e.g. backends/winmm.hpp, etc. //! in e.g. backends/winmm.hpp, etc.
enum class API using API = libremidi_api;
{
UNSPECIFIED, /*!< Search for a working compiled API. */
// MIDI 1.0 APIs
COREMIDI, /*!< macOS CoreMidi API. */
ALSA_SEQ, /*!< Linux ALSA Sequencer API. */
ALSA_RAW, /*!< Linux Raw ALSA API. */
JACK_MIDI, /*!< JACK Low-Latency MIDI Server API. */
WINDOWS_MM, /*!< Microsoft Multimedia MIDI API. */
WINDOWS_UWP, /*!< Microsoft WinRT MIDI API. */
WEBMIDI, /*!< Web MIDI API through Emscripten */
PIPEWIRE, /*!< PipeWire */
// MIDI 2.0 APIs
ALSA_RAW_UMP, /*!< Raw ALSA API for MIDI 2.0 */
ALSA_SEQ_UMP, /*!< Linux ALSA Sequencer API for MIDI 2.0 */
COREMIDI_UMP, /*!< macOS CoreMidi API for MIDI 2.0. Requires macOS 11+ */
WINDOWS_MIDI_SERVICES, /*!< Windows API for MIDI 2.0. Requires Windows 11 */
DUMMY /*!< A compilable but non-functional API. */
};
/** /**
* \brief A function to determine the available compiled MIDI 1.0 APIs. * \brief A function to determine the available compiled MIDI 1.0 APIs.
@@ -60,6 +40,17 @@ LIBREMIDI_EXPORT std::string_view get_api_display_name(libremidi::API api);
//! Look-up an API through its name //! Look-up an API through its name
LIBREMIDI_EXPORT libremidi::API get_compiled_api_by_name(std::string_view api); LIBREMIDI_EXPORT libremidi::API get_compiled_api_by_name(std::string_view api);
inline constexpr bool is_midi1(libremidi::API api)
{
return (static_cast<int>(api) >= 0x1 && static_cast<int>(api) < 0x1000)
|| api == libremidi::API::DUMMY;
}
inline constexpr bool is_midi2(libremidi::API api)
{
return static_cast<int>(api) >= 0x1000;
}
namespace midi1 namespace midi1
{ {
//! Returns the default MIDI 1.0 backend to use for the target OS. //! Returns the default MIDI 1.0 backend to use for the target OS.
@@ -69,7 +60,7 @@ inline constexpr libremidi::API default_api() noexcept
return API::COREMIDI; return API::COREMIDI;
#elif defined(_WIN32) #elif defined(_WIN32)
return API::WINDOWS_MM; return API::WINDOWS_MM;
#elif defined(__linux__) #elif defined(LIBREMIDI_ALSA)
return API::ALSA_SEQ; return API::ALSA_SEQ;
#elif defined(__emscripten__) #elif defined(__emscripten__)
return API::EMSCRIPTEN_WEBMIDI; return API::EMSCRIPTEN_WEBMIDI;
@@ -88,7 +79,7 @@ inline constexpr libremidi::API default_api() noexcept
return API::COREMIDI_UMP; return API::COREMIDI_UMP;
#elif defined(_WIN32) #elif defined(_WIN32)
return API::WINDOWS_MIDI_SERVICES; return API::WINDOWS_MIDI_SERVICES;
#elif defined(__linux__) #elif defined(LIBREMIDI_ALSA)
return API::ALSA_SEQ_UMP; return API::ALSA_SEQ_UMP;
#elif defined(__emscripten__) #elif defined(__emscripten__)
return API::DUMMY; return API::DUMMY;
+84 -10
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@@ -1,4 +1,6 @@
#pragma once #pragma once
#include <libremidi/config.hpp>
#include <tuple> #include <tuple>
#if !__has_include(<weak_libjack.h>) && !__has_include(<jack/jack.h>) #if !__has_include(<weak_libjack.h>) && !__has_include(<jack/jack.h>)
@@ -27,10 +29,14 @@
#if defined(LIBREMIDI_JACK) #if defined(LIBREMIDI_JACK)
#include <libremidi/backends/jack.hpp> #include <libremidi/backends/jack.hpp>
#include <libremidi/backends/jack_ump.hpp>
#endif #endif
#if defined(LIBREMIDI_PIPEWIRE) #if defined(LIBREMIDI_PIPEWIRE)
#include <libremidi/backends/pipewire.hpp> #include <libremidi/backends/pipewire.hpp>
#if defined(LIBREMIDI_PIPEWIRE_UMP)
#include <libremidi/backends/pipewire_ump.hpp>
#endif
#endif #endif
#if defined(LIBREMIDI_COREMIDI) #if defined(LIBREMIDI_COREMIDI)
@@ -44,9 +50,10 @@
#if defined(LIBREMIDI_WINUWP) #if defined(LIBREMIDI_WINUWP)
#include <libremidi/backends/winuwp.hpp> #include <libremidi/backends/winuwp.hpp>
#if __has_include(<winrt/Microsoft.Devices.Midi2.h>) #endif
#include <libremidi/backends/winmidi.hpp>
#endif #if defined(LIBREMIDI_WINMIDI)
#include <libremidi/backends/winmidi.hpp>
#endif #endif
#if defined(LIBREMIDI_EMSCRIPTEN) #if defined(LIBREMIDI_EMSCRIPTEN)
@@ -55,6 +62,15 @@
#include <libremidi/backends/dummy.hpp> #include <libremidi/backends/dummy.hpp>
#if defined(LIBREMIDI_KEYBOARD)
#include <libremidi/backends/keyboard.hpp>
#endif
#if defined(LIBREMIDI_NETWORK)
#include <libremidi/backends/network.hpp>
#include <libremidi/backends/network_ump.hpp>
#endif
namespace libremidi namespace libremidi
{ {
// The order here will control the order of the API search in // The order here will control the order of the API search in
@@ -100,6 +116,14 @@ static constexpr auto available_backends = make_tl(
#if defined(LIBREMIDI_PIPEWIRE) #if defined(LIBREMIDI_PIPEWIRE)
, ,
pipewire::backend{} pipewire::backend{}
#endif
#if defined(LIBREMIDI_KEYBOARD)
,
kbd_backend{}
#endif
#if defined(LIBREMIDI_NETWORK)
,
net::backend{}
#endif #endif
, ,
dummy_backend{}); dummy_backend{});
@@ -135,15 +159,21 @@ static constexpr auto available_backends = make_tl(
, ,
coremidi_ump::backend{} coremidi_ump::backend{}
#endif #endif
#if defined(LIBREMIDI_JACK) #if defined(LIBREMIDI_WINMIDI)
#endif
#if defined(LIBREMIDI_WINUWP)
#if __has_include(<winrt/Microsoft.Devices.Midi2.h>)
, ,
winmidi::backend{} winmidi::backend{}
#endif
#endif #endif
#if defined(LIBREMIDI_EMSCRIPTEN) #if defined(LIBREMIDI_NETWORK)
,
net_ump::backend{}
#endif
#if defined(LIBREMIDI_JACK)
,
jack_ump::backend{}
#endif
#if defined(LIBREMIDI_PIPEWIRE_UMP)
,
pipewire_ump::backend{}
#endif #endif
, ,
dummy_backend{}); dummy_backend{});
@@ -154,7 +184,7 @@ static_assert(std::tuple_size_v<decltype(available_backends)> >= 1);
template <typename F> template <typename F>
auto for_all_backends(F&& f) auto for_all_backends(F&& f)
{ {
std::apply([&](auto&&... x) { (f(x), ...); }, available_backends); std::apply([&](auto&&... x) { ((x.available() && (f(x), true)), ...); }, available_backends);
} }
template <typename F> template <typename F>
@@ -183,5 +213,49 @@ auto for_backend(libremidi::API api, F&& f)
midi2::for_backend(api, f); midi2::for_backend(api, f);
} }
void for_input_configuration(auto f, libremidi::input_api_configuration& api_conf)
{
auto from_api = [&]<typename T>(T& /*backend*/) mutable {
if (auto conf = std::get_if<typename T::midi_in_configuration>(&api_conf))
{
f(*conf);
return true;
}
return false;
};
if (std::apply([&](auto&&... b) { return (from_api(b) || ...); }, midi1::available_backends))
return;
std::apply([&](auto&&... b) { return (from_api(b) || ...); }, midi2::available_backends);
}
void for_output_configuration(auto f, libremidi::output_api_configuration& api_conf)
{
auto from_api = [&]<typename T>(T& /*backend*/) mutable {
if (auto conf = std::get_if<typename T::midi_out_configuration>(&api_conf))
{
f(*conf);
return true;
}
return false;
};
if (std::apply([&](auto&&... b) { return (from_api(b) || ...); }, midi1::available_backends))
return;
std::apply([&](auto&&... b) { return (from_api(b) || ...); }, midi2::available_backends);
}
void for_observer_configuration(auto f, libremidi::observer_api_configuration& api_conf)
{
auto from_api = [&]<typename T>(T& /*backend*/) mutable {
if (auto conf = std::get_if<typename T::midi_observer_configuration>(&api_conf))
{
f(*conf);
return true;
}
return false;
};
if (std::apply([&](auto&&... b) { return (from_api(b) || ...); }, midi1::available_backends))
return;
std::apply([&](auto&&... b) { return (from_api(b) || ...); }, midi2::available_backends);
}
} }
} }
+3 -2
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@@ -3,6 +3,7 @@
#include <libremidi/backends/alsa_raw/midi_out.hpp> #include <libremidi/backends/alsa_raw/midi_out.hpp>
#include <libremidi/backends/alsa_raw/observer.hpp> #include <libremidi/backends/alsa_raw/observer.hpp>
#include <string_view>
// Credits: greatly inspired from // Credits: greatly inspired from
// https://ccrma.stanford.edu/~craig/articles/linuxmidi/alsa-1.0/alsarawmidiout.c // https://ccrma.stanford.edu/~craig/articles/linuxmidi/alsa-1.0/alsarawmidiout.c
// https://ccrma.stanford.edu/~craig/articles/linuxmidi/alsa-1.0/alsarawportlist.c // https://ccrma.stanford.edu/~craig/articles/linuxmidi/alsa-1.0/alsarawportlist.c
@@ -19,8 +20,8 @@ struct backend
using midi_out_configuration = alsa_raw_output_configuration; using midi_out_configuration = alsa_raw_output_configuration;
using midi_observer_configuration = alsa_raw_observer_configuration; using midi_observer_configuration = alsa_raw_observer_configuration;
static const constexpr auto API = libremidi::API::ALSA_RAW; static const constexpr auto API = libremidi::API::ALSA_RAW;
static const constexpr auto name = "alsa_raw"; static const constexpr std::string_view name = "alsa_raw";
static const constexpr auto display_name = "ALSA (raw)"; static const constexpr std::string_view display_name = "ALSA (raw)";
static inline bool available() noexcept static inline bool available() noexcept
{ {
@@ -2,6 +2,7 @@
#include <libremidi/config.hpp> #include <libremidi/config.hpp>
#include <chrono> #include <chrono>
#include <cstdint>
#include <functional> #include <functional>
#include <optional> #include <optional>
#include <span> #include <span>
@@ -61,6 +62,7 @@ struct manual_poll_parameters
struct alsa_raw_input_configuration struct alsa_raw_input_configuration
{ {
std::function<bool(const manual_poll_parameters&)> manual_poll; std::function<bool(const manual_poll_parameters&)> manual_poll;
std::chrono::milliseconds poll_period{2};
}; };
struct alsa_raw_output_configuration struct alsa_raw_output_configuration
+39 -64
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@@ -2,15 +2,17 @@
#include <libremidi/backends/linux/alsa.hpp> #include <libremidi/backends/linux/alsa.hpp>
#include <libremidi/config.hpp> #include <libremidi/config.hpp>
#include <libremidi/detail/observer.hpp> #include <libremidi/detail/observer.hpp>
#include <libremidi/observer_configuration.hpp>
#include <chrono> #include <alsa/asoundlib.h>
#include <functional>
#include <iostream> #include <cerrno>
#include <optional> #include <cstdint>
#include <span> #include <cstdio>
#include <cstdlib>
#include <string> #include <string>
#include <string_view> #include <string_view>
#include <thread> #include <system_error>
#include <vector> #include <vector>
// Credits: greatly inspired from // Credits: greatly inspired from
@@ -32,14 +34,14 @@ struct alsa_raw_port_id
}; };
inline constexpr port_handle raw_to_port_handle(alsa_raw_port_id id) noexcept inline constexpr port_handle raw_to_port_handle(alsa_raw_port_id id) noexcept
{ {
return (uint64_t(id.card) << 32) + (uint64_t(id.dev) << 16) + id.port; return (uint64_t(id.port) << 32) + (uint64_t(id.dev) << 16) + id.card;
} }
inline constexpr alsa_raw_port_id raw_from_port_handle(port_handle p) noexcept inline constexpr alsa_raw_port_id raw_from_port_handle(port_handle p) noexcept
{ {
alsa_raw_port_id ret; alsa_raw_port_id ret;
ret.card = (p & 0x00'00'FF'FF'00'00'00'00) >> 32; ret.port = (p & 0x00'00'FF'FF'00'00'00'00) >> 32;
ret.dev = (p & 0x00'00'00'00'FF'FF'00'00) >> 16; ret.dev = (p & 0x00'00'00'00'FF'FF'00'00) >> 16;
ret.port = (p & 0x00'00'00'00'00'00'FF'FF); ret.card = (p & 0x00'00'00'00'00'00'FF'FF);
return ret; return ret;
} }
static_assert(raw_from_port_handle(raw_to_port_handle({102, 7, 3})).card == 102); static_assert(raw_from_port_handle(raw_to_port_handle({102, 7, 3})).card == 102);
@@ -87,39 +89,16 @@ struct snd_ctl_wrapper
struct enumerator struct enumerator
{ {
const libasound& snd = libasound::instance(); const libasound& snd = libasound::instance();
const error_handler& handler;
const observer_configuration& configuration;
std::vector<alsa_raw_port_info> inputs; std::vector<alsa_raw_port_info> inputs;
std::vector<alsa_raw_port_info> outputs; std::vector<alsa_raw_port_info> outputs;
std::function<void(std::string_view)> error_callback; explicit enumerator(const auto& self)
std::function<void(std::string_view)> warn_callback; : handler{self}
, configuration{self.configuration}
{
template <typename... Args>
void warning(Args&&... args)
{
std::string s;
((s += args), ...);
if (warn_callback)
{
warn_callback(std::move(s));
}
else
{
std::cerr << s << std::endl;
}
}
template <typename... Args>
void error(Args&&... args)
{
std::string s;
((s += args), ...);
if (error_callback)
{
error_callback(std::move(s));
}
else
{
throw std::runtime_error(s.c_str());
}
} }
// 1: is an input / output // 1: is an input / output
@@ -141,9 +120,9 @@ struct enumerator
} }
else if (status < 0 && status != -ENXIO) else if (status < 0 && status != -ENXIO)
{ {
error( handler.libremidi_handle_error(
"alsa_raw_helpers::enumerator::is: cannot get rawmidi information:", card, device, sub, configuration, "Cannot get rawmidi information: " + device_identifier(card, device, sub)
snd.strerror(status)); + " : " + snd.strerror(status));
return status; return status;
} }
else else
@@ -185,26 +164,23 @@ struct enumerator
return s; return s;
} }
void enumerate_cards() stdx::error enumerate_cards()
{ {
using namespace std::literals;
int card = -1; int card = -1;
int status = snd.card.next(&card); int status = snd.card.next(&card);
if (status < 0) if (status < 0)
{ {
error( handler.libremidi_handle_error(
"alsa_raw_helpers::enumerator::enumerate_cards: " configuration, "Cannot determine card number: "s + snd.strerror(status));
"cannot determine card number: ", return from_errc(status);
snd.strerror(status));
return;
} }
if (card < 0) if (card < 0)
{ {
error( handler.libremidi_handle_error(configuration, "No sound cards found");
"alsa_raw_helpers::enumerator::enumerate_cards: " return std::errc::no_such_device;
"no sound cards found");
return;
} }
while (card >= 0) while (card >= 0)
@@ -213,13 +189,12 @@ struct enumerator
if ((status = snd.card.next(&card)) < 0) if ((status = snd.card.next(&card)) < 0)
{ {
error( handler.libremidi_handle_error(
"alsa_raw_helpers::enumerator::enumerate_cards: " configuration, "cannot determine card number: "s + snd.strerror(status));
"cannot determine card number: ", return std::errc::no_such_device;
snd.strerror(status));
break;
} }
} }
return stdx::error{};
} }
virtual void enumerate_devices(int card) = 0; virtual void enumerate_devices(int card) = 0;
@@ -228,20 +203,22 @@ struct enumerator
inline snd_ctl_wrapper::snd_ctl_wrapper(enumerator& self, const char* name) inline snd_ctl_wrapper::snd_ctl_wrapper(enumerator& self, const char* name)
: snd{self.snd} : snd{self.snd}
{ {
using namespace std::literals;
int status = snd.ctl.open(&ctl, name, 0); int status = snd.ctl.open(&ctl, name, 0);
if (status < 0) if (status < 0)
{ {
self.error( self.handler.libremidi_handle_error(
"alsa_raw_helpers::enumerator::snd_ctl_wrapper: " self.configuration, "cannot open control for card"s + name + " : " + snd.strerror(status));
"cannot open control for card",
name, snd.strerror(status));
} }
} }
struct midi1_enumerator : enumerator struct midi1_enumerator : enumerator
{ {
using alsa_raw::enumerator::enumerator;
void enumerate_devices(int card) override void enumerate_devices(int card) override
{ {
using namespace std::literals;
char name[128]; char name[128];
sprintf(name, "hw:%d", card); sprintf(name, "hw:%d", card);
@@ -261,10 +238,8 @@ struct midi1_enumerator : enumerator
if (status < 0) if (status < 0)
{ {
error( handler.libremidi_handle_error(
"alsa_raw::midi1_enumerator::enumerate_devices: " configuration, "Cannot determine device number: "s + snd.strerror(status));
"cannot determine device number: ",
snd.strerror(status));
break; break;
} }
+69 -63
View File
@@ -33,83 +33,72 @@ public:
~midi_in_impl() override { } ~midi_in_impl() override { }
bool open_virtual_port(std::string_view) override
{
warning(configuration, "midi_in_alsa_raw: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_alsa_raw: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_in_alsa_raw: set_port_name unsupported");
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW; } libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW; }
// Must be a string such as: "hw:2,4,1" // Must be a string such as: "hw:2,4,1"
[[nodiscard]] int do_init_port(const char* portname) [[nodiscard]] stdx::error do_init_port(const char* portname)
{ {
constexpr int mode = SND_RAWMIDI_NONBLOCK; constexpr int mode = SND_RAWMIDI_NONBLOCK;
if (const int err = snd.rawmidi.open(&midiport_, nullptr, portname, mode); err < 0) if (const int err = snd.rawmidi.open(&midiport_, nullptr, portname, mode); err < 0)
{ {
error<driver_error>(this->configuration, "midi_in_alsa_raw::open_port: cannot open device."); libremidi_handle_error(this->configuration, "cannot open device.");
return err; return from_errc(err);
} }
snd_rawmidi_params_t* params{}; snd_rawmidi_params_t* params{};
snd_rawmidi_params_alloca(&params); snd_rawmidi_params_alloca(&params);
if (const int err = snd.rawmidi.params_current(midiport_, params); err < 0) if (const int err = snd.rawmidi.params_current(midiport_, params); err < 0)
return err; return from_errc(err);
if (const int err = snd.rawmidi.params_set_no_active_sensing(midiport_, params, 1); err < 0) if (const int err = snd.rawmidi.params_set_no_active_sensing(midiport_, params, 1); err < 0)
return err; return from_errc(err);
#if LIBREMIDI_ALSA_HAS_RAWMIDI_TREAD #if LIBREMIDI_ALSA_HAS_RAWMIDI_TREAD
if (configuration.timestamps == timestamp_mode::NoTimestamp) if (configuration.timestamps == timestamp_mode::NoTimestamp)
{ {
if (const int err if (const int err
= snd.rawmidi.params_set_read_mode(midiport_, params, SND_RAWMIDI_READ_STANDARD); = snd.rawmidi.params_set_read_mode(midiport_, params, SND_RAWMIDI_READ_STANDARD);
err < 0) err < 0)
return err; return from_errc(err);
if (const int err if (const int err
= snd.rawmidi.params_set_clock_type(midiport_, params, SND_RAWMIDI_CLOCK_NONE); = snd.rawmidi.params_set_clock_type(midiport_, params, SND_RAWMIDI_CLOCK_NONE);
err < 0) err < 0)
return err; return from_errc(err);
} }
else else
{ {
if (const int err if (const int err
= snd.rawmidi.params_set_read_mode(midiport_, params, SND_RAWMIDI_READ_TSTAMP); = snd.rawmidi.params_set_read_mode(midiport_, params, SND_RAWMIDI_READ_TSTAMP);
err < 0) err < 0)
return err; return from_errc(err);
if (const int err if (const int err
= snd.rawmidi.params_set_clock_type(midiport_, params, SND_RAWMIDI_CLOCK_MONOTONIC); = snd.rawmidi.params_set_clock_type(midiport_, params, SND_RAWMIDI_CLOCK_MONOTONIC);
err < 0) err < 0)
return err; return from_errc(err);
} }
#endif #endif
if (const int err = snd.rawmidi.params(midiport_, params); err < 0) if (const int err = snd.rawmidi.params(midiport_, params); err < 0)
return err; return from_errc(err);
return init_pollfd(); return init_pollfd();
} }
[[nodiscard]] int init_port(const port_information& p) [[nodiscard]] stdx::error init_port(const port_information& p)
{ {
return do_init_port(raw_from_port_handle(p.port).to_string().c_str()); return do_init_port(raw_from_port_handle(p.port).to_string().c_str());
} }
[[nodiscard]] int init_pollfd() [[nodiscard]] stdx::error init_pollfd()
{ {
const int num_fds = snd.rawmidi.poll_descriptors_count(this->midiport_); const int num_fds = snd.rawmidi.poll_descriptors_count(this->midiport_);
this->fds_.clear(); this->fds_.clear();
this->fds_.resize(num_fds); this->fds_.resize(num_fds);
return snd.rawmidi.poll_descriptors(this->midiport_, fds_.data(), num_fds); int ret = snd.rawmidi.poll_descriptors(this->midiport_, fds_.data(), num_fds);
if (ret < 0)
return from_errc(ret);
return stdx::error{};
} }
ssize_t do_read_events(auto parse_func, std::span<pollfd> fds) ssize_t do_read_events(auto parse_func, std::span<pollfd> fds)
@@ -155,7 +144,8 @@ public:
while ((err = snd.rawmidi.read(this->midiport_, bytes, nbytes)) > 0) while ((err = snd.rawmidi.read(this->midiport_, bytes, nbytes)) > 0)
{ {
const auto to_ns = [this] { return absolute_timestamp(); }; const auto to_ns = [this] { return absolute_timestamp(); };
decoder_.on_bytes({bytes, bytes + err}, decoder_.timestamp<timestamp_info>(to_ns, 0)); m_processing.on_bytes(
{bytes, bytes + err}, m_processing.timestamp<timestamp_info>(to_ns, 0));
} }
return err; return err;
} }
@@ -180,7 +170,8 @@ public:
const auto to_ns = [ts] { const auto to_ns = [ts] {
return static_cast<int64_t>(ts.tv_sec) * 1'000'000'000 + static_cast<int64_t>(ts.tv_nsec); return static_cast<int64_t>(ts.tv_sec) * 1'000'000'000 + static_cast<int64_t>(ts.tv_nsec);
}; };
decoder_.on_bytes({bytes, bytes + err}, decoder_.timestamp<timestamp_info>(to_ns, 0)); m_processing.on_bytes(
{bytes, bytes + err}, m_processing.timestamp<timestamp_info>(to_ns, 0));
} }
return err; return err;
} }
@@ -188,18 +179,19 @@ public:
ssize_t read_input_buffer_with_timestamps() { return read_input_buffer(); } ssize_t read_input_buffer_with_timestamps() { return read_input_buffer(); }
#endif #endif
void close_port() override stdx::error close_port() override
{ {
if (midiport_) if (midiport_)
snd.rawmidi.close(midiport_); snd.rawmidi.close(midiport_);
midiport_ = nullptr; midiport_ = nullptr;
return stdx::error{};
} }
timestamp absolute_timestamp() const noexcept final override { return system_ns(); } timestamp absolute_timestamp() const noexcept final override { return system_ns(); }
snd_rawmidi_t* midiport_{}; snd_rawmidi_t* midiport_{};
std::vector<pollfd> fds_; std::vector<pollfd> fds_;
midi1::input_state_machine decoder_{this->configuration}; midi1::input_state_machine m_processing{this->configuration};
}; };
class midi_in_alsa_raw_threaded : public midi_in_impl class midi_in_alsa_raw_threaded : public midi_in_impl
@@ -208,33 +200,40 @@ public:
midi_in_alsa_raw_threaded(input_configuration&& conf, alsa_raw_input_configuration&& apiconf) midi_in_alsa_raw_threaded(input_configuration&& conf, alsa_raw_input_configuration&& apiconf)
: midi_in_impl{std::move(conf), std::move(apiconf)} : midi_in_impl{std::move(conf), std::move(apiconf)}
{ {
if (this->termination_event < 0) if (this->m_termination_event < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "error creating eventfd.");
this->configuration, "midi_in_alsa::initialize: error creating eventfd."); return;
} }
client_open_ = stdx::error{};
} }
~midi_in_alsa_raw_threaded() override ~midi_in_alsa_raw_threaded() override
{ {
// Close a connection if it exists. // Close a connection if it exists.
this->midi_in_alsa_raw_threaded::close_port(); this->midi_in_alsa_raw_threaded::close_port();
client_open_ = std::errc::not_connected;
} }
private: private:
void run_thread(auto parse_func) void run_thread(auto parse_func)
{ {
fds_.push_back(this->termination_event); fds_.push_back(this->m_termination_event);
const auto period
= std::chrono::duration_cast<std::chrono::milliseconds>(this->configuration.poll_period)
.count();
for (;;) for (;;)
{ {
// Poll // Poll
ssize_t err = poll(fds_.data(), fds_.size(), -1); ssize_t err = poll(fds_.data(), fds_.size(), static_cast<int32_t>(period));
if (err == -EAGAIN) if (err == -EAGAIN)
continue; continue;
else if (err < 0) else if (err < 0)
return; return;
else if (termination_event.ready(fds_.back())) else if (m_termination_event.ready(fds_.back()))
break; break;
err = do_read_events(parse_func, {fds_.data(), fds_.size() - 1}); err = do_read_events(parse_func, {fds_.data(), fds_.size() - 1});
@@ -245,64 +244,71 @@ private:
} }
} }
[[nodiscard]] ssize_t start_thread() [[nodiscard]] stdx::error start_thread()
{ {
try try
{ {
if (configuration.timestamps == timestamp_mode::NoTimestamp) if (configuration.timestamps == timestamp_mode::NoTimestamp)
{ {
this->thread_ = std::thread{[this] { run_thread(&midi_in_impl::read_input_buffer); }}; this->m_thread = std::thread{[this] { run_thread(&midi_in_impl::read_input_buffer); }};
} }
else else
{ {
this->thread_ = std::thread{ this->m_thread = std::thread{
[this] { run_thread(&midi_in_impl::read_input_buffer_with_timestamps); }}; [this] { run_thread(&midi_in_impl::read_input_buffer_with_timestamps); }};
} }
return stdx::error{};
} }
catch (const std::system_error& e) catch (const std::system_error& e)
{ {
using namespace std::literals; using namespace std::literals;
error<thread_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_alsa::start_thread: error starting MIDI input thread: "s + e.what()); "error starting MIDI input thread: "s + e.what());
return false; return e.code();
} }
return true; return stdx::error{};
} }
bool open_port(const input_port& port, std::string_view /*name*/) override stdx::error open_port(const input_port& port, std::string_view /*name*/) override
{ {
if (const int err = midi_in_impl::init_port(port); err < 0) if (auto err = midi_in_impl::init_port(port); err != stdx::error{})
return false; return err;
if (!start_thread()) if (auto err = start_thread(); err != stdx::error{})
return false; return err;
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
termination_event.notify(); m_termination_event.notify();
if (thread_.joinable()) if (m_thread.joinable())
thread_.join(); m_thread.join();
termination_event.consume(); // Reset to zero m_termination_event.consume(); // Reset to zero
midi_in_impl::close_port(); return midi_in_impl::close_port();
} }
std::thread thread_; std::thread m_thread;
eventfd_notifier termination_event{}; eventfd_notifier m_termination_event{};
}; };
class midi_in_alsa_raw_manual : public midi_in_impl class midi_in_alsa_raw_manual : public midi_in_impl
{ {
public: public:
using midi_in_impl::midi_in_impl; midi_in_alsa_raw_manual(input_configuration&& conf, alsa_raw_input_configuration&& apiconf)
: midi_in_impl{std::move(conf), std::move(apiconf)}
{
client_open_ = stdx::error{};
}
~midi_in_alsa_raw_manual() ~midi_in_alsa_raw_manual()
{ {
// Close a connection if it exists. // Close a connection if it exists.
this->close_port(); this->close_port();
client_open_ = std::errc::not_connected;
} }
private: private:
@@ -326,12 +332,12 @@ private:
} }
} }
bool open_port(const input_port& p, std::string_view /*name*/) override stdx::error open_port(const input_port& p, std::string_view /*name*/) override
{ {
if (midi_in_impl::init_port(p) < 0) if (auto err = midi_in_impl::init_port(p); err != stdx::error{})
return false; return err;
send_poll_callback(); send_poll_callback();
return true; return stdx::error{};
} }
}; };
} }
@@ -26,83 +26,73 @@ public:
midi_out_impl(output_configuration&& conf, alsa_raw_output_configuration&& apiconf) midi_out_impl(output_configuration&& conf, alsa_raw_output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
client_open_ = stdx::error{};
} }
~midi_out_impl() override ~midi_out_impl() override
{ {
// Close a connection if it exists. // Close a connection if it exists.
midi_out_impl::close_port(); midi_out_impl::close_port();
client_open_ = std::errc::not_connected;
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW; } libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW; }
bool open_virtual_port(std::string_view) override stdx::error connect_port(const char* portname)
{
warning(configuration, "midi_out_alsa_raw: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_alsa_raw: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_out_alsa_raw: set_port_name unsupported");
}
int connect_port(const char* portname)
{ {
constexpr int mode = SND_RAWMIDI_SYNC; constexpr int mode = SND_RAWMIDI_SYNC;
int status = snd.rawmidi.open(NULL, &midiport_, portname, mode); int status = snd.rawmidi.open(NULL, &midiport_, portname, mode);
if (status < 0) if (status < 0)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_out_alsa_raw::open_port: cannot open device."); this->configuration, "cannot open device.");
return status; return from_errc(status);
} }
return status; return stdx::error{};
} }
bool open_port(const output_port& p, std::string_view) override stdx::error open_port(const output_port& p, std::string_view) override
{ {
return connect_port(raw_from_port_handle(p.port).to_string().c_str()) == 0; return connect_port(raw_from_port_handle(p.port).to_string().c_str());
} }
void close_port() override stdx::error close_port() override
{ {
if (midiport_) if (midiport_)
snd.rawmidi.close(midiport_); snd.rawmidi.close(midiport_);
midiport_ = nullptr; midiport_ = nullptr;
return stdx::error{};
} }
void send_message(const unsigned char* message, size_t size) override stdx::error send_message(const unsigned char* message, size_t size) override
{ {
if (!midiport_) if (!midiport_)
error<invalid_use_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_alsa_raw::send_message: trying to send a message without an open " "trying to send a message without an open "
"port."); "port.");
if (!this->configuration.chunking) if (!this->configuration.chunking)
{ {
write(message, size); return write(message, size);
} }
else else
{ {
write_chunked(message, size); return write_chunked(message, size);
} }
} }
bool write(const unsigned char* message, size_t size) stdx::error write(const unsigned char* message, size_t size)
{ {
if (snd.rawmidi.write(midiport_, message, size) < 0) if (auto err = snd.rawmidi.write(midiport_, message, size); err < 0)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_out_alsa_raw::send_message: cannot write message."); this->configuration, "cannot write message.");
return false; return from_errc(err);
} }
return true; return stdx::error{};
} }
std::size_t get_chunk_size() const noexcept std::size_t get_chunk_size() const noexcept
@@ -125,7 +115,7 @@ public:
} }
// inspired from ALSA amidi.c source code // inspired from ALSA amidi.c source code
void write_chunked(const unsigned char* const begin, size_t size) stdx::error write_chunked(const unsigned char* const begin, size_t size)
{ {
const unsigned char* data = begin; const unsigned char* data = begin;
const unsigned char* end = begin + size; const unsigned char* end = begin + size;
@@ -135,8 +125,8 @@ public:
// Send the first buffer // Send the first buffer
std::size_t len = chunk_size; std::size_t len = chunk_size;
if (!write(data, len)) if (auto err = write(data, len); err != stdx::error{})
return; return err;
data += len; data += len;
@@ -149,11 +139,11 @@ public:
{ {
if (!configuration.chunking->wait( if (!configuration.chunking->wait(
std::chrono::microseconds((chunk_size - available) * 320), written_bytes)) std::chrono::microseconds((chunk_size - available) * 320), written_bytes))
return; return std::errc::protocol_error;
}; };
if (!configuration.chunking->wait(configuration.chunking->interval, written_bytes)) if (!configuration.chunking->wait(configuration.chunking->interval, written_bytes))
return; return std::errc::protocol_error;
// Write more data // Write more data
len = end - data; len = end - data;
@@ -165,11 +155,13 @@ public:
if (len > chunk_size) if (len > chunk_size)
len = chunk_size; len = chunk_size;
if (!write(data, len)) if (auto err = write(data, len); err != stdx::error{})
return; return err;
data += len; data += len;
} }
return stdx::error{};
} }
snd_rawmidi_t* midiport_{}; snd_rawmidi_t* midiport_{};
@@ -6,14 +6,15 @@
#if LIBREMIDI_HAS_UDEV #if LIBREMIDI_HAS_UDEV
#include <libremidi/backends/linux/helpers.hpp> #include <libremidi/backends/linux/helpers.hpp>
#include <libremidi/backends/linux/udev.hpp> #include <libremidi/backends/linux/udev.hpp>
#include <libremidi/detail/observer.hpp> #endif
#include <libremidi/detail/observer.hpp>
#include <stdexcept>
namespace libremidi::alsa_raw namespace libremidi::alsa_raw
{ {
template <typename Enumerator> template <typename Enumerator>
class observer_impl_base : public observer_api class observer_impl_base
: public observer_api
, public error_handler
{ {
public: public:
struct struct
@@ -31,30 +32,36 @@ public:
if (!configuration.has_callbacks()) if (!configuration.has_callbacks())
return; return;
fds[0] = this->udev; #if LIBREMIDI_HAS_UDEV
fds[1] = termination_event; m_fds[0] = this->m_udev;
fds[2] = timer_fd; m_fds[1] = m_termination_event;
m_fds[2] = m_timer_fd;
#endif
// Set-up initial state // Set-up initial state
if (configuration.notify_in_constructor) if (configuration.notify_in_constructor)
this->check_devices(); this->check_devices();
#if LIBREMIDI_HAS_UDEV
// Start thread // Start thread
thread = std::thread{[this] { this->run(); }}; m_thread = std::thread{[this] { this->run(); }};
#endif
} }
~observer_impl_base() ~observer_impl_base()
{ {
termination_event.notify(); #if LIBREMIDI_HAS_UDEV
m_termination_event.notify();
if (thread.joinable()) if (m_thread.joinable())
thread.join(); m_thread.join();
#endif
} }
std::vector<libremidi::input_port> get_input_ports() const noexcept override std::vector<libremidi::input_port> get_input_ports() const noexcept override
{ {
std::vector<libremidi::input_port> ret; std::vector<libremidi::input_port> ret;
Enumerator new_devs; Enumerator new_devs{*this};
new_devs.enumerate_cards(); new_devs.enumerate_cards();
for (auto& d : new_devs.inputs) for (auto& d : new_devs.inputs)
@@ -67,7 +74,7 @@ public:
std::vector<libremidi::output_port> get_output_ports() const noexcept override std::vector<libremidi::output_port> get_output_ports() const noexcept override
{ {
std::vector<libremidi::output_port> ret; std::vector<libremidi::output_port> ret;
Enumerator new_devs; Enumerator new_devs{*this};
new_devs.enumerate_cards(); new_devs.enumerate_cards();
for (auto& d : new_devs.outputs) for (auto& d : new_devs.outputs)
@@ -78,11 +85,12 @@ public:
} }
private: private:
#if LIBREMIDI_HAS_UDEV
void run() void run()
{ {
for (;;) for (;;)
{ {
if (int err = poll(fds, 3, -1); err < 0) if (int err = poll(m_fds, 3, -1); err < 0)
{ {
if (err == -EAGAIN) if (err == -EAGAIN)
continue; continue;
@@ -91,67 +99,86 @@ private:
} }
// Check udev // Check udev
if (fds[0].revents & POLLIN) if (m_fds[0].revents & POLLIN)
{ {
udev_device* dev = udev.udev.monitor_receive_device(udev.monitor); udev_device* dev = m_udev.udev.monitor_receive_device(m_udev.monitor);
if (!dev) if (!dev)
continue; continue;
std::string_view act = udev.udev.device_get_action(dev); std::string_view act = m_udev.udev.device_get_action(dev);
std::string_view ss = udev.udev.device_get_subsystem(dev); std::string_view ss = m_udev.udev.device_get_subsystem(dev);
if (!act.empty() && ss == "snd_seq") if (!act.empty() && ss == "snd_seq")
{ {
if (act == "add" || act == "remove") if (act == "add" || act == "remove")
{ {
// Check every 100 milliseconds for ten seconds // Check every 100 milliseconds for ten seconds
this->timer_fd.restart(configuration.poll_period.count()); this->m_timer_fd.restart(configuration.poll_period.count());
timer_check_counts = 100; m_timer_check_counts = 100;
} }
} }
udev.udev.device_unref(dev); m_udev.udev.device_unref(dev);
fds[0].revents = 0; m_fds[0].revents = 0;
} }
// Check eventfd // Check eventfd
if (fds[1].revents & POLLIN) if (m_fds[1].revents & POLLIN)
{ {
break; break;
} }
// Check timer // Check timer
if (fds[2].revents & POLLIN) if (m_fds[2].revents & POLLIN)
{ {
if (this->timer_check_counts-- <= 0) if (this->m_timer_check_counts-- <= 0)
this->timer_fd.cancel(); this->m_timer_fd.cancel();
fds[2].revents = 0; m_fds[2].revents = 0;
check_devices(); check_devices();
} }
} }
} }
#endif
template <bool Input> template <bool Input>
auto to_port_info(alsa_raw::alsa_raw_port_info p) const noexcept auto to_port_info(const alsa_raw::alsa_raw_port_info& p) const noexcept
-> std::conditional_t<Input, input_port, output_port> -> std::conditional_t<Input, input_port, output_port>
{ {
#if LIBREMIDI_HAS_UDEV
auto [container, device, type] = get_udev_soundcard_info(m_udev, p.card);
#else
container_identifier container{};
device_identifier device{};
libremidi::port_information::port_type type{};
#endif
std::string display_name = p.subdevice_name;
if (display_name.empty())
display_name = p.device_name;
if (display_name.empty())
display_name = p.card_name;
if (display_name.empty())
display_name = "unknown";
return { return {
{.client = 0, {.client = 0,
.container = container,
.device = device,
.port = raw_to_port_handle({p.card, p.dev, p.sub}), .port = raw_to_port_handle({p.card, p.dev, p.sub}),
.manufacturer = p.card_name, .manufacturer = p.card_name,
.device_name = p.device_name, .device_name = p.device_name,
.port_name = p.subdevice_name, .port_name = p.subdevice_name,
.display_name = p.subdevice_name}}; .display_name = std::move(display_name),
.type = type}};
} }
void check_devices() void check_devices()
{ {
Enumerator new_devs; Enumerator new_devs{*this};
new_devs.enumerate_cards(); new_devs.enumerate_cards();
for (auto& in_prev : current_inputs) for (auto& in_prev : m_current_inputs)
{ {
if (auto it = std::find(new_devs.inputs.begin(), new_devs.inputs.end(), in_prev); if (auto it = std::find(new_devs.inputs.begin(), new_devs.inputs.end(), in_prev);
it == new_devs.inputs.end()) it == new_devs.inputs.end())
@@ -165,8 +192,8 @@ private:
for (auto& in_next : new_devs.inputs) for (auto& in_next : new_devs.inputs)
{ {
if (auto it = std::find(current_inputs.begin(), current_inputs.end(), in_next); if (auto it = std::find(m_current_inputs.begin(), m_current_inputs.end(), in_next);
it == current_inputs.end()) it == m_current_inputs.end())
{ {
if (auto& cb = this->configuration.input_added) if (auto& cb = this->configuration.input_added)
{ {
@@ -175,7 +202,7 @@ private:
} }
} }
for (auto& out_prev : current_outputs) for (auto& out_prev : m_current_outputs)
{ {
if (auto it = std::find(new_devs.outputs.begin(), new_devs.outputs.end(), out_prev); if (auto it = std::find(new_devs.outputs.begin(), new_devs.outputs.end(), out_prev);
it == new_devs.outputs.end()) it == new_devs.outputs.end())
@@ -189,8 +216,8 @@ private:
for (auto& out_next : new_devs.outputs) for (auto& out_next : new_devs.outputs)
{ {
if (auto it = std::find(current_outputs.begin(), current_outputs.end(), out_next); if (auto it = std::find(m_current_outputs.begin(), m_current_outputs.end(), out_next);
it == current_outputs.end()) it == m_current_outputs.end())
{ {
if (auto& cb = this->configuration.output_added) if (auto& cb = this->configuration.output_added)
{ {
@@ -198,38 +225,24 @@ private:
} }
} }
} }
current_inputs = std::move(new_devs.inputs); m_current_inputs = std::move(new_devs.inputs);
current_outputs = std::move(new_devs.outputs); m_current_outputs = std::move(new_devs.outputs);
} }
udev_helper udev{}; #if LIBREMIDI_HAS_UDEV
eventfd_notifier termination_event{}; udev_helper m_udev{};
timerfd_timer timer_fd{}; eventfd_notifier m_termination_event{};
int timer_check_counts = 0; timerfd_timer m_timer_fd{};
std::thread thread; int m_timer_check_counts = 0;
std::vector<alsa_raw_port_info> current_inputs; std::thread m_thread;
std::vector<alsa_raw_port_info> current_outputs; pollfd m_fds[3]{};
pollfd fds[3]{};
};
}
#else
#include <libremidi/backends/dummy.hpp>
namespace libremidi::alsa_raw
{
template <typename Enumerator>
struct observer_impl_base : observer_dummy
{
explicit observer_impl_base(
[[maybe_unused]] observer_configuration&& conf,
[[maybe_unused]] alsa_raw_observer_configuration&& apiconf)
: observer_dummy{dummy_configuration{}, dummy_configuration{}}
{
}
};
}
#endif #endif
std::vector<alsa_raw_port_info> m_current_inputs;
std::vector<alsa_raw_port_info> m_current_outputs;
};
}
namespace libremidi::alsa_raw namespace libremidi::alsa_raw
{ {
struct observer_impl : observer_impl_base<alsa_raw::midi1_enumerator> struct observer_impl : observer_impl_base<alsa_raw::midi1_enumerator>
+6 -5
View File
@@ -5,6 +5,8 @@
#include <libremidi/backends/alsa_raw_ump/observer.hpp> #include <libremidi/backends/alsa_raw_ump/observer.hpp>
#include <libremidi/backends/dummy.hpp> #include <libremidi/backends/dummy.hpp>
#include <string_view>
namespace libremidi::alsa_raw_ump namespace libremidi::alsa_raw_ump
{ {
struct backend struct backend
@@ -14,12 +16,11 @@ struct backend
using midi_observer = observer_impl; using midi_observer = observer_impl;
using midi_in_configuration = alsa_raw_ump::input_configuration; using midi_in_configuration = alsa_raw_ump::input_configuration;
using midi_out_configuration = alsa_raw_ump::output_configuration; using midi_out_configuration = alsa_raw_ump::output_configuration;
struct midi_observer_configuration : alsa_raw_observer_configuration using midi_observer_configuration = alsa_raw_ump::observer_configuration;
{
};
static const constexpr auto API = libremidi::API::ALSA_RAW_UMP; static const constexpr auto API = libremidi::API::ALSA_RAW_UMP;
static const constexpr auto name = "alsa_raw_ump"; static const constexpr std::string_view name = "alsa_raw_ump";
static const constexpr auto display_name = "ALSA (raw UMP)"; static const constexpr std::string_view display_name = "ALSA (raw UMP)";
static inline bool available() noexcept static inline bool available() noexcept
{ {
@@ -1,11 +1,15 @@
#pragma once #pragma once
#include <libremidi/backends/alsa_raw/config.hpp> #include <libremidi/backends/alsa_raw/config.hpp>
#include <chrono>
#include <functional>
namespace libremidi::alsa_raw_ump namespace libremidi::alsa_raw_ump
{ {
struct input_configuration struct input_configuration
{ {
std::function<bool(const manual_poll_parameters&)> manual_poll; std::function<bool(const manual_poll_parameters&)> manual_poll;
std::chrono::milliseconds poll_period{2};
}; };
struct output_configuration struct output_configuration
@@ -17,8 +21,7 @@ struct output_configuration
std::optional<chunking_parameters> chunking; std::optional<chunking_parameters> chunking;
}; };
struct observer_configuration struct observer_configuration : public alsa_raw_observer_configuration
{ {
std::chrono::milliseconds poll_period{100};
}; };
} }
@@ -3,12 +3,16 @@
#include <libremidi/config.hpp> #include <libremidi/config.hpp>
#include <libremidi/detail/observer.hpp> #include <libremidi/detail/observer.hpp>
#include <cstdio>
namespace libremidi::alsa_raw_ump namespace libremidi::alsa_raw_ump
{ {
struct midi2_enumerator : alsa_raw::enumerator struct midi2_enumerator : alsa_raw::enumerator
{ {
using alsa_raw::enumerator::enumerator;
void enumerate_devices(int card) override void enumerate_devices(int card) override
{ {
using namespace std::literals;
char name[128]; char name[128];
sprintf(name, "hw:%d", card); sprintf(name, "hw:%d", card);
@@ -28,10 +32,8 @@ struct midi2_enumerator : alsa_raw::enumerator
if (status < 0) if (status < 0)
{ {
error( handler.libremidi_handle_error(
"alsa_raw_ump::midi2_enumerator::enumerate_devices: " configuration, "Cannot determine device number: "s + snd.strerror(status));
"cannot determine device number: ",
snd.strerror(status));
break; break;
} }
@@ -35,32 +35,17 @@ public:
~midi_in_impl() override { } ~midi_in_impl() override { }
bool open_virtual_port(std::string_view) override
{
warning(configuration, "alsa_raw_ump::ump: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "alsa_raw_ump::ump: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "alsa_raw_ump::ump: set_port_name unsupported");
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW_UMP; } libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW_UMP; }
// Must be a string such as: "hw:2,4,1" // Must be a string such as: "hw:2,4,1"
[[nodiscard]] int do_init_port(const char* portname) [[nodiscard]] stdx::error do_init_port(const char* portname)
{ {
constexpr int mode = 0; constexpr int mode = 0;
SND_RAWMIDI_NONBLOCK; SND_RAWMIDI_NONBLOCK; // fixme
if (int err = snd.ump.open(&midiport_, 0, portname, mode); err < 0) if (int err = snd.ump.open(&midiport_, 0, portname, mode); err < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "alsa_raw_ump::ump::open_port: cannot open device.");
this->configuration, "alsa_raw_ump::ump::open_port: cannot open device."); return from_errc(err);
return err;
} }
snd_rawmidi_params_t* params{}; snd_rawmidi_params_t* params{};
@@ -69,49 +54,52 @@ public:
auto rawmidi = snd.ump.rawmidi(midiport_); auto rawmidi = snd.ump.rawmidi(midiport_);
if (int err = snd.ump.rawmidi_params_current(midiport_, params); err < 0) if (int err = snd.ump.rawmidi_params_current(midiport_, params); err < 0)
return err; return from_errc(err);
if (int err = snd.rawmidi.params_set_no_active_sensing(rawmidi, params, 1); err < 0) if (int err = snd.rawmidi.params_set_no_active_sensing(rawmidi, params, 1); err < 0)
return err; return from_errc(err);
if (configuration.timestamps == timestamp_mode::NoTimestamp) if (configuration.timestamps == timestamp_mode::NoTimestamp)
{ {
if (int err = snd.rawmidi.params_set_read_mode(rawmidi, params, SND_RAWMIDI_READ_STANDARD); if (int err = snd.rawmidi.params_set_read_mode(rawmidi, params, SND_RAWMIDI_READ_STANDARD);
err < 0) err < 0)
return err; return from_errc(err);
if (int err = snd.rawmidi.params_set_clock_type(rawmidi, params, SND_RAWMIDI_CLOCK_NONE); if (int err = snd.rawmidi.params_set_clock_type(rawmidi, params, SND_RAWMIDI_CLOCK_NONE);
err < 0) err < 0)
return err; return from_errc(err);
} }
else else
{ {
if (int err = snd.rawmidi.params_set_read_mode(rawmidi, params, SND_RAWMIDI_READ_TSTAMP); if (int err = snd.rawmidi.params_set_read_mode(rawmidi, params, SND_RAWMIDI_READ_TSTAMP);
err < 0) err < 0)
return err; return from_errc(err);
if (int err if (int err
= snd.rawmidi.params_set_clock_type(rawmidi, params, SND_RAWMIDI_CLOCK_MONOTONIC); = snd.rawmidi.params_set_clock_type(rawmidi, params, SND_RAWMIDI_CLOCK_MONOTONIC);
err < 0) err < 0)
return err; return from_errc(err);
} }
if (int err = snd.ump.rawmidi_params(midiport_, params); err < 0) if (int err = snd.ump.rawmidi_params(midiport_, params); err < 0)
return err; return from_errc(err);
return init_pollfd(); return init_pollfd();
} }
[[nodiscard]] int init_port(const port_information& p) [[nodiscard]] stdx::error init_port(const port_information& p)
{ {
return do_init_port(raw_from_port_handle(p.port).to_string().c_str()); return do_init_port(raw_from_port_handle(p.port).to_string().c_str());
} }
[[nodiscard]] int init_pollfd() [[nodiscard]] stdx::error init_pollfd()
{ {
int num_fds = snd.ump.poll_descriptors_count(this->midiport_); int num_fds = snd.ump.poll_descriptors_count(this->midiport_);
this->fds_.clear(); this->fds_.clear();
this->fds_.resize(num_fds); this->fds_.resize(num_fds);
return snd.ump.poll_descriptors(this->midiport_, fds_.data(), num_fds); int ret = snd.ump.poll_descriptors(this->midiport_, fds_.data(), num_fds);
if (ret < 0)
return from_errc(ret);
return stdx::error{};
} }
ssize_t do_read_events(auto parse_func, std::span<pollfd> fds) ssize_t do_read_events(auto parse_func, std::span<pollfd> fds)
@@ -143,95 +131,60 @@ public:
ssize_t read_input_buffer() ssize_t read_input_buffer()
{ {
static const constexpr int nbytes = 1024; static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = false,
unsigned char bytes[nbytes]; .absolute_is_monotonic = false,
.has_samples = false,
};
static const constexpr int nwords = 64;
uint32_t words[nwords];
ssize_t err = 0; ssize_t err = 0;
while ((err = snd.ump.read(this->midiport_, bytes, nbytes)) > 0) while ((err = snd.ump.read(this->midiport_, words, nwords * 4)) > 0)
{ {
std::cerr << "We read: " << nbytes << "bytes !!!!"; const auto to_ns = [this] { return absolute_timestamp(); };
return 1; m_processing.on_bytes({words, words + err / 4}, m_processing.timestamp<timestamp_info>(to_ns, 0));
// err is the amount of bytes read
// decoder_.add_bytes(bytes, err);
} }
return err; return err;
} }
void set_timestamp(struct timespec ts, timestamp& res)
{
static constexpr int64_t nanos = 1e9;
switch (configuration.timestamps)
{
// Unneeded here
case timestamp_mode::NoTimestamp:
break;
case timestamp_mode::Relative: {
const auto t = static_cast<int64_t>(ts.tv_sec) * nanos + static_cast<int64_t>(ts.tv_nsec);
if (firstMessage == true)
{
firstMessage = false;
res = 0;
}
else
{
res = t - last_time;
}
last_time = t;
break;
}
case timestamp_mode::Absolute:
case timestamp_mode::SystemMonotonic:
res = static_cast<int64_t>(ts.tv_sec) * nanos + static_cast<int64_t>(ts.tv_nsec);
break;
case timestamp_mode::Custom:
res = configuration.get_timestamp(
static_cast<int64_t>(ts.tv_sec) * nanos + static_cast<int64_t>(ts.tv_nsec));
break;
}
}
ssize_t read_input_buffer_with_timestamps() ssize_t read_input_buffer_with_timestamps()
{ {
static const constexpr int nbytes = 1024; static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = true,
.absolute_is_monotonic = true,
.has_samples = false,
};
unsigned char bytes[nbytes]; static const constexpr int nwords = 64;
uint32_t words[nwords];
struct timespec ts; struct timespec ts;
ssize_t err = 0; ssize_t err = 0;
while ((err = snd.ump.tread(this->midiport_, &ts, bytes, nbytes)) > 0) while ((err = snd.ump.tread(this->midiport_, &ts, words, nwords * 4)) > 0)
{ {
// err is the amount of bytes read const auto to_ns = [ts] {
int64_t ns{}; return static_cast<int64_t>(ts.tv_sec) * 1'000'000'000 + static_cast<int64_t>(ts.tv_nsec);
set_timestamp(ts, ns); };
std::cerr << "We read: " << nbytes << "bytes !!!!"; m_processing.on_bytes({words, words + err / 4}, m_processing.timestamp<timestamp_info>(to_ns, 0));
return 1;
// decoder_.add_bytes(bytes, err, ns);
} }
return err; return err;
} }
void close_port() override stdx::error close_port() override
{ {
if (midiport_) if (midiport_)
snd.ump.close(midiport_); snd.ump.close(midiport_);
midiport_ = nullptr; midiport_ = nullptr;
return stdx::error{};
} }
timestamp absolute_timestamp() const noexcept override { return system_ns(); } timestamp absolute_timestamp() const noexcept override { return system_ns(); }
midi2_enumerator get_device_enumerator() const noexcept
{
midi2_enumerator device_list;
device_list.error_callback
= [this](std::string_view text) { this->error<driver_error>(this->configuration, text); };
return device_list;
}
snd_ump_t* midiport_{}; snd_ump_t* midiport_{};
std::vector<pollfd> fds_; std::vector<pollfd> fds_;
// midi_stream_decoder decoder_{this->configuration.on_message}; midi2::input_state_machine m_processing{this->configuration};
int64_t last_time{};
}; };
class midi_in_impl_threaded : public midi_in_impl class midi_in_impl_threaded : public midi_in_impl
@@ -241,33 +194,39 @@ public:
libremidi::ump_input_configuration&& conf, alsa_raw_ump::input_configuration&& apiconf) libremidi::ump_input_configuration&& conf, alsa_raw_ump::input_configuration&& apiconf)
: midi_in_impl{std::move(conf), std::move(apiconf)} : midi_in_impl{std::move(conf), std::move(apiconf)}
{ {
if (this->termination_event < 0) if (this->m_termination_event < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "error creating eventfd.");
this->configuration, "midi_in_alsa::initialize: error creating eventfd."); return;
} }
client_open_ = stdx::error{};
} }
~midi_in_impl_threaded() ~midi_in_impl_threaded()
{ {
// Close a connection if it exists. // Close a connection if it exists.
