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behavior_macros/
lib.rs

1//! `behavior-macros` — proc-macros for the behavior algebra.
2//!
3//! `workers!` compiles a mixed fleet declaration into the erasure-free sum
4//! a `Supervisor` fleet requires (design: actorpass docs, surface talk #2):
5//! `(count, Type, build_fn)` per worker kind → a `Crew` enum with a
6//! delegated `Behavior` impl, a per-variant range `crew_build`, and the
7//! total count. `Crew` is a TYPE — every worker stays its own actor.
8//!
9//! v1 scope: every worker kind shares the SAME protocol (`Event`, `Sends`,
10//! `Error`, and `Birth` — taken from the first kind). Mixed
11//! protocols need the hand-written sum (the `CrewMsg` widening is a
12//! deliberate, documented step — not this macro's job yet).
13
14use proc_macro::TokenStream;
15use proc_macro_crate::{FoundCrate, crate_name};
16use proc_macro2::Span;
17use quote::{format_ident, quote};
18use syn::parse::{Parse, ParseStream};
19use syn::punctuated::Punctuated;
20use syn::{
21    Error, Expr, FnArg, ImplItem, ItemImpl, LitInt, Result, ReturnType, Token, Type,
22    parse_macro_input,
23};
24
25mod behavior_kw {
26    syn::custom_keyword!(addr);
27    syn::custom_keyword!(message);
28    syn::custom_keyword!(sends);
29    syn::custom_keyword!(births);
30    syn::custom_keyword!(error);
31}
32
33fn behavior_crate() -> Result<proc_macro2::TokenStream> {
34    if std::env::var("CARGO_PKG_NAME").as_deref() == Ok("bombay-behavior") {
35        // This package deliberately exposes the library target as `behavior`,
36        // not Cargo's normalized package name `bombay_behavior`. The same path
37        // works in its unit, integration, and rustdoc crates.
38        return Ok(quote!(::behavior));
39    }
40    match crate_name("bombay-behavior") {
41        Ok(FoundCrate::Itself) => Ok(quote!(::behavior)),
42        Ok(FoundCrate::Name(name)) => {
43            let name = syn::Ident::new(&name, Span::call_site());
44            Ok(quote!(::#name))
45        }
46        Err(error) => Err(Error::new(
47            Span::call_site(),
48            format!("could not resolve the bombay-behavior crate: {error}"),
49        )),
50    }
51}
52
53struct BehaviorArgs {
54    addr: Type,
55    message: Type,
56    sends: Type,
57    births: Type,
58    error: Type,
59}
60
61impl Parse for BehaviorArgs {
62    fn parse(input: ParseStream) -> Result<Self> {
63        input.parse::<behavior_kw::addr>()?;
64        input.parse::<Token![=]>()?;
65        let addr = input.parse()?;
66        input.parse::<Token![,]>()?;
67        input.parse::<behavior_kw::message>()?;
68        input.parse::<Token![=]>()?;
69        let message = input.parse()?;
70        input.parse::<Token![,]>()?;
71        input.parse::<behavior_kw::sends>()?;
72        input.parse::<Token![=]>()?;
73        let sends = input.parse()?;
74        input.parse::<Token![,]>()?;
75        input.parse::<behavior_kw::births>()?;
76        input.parse::<Token![=]>()?;
77        let births = input.parse()?;
78        input.parse::<Token![,]>()?;
79        input.parse::<behavior_kw::error>()?;
80        input.parse::<Token![=]>()?;
81        let error = input.parse()?;
82        if input.peek(Token![,]) {
83            input.parse::<Token![,]>()?;
84        }
85        if !input.is_empty() {
86            return Err(input
87                .error("expected exactly addr, message, sends, births, and error in that order"));
88        }
89        Ok(Self {
90            addr,
91            message,
92            sends,
93            births,
94            error,
95        })
96    }
97}
98
99fn validate_receiver(method: &syn::ImplItemFn) -> Result<()> {
100    let Some(FnArg::Receiver(receiver)) = method.sig.inputs.first() else {
101        return Err(Error::new_spanned(
102            &method.sig,
103            "behavior methods must begin with &mut self",
104        ));
105    };
106    if !matches!(receiver.kind, syn::ReceiverKind::Reference(_, _, Some(_))) {
107        return Err(Error::new_spanned(
108            receiver,
109            "behavior methods must begin with &mut self",
110        ));
111    }
112    if method.sig.constness.is_some()
113        || method.sig.asyncness.is_some()
114        || matches!(method.sig.safety, syn::Safety::Unsafe(_))
115        || !method.sig.generics.params.is_empty()
116    {
117        return Err(Error::new_spanned(
118            &method.sig,
119            "behavior init and receive methods must be synchronous, safe, and non-generic",
120        ));
121    }
122    if matches!(method.sig.output, ReturnType::Default) {
123        return Err(Error::new_spanned(
124            &method.sig,
125            "behavior methods must declare their complete Actions result type",
126        ));
127    }
128    Ok(())
129}
130
131/// Generate the mechanical `Behavior` implementation for a normal inherent
132/// impl containing `init(&mut self)` and `receive(&mut self, from, message)`.
