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hydro_lang/location/
cluster.rs

1//! Definitions for clusters, which represent a group of identical processes.
2//!
3//! A [`Cluster`] is a multi-node location in the Hydro distributed programming model.
4//! Unlike a [`super::Process`], which maps to a single machine, a cluster represents
5//! a dynamically-sized set of machines that all run the same code. Each member of the
6//! cluster is assigned a unique [`super::MemberId`] that can be used to address it.
7//!
8//! Clusters are useful for parallelism, replication, and sharding patterns. Data can
9//! be broadcast to all members, sent to a specific member by ID, or scattered across
10//! members.
11
12use std::fmt::{Debug, Formatter};
13use std::marker::PhantomData;
14
15use proc_macro2::Span;
16use quote::quote;
17use stageleft::runtime_support::{FreeVariableWithContextWithProps, QuoteTokens};
18use stageleft::{QuotedWithContextWithProps, quote_type};
19
20use super::dynamic::LocationId;
21use super::{Location, MemberId};
22use crate::compile::builder::FlowState;
23use crate::location::dynamic::ClusterConsistency;
24use crate::location::member_id::TaglessMemberId;
25use crate::location::{LocationKey, TopLevel};
26use crate::staging_util::{Invariant, get_this_crate};
27
28/// A marker trait for levels of consistency that can be guaranteed for a live collection placed
29/// across members of a cluster.
30pub trait Consistency {
31    /// Gets the runtime enum variant associated with this consistency level.
32    fn consistency() -> ClusterConsistency;
33}
34
35/// No consistency is guaranteed across cluster members, which means that the live collection
36/// may take on arbitrarily different values across members.
37pub enum NoConsistency {}
38impl Consistency for NoConsistency {
39    fn consistency() -> ClusterConsistency {
40        ClusterConsistency::NoConsistency
41    }
42}
43
44/// Eventual consistency is guaranteed across cluster members, which means that at steady-state
45/// the live collection will always resolve to the same value across all members of the cluster.
46pub enum EventualConsistency {}
47impl Consistency for EventualConsistency {
48    fn consistency() -> ClusterConsistency {
49        ClusterConsistency::EventualConsistency
50    }
51}
52
53/// A multi-node location representing a group of identical processes.
54///
55/// Each member of the cluster runs the same dataflow program and is assigned a
56/// unique [`MemberId`] that can be used to address it. The number of members
57/// is determined at deployment time rather than at compile time.
58///
59/// The `ClusterTag` type parameter is a phantom tag used to distinguish between
60/// different clusters in the type system, preventing accidental mixing of
61/// member IDs across clusters.
62pub struct Cluster<'a, ClusterTag, Con: Consistency = NoConsistency> {
63    pub(crate) key: LocationKey,
64    pub(crate) flow_state: FlowState,
65    pub(crate) _phantom: Invariant<'a, (ClusterTag, Con)>,
66}
67
68impl<C, Con: Consistency> Debug for Cluster<'_, C, Con> {
69    fn fmt(&self, f: &mut Formatter<'_>) -> std::fmt::Result {
70        write!(f, "Cluster({})", self.key)
71    }
72}
73
74impl<C, Con: Consistency> Eq for Cluster<'_, C, Con> {}
75impl<C, Con: Consistency> PartialEq for Cluster<'_, C, Con> {
76    fn eq(&self, other: &Self) -> bool {
77        self.key == other.key && FlowState::ptr_eq(&self.flow_state, &other.flow_state)
78    }
79}
80
81impl<C, Con: Consistency> Clone for Cluster<'_, C, Con> {
82    fn clone(&self) -> Self {
83        Cluster {
84            key: self.key,
85            flow_state: self.flow_state.clone(),
86            _phantom: PhantomData,
87        }
88    }
89}
90
91impl<'a, C, Con: Consistency> super::dynamic::DynLocation for Cluster<'a, C, Con> {
92    fn dyn_id(&self) -> LocationId {
93        LocationId::Cluster(self.key)
94    }
95
96    fn flow_state(&self) -> &FlowState {
97        &self.flow_state
98    }
99
100    fn is_top_level() -> bool {
101        true
102    }
103
104    fn multiversioned(&self) -> bool {
105        false // TODO(shadaj): enable multiversioning support for clusters
106    }
107
108    fn cluster_consistency() -> Option<ClusterConsistency> {
109        Some(Con::consistency())
110    }
111}
112
113impl<'a, C, Con: Consistency> Location<'a> for Cluster<'a, C, Con> {
114    type Root = Cluster<'a, C, Con>;
115
116    type DropConsistency = Cluster<'a, C, NoConsistency>;
117
118    fn consistency() -> Option<ClusterConsistency> {
119        Some(Con::consistency())
120    }
121
122    fn root(&self) -> Self::Root {
123        self.clone()
124    }
125
126    fn drop_consistency(&self) -> Self::DropConsistency {
127        Cluster {
128            key: self.key,
129            flow_state: self.flow_state.clone(),
130            _phantom: PhantomData,
131        }
132    }
133
134    fn from_drop_consistency(l2: Self::DropConsistency) -> Self {
135        Cluster {
136            key: l2.key,
137            flow_state: l2.flow_state,
138            _phantom: PhantomData,
139        }
140    }
141}
142
143impl<'a, C, Con: Consistency> TopLevel<'a> for Cluster<'a, C, Con> {}
144
145#[cfg(feature = "sim")]
146impl<'a, C> Cluster<'a, C> {
147    /// Sets up a simulated input port on this cluster for testing.