this->close_port(); midi_in_impl_threaded::close_port();
client_open_ = std::errc::not_connected;
} }
private: private:
void run_thread(auto parse_func) void run_thread(auto parse_func)
{ {
fds_.push_back(this->termination_event); fds_.push_back(this->m_termination_event);
const auto period
= std::chrono::duration_cast<std::chrono::milliseconds>(this->configuration.poll_period)
.count();
for (;;) for (;;)
{ {
// Poll // Poll
ssize_t err = poll(fds_.data(), fds_.size(), -1); ssize_t err = poll(fds_.data(), fds_.size(), static_cast<int32_t>(period));
if (err == -EAGAIN) if (err == -EAGAIN)
continue; continue;
else if (err < 0) else if (err < 0)
return; return;
else if (termination_event.ready(fds_.back())) else if (m_termination_event.ready(fds_.back()))
break; break;
err = do_read_events(parse_func, {fds_.data(), fds_.size() - 1}); err = do_read_events(parse_func, {fds_.data(), fds_.size() - 1});
@@ -278,64 +237,71 @@ private:
} }
} }
[[nodiscard]] int start_thread() [[nodiscard]] stdx::error start_thread()
{ {
try try
{ {
if (configuration.timestamps == timestamp_mode::NoTimestamp) if (configuration.timestamps == timestamp_mode::NoTimestamp)
{ {
this->thread_ = std::thread{[this] { run_thread(&midi_in_impl::read_input_buffer); }}; this->m_thread = std::thread{[this] { run_thread(&midi_in_impl::read_input_buffer); }};
} }
else else
{ {
this->thread_ = std::thread{ this->m_thread = std::thread{
[this] { run_thread(&midi_in_impl::read_input_buffer_with_timestamps); }}; [this] { run_thread(&midi_in_impl::read_input_buffer_with_timestamps); }};
} }
return stdx::error{};
} }
catch (const std::system_error& e) catch (const std::system_error& e)
{ {
using namespace std::literals; using namespace std::literals;
error<thread_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_alsa::start_thread: error starting MIDI input thread: "s + e.what()); "error starting MIDI input thread: "s + e.what());
return false; return e.code();
} }
return true; return stdx::error{};
} }
bool open_port(const input_port& port, [[maybe_unused]] std::string_view name) override stdx::error open_port(const input_port& port, [[maybe_unused]] std::string_view name) override
{ {
if (int err = midi_in_impl::init_port(port); err < 0) if (auto err = midi_in_impl::init_port(port); err != stdx::error{})
return false; return err;
if (!start_thread()) if (auto err = start_thread(); err != stdx::error{})
return false; return err;
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
termination_event.notify(); m_termination_event.notify();
if (thread_.joinable()) if (m_thread.joinable())
thread_.join(); m_thread.join();
termination_event.consume(); // Reset to zero m_termination_event.consume(); // Reset to zero
midi_in_impl::close_port(); return midi_in_impl::close_port();
} }
std::thread thread_; std::thread m_thread;
eventfd_notifier termination_event{}; eventfd_notifier m_termination_event{};
}; };
class midi_in_impl_manual : public midi_in_impl class midi_in_impl_manual : public midi_in_impl
{ {
public: public:
using midi_in_impl::midi_in_impl; midi_in_impl_manual(ump_input_configuration&& conf, alsa_raw_ump::input_configuration&& apiconf)
: midi_in_impl{std::move(conf), std::move(apiconf)}
{
client_open_ = stdx::error{};
}
~midi_in_impl_manual() ~midi_in_impl_manual()
{ {
// Close a connection if it exists. // Close a connection if it exists.
this->close_port(); midi_in_impl_manual::close_port();
client_open_ = std::errc::not_connected;
} }
private: private:
@@ -359,12 +325,12 @@ private:
} }
} }
bool open_port(const input_port& p, [[maybe_unused]] std::string_view name) override stdx::error open_port(const input_port& p, [[maybe_unused]] std::string_view name) override
{ {
if (midi_in_impl::init_port(p) < 0) if (auto err = midi_in_impl::init_port(p); err != stdx::error{})
return false; return err;
send_poll_callback(); send_poll_callback();
return true; return stdx::error{};
} }
}; };
} }
@@ -1,12 +1,17 @@
#pragma once #pragma once
#include <libremidi/backends/alsa_raw_ump/config.hpp> #include <libremidi/backends/alsa_raw_ump/config.hpp>
#include <libremidi/backends/alsa_raw_ump/helpers.hpp> #include <libremidi/backends/alsa_raw_ump/helpers.hpp>
#include <libremidi/backends/linux/alsa.hpp>
#include <libremidi/detail/midi_out.hpp> #include <libremidi/detail/midi_out.hpp>
#include <libremidi/error_handler.hpp>
#include <libremidi/output_configuration.hpp>
#include <alsa/asoundlib.h> #include <alsa/asoundlib.h>
#include <atomic> #include <cassert>
#include <thread> #include <cstdint>
#include <system_error>
#include <utility>
namespace libremidi::alsa_raw_ump namespace libremidi::alsa_raw_ump
{ {
@@ -29,76 +34,63 @@ public:
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
assert(snd.ump.available); assert(snd.ump.available);
client_open_ = stdx::error{};
} }
~midi_out_impl() override ~midi_out_impl() override
{ {
// Close a connection if it exists. // Close a connection if it exists.
midi_out_impl::close_port(); midi_out_impl::close_port();
client_open_ = std::errc::not_connected;
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW; } libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_RAW_UMP; }
bool open_virtual_port(std::string_view) override stdx::error connect_port(const char* portname)
{
warning(configuration, "midi_out_alsa_raw: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_alsa_raw: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_out_alsa_raw: set_port_name unsupported");
}
int connect_port(const char* portname)
{ {
constexpr int mode = SND_RAWMIDI_SYNC; constexpr int mode = SND_RAWMIDI_SYNC;
int status = snd.ump.open(NULL, &midiport_, portname, mode); int ret = snd.ump.open(NULL, &midiport_, portname, mode);
if (status < 0) if (ret < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "cannot open device.");
this->configuration, "midi_out_alsa_raw::open_port: cannot open device."); return from_errc(ret);
return status;
} }
return status; return stdx::error{};
} }
bool open_port(const output_port& p, std::string_view) override stdx::error open_port(const output_port& p, std::string_view) override
{ {
return connect_port(raw_from_port_handle(p.port).to_string().c_str()) == 0; return connect_port(raw_from_port_handle(p.port).to_string().c_str());
} }
void close_port() override stdx::error close_port() override
{ {
if (midiport_) if (midiport_)
snd.ump.close(midiport_); snd.ump.close(midiport_);
midiport_ = nullptr; midiport_ = nullptr;
return stdx::error{};
} }
void send_ump(const uint32_t* ump_stream, std::size_t count) override stdx::error send_ump(const uint32_t* ump_stream, std::size_t count) override
{ {
if (!midiport_) if (!midiport_)
error<invalid_use_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_alsa_raw::send_message: trying to send a message without an open " "trying to send a message without an open "
"port."); "port.");
write(ump_stream, count * sizeof(uint32_t)); return write(ump_stream, count * sizeof(uint32_t));
} }
bool write(const uint32_t* ump_stream, size_t bytes) stdx::error write(const uint32_t* ump_stream, size_t bytes)
{ {
if (snd.ump.write(midiport_, ump_stream, bytes) < 0) if (auto err = snd.ump.write(midiport_, ump_stream, bytes); err < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "cannot write message.");
this->configuration, "midi_out_alsa_raw::send_message: cannot write message."); return from_errc(err);
return false;
} }
return true; return stdx::error{};
} }
snd_ump_t* midiport_{}; snd_ump_t* midiport_{};
+10 -3
View File
@@ -16,6 +16,10 @@
#include <libremidi/backends/alsa_seq/midi_out.hpp> #include <libremidi/backends/alsa_seq/midi_out.hpp>
#include <libremidi/backends/alsa_seq/observer.hpp> #include <libremidi/backends/alsa_seq/observer.hpp>
#include <unistd.h>
#include <string_view>
namespace libremidi::alsa_seq namespace libremidi::alsa_seq
{ {
@@ -29,13 +33,16 @@ struct backend
using midi_out_configuration = alsa_seq::output_configuration; using midi_out_configuration = alsa_seq::output_configuration;
using midi_observer_configuration = alsa_seq::observer_configuration; using midi_observer_configuration = alsa_seq::observer_configuration;
static const constexpr auto API = libremidi::API::ALSA_SEQ; static const constexpr auto API = libremidi::API::ALSA_SEQ;
static const constexpr auto name = "alsa_seq"; static const constexpr std::string_view name = "alsa_seq";
static const constexpr auto display_name = "ALSA (sequencer)"; static const constexpr std::string_view display_name = "ALSA (sequencer)";
static inline bool available() noexcept static inline bool available() noexcept
{ {
static const libasound& snd = libasound::instance(); static const libasound& snd = libasound::instance();
return snd.available && snd.seq.available; if (!snd.available || !snd.seq.available)
return false;
return ::access("/dev/snd/seq", F_OK) == 0;
} }
}; };
@@ -38,6 +38,7 @@ struct input_configuration
snd_seq_t* context{}; snd_seq_t* context{};
std::function<bool(const poll_parameters&)> manual_poll; std::function<bool(const poll_parameters&)> manual_poll;
std::function<bool(snd_seq_addr_t)> stop_poll; std::function<bool(snd_seq_addr_t)> stop_poll;
std::chrono::milliseconds poll_period{2};
static constexpr int midi_version = 1; static constexpr int midi_version = 1;
}; };
@@ -56,6 +57,7 @@ struct observer_configuration
snd_seq_t* context{}; snd_seq_t* context{};
std::function<bool(const poll_parameters&)> manual_poll; std::function<bool(const poll_parameters&)> manual_poll;
std::function<bool(snd_seq_addr_t)> stop_poll; std::function<bool(snd_seq_addr_t)> stop_poll;
std::chrono::milliseconds poll_period{100};
static constexpr int midi_version = 1; static constexpr int midi_version = 1;
}; };
+14 -12
View File
@@ -46,19 +46,19 @@ namespace
{ {
inline constexpr port_handle seq_to_port_handle(uint64_t client, uint64_t port) noexcept inline constexpr port_handle seq_to_port_handle(uint64_t client, uint64_t port) noexcept
{ {
return (client << 32) + port; return (port << 32) + client;
} }
inline constexpr std::pair<int, int> seq_from_port_handle(port_handle p) noexcept inline constexpr std::pair<int, int> seq_from_port_handle(port_handle p) noexcept
{ {
int client = p >> 32; int port = p >> 32;
int port = p & 0xFFFFFFFF; int client = p & 0xFFFFFFFF;
return {client, port}; return {client, port};
} }
inline void for_all_ports( inline void for_all_ports(
const libasound& snd, snd_seq_t* seq, const libasound& snd, snd_seq_t* seq,
std::function<void(snd_seq_client_info_t&, snd_seq_port_info_t&)> func) const std::function<void(snd_seq_client_info_t&, snd_seq_port_info_t&)>& func)
{ {
snd_seq_client_info_t* cinfo{}; snd_seq_client_info_t* cinfo{};
snd_seq_client_info_alloca(&cinfo); snd_seq_client_info_alloca(&cinfo);
@@ -177,18 +177,20 @@ struct alsa_data
} }
} }
void set_client_name(std::string_view clientName) stdx::error set_client_name(std::string_view clientName)
{ {
snd.seq.set_client_name(seq, clientName.data()); int ret = snd.seq.set_client_name(seq, clientName.data());
return from_errc(ret);
} }
void set_port_name(std::string_view portName) stdx::error set_port_name(std::string_view portName)
{ {
snd_seq_port_info_t* pinfo; snd_seq_port_info_t* pinfo;
snd_seq_port_info_alloca(&pinfo); snd_seq_port_info_alloca(&pinfo);
snd.seq.get_port_info(seq, vport, pinfo); snd.seq.get_port_info(seq, vport, pinfo);
snd.seq.port_info_set_name(pinfo, portName.data()); snd.seq.port_info_set_name(pinfo, portName.data());
snd.seq.set_port_info(seq, vport, pinfo); int ret = snd.seq.set_port_info(seq, vport, pinfo);
return from_errc(ret);
} }
unsigned int get_port_count(int caps) const unsigned int get_port_count(int caps) const
@@ -209,9 +211,9 @@ struct alsa_data
// snd.seq.port_info_set_port(src_pinfo, port); // snd.seq.port_info_set_port(src_pinfo, port);
// { // {
// self.template error<invalid_parameter_error>( // self.libremidi_handle_error(
// self.configuration, // self.configuration,
// "alsa::get_port_info: invalid 'portNumber' argument: " + std::to_string(portNumber)); // "invalid 'portNumber' argument: " + std::to_string(portNumber));
// return {}; // return {};
// } // }
snd_seq_addr_t addr; snd_seq_addr_t addr;
@@ -270,8 +272,8 @@ struct alsa_data
// Make subscription // Make subscription
if (int err = snd.seq.port_subscribe_malloc(&this->subscription); err < 0) if (int err = snd.seq.port_subscribe_malloc(&this->subscription); err < 0)
{ {
self.template error<driver_error>( self.libremidi_handle_error(
self.configuration, "create_connection: ALSA error allocation port subscription."); self.configuration, "ALSA error allocation port subscription.");
return err; return err;
} }
+93 -119
View File
@@ -17,7 +17,7 @@ using midi_in_base
= std::conditional_t<ConfigurationImpl::midi_version == 1, midi1::in_api, midi2::in_api>; = std::conditional_t<ConfigurationImpl::midi_version == 1, midi1::in_api, midi2::in_api>;
template <typename ConfigurationImpl> template <typename ConfigurationImpl>
using midi_in_processing = std::conditional_t< using midi_in_processing = std::conditional_t<
ConfigurationImpl::midi_version == 1, midi1::input_state_machine, dummy_processing>; ConfigurationImpl::midi_version == 1, midi1::input_state_machine, midi2::input_state_machine>;
template <typename ConfigurationBase, typename ConfigurationImpl> template <typename ConfigurationBase, typename ConfigurationImpl>
class midi_in_impl class midi_in_impl
@@ -55,9 +55,9 @@ public:
{ {
if (init_client(configuration) < 0) if (init_client(configuration) < 0)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_alsa::initialize: error creating ALSA sequencer client " "error creating ALSA sequencer client "
"object."); "object.");
return; return;
} }
@@ -80,8 +80,7 @@ public:
int result = snd.midi.event_new(0, &coder); int result = snd.midi.event_new(0, &coder);
if (result < 0) if (result < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "error during snd_midi_event_new.");
this->configuration, "midi_in_alsa::initialize: error during snd_midi_event_new.");
return; return;
} }
snd.midi.event_init(coder); snd.midi.event_init(coder);
@@ -105,7 +104,13 @@ public:
snd.seq.close(this->seq); snd.seq.close(this->seq);
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_SEQ; } libremidi::API get_current_api() const noexcept override
{
if constexpr (ConfigurationImpl::midi_version == 1)
return libremidi::API::ALSA_SEQ;
else
return libremidi::API::ALSA_SEQ_UMP;
}
[[nodiscard]] int create_port(std::string_view portName) [[nodiscard]] int create_port(std::string_view portName)
{ {
@@ -157,14 +162,13 @@ public:
if (int ret = create_port(portName); ret < 0) if (int ret = create_port(portName); ret < 0)
{ {
error<driver_error>(configuration, "midi_in_alsa::create_port: ALSA error creating port."); libremidi_handle_error(configuration, "ALSA error creating port.");
return ret; return ret;
} }
if (int ret = connect_port(*source); ret < 0) if (int ret = connect_port(*source); ret < 0)
{ {
error<driver_error>( libremidi_handle_error(configuration, "ALSA error making port connection.");
configuration, "midi_in_alsa::create_port: ALSA error making port connection.");
return ret; return ret;
} }
@@ -184,63 +188,21 @@ public:
return 0; return 0;
} }
void close_port() override stdx::error close_port() override
{ {
unsubscribe(); unsubscribe();
stop_queue(); stop_queue();
return stdx::error{};
} }
void set_client_name(std::string_view clientName) override stdx::error set_client_name(std::string_view clientName) override
{ {
alsa_data::set_client_name(clientName); return alsa_data::set_client_name(clientName);
} }
void set_port_name(std::string_view portName) override { alsa_data::set_port_name(portName); } stdx::error set_port_name(std::string_view portName) override
protected:
void set_timestamp(const auto& ev, auto& msg) noexcept
{ {
static constexpr int64_t nanos = 1e9; return alsa_data::set_port_name(portName);
switch (configuration.timestamps)
{
case timestamp_mode::NoTimestamp:
msg.timestamp = 0;
return;
case timestamp_mode::Relative: {
const auto t1 = static_cast<int64_t>(ev.time.time.tv_sec) * nanos
+ static_cast<int64_t>(ev.time.time.tv_nsec);
const auto t0 = static_cast<int64_t>(last_time.tv_sec) * nanos
+ static_cast<int64_t>(last_time.tv_nsec);
const auto time = t1 - t0;
last_time = ev.time.time;
if (this->firstMessage == true)
{
this->firstMessage = false;
msg.timestamp = 0;
}
else
{
msg.timestamp = time;
}
return;
}
case timestamp_mode::Absolute: {
msg.timestamp = ev.time.time.tv_sec * nanos + ev.time.time.tv_nsec;
break;
}
case timestamp_mode::Custom: {
msg.timestamp
= configuration.get_timestamp(ev.time.time.tv_sec * nanos + ev.time.time.tv_nsec);
break;
}
case timestamp_mode::SystemMonotonic: {
namespace clk = std::chrono;
msg.timestamp = system_ns();
break;
}
}
} }
timestamp absolute_timestamp() const noexcept override timestamp absolute_timestamp() const noexcept override
@@ -250,7 +212,7 @@ protected:
.count(); .count();
} }
int process_event(const snd_seq_event_t& ev) int64_t process_event(const snd_seq_event_t& ev)
{ {
if constexpr (ConfigurationImpl::midi_version == 1) if constexpr (ConfigurationImpl::midi_version == 1)
{ {
@@ -296,18 +258,20 @@ protected:
return 0; return 0;
} }
int process_events() int64_t process_events()
{ {
if constexpr (ConfigurationImpl::midi_version == 1) if constexpr (ConfigurationImpl::midi_version == 1)
{ {
snd_seq_event_t* ev{}; snd_seq_event_t* ev{};
event_handle handle{snd}; event_handle handle{snd};
int result = 0; int64_t result = 0;
while ((result = snd.seq.event_input(seq, &ev)) > 0) if ((result = snd.seq.event_input(seq, &ev)) > 0)
{ {
handle.reset(ev); handle.reset(ev);
if (int err = process_event(*ev); err < 0) if (auto err = process_event(*ev); err < 0)
{
return err; return err;
}
} }
return result; return result;
} }
@@ -346,11 +310,17 @@ protected:
} }
} }
// MIDI 2 : no decoder, we can just send the UMP data directly, yay static constexpr timestamp_backend_info timestamp_info{
libremidi::ump ump; .has_absolute_timestamps = true,
std::memcpy(ump.data, ev.ump, sizeof(ev.ump)); .absolute_is_monotonic = false,
set_timestamp(ev, ump); .has_samples = false,
configuration.on_message(std::move(ump)); };
const auto to_ns = [ts = ev.time.time] {
return static_cast<int64_t>(ts.tv_sec) * 1'000'000'000 + static_cast<int64_t>(ts.tv_nsec);
};
m_processing.on_bytes_multi(
{ev.ump, ev.ump + 4}, m_processing.template timestamp<timestamp_info>(to_ns, 0));
return 0; return 0;
} }
@@ -370,7 +340,6 @@ protected:
#endif #endif
int queue_id{}; // an input queue is needed to get timestamped events int queue_id{}; // an input queue is needed to get timestamped events
snd_seq_real_time_t last_time{};
// Only needed for midi 1 // Only needed for midi 1
std::vector<unsigned char> decoding_buffer = std::vector<unsigned char>(4096); std::vector<unsigned char> decoding_buffer = std::vector<unsigned char>(4096);
@@ -384,89 +353,96 @@ public:
midi_in_alsa_threaded(ConfigurationBase&& conf, ConfigurationImpl&& apiconf) midi_in_alsa_threaded(ConfigurationBase&& conf, ConfigurationImpl&& apiconf)
: midi_in_impl<ConfigurationBase, ConfigurationImpl>{std::move(conf), std::move(apiconf)} : midi_in_impl<ConfigurationBase, ConfigurationImpl>{std::move(conf), std::move(apiconf)}
{ {
if (this->termination_event < 0) if (this->m_termination_event < 0)
{ {
this->template error<driver_error>( this->libremidi_handle_error(this->configuration, "error creating eventfd.");
this->configuration, "midi_in_alsa::initialize: error creating eventfd."); return;
} }
this->client_open_ = stdx::error{};
} }
~midi_in_alsa_threaded() { this->close_port(); } ~midi_in_alsa_threaded()
{
midi_in_alsa_threaded::close_port();
this->client_open_ = std::errc::not_connected;
}
private: private:
bool open_port(const input_port& pt, std::string_view local_port_name) override stdx::error open_port(const input_port& pt, std::string_view local_port_name) override
{ {
if (int err = this->init_port(this->to_address(pt), local_port_name); err < 0) if (int err = this->init_port(this->to_address(pt), local_port_name); err < 0)
return false; return from_errc(err);
if (!start_thread()) return this->start_thread();
return false;
return true;
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
if (int err = this->init_virtual_port(portName); err < 0) if (int err = this->init_virtual_port(portName); err < 0)
return false; return from_errc(err);
if (!this->start_thread()) return this->start_thread();
return false;
return true;
} }
void close_port() override stdx::error close_port() override
{ {
midi_in_impl<ConfigurationBase, ConfigurationImpl>::close_port(); // FIXME shouldn't we always close the thread
auto err = midi_in_impl<ConfigurationBase, ConfigurationImpl>::close_port();
stop_thread(); stop_thread();
return err;
} }
[[nodiscard]] int start_thread() [[nodiscard]] stdx::error start_thread()
{ {
try try
{ {
this->thread = std::thread([this] { thread_handler(); }); this->m_thread = std::thread([this] { thread_handler(); });
return stdx::error{};
} }
catch (const std::system_error& e) catch (const std::system_error& e)
{ {
using namespace std::literals; using namespace std::literals;
this->unsubscribe(); this->unsubscribe();
this->template error<thread_error>( this->libremidi_handle_error(
this->configuration, this->configuration, "error starting MIDI input thread: "s + e.what());
"midi_in_alsa::start_thread: error starting MIDI input thread: "s + e.what()); return e.code();
return false;
} }
return true;
} }
void stop_thread() stdx::error stop_thread()
{ {
termination_event.notify(); m_termination_event.notify();
if (this->thread.joinable()) if (this->m_thread.joinable())
this->thread.join(); this->m_thread.join();
termination_event.consume(); m_termination_event.consume();
return stdx::error{};
} }
void thread_handler() void thread_handler()
{ {
int poll_fd_count = alsa_data::snd.seq.poll_descriptors_count(this->seq, POLLIN) + 1; int poll_fd_count = alsa_data::snd.seq.poll_descriptors_count(this->seq, POLLIN) + 1;
auto poll_fds = (struct pollfd*)alloca(poll_fd_count * sizeof(struct pollfd)); auto poll_fds = (struct pollfd*)alloca(poll_fd_count * sizeof(struct pollfd));
poll_fds[0] = this->termination_event; poll_fds[0] = this->m_termination_event;
alsa_data::snd.seq.poll_descriptors(this->seq, poll_fds + 1, poll_fd_count - 1, POLLIN); alsa_data::snd.seq.poll_descriptors(this->seq, poll_fds + 1, poll_fd_count - 1, POLLIN);
const auto period
= std::chrono::duration_cast<std::chrono::milliseconds>(this->configuration.poll_period)
.count();
for (;;) for (;;)
{ {
if (alsa_data::snd.seq.event_input_pending(this->seq, 1) == 0) if (alsa_data::snd.seq.event_input_pending(this->seq, 1) == 0)
{ {
// No data pending // No data pending
if (poll(poll_fds, poll_fd_count, -1) >= 0) if (poll(poll_fds, poll_fd_count, static_cast<int32_t>(period)) >= 0)
{ {
// We got our stop-thread signal // We got our stop-thread signal
if (termination_event.ready(poll_fds[0])) if (m_termination_event.ready(poll_fds[0]))
{ {
break; break;
} }
@@ -474,7 +450,7 @@ private:
continue; continue;
} }
int res{}; int64_t res{};
if constexpr (ConfigurationImpl::midi_version == 1) if constexpr (ConfigurationImpl::midi_version == 1)
{ {
res = this->process_events(); res = this->process_events();
@@ -486,17 +462,13 @@ private:
} }
#endif #endif
(void)res;
#if defined(__LIBREMIDI_DEBUG__)
if (res < 0) if (res < 0)
std::cerr << "midi_in_alsa::thread_handler: MIDI input error: " << snd.strerror(res) LIBREMIDI_LOG("MIDI input error: ", this->snd.strerror(res));
<< "\n";
#endif
} }
} }
std::thread thread{}; std::thread m_thread{};
eventfd_notifier termination_event{}; eventfd_notifier m_termination_event{};
}; };
template <typename ConfigurationBase, typename ConfigurationImpl> template <typename ConfigurationBase, typename ConfigurationImpl>
@@ -525,33 +497,35 @@ public:
return 0; return 0;
} }
~midi_in_alsa_manual() { this->close_port(); } ~midi_in_alsa_manual() { midi_in_alsa_manual::close_port(); }
bool open_port(const input_port& pt, std::string_view local_port_name) override stdx::error open_port(const input_port& pt, std::string_view local_port_name) override
{ {
if (int err = this->init_port(this->to_address(pt), local_port_name); err < 0) if (int err = this->init_port(this->to_address(pt), local_port_name); err < 0)
return false; return from_errc(err);
if (int err = init_callback(); err < 0) if (int err = init_callback(); err < 0)
return false; return from_errc(err);
return true;
return stdx::error{};
} }
bool open_virtual_port(std::string_view name) override stdx::error open_virtual_port(std::string_view name) override
{ {
if (int err = this->init_virtual_port(name); err < 0) if (int err = this->init_virtual_port(name); err < 0)
return false; return from_errc(err);
if (int err = init_callback(); err < 0) if (int err = init_callback(); err < 0)
return false; return from_errc(err);
return true;
return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
this->configuration.stop_poll(this->vaddr); this->configuration.stop_poll(this->vaddr);
midi_in_impl<ConfigurationBase, ConfigurationImpl>::close_port(); return midi_in_impl<ConfigurationBase, ConfigurationImpl>::close_port();
} }
}; };
} }
@@ -23,22 +23,21 @@ public:
{ {
if (init_client(configuration) < 0) if (init_client(configuration) < 0)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_alsa::initialize: error creating ALSA sequencer client " "error creating ALSA sequencer client "
"object."); "object.");
return; return;
} }
if (snd.midi.event_new(this->bufferSize, &this->coder) < 0) if (snd.midi.event_new(this->m_bufferSize, &this->coder) < 0)
{ {
error<driver_error>( libremidi_handle_error(this->configuration, "error initializing MIDI event parser.");
this->configuration,
"midi_out_alsa::initialize: error initializing MIDI event "
"parser.");
return; return;
} }
snd.midi.event_init(this->coder); snd.midi.event_init(this->coder);
this->client_open_ = stdx::error{};
} }
~midi_out_impl() override ~midi_out_impl() override
@@ -54,6 +53,8 @@ public:
if (!configuration.context) if (!configuration.context)
snd.seq.close(this->seq); snd.seq.close(this->seq);
client_open_ = std::errc::not_connected;
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_SEQ; } libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_SEQ; }
@@ -65,68 +66,74 @@ public:
SND_SEQ_PORT_TYPE_MIDI_GENERIC | SND_SEQ_PORT_TYPE_APPLICATION, std::nullopt); SND_SEQ_PORT_TYPE_MIDI_GENERIC | SND_SEQ_PORT_TYPE_APPLICATION, std::nullopt);
} }
bool open_port(const output_port& p, std::string_view portName) override stdx::error open_port(const output_port& p, std::string_view portName) override
{ {
unsigned int nSrc = this->get_port_count(SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE); unsigned int n_src
if (nSrc < 1) = this->get_port_count(SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE);
if (n_src < 1)
{ {
error<no_devices_found_error>( libremidi_handle_error(this->configuration, "no MIDI output sources found!");
this->configuration, "midi_out_alsa::open_port: no MIDI output sources found!"); return make_error_code(std::errc::no_such_device);
return false;
} }
auto sink = get_port_info(p); auto sink = get_port_info(p);
if (!sink) if (!sink)
return false; return std::errc::invalid_argument;
if (int err = create_port(portName); err < 0) if (int err = create_port(portName); err < 0)
{ {
error<driver_error>(configuration, "midi_out_alsa::create_port: ALSA error creating port."); libremidi_handle_error(configuration, "ALSA error creating port.");
return false; return from_errc(err);
} }
snd_seq_addr_t source{ snd_seq_addr_t source{
.client = (unsigned char)snd.seq.client_id(this->seq), .port = (unsigned char)this->vport}; .client = (unsigned char)snd.seq.client_id(this->seq), .port = (unsigned char)this->vport};
if (int err = create_connection(*this, source, *sink, true); err < 0) if (int err = create_connection(*this, source, *sink, true); err < 0)
{ {
error<driver_error>( libremidi_handle_error(configuration, "ALSA error making port connection.");
configuration, "midi_out_alsa::create_port: ALSA error making port connection."); return from_errc(err);
return false;
} }
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
if (int err = create_port(portName); err < 0) if (int err = create_port(portName); err < 0)
return false; return from_errc(err);
return true; return stdx::error{};
} }
void close_port() override { unsubscribe(); } stdx::error close_port() override
void set_client_name(std::string_view clientName) override
{ {
alsa_data::set_client_name(clientName); unsubscribe();
return stdx::error{};
} }
void set_port_name(std::string_view portName) override { alsa_data::set_port_name(portName); } stdx::error set_client_name(std::string_view clientName) override
{
return alsa_data::set_client_name(clientName);
}
void send_message(const unsigned char* message, std::size_t size) override stdx::error set_port_name(std::string_view portName) override
{
return alsa_data::set_port_name(portName);
}
stdx::error send_message(const unsigned char* message, std::size_t size) override
{ {
int64_t result{}; int64_t result{};
if (size > this->bufferSize) if (size > this->m_bufferSize)
{ {
this->bufferSize = size; this->m_bufferSize = size;
result = snd.midi.event_resize_buffer(this->coder, size); result = snd.midi.event_resize_buffer(this->coder, size);
if (result != 0) if (result != 0)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_alsa::send_message: ALSA error resizing MIDI event " "ALSA error resizing MIDI event "
"buffer."); "buffer.");
return; return std::errc::no_buffer_space;
} }
} }
@@ -140,18 +147,18 @@ public:
// FIXME direct is set but snd_seq_event_output_direct is not used... // FIXME direct is set but snd_seq_event_output_direct is not used...