133/// The original impl and methods are preserved unchanged.
134#[proc_macro_attribute]
135pub fn behavior(args: TokenStream, item: TokenStream) -> TokenStream {
136    let args = parse_macro_input!(args as BehaviorArgs);
137    let item = parse_macro_input!(item as ItemImpl);
138
139    if item.trait_.is_some() {
140        return Error::new_spanned(
141            &item,
142            "#[behavior] applies to an inherent impl, not a trait impl",
143        )
144        .to_compile_error()
145        .into();
146    }
147
148    let init = item.items.iter().find_map(|item| match item {
149        ImplItem::Fn(method) if method.sig.ident == "init" => Some(method),
150        _ => None,
151    });
152    let receive = item.items.iter().find_map(|item| match item {
153        ImplItem::Fn(method) if method.sig.ident == "receive" => Some(method),
154        _ => None,
155    });
156    let Some(init) = init else {
157        return Error::new_spanned(
158            &item.self_ty,
159            "#[behavior] requires an init(&mut self) method",
160        )
161        .to_compile_error()
162        .into();
163    };
164    let Some(receive) = receive else {
165        return Error::new_spanned(
166            &item.self_ty,
167            "#[behavior] requires a receive(&mut self, from, message) method",
168        )
169        .to_compile_error()
170        .into();
171    };
172    if let Err(error) = validate_receiver(init).and_then(|()| validate_receiver(receive)) {
173        return error.to_compile_error().into();
174    }
175    if init.sig.inputs.len() != 1 {
176        return Error::new_spanned(&init.sig, "init must accept exactly &mut self")
177            .to_compile_error()
178            .into();
179    }
180    if receive.sig.inputs.len() != 3 {
181        return Error::new_spanned(
182            &receive.sig,
183            "receive must accept exactly &mut self, from, and message",
184        )
185        .to_compile_error()
186        .into();
187    }
188
189    let BehaviorArgs {
190        addr,
191        message,
192        sends,
193        births,
194        error,
195    } = args;
196    let self_ty = &item.self_ty;
197    let (impl_generics, _, where_clause) = item.generics.split_for_impl();
198    let behavior = match behavior_crate() {
199        Ok(behavior) => behavior,
200        Err(error) => return error.to_compile_error().into(),
201    };
202
203    quote! {
204        #item
205
206        impl #impl_generics #behavior::Behavior for #self_ty #where_clause {
207            type Addr = #addr;
208            type Msg = #message;
209            type Event = #behavior::User<#addr, #message>;
210            type Sends = #sends;
211            type Ph = #behavior::Never;
212            type Error = #error;
213            type Birth = #births;
214
215            fn init(&mut self) -> #behavior::BehaviorActed<Self> {
216                <#self_ty>::init(self)
217            }
218
219            fn transition(
220                &mut self,
221                event: Self::Event,
222            ) -> #behavior::BehaviorActed<Self> {
223                <#self_ty>::receive(self, event.from, event.message)
224            }
225        }
226    }
227    .into()
228}
229
230/// One `(count, Type, build_fn)` worker-kind spec.
231struct Compose {
232    count: LitInt,
233    ty: Type,
234    build: Expr,
235}
236
237impl Parse for Compose {
238    fn parse(input: ParseStream) -> Result<Self> {
239        let content;
240        syn::parenthesized!(content in input);
241        let count: Expr = content.parse()?;
242        let Expr::Lit(syn::ExprLit {
243            lit: syn::Lit::Int(count),
244            ..
