181 lines
8.2 KiB
Rust
181 lines
8.2 KiB
Rust
// nih-plug: plugins, but rewritten in Rust
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// Copyright (C) 2022 Robbert van der Helm
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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//! Different contexts the plugin can use to make callbacks to the host in different...contexts.
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use std::sync::Weak;
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#[cfg(all(target_family = "unix", not(target_os = "macos")))]
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mod linux;
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#[cfg(all(target_family = "unix", not(target_os = "macos")))]
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pub(crate) use linux::LinuxEventLoop as OsEventLoop;
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use crate::param::internals::ParamPtr;
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use crate::param::Param;
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use crate::plugin::NoteEvent;
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pub(crate) const TASK_QUEUE_CAPACITY: usize = 512;
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// TODO: ProcessContext for parameter automation and sending events
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/// General callbacks the plugin can make during its lifetime. This is passed to the plugin during
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/// [crate::plugin::Plugin::initialize()] and as part of [crate::plugin::Plugin::process()].
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//
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// # Safety
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//
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// The implementing wrapper needs to be able to handle concurrent requests, and it should perform
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// the actual callback within [MainThreadQueue::do_maybe_async].
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pub trait ProcessContext {
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/// Update the current latency of the plugin. If the plugin is currently processing audio, then
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/// this may cause audio playback to be restarted.
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fn set_latency_samples(&self, samples: u32);
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/// Return the next note event, if there is one. The event contains the timing
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///
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/// TODO: Rethink this API, both in terms of ergonomics, and if we can do this in a way that
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/// doesn't require locks (because of the thread safe-ness, which we don't really need
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/// here)
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fn next_midi_event(&mut self) -> Option<NoteEvent>;
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// TODO: Add this, this works similar to [GuiContext::set_parameter] but it adds the parameter
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// change to a queue (or directly to the VST3 plugin's parameter output queues) instead of
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// using main thread host automation (and all the locks involved there).
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// fn set_parameter<P: Param>(&self, param: &P, value: P::Plain);
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}
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/// Callbacks the plugin can make when the user interacts with its GUI such as updating parameter
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/// values. This is passed to the plugin during [crate::plugin::Plugin::create_editor()]. All of
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/// these functions assume they're being called from the main GUI thread.
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//
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// # Safety
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//
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// The implementing wrapper can assume that everything is being called from the main thread. Since
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// NIH-plug doesn't own the GUI event loop, this invariant cannot be part of the interface.
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pub trait GuiContext: Send + Sync + 'static {
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/// Retrieve a safe setter for updating the plugin's parameters. Modifying parameters here will
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/// broadcast the changes both to the host and to your plugin's
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/// [crate::param::internals::Params] object.
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fn setter(&self) -> ParamSetter
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where
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Self: Sized,
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{
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ParamSetter { context: self }
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}
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/// Inform the host a parameter will be automated. Use [ParamSetter::begin_set_parameter]
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/// instead for a safe, user friendly API.
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///
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/// # Safety
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///
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/// The implementing function still needs to check if `param` actually exists. This function is
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/// mostly marked as unsafe for API reasons.
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unsafe fn raw_begin_set_parameter(&self, param: ParamPtr);
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/// Inform the host a parameter is being automated with an already normalized value. Use
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/// [ParamSetter::set_parameter] instead for a safe, user friendly API.
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///
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/// # Safety
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///
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/// The implementing function still needs to check if `param` actually exists. This function is
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/// mostly marked as unsafe for API reasons.
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unsafe fn raw_set_parameter_normalized(&self, param: ParamPtr, normalized: f32);
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/// Inform the host a parameter has been automated. Use [ParamSetter::end_set_parameter] instead
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/// for a safe, user friendly API.
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///
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/// # Safety
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///
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/// The implementing function still needs to check if `param` actually exists. This function is
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/// mostly marked as unsafe for API reasons.
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unsafe fn raw_end_set_parameter(&self, param: ParamPtr);
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}
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/// A convenience helper for setting parameter values. Any changes made here will be broadcasted to
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/// the host and reflected in the plugin's [crate::param::internals::Params] object. These functions
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/// should only be called from the main thread.
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pub struct ParamSetter<'a> {
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context: &'a dyn GuiContext,
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}
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impl ParamSetter<'_> {
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/// Inform the host that you will start automating a parmater. This needs to be called before
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/// calling [Self::set_parameter()] for the specified parameter.
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pub fn begin_set_parameter<P: Param>(&self, param: &P) {
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unsafe { self.context.raw_begin_set_parameter(param.as_ptr()) };
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}
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/// Set a parameter to the specified parameter value. You will need to call
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/// [Self::begin_set_parameter()] before and [Self::end_set_parameter()] after calling this so
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/// the host can properly record automation for the parameter. This can be called multiple times
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/// in a row before calling [Self::end_set_parameter()], for instance when moving a slider
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/// around.
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///
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/// This function assumes you're already calling this from a GUI thread. Calling any of these
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/// functions from any other thread may result in unexpected behavior.
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pub fn set_parameter<P: Param>(&self, param: &P, value: P::Plain) {
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let ptr = param.as_ptr();
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let normalized = param.preview_normalized(value);
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unsafe { self.context.raw_set_parameter_normalized(ptr, normalized) };
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}
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/// Inform the host that you are done automating a parameter. This needs to be called after one
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/// or more [Self::set_parameter()] calls for a parameter so the host knows the automation
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/// gesture has finished.
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pub fn end_set_parameter<P: Param>(&self, param: &P) {
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unsafe { self.context.raw_end_set_parameter(param.as_ptr()) };
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}
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}
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/// A trait describing the functionality of the platform-specific event loop that can execute tasks
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/// of type `T` in executor `E`. Posting a task to the internal task queue should be realtime safe.
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/// This event loop should be created during the wrapper's initial initialization on the main
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/// thread.
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///
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/// This is never used generically, but having this as a trait will cause any missing functions on
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/// an implementation to show up as compiler errors even when using a different platform. And since
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/// the tasks and executor will be sent to a thread, they need to have static lifetimes.
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///
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/// TODO: At some point rethink the design to make it possible to have a singleton message queue for
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/// all instances of a plugin.
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pub(crate) trait EventLoop<T, E>
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where
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T: Send + 'static,
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E: MainThreadExecutor<T> + 'static,
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{
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/// Create and start a new event loop. The thread this is called on will be designated as the
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/// main thread, so this should be called when constructing the wrapper.
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fn new_and_spawn(executor: Weak<E>) -> Self;
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/// Either post the function to the task queue so it can be delegated to the main thread, or
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/// execute the task directly if this is the main thread. This function needs to be callable at
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/// any time without blocking.
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///
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/// If the task queue is full, then this will return false.
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#[must_use]
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fn do_maybe_async(&self, task: T) -> bool;
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/// Whether the calling thread is the event loop's main thread. This is usually the thread the
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/// event loop instance was initialized on.
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fn is_main_thread(&self) -> bool;
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}
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/// Something that can execute tasks of type `T`.
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pub(crate) trait MainThreadExecutor<T>: Send + Sync {
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/// Execute a task on the current thread. This shoudl only be called from the main thread.
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unsafe fn execute(&self, task: T);
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}
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