snd_seq_ev_set_direct(&ev); snd_seq_ev_set_direct(&ev);
const int64_t nBytes = size; // signed to avoir potential overflow with size - offset below const int64_t n_bytes = size; // signed to avoir potential overflow with size - offset below
result = snd.midi.event_encode(this->coder, message + offset, (long)(nBytes - offset), &ev); result = snd.midi.event_encode(this->coder, message + offset, (long)(n_bytes - offset), &ev);
if (result < 0) if (result < 0)
{ {
warning(this->configuration, "midi_out_alsa::send_message: event parsing error!"); libremidi_handle_warning(this->configuration, "event parsing error!");
return; return std::errc::bad_message;
} }
if (ev.type == SND_SEQ_EVENT_NONE) if (ev.type == SND_SEQ_EVENT_NONE)
{ {
warning(this->configuration, "midi_out_alsa::send_message: incomplete message!"); libremidi_handle_warning(this->configuration, "incomplete message!");
return; return std::errc::message_size;
} }
offset += result; offset += result;
@@ -159,16 +166,15 @@ public:
result = snd.seq.event_output(this->seq, &ev); result = snd.seq.event_output(this->seq, &ev);
if (result < 0) if (result < 0)
{ {
warning( libremidi_handle_warning(this->configuration, "error sending MIDI message to port.");
this->configuration, return std::errc::io_error;
"midi_out_alsa::send_message: error sending MIDI message to port.");
return;
} }
} }
snd.seq.drain_output(this->seq); snd.seq.drain_output(this->seq);
return stdx::error{};
} }
private: private:
uint64_t bufferSize{32}; uint64_t m_bufferSize{32};
}; };
} }
@@ -2,11 +2,15 @@
#include <libremidi/backends/alsa_seq/config.hpp> #include <libremidi/backends/alsa_seq/config.hpp>
#include <libremidi/backends/alsa_seq/helpers.hpp> #include <libremidi/backends/alsa_seq/helpers.hpp>
#include <libremidi/backends/linux/helpers.hpp> #include <libremidi/backends/linux/helpers.hpp>
#include <libremidi/detail/midi_api.hpp>
#include <libremidi/detail/observer.hpp> #include <libremidi/detail/observer.hpp>
#include <alsa/asoundlib.h> #include <alsa/asoundlib.h>
#include <bitset> #if LIBREMIDI_HAS_UDEV
#include <libremidi/backends/linux/udev.hpp>
#endif
#include <map> #include <map>
namespace libremidi::alsa_seq namespace libremidi::alsa_seq
@@ -20,12 +24,15 @@ struct port_info
int port{}; int port{};
bool isInput{}; bool isInput{};
bool isOutput{}; bool isOutput{};
std::optional<int> card{};
libremidi::port_information::port_type type{};
}; };
template <typename ConfigurationImpl> template <typename ConfigurationImpl>
class observer_impl class observer_impl
: public observer_api : public observer_api
, public alsa_data , public alsa_data
, public error_handler
{ {
public: public:
struct struct
@@ -40,7 +47,11 @@ public:
using namespace std::literals; using namespace std::literals;
if (int err = init_client(configuration); err < 0) if (int err = init_client(configuration); err < 0)
{ {
throw driver_error("observer_alsa: snd_seq_open failed"); libremidi_handle_error(
this->configuration,
"error creating ALSA sequencer client "
"object.");
return;
} }
if (!configuration.has_callbacks()) if (!configuration.has_callbacks())
@@ -65,7 +76,8 @@ public:
*this, "libremidi-observe", caps, SND_SEQ_PORT_TYPE_APPLICATION, false); *this, "libremidi-observe", caps, SND_SEQ_PORT_TYPE_APPLICATION, false);
if (err < 0) if (err < 0)
{ {
throw driver_error("observer: ALSA error creating port."); libremidi_handle_error(this->configuration, "error creating ALSA sequencer port.");
return;
} }
} }
@@ -75,7 +87,8 @@ public:
= snd.seq.connect_from(seq, vport, SND_SEQ_CLIENT_SYSTEM, SND_SEQ_PORT_SYSTEM_ANNOUNCE); = snd.seq.connect_from(seq, vport, SND_SEQ_CLIENT_SYSTEM, SND_SEQ_PORT_SYSTEM_ANNOUNCE);
if (err < 0) if (err < 0)
{ {
throw driver_error("observer_alsa: snd_seq_connect_from failed"); libremidi_handle_error(this->configuration, "error connecting to ALSA sequencer.");
return;
} }
} }
} }
@@ -98,10 +111,20 @@ public:
const auto tp = snd.seq.port_info_get_type(pinfo); const auto tp = snd.seq.port_info_get_type(pinfo);
bool ok = this->configuration.track_any; bool ok = this->configuration.track_any;
static constexpr auto virtual_port = SND_SEQ_PORT_TYPE_SOFTWARE | SND_SEQ_PORT_TYPE_SYNTHESIZER
| SND_SEQ_PORT_TYPE_APPLICATION;
if ((tp & SND_SEQ_PORT_TYPE_HARDWARE) && this->configuration.track_hardware) if ((tp & SND_SEQ_PORT_TYPE_HARDWARE) && this->configuration.track_hardware)
{
p.type = libremidi::port_information::port_type::hardware;
ok = true; ok = true;
else if ((tp & SND_SEQ_PORT_TYPE_SOFTWARE) && this->configuration.track_virtual) }
else if ((tp & virtual_port) && this->configuration.track_virtual)
{
p.type = libremidi::port_information::port_type::software;
ok = true; ok = true;
}
if (!ok) if (!ok)
return {}; return {};
@@ -111,7 +134,10 @@ public:
if (auto name = snd.seq.port_info_get_name(pinfo)) if (auto name = snd.seq.port_info_get_name(pinfo))
p.port_name = name; p.port_name = name;
auto cap = snd.seq.port_info_get_capability(pinfo); if (int card = snd.seq.client_info_get_card(cinfo); card >= 0)
p.card = card;
const auto cap = snd.seq.port_info_get_capability(pinfo);
p.isInput = (cap & SND_SEQ_PORT_CAP_DUPLEX) | (cap & SND_SEQ_PORT_CAP_READ); p.isInput = (cap & SND_SEQ_PORT_CAP_DUPLEX) | (cap & SND_SEQ_PORT_CAP_READ);
p.isOutput = (cap & SND_SEQ_PORT_CAP_DUPLEX) | (cap & SND_SEQ_PORT_CAP_WRITE); p.isOutput = (cap & SND_SEQ_PORT_CAP_DUPLEX) | (cap & SND_SEQ_PORT_CAP_WRITE);
@@ -119,18 +145,34 @@ public:
} }
template <bool Input> template <bool Input>
auto to_port_info(port_info p) const noexcept auto to_port_info(const port_info& p) const noexcept
-> std::conditional_t<Input, input_port, output_port> -> std::conditional_t<Input, input_port, output_port>
{ {
static_assert(sizeof(this->seq) <= sizeof(libremidi::client_handle)); static_assert(sizeof(this->seq) <= sizeof(libremidi::client_handle));
static_assert(sizeof(std::uintptr_t) <= sizeof(libremidi::client_handle)); static_assert(sizeof(std::uintptr_t) <= sizeof(libremidi::client_handle));
container_identifier container{};
device_identifier device{};
libremidi::port_information::port_type type = p.type;
#if LIBREMIDI_HAS_UDEV
if (p.card)
{
auto res = get_udev_soundcard_info(m_udev, *p.card);
container = res.container;
device = res.path;
type = res.type;
}
#endif
return { return {
{.client = std::uintptr_t(this->seq), {.client = std::uintptr_t(this->seq),
.container = container,
.device = device,
.port = alsa_seq::seq_to_port_handle(p.client, p.port), .port = alsa_seq::seq_to_port_handle(p.client, p.port),
.manufacturer = "", .manufacturer = "",
.device_name = p.client_name, .device_name = p.client_name,
.port_name = p.port_name, .port_name = p.port_name,
.display_name = p.port_name}}; .display_name = p.port_name,
.type = type}};
} }
void init_all_ports() void init_all_ports()
@@ -188,7 +230,7 @@ public:
if (p.client == snd.seq.client_id(seq)) if (p.client == snd.seq.client_id(seq))
return; return;
knownClients_[{p.client, p.port}] = p; m_knownClients[{p.client, p.port}] = p;
if (p.isInput && configuration.input_added) if (p.isInput && configuration.input_added)
{ {
configuration.input_added(to_port_info<true>(p)); configuration.input_added(to_port_info<true>(p));
@@ -202,11 +244,11 @@ public:
void unregister_port(int client, int port) void unregister_port(int client, int port)
{ {
auto it = knownClients_.find({client, port}); auto it = m_knownClients.find({client, port});
if (it != knownClients_.end()) if (it != m_knownClients.end())
{ {
auto p = it->second; auto p = it->second;
knownClients_.erase(it); m_knownClients.erase(it);
if (p.isInput && configuration.input_removed) if (p.isInput && configuration.input_removed)
{ {
@@ -251,7 +293,11 @@ public:
} }
private: private:
std::map<std::pair<int, int>, port_info> knownClients_; std::map<std::pair<int, int>, port_info> m_knownClients;
#if LIBREMIDI_HAS_UDEV
udev_helper m_udev{};
#endif
}; };
template <typename ConfigurationImpl> template <typename ConfigurationImpl>
@@ -263,17 +309,20 @@ public:
{ {
// Create relevant descriptors // Create relevant descriptors
auto& snd = alsa_data::snd; auto& snd = alsa_data::snd;
const auto N = snd.seq.poll_descriptors_count(this->seq, POLLIN); const auto n = snd.seq.poll_descriptors_count(this->seq, POLLIN);
descriptors_.resize(N + 1); descriptors_.resize(n + 1);
snd.seq.poll_descriptors(this->seq, descriptors_.data(), N, POLLIN); snd.seq.poll_descriptors(this->seq, descriptors_.data(), n, POLLIN);
descriptors_.back() = this->termination_event; descriptors_.back() = this->termination_event;
// Start the listening thread // Start the listening thread
thread = std::thread{[this] { thread = std::thread{[this] {
auto& snd = alsa_data::snd; auto& snd = alsa_data::snd;
const auto period
= std::chrono::duration_cast<std::chrono::milliseconds>(this->configuration.poll_period)
.count();
for (;;) for (;;)
{ {
int err = poll(descriptors_.data(), descriptors_.size(), -1); int err = poll(descriptors_.data(), descriptors_.size(), static_cast<int32_t>(period));
if (err >= 0) if (err >= 0)
{ {
// We got our stop-thread signal // We got our stop-thread signal
@@ -61,7 +61,7 @@ struct shared_handler : public libremidi::shared_context
{ {
auto clt = std::make_shared<shared_handler>(client_name); auto clt = std::make_shared<shared_handler>(client_name);
auto cb = [client = std::weak_ptr{clt}](const libremidi::alsa_seq::poll_parameters& params) { auto cb = [client = std::weak_ptr{clt}](libremidi::alsa_seq::poll_parameters params) {
if (auto clt = client.lock()) if (auto clt = client.lock())
{ {
clt->events.push( clt->events.push(
@@ -74,8 +74,7 @@ struct shared_handler : public libremidi::shared_context
auto stop_cb = [client = std::weak_ptr{clt}](snd_seq_addr_t id) { auto stop_cb = [client = std::weak_ptr{clt}](snd_seq_addr_t id) {
if (auto clt = client.lock()) if (auto clt = client.lock())
{ {
clt->events.push( clt->events.push({.type = shared_handler::event_type::callback_removed, .payload = id});
{.type = shared_handler::event_type::callback_removed, .payload = std::move(id)});
clt->queue_event.notify(); clt->queue_event.notify();
} }
return true; return true;
@@ -134,7 +133,7 @@ struct shared_handler : public libremidi::shared_context
break; break;
} }
case callback_removed: case callback_removed:
auto addr = std::move(*std::get_if<snd_seq_addr_t>(&ev.payload)); auto addr = *std::get_if<snd_seq_addr_t>(&ev.payload);
if (auto index = index_of_address(addr); index >= 0) if (auto index = index_of_address(addr); index >= 0)
{ {
addresses.erase(addresses.begin() + index); addresses.erase(addresses.begin() + index);
@@ -146,15 +145,14 @@ struct shared_handler : public libremidi::shared_context
} }
// Look for who's ready // Look for who's ready
for (int64_t i = 0, N = std::ssize(fds) - 2; i < N; i++) for (int64_t i = 0, n = std::ssize(fds) - 2; i < n; i++)
{ {
if (fds[i].revents & POLLIN) if (fds[i].revents & POLLIN)
{ {
// Read alsa event // Read alsa event
snd_seq_event_t* ev{}; snd_seq_event_t* ev{};
event_handle handle{snd}; event_handle handle{snd};
int result = 0; while (snd.seq.event_input(client, &ev) > 0)
while ((result = snd.seq.event_input(client, &ev)) > 0)
{ {
handle.reset(ev); handle.reset(ev);
+10 -3
View File
@@ -5,6 +5,10 @@
#include <libremidi/backends/alsa_seq_ump/config.hpp> #include <libremidi/backends/alsa_seq_ump/config.hpp>
#include <libremidi/backends/alsa_seq_ump/midi_out.hpp> #include <libremidi/backends/alsa_seq_ump/midi_out.hpp>
#include <unistd.h>
#include <string_view>
namespace libremidi namespace libremidi
{ {
template <> template <>
@@ -50,13 +54,16 @@ struct backend
using midi_out_configuration = alsa_seq_ump::output_configuration; using midi_out_configuration = alsa_seq_ump::output_configuration;
using midi_observer_configuration = alsa_seq_ump::observer_configuration; using midi_observer_configuration = alsa_seq_ump::observer_configuration;
static const constexpr auto API = libremidi::API::ALSA_SEQ_UMP; static const constexpr auto API = libremidi::API::ALSA_SEQ_UMP;
static const constexpr auto name = "alsa_seq_ump"; static const constexpr std::string_view name = "alsa_seq_ump";
static const constexpr auto display_name = "ALSA (sequencer, UMP)"; static const constexpr std::string_view display_name = "ALSA (sequencer, UMP)";
static inline bool available() noexcept static inline bool available() noexcept
{ {
static const libasound& snd = libasound::instance(); static const libasound& snd = libasound::instance();
return snd.available && snd.seq.available && snd.seq.ump.available && snd.ump.available; if (!snd.available || !snd.seq.available || !snd.seq.ump.available || !snd.ump.available)
return false;
return ::access("/dev/snd/seq", F_OK) == 0;
} }
}; };
} }
@@ -28,6 +28,7 @@ struct input_configuration
snd_seq_t* context{}; snd_seq_t* context{};
std::function<bool(const poll_parameters&)> manual_poll; std::function<bool(const poll_parameters&)> manual_poll;
std::function<bool(snd_seq_addr_t)> stop_poll; std::function<bool(snd_seq_addr_t)> stop_poll;
std::chrono::milliseconds poll_period{2};
static constexpr int midi_version = 2; static constexpr int midi_version = 2;
}; };
@@ -46,6 +47,7 @@ struct observer_configuration
snd_seq_t* context{}; snd_seq_t* context{};
std::function<bool(const libremidi::alsa_seq::poll_parameters&)> manual_poll; std::function<bool(const libremidi::alsa_seq::poll_parameters&)> manual_poll;
std::function<bool(snd_seq_addr_t)> stop_poll; std::function<bool(snd_seq_addr_t)> stop_poll;
std::chrono::milliseconds poll_period{100};
static constexpr int midi_version = 2; static constexpr int midi_version = 2;
}; };
@@ -27,22 +27,14 @@ public:
assert(snd.seq.ump.available); assert(snd.seq.ump.available);
if (init_client(configuration) < 0) if (init_client(configuration) < 0)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_alsa::initialize: error creating ALSA sequencer client " "error creating ALSA sequencer client "
"object."); "object.");
return; return;
} }
if (snd.midi.event_new(this->bufferSize, &this->coder) < 0) this->client_open_ = stdx::error{};
{
error<driver_error>(
this->configuration,
"midi_out_alsa::initialize: error initializing MIDI event "
"parser.");
return;
}
snd.midi.event_init(this->coder);
} }
~midi_out_impl() override ~midi_out_impl() override
@@ -53,14 +45,14 @@ public:
// Cleanup. // Cleanup.
if (this->vport >= 0) if (this->vport >= 0)
snd.seq.delete_port(this->seq, this->vport); snd.seq.delete_port(this->seq, this->vport);
if (this->coder)
snd.midi.event_free(this->coder);
if (!configuration.context) if (!configuration.context)
snd.seq.close(this->seq); snd.seq.close(this->seq);
client_open_ = std::errc::not_connected;
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_SEQ; } libremidi::API get_current_api() const noexcept override { return libremidi::API::ALSA_SEQ_UMP; }
[[nodiscard]] int create_port(std::string_view portName) [[nodiscard]] int create_port(std::string_view portName)
{ {
@@ -70,55 +62,61 @@ public:
SND_SEQ_PORT_TYPE_MIDI_GENERIC | SND_SEQ_PORT_TYPE_APPLICATION, std::nullopt); SND_SEQ_PORT_TYPE_MIDI_GENERIC | SND_SEQ_PORT_TYPE_APPLICATION, std::nullopt);
} }
bool open_port(const output_port& p, std::string_view portName) override stdx::error open_port(const output_port& p, std::string_view portName) override
{ {
unsigned int nSrc = this->get_port_count(SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE); unsigned int n_src
if (nSrc < 1) = this->get_port_count(SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE);
if (n_src < 1)
{ {
error<no_devices_found_error>( libremidi_handle_error(this->configuration, "no MIDI output sources found!");
this->configuration, "midi_out_alsa::open_port: no MIDI output sources found!"); return make_error_code(std::errc::no_such_device);
return false;
} }
auto sink = get_port_info(p); auto sink = get_port_info(p);
if (!sink) if (!sink)
return false; return std::errc::invalid_argument;
if (int err = create_port(portName); err < 0) if (int err = create_port(portName); err < 0)
{ {
error<driver_error>(configuration, "midi_out_alsa::create_port: ALSA error creating port."); libremidi_handle_error(configuration, "ALSA error creating port.");
return false; return from_errc(err);
} }
snd_seq_addr_t source{ snd_seq_addr_t source{
.client = (unsigned char)snd.seq.client_id(this->seq), .port = (unsigned char)this->vport}; .client = (unsigned char)snd.seq.client_id(this->seq), .port = (unsigned char)this->vport};
if (int err = create_connection(*this, source, *sink, true); err < 0) if (int err = create_connection(*this, source, *sink, true); err < 0)
{ {
error<driver_error>( libremidi_handle_error(configuration, "ALSA error making port connection.");
configuration, "midi_out_alsa::create_port: ALSA error making port connection."); return from_errc(err);
return false;
} }
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
if (int err = create_port(portName); err < 0) if (int err = create_port(portName); err < 0)
return false; return from_errc(err);
return true; return stdx::error{};
} }
void close_port() override { unsubscribe(); } stdx::error close_port() override
void set_client_name(std::string_view clientName) override
{ {
alsa_data::set_client_name(clientName); unsubscribe();
return stdx::error{};
} }
void set_port_name(std::string_view portName) override { alsa_data::set_port_name(portName); } stdx::error set_client_name(std::string_view clientName) override
{
return alsa_data::set_client_name(clientName);
}
void send_ump(const uint32_t* ump_stream, std::size_t count) override stdx::error set_port_name(std::string_view portName) override
{
return alsa_data::set_port_name(portName);
}
stdx::error send_ump(const uint32_t* ump_stream, std::size_t count) override
{ {
snd_seq_ump_event_t ev; snd_seq_ump_event_t ev;
@@ -128,24 +126,21 @@ public:
snd_seq_ev_set_subs(&ev); snd_seq_ev_set_subs(&ev);
snd_seq_ev_set_direct(&ev); snd_seq_ev_set_direct(&ev);
auto write_func = [this, &ev](const uint32_t* ump, int64_t bytes) { auto write_func = [this, &ev](const uint32_t* ump, int64_t bytes) -> std::errc {
std::memcpy(ev.ump, ump, bytes); std::memcpy(ev.ump, ump, bytes);
const int result = snd.seq.ump.event_output_direct(this->seq, &ev); const int ret = snd.seq.ump.event_output_direct(this->seq, &ev);
if (result < 0) if (ret < 0)
{ {
warning( libremidi_handle_warning(this->configuration, "error sending MIDI message to port.");
this->configuration, return static_cast<std::errc>(-ret);
"midi_out_alsa::send_message: error sending MIDI message to port.");
return libremidi::segmentation_error::other;
} }
return libremidi::segmentation_error::no_error; static_assert(std::errc{0} == std::errc{});
return std::errc{};
}; };
segment_ump_stream(ump_stream, count, write_func, []() {}); segment_ump_stream(ump_stream, count, write_func, []() {});
snd.seq.drain_output(this->seq); snd.seq.drain_output(this->seq);
return stdx::error{};
} }
private:
unsigned int bufferSize{32};
}; };
} }
+4 -2
View File
@@ -3,6 +3,8 @@
#include <libremidi/backends/coremidi/midi_out.hpp> #include <libremidi/backends/coremidi/midi_out.hpp>
#include <libremidi/backends/coremidi/observer.hpp> #include <libremidi/backends/coremidi/observer.hpp>
#include <string_view>
namespace libremidi namespace libremidi
{ {
struct core_backend struct core_backend
@@ -14,8 +16,8 @@ struct core_backend
using midi_out_configuration = coremidi_output_configuration; using midi_out_configuration = coremidi_output_configuration;
using midi_observer_configuration = coremidi_observer_configuration; using midi_observer_configuration = coremidi_observer_configuration;
static const constexpr auto API = libremidi::API::COREMIDI; static const constexpr auto API = libremidi::API::COREMIDI;
static const constexpr auto name = "core"; static const constexpr std::string_view name = "core";
static const constexpr auto display_name = "CoreMIDI"; static const constexpr std::string_view display_name = "CoreMIDI";
static constexpr inline bool available() noexcept { return true; } static constexpr inline bool available() noexcept { return true; }
}; };
@@ -16,6 +16,7 @@ typedef UInt32 MIDIObjectRef;
typedef MIDIObjectRef MIDIClientRef; typedef MIDIObjectRef MIDIClientRef;
#else #else
using MIDIClientRef = uint32_t; using MIDIClientRef = uint32_t;
using MIDIObjectRef = uint32_t;
#endif #endif
namespace libremidi namespace libremidi
{ {
@@ -0,0 +1,72 @@
#pragma once
#include <libremidi/error.hpp>
#include <CoreMIDI/CoreMIDI.h>
namespace libremidi
{
struct coremidi_error_domain : public stdx::error_domain
{
public:
constexpr coremidi_error_domain() noexcept
: error_domain{{0xa32b080ac770514eULL, 0xef59a407f921da43ULL}}
{
}
stdx::string_ref name() const noexcept override { return "coremidi"; }
bool equivalent(const stdx::error& lhs, const stdx::error& rhs) const noexcept override
{
if (lhs.domain() == rhs.domain())
return error_cast<std::errc>(lhs) == error_cast<std::errc>(rhs);
return false;
}
stdx::string_ref message(const stdx::error& e) const noexcept override
{
switch (error_cast<OSStatus>(e))
{
case kMIDIInvalidClient:
return "Invalid Client";
case kMIDIInvalidPort:
return "Invalid Port";
case kMIDIWrongEndpointType:
return "Wrong EndpointT ype";
case kMIDINoConnection:
return "No Connection";
case kMIDIUnknownEndpoint:
return "Unknown Endpoint";
case kMIDIUnknownProperty:
return "Unknown Property";
case kMIDIWrongPropertyType:
return "Wrong Property Type";
case kMIDINoCurrentSetup:
return "No Current Setup";
case kMIDIMessageSendErr:
return "Message Send Error";
case kMIDIServerStartErr:
return "Server Start Error";
case kMIDISetupFormatErr:
return "Setup Format Error";
case kMIDIWrongThread:
return "Wrong Thread";
case kMIDIObjectNotFound:
return "Object Not Found";
case kMIDIIDNotUnique:
return "ID Not Unique";
case kMIDINotPermitted:
return "Not Permitted";
case kMIDIUnknownError:
return "Unknown Error";
}
return "Unknown error code";
}
};
inline stdx::error from_osstatus(OSStatus ret) noexcept
{
static constexpr coremidi_error_domain domain{};
return {ret, domain};
}
}
+43 -14
View File
@@ -1,7 +1,9 @@
#pragma once #pragma once
#include <libremidi/detail/memory.hpp> #include <libremidi/detail/memory.hpp>
#include <libremidi/detail/midi_api.hpp> #include <libremidi/detail/midi_api.hpp>
#include <libremidi/error_handler.hpp>
#include <libremidi/input_configuration.hpp> #include <libremidi/input_configuration.hpp>
#include <libremidi/backends/coremidi/error_domain.hpp>
#include <CoreMIDI/CoreMIDI.h> #include <CoreMIDI/CoreMIDI.h>
#include <CoreServices/CoreServices.h> #include <CoreServices/CoreServices.h>
@@ -28,7 +30,8 @@ namespace
static inline std::string get_string_property(MIDIObjectRef object, CFStringRef property) noexcept static inline std::string get_string_property(MIDIObjectRef object, CFStringRef property) noexcept
{ {
CFStringRef res; CFStringRef res;
MIDIObjectGetStringProperty(object, property, &res); if (MIDIObjectGetStringProperty(object, property, &res) || !res)
return {};
char name[256]; char name[256];
CFStringGetCString(res, name, sizeof(name), kCFStringEncodingUTF8); CFStringGetCString(res, name, sizeof(name), kCFStringEncodingUTF8);
@@ -68,20 +71,22 @@ inline uint64_t AudioConvertHostTimeToNanos(uint64_t hostTime)
return static_cast<uint64_t>(res); return static_cast<uint64_t>(res);
} }
#endif #endif
static inline auto get_cfstring_property(MIDIObjectRef prop, CFStringRef name)
{
CFStringRef str = nullptr;
MIDIObjectGetStringProperty(prop, name, &str);
return CFString_handle{str};
};
// This function was submitted by Douglas Casey Tucker and apparently // This function was submitted by Douglas Casey Tucker and apparently
// derived largely from PortMidi. // derived largely from PortMidi.
inline CFStringRef EndpointName(MIDIEndpointRef endpoint, bool isExternal) inline CFStringRef EndpointName(MIDIEndpointRef endpoint, bool isExternal)
{ {
CFMutableStringRef result = CFStringCreateMutable(nullptr, 0); CFMutableStringRef result = CFStringCreateMutable(nullptr, 0);
static constexpr auto getProp = [](MIDIObjectRef prop) {
CFStringRef str = nullptr;
MIDIObjectGetStringProperty(prop, kMIDIPropertyName, &str);
return CFString_handle{str};
};
// Begin with the endpoint's name. // Begin with the endpoint's name.
if (auto endpoint_name = getProp(endpoint)) if (auto endpoint_name = get_cfstring_property(endpoint, kMIDIPropertyName))
{ {
CFStringAppend(result, endpoint_name.get()); CFStringAppend(result, endpoint_name.get());
} }
@@ -98,7 +103,7 @@ inline CFStringRef EndpointName(MIDIEndpointRef endpoint, bool isExternal)
if (CFStringGetLength(result) == 0) if (CFStringGetLength(result) == 0)
{ {
// endpoint name has zero length -- try the entity // endpoint name has zero length -- try the entity
if (auto entity_name = getProp(entity)) if (auto entity_name = get_cfstring_property(entity, kMIDIPropertyName))
{ {
CFStringAppend(result, entity_name.get()); CFStringAppend(result, entity_name.get());
} }
@@ -109,7 +114,7 @@ inline CFStringRef EndpointName(MIDIEndpointRef endpoint, bool isExternal)
if (device == 0) if (device == 0)
goto finish; goto finish;
if (auto dev_name = getProp(device)) if (auto dev_name = get_cfstring_property(device, kMIDIPropertyName))
{ {
const auto dev_strlen = CFStringGetLength(dev_name.get()); const auto dev_strlen = CFStringGetLength(dev_name.get());
@@ -215,15 +220,15 @@ locate_object(auto& self, const port_information& info, MIDIObjectType requested
auto ret = MIDIObjectFindByUniqueID(uid, &object, &type); auto ret = MIDIObjectFindByUniqueID(uid, &object, &type);
if (ret != noErr) if (ret != noErr)
{ {
self.template error<invalid_parameter_error>( self.libremidi_handle_error(
self.configuration, "coremidi::locate_object: cannot find port: " + info.port_name); self.configuration, "cannot find port: " + info.port_name);
return 0; return 0;
} }
if (type != requested_type || object == 0) if (type != requested_type || object == 0)
{ {
self.template error<invalid_parameter_error>( self.libremidi_handle_error(
self.configuration, "coremidi::locate_object: invalid object: " + info.port_name + " : " self.configuration, "invalid object: " + info.port_name + " : "
+ std::to_string(object)); + std::to_string(object));
return 0; return 0;
} }
@@ -255,6 +260,13 @@ struct coremidi_data
} }
} }
void close_client(auto& self)
{
self.client_open_ = std::errc::not_connected;
if (!self.configuration.context)
MIDIClientDispose(self.client);
}
static uint64_t time_in_nanos(MIDITimeStamp tp) noexcept static uint64_t time_in_nanos(MIDITimeStamp tp) noexcept
{ {
if (tp == 0) if (tp == 0)
@@ -319,6 +331,23 @@ struct coremidi_data
} }
} }
} }
stdx::error close_port()
{
if (this->endpoint)
{
MIDIEndpointDispose(this->endpoint);
this->endpoint = 0;
}
if (this->port)
{
MIDIPortDispose(this->port);
this->port = 0;
}
return stdx::error{};
}
}; };
} }
+31 -55
View File
@@ -8,10 +8,11 @@ namespace libremidi
{ {
class midi_in_core final class midi_in_core final
: public midi1::in_api : public midi1::in_api
, private coremidi_data , public coremidi_data
, public error_handler , public error_handler
{ {
public: public:
using midi_api::client_open_;
struct struct
: input_configuration : input_configuration
, coremidi_input_configuration , coremidi_input_configuration
@@ -23,11 +24,14 @@ public:
{ {
if (auto result = init_client(configuration); result != noErr) if (auto result = init_client(configuration); result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_core: error creating MIDI client object: " + std::to_string(result)); "error creating MIDI client object: " + std::to_string(result));
client_open_ = from_osstatus(result);
return; return;
} }
client_open_ = stdx::error{};
} }
~midi_in_core() override ~midi_in_core() override
@@ -38,33 +42,18 @@ public:
if (this->endpoint) if (this->endpoint)
MIDIEndpointDispose(this->endpoint); MIDIEndpointDispose(this->endpoint);
close_client(); close_client(*this);
}
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; } libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI; }
bool open_port(const input_port& info, std::string_view portName) override stdx::error open_port(const input_port& info, std::string_view portName) override
{ {
CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false); CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false);
auto source = locate_object(*this, info, kMIDIObjectType_Source); auto source = locate_object(*this, info, kMIDIObjectType_Source);
if (source == 0) if (source == 0)
return false; return std::errc::invalid_argument;
// Create our local sink // Create our local sink
MIDIPortRef port; MIDIPortRef port;
@@ -73,29 +62,29 @@ public:
if (result != noErr) if (result != noErr)
{ {
close_client(); close_client(*this);
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_in_core::open_port: error creating macOS MIDI input port: " this->configuration, "error creating macOS MIDI input port: "
+ std::to_string(result)); + std::to_string(result));
return false; return from_osstatus(result);
} }
// Make the connection. // Make the connection.
if (result = MIDIPortConnectSource(port, source, nullptr); result != noErr) if (result = MIDIPortConnectSource(port, source, nullptr); result != noErr)
{ {
MIDIPortDispose(port); MIDIPortDispose(port);
close_client(); close_client(*this);
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_in_core::open_port: error connecting macOS MIDI input port."); this->configuration, "error connecting macOS MIDI input port.");
return false; return from_osstatus(result);
} }
// Save our api-specific port information. // Save our api-specific port information.
this->port = port; this->port = port;
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
// Create a virtual MIDI input destination. // Create a virtual MIDI input destination.
MIDIEndpointRef endpoint; MIDIEndpointRef endpoint;
@@ -104,31 +93,21 @@ public:
if (result != noErr) if (result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_core::open_virtual_port: error creating virtual macOS MIDI " "error creating virtual macOS MIDI "
"destination."); "destination.");
return false; return from_osstatus(result);
} }
// Save our api-specific connection information. // Save our api-specific connection information.
this->endpoint = endpoint; this->endpoint = endpoint;
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
if (this->endpoint) return coremidi_data::close_port();
{
MIDIEndpointDispose(this->endpoint);
this->endpoint = 0;
}
if (this->port)
{
MIDIPortDispose(this->port);
this->port = 0;
}
} }
timestamp absolute_timestamp() const noexcept override timestamp absolute_timestamp() const noexcept override
@@ -158,17 +137,14 @@ public:
// MIDIPacketLists, they must be handled by multiple calls to this // MIDIPacketLists, they must be handled by multiple calls to this
// function. // function.
if (packet->length == 0) if (packet->length > 0)
{ {
packet = MIDIPacketNext(packet); auto to_ns = [packet] { return time_in_nanos(packet->timeStamp); };
continue; self.m_processing.on_bytes_multi(
{packet->data, packet->data + packet->length},
self.m_processing.timestamp<timestamp_info>(to_ns, 0));
} }
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); packet = MIDIPacketNext(packet);
} }
} }
@@ -7,10 +7,11 @@ namespace libremidi
{ {
class midi_out_core final class midi_out_core final
: public midi1::out_api : public midi1::out_api
, private coremidi_data , public coremidi_data
, public error_handler , public error_handler
{ {
public: public:
using midi_api::client_open_;
struct struct
: output_configuration : output_configuration
, coremidi_output_configuration , coremidi_output_configuration
@@ -22,11 +23,14 @@ public:
{ {
if (auto result = init_client(configuration); result != noErr) if (auto result = init_client(configuration); result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_core: error creating MIDI client object: " + std::to_string(result)); "error creating MIDI client object: " + std::to_string(result));
client_open_ = from_osstatus(result);
return; return;
} }
client_open_ = stdx::error{};
} }
~midi_out_core() ~midi_out_core()
@@ -36,112 +40,79 @@ public:
if (this->endpoint) if (this->endpoint)
MIDIEndpointDispose(this->endpoint); MIDIEndpointDispose(this->endpoint);
close_client(); close_client(*this);
}
void close_client()
{
if (!configuration.context)
MIDIClientDispose(this->client);
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_core: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_out_core: set_port_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI; } libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI; }
bool open_port(const output_port& info, std::string_view portName) override stdx::error open_port(const output_port& info, std::string_view portName) override
{ {
CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false); CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false);
// Find where we want to send // Find where we want to send
auto destination = locate_object(*this, info, kMIDIObjectType_Destination); auto destination = locate_object(*this, info, kMIDIObjectType_Destination);
if (destination == 0) if (destination == 0)
return false; return std::errc::invalid_argument;
// Create our local source // Create our local source
MIDIPortRef port; MIDIPortRef port;
OSStatus result = MIDIOutputPortCreate(this->client, toCFString(portName).get(), &port); OSStatus result = MIDIOutputPortCreate(this->client, toCFString(portName).get(), &port);
if (result != noErr) if (result != noErr)
{ {
close_client(); close_client(*this);
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_out_core::open_port: error creating macOS MIDI output port."); this->configuration, "error creating macOS MIDI output port.");
return false; return from_osstatus(result);
} }
// Save our api-specific connection information. // Save our api-specific connection information.
this->port = port; this->port = port;
this->destinationId = destination; this->destinationId = destination;
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
if (this->endpoint)
{
warning(
configuration,
"midi_out_core::open_virtual_port: a virtual output port already "
"exists!");
return false;
}
// Create a virtual MIDI output source. // Create a virtual MIDI output source.
MIDIEndpointRef endpoint; MIDIEndpointRef endpoint;
OSStatus result = MIDISourceCreate(this->client, toCFString(portName).get(), &endpoint); OSStatus result = MIDISourceCreate(this->client, toCFString(portName).get(), &endpoint);
if (result != noErr) if (result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_core::initialize: error creating macOS virtual MIDI source."); "error creating macOS virtual MIDI source.");
return false;
return from_osstatus(result);
} }
// Save our api-specific connection information. // Save our api-specific connection information.
this->endpoint = endpoint; this->endpoint = endpoint;
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
if (this->endpoint) return coremidi_data::close_port();
{
MIDIEndpointDispose(this->endpoint);
this->endpoint = 0;
}
if (this->port)
{
MIDIPortDispose(this->port);
this->port = 0;
}
} }
void send_message(const unsigned char* message, size_t size) override stdx::error send_message(const unsigned char* message, size_t size) override
{ {
unsigned int nBytes = static_cast<unsigned int>(size); unsigned int nBytes = static_cast<unsigned int>(size);
if (nBytes == 0) if (nBytes == 0)
{ {
warning(configuration, "midi_out_core::send_message: no data in message argument!"); libremidi_handle_warning(configuration, "no data in message argument!");
return; return std::errc::invalid_argument;
} }
if (message[0] != 0xF0 && nBytes > 3) if (message[0] != 0xF0 && nBytes > 3)
{ {
warning( libremidi_handle_warning(
configuration, configuration,
"midi_out_core::send_message: message format problem ... not sysex but " "message format problem ... not sysex but "
"> 3 bytes?"); "> 3 bytes?");
return; return std::errc::bad_message;
} }
const MIDITimeStamp timestamp = LIBREMIDI_AUDIO_GET_CURRENT_HOST_TIME(); const MIDITimeStamp timestamp = LIBREMIDI_AUDIO_GET_CURRENT_HOST_TIME();
@@ -166,9 +137,10 @@ public:
if (!packet) if (!packet)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_out_core::send_message: could not allocate packet list"); this->configuration, "could not allocate packet list");
return;
return std::errc::message_size;
} }
// Send to any destinations that may have connected to us. // Send to any destinations that may have connected to us.
@@ -177,10 +149,11 @@ public:
auto result = MIDIReceived(this->endpoint, packetList); auto result = MIDIReceived(this->endpoint, packetList);
if (result != noErr) if (result != noErr)
{ {
warning( libremidi_handle_warning(
this->configuration, this->configuration,
"midi_out_core::send_message: error sending MIDI to virtual " "error sending MIDI to virtual "
"destinations."); "destinations.");
return std::errc::io_error;
} }
} }
@@ -190,12 +163,14 @@ public:
auto result = MIDISend(this->port, this->destinationId, packetList); auto result = MIDISend(this->port, this->destinationId, packetList);
if (result != noErr) if (result != noErr)
{ {
warning( libremidi_handle_warning(
this->configuration, this->configuration,
"midi_out_core::send_message: error sending MIDI message to port."); "error sending MIDI message to port.");
return std::errc::io_error;
} }
} }
} }
return stdx::error{};
} }
MIDIEndpointRef destinationId{}; MIDIEndpointRef destinationId{};
@@ -38,9 +38,9 @@ public:
if (result != noErr) if (result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_core: error creating MIDI client object: " + std::to_string(result)); "error creating MIDI client object: " + std::to_string(result));
return; return;
} }
@@ -69,22 +69,64 @@ public:
MIDIEndpointGetEntity(obj, &e); MIDIEndpointGetEntity(obj, &e);
bool physical = bool(e); bool physical = bool(e);
bool ok = false; bool ok = this->configuration.track_any;
if (physical && this->configuration.track_hardware) if (physical && this->configuration.track_hardware)
ok = true; ok |= true;
else if ((!physical) && this->configuration.track_virtual) else if ((!physical) && this->configuration.track_virtual)
ok = true; ok |= true;
if (!ok) if (!ok)
return {}; return {};
// Get the MIDI device from the entity
libremidi::port_information::port_type type{};
libremidi::container_identifier usb_location_id{};
libremidi::device_identifier usb_vendor_product{};
{
MIDIDeviceRef device{};
if (MIDIEntityGetDevice(e, &device) == noErr)
{
if (device)
{
using enum libremidi::port_information::port_type;
SInt32 devid_res{};
if (MIDIObjectGetIntegerProperty(device, CFSTR("USBLocationID"), &devid_res) == noErr)
{
type = (libremidi::port_information::port_type)(hardware | usb);
usb_location_id = (uint64_t)devid_res;
}
SInt32 vendor_res{};
if (MIDIObjectGetIntegerProperty(device, CFSTR("USBVendorProduct"), &vendor_res)
== noErr)
{
type = (libremidi::port_information::port_type)(hardware | usb);
usb_vendor_product = (uint64_t)vendor_res;
}
const auto driver = get_string_property(device, kMIDIPropertyDriverOwner);
if (driver == "com.apple.AppleMIDIUSBDriver")
type = (libremidi::port_information::port_type)(hardware | usb);
if (driver == "com.apple.AppleMIDIBluetoothDriver")
type = (libremidi::port_information::port_type)(hardware | bluetooth);
if (driver == "com.apple.AppleMIDIIACDriver")
type = (libremidi::port_information::port_type)(software);
if (driver == "com.apple.AppleMIDIRTPDriver")
type = (libremidi::port_information::port_type)(network);
}
}
}
return std::conditional_t<Input, input_port, output_port>{ return std::conditional_t<Input, input_port, output_port>{
{.client = (std::uintptr_t)this->client, {.client = (std::uintptr_t)this->client,
.container = usb_location_id,
.device = usb_vendor_product,
.port = std::bit_cast<uint32_t>(get_int_property(obj, kMIDIPropertyUniqueID)), .port = std::bit_cast<uint32_t>(get_int_property(obj, kMIDIPropertyUniqueID)),
.manufacturer = get_string_property(obj, kMIDIPropertyManufacturer), .manufacturer = get_string_property(obj, kMIDIPropertyManufacturer),
.device_name = get_string_property(obj, kMIDIPropertyModel), .device_name = get_string_property(obj, kMIDIPropertyModel),
.port_name = get_string_property(obj, kMIDIPropertyName), .port_name = get_string_property(obj, kMIDIPropertyName),
.display_name = get_string_property(obj, kMIDIPropertyDisplayName)}}; .display_name = get_string_property(obj, kMIDIPropertyDisplayName),
.type = type}};
} }
std::vector<libremidi::input_port> get_input_ports() const noexcept override std::vector<libremidi::input_port> get_input_ports() const noexcept override
+7 -5
View File
@@ -3,6 +3,8 @@
#include <libremidi/backends/coremidi_ump/midi_out.hpp> #include <libremidi/backends/coremidi_ump/midi_out.hpp>
#include <libremidi/backends/coremidi_ump/observer.hpp> #include <libremidi/backends/coremidi_ump/observer.hpp>
#include <string_view>
namespace libremidi::coremidi_ump namespace libremidi::coremidi_ump
{ {
struct backend struct backend
@@ -10,12 +12,12 @@ struct backend
using midi_in = midi_in_impl; using midi_in = midi_in_impl;
using midi_out = midi_out_impl; using midi_out = midi_out_impl;
using midi_observer = observer_impl; using midi_observer = observer_impl;
using midi_in_configuration = coremidi_input_configuration; using midi_in_configuration = coremidi_ump::input_configuration;
using midi_out_configuration = coremidi_output_configuration; using midi_out_configuration = coremidi_ump::output_configuration;
using midi_observer_configuration = coremidi_observer_configuration; using midi_observer_configuration = coremidi_ump::observer_configuration;
static const constexpr auto API = libremidi::API::COREMIDI_UMP; static const constexpr auto API = libremidi::API::COREMIDI_UMP;
static const constexpr auto name = "core_ump"; static const constexpr std::string_view name = "core_ump";
static const constexpr auto display_name = "CoreMIDI UMP"; static const constexpr std::string_view display_name = "CoreMIDI UMP";
static constexpr inline bool available() noexcept { return true; /* todo? */ } static constexpr inline bool available() noexcept { return true; /* todo? */ }
}; };
@@ -3,7 +3,21 @@
namespace libremidi::coremidi_ump namespace libremidi::coremidi_ump
{ {
using input_configuration = coremidi_input_configuration; struct input_configuration
using output_configuration = coremidi_output_configuration; {
using observer_configuration = coremidi_observer_configuration; std::string client_name = "libremidi client";
std::optional<MIDIClientRef> context{};
};
struct output_configuration
{
std::string client_name = "libremidi client";
std::optional<MIDIClientRef> context{};
};
struct observer_configuration
{
std::string client_name = "libremidi client";
std::function<void(MIDIClientRef)> on_create_context{};
};
} }
@@ -2,32 +2,37 @@
#include <libremidi/backends/coremidi_ump/config.hpp> #include <libremidi/backends/coremidi_ump/config.hpp>
#include <libremidi/backends/coremidi_ump/helpers.hpp> #include <libremidi/backends/coremidi_ump/helpers.hpp>
#include <libremidi/detail/midi_in.hpp> #include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
namespace libremidi::coremidi_ump namespace libremidi::coremidi_ump
{ {
class midi_in_impl final class midi_in_impl final
: public midi2::in_api : public midi2::in_api
, private coremidi_data , public coremidi_data
, public error_handler , public error_handler
{ {
public: public:
using midi_api::client_open_;
struct struct
: ump_input_configuration : ump_input_configuration
, coremidi_ump::input_configuration , coremidi_ump::input_configuration
{ {
} configuration; } configuration;
midi_in_impl(ump_input_configuration&& conf, coremidi_input_configuration&& apiconf) midi_in_impl(ump_input_configuration&& conf, coremidi_ump::input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
if (auto result = init_client(configuration); result != noErr) if (auto result = init_client(configuration); result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_core: error creating MIDI client object: " + std::to_string(result)); "error creating MIDI client object: " + std::to_string(result));
client_open_ = from_osstatus(result);
return; return;
} }
client_open_ = stdx::error{};
} }
~midi_in_impl() override ~midi_in_impl() override
@@ -38,33 +43,18 @@ public:
if (this->endpoint) if (this->endpoint)
MIDIEndpointDispose(this->endpoint); MIDIEndpointDispose(this->endpoint);
close_client(); close_client(*this);
}
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_UMP; } libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI_UMP; }
bool open_port(const input_port& info, std::string_view portName) override stdx::error open_port(const input_port& info, std::string_view portName) override
{ {
CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false); CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false);
auto source = locate_object(*this, info, kMIDIObjectType_Source); auto source = locate_object(*this, info, kMIDIObjectType_Source);
if (source == 0) if (source == 0)
return false; return std::errc::invalid_argument;
// Create our local sink // Create our local sink
MIDIPortRef port; MIDIPortRef port;
@@ -77,29 +67,29 @@ public:
if (result != noErr) if (result != noErr)
{ {
close_client(); close_client(*this);
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_in_core::open_port: error creating macOS MIDI input port: " this->configuration, "error creating macOS MIDI input port: "
+ std::to_string(result)); + std::to_string(result));
return false; return from_osstatus(result);
} }
// Make the connection. // Make the connection.
if (result = MIDIPortConnectSource(port, source, nullptr); result != noErr) if (result = MIDIPortConnectSource(port, source, nullptr); result != noErr)
{ {
MIDIPortDispose(port); MIDIPortDispose(port);
close_client(); close_client(*this);
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_in_core::open_port: error connecting macOS MIDI input port."); this->configuration, "error connecting macOS MIDI input port.");
return false; return from_osstatus(result);
} }
// Save our api-specific port information. // Save our api-specific port information.
this->port = port; this->port = port;
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
// Create a virtual MIDI input destination. // Create a virtual MIDI input destination.