148    ///
149    /// Returns a `SimClusterSender` that sends `(member_id, T)` messages targeting
150    /// specific cluster members, and a `Stream<T>` received by each member.
151    pub fn sim_input<T>(
152        &self,
153    ) -> (
154        crate::sim::SimClusterSender<
155            T,
156            crate::live_collections::stream::TotalOrder,
157            crate::live_collections::stream::ExactlyOnce,
158        >,
159        crate::live_collections::Stream<
160            T,
161            Self,
162            crate::live_collections::boundedness::Unbounded,
163            crate::live_collections::stream::TotalOrder,
164            crate::live_collections::stream::ExactlyOnce,
165        >,
166    )
167    where
168        T: serde::Serialize + serde::de::DeserializeOwned,
169    {
170        use crate::location::Location;
171
172        let external_location: crate::location::External<'a, ()> = crate::location::External {
173            key: LocationKey::FIRST,
174            flow_state: self.flow_state.clone(),
175            _phantom: PhantomData,
176        };
177
178        let (external, stream) = self.source_external_bincode(&external_location);
179
180        (
181            crate::sim::SimClusterSender(external.port_id, PhantomData),
182            stream,
183        )
184    }
185}
186
187/// A free variable that resolves to the list of member IDs in a cluster at runtime.
188///
189/// When spliced into a quoted snippet, this provides access to the set of
190/// [`TaglessMemberId`]s that belong to the cluster.
191pub struct ClusterIds<'a> {
192    /// The location key identifying which cluster this refers to.
193    pub key: LocationKey,
194    /// Phantom data binding the lifetime.
195    pub _phantom: PhantomData<&'a ()>,
196}
197
198impl<'a> Clone for ClusterIds<'a> {
199    fn clone(&self) -> Self {
200        Self {
201            key: self.key,
202            _phantom: Default::default(),
203        }
204    }
205}
206
207impl<'a, Ctx> FreeVariableWithContextWithProps<Ctx, ()> for ClusterIds<'a> {
208    type O = &'a [TaglessMemberId];
209
210    fn to_tokens(self, _ctx: &Ctx) -> (QuoteTokens, ())
211    where
212        Self: Sized,
213    {
214        let ident = syn::Ident::new(
215            &format!("__hydro_lang_cluster_ids_{}", self.key),
216            Span::call_site(),
217        );
218
219        (
220            QuoteTokens {
221                prelude: None,
222                expr: Some(quote! { #ident }),
223            },
224            (),
225        )
226    }
227}
228
229impl<'a, Ctx> QuotedWithContextWithProps<'a, &'a [TaglessMemberId], Ctx, ()> for ClusterIds<'a> {}
230
231/// Marker trait implemented by [`Cluster`] locations, providing access to the cluster tag type.
232pub trait IsCluster {
233    /// The phantom tag type that distinguishes this cluster from others.
234    type Tag;
235}
236
237impl<C> IsCluster for Cluster<'_, C> {
238    type Tag = C;
239}
240
241/// A free variable representing the cluster's own ID. When spliced in
242/// a quoted snippet that will run on a cluster, this turns into a [`MemberId`].
243pub static CLUSTER_SELF_ID: ClusterSelfId = ClusterSelfId { _private: &() };
244
245/// The concrete type behind [`CLUSTER_SELF_ID`].
246///
247/// This is a compile-time variable that, when spliced into a quoted snippet running
248/// on a [`Cluster`], resolves to the [`MemberId`] of the current cluster member.
