Files
oak-gpui/crates/feature_flags/src/feature_flags.rs
T
96499b7b25 zeta: Refresh LLM token in case it expired (#21796)
Release Notes:

- N/A

---------

Co-authored-by: Antonio <antonio@zed.dev>
Co-authored-by: Bennet <bennet@zed.dev>
2024-12-10 14:12:49 +01:00

205 lines
5.5 KiB
Rust

use futures::{channel::oneshot, FutureExt as _};
use gpui::{AppContext, Global, Subscription, ViewContext};
use std::{
future::Future,
pin::Pin,
task::{Context, Poll},
};
#[derive(Default)]
struct FeatureFlags {
flags: Vec<String>,
staff: bool,
}
impl FeatureFlags {
fn has_flag<T: FeatureFlag>(&self) -> bool {
if self.staff && T::enabled_for_staff() {
return true;
}
self.flags.iter().any(|f| f.as_str() == T::NAME)
}
}
impl Global for FeatureFlags {}
/// To create a feature flag, implement this trait on a trivial type and use it as
/// a generic parameter when called [`FeatureFlagAppExt::has_flag`].
///
/// Feature flags are enabled for members of Zed staff by default. To disable this behavior
/// so you can test flags being disabled, set ZED_DISABLE_STAFF=1 in your environment,
/// which will force Zed to treat the current user as non-staff.
pub trait FeatureFlag {
const NAME: &'static str;
/// Returns whether this feature flag is enabled for Zed staff.
fn enabled_for_staff() -> bool {
true
}
}
pub struct Assistant2FeatureFlag;
impl FeatureFlag for Assistant2FeatureFlag {
const NAME: &'static str = "assistant2";
fn enabled_for_staff() -> bool {
false
}
}
pub struct ToolUseFeatureFlag;
impl FeatureFlag for ToolUseFeatureFlag {
const NAME: &'static str = "assistant-tool-use";
fn enabled_for_staff() -> bool {
false
}
}
pub struct ZetaFeatureFlag;
impl FeatureFlag for ZetaFeatureFlag {
const NAME: &'static str = "zeta";
}
pub struct Remoting {}
impl FeatureFlag for Remoting {
const NAME: &'static str = "remoting";
}
pub struct LanguageModels {}
impl FeatureFlag for LanguageModels {
const NAME: &'static str = "language-models";
}
pub struct LlmClosedBeta {}
impl FeatureFlag for LlmClosedBeta {
const NAME: &'static str = "llm-closed-beta";
}
pub struct ZedPro {}
impl FeatureFlag for ZedPro {
const NAME: &'static str = "zed-pro";
}
pub struct NotebookFeatureFlag;
impl FeatureFlag for NotebookFeatureFlag {
const NAME: &'static str = "notebooks";
}
pub struct AutoCommand {}
impl FeatureFlag for AutoCommand {
const NAME: &'static str = "auto-command";
fn enabled_for_staff() -> bool {
false
}
}
pub trait FeatureFlagViewExt<V: 'static> {
fn observe_flag<T: FeatureFlag, F>(&mut self, callback: F) -> Subscription
where
F: Fn(bool, &mut V, &mut ViewContext<V>) + Send + Sync + 'static;
}
impl<V> FeatureFlagViewExt<V> for ViewContext<'_, V>
where
V: 'static,
{
fn observe_flag<T: FeatureFlag, F>(&mut self, callback: F) -> Subscription
where
F: Fn(bool, &mut V, &mut ViewContext<V>) + 'static,
{
self.observe_global::<FeatureFlags>(move |v, cx| {
let feature_flags = cx.global::<FeatureFlags>();
callback(feature_flags.has_flag::<T>(), v, cx);
})
}
}
pub trait FeatureFlagAppExt {
fn wait_for_flag<T: FeatureFlag>(&mut self) -> WaitForFlag;
fn update_flags(&mut self, staff: bool, flags: Vec<String>);
fn set_staff(&mut self, staff: bool);
fn has_flag<T: FeatureFlag>(&self) -> bool;
fn is_staff(&self) -> bool;
fn observe_flag<T: FeatureFlag, F>(&mut self, callback: F) -> Subscription
where
F: FnMut(bool, &mut AppContext) + 'static;
}
impl FeatureFlagAppExt for AppContext {
fn update_flags(&mut self, staff: bool, flags: Vec<String>) {
let feature_flags = self.default_global::<FeatureFlags>();
feature_flags.staff = staff;
feature_flags.flags = flags;
}
fn set_staff(&mut self, staff: bool) {
let feature_flags = self.default_global::<FeatureFlags>();
feature_flags.staff = staff;
}
fn has_flag<T: FeatureFlag>(&self) -> bool {
self.try_global::<FeatureFlags>()
.map(|flags| flags.has_flag::<T>())
.unwrap_or(false)
}
fn is_staff(&self) -> bool {
self.try_global::<FeatureFlags>()
.map(|flags| flags.staff)
.unwrap_or(false)
}
fn observe_flag<T: FeatureFlag, F>(&mut self, mut callback: F) -> Subscription
where
F: FnMut(bool, &mut AppContext) + 'static,
{
self.observe_global::<FeatureFlags>(move |cx| {
let feature_flags = cx.global::<FeatureFlags>();
callback(feature_flags.has_flag::<T>(), cx);
})
}
fn wait_for_flag<T: FeatureFlag>(&mut self) -> WaitForFlag {
let (tx, rx) = oneshot::channel::<bool>();
let mut tx = Some(tx);
let subscription: Option<Subscription>;
match self.try_global::<FeatureFlags>() {
Some(feature_flags) => {
subscription = None;
tx.take().unwrap().send(feature_flags.has_flag::<T>()).ok();
}
None => {
subscription = Some(self.observe_global::<FeatureFlags>(move |cx| {
let feature_flags = cx.global::<FeatureFlags>();
if let Some(tx) = tx.take() {
tx.send(feature_flags.has_flag::<T>()).ok();
}
}));
}
}
WaitForFlag(rx, subscription)
}
}
pub struct WaitForFlag(oneshot::Receiver<bool>, Option<Subscription>);
impl Future for WaitForFlag {
type Output = bool;
fn poll(mut self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<Self::Output> {
self.0.poll_unpin(cx).map(|result| {
self.1.take();
result.unwrap_or(false)
})
}
}