MIDIEndpointRef endpoint; MIDIEndpointRef endpoint;
@@ -111,37 +101,21 @@ public:
if (result != noErr) if (result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_in_core::open_virtual_port: error creating virtual macOS MIDI " "error creating virtual macOS MIDI "
"destination."); "destination.");
return false; return from_osstatus(result);
} }
// Save our api-specific connection information. // Save our api-specific connection information.
this->endpoint = endpoint; this->endpoint = endpoint;
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{
if (this->endpoint)
{
MIDIEndpointDispose(this->endpoint);
this->endpoint = 0;
}
if (this->port)
{
MIDIPortDispose(this->port);
this->port = 0;
}
}
void set_timestamp(
[[maybe_unused]] const MIDIEventPacket& packet,
[[maybe_unused]] libremidi::ump& msg) noexcept
{ {
return coremidi_data::close_port();
} }
timestamp absolute_timestamp() const noexcept override timestamp absolute_timestamp() const noexcept override
@@ -151,33 +125,28 @@ public:
void midiInputCallback(const MIDIEventList* list, void* /*srcRef*/) void midiInputCallback(const MIDIEventList* list, void* /*srcRef*/)
{ {
unsigned short nBytes{}; static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = true,
.absolute_is_monotonic = false,
.has_samples = false,
};
const MIDIEventPacket* packet = &list->packet[0]; const MIDIEventPacket* packet = &list->packet[0];
for (unsigned int i = 0; i < list->numPackets; ++i) for (unsigned int i = 0; i < list->numPackets; ++i)
{ {
nBytes = packet->wordCount; if (packet->wordCount > 0)
if (nBytes == 0)
{ {
packet = MIDIEventPacketNext(packet); auto to_ns = [packet] { return time_in_nanos(packet->timeStamp); };
continue; m_processing.on_bytes_multi(
{packet->words, packet->words + packet->wordCount},
m_processing.timestamp<timestamp_info>(to_ns, 0));
} }
libremidi::ump msg;
coremidi_data::set_timestamp(*this, packet->timeStamp, msg.timestamp);
if (packet->wordCount <= 4)
{
std::copy_n(packet->words, packet->wordCount, msg.data);
configuration.on_message(std::move(msg));
}
last_time = time_in_nanos(packet->timeStamp);
packet = MIDIEventPacketNext(packet); packet = MIDIEventPacketNext(packet);
} }
} }
unsigned long long last_time{}; midi2::input_state_machine m_processing{this->configuration};
}; };
} }
@@ -9,10 +9,11 @@ namespace libremidi::coremidi_ump
{ {
class midi_out_impl final class midi_out_impl final
: public midi2::out_api : public midi2::out_api
, private coremidi_data , public coremidi_data
, public error_handler , public error_handler
{ {
public: public:
using midi_api::client_open_;
struct struct
: libremidi::output_configuration : libremidi::output_configuration
, coremidi_ump::output_configuration , coremidi_ump::output_configuration
@@ -25,11 +26,14 @@ public:
{ {
if (auto result = init_client(configuration); result != noErr) if (auto result = init_client(configuration); result != noErr)
{ {
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_impl: error creating MIDI client object: " + std::to_string(result)); "error creating MIDI client object: " + std::to_string(result));
client_open_ = from_osstatus(result);
return; return;
} }
client_open_ = stdx::error{};
} }
~midi_out_impl() ~midi_out_impl()
@@ -39,64 +43,40 @@ public:
if (this->endpoint) if (this->endpoint)
MIDIEndpointDispose(this->endpoint); MIDIEndpointDispose(this->endpoint);
close_client(); close_client(*this);
}
void close_client()
{
if (!configuration.context)
MIDIClientDispose(this->client);
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_impl: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_out_impl: set_port_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI_UMP; } libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI_UMP; }
bool open_port(const output_port& info, std::string_view portName) override stdx::error open_port(const output_port& info, std::string_view portName) override
{ {
CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false); CFRunLoopRunInMode(kCFRunLoopDefaultMode, 0, false);
// Find where we want to send // Find where we want to send
auto destination = locate_object(*this, info, kMIDIObjectType_Destination); auto destination = locate_object(*this, info, kMIDIObjectType_Destination);
if (destination == 0) if (destination == 0)
return false; return std::errc::invalid_argument;
// Create our local source // Create our local source
MIDIPortRef port; MIDIPortRef port;
OSStatus result = MIDIOutputPortCreate(this->client, toCFString(portName).get(), &port); OSStatus result = MIDIOutputPortCreate(this->client, toCFString(portName).get(), &port);
if (result != noErr) if (result != noErr)
{ {
close_client(); close_client(*this);
error<driver_error>( libremidi_handle_error(
this->configuration, "midi_out_impl::open_port: error creating macOS MIDI output port."); this->configuration, "error creating macOS MIDI output port.");
return false; return from_osstatus(result);
} }
// Save our api-specific connection information. // Save our api-specific connection information.
this->port = port; this->port = port;
this->destinationId = destination; this->destinationId = destination;
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
if (this->endpoint)
{
warning(
configuration,
"midi_out_impl::open_virtual_port: a virtual output port already "
"exists!");
return false;
}
// Create a virtual MIDI output source. // Create a virtual MIDI output source.
OSStatus result = MIDISourceCreateWithProtocol( OSStatus result = MIDISourceCreateWithProtocol(
this->client, toCFString(portName).get(), kMIDIProtocol_2_0, &this->endpoint); this->client, toCFString(portName).get(), kMIDIProtocol_2_0, &this->endpoint);
@@ -104,42 +84,33 @@ public:
if (result != noErr) if (result != noErr)
{ {
this->endpoint = 0; this->endpoint = 0;
error<driver_error>( libremidi_handle_error(
this->configuration, this->configuration,
"midi_out_impl::initialize: error creating macOS virtual MIDI source."); "error creating macOS virtual MIDI source.");
return false;
return from_osstatus(result);
} }
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
if (this->endpoint) return coremidi_data::close_port();
{
MIDIEndpointDispose(this->endpoint);
this->endpoint = 0;
}
if (this->port)
{
MIDIPortDispose(this->port);
this->port = 0;
}
} }
void send_ump(const uint32_t* ump_stream, std::size_t count) override stdx::error send_ump(const uint32_t* ump_stream, std::size_t count) override
{ {
MIDIEventList* eventList = reinterpret_cast<MIDIEventList*>(m_eventListBuffer); MIDIEventList* eventList = reinterpret_cast<MIDIEventList*>(m_eventListBuffer);
MIDIEventPacket* packet = MIDIEventListInit(eventList, kMIDIProtocol_2_0); MIDIEventPacket* packet = MIDIEventListInit(eventList, kMIDIProtocol_2_0);
const MIDITimeStamp ts = LIBREMIDI_AUDIO_GET_CURRENT_HOST_TIME(); const MIDITimeStamp ts = LIBREMIDI_AUDIO_GET_CURRENT_HOST_TIME();
auto write_fun = [ts, &packet, &eventList](const uint32_t* ump, int bytes) { auto write_fun = [ts, &packet, &eventList](const uint32_t* ump, int bytes) -> std::errc {
packet = MIDIEventListAdd(eventList, event_list_max_size, packet, ts, bytes / 4, ump); packet = MIDIEventListAdd(eventList, event_list_max_size, packet, ts, bytes / 4, ump);
if (packet) if (packet)
return segmentation_error::no_error; return std::errc{0};
else else
return segmentation_error::need_space; return std::errc::not_enough_memory;
}; };
auto realloc_fun = [this, &packet, &eventList] { auto realloc_fun = [this, &packet, &eventList] {
@@ -148,20 +119,21 @@ public:
}; };
segment_ump_stream(ump_stream, count, write_fun, realloc_fun); segment_ump_stream(ump_stream, count, write_fun, realloc_fun);
push_event_list(eventList); return push_event_list(eventList);
} }
void push_event_list(MIDIEventList* eventList) stdx::error push_event_list(MIDIEventList* eventList)
{ {
if (this->endpoint) if (this->endpoint)
{ {
auto result = MIDIReceivedEventList(this->endpoint, eventList); auto result = MIDIReceivedEventList(this->endpoint, eventList);
if (result != noErr) if (result != noErr)
{ {
warning( libremidi_handle_warning(
this->configuration, this->configuration,
"midi_out_core::send_message: error sending MIDI to virtual " "error sending MIDI to virtual "
"destinations."); "destinations.");
return std::errc::io_error;
} }
} }
@@ -170,11 +142,13 @@ public:
auto result = MIDISendEventList(this->port, this->destinationId, eventList); auto result = MIDISendEventList(this->port, this->destinationId, eventList);
if (result != noErr) if (result != noErr)
{ {
warning( libremidi_handle_warning(
this->configuration, this->configuration,
"midi_out_core::send_message: error sending MIDI message to port."); "error sending MIDI message to port.");
return std::errc::io_error;
} }
} }
return stdx::error{};
} }
MIDIEndpointRef destinationId{}; MIDIEndpointRef destinationId{};
@@ -1,4 +1,5 @@
#pragma once #pragma once
#include <libremidi/backends/coremidi_ump/config.hpp>
#include <libremidi/backends/coremidi/observer.hpp> #include <libremidi/backends/coremidi/observer.hpp>
namespace libremidi::coremidi_ump namespace libremidi::coremidi_ump
@@ -6,7 +7,13 @@ namespace libremidi::coremidi_ump
class observer_impl final : public libremidi::observer_core class observer_impl final : public libremidi::observer_core
{ {
using observer_core::observer_core; public:
explicit observer_impl(libremidi::observer_configuration&& conf, coremidi_ump::observer_configuration&& apiconf)
: observer_core{std::move(conf), coremidi_observer_configuration{apiconf.client_name, apiconf.on_create_context}}
{
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI_UMP; } libremidi::API get_current_api() const noexcept override { return libremidi::API::COREMIDI_UMP; }
}; };
+48 -19
View File
@@ -5,6 +5,8 @@
#include <libremidi/detail/midi_out.hpp> #include <libremidi/detail/midi_out.hpp>
#include <libremidi/detail/observer.hpp> #include <libremidi/detail/observer.hpp>
#include <string_view>
namespace libremidi namespace libremidi
{ {
class observer_dummy : public observer_api class observer_dummy : public observer_api
@@ -23,20 +25,34 @@ class midi_in_dummy final
, public error_handler , public error_handler
{ {
public: public:
explicit midi_in_dummy(const auto& configuration, const auto&) explicit midi_in_dummy(const input_configuration& configuration, const input_api_configuration&)
{ {
warning(configuration, "midi_in_dummy: This class provides no functionality."); libremidi_handle_warning(configuration, "This class provides no functionality.");
}
explicit midi_in_dummy(
const ump_input_configuration& configuration, const input_api_configuration&)
{
libremidi_handle_warning(configuration, "This class provides no functionality.");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::DUMMY; } libremidi::API get_current_api() const noexcept override { return libremidi::API::DUMMY; }
bool open_port(const input_port& /*pt*/, std::string_view /*local_port_name*/) override stdx::error open_port(const input_port& /*pt*/, std::string_view /*local_port_name*/) override
{ {
return true; return stdx::error{};
}
stdx::error open_virtual_port(std::string_view /*portName*/) override
{
return stdx::error{};
}
stdx::error close_port() override { return stdx::error{}; }
stdx::error set_client_name(std::string_view /*clientName*/) override
{
return stdx::error{};
}
stdx::error set_port_name(std::string_view /*portName*/) override
{
return stdx::error{};
} }
bool open_virtual_port(std::string_view /*portName*/) override { return true; }
void close_port() override { }
void set_client_name(std::string_view /*clientName*/) override { }
void set_port_name(std::string_view /*portName*/) override { }
timestamp absolute_timestamp() const noexcept override { return 0; } timestamp absolute_timestamp() const noexcept override { return 0; }
}; };
@@ -45,22 +61,35 @@ class midi_out_dummy final
, public error_handler , public error_handler
{ {
public: public:
explicit midi_out_dummy(const auto& configuration, const auto&) explicit midi_out_dummy(
const output_configuration& configuration, const output_api_configuration&)
{ {
warning(configuration, "midi_out_dummy: This class provides no functionality."); libremidi_handle_warning(configuration, "This class provides no functionality.");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::DUMMY; } libremidi::API get_current_api() const noexcept override { return libremidi::API::DUMMY; }
bool open_port(const output_port& /*pt*/, std::string_view /*local_port_name*/) override stdx::error open_port(const output_port& /*pt*/, std::string_view /*local_port_name*/) override
{ {
return true; return stdx::error{};
}
stdx::error open_virtual_port(std::string_view /*portName*/) override
{
return stdx::error{};
} }
bool open_virtual_port(std::string_view /*portName*/) override { return true; }
void close_port() override { } stdx::error close_port() override { return stdx::error{}; }
void set_client_name(std::string_view /*clientName*/) override { } stdx::error set_client_name(std::string_view /*clientName*/) override
void set_port_name(std::string_view /*portName*/) override { } {
void send_message(const unsigned char* /*message*/, size_t /*size*/) override { } return stdx::error{};
}
stdx::error set_port_name(std::string_view /*portName*/) override
{
return stdx::error{};
}
stdx::error send_message(const unsigned char* /*message*/, size_t /*size*/) override
{
return stdx::error{};
}
}; };
struct dummy_backend struct dummy_backend
@@ -72,8 +101,8 @@ struct dummy_backend
using midi_out_configuration = dummy_configuration; using midi_out_configuration = dummy_configuration;
using midi_observer_configuration = dummy_configuration; using midi_observer_configuration = dummy_configuration;
static const constexpr auto API = libremidi::API::DUMMY; static const constexpr auto API = libremidi::API::DUMMY;
static const constexpr auto name = "dummy"; static const constexpr std::string_view name = "dummy";
static const constexpr auto display_name = "Dummy"; static const constexpr std::string_view display_name = "Dummy";
static constexpr inline bool available() noexcept { return true; } static constexpr inline bool available() noexcept { return true; }
}; };
+4 -2
View File
@@ -7,6 +7,8 @@
#include <libremidi/backends/emscripten/midi_out.hpp> #include <libremidi/backends/emscripten/midi_out.hpp>
#include <libremidi/backends/emscripten/observer.hpp> #include <libremidi/backends/emscripten/observer.hpp>
#include <string_view>
namespace libremidi namespace libremidi
{ {
@@ -19,8 +21,8 @@ struct emscripten_backend
using midi_out_configuration = emscripten_output_configuration; using midi_out_configuration = emscripten_output_configuration;
using midi_observer_configuration = emscripten_observer_configuration; using midi_observer_configuration = emscripten_observer_configuration;
static const constexpr auto API = libremidi::API::WEBMIDI; static const constexpr auto API = libremidi::API::WEBMIDI;
static const constexpr auto name = "webmidi"; static const constexpr std::string_view name = "webmidi";
static const constexpr auto display_name = "WebMIDI"; static const constexpr std::string_view display_name = "WebMIDI";
static constexpr inline bool available() noexcept { return true; } static constexpr inline bool available() noexcept { return true; }
}; };
@@ -204,7 +204,7 @@ public:
} }
} }
void send_message(int port_index, const char* bytes, int len) stdx::error send_message(int port_index, const char* bytes, int len)
{ {
const auto& id = m_current_outputs[port_index].id; const auto& id = m_current_outputs[port_index].id;
EM_ASM( EM_ASM(
@@ -11,12 +11,14 @@ LIBREMIDI_INLINE midi_in_emscripten::midi_in_emscripten(
input_configuration&& conf, emscripten_input_configuration&& apiconf) input_configuration&& conf, emscripten_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
client_open_ = stdx::error{};
} }
LIBREMIDI_INLINE midi_in_emscripten::~midi_in_emscripten() LIBREMIDI_INLINE midi_in_emscripten::~midi_in_emscripten()
{ {
// Close a connection if it exists. // Close a connection if it exists.
midi_in_emscripten::close_port(); midi_in_emscripten::close_port();
client_open_ = std::errc::not_connected;
} }
LIBREMIDI_INLINE libremidi::API midi_in_emscripten::get_current_api() const noexcept LIBREMIDI_INLINE libremidi::API midi_in_emscripten::get_current_api() const noexcept
@@ -24,49 +26,35 @@ LIBREMIDI_INLINE libremidi::API midi_in_emscripten::get_current_api() const noex
return libremidi::API::WEBMIDI; return libremidi::API::WEBMIDI;
} }
LIBREMIDI_INLINE bool midi_in_emscripten::open_port(int portNumber, std::string_view) LIBREMIDI_INLINE stdx::error midi_in_emscripten::open_port(int portNumber, std::string_view)
{ {
auto& midi = webmidi_helpers::midi_access_emscripten::instance(); auto& midi = webmidi_helpers::midi_access_emscripten::instance();
if (portNumber < 0 || portNumber >= midi.input_count()) if (portNumber < 0 || portNumber >= midi.input_count())
{ {
error<no_devices_found_error>( libremidi_handle_error(
this->configuration, "midi_in_emscripten::open_port: no MIDI output sources found."); this->configuration, "no MIDI output sources found.");
return false; return std::errc::invalid_argument;
} }
midi.open_input(portNumber, *this); midi.open_input(portNumber, *this);
portNumber_ = portNumber; m_portNumber = portNumber;
return true; return stdx::error{};
} }
LIBREMIDI_INLINE bool LIBREMIDI_INLINE stdx::error
midi_in_emscripten::open_port(const libremidi::input_port& p, std::string_view nm) midi_in_emscripten::open_port(const libremidi::input_port& p, std::string_view nm)
{ {
return open_port(p.port, nm); return open_port(p.port, nm);
} }
LIBREMIDI_INLINE bool midi_in_emscripten::open_virtual_port(std::string_view) LIBREMIDI_INLINE stdx::error midi_in_emscripten::close_port()
{
warning(configuration, "midi_in_emscripten::open_virtual_port: unsupported.");
return false;
}
LIBREMIDI_INLINE void midi_in_emscripten::close_port()
{ {
auto& midi = webmidi_helpers::midi_access_emscripten::instance(); auto& midi = webmidi_helpers::midi_access_emscripten::instance();
midi.close_input(portNumber_, *this); midi.close_input(m_portNumber, *this);
}
LIBREMIDI_INLINE void midi_in_emscripten::set_client_name(std::string_view) return stdx::error{};
{
warning(configuration, "midi_in_emscripten::set_client_name: unsupported.");
}
LIBREMIDI_INLINE void midi_in_emscripten::set_port_name(std::string_view)
{
warning(configuration, "midi_in_emscripten::set_port_name: unsupported.");
} }
LIBREMIDI_INLINE int64_t midi_in_emscripten::absolute_timestamp() const noexcept LIBREMIDI_INLINE int64_t midi_in_emscripten::absolute_timestamp() const noexcept
@@ -22,19 +22,16 @@ public:
libremidi::API get_current_api() const noexcept override; libremidi::API get_current_api() const noexcept override;
bool open_port(int portNumber, std::string_view); stdx::error open_port(int portNumber, std::string_view);
bool open_port(const input_port& p, std::string_view) override; stdx::error open_port(const input_port& p, std::string_view) override;
bool open_virtual_port(std::string_view) override; stdx::error close_port() override;
void close_port() override;
void set_client_name(std::string_view clientName) override;
void set_port_name(std::string_view portName) override;
timestamp absolute_timestamp() const noexcept override; timestamp absolute_timestamp() const noexcept override;
void on_input(double ts, unsigned char* begin, unsigned char* end); void on_input(double ts, unsigned char* begin, unsigned char* end);
private: private:
int portNumber_{}; int m_portNumber{};
midi1::input_state_machine m_processing{this->configuration}; midi1::input_state_machine m_processing{this->configuration};
}; };
@@ -8,12 +8,14 @@ LIBREMIDI_INLINE midi_out_emscripten::midi_out_emscripten(
output_configuration&& conf, emscripten_output_configuration&& apiconf) output_configuration&& conf, emscripten_output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
client_open_ = stdx::error{};
} }
LIBREMIDI_INLINE midi_out_emscripten::~midi_out_emscripten() LIBREMIDI_INLINE midi_out_emscripten::~midi_out_emscripten()
{ {
// Close a connection if it exists. // Close a connection if it exists.
midi_out_emscripten::close_port(); midi_out_emscripten::close_port();
client_open_ = std::errc::not_connected;
} }
LIBREMIDI_INLINE libremidi::API midi_out_emscripten::get_current_api() const noexcept LIBREMIDI_INLINE libremidi::API midi_out_emscripten::get_current_api() const noexcept
@@ -21,54 +23,41 @@ LIBREMIDI_INLINE libremidi::API midi_out_emscripten::get_current_api() const noe
return libremidi::API::WEBMIDI; return libremidi::API::WEBMIDI;
} }
LIBREMIDI_INLINE bool midi_out_emscripten::open_port(unsigned int portNumber, std::string_view) LIBREMIDI_INLINE stdx::error midi_out_emscripten::open_port(int portNumber, std::string_view)
{ {
auto& midi = webmidi_helpers::midi_access_emscripten::instance(); auto& midi = webmidi_helpers::midi_access_emscripten::instance();
if (portNumber >= midi.output_count()) if (portNumber >= midi.output_count())
{ {
error<no_devices_found_error>( libremidi_handle_error(
this->configuration, "midi_out_emscripten::open_port: no MIDI output sources found."); this->configuration, "no MIDI output sources found.");
return false; return std::errc::invalid_argument;
} }
portNumber_ = portNumber; m_portNumber = portNumber;
return true; return stdx::error{};
} }
LIBREMIDI_INLINE bool midi_out_emscripten::open_port(const output_port& p, std::string_view nm) LIBREMIDI_INLINE stdx::error midi_out_emscripten::open_port(const output_port& p, std::string_view nm)
{ {
return open_port(p.port, nm); return open_port(p.port, nm);
} }
LIBREMIDI_INLINE void midi_out_emscripten::close_port() { } LIBREMIDI_INLINE stdx::error midi_out_emscripten::close_port() {
return stdx::error{};
LIBREMIDI_INLINE void midi_out_emscripten::set_client_name(std::string_view clientName)
{
warning(configuration, "midi_out_emscripten::set_client_name: unsupported.");
} }
LIBREMIDI_INLINE void midi_out_emscripten::set_port_name(std::string_view portName) LIBREMIDI_INLINE stdx::error midi_out_emscripten::send_message(const unsigned char* message, size_t size)
{ {
warning(configuration, "midi_out_emscripten::set_port_name: unsupported."); if (m_portNumber < 0)
} libremidi_handle_error(
LIBREMIDI_INLINE bool midi_out_emscripten::open_virtual_port(std::string_view)
{
warning(configuration, "midi_in_emscripten::open_virtual_port: unsupported.");
return false;
}
LIBREMIDI_INLINE void midi_out_emscripten::send_message(const unsigned char* message, size_t size)
{
if (portNumber_ < 0)
error<invalid_use_error>(
this->configuration, this->configuration,
"midi_out_emscripten::send_message: trying to send a message without an open " "trying to send a message without an open "
"port."); "port.");
webmidi_helpers::midi_access_emscripten::instance().send_message( webmidi_helpers::midi_access_emscripten::instance().send_message(
portNumber_, reinterpret_cast<const char*>(message), size); m_portNumber, reinterpret_cast<const char*>(message), size);
return stdx::error{};
} }
} }
#endif #endif
@@ -21,17 +21,13 @@ public:
libremidi::API get_current_api() const noexcept override; libremidi::API get_current_api() const noexcept override;
bool open_port(unsigned int portNumber, std::string_view); stdx::error open_port(int portNumber, std::string_view);
bool open_port(const output_port& p, std::string_view) override; stdx::error open_port(const output_port& p, std::string_view) override;
bool open_virtual_port(std::string_view) override; stdx::error close_port() override;
void close_port() override;
void set_client_name(std::string_view clientName) override; stdx::error send_message(const unsigned char* message, size_t size) override;
void set_port_name(std::string_view portName) override;
void send_message(const unsigned char* message, size_t size) override;
private: private:
int portNumber_{-1}; int m_portNumber{-1};
}; };
} }
+4 -2
View File
@@ -3,6 +3,8 @@
#include <libremidi/backends/jack/midi_out.hpp> #include <libremidi/backends/jack/midi_out.hpp>
#include <libremidi/backends/jack/observer.hpp> #include <libremidi/backends/jack/observer.hpp>
#include <string_view>
//*********************************************************************// //*********************************************************************//
// API: UNIX JACK // API: UNIX JACK
// //
@@ -22,8 +24,8 @@ struct jack_backend
using midi_out_configuration = jack_output_configuration; using midi_out_configuration = jack_output_configuration;
using midi_observer_configuration = jack_observer_configuration; using midi_observer_configuration = jack_observer_configuration;
static const constexpr auto API = libremidi::API::JACK_MIDI; static const constexpr auto API = libremidi::API::JACK_MIDI;
static const constexpr auto name = "jack"; static const constexpr std::string_view name = "jack";
static const constexpr auto display_name = "JACK"; static const constexpr std::string_view display_name = "JACK";
static inline bool available() noexcept static inline bool available() noexcept
{ {
+4 -5
View File
@@ -1,7 +1,6 @@
#pragma once #pragma once
#include <libremidi/config.hpp> #include <libremidi/config.hpp>
#include <cinttypes>
#include <cstdint> #include <cstdint>
#include <functional> #include <functional>
#include <string> #include <string>
@@ -25,8 +24,8 @@ struct jack_input_configuration
std::string client_name = "libremidi client"; std::string client_name = "libremidi client";
jack_client_t* context{}; jack_client_t* context{};
std::function<void(jack_callback)> set_process_func; std::function<void(jack_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func; std::function<void(int64_t)> clear_process_func{};
}; };
struct jack_output_configuration struct jack_output_configuration
@@ -34,8 +33,8 @@ struct jack_output_configuration
std::string client_name = "libremidi client"; std::string client_name = "libremidi client";
jack_client_t* context{}; jack_client_t* context{};
std::function<void(jack_callback)> set_process_func; std::function<void(jack_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func; std::function<void(int64_t)> clear_process_func{};
int32_t ringbuffer_size = 16384; int32_t ringbuffer_size = 16384;
bool direct = false; bool direct = false;
@@ -0,0 +1,78 @@
#pragma once
#include <libremidi/error.hpp>
#if __has_include(<weakjack/weak_libjack.h>)
#include <weakjack/weak_libjack.h>
#elif __has_include(<weak_libjack.h>)
#include <weak_libjack.h>
#elif __has_include(<jack/jack.h> )
#include <jack/jack.h>
#include <jack/midiport.h>
#include <jack/ringbuffer.h>
#endif
namespace libremidi
{
struct jack_error_domain : public stdx::error_domain
{
public:
constexpr jack_error_domain() noexcept
: error_domain{{0xc714ea32b705080aULL, 0xe409a437daf5f921ULL}}
{
}
stdx::string_ref name() const noexcept override { return "jack"; }
bool equivalent(const stdx::error& lhs, const stdx::error& rhs) const noexcept override
{
if (lhs.domain() == rhs.domain())
return error_cast<jack_status_t>(lhs) == error_cast<jack_status_t>(rhs);
return false;
}
stdx::string_ref message(const stdx::error& e) const noexcept override
{
const auto status = error_cast<jack_status_t>(e);
if(status == jack_status_t{})
return "Success";
if(status & JackInvalidOption)
return "The operation contained an invalid or unsupported option";
if(status & JackServerFailed)
return "Unable to connect to the JACK server";
if(status & JackServerError)
return "Communication error with the JACK server";
if(status & JackNoSuchClient)
return "Requested client does not exist";
if(status & JackLoadFailure)
return "Unable to load internal client";
if(status & JackInitFailure)
return "Unable to initialize client";
if(status & JackShmFailure)
return "Unable to access shared memory";
if(status & JackVersionError)
return "Client's protocol version does not match";
if(status & JackBackendError)
return "Backend error";
if(status & JackClientZombie)
return "Client zombified failure";
if(status & JackFailure)
return "Failure";
if(status & JackNameNotUnique)
return "The desired client name was not unique";
// Can't happen in libremidi as we set JackNoStartServer
if(status & JackServerStarted)
return "Server was started";
return "Unknown JACK status code";
}
};
inline stdx::error from_jack_status(jack_status_t ret) noexcept
{
static constexpr jack_error_domain domain{};
return {ret, domain};
}
}
+106 -28
View File
@@ -1,19 +1,13 @@
#pragma once #pragma once
#if __has_include(<weakjack/weak_libjack.h>) #include <libremidi/backends/jack/error_domain.hpp>
#include <weakjack/weak_libjack.h>
#elif __has_include(<weak_libjack.h>)
#include <weak_libjack.h>
#elif __has_include(<jack/jack.h> )
#include <jack/jack.h>
#include <jack/midiport.h>
#include <jack/ringbuffer.h>
#endif
#include <libremidi/detail/midi_in.hpp> #include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/semaphore.hpp> #include <libremidi/detail/semaphore.hpp>
#include <atomic> #include <atomic>
#include <semaphore> #include <cstdint>
#include <cstring>
#include <memory>
namespace libremidi namespace libremidi
{ {
@@ -62,16 +56,16 @@ struct jack_client
} }
template <bool Input> template <bool Input>
static auto static auto get_ports(
get_ports(jack_client_t* client, const char* pattern, const JackPortFlags flags) noexcept jack_client_t* client, const char* pattern, const char* type, const JackPortFlags flags,
-> std::vector<std::conditional_t<Input, input_port, output_port>> bool midi2) noexcept -> std::vector<std::conditional_t<Input, input_port, output_port>>
{ {
std::vector<std::conditional_t<Input, input_port, output_port>> ret; std::vector<std::conditional_t<Input, input_port, output_port>> ret;
if (!client) if (!client)
return {}; return {};
const char** ports = jack_get_ports(client, pattern, JACK_DEFAULT_MIDI_TYPE, flags); const char** ports = jack_get_ports(client, pattern, type, flags);
if (ports == nullptr) if (ports == nullptr)
return {}; return {};
@@ -81,7 +75,11 @@ struct jack_client
{ {
// FIXME this does not take into account filtering sw / hw ports // FIXME this does not take into account filtering sw / hw ports
auto port = jack_port_by_name(client, ports[i]); auto port = jack_port_by_name(client, ports[i]);
ret.push_back(to_port_info<Input>(client, port)); if (port)
{
if (bool(midi2) == bool(jack_port_flags(port) & 0x20))
ret.push_back(to_port_info<Input>(client, port));
}
i++; i++;
} }
@@ -140,7 +138,7 @@ struct jack_helpers : jack_client
{.token = this_instance, {.token = this_instance,
.callback = [&self, p = std::weak_ptr{this->port.impl}](jack_nframes_t nf) -> int { .callback = [&self, p = std::weak_ptr{this->port.impl}](jack_nframes_t nf) -> int {
if (auto pt = p.lock()) if (auto pt = p.lock())
if (auto ppt = pt->load()) if (pt->load())
self.process(nf); self.process(nf);
self.thread_lock.check_client_released(); self.thread_lock.check_client_released();
@@ -157,6 +155,10 @@ struct jack_helpers : jack_client
= jack_client_open(configuration.client_name.c_str(), JackNoStartServer, &status); = jack_client_open(configuration.client_name.c_str(), JackNoStartServer, &status);
if (this->client != nullptr) 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( jack_set_process_callback(
this->client, this->client,
+[](jack_nframes_t nf, void* ctx) -> int { +[](jack_nframes_t nf, void* ctx) -> int {
@@ -192,9 +194,12 @@ struct jack_helpers : jack_client
if (this->client && !self.configuration.context) if (this->client && !self.configuration.context)
jack_client_close(this->client); jack_client_close(this->client);
self.client_open_ = std::errc::not_connected;
} }
bool create_local_port(const auto& self, std::string_view portName, JackPortFlags flags) stdx::error create_local_port(
const auto& self, std::string_view portName, const char* type, JackPortFlags flags)
{ {
// full name: "client_name:port_name\0" // full name: "client_name:port_name\0"
if (portName.empty()) if (portName.empty())
@@ -203,29 +208,28 @@ struct jack_helpers : jack_client
if (self.configuration.client_name.size() + portName.size() + 2u if (self.configuration.client_name.size() + portName.size() + 2u
>= static_cast<size_t>(jack_port_name_size())) >= static_cast<size_t>(jack_port_name_size()))
{ {
self.template error<invalid_use_error>( self.libremidi_handle_error(
self.configuration, "JACK: port name length limit exceeded"); self.configuration, "port name length limit exceeded");
return false; return std::errc::invalid_argument;
} }
if (!this->port) if (!this->port)
{ {
this->port this->port = jack_port_register(this->client, portName.data(), type, flags, 0);
= jack_port_register(this->client, portName.data(), JACK_DEFAULT_MIDI_TYPE, flags, 0);
} }
if (!this->port) if (!this->port)
{ {
self.template error<driver_error>(self.configuration, "JACK: error creating port"); self.libremidi_handle_error(self.configuration, "error creating port");
return false; return std::errc::operation_not_supported;
} }
return true; return stdx::error{};
} }
void do_close_port() stdx::error do_close_port()
{ {
if (this->port == nullptr) if (this->port == nullptr)
return; return stdx::error{};
// 1. Ensure that the next time the cycle runs it sees the port as nullptr // 1. Ensure that the next time the cycle runs it sees the port as nullptr
jack_port_t* port_ptr = this->port.impl->load(); jack_port_t* port_ptr = this->port.impl->load();
@@ -235,7 +239,81 @@ struct jack_helpers : jack_client
this->thread_lock.prepare_release_client(); this->thread_lock.prepare_release_client();
// 3. Now we are sure that the client is not going to use the port anymore // 3. Now we are sure that the client is not going to use the port anymore
jack_port_unregister(this->client, port_ptr); 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";
};
} }
+28 -25
View File
@@ -4,16 +4,16 @@
#include <libremidi/detail/midi_in.hpp> #include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp> #include <libremidi/detail/midi_stream_decoder.hpp>
#include <chrono>
namespace libremidi namespace libremidi
{ {
class midi_in_jack final class midi_in_jack final
: public midi1::in_api : public midi1::in_api
, public jack_helpers , public jack_helpers
, public jack_midi1
, public error_handler , public error_handler
{ {
public: public:
using midi_api::client_open_;
struct struct
: input_configuration : input_configuration
, jack_input_configuration , jack_input_configuration
@@ -24,8 +24,14 @@ public:
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
auto status = connect(*this); auto status = connect(*this);
if (status != jack_status_t{}) if (!this->client)
warning(configuration, "midi_in_jack: " + std::to_string((int)jack_status_t{})); {
libremidi_handle_error(configuration, "Could not create JACK client");
client_open_ = from_jack_status(status);
return;
}
client_open_ = stdx::error{};
} }
~midi_in_jack() override ~midi_in_jack() override
@@ -35,39 +41,36 @@ public:
disconnect(*this); disconnect(*this);
} }
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_jack: set_client_name unsupported");
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_MIDI; } libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_MIDI; }
bool open_port(const input_port& port, std::string_view portName) override stdx::error open_port(const input_port& port, std::string_view portName) override
{ {
if (!create_local_port(*this, portName, JackPortIsInput)) if (auto err = create_local_port(*this, portName, port_type, JackPortIsInput);
return false; err != stdx::error{})
return err;
if (auto ret = jack_connect(this->client, port.port_name.c_str(), jack_port_name(this->port)); if (int err = jack_connect(this->client, port.port_name.c_str(), jack_port_name(this->port));
ret != 0) err != 0 && err != EEXIST)
{ {
error<invalid_parameter_error>( libremidi_handle_error(
configuration, "JACK: could not connect to port: " + port.port_name + " -> " configuration, "could not connect to port: " + port.port_name + " -> "
+ jack_port_name(this->port)); + jack_port_name(this->port));
return false; return from_errc(err);
} }
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
return create_local_port(*this, portName, JackPortIsInput); return create_local_port(*this, portName, port_type, JackPortIsInput);
} }
void close_port() override { return do_close_port(); } stdx::error close_port() override { return do_close_port(); }
void set_port_name(std::string_view portName) override stdx::error set_port_name(std::string_view portName) override
{ {
jack_port_rename(this->client, this->port, portName.data()); int ret = jack_port_rename(this->client, this->port, portName.data());
return from_errc(ret);
} }
timestamp absolute_timestamp() const noexcept override timestamp absolute_timestamp() const noexcept override
@@ -93,8 +96,8 @@ public:
this->client, &current_frames, &current_usecs, &next_usecs, &period_usecs); this->client, &current_frames, &current_usecs, &next_usecs, &period_usecs);
// We have midi events in buffer // We have midi events in buffer
uint32_t evCount = jack_midi_get_event_count(buff); uint32_t ev_count = jack_midi_get_event_count(buff);
for (uint32_t j = 0; j < evCount; j++) for (uint32_t j = 0; j < ev_count; j++)
{ {
jack_midi_event_t event{}; jack_midi_event_t event{};
jack_midi_event_get(&event, buff, j); jack_midi_event_get(&event, buff, j);
+44 -94
View File
@@ -3,77 +3,16 @@
#include <libremidi/backends/jack/helpers.hpp> #include <libremidi/backends/jack/helpers.hpp>
#include <libremidi/detail/midi_out.hpp> #include <libremidi/detail/midi_out.hpp>
#include <semaphore>
namespace libremidi namespace libremidi
{ {
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);
}
void write(const unsigned char* data, int64_t sz) const noexcept
{
if (static_cast<std::size_t>(sz + size_sz) > ringbuffer_space)
return;
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);
}
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
};
class midi_out_jack class midi_out_jack
: public midi1::out_api : public midi1::out_api
, public jack_helpers , public jack_helpers
, public jack_midi1
, public error_handler , public error_handler
{ {
public: public:
using midi_api::client_open_;
struct struct
: output_configuration : output_configuration
, jack_output_configuration , jack_output_configuration
@@ -87,39 +26,37 @@ public:
~midi_out_jack() override { } ~midi_out_jack() override { }
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_jack: set_client_name unsupported");
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_MIDI; } libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_MIDI; }
bool open_port(const output_port& port, std::string_view portName) override stdx::error open_port(const output_port& port, std::string_view portName) override
{ {
if (!create_local_port(*this, portName, JackPortIsOutput)) if (auto err = create_local_port(*this, portName, port_type, JackPortIsOutput);
return false; err != stdx::error{})
return err;
// Connecting to the output // Connecting to the output
if (jack_connect(this->client, jack_port_name(this->port), port.port_name.c_str()) != 0) if (int err = jack_connect(this->client, jack_port_name(this->port), port.port_name.c_str());
err != 0 && err != EEXIST)
{ {
error<invalid_parameter_error>( libremidi_handle_error(
configuration, "JACK: could not connect to port" + port.port_name); configuration, "could not connect to port" + port.port_name);
return false; return from_errc(err);
} }
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view portName) override stdx::error open_virtual_port(std::string_view portName) override
{ {
return create_local_port(*this, portName, JackPortIsOutput); return create_local_port(*this, portName, port_type, JackPortIsOutput);
} }
void close_port() override { return do_close_port(); } stdx::error close_port() override { return do_close_port(); }
void set_port_name(std::string_view portName) override stdx::error set_port_name(std::string_view portName) override
{ {
jack_port_rename(this->client, this->port, portName.data()); int ret = jack_port_rename(this->client, this->port, portName.data());
return from_errc(ret);
} }
}; };
@@ -128,11 +65,17 @@ class midi_out_jack_queued final : public midi_out_jack
public: public:
midi_out_jack_queued(output_configuration&& conf, jack_output_configuration&& apiconf) midi_out_jack_queued(output_configuration&& conf, jack_output_configuration&& apiconf)
: midi_out_jack{std::move(conf), std::move(apiconf)} : midi_out_jack{std::move(conf), std::move(apiconf)}
, queue{configuration.ringbuffer_size} , m_queue{configuration.ringbuffer_size}
{ {
auto status = connect(*this); auto status = connect(*this);
if (status != jack_status_t{}) if (!this->client)
warning(configuration, "midi_out_jack_queued: " + std::to_string((int)jack_status_t{})); {
libremidi_handle_error(configuration, "Could not create JACK client");
client_open_ = from_jack_status(status);
return;
}
client_open_ = stdx::error{};
} }
~midi_out_jack_queued() override ~midi_out_jack_queued() override
@@ -142,9 +85,9 @@ public:
disconnect(*this); disconnect(*this);
} }
void send_message(const unsigned char* message, std::size_t size) override stdx::error send_message(const unsigned char* message, std::size_t size) override
{ {
queue.write(message, size); return m_queue.write(message, size);
} }
int process(jack_nframes_t nframes) int process(jack_nframes_t nframes)
@@ -152,13 +95,13 @@ public:
void* buff = jack_port_get_buffer(this->port, nframes); void* buff = jack_port_get_buffer(this->port, nframes);
jack_midi_clear_buffer(buff); jack_midi_clear_buffer(buff);
this->queue.read(buff); this->m_queue.read(buff);
return 0; return 0;
} }
private: private:
jack_queue queue; jack_queue m_queue;
}; };
class midi_out_jack_direct final : public midi_out_jack class midi_out_jack_direct final : public midi_out_jack
@@ -168,10 +111,15 @@ public:
: midi_out_jack{std::move(conf), std::move(apiconf)} : midi_out_jack{std::move(conf), std::move(apiconf)}
{ {
auto status = connect(*this); auto status = connect(*this);
if (status != jack_status_t{}) if (!this->client)
warning(configuration, "midi_out_jack_direct: " + std::to_string((int)jack_status_t{})); {
libremidi_handle_error(configuration, "Could not create JACK client");
client_open_ = from_jack_status(status);
return;
}
buffer_size = jack_get_buffer_size(this->client); buffer_size = jack_get_buffer_size(this->client);
client_open_ = stdx::error{};
} }
~midi_out_jack_direct() override ~midi_out_jack_direct() override
@@ -188,10 +136,11 @@ public:
return 0; return 0;
} }
void send_message(const unsigned char* message, size_t size) override stdx::error send_message(const unsigned char* message, size_t size) override
{ {
void* buff = jack_port_get_buffer(this->port, buffer_size); void* buff = jack_port_get_buffer(this->port, buffer_size);
jack_midi_event_write(buff, 0, message, size); int ret = jack_midi_event_write(buff, 0, message, size);
return from_errc(ret);
} }
int convert_timestamp(int64_t user) const noexcept int convert_timestamp(int64_t user) const noexcept
@@ -207,10 +156,11 @@ public:
} }
} }
void schedule_message(int64_t ts, const unsigned char* message, size_t size) override stdx::error schedule_message(int64_t ts, const unsigned char* message, size_t size) override
{ {
void* buff = jack_port_get_buffer(this->port, buffer_size); void* buff = jack_port_get_buffer(this->port, buffer_size);
jack_midi_event_write(buff, convert_timestamp(ts), message, size); int ret = jack_midi_event_write(buff, convert_timestamp(ts), message, size);
return from_errc(ret);
} }
int buffer_size{}; int buffer_size{};
+7 -8
View File
@@ -10,6 +10,7 @@ namespace libremidi
class observer_jack final class observer_jack final
: public observer_api : public observer_api
, private jack_client , private jack_client
, public jack_midi1
, private error_handler , private error_handler
{ {
public: public:
@@ -34,7 +35,7 @@ public:
this->client this->client
= jack_client_open(configuration.client_name.c_str(), JackNoStartServer, &status); = jack_client_open(configuration.client_name.c_str(), JackNoStartServer, &status);
if (status != jack_status_t{}) if (status != jack_status_t{})
warning(configuration, "observer_jack: " + std::to_string((int)jack_status_t{})); libremidi_handle_error(configuration, std::to_string((int)status));
if (this->client != nullptr) if (this->client != nullptr)
{ {
@@ -48,8 +49,7 @@ public:
void initial_callback() void initial_callback()
{ {
{ {
const char** ports const char** ports = jack_get_ports(client, nullptr, port_type, JackPortIsOutput);
= jack_get_ports(client, nullptr, JACK_DEFAULT_MIDI_TYPE, JackPortIsOutput);
if (ports != nullptr) if (ports != nullptr)
{ {
@@ -80,8 +80,7 @@ public:
} }
{ {
const char** ports const char** ports = jack_get_ports(client, nullptr, port_type, JackPortIsInput);
= jack_get_ports(client, nullptr, JACK_DEFAULT_MIDI_TYPE, JackPortIsInput);
if (ports != nullptr) if (ports != nullptr)
{ {
@@ -119,7 +118,7 @@ public:
if (reg) if (reg)
{ {
std::string_view type = jack_port_type(port); std::string_view type = jack_port_type(port);
if (type != JACK_DEFAULT_MIDI_TYPE) if (type != port_type)
return; return;
bool physical = flags & JackPortIsPhysical; bool physical = flags & JackPortIsPhysical;
@@ -199,12 +198,12 @@ public:
std::vector<libremidi::input_port> get_input_ports() const noexcept override std::vector<libremidi::input_port> get_input_ports() const noexcept override
{ {
return get_ports<true>(this->client, nullptr, JackPortIsOutput); return get_ports<true>(this->client, nullptr, port_type, JackPortIsOutput, false);
} }
std::vector<libremidi::output_port> get_output_ports() const noexcept override std::vector<libremidi::output_port> get_output_ports() const noexcept override
{ {
return get_ports<false>(this->client, nullptr, JackPortIsInput); return get_ports<false>(this->client, nullptr, port_type, JackPortIsInput, false);
} }
~observer_jack() ~observer_jack()
+34
View File
@@ -0,0 +1,34 @@
#pragma once
#include <libremidi/backends/jack_ump/midi_in.hpp>
#include <libremidi/backends/jack_ump/midi_out.hpp>
#include <libremidi/backends/jack_ump/observer.hpp>
#include <string_view>
namespace libremidi::jack_ump
{
struct backend
{
using midi_in = midi_in_jack;
using midi_out = midi_out_jack;
using midi_observer = observer_jack;
using midi_in_configuration = jack_ump::input_configuration;
using midi_out_configuration = jack_ump::output_configuration;
using midi_observer_configuration = jack_ump::observer_configuration;
static const constexpr auto API = libremidi::API::JACK_UMP;
static const constexpr std::string_view name = "jack_ump";
static const constexpr std::string_view display_name = "JACK (UMP)";
static inline bool available() noexcept
{
#if LIBREMIDI_WEAKJACK
if (WeakJack::instance().available() != 0)
return false;
#endif
int major, minor, micro, patch;
jack_get_version(&major, &minor, &micro, &patch);
return (major >= 3 && minor >= 1 && micro >= 4);
}
};
}
@@ -0,0 +1,33 @@
#pragma once
#include <libremidi/backends/jack/config.hpp>
namespace libremidi::jack_ump
{
struct input_configuration
{
std::string client_name = "libremidi client";
jack_client_t* context{};
std::function<void(libremidi::jack_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func{};
};
struct output_configuration
{
std::string client_name = "libremidi client";
jack_client_t* context{};
std::function<void(libremidi::jack_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func{};
int32_t ringbuffer_size = 16384;
bool direct = false;
};
struct observer_configuration
{
std::string client_name = "libremidi client";
jack_client_t* context{};
};
}
@@ -0,0 +1,119 @@
#pragma once
#include <libremidi/backends/jack/helpers.hpp>
#include <libremidi/backends/jack_ump/config.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
namespace libremidi::jack_ump
{
class midi_in_jack final
: public midi2::in_api
, public jack_helpers
, private jack_midi1
, public error_handler
{
public:
using midi_api::client_open_;
struct
: libremidi::ump_input_configuration
, jack_ump::input_configuration
{
} configuration;
explicit midi_in_jack(
libremidi::ump_input_configuration&& conf, jack_ump::input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
auto status = connect(*this);
if (!this->client)
{
libremidi_handle_error(configuration, "Could not create JACK client");
client_open_ = from_jack_status(status);
return;
}
client_open_ = stdx::error{};
}
~midi_in_jack() override
{
midi_in_jack::close_port();
disconnect(*this);
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_UMP; }
stdx::error open_port(const input_port& port, std::string_view portName) override
{
if (auto err
= create_local_port(*this, portName, port_type, JackPortFlags(JackPortIsInput | 0x20));
err != stdx::error{})
return err;
if (int err = jack_connect(this->client, port.port_name.c_str(), jack_port_name(this->port));
err != 0 && err != EEXIST)
{
libremidi_handle_error(
configuration,
"could not connect to port: " + port.port_name + " -> " + jack_port_name(this->port));
return from_errc(err);
}
return stdx::error{};
}
stdx::error open_virtual_port(std::string_view portName) override
{
return create_local_port(*this, portName, port_type, JackPortFlags(JackPortIsInput | 0x20));
}
stdx::error close_port() override { return do_close_port(); }
stdx::error set_port_name(std::string_view portName) override
{
int ret = jack_port_rename(this->client, this->port, portName.data());
return from_errc(ret);
}
timestamp absolute_timestamp() const noexcept override
{
return 1000 * jack_frames_to_time(client, jack_frame_time(client));
}
int process(jack_nframes_t nframes)
{
static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = true,
.absolute_is_monotonic = true,
.has_samples = true,
};
void* buff = jack_port_get_buffer(this->port, nframes);
// Timing
jack_nframes_t current_frames{};
jack_time_t current_usecs{}; // roughly CLOCK_MONOTONIC
jack_time_t next_usecs{};
float period_usecs{};
jack_get_cycle_times(
this->client, &current_frames, &current_usecs, &next_usecs, &period_usecs);
// We have midi events in buffer
uint32_t ev_count = jack_midi_get_event_count(buff);
for (uint32_t j = 0; j < ev_count; j++)
{
jack_midi_event_t event{};
jack_midi_event_get(&event, buff, j);
const auto to_ns
= [=, this] { return 1000 * jack_frames_to_time(client, current_frames + event.time); };
m_processing.on_bytes(
{(uint32_t*)event.buffer, (uint32_t*)(event.buffer + event.size)},
m_processing.timestamp<timestamp_info>(to_ns, event.time));
}
return 0;
}
midi2::input_state_machine m_processing{this->configuration};
};
}
@@ -0,0 +1,184 @@
#pragma once
#include <libremidi/backends/jack/helpers.hpp>
#include <libremidi/backends/jack_ump/config.hpp>
#include <libremidi/detail/midi_out.hpp>
namespace libremidi::jack_ump
{
class midi_out_jack
: public midi2::out_api
, public jack_helpers
, private jack_midi1
, public error_handler
{
public:
using midi_api::client_open_;
struct
: libremidi::output_configuration
, jack_ump::output_configuration
{
} configuration;
midi_out_jack(libremidi::output_configuration&& conf, jack_ump::output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
}
~midi_out_jack() override { }
libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_UMP; }
stdx::error open_port(const output_port& port, std::string_view portName) override
{
if (auto err
= create_local_port(*this, portName, port_type, JackPortFlags(JackPortIsOutput | 0x20));
err != stdx::error{})
return err;
// Connecting to the output
if (int err = jack_connect(this->client, jack_port_name(this->port), port.port_name.c_str());
err != 0 && err != EEXIST)
{
libremidi_handle_error(configuration, "could not connect to port" + port.port_name);
return from_errc(err);
}
return stdx::error{};
}
stdx::error open_virtual_port(std::string_view portName) override
{
return create_local_port(*this, portName, port_type, JackPortFlags(JackPortIsOutput | 0x20));
}
stdx::error close_port() override { return do_close_port(); }
stdx::error set_port_name(std::string_view portName) override
{
int ret = jack_port_rename(this->client, this->port, portName.data());
return from_errc(ret);
}
};
class midi_out_jack_queued final : public midi_out_jack
{
public:
midi_out_jack_queued(
libremidi::output_configuration&& conf, jack_ump::output_configuration&& apiconf)
: midi_out_jack{std::move(conf), std::move(apiconf)}
, m_queue{configuration.ringbuffer_size}
{
auto status = connect(*this);
if (!this->client)
{
libremidi_handle_error(configuration, "Could not create JACK client");
client_open_ = from_jack_status(status);
return;
}
client_open_ = stdx::error{};
}
~midi_out_jack_queued() override
{
midi_out_jack::close_port();
disconnect(*this);
}
stdx::error send_ump(const uint32_t* message, std::size_t size) override
{
return m_queue.write((unsigned char*)message, size * sizeof(uint32_t));
}
int process(jack_nframes_t nframes)
{
void* buff = jack_port_get_buffer(this->port, nframes);
jack_midi_clear_buffer(buff);
this->m_queue.read(buff);
return 0;
}
private:
libremidi::jack_queue m_queue;
};
class midi_out_jack_direct final : public midi_out_jack
{
public:
midi_out_jack_direct(
libremidi::output_configuration&& conf, jack_ump::output_configuration&& apiconf)
: midi_out_jack{std::move(conf), std::move(apiconf)}
{
auto status = connect(*this);
if (!this->client)
{
libremidi_handle_error(configuration, "Could not create JACK client");
client_open_ = from_jack_status(status);
return;
}
buffer_size = jack_get_buffer_size(this->client);
client_open_ = stdx::error{};
}
~midi_out_jack_direct() override
{
midi_out_jack::close_port();
disconnect(*this);
}
int process(jack_nframes_t nframes)
{
void* buff = jack_port_get_buffer(this->port, nframes);
jack_midi_clear_buffer(buff);
return 0;
}
stdx::error send_ump(const uint32_t* message, std::size_t size) override
{
void* buff = jack_port_get_buffer(this->port, buffer_size);
int ret = jack_midi_event_write(buff, 0, (unsigned char*)message, size * sizeof(uint32_t));
return from_errc(ret);
}
int convert_timestamp(int64_t user) const noexcept
{
switch (configuration.timestamps)
{
case timestamp_mode::AudioFrame:
return static_cast<int>(user);
default:
// TODO
return 0;
}
}
stdx::error schedule_ump(int64_t ts, const uint32_t* message, size_t size) override
{
void* buff = jack_port_get_buffer(this->port, buffer_size);
int ret = jack_midi_event_write(
buff, convert_timestamp(ts), (unsigned char*)message, size * sizeof(uint32_t));
return from_errc(ret);
}
int buffer_size{};
};
}
namespace libremidi
{
template <>
inline std::unique_ptr<midi_out_api>
make<jack_ump::midi_out_jack>(output_configuration&& conf, jack_ump::output_configuration&& api)
{
if (api.direct)
return std::make_unique<jack_ump::midi_out_jack_direct>(std::move(conf), std::move(api));
else
return std::make_unique<jack_ump::midi_out_jack_queued>(std::move(conf), std::move(api));
}
}
@@ -0,0 +1,235 @@
#pragma once
#include <libremidi/backends/jack/helpers.hpp>
#include <libremidi/backends/jack_ump/config.hpp>
#include <libremidi/detail/observer.hpp>
#include <unordered_set>
namespace libremidi::jack_ump
{
class observer_jack final
: public observer_api
, private jack_client
, private jack_midi1 // seems like a bug in PipeWire? MIDI 2 flag is set but the MIDI 1 type string is used
, private error_handler
{
public:
struct
: libremidi::observer_configuration
, jack_ump::observer_configuration
{
} configuration;
explicit observer_jack(
libremidi::observer_configuration&& conf, jack_ump::observer_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
// Initialize JACK client
if (configuration.context)
{
this->client = configuration.context;
set_callbacks();
}
else
{
jack_status_t status{};
this->client
= jack_client_open(configuration.client_name.c_str(), JackNoStartServer, &status);
if (status != jack_status_t{})
libremidi_handle_error(configuration, std::to_string((int)status));
if (this->client != nullptr)
{
set_callbacks();
jack_activate(this->client);
}
}
}
void initial_callback()
{
{
const char** ports = jack_get_ports(client, nullptr, port_type, JackPortIsOutput);
if (ports != nullptr)
{
int i = 0;
while (ports[i] != nullptr)
{
const auto port = jack_port_by_name(client, ports[i]);
const auto flags = jack_port_flags(port);
if (!(flags & 0x20)) // midi 2 check
{
i++;
continue;
}
bool physical = flags & JackPortIsPhysical;
bool ok = configuration.track_any;
if (configuration.track_hardware)
ok |= physical;
if (configuration.track_virtual)
ok |= !physical;
if (ok)
{
seen_input_ports.insert(ports[i]);
if (this->configuration.input_added && configuration.notify_in_constructor)
this->configuration.input_added(to_port_info<true>(client, port));
}
i++;
}
}
jack_free(ports);
}
{
const char** ports = jack_get_ports(client, nullptr, port_type, JackPortIsInput);
if (ports != nullptr)
{
int i = 0;
while (ports[i] != nullptr)
{
const auto port = jack_port_by_name(client, ports[i]);
const auto flags = jack_port_flags(port);
if (!(flags & 0x20)) // midi 2 check
{
i++;
continue;
}
bool physical = flags & JackPortIsPhysical;
bool ok = configuration.track_any;
if (configuration.track_hardware)
ok |= physical;
if (configuration.track_virtual)
ok |= !physical;
if (ok)
{
seen_output_ports.insert(ports[i]);
if (this->configuration.output_added && configuration.notify_in_constructor)
this->configuration.output_added(to_port_info<false>(client, port));
}
i++;
}
}
jack_free(ports);
}
}
void on_port_callback(jack_port_t* port, bool reg)
{
auto flags = jack_port_flags(port);
std::string name = jack_port_name(port);
if (reg)
{
std::string_view type = jack_port_type(port);
if (type != port_type)
return;
if (!(flags & 0x20)) // midi 2 check
return;
bool physical = flags & JackPortIsPhysical;
bool ok = configuration.track_any;
if (configuration.track_hardware)
ok |= physical;
if (configuration.track_virtual)
ok |= !physical;
if (!ok)
return;
// Note: we keep track of the ports as
// when disconnecting, jack_port_type and jack_port_flags aren't correctly
// set anymore.