245        }) = count
246        else {
247            return Err(Error::new_spanned(
248                count,
249                "worker count must be a usize literal (ranges are computed at expansion)",
250            ));
251        };
252        content.parse::<Token![,]>()?;
253        let ty: Type = content.parse()?;
254        content.parse::<Token![,]>()?;
255        let build: Expr = content.parse()?;
256        Ok(Compose { count, ty, build })
257    }
258}
259
260struct Specs(Punctuated<Compose, Token![,]>);
261
262impl Parse for Specs {
263    fn parse(input: ParseStream) -> Result<Self> {
264        Ok(Specs(Punctuated::parse_terminated(input)?))
265    }
266}
267
268/// `workers![(4, WorkerA, build_a), (2, WorkerB, build_b)]` → a block
269/// declaring the `Crew` sum and yielding `(total, crew_build)` for
270/// `Supervisor`'s fleet. Slots are contiguous per variant (slot = nonce;
271/// rest-for-one's birth order is the declaration order).
272#[proc_macro]
273pub fn workers(input: TokenStream) -> TokenStream {
274    let Specs(specs) = parse_macro_input!(input as Specs);
275    let specs: Vec<Compose> = specs.into_iter().collect();
276    if specs.is_empty() {
277        return Error::new(
278            proc_macro2::Span::call_site(),
279            "workers! needs at least one (count, Type, build_fn) spec",
280        )
281        .to_compile_error()
282        .into();
283    }
284
285    let first_ty = &specs[0].ty;
286    let behavior = match behavior_crate() {
287        Ok(behavior) => behavior,
288        Err(error) => return error.to_compile_error().into(),
289    };
290    let variants: Vec<_> = specs
291        .iter()
292        .enumerate()
293        .map(|(i, _)| format_ident!("V{i}"))
294        .collect();
295    let variant_defs = specs.iter().zip(&variants).map(|(s, v)| {
296        let ty = &s.ty;
297        quote! { #v(#ty) }
298    });
299
300    let mut start = 0_usize;
301    let mut build_arms = Vec::new();
302    for (s, v) in specs.iter().zip(&variants) {
303        let n: usize = match s.count.base10_parse() {
304            Ok(n) => n,
305            Err(e) => return e.to_compile_error().into(),
306        };
307        let end = start + n;
308        let build = &s.build;
309        build_arms.push(quote! { #start..#end => Crew::#v((#build)(i)) });
310        start = end;
311    }
312    let total = start;
313
314    let step_arms = variants
315        .iter()
316        .map(|v| quote! { Crew::#v(b) => b.transition(ev) });
317    let init_arms = variants.iter().map(|v| quote! { Crew::#v(b) => b.init() });
318
319    let out = quote! {
320        {
321            /// The macro-generated mixed-fleet sum (see `workers!`).
322            enum Crew {
323                #(#variant_defs),*
324            }
325
326            impl #behavior::Behavior for Crew {
327                type Addr = <#first_ty as #behavior::Behavior>::Addr;
328                type Msg = <#first_ty as #behavior::Behavior>::Msg;
329                type Event = <#first_ty as #behavior::Behavior>::Event;
330                type Sends = <#first_ty as #behavior::Behavior>::Sends;
331                type Ph = #behavior::Never;
332                type Error = <#first_ty as #behavior::Behavior>::Error;
333                type Birth = <#first_ty as #behavior::Behavior>::Birth;
334
335                fn init(&mut self) -> ::core::result::Result<
336                    #behavior::Actions<Self::Addr, Self::Ph, Self::Sends, Self::Birth>,
337                    Self::Error,
338                > {
339                    match self {
340                        #(#init_arms),*
341                    }
342                }
343
344                fn transition(
345                    &mut self,
346                    ev: Self::Event,
347                ) -> ::core::result::Result<
348                    #behavior::Actions<Self::Addr, Self::Ph, Self::Sends, Self::Birth>,
349                    Self::Error,
350                > {
351                    match self {
352                        #(#step_arms),*
353                    }
354                }
355
356            }
357
358            fn crew_build(i: usize) -> Crew {
359                match i {
360                    #(#build_arms,)*
361                    _ => unreachable!("workers!: fleet index out of range — driver/behavior desync"),
362                }
363            }
364
365            (#total, crew_build as fn(usize) -> Crew)
366        }
367    };
368    out.into()
369}