peepmatic: Be generic over the operator type
This lets us avoid the cost of `cranelift_codegen::ir::Opcode` to `peepmatic_runtime::Operator` conversion overhead, and paves the way for allowing Peepmatic to support non-clif optimizations (e.g. vcode optimizations). Rather than defining our own `peepmatic::Operator` type like we used to, now the whole `peepmatic` crate is effectively generic over a `TOperator` type parameter. For the Cranelift integration, we use `cranelift_codegen::ir::Opcode` as the concrete type for our `TOperator` type parameter. For testing, we also define a `TestOperator` type, so that we can test Peepmatic code without building all of Cranelift, and we can keep them somewhat isolated from each other. The methods that `peepmatic::Operator` had are now translated into trait bounds on the `TOperator` type. These traits need to be shared between all of `peepmatic`, `peepmatic-runtime`, and `cranelift-codegen`'s Peepmatic integration. Therefore, these new traits live in a new crate: `peepmatic-traits`. This crate acts as a header file of sorts for shared trait/type/macro definitions. Additionally, the `peepmatic-runtime` crate no longer depends on the `peepmatic-macro` procedural macro crate, which should lead to faster build times for Cranelift when it is using pre-built peephole optimizers.
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@@ -11,14 +11,8 @@ use syn::{parse_macro_input, Ident, Result};
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mod child_nodes;
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mod into_dyn_ast_ref;
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mod operator;
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mod span;
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#[proc_macro_derive(PeepmaticOperator, attributes(peepmatic))]
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pub fn operator(input: TokenStream) -> TokenStream {
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operator::derive_operator(input)
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}
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#[proc_macro_derive(Ast, attributes(peepmatic))]
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pub fn derive_ast(input: TokenStream) -> TokenStream {
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let input = parse_macro_input!(input as DeriveInput);
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