if (flags & JackPortIsOutput)
{
seen_input_ports.insert(name);
if (this->configuration.input_added)
this->configuration.input_added(to_port_info<true>(client, port));
}
else if (flags & JackPortIsInput)
{
seen_output_ports.insert(name);
if (this->configuration.output_added)
this->configuration.output_added(to_port_info<false>(client, port));
}
}
else
{
if (auto it = seen_input_ports.find(name); it != seen_input_ports.end())
{
if (this->configuration.input_removed)
this->configuration.input_removed(to_port_info<true>(client, port));
seen_input_ports.erase(it);
}
if (auto it = seen_output_ports.find(name); it != seen_output_ports.end())
{
if (this->configuration.output_removed)
this->configuration.output_removed(to_port_info<false>(client, port));
seen_output_ports.erase(it);
}
}
}
void set_callbacks()
{
initial_callback();
if (!configuration.has_callbacks())
return;
jack_set_port_registration_callback(this->client, +[](jack_port_id_t p, int r, void* arg) {
auto& self = *(observer_jack*)arg;
if (auto port = jack_port_by_id(self.client, p))
{
self.on_port_callback(port, r != 0);
}
}, this);
jack_set_port_rename_callback(
this->client,
+[](jack_port_id_t p, const char* /*old_name*/, const char* /*new_name*/, void* arg) {
const auto& self = *static_cast<observer_jack*>(arg);
auto port = jack_port_by_id(self.client, p);
if (!port)
return;
}, this);
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::JACK_UMP; }
std::vector<libremidi::input_port> get_input_ports() const noexcept override
{
return get_ports<true>(this->client, nullptr, port_type, JackPortIsOutput, true);
}
std::vector<libremidi::output_port> get_output_ports() const noexcept override
{
return get_ports<false>(this->client, nullptr, port_type, JackPortIsInput, true);
}
~observer_jack()
{
if (client && !configuration.context)
{
// If we own the client, deactivate it
jack_deactivate(this->client);
jack_client_close(this->client);
this->client = nullptr;
}
}
std::unordered_set<std::string> seen_input_ports;
std::unordered_set<std::string> seen_output_ports;
};
}
+23
View File
@@ -0,0 +1,23 @@
#pragma once
#include <libremidi/backends/dummy.hpp>
#include <libremidi/backends/keyboard/midi_in.hpp>
#include <string_view>
namespace libremidi
{
struct kbd_backend
{
using midi_in = midi_in_kbd;
using midi_in_configuration = kbd_input_configuration;
using midi_out = midi_out_dummy;
using midi_observer = observer_dummy;
using midi_out_configuration = dummy_configuration;
using midi_observer_configuration = dummy_configuration;
static const constexpr auto API = libremidi::API::KEYBOARD;
static const constexpr std::string_view name = "keyboard";
static const constexpr std::string_view display_name = "Computer keyboard";
static inline bool available() noexcept { return true; }
};
}
@@ -0,0 +1,154 @@
#pragma once
#include <libremidi/config.hpp>
#include <functional>
#include <map>
namespace libremidi
{
enum kbd_event
{
NOTE_0 = 0x0, // C
VEL_0 = NOTE_0 + 128, // Set velocity to 0
OCT_0 = VEL_0 + 128, // Set octave to 0
OCTAVE_PLUS = OCT_0 + 128,
OCTAVE_MINUS,
VELOCITY_PLUS,
VELOCITY_MINUS,
};
// Default map
//
// ,---,---,---,---,---,---,---,---,---,---,---,---,---,-------,
// | V0| V1| V2| V3| V4| V5| V6| V7| V8| V9|V10|V11|V12| <- |
// |---'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-----|
// | ->| | | C#| D#| | F#| G#| A#| | C#| D#| | F#| |
// |-----',--',--',--',--',--',--',--',--',--',--',--',--'| |
// | Caps | C | D | E | F | G | A | B | C | D | E | F | G | |
// |----,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'-,-'---'----|
// | -^ | | O-| O+| V-| V+| | | | | | | ----^ |
// |----'-,-',--'--,'---'---'---'---'---'---'-,-'---',--,------|
// | ctrl | | alt | |altgr | | ctrl |
// '------' '-----'--------------------------'------' '------'
// clang-format off
// actually based on macOS virtual codes as it seems
// impossible to get raw scan codes.
// https://eastmanreference.com/complete-list-of-applescript-key-codes
static inline const std::map<int, int>& scancode_map_macos(){
static const std::map<int, int> ret{
{ 0, NOTE_0}, // C0
{ 13, NOTE_0 + 1},
{ 1, NOTE_0 + 2},
{ 14, NOTE_0 + 3},
{ 2, NOTE_0 + 4},
{ 3, NOTE_0 + 5},
{ 17, NOTE_0 + 6},
{ 5, NOTE_0 + 7},
{ 16, NOTE_0 + 8},
{ 4, NOTE_0 + 9},
{ 32, NOTE_0 + 10},
{ 38, NOTE_0 + 11},
{ 40, NOTE_0 + 12}, // C1
{ 31, NOTE_0 + 13},
{ 37, NOTE_0 + 14},
{ 35, NOTE_0 + 15},
{ 41, NOTE_0 + 16},
{ 39, NOTE_0 + 17},
{ 30, NOTE_0 + 18},
{ 42, NOTE_0 + 19},
{ 50, VEL_0 + int(0)},
{ 18, VEL_0 + int(1 * 127 / 12)},
{ 19, VEL_0 + int(2 * 127 / 12)},
{ 20, VEL_0 + int(3 * 127 / 12)},
{ 21, VEL_0 + int(4 * 127 / 12)},
{ 23, VEL_0 + int(5 * 127 / 12)},
{ 22, VEL_0 + int(6 * 127 / 12)},
{ 26, VEL_0 + int(7 * 127 / 12)},
{ 28, VEL_0 + int(8 * 127 / 12)},
{ 25, VEL_0 + int(9 * 127 / 12)},
{ 29, VEL_0 + int(10 * 127 / 12)},
{ 27, VEL_0 + int(11 * 127 / 12)},
{ 24, VEL_0 + int(127)},
{ 6, OCTAVE_MINUS },
{ 7, OCTAVE_PLUS },
{ 8, VELOCITY_MINUS },
{ 9, VELOCITY_PLUS},
};
return ret;
}
// Use: https://kbdlayout.info/KBDUSX/scancodes
// Also valid for windows
static inline const std::map<int, int>& scancode_map_linux() {
static const std::map<int, int> ret{
{ 0x1E, NOTE_0}, // C0
{ 0x11, NOTE_0 + 1},
{ 0x1F, NOTE_0 + 2},
{ 0x12, NOTE_0 + 3},
{ 0x20, NOTE_0 + 4},
{ 0x21, NOTE_0 + 5},
{ 0x14, NOTE_0 + 6},
{ 0x22, NOTE_0 + 7},
{ 0x15, NOTE_0 + 8},
{ 0x23, NOTE_0 + 9},
{ 0x16, NOTE_0 + 10},
{ 0x24, NOTE_0 + 11},
{ 0x25, NOTE_0 + 12}, // C1
{ 0x18, NOTE_0 + 13},
{ 0x26, NOTE_0 + 14},
{ 0x19, NOTE_0 + 15},
{ 0x27, NOTE_0 + 16},
{ 0x28, NOTE_0 + 17},
{ 0x1B, NOTE_0 + 18},
{ 0x2B, NOTE_0 + 19},
{ 0x29, VEL_0 + int(0)},
{ 0x02, VEL_0 + int(1 * 127 / 12)},
{ 0x03, VEL_0 + int(2 * 127 / 12)},
{ 0x04, VEL_0 + int(3 * 127 / 12)},
{ 0x05, VEL_0 + int(4 * 127 / 12)},
{ 0x06, VEL_0 + int(5 * 127 / 12)},
{ 0x07, VEL_0 + int(6 * 127 / 12)},
{ 0x08, VEL_0 + int(7 * 127 / 12)},
{ 0x09, VEL_0 + int(8 * 127 / 12)},
{ 0x0A, VEL_0 + int(9 * 127 / 12)},
{ 0x0B, VEL_0 + int(10 * 127 / 12)},
{ 0x0C, VEL_0 + int(11 * 127 / 12)},
{ 0x0D, VEL_0 + int(127)},
{ 0x2C, OCTAVE_MINUS },
{ 0x2D, OCTAVE_PLUS },
{ 0x2E, VELOCITY_MINUS },
{ 0x2F, VELOCITY_PLUS},
};
return ret;
}
// clang-format on
/**
* Used to set up keyboard input.
* Your app should pass a function that will give you a callback
* that you should call whenever you are getting a key input (press or release).
*/
struct kbd_input_configuration
{
// Note that on Linux with X11 scancodes should be offset by 8 (an X11 legacy quirk)
// ex.: pass QKeyEvent::nativeScanCode() - 8 to this API
using scancode_callback = std::function<void(int)>;
// First argument is on key press, second on key release
std::function<void(scancode_callback, scancode_callback)> set_input_scancode_callbacks
= [](const scancode_callback&, const scancode_callback&) { };
std::map<int, int> scancode_map
#if defined(__APPLE__)
= scancode_map_macos()
#else
= scancode_map_linux()
#endif
;
};
}
@@ -0,0 +1,112 @@
#pragma once
#include <libremidi/backends/keyboard/config.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <chrono>
#include <unordered_map>
namespace libremidi
{
class midi_in_kbd final
: public midi1::in_api
, public error_handler
{
public:
using midi_api::client_open_;
struct
: input_configuration
, kbd_input_configuration
{
} configuration;
explicit midi_in_kbd(input_configuration&& conf, kbd_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
}
~midi_in_kbd() override { }
libremidi::API get_current_api() const noexcept override { return libremidi::API::KEYBOARD; }
stdx::error open_port(const input_port&, std::string_view) override
{
configuration.set_input_scancode_callbacks(
[this](int v) { on_keypress(v); }, [this](int v) { on_keyrelease(v); });
return stdx::error{};
}
stdx::error close_port() override { return stdx::error{}; }
timestamp absolute_timestamp() const noexcept override
{
return std::chrono::steady_clock::now().time_since_epoch().count();
}
void on_keypress(int scancode)
{
using kevent = libremidi::kbd_event;
auto it = configuration.scancode_map.find(scancode);
if (it == configuration.scancode_map.end())
return;
if (it->second >= kevent::NOTE_0 && it->second < (kevent::NOTE_0 + 128))
{
int note = it->second - kevent::NOTE_0 + 12 * m_current_octave;
this->configuration.on_message(
libremidi::channel_events::note_on(0, note, m_current_velocity));
m_current_notes_scancodes[scancode] = note;
}
else if (it->second >= kevent::VEL_0 && it->second < (kevent::VEL_0 + 128))
{
m_current_velocity = it->second - kevent::VEL_0;
}
else if (it->second >= kevent::OCT_0 && it->second < (kevent::OCT_0 + 128))
{
m_current_octave = it->second - kevent::OCT_0;
}
else
{
switch (it->second)
{
case kevent::VELOCITY_MINUS:
m_current_velocity = std::clamp(m_current_velocity - 10, 0, 127);
break;
case kevent::VELOCITY_PLUS:
m_current_velocity = std::clamp(m_current_velocity + 10, 0, 127);
break;
case kevent::OCTAVE_MINUS:
m_current_octave = std::clamp(m_current_octave - 1, 0, 127);
break;
case kevent::OCTAVE_PLUS:
m_current_octave = std::clamp(m_current_octave + 1, 0, 127);
break;
}
}
}
void on_keyrelease(int scancode)
{
using kevent = libremidi::kbd_event;
auto it = configuration.scancode_map.find(scancode);
if (it == configuration.scancode_map.end())
return;
if (it->second >= kevent::NOTE_0 && it->second < (kevent::NOTE_0 + 128))
{
if (auto note_it = m_current_notes_scancodes.find(scancode);
note_it != m_current_notes_scancodes.end())
{
this->configuration.on_message(libremidi::channel_events::note_off(0, note_it->second, 0));
m_current_notes_scancodes.erase(note_it);
}
}
}
int m_current_octave{3};
int m_current_velocity{80};
std::unordered_map<int, int> m_current_notes_scancodes;
};
}
+231 -229
View File
@@ -2,7 +2,7 @@
#include <libremidi/backends/linux/dylib_loader.hpp> #include <libremidi/backends/linux/dylib_loader.hpp>
#include <alsa/asoundlib.h> #include <alsa/asoundlib.h> // IWYU pragma: export
#if defined(SND_LIB_VERSION) #if defined(SND_LIB_VERSION)
#if __has_include(<alsa/rawmidi.h>) && SND_LIB_VERSION >= ((1 << 16) | (2 << 8) | 6) #if __has_include(<alsa/rawmidi.h>) && SND_LIB_VERSION >= ((1 << 16) | (2 << 8) | 6)
@@ -57,13 +57,13 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_card, get_name); LIBREMIDI_SYMBOL_INIT(snd_card, get_name)
LIBREMIDI_SYMBOL_INIT(snd_card, next); LIBREMIDI_SYMBOL_INIT(snd_card, next)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_card, get_name); LIBREMIDI_SYMBOL_DEF(snd_card, get_name)
LIBREMIDI_SYMBOL_DEF(snd_card, next); LIBREMIDI_SYMBOL_DEF(snd_card, next)
} card{library}; } card{library};
struct ctl_t struct ctl_t
@@ -80,13 +80,13 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_ctl, close); LIBREMIDI_SYMBOL_INIT(snd_ctl, close)
LIBREMIDI_SYMBOL_INIT(snd_ctl, open); LIBREMIDI_SYMBOL_INIT(snd_ctl, open)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_ctl, close); LIBREMIDI_SYMBOL_DEF(snd_ctl, close)
LIBREMIDI_SYMBOL_DEF(snd_ctl, open); LIBREMIDI_SYMBOL_DEF(snd_ctl, open)
struct rawmidi_t struct rawmidi_t
{ {
@@ -98,12 +98,12 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_ctl_rawmidi, info); LIBREMIDI_SYMBOL_INIT(snd_ctl_rawmidi, info)
LIBREMIDI_SYMBOL_INIT(snd_ctl_rawmidi, next_device); LIBREMIDI_SYMBOL_INIT(snd_ctl_rawmidi, next_device)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_ctl_rawmidi, info); LIBREMIDI_SYMBOL_DEF(snd_ctl_rawmidi, info)
LIBREMIDI_SYMBOL_DEF(snd_ctl_rawmidi, next_device); LIBREMIDI_SYMBOL_DEF(snd_ctl_rawmidi, next_device)
} rawmidi; } rawmidi;
#if LIBREMIDI_ALSA_HAS_UMP #if LIBREMIDI_ALSA_HAS_UMP
@@ -117,14 +117,14 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_ctl_ump, block_info); LIBREMIDI_SYMBOL_INIT(snd_ctl_ump, block_info)
LIBREMIDI_SYMBOL_INIT(snd_ctl_ump, endpoint_info); LIBREMIDI_SYMBOL_INIT(snd_ctl_ump, endpoint_info)
LIBREMIDI_SYMBOL_INIT(snd_ctl_ump, next_device); LIBREMIDI_SYMBOL_INIT(snd_ctl_ump, next_device)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_ctl_ump, block_info); LIBREMIDI_SYMBOL_DEF(snd_ctl_ump, block_info)
LIBREMIDI_SYMBOL_DEF(snd_ctl_ump, endpoint_info); LIBREMIDI_SYMBOL_DEF(snd_ctl_ump, endpoint_info)
LIBREMIDI_SYMBOL_DEF(snd_ctl_ump, next_device); LIBREMIDI_SYMBOL_DEF(snd_ctl_ump, next_device)
} ump; } ump;
#endif #endif
} ctl{library}; } ctl{library};
@@ -139,23 +139,23 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_midi, event_decode); LIBREMIDI_SYMBOL_INIT(snd_midi, event_decode)
LIBREMIDI_SYMBOL_INIT(snd_midi, event_encode); LIBREMIDI_SYMBOL_INIT(snd_midi, event_encode)
LIBREMIDI_SYMBOL_INIT(snd_midi, event_free); LIBREMIDI_SYMBOL_INIT(snd_midi, event_free)
LIBREMIDI_SYMBOL_INIT(snd_midi, event_init); LIBREMIDI_SYMBOL_INIT(snd_midi, event_init)
LIBREMIDI_SYMBOL_INIT(snd_midi, event_new); LIBREMIDI_SYMBOL_INIT(snd_midi, event_new)
LIBREMIDI_SYMBOL_INIT(snd_midi, event_no_status); LIBREMIDI_SYMBOL_INIT(snd_midi, event_no_status)
LIBREMIDI_SYMBOL_INIT(snd_midi, event_resize_buffer); LIBREMIDI_SYMBOL_INIT(snd_midi, event_resize_buffer)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_midi, event_decode); LIBREMIDI_SYMBOL_DEF(snd_midi, event_decode)
LIBREMIDI_SYMBOL_DEF(snd_midi, event_encode); LIBREMIDI_SYMBOL_DEF(snd_midi, event_encode)
LIBREMIDI_SYMBOL_DEF(snd_midi, event_free); LIBREMIDI_SYMBOL_DEF(snd_midi, event_free)
LIBREMIDI_SYMBOL_DEF(snd_midi, event_init); LIBREMIDI_SYMBOL_DEF(snd_midi, event_init)
LIBREMIDI_SYMBOL_DEF(snd_midi, event_new); LIBREMIDI_SYMBOL_DEF(snd_midi, event_new)
LIBREMIDI_SYMBOL_DEF(snd_midi, event_no_status); LIBREMIDI_SYMBOL_DEF(snd_midi, event_no_status)
LIBREMIDI_SYMBOL_DEF(snd_midi, event_resize_buffer); LIBREMIDI_SYMBOL_DEF(snd_midi, event_resize_buffer)
} midi{library}; } midi{library};
#if LIBREMIDI_ALSA_HAS_RAMWIDI #if LIBREMIDI_ALSA_HAS_RAMWIDI
@@ -168,59 +168,59 @@ struct libasound
available = false; available = false;
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, close); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, close)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_get_name); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_get_name)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_get_subdevice_name); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_get_subdevice_name)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_get_subdevices_count); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_get_subdevices_count)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_set_device); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_set_device)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_set_stream); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_set_stream)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_set_subdevice); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_set_subdevice)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_sizeof); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, info_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, open); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, open)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_current); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_current)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_get_buffer_size); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_get_buffer_size)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_set_clock_type); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_set_clock_type)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_set_no_active_sensing); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_set_no_active_sensing)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_set_read_mode); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_set_read_mode)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_sizeof); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, params_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, poll_descriptors); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, poll_descriptors)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, poll_descriptors_count); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, poll_descriptors_count)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, poll_descriptors_revents); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, poll_descriptors_revents)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, read); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, read)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, status); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, status)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, status_get_avail); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, status_get_avail)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, status_sizeof); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, status_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, tread); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, tread)
LIBREMIDI_SYMBOL_INIT(snd_rawmidi, write); LIBREMIDI_SYMBOL_INIT(snd_rawmidi, write)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, close); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, close)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_get_name); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_get_name)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_get_subdevice_name); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_get_subdevice_name)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_get_subdevices_count); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_get_subdevices_count)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_set_device); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_set_device)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_set_stream); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_set_stream)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_set_subdevice); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_set_subdevice)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_sizeof); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, info_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, open); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, open)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_current); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_current)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_get_buffer_size); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_get_buffer_size)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_set_clock_type); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_set_clock_type)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_set_no_active_sensing); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_set_no_active_sensing)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_set_read_mode); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_set_read_mode)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_sizeof); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, params_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, poll_descriptors); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, poll_descriptors)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, poll_descriptors_count); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, poll_descriptors_count)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, poll_descriptors_revents); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, poll_descriptors_revents)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, read); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, read)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, status); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, status)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, status_get_avail); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, status_get_avail)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, status_sizeof); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, status_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, tread); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, tread)
LIBREMIDI_SYMBOL_DEF(snd_rawmidi, write); LIBREMIDI_SYMBOL_DEF(snd_rawmidi, write)
} rawmidi{library}; } rawmidi{library};
#endif #endif
@@ -237,118 +237,120 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_seq, alloc_queue); LIBREMIDI_SYMBOL_INIT(snd_seq, alloc_queue)
LIBREMIDI_SYMBOL_INIT(snd_seq, client_id); LIBREMIDI_SYMBOL_INIT(snd_seq, client_id)
LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_get_client); LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_get_client)
LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_get_name); LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_get_name)
LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_set_client); LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_get_card)
LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_sizeof); LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_set_client)
LIBREMIDI_SYMBOL_INIT(snd_seq, close); LIBREMIDI_SYMBOL_INIT(snd_seq, client_info_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_seq, connect_from); LIBREMIDI_SYMBOL_INIT(snd_seq, close)
LIBREMIDI_SYMBOL_INIT(snd_seq, control_queue); LIBREMIDI_SYMBOL_INIT(snd_seq, connect_from)
LIBREMIDI_SYMBOL_INIT(snd_seq, create_port); LIBREMIDI_SYMBOL_INIT(snd_seq, control_queue)
LIBREMIDI_SYMBOL_INIT(snd_seq, delete_port); LIBREMIDI_SYMBOL_INIT(snd_seq, create_port)
LIBREMIDI_SYMBOL_INIT(snd_seq, drain_output); LIBREMIDI_SYMBOL_INIT(snd_seq, delete_port)
LIBREMIDI_SYMBOL_INIT(snd_seq, event_input); LIBREMIDI_SYMBOL_INIT(snd_seq, drain_output)
LIBREMIDI_SYMBOL_INIT(snd_seq, event_input_pending); LIBREMIDI_SYMBOL_INIT(snd_seq, event_input)
LIBREMIDI_SYMBOL_INIT(snd_seq, event_output); LIBREMIDI_SYMBOL_INIT(snd_seq, event_input_pending)
LIBREMIDI_SYMBOL_INIT(snd_seq, free_event); LIBREMIDI_SYMBOL_INIT(snd_seq, event_output)
LIBREMIDI_SYMBOL_INIT(snd_seq, free_queue); LIBREMIDI_SYMBOL_INIT(snd_seq, free_event)
LIBREMIDI_SYMBOL_INIT(snd_seq, get_any_client_info); LIBREMIDI_SYMBOL_INIT(snd_seq, free_queue)
LIBREMIDI_SYMBOL_INIT(snd_seq, get_any_port_info); LIBREMIDI_SYMBOL_INIT(snd_seq, get_any_client_info)
LIBREMIDI_SYMBOL_INIT(snd_seq, get_port_info); LIBREMIDI_SYMBOL_INIT(snd_seq, get_any_port_info)
LIBREMIDI_SYMBOL_INIT(snd_seq, open); LIBREMIDI_SYMBOL_INIT(snd_seq, get_port_info)
LIBREMIDI_SYMBOL_INIT(snd_seq, poll_descriptors); LIBREMIDI_SYMBOL_INIT(snd_seq, open)
LIBREMIDI_SYMBOL_INIT(snd_seq, poll_descriptors_count); LIBREMIDI_SYMBOL_INIT(snd_seq, poll_descriptors)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_addr); LIBREMIDI_SYMBOL_INIT(snd_seq, poll_descriptors_count)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_capability); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_addr)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_name); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_capability)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_port); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_name)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_type); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_port)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_capability); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_get_type)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_client); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_capability)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_midi_channels); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_client)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_name); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_midi_channels)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_port); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_name)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_timestamping); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_port)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_timestamp_queue); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_timestamping)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_timestamp_real); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_timestamp_queue)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_type); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_timestamp_real)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_sizeof); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_set_type)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_free); LIBREMIDI_SYMBOL_INIT(snd_seq, port_info_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_malloc); LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_free)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_dest); LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_malloc)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_sender); LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_dest)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_time_real); LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_sender)
LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_time_update); LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_time_real)
LIBREMIDI_SYMBOL_INIT(snd_seq, query_next_client); LIBREMIDI_SYMBOL_INIT(snd_seq, port_subscribe_set_time_update)
LIBREMIDI_SYMBOL_INIT(snd_seq, query_next_port); LIBREMIDI_SYMBOL_INIT(snd_seq, query_next_client)
LIBREMIDI_SYMBOL_INIT(snd_seq, queue_tempo_set_ppq); LIBREMIDI_SYMBOL_INIT(snd_seq, query_next_port)
LIBREMIDI_SYMBOL_INIT(snd_seq, queue_tempo_set_tempo); LIBREMIDI_SYMBOL_INIT(snd_seq, queue_tempo_set_ppq)
LIBREMIDI_SYMBOL_INIT(snd_seq, queue_tempo_sizeof); LIBREMIDI_SYMBOL_INIT(snd_seq, queue_tempo_set_tempo)
LIBREMIDI_SYMBOL_INIT(snd_seq, set_client_name); LIBREMIDI_SYMBOL_INIT(snd_seq, queue_tempo_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_seq, set_port_info); LIBREMIDI_SYMBOL_INIT(snd_seq, set_client_name)
LIBREMIDI_SYMBOL_INIT(snd_seq, set_queue_tempo); LIBREMIDI_SYMBOL_INIT(snd_seq, set_port_info)
LIBREMIDI_SYMBOL_INIT(snd_seq, subscribe_port); LIBREMIDI_SYMBOL_INIT(snd_seq, set_queue_tempo)
LIBREMIDI_SYMBOL_INIT(snd_seq, unsubscribe_port); LIBREMIDI_SYMBOL_INIT(snd_seq, subscribe_port)
LIBREMIDI_SYMBOL_INIT(snd_seq, unsubscribe_port)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_seq, alloc_queue); LIBREMIDI_SYMBOL_DEF(snd_seq, alloc_queue)
LIBREMIDI_SYMBOL_DEF(snd_seq, client_id); LIBREMIDI_SYMBOL_DEF(snd_seq, client_id)
LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_get_client); LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_get_client)
LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_get_name); LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_get_name)
LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_set_client); LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_get_card)
LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_sizeof); LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_set_client)
LIBREMIDI_SYMBOL_DEF(snd_seq, close); LIBREMIDI_SYMBOL_DEF(snd_seq, client_info_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_seq, connect_from); LIBREMIDI_SYMBOL_DEF(snd_seq, close)
LIBREMIDI_SYMBOL_DEF(snd_seq, control_queue); LIBREMIDI_SYMBOL_DEF(snd_seq, connect_from)
LIBREMIDI_SYMBOL_DEF(snd_seq, create_port); LIBREMIDI_SYMBOL_DEF(snd_seq, control_queue)
LIBREMIDI_SYMBOL_DEF(snd_seq, delete_port); LIBREMIDI_SYMBOL_DEF(snd_seq, create_port)
LIBREMIDI_SYMBOL_DEF(snd_seq, drain_output); LIBREMIDI_SYMBOL_DEF(snd_seq, delete_port)
LIBREMIDI_SYMBOL_DEF(snd_seq, event_input); LIBREMIDI_SYMBOL_DEF(snd_seq, drain_output)
LIBREMIDI_SYMBOL_DEF(snd_seq, event_input_pending); LIBREMIDI_SYMBOL_DEF(snd_seq, event_input)
LIBREMIDI_SYMBOL_DEF(snd_seq, event_output); LIBREMIDI_SYMBOL_DEF(snd_seq, event_input_pending)
LIBREMIDI_SYMBOL_DEF(snd_seq, free_event); LIBREMIDI_SYMBOL_DEF(snd_seq, event_output)
LIBREMIDI_SYMBOL_DEF(snd_seq, free_queue); LIBREMIDI_SYMBOL_DEF(snd_seq, free_event)
LIBREMIDI_SYMBOL_DEF(snd_seq, get_any_client_info); LIBREMIDI_SYMBOL_DEF(snd_seq, free_queue)
LIBREMIDI_SYMBOL_DEF(snd_seq, get_any_port_info); LIBREMIDI_SYMBOL_DEF(snd_seq, get_any_client_info)
LIBREMIDI_SYMBOL_DEF(snd_seq, get_port_info); LIBREMIDI_SYMBOL_DEF(snd_seq, get_any_port_info)
LIBREMIDI_SYMBOL_DEF(snd_seq, open); LIBREMIDI_SYMBOL_DEF(snd_seq, get_port_info)
LIBREMIDI_SYMBOL_DEF(snd_seq, poll_descriptors); LIBREMIDI_SYMBOL_DEF(snd_seq, open)
LIBREMIDI_SYMBOL_DEF(snd_seq, poll_descriptors_count); LIBREMIDI_SYMBOL_DEF(snd_seq, poll_descriptors)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_addr); LIBREMIDI_SYMBOL_DEF(snd_seq, poll_descriptors_count)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_capability); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_addr)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_name); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_capability)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_port); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_name)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_type); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_port)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_capability); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_get_type)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_client); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_capability)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_midi_channels); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_client)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_name); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_midi_channels)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_port); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_name)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_timestamping); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_port)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_timestamp_queue); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_timestamping)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_timestamp_real); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_timestamp_queue)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_type); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_timestamp_real)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_sizeof); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_set_type)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_free); LIBREMIDI_SYMBOL_DEF(snd_seq, port_info_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_malloc); LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_free)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_dest); LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_malloc)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_sender); LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_dest)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_time_real); LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_sender)
LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_time_update); LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_time_real)
LIBREMIDI_SYMBOL_DEF(snd_seq, query_next_client); LIBREMIDI_SYMBOL_DEF(snd_seq, port_subscribe_set_time_update)
LIBREMIDI_SYMBOL_DEF(snd_seq, query_next_port); LIBREMIDI_SYMBOL_DEF(snd_seq, query_next_client)
LIBREMIDI_SYMBOL_DEF(snd_seq, queue_tempo_set_ppq); LIBREMIDI_SYMBOL_DEF(snd_seq, query_next_port)
LIBREMIDI_SYMBOL_DEF(snd_seq, queue_tempo_set_tempo); LIBREMIDI_SYMBOL_DEF(snd_seq, queue_tempo_set_ppq)
LIBREMIDI_SYMBOL_DEF(snd_seq, queue_tempo_sizeof); LIBREMIDI_SYMBOL_DEF(snd_seq, queue_tempo_set_tempo)
LIBREMIDI_SYMBOL_DEF(snd_seq, queue_tempo_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_seq, set_client_name); LIBREMIDI_SYMBOL_DEF(snd_seq, set_client_name)
LIBREMIDI_SYMBOL_DEF(snd_seq, set_port_info); LIBREMIDI_SYMBOL_DEF(snd_seq, set_port_info)
LIBREMIDI_SYMBOL_DEF(snd_seq, set_queue_tempo); LIBREMIDI_SYMBOL_DEF(snd_seq, set_queue_tempo)
LIBREMIDI_SYMBOL_DEF(snd_seq, subscribe_port); LIBREMIDI_SYMBOL_DEF(snd_seq, subscribe_port)
LIBREMIDI_SYMBOL_DEF(snd_seq, unsubscribe_port); LIBREMIDI_SYMBOL_DEF(snd_seq, unsubscribe_port)
#if LIBREMIDI_ALSA_HAS_UMP #if LIBREMIDI_ALSA_HAS_UMP
struct ump_t struct ump_t
@@ -360,18 +362,18 @@ struct libasound
available = false; available = false;
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_seq, set_client_midi_version); LIBREMIDI_SYMBOL_INIT(snd_seq, set_client_midi_version)
LIBREMIDI_SYMBOL_INIT(snd_seq_ump, event_input); LIBREMIDI_SYMBOL_INIT(snd_seq_ump, event_input)
LIBREMIDI_SYMBOL_INIT(snd_seq_ump, event_output); LIBREMIDI_SYMBOL_INIT(snd_seq_ump, event_output)
LIBREMIDI_SYMBOL_INIT(snd_seq_ump, event_output_direct); LIBREMIDI_SYMBOL_INIT(snd_seq_ump, event_output_direct)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_seq, set_client_midi_version); LIBREMIDI_SYMBOL_DEF(snd_seq, set_client_midi_version)
LIBREMIDI_SYMBOL_DEF(snd_seq_ump, event_input); LIBREMIDI_SYMBOL_DEF(snd_seq_ump, event_input)
LIBREMIDI_SYMBOL_DEF(snd_seq_ump, event_output); LIBREMIDI_SYMBOL_DEF(snd_seq_ump, event_output)
LIBREMIDI_SYMBOL_DEF(snd_seq_ump, event_output_direct); LIBREMIDI_SYMBOL_DEF(snd_seq_ump, event_output_direct)
} ump; } ump;
#endif #endif
} seq{library}; } seq{library};
@@ -387,39 +389,39 @@ struct libasound
return; return;
} }
LIBREMIDI_SYMBOL_INIT(snd_ump, block_info_get_name); LIBREMIDI_SYMBOL_INIT(snd_ump, block_info_get_name)
LIBREMIDI_SYMBOL_INIT(snd_ump, block_info_sizeof); LIBREMIDI_SYMBOL_INIT(snd_ump, block_info_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_ump, close); LIBREMIDI_SYMBOL_INIT(snd_ump, close)
LIBREMIDI_SYMBOL_INIT(snd_ump, endpoint_info_get_name); LIBREMIDI_SYMBOL_INIT(snd_ump, endpoint_info_get_name)
LIBREMIDI_SYMBOL_INIT(snd_ump, endpoint_info_sizeof); LIBREMIDI_SYMBOL_INIT(snd_ump, endpoint_info_sizeof)
LIBREMIDI_SYMBOL_INIT(snd_ump, open); LIBREMIDI_SYMBOL_INIT(snd_ump, open)
LIBREMIDI_SYMBOL_INIT(snd_ump, poll_descriptors); LIBREMIDI_SYMBOL_INIT(snd_ump, poll_descriptors)
LIBREMIDI_SYMBOL_INIT(snd_ump, poll_descriptors_count); LIBREMIDI_SYMBOL_INIT(snd_ump, poll_descriptors_count)
LIBREMIDI_SYMBOL_INIT(snd_ump, poll_descriptors_revents); LIBREMIDI_SYMBOL_INIT(snd_ump, poll_descriptors_revents)
LIBREMIDI_SYMBOL_INIT(snd_ump, rawmidi); LIBREMIDI_SYMBOL_INIT(snd_ump, rawmidi)
LIBREMIDI_SYMBOL_INIT(snd_ump, rawmidi_params); LIBREMIDI_SYMBOL_INIT(snd_ump, rawmidi_params)
LIBREMIDI_SYMBOL_INIT(snd_ump, rawmidi_params_current); LIBREMIDI_SYMBOL_INIT(snd_ump, rawmidi_params_current)
LIBREMIDI_SYMBOL_INIT(snd_ump, read); LIBREMIDI_SYMBOL_INIT(snd_ump, read)
LIBREMIDI_SYMBOL_INIT(snd_ump, tread); LIBREMIDI_SYMBOL_INIT(snd_ump, tread)
LIBREMIDI_SYMBOL_INIT(snd_ump, write); LIBREMIDI_SYMBOL_INIT(snd_ump, write)
} }
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(snd_ump, block_info_get_name); LIBREMIDI_SYMBOL_DEF(snd_ump, block_info_get_name)
LIBREMIDI_SYMBOL_DEF(snd_ump, block_info_sizeof); LIBREMIDI_SYMBOL_DEF(snd_ump, block_info_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_ump, close); LIBREMIDI_SYMBOL_DEF(snd_ump, close)
LIBREMIDI_SYMBOL_DEF(snd_ump, endpoint_info_get_name); LIBREMIDI_SYMBOL_DEF(snd_ump, endpoint_info_get_name)
LIBREMIDI_SYMBOL_DEF(snd_ump, endpoint_info_sizeof); LIBREMIDI_SYMBOL_DEF(snd_ump, endpoint_info_sizeof)
LIBREMIDI_SYMBOL_DEF(snd_ump, open); LIBREMIDI_SYMBOL_DEF(snd_ump, open)
LIBREMIDI_SYMBOL_DEF(snd_ump, poll_descriptors); LIBREMIDI_SYMBOL_DEF(snd_ump, poll_descriptors)
LIBREMIDI_SYMBOL_DEF(snd_ump, poll_descriptors_count); LIBREMIDI_SYMBOL_DEF(snd_ump, poll_descriptors_count)
LIBREMIDI_SYMBOL_DEF(snd_ump, poll_descriptors_revents); LIBREMIDI_SYMBOL_DEF(snd_ump, poll_descriptors_revents)
LIBREMIDI_SYMBOL_DEF(snd_ump, rawmidi); LIBREMIDI_SYMBOL_DEF(snd_ump, rawmidi)
LIBREMIDI_SYMBOL_DEF(snd_ump, rawmidi_params); LIBREMIDI_SYMBOL_DEF(snd_ump, rawmidi_params)
LIBREMIDI_SYMBOL_DEF(snd_ump, rawmidi_params_current); LIBREMIDI_SYMBOL_DEF(snd_ump, rawmidi_params_current)
LIBREMIDI_SYMBOL_DEF(snd_ump, read); LIBREMIDI_SYMBOL_DEF(snd_ump, read)
LIBREMIDI_SYMBOL_DEF(snd_ump, tread); LIBREMIDI_SYMBOL_DEF(snd_ump, tread)
LIBREMIDI_SYMBOL_DEF(snd_ump, write); LIBREMIDI_SYMBOL_DEF(snd_ump, write)
} ump{library}; } ump{library};
#endif #endif
}; };
+43 -34
View File
@@ -12,6 +12,8 @@ namespace libremidi
class libpipewire class libpipewire
{ {
public: public:
decltype(&::pw_get_library_version) get_library_version{};
decltype(&::pw_init) init{}; decltype(&::pw_init) init{};
decltype(&::pw_deinit) deinit{}; decltype(&::pw_deinit) deinit{};
@@ -67,12 +69,12 @@ public:
bool available{true}; bool available{true};
private: private:
dylib_loader library; dylib_loader m_library;
libpipewire() libpipewire()
: library("libpipewire-0.3.so.0") : m_library("libpipewire-0.3.so.0")
{ {
if (!library) if (!m_library)
{ {
available = false; available = false;
return; return;
@@ -81,52 +83,59 @@ private:
// in terms of regex: // in terms of regex:
// decltype\(&::([a-z_]+)\) [a-z_]+{}; // decltype\(&::([a-z_]+)\) [a-z_]+{};
// \1 = library.symbol<decltype(&::\1)>("\1"); // \1 = library.symbol<decltype(&::\1)>("\1");
init = library.symbol<decltype(&::pw_init)>("pw_init"); get_library_version
deinit = library.symbol<decltype(&::pw_deinit)>("pw_deinit"); = m_library.symbol<decltype(&::pw_get_library_version)>("pw_get_library_version");
context_new = library.symbol<decltype(&::pw_context_new)>("pw_context_new"); init = m_library.symbol<decltype(&::pw_init)>("pw_init");
context_connect = library.symbol<decltype(&::pw_context_connect)>("pw_context_connect"); deinit = m_library.symbol<decltype(&::pw_deinit)>("pw_deinit");
context_destroy = library.symbol<decltype(&::pw_context_destroy)>("pw_context_destroy");
core_disconnect = library.symbol<decltype(&::pw_core_disconnect)>("pw_core_disconnect"); context_new = m_library.symbol<decltype(&::pw_context_new)>("pw_context_new");
context_connect = m_library.symbol<decltype(&::pw_context_connect)>("pw_context_connect");
context_destroy = m_library.symbol<decltype(&::pw_context_destroy)>("pw_context_destroy");
core_disconnect = m_library.symbol<decltype(&::pw_core_disconnect)>("pw_core_disconnect");
proxy_add_listener proxy_add_listener
= library.symbol<decltype(&::pw_proxy_add_listener)>("pw_proxy_add_listener"); = m_library.symbol<decltype(&::pw_proxy_add_listener)>("pw_proxy_add_listener");
proxy_destroy = library.symbol<decltype(&::pw_proxy_destroy)>("pw_proxy_destroy"); proxy_destroy = m_library.symbol<decltype(&::pw_proxy_destroy)>("pw_proxy_destroy");
main_loop_new = library.symbol<decltype(&::pw_main_loop_new)>("pw_main_loop_new"); main_loop_new = m_library.symbol<decltype(&::pw_main_loop_new)>("pw_main_loop_new");
main_loop_destroy = library.symbol<decltype(&::pw_main_loop_destroy)>("pw_main_loop_destroy"); main_loop_destroy
main_loop_quit = library.symbol<decltype(&::pw_main_loop_quit)>("pw_main_loop_quit"); = m_library.symbol<decltype(&::pw_main_loop_destroy)>("pw_main_loop_destroy");