249#[derive(Clone, Copy)]
250pub struct ClusterSelfId<'a> {
251    _private: &'a (),
252}
253
254impl<'a, L> FreeVariableWithContextWithProps<L, ()> for ClusterSelfId<'a>
255where
256    L: Location<'a>,
257    <L as Location<'a>>::Root: IsCluster,
258{
259    type O = MemberId<<<L as Location<'a>>::Root as IsCluster>::Tag>;
260
261    fn to_tokens(self, ctx: &L) -> (QuoteTokens, ())
262    where
263        Self: Sized,
264    {
265        let LocationId::Cluster(cluster_id) = ctx.root().id() else {
266            unreachable!()
267        };
268
269        let ident = syn::Ident::new(
270            &format!("__hydro_lang_cluster_self_id_{}", cluster_id),
271            Span::call_site(),
272        );
273        let root = get_this_crate();
274        let c_type: syn::Type = quote_type::<<<L as Location<'a>>::Root as IsCluster>::Tag>();
275
276        (
277            QuoteTokens {
278                prelude: None,
279                expr: Some(
280                    quote! { #root::__staged::location::MemberId::<#c_type>::from_tagless((#ident).clone()) },
281                ),
282            },
283            (),
284        )
285    }
286}
287
288impl<'a, L>
289    QuotedWithContextWithProps<'a, MemberId<<<L as Location<'a>>::Root as IsCluster>::Tag>, L, ()>
290    for ClusterSelfId<'a>
291where
292    L: Location<'a>,
293    <L as Location<'a>>::Root: IsCluster,
294{
295}
296
297#[cfg(test)]
298mod tests {
299    #[cfg(feature = "sim")]
300    use stageleft::q;
301
302    #[cfg(feature = "sim")]
303    use super::CLUSTER_SELF_ID;
304    #[cfg(feature = "sim")]
305    use crate::location::{Location, MemberId, MembershipEvent};
306    #[cfg(feature = "sim")]
307    use crate::networking::TCP;
308    #[cfg(feature = "sim")]
309    use crate::nondet::nondet;
310    #[cfg(feature = "sim")]
311    use crate::prelude::FlowBuilder;
312
313    #[cfg(feature = "sim")]
314    #[test]
315    fn sim_cluster_self_id() {
316        let mut flow = FlowBuilder::new();
317        let cluster1 = flow.cluster::<()>();
318        let cluster2 = flow.cluster::<()>();
319
320        let node = flow.process::<()>();
321
322        let out_recv = cluster1
323            .source_iter(q!(vec![CLUSTER_SELF_ID]))
324            .send(&node, TCP.fail_stop().bincode())
325            .values()
326            .merge_unordered(
327                cluster2
328                    .source_iter(q!(vec![CLUSTER_SELF_ID]))
329                    .send(&node, TCP.fail_stop().bincode())
330                    .values(),
331            )
332            .sim_output();
333
334        flow.sim()
335            .with_cluster_size(&cluster1, 3)
336            .with_cluster_size(&cluster2, 4)
337            .exhaustive(async || {
338                out_recv
339                    .assert_yields_only_unordered([0, 1, 2, 0, 1, 2, 3].map(MemberId::from_raw_id))
340                    .await
341            });
342    }
343
344    #[cfg(feature = "sim")]
345    #[test]
346    fn sim_cluster_with_tick() {
347        use std::collections::HashMap;
348
349        let mut flow = FlowBuilder::new();
350        let cluster = flow.cluster::<()>();
351        let node = flow.process::<()>();
352
353        let out_recv = cluster
354            .source_iter(q!(vec![1, 2, 3]))
355            .batch(&cluster.tick(), nondet!(/** test */))
356            .count()
357            .all_ticks()
358            .send(&node, TCP.fail_stop().bincode())
359            .entries()
360            .map(q!(|(id, v)| (id, v)))
361            .sim_output();
362
363        let count = flow
364            .sim()
365            .with_cluster_size(&cluster, 2)
366            .exhaustive(async || {
367                let grouped = out_recv.collect_sorted::<Vec<_>>().await.into_iter().fold(
368                    HashMap::new(),
369                    |mut acc: HashMap<MemberId<()>, usize>, (id, v)| {
370                        *acc.entry(id).or_default() += v;
371                        acc
372                    },
373                );
374
375                assert!(grouped.len() == 2);
376                for (_id, v) in grouped {
377                    assert!(v == 3);
378                }
379            });
380
381        assert_eq!(count, 106);
382        // not a square because we simulate all interleavings of ticks across 2 cluster members
383        // eventually, we should be able to identify that the members are independent (because
384        // there are no dataflow cycles) and avoid simulating redundant interleavings
385    }
386
387    #[cfg(feature = "sim")]
388    #[test]
389    fn sim_cluster_membership() {
390        let mut flow = FlowBuilder::new();
391        let cluster = flow.cluster::<()>();
392        let node = flow.process::<()>();
393
394        let out_recv = node
395            .source_cluster_membership_stream(&cluster, nondet!(/** test */))
396            .entries()
397            .map(q!(|(id, v)| (id, v)))
398            .sim_output();
399
400        flow.sim()
401            .with_cluster_size(&cluster, 2)
402            .exhaustive(async || {
403                out_recv
404                    .assert_yields_only_unordered(vec![
405                        (MemberId::from_raw_id(0), MembershipEvent::Joined),
406                        (MemberId::from_raw_id(1), MembershipEvent::Joined),
407                    ])
408                    .await;
409            });
410    }
411}