main_loop_run = library.symbol<decltype(&::pw_main_loop_run)>("pw_main_loop_run"); main_loop_quit = m_library.symbol<decltype(&::pw_main_loop_quit)>("pw_main_loop_quit");
main_loop_run = m_library.symbol<decltype(&::pw_main_loop_run)>("pw_main_loop_run");
main_loop_get_loop main_loop_get_loop
= library.symbol<decltype(&::pw_main_loop_get_loop)>("pw_main_loop_get_loop"); = m_library.symbol<decltype(&::pw_main_loop_get_loop)>("pw_main_loop_get_loop");
properties_new = library.symbol<decltype(&::pw_properties_new)>("pw_properties_new"); properties_new = m_library.symbol<decltype(&::pw_properties_new)>("pw_properties_new");
properties_free = library.symbol<decltype(&::pw_properties_free)>("pw_properties_free"); properties_free = m_library.symbol<decltype(&::pw_properties_free)>("pw_properties_free");
properties_get = library.symbol<decltype(&::pw_properties_get)>("pw_properties_get"); properties_get = m_library.symbol<decltype(&::pw_properties_get)>("pw_properties_get");
filter_new_simple = library.symbol<decltype(&::pw_filter_new_simple)>("pw_filter_new_simple"); filter_new_simple
= m_library.symbol<decltype(&::pw_filter_new_simple)>("pw_filter_new_simple");
filter_get_node_id filter_get_node_id
= library.symbol<decltype(&::pw_filter_get_node_id)>("pw_filter_get_node_id"); = m_library.symbol<decltype(&::pw_filter_get_node_id)>("pw_filter_get_node_id");
filter_get_properties filter_get_properties
= library.symbol<decltype(&::pw_filter_get_properties)>("pw_filter_get_properties"); = m_library.symbol<decltype(&::pw_filter_get_properties)>("pw_filter_get_properties");
filter_add_port = library.symbol<decltype(&::pw_filter_add_port)>("pw_filter_add_port"); filter_add_port = m_library.symbol<decltype(&::pw_filter_add_port)>("pw_filter_add_port");
filter_remove_port filter_remove_port
= library.symbol<decltype(&::pw_filter_remove_port)>("pw_filter_remove_port"); = m_library.symbol<decltype(&::pw_filter_remove_port)>("pw_filter_remove_port");
filter_update_properties filter_update_properties = m_library.symbol<decltype(&::pw_filter_update_properties)>(
= library.symbol<decltype(&::pw_filter_update_properties)>("pw_filter_update_properties"); "pw_filter_update_properties");
filter_update_params filter_update_params
= library.symbol<decltype(&::pw_filter_update_params)>("pw_filter_update_params"); = m_library.symbol<decltype(&::pw_filter_update_params)>("pw_filter_update_params");
filter_get_time = library.symbol<decltype(&::pw_filter_get_time)>("pw_filter_get_time"); filter_get_time = m_library.symbol<decltype(&::pw_filter_get_time)>("pw_filter_get_time");
filter_destroy = library.symbol<decltype(&::pw_filter_destroy)>("pw_filter_destroy"); filter_destroy = m_library.symbol<decltype(&::pw_filter_destroy)>("pw_filter_destroy");
filter_connect = library.symbol<decltype(&::pw_filter_connect)>("pw_filter_connect"); filter_connect = m_library.symbol<decltype(&::pw_filter_connect)>("pw_filter_connect");
filter_get_dsp_buffer filter_get_dsp_buffer
= library.symbol<decltype(&::pw_filter_get_dsp_buffer)>("pw_filter_get_dsp_buffer"); = m_library.symbol<decltype(&::pw_filter_get_dsp_buffer)>("pw_filter_get_dsp_buffer");
filter_dequeue_buffer filter_dequeue_buffer
= library.symbol<decltype(&::pw_filter_dequeue_buffer)>("pw_filter_dequeue_buffer"); = m_library.symbol<decltype(&::pw_filter_dequeue_buffer)>("pw_filter_dequeue_buffer");
filter_queue_buffer filter_queue_buffer
= library.symbol<decltype(&::pw_filter_queue_buffer)>("pw_filter_queue_buffer"); = m_library.symbol<decltype(&::pw_filter_queue_buffer)>("pw_filter_queue_buffer");
filter_flush = library.symbol<decltype(&::pw_filter_flush)>("pw_filter_flush"); filter_flush = m_library.symbol<decltype(&::pw_filter_flush)>("pw_filter_flush");
assert(get_library_version);
assert(init); assert(init);
assert(deinit); assert(deinit);
+122 -20
View File
@@ -1,10 +1,12 @@
#pragma once #pragma once
#include <libremidi/backends/linux/dylib_loader.hpp> #include <libremidi/backends/linux/dylib_loader.hpp>
#include <libremidi/backends/linux/helpers.hpp> #include <libremidi/backends/linux/helpers.hpp>
#include <libremidi/observer_configuration.hpp>
#include <libudev.h> #include <libudev.h>
#include <cassert> #include <cassert>
#include <optional>
namespace libremidi namespace libremidi
{ {
@@ -23,16 +25,32 @@ struct libudev
return; return;
} }
LIBREMIDI_SYMBOL_INIT(udev, device_get_action); LIBREMIDI_SYMBOL_INIT(udev, device_get_action)
LIBREMIDI_SYMBOL_INIT(udev, device_get_subsystem); LIBREMIDI_SYMBOL_INIT(udev, device_get_subsystem)
LIBREMIDI_SYMBOL_INIT(udev, device_unref); LIBREMIDI_SYMBOL_INIT(udev, device_get_property_value)
LIBREMIDI_SYMBOL_INIT(udev, monitor_enable_receiving); LIBREMIDI_SYMBOL_INIT(udev, device_new_from_syspath)
LIBREMIDI_SYMBOL_INIT(udev, monitor_get_fd); LIBREMIDI_SYMBOL_INIT(udev, device_get_parent_with_subsystem_devtype)
LIBREMIDI_SYMBOL_INIT(udev, monitor_new_from_netlink); LIBREMIDI_SYMBOL_INIT(udev, device_unref)
LIBREMIDI_SYMBOL_INIT(udev, monitor_receive_device);
LIBREMIDI_SYMBOL_INIT(udev, monitor_unref); LIBREMIDI_SYMBOL_INIT(udev, monitor_enable_receiving)
LIBREMIDI_SYMBOL_INIT2(udev, new, create); LIBREMIDI_SYMBOL_INIT(udev, monitor_get_fd)
LIBREMIDI_SYMBOL_INIT(udev, unref); LIBREMIDI_SYMBOL_INIT(udev, monitor_new_from_netlink)
LIBREMIDI_SYMBOL_INIT(udev, monitor_receive_device)
LIBREMIDI_SYMBOL_INIT(udev, monitor_unref)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_new)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_unref)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_add_match_is_initialized)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_add_match_subsystem)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_add_match_sysname)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_scan_devices)
LIBREMIDI_SYMBOL_INIT(udev, enumerate_get_list_entry)
LIBREMIDI_SYMBOL_INIT(udev, list_entry_get_name)
LIBREMIDI_SYMBOL_INIT(udev, list_entry_get_next)
LIBREMIDI_SYMBOL_INIT2(udev, new, create)
LIBREMIDI_SYMBOL_INIT(udev, unref)
} }
static const libudev& instance() static const libudev& instance()
@@ -44,16 +62,32 @@ struct libudev
dylib_loader library; dylib_loader library;
bool available{true}; bool available{true};
LIBREMIDI_SYMBOL_DEF(udev, device_get_action); LIBREMIDI_SYMBOL_DEF(udev, device_get_action)
LIBREMIDI_SYMBOL_DEF(udev, device_get_subsystem); LIBREMIDI_SYMBOL_DEF(udev, device_get_subsystem)
LIBREMIDI_SYMBOL_DEF(udev, device_unref); LIBREMIDI_SYMBOL_DEF(udev, device_new_from_syspath)
LIBREMIDI_SYMBOL_DEF(udev, monitor_enable_receiving); LIBREMIDI_SYMBOL_DEF(udev, device_get_property_value)
LIBREMIDI_SYMBOL_DEF(udev, monitor_get_fd); LIBREMIDI_SYMBOL_DEF(udev, device_get_parent_with_subsystem_devtype)
LIBREMIDI_SYMBOL_DEF(udev, monitor_new_from_netlink); LIBREMIDI_SYMBOL_DEF(udev, device_unref)
LIBREMIDI_SYMBOL_DEF(udev, monitor_receive_device);
LIBREMIDI_SYMBOL_DEF(udev, monitor_unref); LIBREMIDI_SYMBOL_DEF(udev, monitor_enable_receiving)
LIBREMIDI_SYMBOL_DEF2(udev, new, create); LIBREMIDI_SYMBOL_DEF(udev, monitor_get_fd)
LIBREMIDI_SYMBOL_DEF(udev, unref); LIBREMIDI_SYMBOL_DEF(udev, monitor_new_from_netlink)
LIBREMIDI_SYMBOL_DEF(udev, monitor_receive_device)
LIBREMIDI_SYMBOL_DEF(udev, monitor_unref)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_new)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_unref)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_add_match_is_initialized)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_add_match_subsystem)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_add_match_sysname)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_scan_devices)
LIBREMIDI_SYMBOL_DEF(udev, enumerate_get_list_entry)
LIBREMIDI_SYMBOL_DEF(udev, list_entry_get_name)
LIBREMIDI_SYMBOL_DEF(udev, list_entry_get_next)
LIBREMIDI_SYMBOL_DEF2(udev, new, create)
LIBREMIDI_SYMBOL_DEF(udev, unref)
}; };
struct udev_helper struct udev_helper
@@ -89,4 +123,72 @@ struct udev_helper
udev_monitor* monitor{}; udev_monitor* monitor{};
}; };
struct udev_enumerator
{
explicit udev_enumerator(const udev_helper& h)
: helper{h}
{
auto& udev = helper.udev;
auto& instance = helper.instance;
enumerator = udev.enumerate_new(instance);
assert(enumerator);
}
~udev_enumerator()
{
auto& udev = helper.udev;
udev.enumerate_unref(enumerator);
}
const udev_helper& helper;
udev_enumerate* enumerator{};
operator udev_enumerate*() const noexcept { return enumerator; }
};
struct udev_soundcard_info
{
container_identifier container;
device_identifier path;
port_information::port_type type{};
};
inline udev_soundcard_info get_udev_soundcard_info(const udev_helper& helper, int card)
{
auto& udev = helper.udev;
udev_enumerator e{helper};
udev.enumerate_add_match_subsystem(e, "sound");
udev.enumerate_add_match_sysname(e, ("controlC" + std::to_string(card)).c_str());
if (udev.enumerate_scan_devices(e) != 0)
return {};
for (auto entry = udev.enumerate_get_list_entry(e); entry;
entry = udev.list_entry_get_next(entry))
{
auto path = udev.list_entry_get_name(entry);
if (!path)
continue;
auto dev = udev.device_new_from_syspath(helper.instance, path);
if (!dev)
continue;
const auto usb_device
= udev.device_get_parent_with_subsystem_devtype(dev, "usb", "usb_device");
port_information::port_type type = port_information::port_type::hardware;
if (usb_device)
type = (port_information::port_type)(type | port_information::port_type::usb);
else
type = (port_information::port_type)(type | port_information::port_type::pci);
auto id_path = udev.device_get_property_value(dev, "ID_PATH");
if (!id_path)
id_path = "";
auto ret = udev_soundcard_info{.container = id_path, .path = path, .type = type};
udev.device_unref(dev);
return ret;
}
return {};
}
} }
+86
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@@ -0,0 +1,86 @@
#pragma once
#include <libremidi/config.hpp>
#include <string>
namespace boost::asio
{
struct io_context;
}
namespace libremidi::net
{
enum class protocol
{
OSC_MIDI,
};
struct dgram_input_configuration
{
std::string client_name = "libremidi client";
enum protocol protocol = protocol::OSC_MIDI;
std::string accept = "0.0.0.0";
int port{};
boost::asio::io_context* io_context{};
};
struct dgram_output_configuration
{
std::string client_name = "libremidi client";
enum protocol protocol = protocol::OSC_MIDI;
std::string host = "127.0.0.1";
int port{};
bool broadcast{};
boost::asio::io_context* io_context{};
};
struct dgram_observer_configuration
{
std::string client_name = "libremidi client";
boost::asio::io_context* io_context{};
};
}
namespace libremidi::net_ump
{
enum class protocol
{
OSC_MIDI2,
};
struct dgram_input_configuration
{
std::string client_name = "libremidi client";
enum protocol protocol = protocol::OSC_MIDI2;
std::string accept = "0.0.0.0";
int port{};
boost::asio::io_context* io_context{};
};
struct dgram_output_configuration
{
std::string client_name = "libremidi client";
enum protocol protocol = protocol::OSC_MIDI2;
std::string host = "127.0.0.1";
int port{};
bool broadcast{};
boost::asio::io_context* io_context{};
};
struct dgram_observer_configuration
{
std::string client_name = "libremidi client";
boost::asio::io_context* io_context{};
};
}
@@ -0,0 +1,94 @@
#pragma once
#include <libremidi/config.hpp>
#include <boost/asio/ip/udp.hpp>
#include <memory>
namespace stdx
{ /*
class boost_system_error_domain : public error_domain
{
public:
constexpr boost_system_error_domain() noexcept
: error_domain{
{1 - 0x3c223c0aa3cf45e5ULL, 1 - 0x80dac24345cfb9fcULL},
default_error_resource_management_t<detail::exception_ptr_wrapper>{}}
{
}
string_ref name() const noexcept override { return "boost::system_error domain"; }
bool equivalent(const error& lhs, const error& rhs) const noexcept override { return false; }
string_ref message(const error& e) const noexcept override {
auto err = e.m_value;
}
[[noreturn]] void throw_exception(const error& e) const override
{
assert(e.domain() == *this);
std::rethrow_exception(error_cast<detail::exception_ptr_wrapper>(e).get());
}
};
*/
}
namespace libremidi
{
template <typename T>
struct optionally_owned
{
public:
explicit optionally_owned(T* maybe_existing)
: m_storage{.ref = maybe_existing}
{
if (m_storage.ref)
{
m_ownership = unowned;
return;
}
else
{
std::destroy_at(&m_storage.ref);
std::construct_at<T>(reinterpret_cast<T*>(m_storage.object));
m_ownership = owned;
}
}
~optionally_owned()
{
if (is_owned())
std::destroy_at(reinterpret_cast<T*>(m_storage.object));
}
T& get() noexcept
{
return *(is_owned() ? reinterpret_cast<T*>(&m_storage.object) : m_storage.ref);
}
const T& get() const noexcept
{
return *(is_owned() ? reinterpret_cast<T*>(&m_storage.object) : m_storage.ref);
}
optionally_owned(const optionally_owned&) = delete;
optionally_owned(optionally_owned&&) noexcept = delete;
optionally_owned& operator=(const optionally_owned&) = delete;
optionally_owned& operator=(optionally_owned&&) noexcept = delete;
bool is_owned() const noexcept { return m_ownership == owned; }
private:
union
{
alignas(T) unsigned char object[sizeof(T)];
T* ref;
} m_storage;
enum
{
owned,
unowned
} m_ownership{};
};
}
+437
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@@ -0,0 +1,437 @@
#pragma once
#include <libremidi/backends/net/config.hpp>
#include <libremidi/backends/net/helpers.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
#include <thread>
namespace libremidi
{
template <typename Impl, typename F>
struct osc_parser
{
[[no_unique_address]]
Impl impl;
F on_message;
std::string_view port_name;
stdx::error parse_bundle(const char* data, std::size_t sz)
{
std::string_view txt(data, sz);
if (!txt.starts_with("#bundle"))
return std::errc::bad_message;
return std::errc::protocol_not_supported;
}
stdx::error parse_message(const char* data, std::size_t sz)
{
const auto begin = data;
const auto end = data + sz;
std::size_t pattern_len = strnlen(data, sz);
if (pattern_len == sz)
return std::errc::bad_message;
if (auto pat = std::string_view(data, pattern_len); pat != port_name)
return std::errc::bad_address;
data += pattern_len;
for (; data < end; ++data)
if (*data == 0)
continue;
else
break;
// Now we shold reach the typetag beginning, ","
if (data == end)
return std::errc::bad_message;
if ((data - begin) % 4 != 0)
return std::errc::bad_message;
if (*data++ != ',')
return std::errc::bad_message;
// Count the ,mmmmm arguments... yummy
int num_msgs = 0;
for (; data < end; ++data)
if (*data == Impl::typetag)
num_msgs++;
else if (*data == 0)
break;
else
return std::errc::bad_message;
if (num_msgs == 0)
return std::errc::no_message;
// By now there's at least 5 bytes left as the ,mmm has to be round-up to 4 and padded with zeros:
if (end - data < 4)
return std::errc::bad_message;
switch ((1 + num_msgs) % 4)
{
case 0:
data += 4;
break;
case 1:
data += 3;
break;
case 2:
data += 2;
break;
case 3:
data += 1;
break;
}
// Data starts
return impl.process_midi_bytes(on_message, num_msgs, data, end - data);
}
stdx::error parse_int_message(const char* /* data */, std::size_t /* sz */)
{
return std::errc::protocol_not_supported;
}
stdx::error parse_packet(const char* data, std::size_t sz)
{
if (sz == 0)
return std::errc::no_message;
switch (data[0])
{
case '#':
return parse_bundle(data, sz);
break;
case '/':
return parse_message(data, sz);
break;
case '\0':
return parse_int_message(data, sz);
break;
default:
return std::errc::bad_message;
}
}
};
}
namespace libremidi::net
{
struct osc_parser_midi1
{
static constexpr char typetag = 'm';
stdx::error
process_midi_bytes(auto& on_message, std::size_t num_msgs, const char* data, std::size_t sz)
{
if (sz != num_msgs * 4)
return std::errc::bad_message;
auto end = data + sz;
for (; data < end; data += 4)
on_message(data + 1);
return {};
}
};
class midi_in final
: public midi1::in_api
, public error_handler
{
public:
using midi_api::client_open_;
struct
: input_configuration
, dgram_input_configuration
{
} configuration;
explicit midi_in(input_configuration&& conf, dgram_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
, m_ctx{configuration.io_context}
, m_socket{m_ctx.get()}
{
m_socket.open(boost::asio::ip::udp::v4());
m_socket.set_option(boost::asio::ip::udp::socket::reuse_address(true));
m_endpoint
= {boost::asio::ip::make_address(this->configuration.accept),
static_cast<unsigned short>(this->configuration.port)};
boost::system::error_code ec;
m_socket.bind(m_endpoint, ec);
if (ec != boost::system::error_code{})
{
client_open_ = std::errc::address_in_use;
return;
}
client_open_ = stdx::error{};
}
~midi_in() override { close_port(); }
libremidi::API get_current_api() const noexcept override { return libremidi::API::NETWORK; }
stdx::error open_port(const input_port&, std::string_view port) override
{
return open_virtual_port(port);
}
stdx::error open_virtual_port(std::string_view port) override
{
m_portname = std::string(port);
receive();
if (m_ctx.is_owned())
{
m_thread = std::jthread{[this, &ctx = m_ctx.get()] {
auto wg = boost::asio::make_work_guard(m_ctx);
ctx.run();
}};
}
return stdx::error{};
}
void receive()
{
m_socket.async_receive_from(
boost::asio::mutable_buffer(&m_data[0], std::size(m_data)), m_endpoint,
[this](auto ec, std::size_t sz) {
if (ec == boost::asio::error::operation_aborted)
return;
if (!ec && sz > 0)
this->on_bytes(reinterpret_cast<const char*>(m_data), sz);
this->receive();
});
}
stdx::error close_port() override
{
// FIXME async close
if (m_socket.is_open())
m_socket.close();
return {};
}
timestamp absolute_timestamp() const noexcept override
{
return std::chrono::steady_clock::now().time_since_epoch().count();
}
void on_bytes(const char* data, std::size_t size)
{
const auto on_msg = [this](const char* bytes) { this->on_message(bytes); };
osc_parser<osc_parser_midi1, decltype(on_msg)> parser{{}, on_msg, m_portname};
parser.parse_packet(data, size);
}
void on_message(const char* data)
{
// OSC enforces always 3 bytes
static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = false,
.absolute_is_monotonic = false,
.has_samples = false,
};
static constexpr auto to_ns = []() {
return std::chrono::duration_cast<std::chrono::nanoseconds>(
std::chrono::steady_clock::now().time_since_epoch())
.count();
};
auto ptr = reinterpret_cast<const uint8_t*>(data);
m_processing.on_bytes({ptr, ptr + 3}, m_processing.timestamp<timestamp_info>(to_ns, 0));
}
midi1::input_state_machine m_processing{this->configuration};
libremidi::optionally_owned<boost::asio::io_context> m_ctx;
boost::asio::ip::udp::endpoint m_endpoint;
boost::asio::ip::udp::socket m_socket;
std::jthread m_thread;
std::string m_portname;
alignas(16) unsigned char m_data[65535];
};
}
namespace libremidi::net_ump
{
struct osc_parser_midi2
{
static constexpr char typetag = 'M';
stdx::error
process_midi_bytes(auto& on_message, std::size_t num_msgs, const char* data, std::size_t byte_sz)
{
if (byte_sz % 4 != 0)
return std::errc::bad_message;
auto sz = byte_sz / 4;
auto begin = reinterpret_cast<const uint32_t*>(data);
auto end = begin + sz;
std::size_t accounted = 0;
for (auto it = begin; it < end && accounted < num_msgs;)
{
const auto N = cmidi2_ump_get_message_size_bytes(it) / 4;
switch (N)
{
case 1:
case 2:
case 4:
if (it + N <= end)
{
on_message(it, N);
accounted++;
}
else
return std::errc::bad_message;
break;
default:
return std::errc::bad_message;
}
it += N;
}
return {};
}
};
class midi_in final
: public midi2::in_api
, public error_handler
{
public:
using midi_api::client_open_;
struct
: ump_input_configuration
, dgram_input_configuration
{
} configuration;
explicit midi_in(ump_input_configuration&& conf, dgram_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
, m_ctx{configuration.io_context}
, m_socket{m_ctx.get()}
{
m_socket.open(boost::asio::ip::udp::v4());
m_socket.set_option(boost::asio::ip::udp::socket::reuse_address(true));
m_endpoint
= {boost::asio::ip::make_address(this->configuration.accept),
static_cast<unsigned short>(this->configuration.port)};
boost::system::error_code ec;
m_socket.bind(m_endpoint, ec);
if (ec != boost::system::error_code{})
{
client_open_ = std::errc::address_in_use;
return;
}
client_open_ = stdx::error{};
}
~midi_in() override { close_port(); }
libremidi::API get_current_api() const noexcept override { return libremidi::API::NETWORK_UMP; }
stdx::error open_port(const input_port&, std::string_view port) override
{
return open_virtual_port(port);
}
stdx::error open_virtual_port(std::string_view port) override
{
m_portname = std::string(port);
receive();
if (m_ctx.is_owned())
{
m_thread = std::jthread{[this, &ctx = m_ctx.get()] {
auto wg = boost::asio::make_work_guard(m_ctx);
ctx.run();
}};
}
return stdx::error{};
}
void receive()
{
m_socket.async_receive_from(
boost::asio::mutable_buffer(&m_data[0], std::size(m_data)), m_endpoint,
[this](auto ec, std::size_t sz) {
if (ec == boost::asio::error::operation_aborted)
return;
if (!ec && sz > 0)
this->on_bytes(reinterpret_cast<const char*>(m_data), sz);
this->receive();
});
}
stdx::error close_port() override
{
// FIXME async close
if (m_ctx.is_owned())
m_ctx.get().stop();
if (m_socket.is_open())
m_socket.close();
return {};
}
timestamp absolute_timestamp() const noexcept override
{
return std::chrono::steady_clock::now().time_since_epoch().count();
}
void on_bytes(const char* data, std::size_t size)
{
const auto on_msg
= [this](const uint32_t* bytes, std::size_t N) { this->on_message(bytes, N); };
osc_parser<osc_parser_midi2, decltype(on_msg)> parser{{}, on_msg, m_portname};
parser.parse_packet(data, size);
}
void on_message(const uint32_t* ump, std::size_t sz)
{
static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = false,
.absolute_is_monotonic = false,
.has_samples = false,
};
static constexpr auto to_ns = []() {
return std::chrono::duration_cast<std::chrono::nanoseconds>(
std::chrono::steady_clock::now().time_since_epoch())
.count();
};
m_processing.on_bytes({ump, sz}, m_processing.timestamp<timestamp_info>(to_ns, 0));
}
midi2::input_state_machine m_processing{this->configuration};
libremidi::optionally_owned<boost::asio::io_context> m_ctx;
boost::asio::ip::udp::endpoint m_endpoint;
boost::asio::ip::udp::socket m_socket;
std::jthread m_thread;
std::string m_portname;
alignas(16) unsigned char m_data[65535];
};
}
+288
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@@ -0,0 +1,288 @@
#pragma once
#include <libremidi/backends/net/config.hpp>
#include <libremidi/backends/net/helpers.hpp>
#include <libremidi/cmidi2.hpp>
#include <libremidi/detail/midi_out.hpp>
#include <boost/asio/io_context.hpp>
#include <boost/asio/ip/udp.hpp>
#include <boost/endian.hpp>
namespace libremidi::net
{
struct osc_midi1_packet
{
stdx::error init_packet(std::string_view osc_pattern)
{
int i = 0;
for (; i < std::ssize(osc_pattern); i++)
if (osc_pattern.data()[i] != 0)
bytes[i] = osc_pattern.data()[i];
else
break;
bytes[i] = 0;
while (i % 4 != 3)
{
++i;
bytes[i] = 0;
}
bytes[++i] = ',';
bytes[++i] = 'm';
bytes[++i] = 0;
bytes[++i] = 0;
// MIDI message (m) spec: port n°, status byte, data 1, data 2
bytes[++i] = 0;
message_size = ++i + 3;
return stdx::error{}; // FIXME
}
stdx::error deinit()
{
message_size = 0;
return stdx::error{};
}
stdx::error set_packet_content(const unsigned char* message, size_t size)
{
if (message_size == 0)
return std::errc::not_connected;
if (size != 3)
return std::errc::message_size;
std::memcpy(this->bytes + message_size - 3, message, 3);
return stdx::error{};
}
std::span<const char> get_data() { return std::span(this->bytes, this->message_size); }
char bytes[512 + 8 + 8];
int message_size{};
};
class midi_out final
: public midi1::out_api
, public error_handler
{
public:
struct
: output_configuration
, dgram_output_configuration
{
} configuration;
midi_out(output_configuration&& conf, dgram_output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
, ctx{configuration.io_context}
, m_socket{ctx.get()}
{
m_socket.open(boost::asio::ip::udp::v4());
m_socket.set_option(boost::asio::ip::udp::socket::reuse_address(true));
m_socket.set_option(boost::asio::socket_base::broadcast(true));
m_endpoint
= {boost::asio::ip::make_address(this->configuration.host),
static_cast<unsigned short>(this->configuration.port)};
this->client_open_ = stdx::error{};
}
~midi_out() override { close_port(); }
libremidi::API get_current_api() const noexcept override { return libremidi::API::NETWORK; }
stdx::error open_port(const output_port& /* port */, std::string_view portName) override
{
return open_virtual_port(portName);
}
stdx::error open_virtual_port(std::string_view portName) override
{
// Random arbitrary limit to avoid abuse
if (portName.size() >= 512)
return std::errc::invalid_argument;
pkt.init_packet(portName);
return stdx::error{};
}
stdx::error close_port() override
{
pkt.deinit();
// FIXME async close
if (m_socket.is_open())
m_socket.close();
return {};
}
stdx::error send_message(const unsigned char* message, size_t size) override
{
if (auto err = pkt.set_packet_content(message, size); err != stdx::error{})
return err;
auto dat = pkt.get_data();
boost::system::error_code ec;
m_socket.send_to(boost::asio::const_buffer(dat.data(), dat.size()), m_endpoint, 0, ec);
return stdx::error{}; // FIXME
}
stdx::error schedule_message(int64_t, const unsigned char*, size_t) override
{
int ret = 0;
return from_errc(ret);
}
libremidi::optionally_owned<boost::asio::io_context> ctx;
boost::asio::ip::udp::endpoint m_endpoint;
boost::asio::ip::udp::socket m_socket;
osc_midi1_packet pkt;
};
}
namespace libremidi::net_ump
{
struct osc_midi2_packet
{
stdx::error init_packet(std::string_view osc_pattern)
{
int i = 0;
for (; i < std::ssize(osc_pattern); i++)
if (osc_pattern.data()[i] != 0)
bytes[i] = osc_pattern.data()[i];
else
break;
bytes[i] = 0;
while (i % 4 != 3)
{
++i;
bytes[i] = 0;
}
bytes[++i] = ',';
bytes[++i] = 'M';
bytes[++i] = 0;
bytes[++i] = 0;
// MIDI 2 message (M) spec: an UMP
header_size = ++i;
return stdx::error{}; // FIXME
}
stdx::error deinit()
{
header_size = 0;
return stdx::error{};
}
stdx::error set_packet_content(const uint32_t* message, size_t size)
{
if (header_size == 0)
return std::errc::not_connected;
if (size > 4)
return std::errc::message_size;
message_size = 4 * size;
std::memcpy(this->bytes + header_size, message, message_size);
return stdx::error{};
}
std::span<const char> get_data()
{
return std::span(this->bytes, this->header_size + this->message_size);
}
char bytes[512 + 8 + 64];
int header_size{};
int message_size{};
};
class midi_out final
: public midi2::out_api
, public error_handler
{
public:
struct
: output_configuration
, dgram_output_configuration
{
} configuration;
midi_out(output_configuration&& conf, dgram_output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
, ctx{configuration.io_context}
, m_socket{ctx.get()}
{
m_socket.open(boost::asio::ip::udp::v4());
m_socket.set_option(boost::asio::ip::udp::socket::reuse_address(true));
m_socket.set_option(boost::asio::socket_base::broadcast(true));
m_endpoint
= {boost::asio::ip::make_address(this->configuration.host),
static_cast<unsigned short>(this->configuration.port)};
this->client_open_ = stdx::error{};
}
~midi_out() override { close_port(); }
libremidi::API get_current_api() const noexcept override { return libremidi::API::NETWORK_UMP; }
stdx::error open_port(const output_port& /* port */, std::string_view portName) override
{
return open_virtual_port(portName);
}
stdx::error open_virtual_port(std::string_view portName) override
{
// Random arbitrary limit to avoid abuse
if (portName.size() >= 512)
return std::errc::invalid_argument;
pkt.init_packet(portName);
return stdx::error{};
}
stdx::error close_port() override
{
pkt.deinit();
if (m_socket.is_open())
m_socket.close();
return {};
}
stdx::error send_ump(const uint32_t* message, size_t size) override
{
if (auto err = pkt.set_packet_content(message, size); err != stdx::error{})
return err;
auto dat = pkt.get_data();
boost::system::error_code ec;
m_socket.send_to(boost::asio::const_buffer(dat.data(), dat.size()), m_endpoint, 0, ec);
return stdx::error{}; // FIXME
}
stdx::error schedule_ump(int64_t, const uint32_t*, size_t) override
{
int ret = 0;
return from_errc(ret);
}
libremidi::optionally_owned<boost::asio::io_context> ctx;
boost::asio::ip::udp::endpoint m_endpoint;
boost::asio::ip::udp::socket m_socket;
osc_midi2_packet pkt;
};
}
@@ -0,0 +1,14 @@
#pragma once
#include <libremidi/backends/dummy.hpp>
namespace libremidi::net
{
using net_observer_configuration = libremidi::dummy_configuration;
using observer = libremidi::observer_dummy;
}
namespace libremidi::net_ump
{
using net_observer_configuration = libremidi::dummy_configuration;
using observer = libremidi::observer_dummy;
}
+26
View File
@@ -0,0 +1,26 @@
#pragma once
#include <libremidi/backends/dummy.hpp>
#include <libremidi/backends/net/config.hpp>
#include <libremidi/backends/net/midi_in.hpp>
#include <libremidi/backends/net/midi_out.hpp>
#include <libremidi/backends/net/observer.hpp>
#include <string_view>
namespace libremidi::net
{
struct backend
{
using midi_in = libremidi::net::midi_in;
using midi_out = libremidi::net::midi_out;
using midi_observer = libremidi::net::observer;
using midi_in_configuration = libremidi::net::dgram_input_configuration;
using midi_out_configuration = libremidi::net::dgram_output_configuration;
using midi_observer_configuration = libremidi::net::net_observer_configuration;
static const constexpr auto API = libremidi::API::NETWORK;
static const constexpr std::string_view name = "network";
static const constexpr std::string_view display_name = "Network";
static inline bool available() noexcept { return true; }
};
}
@@ -0,0 +1,25 @@
#pragma once
#include <libremidi/backends/net/config.hpp>
#include <libremidi/backends/net/midi_in.hpp>
#include <libremidi/backends/net/midi_out.hpp>
#include <libremidi/backends/net/observer.hpp>
#include <string_view>
namespace libremidi::net_ump
{
struct backend
{
using midi_in = libremidi::net_ump::midi_in;
using midi_out = libremidi::net_ump::midi_out;
using midi_observer = libremidi::net_ump::observer;
using midi_in_configuration = libremidi::net_ump::dgram_input_configuration;
using midi_out_configuration = libremidi::net_ump::dgram_output_configuration;
using midi_observer_configuration = libremidi::net_ump::net_observer_configuration;
static const constexpr auto API = libremidi::API::NETWORK_UMP;
static const constexpr std::string_view name = "network (UMP)";
static const constexpr std::string_view display_name = "Network (UMP)";
static inline bool available() noexcept { return true; }
};
}
+4 -2
View File
@@ -7,6 +7,8 @@
#include <libremidi/backends/pipewire/midi_out.hpp> #include <libremidi/backends/pipewire/midi_out.hpp>
#include <libremidi/backends/pipewire/observer.hpp> #include <libremidi/backends/pipewire/observer.hpp>
#include <string_view>
namespace libremidi::pipewire namespace libremidi::pipewire
{ {
struct backend struct backend
@@ -18,8 +20,8 @@ struct backend
using midi_out_configuration = pipewire_output_configuration; using midi_out_configuration = pipewire_output_configuration;
using midi_observer_configuration = pipewire_observer_configuration; using midi_observer_configuration = pipewire_observer_configuration;
static const constexpr auto API = libremidi::API::PIPEWIRE; static const constexpr auto API = libremidi::API::PIPEWIRE;
static const constexpr auto name = "pipewire"; static const constexpr std::string_view name = "pipewire";
static const constexpr auto display_name = "PipeWire"; static const constexpr std::string_view display_name = "PipeWire";
static inline bool available() noexcept static inline bool available() noexcept
{ {
@@ -27,8 +27,8 @@ struct pipewire_input_configuration
pw_main_loop* context{}; pw_main_loop* context{};
pw_filter* filter{}; pw_filter* filter{};
std::function<void(pipewire_callback)> set_process_func; std::function<void(pipewire_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func; std::function<void(int64_t)> clear_process_func{};
}; };
struct pipewire_output_configuration struct pipewire_output_configuration
@@ -37,8 +37,8 @@ struct pipewire_output_configuration
pw_main_loop* context{}; pw_main_loop* context{};
pw_filter* filter{}; pw_filter* filter{};
std::function<void(pipewire_callback)> set_process_func; std::function<void(pipewire_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func; std::function<void(int64_t)> clear_process_func{};
int64_t output_buffer_size{65536}; int64_t output_buffer_size{65536};
}; };
+56 -38
View File
@@ -1,6 +1,7 @@
#pragma once #pragma once
#include <libremidi/backends/linux/pipewire.hpp> #include <libremidi/backends/linux/pipewire.hpp>
#include <libremidi/detail/memory.hpp> #include <libremidi/detail/memory.hpp>
#include <libremidi/error.hpp>
#include <pipewire/filter.h> #include <pipewire/filter.h>
#include <pipewire/pipewire.h> #include <pipewire/pipewire.h>
@@ -17,6 +18,7 @@
#include <memory> #include <memory>
#include <string> #include <string>
#include <unordered_map> #include <unordered_map>
#include <utility>
#include <vector> #include <vector>
#include <spa/param/audio/format-utils.h> #include <spa/param/audio/format-utils.h>
@@ -78,11 +80,11 @@ struct pipewire_context
struct graph struct graph
{ {
mutable std::mutex mtx; mutable std::mutex mtx;
libremidi::hash_map<uint32_t, node> physical_audio; libremidi::hash_map<uint64_t, node> physical_audio;
libremidi::hash_map<uint32_t, node> physical_midi; libremidi::hash_map<uint64_t, node> physical_midi;
libremidi::hash_map<uint32_t, node> software_audio; libremidi::hash_map<uint64_t, node> software_audio;
libremidi::hash_map<uint32_t, node> software_midi; libremidi::hash_map<uint64_t, node> software_midi;
libremidi::hash_map<uint32_t, port_info> port_cache; libremidi::hash_map<uint64_t, port_info> port_cache;
void for_each_port(auto func) void for_each_port(auto func)
{ {
@@ -122,13 +124,13 @@ struct pipewire_context
} }
explicit pipewire_context(std::shared_ptr<pipewire_instance> inst) explicit pipewire_context(std::shared_ptr<pipewire_instance> inst)
: global_instance{inst} : global_instance{std::move(inst)}
, owns_main_loop{true} , owns_main_loop{true}
{ {
this->main_loop = pw.main_loop_new(nullptr); this->main_loop = pw.main_loop_new(nullptr);
if (!this->main_loop) if (!this->main_loop)
{ {
// libremidi::logger().error("PipeWire: main_loop_new failed!"); // libremidi::logger().libremidi_handle_error("main_loop_new failed!");
return; return;
} }
initialize(); initialize();
@@ -139,28 +141,28 @@ struct pipewire_context
this->lp = pw.main_loop_get_loop(this->main_loop); this->lp = pw.main_loop_get_loop(this->main_loop);
if (!lp) if (!lp)
{ {
// libremidi::logger().error("PipeWire: main_loop_get_loop failed!"); // libremidi::logger().libremidi_handle_error("main_loop_get_loop failed!");
return; return;
} }
this->context = pw.context_new(lp, nullptr, 0); this->context = pw.context_new(lp, nullptr, 0);
if (!this->context) if (!this->context)
{ {
// libremidi::logger().error("PipeWire: context_new failed!"); // libremidi::logger().libremidi_handle_error("context_new failed!");
return; return;
} }
this->core = pw.context_connect(this->context, nullptr, 0); this->core = pw.context_connect(this->context, nullptr, 0);
if (!this->core) if (!this->core)
{ {
// libremidi::logger().error("PipeWire: context_connect failed!"); // libremidi::logger().libremidi_handle_error("context_connect failed!");
return; return;
} }
this->registry = pw_core_get_registry(this->core, PW_VERSION_REGISTRY, 0); this->registry = pw_core_get_registry(this->core, PW_VERSION_REGISTRY, 0);
if (!this->registry) if (!this->registry)
{ {
// libremidi::logger().error("PipeWire: core_get_registry failed!"); // libremidi::logger().libremidi_handle_error("core_get_registry failed!");
return; return;
} }
@@ -286,7 +288,7 @@ struct pipewire_context
spa_hook_remove(&core_listener); spa_hook_remove(&core_listener);
} }
[[nodiscard]] pw_proxy* link_ports(uint32_t out_port, uint32_t in_port) [[nodiscard]] pw_proxy* link_ports(uint64_t out_port, uint64_t in_port)
{ {
auto props = pw.properties_new( auto props = pw.properties_new(
PW_KEY_LINK_OUTPUT_PORT, std::to_string(out_port).c_str(), PW_KEY_LINK_INPUT_PORT, PW_KEY_LINK_OUTPUT_PORT, std::to_string(out_port).c_str(), PW_KEY_LINK_INPUT_PORT,
@@ -297,7 +299,6 @@ struct pipewire_context
if (!proxy) if (!proxy)
{ {
std::cerr << "PipeWire: could not allocate link\n";
pw.properties_free(props); pw.properties_free(props);
return nullptr; return nullptr;
} }
@@ -361,6 +362,8 @@ struct pipewire_context
return &this->current_graph.physical_audio[nid]; return &this->current_graph.physical_audio[nid];
else if (p.format.find("midi") != p.format.npos) else if (p.format.find("midi") != p.format.npos)
return &this->current_graph.physical_midi[nid]; return &this->current_graph.physical_midi[nid];
else if (p.format.find("UMP") != p.format.npos)
return &this->current_graph.physical_midi[nid];
} }
else else
{ {
@@ -368,6 +371,8 @@ struct pipewire_context
return &this->current_graph.software_audio[nid]; return &this->current_graph.software_audio[nid];
else if (p.format.find("midi") != p.format.npos) else if (p.format.find("midi") != p.format.npos)
return &this->current_graph.software_midi[nid]; return &this->current_graph.software_midi[nid];
else if (p.format.find("UMP") != p.format.npos)
return &this->current_graph.software_midi[nid];
} }
return nullptr; return nullptr;
}; };
@@ -453,12 +458,12 @@ struct pipewire_filter
}* port{}; }* port{};
explicit pipewire_filter(std::shared_ptr<pipewire_context> loop) explicit pipewire_filter(std::shared_ptr<pipewire_context> loop)
: loop{loop} : loop{std::move(loop)}
{ {
} }
explicit pipewire_filter(std::shared_ptr<pipewire_context> loop, pw_filter* filter) explicit pipewire_filter(std::shared_ptr<pipewire_context> loop, pw_filter* filter)
: loop{loop} : loop{std::move(loop)}
, filter{filter} , filter{filter}
{ {
} }
@@ -476,7 +481,7 @@ struct pipewire_filter
PW_KEY_MEDIA_TYPE, "Midi", PW_KEY_MEDIA_TYPE, "Midi",
PW_KEY_MEDIA_CATEGORY, "Filter", PW_KEY_MEDIA_CATEGORY, "Filter",
PW_KEY_MEDIA_ROLE, "DSP", PW_KEY_MEDIA_ROLE, "DSP",
PW_KEY_MEDIA_NAME, "libremidi", PW_KEY_MEDIA_NAME, "",
#if defined(PW_KEY_NODE_LOCK_RATE) #if defined(PW_KEY_NODE_LOCK_RATE)
PW_KEY_NODE_LOCK_RATE, "true", PW_KEY_NODE_LOCK_RATE, "true",
#endif #endif
@@ -498,7 +503,8 @@ struct pipewire_filter
pw.filter_destroy(this->filter); pw.filter_destroy(this->filter);
} }
void create_local_port(std::string_view port_name, spa_direction direction) stdx::error
create_local_port(std::string_view port_name, spa_direction direction, const char* format)
{ {
// clang-format off // clang-format off
this->port = (struct port*)pw.filter_add_port( this->port = (struct port*)pw.filter_add_port(
@@ -507,15 +513,17 @@ struct pipewire_filter
PW_FILTER_PORT_FLAG_MAP_BUFFERS, PW_FILTER_PORT_FLAG_MAP_BUFFERS,
sizeof(struct port), sizeof(struct port),
pw.properties_new( pw.properties_new(
PW_KEY_FORMAT_DSP, "8 bit raw midi", PW_KEY_FORMAT_DSP, format,
PW_KEY_PORT_NAME, port_name.data(), PW_KEY_PORT_NAME, port_name.data(),
nullptr), nullptr),
nullptr, 0); nullptr, 0);
// clang-format on // clang-format on
assert(port); if (!port)
return std::errc::invalid_argument;
return stdx::error{};
} }
void set_port_buffer(int bytes) void set_port_buffer(int64_t bytes)
{ {
uint8_t buffer[1024]; uint8_t buffer[1024];
struct spa_pod_builder builder; struct spa_pod_builder builder;
@@ -537,31 +545,41 @@ struct pipewire_filter
pw.filter_update_params(this->filter, this->port, params, 1); pw.filter_update_params(this->filter, this->port, params, 1);
} }
void remove_port() stdx::error remove_port()
{ {
assert(this->port); assert(this->port);
pw.filter_remove_port(this->port); int ret = pw.filter_remove_port(this->port);
this->port = nullptr; this->port = nullptr;
return from_errc(ret);
} }
void rename_port(std::string_view port_name) stdx::error rename_port(std::string_view port_name)
{ {
assert(this->port); if (this->port)
spa_dict_item items[1] = {
SPA_DICT_ITEM_INIT(PW_KEY_PORT_NAME, port_name.data()),
};
auto properties = SPA_DICT_INIT(items, 1);
pw.filter_update_properties(this->filter, this->port, &properties);
this->port = nullptr;
}
void start_filter()
{
if (pw.filter_connect(this->filter, PW_FILTER_FLAG_RT_PROCESS, NULL, 0) < 0)
{ {
std::cerr << "can't connect\n"; spa_dict_item items[1] = {
return; SPA_DICT_ITEM_INIT(PW_KEY_PORT_NAME, port_name.data()),
};
auto properties = SPA_DICT_INIT(items, 1);
int ret = pw.filter_update_properties(this->filter, this->port, &properties);
return from_errc(ret);
}
else
{
return std::errc::not_connected;
}
}
[[nodiscard]] stdx::error start_filter()
{
if (int ret = pw.filter_connect(this->filter, PW_FILTER_FLAG_RT_PROCESS, NULL, 0); ret < 0)
{
return from_errc(ret);
}
else
{
return stdx::error{};
} }
} }
+81 -69
View File
@@ -2,14 +2,13 @@
#include <libremidi/backends/linux/helpers.hpp> #include <libremidi/backends/linux/helpers.hpp>
#include <libremidi/backends/linux/pipewire.hpp> #include <libremidi/backends/linux/pipewire.hpp>
#include <libremidi/backends/pipewire/config.hpp>
#include <libremidi/backends/pipewire/context.hpp> #include <libremidi/backends/pipewire/context.hpp>
#include <libremidi/detail/memory.hpp> #include <libremidi/detail/memory.hpp>
#include <libremidi/detail/midi_in.hpp> #include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/semaphore.hpp> #include <libremidi/detail/semaphore.hpp>
#include <atomic> #include <atomic>
#include <semaphore>
#include <stop_token>
#include <thread> #include <thread>
namespace libremidi namespace libremidi
@@ -55,24 +54,24 @@ struct pipewire_helpers
} }
template <typename Self> template <typename Self>
void create_filter(Self& self) stdx::error create_filter(Self& self)
{ {
if (this->filter) if (this->filter)
return; return stdx::error{};
auto& configuration = self.configuration; auto& configuration = self.configuration;
if (configuration.context && configuration.filter && configuration.set_process_func) if (configuration.context && configuration.filter && configuration.set_process_func)
{ {
this->filter = std::make_unique<pipewire_filter>(this->global_context, configuration.filter); this->filter = std::make_unique<pipewire_filter>(this->global_context, configuration.filter);
pipewire_callback cbs{ libremidi::pipewire_callback cbs{
.token = this_instance, .token = this_instance,
.callback = [&self, p = std::weak_ptr{canary}](spa_io_position* nf) -> void { .callback = [&self, p = std::weak_ptr{canary}](spa_io_position* nf) -> void {
if (auto pt = p.lock()) if (auto pt = p.lock())
self.process(nf); self.process(nf);
self.thread_lock.check_client_released(); self.thread_lock.check_client_released();
}}; }};
configuration.set_process_func(cbs); configuration.set_process_func(cbs);
} }
else else
@@ -90,8 +89,9 @@ struct pipewire_helpers
#pragma GCC diagnostic pop #pragma GCC diagnostic pop
this->filter->create_filter(self.configuration.client_name, filter_events, &self); this->filter->create_filter(self.configuration.client_name, filter_events, &self);
this->filter->start_filter(); return this->filter->start_filter();
} }
return stdx::error{};
} }
template <typename Self> template <typename Self>
@@ -117,10 +117,10 @@ struct pipewire_helpers
} }
template <typename Self> template <typename Self>
int create_context(Self& self) stdx::error create_context(Self& self)
{ {
if (this->global_context) if (this->global_context)
return 0; return stdx::error{};
// Initialize PipeWire client // Initialize PipeWire client
auto& configuration = self.configuration; auto& configuration = self.configuration;
@@ -133,7 +133,10 @@ struct pipewire_helpers
this->global_instance = std::make_shared<pipewire_instance>(); this->global_instance = std::make_shared<pipewire_instance>();
this->global_context = std::make_shared<pipewire_context>(this->global_instance); this->global_context = std::make_shared<pipewire_context>(this->global_instance);
} }
return 0; if (!this->global_context->main_loop)
return std::errc::connection_refused;
return stdx::error{};
} }
void destroy_context() void destroy_context()
@@ -170,7 +173,9 @@ struct pipewire_helpers
{ {
int result = pw_loop_iterate(lp, 0); int result = pw_loop_iterate(lp, 0);
if (result < 0) if (result < 0)
std::cerr << "pw_loop_iterate: " << spa_strerror(result) << "\n"; {
LIBREMIDI_LOG(spa_strerror(result));
}
} }
fds[0].revents = 0; fds[0].revents = 0;
} }
@@ -190,7 +195,8 @@ struct pipewire_helpers
} }
template <typename Self> template <typename Self>
bool create_local_port(Self& self, std::string_view portName, spa_direction direction) stdx::error create_local_port(
Self& self, std::string_view portName, spa_direction direction, const char* format)
{ {
assert(this->global_context); assert(this->global_context);
assert(this->filter); assert(this->filter);
@@ -200,22 +206,22 @@ struct pipewire_helpers
if (!this->filter->port) if (!this->filter->port)
{ {
this->filter->create_local_port(portName.data(), direction); auto ret = this->filter->create_local_port(portName.data(), direction, format);
if (ret != stdx::error{})
{
self.libremidi_handle_error(self.configuration, "error creating port");
return ret;
}
} }
if (!this->filter->port) return stdx::error{};
{
self.template error<driver_error>(self.configuration, "PipeWire: error creating port");
return false;
}
return true;
} }
void add_callbacks(const observer_configuration& conf) void add_callbacks(std::string format, const observer_configuration& conf)
{ {
assert(global_context); assert(global_context);
global_context->on_port_added = [&conf](const pipewire_context::port_info& port) { global_context->on_port_added = [format, &conf](const pipewire_context::port_info& port) {
if (port.format.find("midi") == std::string::npos) if (port.format.find(format) == std::string::npos)
return; return;
bool unfiltered = conf.track_any; bool unfiltered = conf.track_any;
@@ -236,8 +242,8 @@ struct pipewire_helpers
} }
}; };
global_context->on_port_removed = [&conf](const pipewire_context::port_info& port) { global_context->on_port_removed = [format, &conf](const pipewire_context::port_info& port) {
if (port.format.find("midi") == std::string::npos) if (port.format.find(format) == std::string::npos)
return; return;
bool unfiltered = conf.track_any; bool unfiltered = conf.track_any;
@@ -293,12 +299,12 @@ struct pipewire_helpers
} }
} }
void do_close_port() stdx::error do_close_port()
{ {
if (!this->filter) if (!this->filter)
return; return stdx::error{};
if (!this->filter->port) if (!this->filter->port)
return; return stdx::error{};
if (!this->global_context->owns_main_loop) if (!this->global_context->owns_main_loop)
{ {
@@ -307,13 +313,19 @@ struct pipewire_helpers
} }
unlink_ports(); unlink_ports();
this->filter->remove_port(); return this->filter->remove_port();
} }
void rename_port(std::string_view port_name) stdx::error rename_port(std::string_view port_name)
{ {
if (this->filter) if (this->filter)
this->filter->rename_port(port_name); {
return this->filter->rename_port(port_name);
}
else
{
return std::errc::not_connected;
}
} }
void unlink_ports() void unlink_ports()
@@ -325,7 +337,7 @@ struct pipewire_helpers
} }
} }
bool link_ports(auto& self, const input_port& in_port) stdx::error link_ports(auto& self, const input_port& in_port)
{ {
// Wait for the pipewire server to send us back our node's info // Wait for the pipewire server to send us back our node's info
for (int i = 0; i < 1000; i++) for (int i = 0; i < 1000; i++)
@@ -335,19 +347,13 @@ struct pipewire_helpers
auto& midi = this->global_context->current_graph.software_midi; auto& midi = this->global_context->current_graph.software_midi;
auto node_it = midi.find(this_node); auto node_it = midi.find(this_node);
if (node_it == midi.end()) if (node_it == midi.end())
{ return std::errc::invalid_argument;
std::cerr << "Node " << this_node << " not found! \n";
return false;
}
// Wait for the pipewire server to send us back our node's ports // Wait for the pipewire server to send us back our node's ports
this->filter->synchronize_ports(node_it->second); this->filter->synchronize_ports(node_it->second);
if (node_it->second.inputs.empty()) if (node_it->second.inputs.empty())
{ return std::errc::no_link;
std::cerr << "Node " << this_node << " has no ports! \n";
return false;
}
// Link ports // Link ports
const auto& p = node_it->second.inputs.front(); const auto& p = node_it->second.inputs.front();
@@ -355,16 +361,16 @@ struct pipewire_helpers
pw_loop_iterate(this->global_context->lp, 1); pw_loop_iterate(this->global_context->lp, 1);
if (!link) if (!link)
{ {
self.template error<invalid_parameter_error>( self.libremidi_handle_error(
self.configuration, self.configuration,
"PipeWire: could not connect to port: " + in_port.port_name + " -> " + p.port_name); "could not connect to port: " + in_port.port_name + " -> " + p.port_name);
return false; return std::errc::no_link;
} }
return true; return stdx::error{};
} }
bool link_ports(auto& self, const output_port& out_port) stdx::error link_ports(auto& self, const output_port& out_port)
{ {
// Wait for the pipewire server to send us back our node's info // Wait for the pipewire server to send us back our node's info
for (int i = 0; i < 1000; i++) for (int i = 0; i < 1000; i++)
@@ -375,8 +381,7 @@ struct pipewire_helpers
auto node_it = midi.find(this_node); auto node_it = midi.find(this_node);
if (node_it == midi.end()) if (node_it == midi.end())
{ {
std::cerr << "Node " << this_node << " not found! \n"; return std::errc::invalid_argument;
return false;
} }
// Wait for the pipewire server to send us back our node's ports // Wait for the pipewire server to send us back our node's ports
@@ -384,8 +389,7 @@ struct pipewire_helpers
if (node_it->second.outputs.empty()) if (node_it->second.outputs.empty())
{ {
std::cerr << "Node " << this_node << " has no ports! \n"; return std::errc::no_link;
return false;
} }
// Link ports // Link ports
@@ -394,13 +398,13 @@ struct pipewire_helpers
pw_loop_iterate(this->global_context->lp, 1); pw_loop_iterate(this->global_context->lp, 1);
if (!link) if (!link)
{ {
self.template error<invalid_parameter_error>( self.libremidi_handle_error(
self.configuration, self.configuration,
"PipeWire: could not connect to port: " + p.port_name + " -> " + out_port.port_name); "could not connect to port: " + p.port_name + " -> " + out_port.port_name);
return false; return std::errc::no_link;
} }
return true; return stdx::error{};
} }
template <spa_direction Direction> template <spa_direction Direction>
@@ -432,30 +436,38 @@ struct pipewire_helpers
// Note: keep in mind that an "input" port for us (e.g. a keyboard that goes to the computer) // Note: keep in mind that an "input" port for us (e.g. a keyboard that goes to the computer)
// is an "output" port from the point of view of pipewire as data will come out of it // is an "output" port from the point of view of pipewire as data will come out of it
template <spa_direction Direction> template <spa_direction Direction>
static auto get_ports(const pipewire_context& ctx) noexcept -> std::vector< static auto get_ports(
std::conditional_t<Direction == SPA_DIRECTION_OUTPUT, input_port, output_port>> std::string_view format, const observer_configuration& conf,
const pipewire_context& ctx) noexcept
-> std::vector<
std::conditional_t<Direction == SPA_DIRECTION_OUTPUT, input_port, output_port>>
{ {
std::vector<std::conditional_t<Direction == SPA_DIRECTION_OUTPUT, input_port, output_port>> std::vector<std::conditional_t<Direction == SPA_DIRECTION_OUTPUT, input_port, output_port>>
ret; ret;
{ {
std::lock_guard _{ctx.current_graph.mtx}; std::lock_guard _{ctx.current_graph.mtx};
for (auto& node : ctx.current_graph.physical_midi) if (conf.track_any || conf.track_hardware)
{ for (auto& node : ctx.current_graph.physical_midi)
for (auto& p :
(Direction == SPA_DIRECTION_INPUT ? node.second.inputs : node.second.outputs))
{ {
ret.push_back(to_port_info<Direction>(p)); for (auto& port :
(Direction == SPA_DIRECTION_INPUT ? node.second.inputs : node.second.outputs))
{
if (port.format.find(format) != std::string::npos)
ret.push_back(to_port_info<Direction>(port));
}
} }
}
for (auto& node : ctx.current_graph.software_midi) if (conf.track_any || conf.track_virtual)
{ for (auto& node : ctx.current_graph.software_midi)
for (auto& p :
(Direction == SPA_DIRECTION_INPUT ? node.second.inputs : node.second.outputs))
{ {
ret.push_back(to_port_info<Direction>(p)); for (auto& port :
(Direction == SPA_DIRECTION_INPUT ? node.second.inputs : node.second.outputs))
{
if (port.format.find(format) != std::string::npos)
ret.push_back(to_port_info<Direction>(port));
}
} }
}
} }
return ret; return ret;
+30 -22
View File
@@ -4,8 +4,6 @@
#include <libremidi/detail/midi_in.hpp> #include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp> #include <libremidi/detail/midi_stream_decoder.hpp>
#include <chrono>
namespace libremidi namespace libremidi
{ {
class midi_in_pipewire final class midi_in_pipewire final
@@ -23,8 +21,17 @@ public:
explicit midi_in_pipewire(input_configuration&& conf, pipewire_input_configuration&& apiconf) explicit midi_in_pipewire(input_configuration&& conf, pipewire_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
create_context(*this); if (auto ret = create_context(*this); ret != stdx::error{})
create_filter(*this); {
client_open_ = ret;
return;
}
if (auto ret = create_filter(*this); ret != stdx::error{})
{
client_open_ = ret;
return;
}
client_open_ = stdx::error{};
} }
~midi_in_pipewire() override ~midi_in_pipewire() override
@@ -33,43 +40,44 @@ public:
do_close_port(); do_close_port();
destroy_filter(*this); destroy_filter(*this);
destroy_context(); destroy_context();
} client_open_ = std::errc::not_connected;
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_pipewire: set_client_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE; } libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE; }
bool open_port(const input_port& in_port, std::string_view name) override stdx::error open_port(const input_port& in_port, std::string_view name) override
{ {
if (!create_local_port(*this, name, SPA_DIRECTION_INPUT)) if (auto err = create_local_port(*this, name, SPA_DIRECTION_INPUT, "8 bit raw midi");
return false; err != stdx::error{})
return err;
if (!link_ports(*this, in_port)) if (auto err = link_ports(*this, in_port); err != stdx::error{})
return false; return err;
start_thread(); start_thread();
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view name) override stdx::error open_virtual_port(std::string_view name) override
{ {
if (!create_local_port(*this, name, SPA_DIRECTION_INPUT)) if (auto err = create_local_port(*this, name, SPA_DIRECTION_INPUT, "8 bit raw midi");
return false; err != stdx::error{})
return err;
start_thread(); start_thread();
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
stop_thread(); stop_thread();
do_close_port(); return do_close_port();
} }
void set_port_name(std::string_view port_name) override { rename_port(port_name); } stdx::error set_port_name(std::string_view port_name) override
{
return rename_port(port_name);
}
timestamp absolute_timestamp() const noexcept override { return system_ns(); } timestamp absolute_timestamp() const noexcept override { return system_ns(); }
@@ -5,8 +5,6 @@
#include <readerwriterqueue.h> #include <readerwriterqueue.h>
#include <semaphore>
namespace libremidi namespace libremidi
{ {
class midi_out_pipewire class midi_out_pipewire
@@ -24,8 +22,17 @@ public:
midi_out_pipewire(output_configuration&& conf, pipewire_output_configuration&& apiconf) midi_out_pipewire(output_configuration&& conf, pipewire_output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
create_context(*this); if (auto ret = create_context(*this); ret != stdx::error{})
create_filter(*this); {
client_open_ = ret;
return;
}
if (auto ret = create_filter(*this); ret != stdx::error{})
{
client_open_ = ret;
return;
}
client_open_ = stdx::error{};
} }
~midi_out_pipewire() override ~midi_out_pipewire() override
@@ -34,47 +41,48 @@ public:
do_close_port(); do_close_port();
destroy_filter(*this); destroy_filter(*this);
destroy_context(); destroy_context();
} client_open_ = std::errc::not_connected;
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_pipewire: set_client_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE; } libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE; }
bool open_port(const output_port& out_port, std::string_view name) override stdx::error open_port(const output_port& out_port, std::string_view name) override
{ {
if (!create_local_port(*this, name, SPA_DIRECTION_OUTPUT)) if (auto err = create_local_port(*this, name, SPA_DIRECTION_OUTPUT, "8 bit raw midi");
return false; err != stdx::error{})
return err;
this->filter->set_port_buffer(configuration.output_buffer_size); this->filter->set_port_buffer(configuration.output_buffer_size);
if (!link_ports(*this, out_port)) if (auto err = link_ports(*this, out_port); err != stdx::error{})
return false; return err;
start_thread(); start_thread();
return true; return stdx::error{};
} }
bool open_virtual_port(std::string_view name) override stdx::error open_virtual_port(std::string_view name) override
{ {
if (!create_local_port(*this, name, SPA_DIRECTION_OUTPUT)) if (auto err = create_local_port(*this, name, SPA_DIRECTION_OUTPUT, "8 bit raw midi");
return false; err != stdx::error{})
return err;
this->filter->set_port_buffer(configuration.output_buffer_size); this->filter->set_port_buffer(configuration.output_buffer_size);
start_thread(); start_thread();
return true; return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
stop_thread(); stop_thread();
do_close_port(); return do_close_port();
} }
void set_port_name(std::string_view port_name) override { rename_port(port_name); } stdx::error set_port_name(std::string_view port_name) override
{
return rename_port(port_name);
}
int process(spa_io_position* pos) int process(spa_io_position* pos)
{ {
@@ -113,13 +121,16 @@ public:
continue; continue;
} }
spa_pod_builder_control(&build, m.timestamp, SPA_CONTROL_Midi); spa_pod_builder_control(&build, static_cast<int32_t>(m.timestamp), SPA_CONTROL_Midi);
int res = spa_pod_builder_bytes(&build, m.bytes.data(), m.bytes.size()); int res
= spa_pod_builder_bytes(&build, m.bytes.data(), static_cast<uint32_t>(m.bytes.size()));
// Try again next buffer // Try again next buffer
if (res == -ENOSPC) if (res == -ENOSPC)
break; break;
// Recycle the memory
m_gcqueue.enqueue(std::move(m));
m_queue.pop(); m_queue.pop();
} }
spa_pod_builder_pop(&build, &f); spa_pod_builder_pop(&build, &f);
@@ -141,9 +152,14 @@ public:
return 0; return 0;
} }
void send_message(const unsigned char* message, size_t size) override stdx::error send_message(const unsigned char* message, size_t size) override
{ {
m_queue.enqueue(libremidi::message(midi_bytes{message, message + size}, 0)); libremidi::message m;
m_gcqueue.try_dequeue(m);
m.bytes.assign(message, message + size);
m.timestamp = 0;
m_queue.enqueue(std::move(m));
return stdx::error{};
} }
int convert_timestamp(int64_t user) const noexcept int convert_timestamp(int64_t user) const noexcept
@@ -159,13 +175,15 @@ public:
} }
} }
void schedule_message(int64_t ts, const unsigned char* message, size_t size) override stdx::error schedule_message(int64_t ts, const unsigned char* message, size_t size) override
{ {
m_queue.enqueue( m_queue.enqueue(
libremidi::message(midi_bytes{message, message + size}, convert_timestamp(ts))); libremidi::message(midi_bytes{message, message + size}, convert_timestamp(ts)));
return stdx::error{};
} }
moodycamel::ReaderWriterQueue<libremidi::message> m_queue; moodycamel::ReaderWriterQueue<libremidi::message> m_queue;
moodycamel::ReaderWriterQueue<libremidi::message> m_gcqueue;
std::atomic_int64_t m_process_clock = 0; std::atomic_int64_t m_process_clock = 0;
}; };
} }
@@ -24,48 +24,40 @@ public:
{ {
create_context(*this); create_context(*this);
// FIXME notify_in_constructor
// FIXME port rename callback // FIXME port rename callback
#if 0
// Initialize PipeWire client
if (configuration.context)
{ {
this->client = configuration.context; this->add_callbacks("midi", configuration);
set_callbacks();
}
else
#endif
{
this->add_callbacks(configuration);
this->start_thread(); this->start_thread();
} }
if (configuration.notify_in_constructor)
{
if (configuration.input_added)
for (const auto& p : get_input_ports())
configuration.input_added(p);
if (configuration.output_added)
for (const auto& p : get_output_ports())
configuration.output_added(p);
}
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE; } libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE; }
std::vector<libremidi::input_port> get_input_ports() const noexcept override std::vector<libremidi::input_port> get_input_ports() const noexcept override
{ {
return get_ports<SPA_DIRECTION_OUTPUT>(*this->global_context); return get_ports<SPA_DIRECTION_OUTPUT>("midi", this->configuration, *this->global_context);
} }
std::vector<libremidi::output_port> get_output_ports() const noexcept override std::vector<libremidi::output_port> get_output_ports() const noexcept override
{ {
return get_ports<SPA_DIRECTION_INPUT>(*this->global_context); return get_ports<SPA_DIRECTION_INPUT>("midi", this->configuration, *this->global_context);
} }
~observer_pipewire() ~observer_pipewire()
{ {
stop_thread(); stop_thread();
destroy_context(); destroy_context();
#if 0
if (client && !configuration.context)
{
// If we own the client, deactivate it
pipewire_deactivate(this->client);
pipewire_client_close(this->client);
this->client = nullptr;
}
#endif
} }
std::unordered_set<std::string> seen_input_ports; std::unordered_set<std::string> seen_input_ports;
@@ -0,0 +1,39 @@
#pragma once
#include <libremidi/backends/dummy.hpp>
#include <libremidi/backends/linux/pipewire.hpp>
#include <libremidi/backends/pipewire_ump/config.hpp>
#include <libremidi/backends/pipewire_ump/midi_in.hpp>
#include <libremidi/backends/pipewire_ump/midi_out.hpp>
#include <libremidi/backends/pipewire_ump/observer.hpp>
#include <string_view>
namespace libremidi::pipewire_ump
{
struct backend
{
using midi_in = libremidi::pipewire_ump::midi_in_pipewire;
using midi_out = libremidi::pipewire_ump::midi_out_pipewire;
using midi_observer = libremidi::pipewire_ump::observer_pipewire;
using midi_in_configuration = libremidi::pipewire_ump::input_configuration;
using midi_out_configuration = libremidi::pipewire_ump::output_configuration;
using midi_observer_configuration = libremidi::pipewire_ump::observer_configuration;
static const constexpr auto API = libremidi::API::PIPEWIRE_UMP;
static const constexpr std::string_view name = "pipewire_ump";
static const constexpr std::string_view display_name = "PipeWire (UMP)";
static inline bool available() noexcept
{
static const libpipewire& pw = libpipewire::instance();
if (!pw.available)
return false;
const std::string_view version = pw.get_library_version();
if (version.size() >= 3)
{
if (version[0] > '1' || version[2] >= '4')
return true;
}
return false;
}
};
}
@@ -0,0 +1,36 @@
#pragma once
#include <libremidi/backends/pipewire/config.hpp>
#include <libremidi/config.hpp>
namespace libremidi::pipewire_ump
{
struct input_configuration
{
std::string client_name = "libremidi client";
pw_main_loop* context{};
pw_filter* filter{};
std::function<void(libremidi::pipewire_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func{};
};
struct output_configuration
{
std::string client_name = "libremidi client";
pw_main_loop* context{};
pw_filter* filter{};
std::function<void(libremidi::pipewire_callback)> set_process_func{};
std::function<void(int64_t)> clear_process_func{};
int64_t output_buffer_size{65536};
};
struct observer_configuration
{
std::string client_name = "libremidi client";
pw_main_loop* context{};
};
}
@@ -0,0 +1,135 @@
#pragma once
#include <libremidi/backends/pipewire/helpers.hpp>
#include <libremidi/backends/pipewire_ump/config.hpp>
#include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
namespace libremidi::pipewire_ump
{
class midi_in_pipewire final
: public midi2::in_api
, public pipewire_helpers
, public error_handler
{
public:
struct
: ump_input_configuration
, libremidi::pipewire_ump::input_configuration
{
} configuration;
explicit midi_in_pipewire(
ump_input_configuration&& conf, libremidi::pipewire_ump::input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
if (auto ret = create_context(*this); ret != stdx::error{})
{
client_open_ = ret;
return;
}
if (auto ret = create_filter(*this); ret != stdx::error{})
{
client_open_ = ret;
return;
}
client_open_ = stdx::error{};
}
~midi_in_pipewire() override
{
stop_thread();
do_close_port();
destroy_filter(*this);
destroy_context();
client_open_ = std::errc::not_connected;
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE_UMP; }
stdx::error open_port(const input_port& in_port, std::string_view name) override
{
if (auto err = create_local_port(*this, name, SPA_DIRECTION_INPUT, "32 bit raw UMP");
err != stdx::error{})
return err;
if (auto err = link_ports(*this, in_port); err != stdx::error{})
return err;
start_thread();
return stdx::error{};
}
stdx::error open_virtual_port(std::string_view name) override
{
if (auto err = create_local_port(*this, name, SPA_DIRECTION_INPUT, "32 bit raw UMP");
err != stdx::error{})
return err;
start_thread();
return stdx::error{};
}
stdx::error close_port() override
{
stop_thread();
return do_close_port();
}
stdx::error set_port_name(std::string_view port_name) override
{
return rename_port(port_name);
}
timestamp absolute_timestamp() const noexcept override { return system_ns(); }
void process(struct spa_io_position* position)
{
static constexpr timestamp_backend_info timestamp_info{
.has_absolute_timestamps = true,
.absolute_is_monotonic = true,
.has_samples = true,
};
assert(this->filter);
assert(this->filter->port);
const auto b = pw.filter_dequeue_buffer(this->filter->port);
if (!b)
return;
const auto buf = b->buffer;
const auto d = &buf->datas[0];
if (d->data == nullptr)
return;
const auto pod
= (spa_pod*)spa_pod_from_data(d->data, d->maxsize, d->chunk->offset, d->chunk->size);
if (!pod)
return;
if (!spa_pod_is_sequence(pod))
return;
struct spa_pod_control* c{};
SPA_POD_SEQUENCE_FOREACH((struct spa_pod_sequence*)pod, c)
{
if (c->type != SPA_CONTROL_UMP)
continue;
auto data = (uint8_t*)SPA_POD_BODY(&c->value);
auto size = SPA_POD_BODY_SIZE(&c->value);
const auto to_ns = [=, clk = position->clock] {
return 1e9 * ((clk.position + c->offset) / (double)clk.rate.denom);
};
m_processing.on_bytes(
{(uint32_t*)data, (uint32_t*)(data + size)},
m_processing.timestamp<timestamp_info>(to_ns, c->offset));
}
pw.filter_queue_buffer(this->filter->port, b);
}
midi2::input_state_machine m_processing{this->configuration};
};
}
@@ -0,0 +1,185 @@
#pragma once
#include <libremidi/backends/pipewire/helpers.hpp>
#include <libremidi/backends/pipewire_ump/config.hpp>
#include <libremidi/detail/midi_out.hpp>
#include <readerwriterqueue.h>
namespace libremidi::pipewire_ump
{
class midi_out_pipewire
: public midi2::out_api
, public pipewire_helpers
, public error_handler
{
public:
struct
: libremidi::output_configuration
, libremidi::pipewire_ump::output_configuration
{
} configuration;
midi_out_pipewire(
libremidi::output_configuration&& conf,
libremidi::pipewire_ump::output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
if (auto ret = create_context(*this); ret != stdx::error{})
{
client_open_ = ret;
return;
}
if (auto ret = create_filter(*this); ret != stdx::error{})
{
client_open_ = ret;
return;
}
client_open_ = stdx::error{};
}
~midi_out_pipewire() override
{
stop_thread();
do_close_port();
destroy_filter(*this);
destroy_context();
client_open_ = std::errc::not_connected;
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE_UMP; }
stdx::error open_port(const output_port& out_port, std::string_view name) override
{
if (auto err = create_local_port(*this, name, SPA_DIRECTION_OUTPUT, "32 bit raw UMP");
err != stdx::error{})
return err;
this->filter->set_port_buffer(configuration.output_buffer_size);
if (auto err = link_ports(*this, out_port); err != stdx::error{})
return err;
start_thread();
return stdx::error{};
}
stdx::error open_virtual_port(std::string_view name) override
{
if (auto err = create_local_port(*this, name, SPA_DIRECTION_OUTPUT, "32 bit raw UMP");
err != stdx::error{})
return err;
this->filter->set_port_buffer(configuration.output_buffer_size);
start_thread();
return stdx::error{};
}
stdx::error close_port() override
{
stop_thread();
return do_close_port();
}
stdx::error set_port_name(std::string_view port_name) override
{
return rename_port(port_name);
}
int process(spa_io_position* pos)
{
m_process_clock.store(pos->clock.nsec, std::memory_order_relaxed);
const auto b = pw.filter_dequeue_buffer(this->filter->port);
if (!b)
return 1;
const auto buf = b->buffer;
const auto d = &buf->datas[0];
if (d->data == nullptr)
return 1;
spa_pod_builder build;
spa_zero(build);
spa_pod_builder_init(&build, d->data, d->maxsize);
spa_pod_frame f;
spa_pod_builder_push_sequence(&build, &f, 0);
// for all events
while (auto m_ptr = m_queue.peek())
{
auto& m = *m_ptr;
spa_pod_builder_control(&build, static_cast<int32_t>(m.timestamp), SPA_CONTROL_UMP);
int res = spa_pod_builder_bytes(&build, m.data, cmidi2_ump_get_message_size_bytes(m.data));
// Try again next buffer
if (res == -ENOSPC)
break;
// Recycle the memory
m_queue.pop();
}
spa_pod_builder_pop(&build, &f);
int n_fill_frames = build.state.offset;
if (n_fill_frames > 0)
{
d->chunk->offset = 0;
d->chunk->stride = 1;
d->chunk->size = n_fill_frames;
b->size = n_fill_frames;
pw.filter_queue_buffer(this->filter->port, b);
return 0;
}
pw.filter_flush(this->filter->filter, true);
return 0;
}
stdx::error send_ump(const uint32_t* message, size_t size) override
{
// FIXME
if (size > 4)
return std::errc::message_size;
libremidi::ump m;
std::copy_n(message, size, m.data);
m.timestamp = 0;
m_queue.enqueue(std::move(m));
return stdx::error{};
}
int convert_timestamp(int64_t user) const noexcept
{
switch (configuration.timestamps)
{
case timestamp_mode::AudioFrame:
return static_cast<int>(user);
default:
// TODO
return 0;
}
}
stdx::error schedule_ump(int64_t ts, const uint32_t* message, size_t size) override
{
// FIXME
if (size > 4)
return std::errc::message_size;
libremidi::ump m;
std::copy_n(message, size, m.data);
m.timestamp = convert_timestamp(ts);
m_queue.enqueue(std::move(m)); // FIXME actually send them scheudled
return stdx::error{};
}
moodycamel::ReaderWriterQueue<libremidi::ump> m_queue;
std::atomic_int64_t m_process_clock = 0;
};
}
@@ -0,0 +1,68 @@
#pragma once
#include <libremidi/backends/pipewire/helpers.hpp>
#include <libremidi/backends/pipewire_ump/config.hpp>
#include <libremidi/detail/observer.hpp>
#include <unordered_set>
namespace libremidi::pipewire_ump
{
class observer_pipewire final
: public observer_api
, private pipewire_helpers
, private error_handler
{
public:
struct
: libremidi::observer_configuration
, libremidi::pipewire_ump::observer_configuration
{
} configuration;
explicit observer_pipewire(
libremidi::observer_configuration&& conf,
libremidi::pipewire_ump::observer_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)}
{
create_context(*this);
// FIXME port rename callback
{
this->add_callbacks("UMP", configuration);
this->start_thread();
}
if (configuration.notify_in_constructor)
{
if (configuration.input_added)
for (const auto& p : get_input_ports())
configuration.input_added(p);
if (configuration.output_added)
for (const auto& p : get_output_ports())
configuration.output_added(p);
}
}
libremidi::API get_current_api() const noexcept override { return libremidi::API::PIPEWIRE_UMP; }
std::vector<libremidi::input_port> get_input_ports() const noexcept override
{
return get_ports<SPA_DIRECTION_OUTPUT>("UMP", this->configuration, *this->global_context);
}
std::vector<libremidi::output_port> get_output_ports() const noexcept override
{
return get_ports<SPA_DIRECTION_INPUT>("UMP", this->configuration, *this->global_context);
}
~observer_pipewire()
{
stop_thread();
destroy_context();
}
std::unordered_set<std::string> seen_input_ports;
std::unordered_set<std::string> seen_output_ports;
};
}
+4 -2
View File
@@ -3,6 +3,8 @@
#include <libremidi/backends/winmidi/midi_out.hpp> #include <libremidi/backends/winmidi/midi_out.hpp>
#include <libremidi/backends/winmidi/observer.hpp> #include <libremidi/backends/winmidi/observer.hpp>
#include <string_view>
namespace libremidi::winmidi namespace libremidi::winmidi
{ {
struct backend struct backend
@@ -14,8 +16,8 @@ struct backend
using midi_out_configuration = winmidi::output_configuration; using midi_out_configuration = winmidi::output_configuration;
using midi_observer_configuration = winmidi::observer_configuration; using midi_observer_configuration = winmidi::observer_configuration;
static const constexpr auto API = libremidi::API::WINDOWS_MIDI_SERVICES; static const constexpr auto API = libremidi::API::WINDOWS_MIDI_SERVICES;
static const constexpr auto name = "winmidi"; static const constexpr std::string_view name = "winmidi";
static const constexpr auto display_name = "Windows MIDI Services"; static const constexpr std::string_view display_name = "Windows MIDI Services";
static constexpr inline bool available() noexcept { return true; } static constexpr inline bool available() noexcept { return true; }
}; };
@@ -1,19 +1,34 @@
#pragma once #pragma once
#include <libremidi/config.hpp> #include <libremidi/config.hpp>
#include <string>
namespace winrt::Microsoft::Windows::Devices::Midi2
{
class MidiSession;
class MidiEndpointDeviceInformation;
class MidiEndpointConnection;
}
// TODO allow to share midi session and endpoints
namespace libremidi::winmidi namespace libremidi::winmidi
{ {
struct input_configuration struct input_configuration
{ {
std::string client_name = "libremidi input";
winrt::Microsoft::Windows::Devices::Midi2::MidiSession* context{};
}; };
struct output_configuration struct output_configuration
{ {
std::string client_name = "libremidi output";
winrt::Microsoft::Windows::Devices::Midi2::MidiSession* context{};
}; };
struct observer_configuration struct observer_configuration
{ {
std::string client_name = "libremidi observer";
}; };
} }
+74 -5
View File
@@ -3,25 +3,94 @@
#define NOMINMAX 1 #define NOMINMAX 1
#define WIN32_LEAN_AND_MEAN 1 #define WIN32_LEAN_AND_MEAN 1
#include <libremidi/detail/midi_api.hpp> #include <libremidi/detail/midi_api.hpp>
#include <libremidi/detail/memory.hpp>
#include <mutex> #include <cctype>
#include <string> #include <string>
#include <thread>
#include <vector>
#include <guiddef.h> #include <guiddef.h>
#include <winrt/Windows.Foundation.h> #include <winrt/Windows.Foundation.h>
#include <winrt/Windows.Foundation.Collections.h> #include <winrt/Windows.Foundation.Collections.h>
#include <winrt/Windows.Devices.Enumeration.h> #include <winrt/Windows.Devices.Enumeration.h>
#include <winrt/Microsoft.Windows.Devices.Midi2.h>
#include <libremidi/cmidi2.hpp>
#include <winrt/Microsoft.Devices.Midi2.h> // MinGW support
#if !defined(_MSC_VER)
namespace Microsoft::Windows::Devices::Midi2::Initialization
{
struct IMidiClientInitializer;
struct MidiClientInitializerUuid;
}
__CRT_UUID_DECL(Microsoft::Windows::Devices::Midi2::Initialization::IMidiClientInitializer,
0x8087b303, 0xd551, 0xbce2, 0x1e, 0xad, 0xa2, 0x50, 0x0d, 0x50, 0xc5, 0x80);
__CRT_UUID_DECL(Microsoft::Windows::Devices::Midi2::Initialization::MidiClientInitializerUuid,
0xc3263827, 0xc3b0, 0xbdbd, 0x25, 0x00, 0xce, 0x63, 0xa3, 0xf3, 0xf2, 0xc3);
#endif
#include <init/Microsoft.Windows.Devices.Midi2.Initialization.hpp>
// clang-format on // clang-format on
namespace midi2 = winrt::Microsoft::Windows::Devices::Midi2;
namespace foundation = winrt::Windows::Foundation;
namespace libremidi::winmidi namespace libremidi::winmidi
{ {
using namespace winrt; using namespace winrt;
using namespace winrt::Windows::Foundation; using namespace winrt::Windows::Foundation;
using namespace winrt::Windows::Devices::Enumeration; using namespace winrt::Windows::Devices::Enumeration;
using namespace winrt::Windows::Storage::Streams; using namespace winrt::Windows::Storage::Streams;
using namespace Microsoft::Devices::Midi2; using namespace winrt::Microsoft::Windows::Devices::Midi2;
using namespace Windows::Devices::Enumeration; using namespace Windows::Devices::Enumeration;
using namespace ::Microsoft::Windows::Devices::Midi2::Initialization;
inline bool ichar_equals(char a, char b)
{
return std::tolower(static_cast<unsigned char>(a)) ==
std::tolower(static_cast<unsigned char>(b));
}
inline bool iequals(std::string_view lhs, std::string_view rhs)
{
return std::ranges::equal(lhs, rhs, ichar_equals);
}
inline std::pair<
winrt::Microsoft::Windows::Devices::Midi2::MidiEndpointDeviceInformation,
winrt::Microsoft::Windows::Devices::Midi2::MidiGroupTerminalBlock>
get_port(const std::string& device_name, int group_terminal_block)
{
auto eps = MidiEndpointDeviceInformation::FindAll();
for (const auto& ep : eps)
{
auto str = to_string(ep.EndpointDeviceId());
if (str.empty())
continue;
if (iequals(str, device_name))
{
for (const auto& gp : ep.GetGroupTerminalBlocks())
{
if (gp.Number() == group_terminal_block)
{
return std::make_pair(ep, gp);
}
}
}
}
return {nullptr, nullptr};
}
struct winmidi_shared_data
{
std::shared_ptr<MidiDesktopAppSdkInitializer> initializer;
bool m_ready{false};
winmidi_shared_data()
: initializer{libremidi::instance<MidiDesktopAppSdkInitializer>()}
, m_ready{
initializer && initializer->InitializeSdkRuntime()
&& initializer->EnsureServiceAvailable()}
{
}
};
} }
+66 -46
View File
@@ -3,13 +3,14 @@
#include <libremidi/backends/winmidi/helpers.hpp> #include <libremidi/backends/winmidi/helpers.hpp>
#include <libremidi/backends/winmidi/observer.hpp> #include <libremidi/backends/winmidi/observer.hpp>
#include <libremidi/detail/midi_in.hpp> #include <libremidi/detail/midi_in.hpp>
#include <libremidi/detail/midi_stream_decoder.hpp>
namespace libremidi::winmidi namespace libremidi::winmidi
{ {
class midi_in_impl final class midi_in_impl final
: public midi2::in_api : public midi2::in_api
, public error_handler , public error_handler
, public winmidi_shared_data
{ {
public: public:
struct struct
@@ -21,23 +22,17 @@ public:
explicit midi_in_impl( explicit midi_in_impl(
libremidi::ump_input_configuration&& conf, winmidi::input_configuration&& apiconf) libremidi::ump_input_configuration&& conf, winmidi::input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
, m_session{
configuration.context ? *configuration.context
: MidiSession::Create(to_hstring(configuration.client_name))}
{ {
this->client_open_ = stdx::error{};
} }
~midi_in_impl() override { close_port(); } ~midi_in_impl() override
bool open_virtual_port(std::string_view) override
{ {
warning(configuration, "midi_in_winmidi: open_virtual_port unsupported"); close_port();
return false; this->client_open_ = std::errc::not_connected;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_winmidi: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_in_winmidi: set_port_name unsupported");
} }
libremidi::API get_current_api() const noexcept override libremidi::API get_current_api() const noexcept override
@@ -45,50 +40,75 @@ public:
return libremidi::API::WINDOWS_MIDI_SERVICES; return libremidi::API::WINDOWS_MIDI_SERVICES;
} }
bool open_port(const input_port& port, std::string_view) override stdx::error open_port(const input_port& port, std::string_view) override
{ {
#if 0 auto device_id = std::get_if<std::string>(&port.device);
const auto id = winrt::to_hstring(port.port_name); if (!device_id)
if (id.empty()) return std::errc::invalid_argument;
return false;
port_ = get(MidiInPort::FromIdAsync(id)); auto [ep, gp] = get_port(*device_id, port.port);
if (!port_) if (!ep || !gp)
return false; return std::errc::address_not_available;
port_.MessageReceived(
[=](const winrt::Windows::Devices::Midi::IMidiInPort& inputPort, m_group_filter = port.port - 1;
const winrt::Windows::Devices::Midi::MidiMessageReceivedEventArgs& args) {
this->process_message(args.Message()); // TODO use a MidiGroupEndpointListener for the filtering
m_endpoint = m_session.CreateEndpointConnection(ep.EndpointDeviceId());
m_revoke_token = m_endpoint.MessageReceived(
[this](
const winrt::Microsoft::Windows::Devices::Midi2::IMidiMessageReceivedEventSource&,
const winrt::Microsoft::Windows::Devices::Midi2::MidiMessageReceivedEventArgs& args) {
process_message(args);
}); });
#endif m_endpoint.Open();
return true;
return stdx::error{};
} }
#if 0 void process_message(const winrt::Microsoft::Windows::Devices::Midi2::MidiMessageReceivedEventArgs& msg)
void process_message(const winrt::Windows::Devices::Midi::IMidiMessage& msg)
{ {
auto reader = DataReader::FromBuffer(msg.RawData()); static constexpr timestamp_backend_info timestamp_info{
auto begin = msg.RawData().data(); .has_absolute_timestamps = true,
auto end = begin + msg.RawData().Length(); .absolute_is_monotonic = false,
.has_samples = false,
};
auto t = msg.Timestamp().count(); const auto& ump = msg.GetMessagePacket();
this->configuration.on_message(libremidi::message{{begin, end}, t}); auto pk = msg.PeekFirstWord();
} if (m_group_filter >= 0)
#endif
void close_port() override
{
#if 0
if (port_)
{ {
port_.Close(); int group = cmidi2_ump_get_group(&pk);
port_ = nullptr; if (group != m_group_filter)
return;
} }
#endif
const auto& b = ump.GetAllWords();
uint32_t ump_space[64];
array_view<uint32_t> ref{ump_space};
b.GetMany(0, ref);
auto to_ns = [t = ump.Timestamp()] { return t; };
m_processing.on_bytes(
{ump_space, ump_space + b.Size()}, m_processing.timestamp<timestamp_info>(to_ns, 0));
} }
stdx::error close_port() override
{
m_endpoint.MessageReceived(m_revoke_token);
m_session.DisconnectEndpointConnection(m_endpoint.ConnectionId());
return stdx::error{};
}
virtual timestamp absolute_timestamp() const noexcept override { return {}; }
private: private:
// winrt::Microsoft::Devices::Midi2::IMidiInPort port_{nullptr}; MidiSession m_session;
winrt::event_token m_revoke_token{};
winrt::Microsoft::Windows::Devices::Midi2::MidiEndpointConnection m_endpoint{nullptr};
midi2::input_state_machine m_processing{this->configuration};
int m_group_filter = -1;
}; };
} }
+49 -44
View File
@@ -1,4 +1,5 @@
#pragma once #pragma once
#include <libremidi/detail/ump_stream.hpp>
#include <libremidi/backends/winmidi/config.hpp> #include <libremidi/backends/winmidi/config.hpp>
#include <libremidi/backends/winmidi/helpers.hpp> #include <libremidi/backends/winmidi/helpers.hpp>
#include <libremidi/backends/winmidi/observer.hpp> #include <libremidi/backends/winmidi/observer.hpp>
@@ -10,6 +11,7 @@ namespace libremidi::winmidi
class midi_out_impl final class midi_out_impl final
: public midi2::out_api : public midi2::out_api
, public error_handler , public error_handler
, public winmidi_shared_data
{ {
public: public:
struct struct
@@ -20,72 +22,75 @@ public:
midi_out_impl(libremidi::output_configuration&& conf, winmidi::output_configuration&& apiconf) midi_out_impl(libremidi::output_configuration&& conf, winmidi::output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
, m_session{
configuration.context ? *configuration.context
: MidiSession::Create(to_hstring(configuration.client_name))}
{ {
this->client_open_ = stdx::error{};
} }
~midi_out_impl() override { close_port(); } ~midi_out_impl() override { close_port(); }
bool open_virtual_port(std::string_view) override
{
warning(configuration, "midi_out_winmidi: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_winmidi: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_out_winmidi: set_port_name unsupported");
}
libremidi::API get_current_api() const noexcept override libremidi::API get_current_api() const noexcept override
{ {
return libremidi::API::WINDOWS_MIDI_SERVICES; return libremidi::API::WINDOWS_MIDI_SERVICES;
} }
bool open_port(const output_port& port, std::string_view) override stdx::error open_port(const output_port& port, std::string_view) override
{ {
#if 0 auto device_id = std::get_if<std::string>(&port.device);
const auto id = winrt::to_hstring(port.port_name); if (!device_id)
if (id.empty()) return std::errc::invalid_argument;
return false;
port_ = get(MidiOutPort::FromIdAsync(id)); auto [ep, gp] = get_port(*device_id, port.port);
return bool(port_); if (!ep || !gp)
#endif return std::errc::address_not_available;
return true;
m_endpoint = m_session.CreateEndpointConnection(ep.EndpointDeviceId());
m_endpoint.Open();
return stdx::error{};
} }
void close_port() override stdx::error close_port() override
{ {
#if 0 m_session.DisconnectEndpointConnection(m_endpoint.ConnectionId());
if (port_) return stdx::error{};
{
port_.Close();
port_ = {};
}
#endif
} }
void send_ump(const uint32_t* message, size_t size) override stdx::error send_ump(const uint32_t* message, size_t size) override
{ {
#if 0 auto write_func = [this](const uint32_t* ump, int64_t bytes) -> std::errc {
if (!port_) MidiSendMessageResults ret{};
return; switch(bytes / 4)
{
case 1:
ret = m_endpoint.SendSingleMessagePacket(MidiMessage32(0, ump[0]));
break;
case 2:
ret = m_endpoint.SendSingleMessagePacket(MidiMessage64(0, ump[0], ump[1]));
break;
case 3:
ret = m_endpoint.SendSingleMessagePacket(MidiMessage96(0, ump[0], ump[1], ump[2]));
break;
case 4:
ret = m_endpoint.SendSingleMessagePacket(MidiMessage128(0, ump[0], ump[1], ump[2], ump[3]));
break;
default:
return std::errc::bad_message;
}
InMemoryRandomAccessStream str; if(ret != MidiSendMessageResults::Succeeded)
DataWriter rb(str); return std::errc::bad_message;
rb.WriteBytes( return std::errc{0};
winrt::array_view<const uint8_t>{(const uint8_t*)message, (const uint8_t*)message + size}); };
port_.SendBuffer(rb.DetachBuffer());
#endif return segment_ump_stream(message, size, write_func, []() {});
} }
private: private:
#if 0 MidiSession m_session;
winrt::Windows::Devices::Midi2::IMidiOutPort port_{nullptr}; winrt::Microsoft::Windows::Devices::Midi2::MidiEndpointConnection m_endpoint{nullptr};
#endif
}; };
} }
+188 -65
View File
@@ -2,7 +2,7 @@
#include <libremidi/backends/winmidi/config.hpp> #include <libremidi/backends/winmidi/config.hpp>
#include <libremidi/backends/winmidi/helpers.hpp> #include <libremidi/backends/winmidi/helpers.hpp>
#include <libremidi/detail/observer.hpp> #include <libremidi/detail/observer.hpp>
;
namespace libremidi::winmidi namespace libremidi::winmidi
{ {
struct port_info struct port_info
@@ -11,7 +11,9 @@ struct port_info
hstring name; hstring name;
}; };
class observer_impl final : public observer_api class observer_impl final
: public observer_api
, public winmidi_shared_data
{ {
public: public:
struct struct
@@ -20,13 +22,17 @@ public:
{ {
} configuration; } configuration;
MidiSession session; MidiEndpointDeviceWatcher watcher = nullptr;
MidiEndpointDeviceWatcher::Added_revoker m_addHandler;
MidiEndpointDeviceWatcher::Updated_revoker m_updHandler;
MidiEndpointDeviceWatcher::Removed_revoker m_delHandler;
std::map<hstring, std::vector<input_port>> m_known_input_devices;
std::map<hstring, std::vector<output_port>> m_known_output_devices;
std::mutex m_devices_mtx;
explicit observer_impl( explicit observer_impl(
libremidi::observer_configuration&& conf, winmidi::observer_configuration&& apiconf) libremidi::observer_configuration&& conf, winmidi::observer_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
, session{
MidiSession::CreateNewSession(L"libremidi session", MidiSessionSettings::Default())}
{ {
if (!configuration.has_callbacks()) if (!configuration.has_callbacks())
return; return;
@@ -36,31 +42,41 @@ public:
if (configuration.input_added) if (configuration.input_added)
for (const auto& p : get_input_ports()) for (const auto& p : get_input_ports())
configuration.input_added(p); configuration.input_added(p);
if (configuration.output_added) if (configuration.output_added)
for (const auto& p : get_output_ports()) for (const auto& p : get_output_ports())
configuration.output_added(p); configuration.output_added(p);
} }
/* if ((watcher = MidiEndpointDeviceWatcher::Create()))
evTokenOnInputAdded_ {
= internalInPortObserver_.PortAdded([this](const port_info& p) { on_input_added(p); }); namespace enumeration = winrt::Windows::Devices::Enumeration;
evTokenOnInputRemoved_ auto addHandler = foundation::TypedEventHandler<
= internalInPortObserver_.PortRemoved([this](const port_info& p) { on_input_removed(p); }); MidiEndpointDeviceWatcher, MidiEndpointDeviceInformationAddedEventArgs>(
evTokenOnOutputAdded_ this, &observer_impl::on_device_added);
= internalOutPortObserver_.PortAdded([this](const port_info& p) { on_output_added(p); }); auto updHandler = foundation::TypedEventHandler<
evTokenOnOutputRemoved_ = internalOutPortObserver_.PortRemoved( MidiEndpointDeviceWatcher, MidiEndpointDeviceInformationUpdatedEventArgs>(
[this](const port_info& p) { on_output_removed(p); }); this, &observer_impl::on_device_updated);
*/ auto delHandler = foundation::TypedEventHandler<
MidiEndpointDeviceWatcher, MidiEndpointDeviceInformationRemovedEventArgs>(
this, &observer_impl::on_device_removed);
m_addHandler = watcher.Added(winrt::auto_revoke, addHandler);
m_updHandler = watcher.Updated(winrt::auto_revoke, updHandler);
m_delHandler = watcher.Removed(winrt::auto_revoke, delHandler);
watcher.Start();
}
} }
~observer_impl() ~observer_impl()
{ {
if (!configuration.has_callbacks()) if (!configuration.has_callbacks())
return; return;
// internalInPortObserver_.PortAdded(evTokenOnInputAdded_);
// internalInPortObserver_.PortRemoved(evTokenOnInputRemoved_); m_addHandler.revoke();
// internalOutPortObserver_.PortAdded(evTokenOnOutputAdded_); m_updHandler.revoke();
// internalOutPortObserver_.PortRemoved(evTokenOnOutputRemoved_); m_delHandler.revoke();
} }
libremidi::API get_current_api() const noexcept override libremidi::API get_current_api() const noexcept override
@@ -68,29 +84,56 @@ public:
return libremidi::API::WINDOWS_MIDI_SERVICES; return libremidi::API::WINDOWS_MIDI_SERVICES;
} }
template <bool Input> static port_information::port_type code_to_type(std::string_view str) noexcept
auto to_port_info(const DeviceInformation& p) const noexcept
-> std::conditional_t<Input, input_port, output_port>
{ {
using enum port_information::port_type;
if (str.starts_with("KS"))
return hardware;
if (str == "BLE")
return port_information::port_type(hardware | bluetooth);
if (str == "VPB" || str == "APP")
return software;
if (str == "LOOP")
return port_information::port_type(software | loopback);
if (str.starts_with("NET"))
return network;
return unknown;
}
template <bool Input>
auto to_port_info(const MidiEndpointDeviceInformation& p, const MidiGroupTerminalBlock& gp)
const noexcept -> std::conditional_t<Input, input_port, output_port>
{
const auto& tinfo = p.GetTransportSuppliedInfo();
return { return {
{.client = 0, {.client = 0,
.port = 0, .container = std::bit_cast<libremidi::uuid>(p.ContainerId()),
.manufacturer = "", .device = to_string(p.EndpointDeviceId()),
.device_name = "", .port = gp.Number(),
.port_name = to_string(p.Id()), .manufacturer = to_string(tinfo.ManufacturerName),
.display_name = to_string(p.Name())}}; .device_name = to_string(p.Name()),
.port_name = to_string(gp.Name()),
.display_name = to_string(gp.Name()) + " " + std::to_string(gp.Number()),
.type = code_to_type(to_string(p.GetTransportSuppliedInfo().TransportCode))}};
} }
std::vector<libremidi::input_port> get_input_ports() const noexcept override std::vector<libremidi::input_port> get_input_ports() const noexcept override
{ {
std::vector<libremidi::input_port> ret; std::vector<libremidi::input_port> ret;
auto deviceSelector = MidiEndpointConnection::GetDeviceSelector(); for (const auto& ep : MidiEndpointDeviceInformation::FindAll())
auto endpointDevices = DeviceInformation::FindAllAsync(deviceSelector).get();
for (const auto& selectedEndpointInformation : endpointDevices)
{ {
// FIXME if(has input...) if(ep.Name().starts_with(L"Diagnostics")) {
ret.emplace_back(to_port_info(selectedEndpointInformation)); continue;
}
for (const auto& gp : ep.GetGroupTerminalBlocks())
{
if (gp.Direction() != MidiGroupTerminalBlockDirection::BlockOutput)
ret.emplace_back(to_port_info<true>(ep, gp));
}
} }
return ret; return ret;
@@ -100,52 +143,132 @@ public:
{ {
std::vector<libremidi::output_port> ret; std::vector<libremidi::output_port> ret;
auto deviceSelector = MidiEndpointConnection::GetDeviceSelector(); for (const auto& ep : MidiEndpointDeviceInformation::FindAll())
auto endpointDevices = DeviceInformation::FindAllAsync(deviceSelector).get();
for (const auto& selectedEndpointInformation : endpointDevices)
{ {
// FIXME if(has output...) if(ep.Name().starts_with(L"Diagnostics")) {
ret.emplace_back(to_port_info(selectedEndpointInformation)); continue;
}
for (const auto& gp : ep.GetGroupTerminalBlocks())
{
if (gp.Direction() != MidiGroupTerminalBlockDirection::BlockInput)
ret.emplace_back(to_port_info<false>(ep, gp));
}
} }
return ret; return ret;
} }
void on_input_added(const DeviceInformation& name) // Note: these callbacks are called from some random thread!
void on_device_added(
const MidiEndpointDeviceWatcher&, const MidiEndpointDeviceInformationAddedEventArgs& result)
{ {
if (configuration.input_added) add_device(result.AddedDevice());
configuration.input_added(to_port_info(name));
} }
void on_input_removed(const DeviceInformation& name) void on_device_updated(
const MidiEndpointDeviceWatcher& e,
const MidiEndpointDeviceInformationUpdatedEventArgs& result)
{ {
// OPTIMIZEME
remove_device(result.EndpointDeviceId());
add_device(
MidiEndpointDeviceInformation::CreateFromEndpointDeviceId(result.EndpointDeviceId()));
}
void on_device_removed(
const MidiEndpointDeviceWatcher&,
const MidiEndpointDeviceInformationRemovedEventArgs& result)
{
remove_device(result.EndpointDeviceId());
}
void add_device(const MidiEndpointDeviceInformation& ep)
{
for (const auto& gp : ep.GetGroupTerminalBlocks())
{
MidiGroupTerminalBlockDirection direction = gp.Direction();
switch (direction)
{
case MidiGroupTerminalBlockDirection::Bidirectional: {
if (configuration.input_added)
{
auto ip = to_port_info<true>(ep, gp);
{
std::lock_guard _{m_devices_mtx};
m_known_input_devices[ep.EndpointDeviceId()].push_back(ip);
}
configuration.input_added(std::move(ip));
}
if (configuration.output_added)
{
auto op = to_port_info<false>(ep, gp);
{
std::lock_guard _{m_devices_mtx};
m_known_output_devices[ep.EndpointDeviceId()].push_back(op);
}
configuration.output_added(std::move(op));
}
break;
}
case MidiGroupTerminalBlockDirection::BlockInput:
if (configuration.input_added)
{
auto ip = to_port_info<true>(ep, gp);
{
std::lock_guard _{m_devices_mtx};
m_known_input_devices[ep.EndpointDeviceId()].push_back(ip);
}
configuration.input_added(std::move(ip));
}
break;
case MidiGroupTerminalBlockDirection::BlockOutput:
if (configuration.output_added)
{
auto op = to_port_info<false>(ep, gp);
{
std::lock_guard _{m_devices_mtx};
m_known_output_devices[ep.EndpointDeviceId()].push_back(op);
}
configuration.output_added(std::move(op));
}
break;
}
}
}
void remove_device(hstring eid)
{
std::vector<input_port> to_remove_in;
std::vector<output_port> to_remove_out;
{
std::lock_guard _{m_devices_mtx};
if (auto it = m_known_input_devices.find(eid); it != m_known_input_devices.end())
{
for (auto& ip : it->second)
{
to_remove_in.push_back(ip);
}
m_known_input_devices.erase(it);
}
if (auto it = m_known_output_devices.find(eid); it != m_known_output_devices.end())
{
for (auto& op : it->second)
{
to_remove_out.push_back(op);
}
m_known_output_devices.erase(it);
}
}
if (configuration.input_removed) if (configuration.input_removed)
configuration.input_removed(to_port_info(name)); for (auto& port : to_remove_in)
} configuration.input_removed(port);
void on_output_added(const DeviceInformation& name)
{
if (configuration.output_added)
configuration.output_added(to_port_info(name));
}
void on_output_removed(const DeviceInformation& name)
{
if (configuration.output_removed) if (configuration.output_removed)
configuration.output_removed(to_port_info(name)); for (auto& port : to_remove_out)
configuration.output_removed(port);
} }
private:
#if 0
static inline observer_winmidi_internal internalInPortObserver_{MidiInPort::GetDeviceSelector()};
static inline observer_winmidi_internal internalOutPortObserver_{
MidiOutPort::GetDeviceSelector()};
int evTokenOnInputAdded_{-1};
int evTokenOnInputRemoved_{-1};
int evTokenOnOutputAdded_{-1};
int evTokenOnOutputRemoved_{-1};
#endif
}; };
} }
+4 -2
View File
@@ -3,6 +3,8 @@
#include <libremidi/backends/winmm/midi_out.hpp> #include <libremidi/backends/winmm/midi_out.hpp>
#include <libremidi/backends/winmm/observer.hpp> #include <libremidi/backends/winmm/observer.hpp>
#include <string_view>
// Default for Windows is to add an identifier to the port names; this // Default for Windows is to add an identifier to the port names; this
// flag can be defined (e.g. in your project file) to disable this behaviour. // flag can be defined (e.g. in your project file) to disable this behaviour.
// #define LIBREMIDI_DO_NOT_ENSURE_UNIQUE_PORTNAMES // #define LIBREMIDI_DO_NOT_ENSURE_UNIQUE_PORTNAMES
@@ -28,8 +30,8 @@ struct winmm_backend
using midi_out_configuration = winmm_output_configuration; using midi_out_configuration = winmm_output_configuration;
using midi_observer_configuration = winmm_observer_configuration; using midi_observer_configuration = winmm_observer_configuration;
static const constexpr auto API = libremidi::API::WINDOWS_MM; static const constexpr auto API = libremidi::API::WINDOWS_MM;
static const constexpr auto name = "winmm"; static const constexpr std::string_view name = "winmm";
static const constexpr auto display_name = "Windows Multimedia"; static const constexpr std::string_view display_name = "Windows Multimedia";
static constexpr inline bool available() noexcept { return true; } static constexpr inline bool available() noexcept { return true; }
}; };
@@ -0,0 +1,70 @@
#pragma once
// clang-format off
#define NOMINMAX 1
#define WIN32_LEAN_AND_MEAN 1
#include <windows.h>
#include <mmsystem.h>
// clang-format on
#include <libremidi/error.hpp>
namespace libremidi
{
struct winmm_error_domain : public stdx::error_domain
{
public:
constexpr winmm_error_domain() noexcept
: error_domain{{0xa32b080ac770514eULL, 0xef59a407f921da43ULL}}
{
}
stdx::string_ref name() const noexcept override { return "winmm"; }
bool equivalent(const stdx::error& lhs, const stdx::error& rhs) const noexcept override
{
if (lhs.domain() == rhs.domain())
return error_cast<int>(lhs) == error_cast<int>(rhs);
return false;
}
stdx::string_ref message(const stdx::error& e) const noexcept override
{
switch (error_cast<int>(e))
{
case MMSYSERR_NOERROR: return "No error";
case MMSYSERR_ERROR: return "Error";
case MMSYSERR_BADDEVICEID: return "Bad device ID";
case MMSYSERR_NOTENABLED: return "Not enabled";
case MMSYSERR_ALLOCATED: return "Allocated";
case MMSYSERR_INVALHANDLE: return "Invalid handle";
case MMSYSERR_NODRIVER: return "No driver";
case MMSYSERR_NOMEM: return "No memory";
case MMSYSERR_NOTSUPPORTED: return "Not supported";
case MMSYSERR_BADERRNUM: return "Bad errnum";
case MMSYSERR_INVALFLAG: return "Invalid flag";
case MMSYSERR_INVALPARAM: return "Invalid parameter";
case MMSYSERR_HANDLEBUSY: return "Handle busy";
case MMSYSERR_INVALIDALIAS: return "Invalid alias";
case MMSYSERR_BADDB: return "Bad database";
case MMSYSERR_KEYNOTFOUND: return "Key not found";
case MMSYSERR_READERROR: return "Read error";
case MMSYSERR_WRITEERROR: return "Write error";
case MMSYSERR_DELETEERROR: return "Delete error";
case MMSYSERR_VALNOTFOUND: return "Value not found";
case MMSYSERR_NODRIVERCB: return "No driver callback";
case MMSYSERR_MOREDATA: return "More data";
}
return "Unknown error code";
}
};
inline stdx::error from_mmerr(int ret) noexcept
{
static constexpr winmm_error_domain domain;
return {ret, domain};
}
}
+6 -13
View File
@@ -1,14 +1,8 @@
#pragma once #pragma once
#define NOMINMAX 1 #include <libremidi/backends/winmm/error_domain.hpp>
#define WIN32_LEAN_AND_MEAN 1
#include <libremidi/detail/midi_api.hpp> #include <libremidi/detail/midi_api.hpp>
#include <algorithm> #include <string>
// clang-format off
#include <windows.h>
#include <mmsystem.h>
// clang-format on
namespace libremidi namespace libremidi
{ {
@@ -44,10 +38,10 @@ inline std::string ConvertToUTF8(const TCHAR* str)
// Next functions add the portNumber to the name so that // Next functions add the portNumber to the name so that
// the device's names are sure to be listed with individual names // the device's names are sure to be listed with individual names
// even when they have the same brand name // even when they have the same brand name
inline void MakeUniqueInPortName(std::string& deviceName, unsigned int portNumber) inline void MakeUniqueInPortName(std::string& deviceName, std::size_t portNumber)
{ {
int x = 1; int x = 1;
for (unsigned int i = 0; i < portNumber; i++) for (std::size_t i = 0; i < portNumber; i++)
{ {
MIDIINCAPS deviceCaps; MIDIINCAPS deviceCaps;
midiInGetDevCaps(i, &deviceCaps, sizeof(MIDIINCAPS)); midiInGetDevCaps(i, &deviceCaps, sizeof(MIDIINCAPS));
@@ -61,10 +55,10 @@ inline void MakeUniqueInPortName(std::string& deviceName, unsigned int portNumbe
deviceName += std::to_string(x); deviceName += std::to_string(x);
} }
inline void MakeUniqueOutPortName(std::string& deviceName, unsigned int portNumber) inline void MakeUniqueOutPortName(std::string& deviceName, std::size_t portNumber)
{ {
int x = 1; int x = 1;
for (unsigned int i = 0; i < portNumber; i++) for (std::size_t i = 0; i < portNumber; i++)
{ {
MIDIOUTCAPS deviceCaps; MIDIOUTCAPS deviceCaps;
midiOutGetDevCaps(i, &deviceCaps, sizeof(MIDIOUTCAPS)); midiOutGetDevCaps(i, &deviceCaps, sizeof(MIDIOUTCAPS));
@@ -77,5 +71,4 @@ inline void MakeUniqueOutPortName(std::string& deviceName, unsigned int portNumb
deviceName += " "; deviceName += " ";
deviceName += std::to_string(x); deviceName += std::to_string(x);
} }
} }
+35 -52
View File
@@ -22,20 +22,17 @@ public:
explicit midi_in_winmm(input_configuration&& conf, winmm_input_configuration&& apiconf) explicit midi_in_winmm(input_configuration&& conf, winmm_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
// We'll issue a warning here if no devices are available but not
// throw an error since the user can plugin something later.
if (midiInGetNumDevs() == 0)
{
warning(
configuration, "midi_in_winmm::initialize: no MIDI input devices currently available.");
}
if (!InitializeCriticalSectionAndSpinCount(&(this->_mutex), 0x00000400)) if (!InitializeCriticalSectionAndSpinCount(&(this->_mutex), 0x00000400))
{ {
warning( libremidi_handle_error(
configuration, configuration,
"midi_in_winmm::initialize: InitializeCriticalSectionAndSpinCount failed."); "InitializeCriticalSectionAndSpinCount failed.");
this->client_open_ = std::errc::too_many_files_open;
return;
} }
this->client_open_ = stdx::error{};
} }
~midi_in_winmm() override ~midi_in_winmm() override
@@ -43,35 +40,22 @@ public:
// Close a connection if it exists. // Close a connection if it exists.
midi_in_winmm::close_port(); midi_in_winmm::close_port();
DeleteCriticalSection(&(this->_mutex)); if(this->client_open_ == stdx::error{})
} DeleteCriticalSection(&(this->_mutex));
bool open_virtual_port(std::string_view) override
{
warning(configuration, "midi_in_winmm: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_winmm: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_in_winmm: set_port_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::WINDOWS_MM; } libremidi::API get_current_api() const noexcept override { return libremidi::API::WINDOWS_MM; }
bool do_open(unsigned int portNumber) stdx::error do_open(std::size_t portNumber)
{ {
MMRESULT result = midiInOpen( MMRESULT result = midiInOpen(
&this->inHandle, portNumber, std::bit_cast<DWORD_PTR>(&midiInputCallback), &this->inHandle, portNumber, std::bit_cast<DWORD_PTR>(&midiInputCallback),
std::bit_cast<DWORD_PTR>(this), CALLBACK_FUNCTION); std::bit_cast<DWORD_PTR>(this), CALLBACK_FUNCTION);
if (result != MMSYSERR_NOERROR) if (result != MMSYSERR_NOERROR)
{ {
error<driver_error>( libremidi_handle_error(
configuration, "midi_in_winmm::open_port: error creating Windows MM MIDI input port."); configuration, "error creating Windows MM MIDI input port.");
return false; return from_mmerr(result);
} }
// Allocate and init the sysex buffers. // Allocate and init the sysex buffers.
@@ -90,11 +74,11 @@ public:
{ {
midiInClose(this->inHandle); midiInClose(this->inHandle);
this->inHandle = nullptr; this->inHandle = nullptr;
error<driver_error>( libremidi_handle_error(
configuration, configuration,
"midi_in_winmm::open_port: error starting Windows MM MIDI input port " "error starting Windows MM MIDI input port "
"(PrepareHeader)."); "(PrepareHeader).");
return false; return from_mmerr(result);
} }
// Register the buffer. // Register the buffer.
@@ -103,11 +87,11 @@ public:
{ {
midiInClose(this->inHandle); midiInClose(this->inHandle);
this->inHandle = nullptr; this->inHandle = nullptr;
error<driver_error>( libremidi_handle_error(
configuration, configuration,
"midi_in_winmm::open_port: error starting Windows MM MIDI input port " "error starting Windows MM MIDI input port "
"(AddBuffer)."); "(AddBuffer).");
return false; return from_mmerr(result);
} }
} }
@@ -117,15 +101,15 @@ public:
{ {
midiInClose(this->inHandle); midiInClose(this->inHandle);
this->inHandle = nullptr; this->inHandle = nullptr;
error<driver_error>( libremidi_handle_error(
configuration, "midi_in_winmm::open_port: error starting Windows MM MIDI input port."); configuration, "error starting Windows MM MIDI input port.");
return false; return from_mmerr(result);
} }
return true; return stdx::error{};
} }
bool open_port(const input_port& p, std::string_view) override stdx::error open_port(const input_port& p, std::string_view) override
{ {
observer_winmm obs{{}, winmm_observer_configuration{}}; observer_winmm obs{{}, winmm_observer_configuration{}};
auto ports = obs.get_input_ports(); auto ports = obs.get_input_ports();
@@ -142,12 +126,12 @@ public:
if (p.port_name == port.port_name) if (p.port_name == port.port_name)
return do_open(port.port); return do_open(port.port);
} }
error<invalid_parameter_error>( libremidi_handle_error(
configuration, "midi_in_winmm::open_port: port not found: " + p.port_name); configuration, "port not found: " + p.port_name);
return false; return std::errc::invalid_argument;
} }
void close_port() override stdx::error close_port() override
{ {
if (connected_) if (connected_)
{ {
@@ -170,9 +154,9 @@ public:
if (res != MMSYSERR_NOERROR) if (res != MMSYSERR_NOERROR)
{ {
warning( libremidi_handle_warning(
configuration, configuration,
"midi_in_winmm::open_port: error closing Windows MM MIDI input " "error closing Windows MM MIDI input "
"port (midiInUnprepareHeader)."); "port (midiInUnprepareHeader).");
continue; continue;
} }
@@ -187,6 +171,7 @@ public:
this->inHandle = nullptr; this->inHandle = nullptr;
LeaveCriticalSection(&(this->_mutex)); LeaveCriticalSection(&(this->_mutex));
} }
return stdx::error{};
} }
private: private:
@@ -255,8 +240,7 @@ private:
const auto* sysex = reinterpret_cast<MIDIHDR*>(midiMessage); const auto* sysex = reinterpret_cast<MIDIHDR*>(midiMessage);
if(inputStatus == MIM_LONGERROR) if(inputStatus == MIM_LONGERROR)
{ {
self.m_processing.message.bytes.clear(); self.m_processing.reset();
self.m_processing.state = self.m_processing.main;
} }
else if (!self.configuration.ignore_sysex) else if (!self.configuration.ignore_sysex)
{ {
@@ -286,10 +270,9 @@ private:
LeaveCriticalSection(&(self._mutex)); LeaveCriticalSection(&(self._mutex));
if (result != MMSYSERR_NOERROR) if (result != MMSYSERR_NOERROR)
{ {
#if defined(__LIBREMIDI_DEBUG__) LIBREMIDI_LOG(
std::cerr << "\nmidi_in::midiInputCallback: error sending sysex to " "error sending sysex to "
"Midi device!!\n\n"; "Midi device!!");
#endif
} }
} }
} }
+31 -48
View File
@@ -1,6 +1,7 @@
#pragma once #pragma once
#include <libremidi/backends/winmm/config.hpp> #include <libremidi/backends/winmm/config.hpp>
#include <libremidi/backends/winmm/helpers.hpp> #include <libremidi/backends/winmm/helpers.hpp>
#include <libremidi/backends/winmm/observer.hpp>
#include <libremidi/detail/midi_out.hpp> #include <libremidi/detail/midi_out.hpp>
namespace libremidi namespace libremidi
@@ -20,55 +21,34 @@ public:
midi_out_winmm(output_configuration&& conf, winmm_output_configuration&& apiconf) midi_out_winmm(output_configuration&& conf, winmm_output_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
// We'll issue a warning here if no devices are available but not this->client_open_ = stdx::error{};
// throw an error since the user can plug something in later.
if (midiOutGetNumDevs() == 0)
{
warning(
configuration,
"midi_out_winmm::initialize: no MIDI output devices currently "
"available.");
}
} }
~midi_out_winmm() override ~midi_out_winmm() override
{ {
// Close a connection if it exists. // Close a connection if it exists.
midi_out_winmm::close_port(); midi_out_winmm::close_port();
} this->client_open_ = std::errc::not_connected;
bool open_virtual_port(std::string_view) override
{
warning(configuration, "midi_out_winmm: open_virtual_port unsupported");
return false;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_out_winmm: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_out_winmm: set_port_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::WINDOWS_MM; } libremidi::API get_current_api() const noexcept override { return libremidi::API::WINDOWS_MM; }
[[nodiscard]] bool do_open(unsigned int portNumber) [[nodiscard]] stdx::error do_open(unsigned int portNumber)
{ {
MMRESULT result = midiOutOpen(&this->outHandle, portNumber, 0, 0, CALLBACK_NULL); MMRESULT result = midiOutOpen(&this->outHandle, portNumber, 0, 0, CALLBACK_NULL);
if (result != MMSYSERR_NOERROR) if (result != MMSYSERR_NOERROR)
{ {
error<driver_error>( libremidi_handle_error(
configuration, configuration,
"midi_out_winmm::open_port: error creating Windows MM MIDI output " "error creating Windows MM MIDI output "
"port."); "port.");
return false; return from_mmerr(result);
} }
return true; return stdx::error{};
} }
bool open_port(const output_port& p, std::string_view) override stdx::error open_port(const output_port& p, std::string_view) override
{ {
observer_winmm obs{{}, winmm_observer_configuration{}}; observer_winmm obs{{}, winmm_observer_configuration{}};
auto ports = obs.get_output_ports(); auto ports = obs.get_output_ports();
@@ -85,29 +65,30 @@ public:
if (p.port_name == port.port_name) if (p.port_name == port.port_name)
return do_open(port.port); return do_open(port.port);
} }
error<invalid_parameter_error>( libremidi_handle_error(
configuration, "midi_out_winmm::open_port: port not found: " + p.port_name); configuration, "port not found: " + p.port_name);
return false; return std::errc::invalid_argument;
} }
void close_port() override stdx::error close_port() override
{ {
if (this->outHandle) if (this->outHandle)
midiOutClose(this->outHandle); midiOutClose(this->outHandle);
this->outHandle = nullptr; this->outHandle = nullptr;
connected_ = false; connected_ = false;
return stdx::error{};
} }
void send_message(const unsigned char* message, size_t size) override stdx::error send_message(const unsigned char* message, size_t size) override
{ {
if (!connected_) if (!connected_)
return; return std::errc::not_connected;
if (size == 0) if (size == 0)
{ {
warning(configuration, "midi_out_winmm::send_message: message argument is empty!"); libremidi_handle_warning(configuration, "message argument is empty!");
return; return std::errc::invalid_argument;
} }
if (message[0] == 0xF0) if (message[0] == 0xF0)
@@ -126,18 +107,18 @@ public:
auto result = midiOutPrepareHeader(this->outHandle, &sysex, sizeof(MIDIHDR)); auto result = midiOutPrepareHeader(this->outHandle, &sysex, sizeof(MIDIHDR));
if (result != MMSYSERR_NOERROR) if (result != MMSYSERR_NOERROR)
{ {
error<driver_error>( libremidi_handle_error(
configuration, "midi_out_winmm::send_message: error preparing sysex header."); configuration, "error preparing sysex header.");
return; return from_mmerr(result);
} }
// Send the message. // Send the message.
result = midiOutLongMsg(this->outHandle, &sysex, sizeof(MIDIHDR)); result = midiOutLongMsg(this->outHandle, &sysex, sizeof(MIDIHDR));
if (result != MMSYSERR_NOERROR) if (result != MMSYSERR_NOERROR)
{ {
error<driver_error>( libremidi_handle_error(
configuration, "midi_out_winmm::send_message: error sending sysex message."); configuration, "error sending sysex message.");
return; return from_mmerr(result);
} }
// Unprepare the buffer and MIDIHDR. // Unprepare the buffer and MIDIHDR.
@@ -152,11 +133,11 @@ public:
// Make sure the message size isn't too big. // Make sure the message size isn't too big.
if (size > 3) if (size > 3)
{ {
warning( libremidi_handle_warning(
configuration, configuration,
"midi_out_winmm::send_message: message size is greater than 3 bytes " "message size is greater than 3 bytes "
"(and not sysex)!"); "(and not sysex)!");
return; return std::errc::message_size;
} }
// Pack MIDI bytes into double word. // Pack MIDI bytes into double word.
@@ -167,10 +148,12 @@ public:
auto result = midiOutShortMsg(this->outHandle, packet); auto result = midiOutShortMsg(this->outHandle, packet);
if (result != MMSYSERR_NOERROR) if (result != MMSYSERR_NOERROR)
{ {
error<driver_error>( libremidi_handle_error(
configuration, "midi_out_winmm::send_message: error sending MIDI message."); configuration, "error sending MIDI message.");
return from_mmerr(result);
} }
} }
return stdx::error{};
} }
private: private:
@@ -3,9 +3,6 @@
#include <libremidi/backends/winmm/helpers.hpp> #include <libremidi/backends/winmm/helpers.hpp>
#include <libremidi/detail/observer.hpp> #include <libremidi/detail/observer.hpp>
#include <condition_variable>
#include <mutex>
#include <ranges>
#include <thread> #include <thread>
namespace libremidi namespace libremidi
+4 -2
View File
@@ -3,6 +3,8 @@
#include <libremidi/backends/winuwp/midi_out.hpp> #include <libremidi/backends/winuwp/midi_out.hpp>
#include <libremidi/backends/winuwp/observer.hpp> #include <libremidi/backends/winuwp/observer.hpp>
#include <string_view>
namespace libremidi namespace libremidi
{ {
struct winuwp_backend struct winuwp_backend
@@ -14,8 +16,8 @@ struct winuwp_backend
using midi_out_configuration = winuwp_output_configuration; using midi_out_configuration = winuwp_output_configuration;
using midi_observer_configuration = winuwp_observer_configuration; using midi_observer_configuration = winuwp_observer_configuration;
static const constexpr auto API = libremidi::API::WINDOWS_UWP; static const constexpr auto API = libremidi::API::WINDOWS_UWP;
static const constexpr auto name = "winuwp"; static const constexpr std::string_view name = "winuwp";
static const constexpr auto display_name = "Windows UWP"; static const constexpr std::string_view display_name = "Windows UWP";
static constexpr inline bool available() noexcept { return true; } static constexpr inline bool available() noexcept { return true; }
}; };
+10 -19
View File
@@ -21,38 +21,28 @@ public:
explicit midi_in_winuwp(input_configuration&& conf, winuwp_input_configuration&& apiconf) explicit midi_in_winuwp(input_configuration&& conf, winuwp_input_configuration&& apiconf)
: configuration{std::move(conf), std::move(apiconf)} : configuration{std::move(conf), std::move(apiconf)}
{ {
winrt_init(); winrt_init();
this->client_open_ = stdx::error{};
} }
~midi_in_winuwp() override { close_port(); } ~midi_in_winuwp() override
bool open_virtual_port(std::string_view) override
{ {
warning(configuration, "midi_in_winuwp: open_virtual_port unsupported"); close_port();
return false; this->client_open_ = std::errc::not_connected;
}
void set_client_name(std::string_view) override
{
warning(configuration, "midi_in_winuwp: set_client_name unsupported");
}
void set_port_name(std::string_view) override
{
warning(configuration, "midi_in_winuwp: set_port_name unsupported");
} }
libremidi::API get_current_api() const noexcept override { return libremidi::API::WINDOWS_UWP; } libremidi::API get_current_api() const noexcept override { return libremidi::API::WINDOWS_UWP; }
bool open_port(const input_port& port, std::string_view) override stdx::error open_port(const input_port& port, std::string_view) override
{ {
const auto id = winrt::to_hstring(port.port_name); const auto id = winrt::to_hstring(port.port_name);
if (id.empty()) if (id.empty())
return false; return std::errc::invalid_argument;
port_ = get(MidiInPort::FromIdAsync(id)); port_ = get(MidiInPort::FromIdAsync(id));
if (!port_) if (!port_)
return false; return std::errc::io_error;
midi_start_timestamp = std::chrono::steady_clock::now(); midi_start_timestamp = std::chrono::steady_clock::now();
@@ -62,7 +52,7 @@ public:
this->process_message(args.Message()); this->process_message(args.Message());
}); });
return true; return stdx::error{};
} }
void process_message(const winrt::Windows::Devices::Midi::IMidiMessage& msg) void process_message(const winrt::Windows::Devices::Midi::IMidiMessage& msg)
@@ -81,13 +71,14 @@ public:
m_processing.on_bytes({begin, end}, m_processing.timestamp<timestamp_info>(to_ns, 0)); m_processing.on_bytes({begin, end}, m_processing.timestamp<timestamp_info>(to_ns, 0));
} }
void close_port() override stdx::error close_port() override
{ {
if (port_) if (port_)
{ {
port_.Close(); port_.Close();
port_ = nullptr; port_ = nullptr;
} }
return stdx::error{};
} }
timestamp absolute_timestamp() const noexcept override timestamp absolute_timestamp() const noexcept override

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