1 //! This module provides a set of primitives that allow implementing an incremental cache on top of
2 //! Cranelift, making it possible to reuse previous compiled artifacts for functions that have been
3 //! compiled previously.
4 //!
5 //! This set of operation is experimental and can be enabled using the Cargo feature
6 //! `incremental-cache`.
7 //!
8 //! This can bring speedups in different cases: change-code-and-immediately-recompile iterations
9 //! get faster, modules sharing lots of code can reuse each other's artifacts, etc.
10 //!
11 //! The three main primitives are the following:
12 //! - `compute_cache_key` is used to compute the cache key associated to a `Function`. This is
13 //! basically the content of the function, modulo a few things the caching system is resilient to.
14 //! - `serialize_compiled` is used to serialize the result of a compilation, so it can be reused
15 //! later on by...
16 //! - `try_finish_recompile`, which reads binary blobs serialized with `serialize_compiled`,
17 //! re-creating the compilation artifact from those.
18 //!
19 //! The `CacheStore` trait and `Context::compile_with_cache` method are provided as
20 //! high-level, easy-to-use facilities to make use of that cache, and show an example of how to use
21 //! the above three primitives to form a full incremental caching system.
22 
23 use core::fmt;
24 
25 use crate::alloc::string::String;
26 use crate::alloc::vec::Vec;
27 use crate::ir::function::{FunctionStencil, VersionMarker};
28 use crate::ir::Function;
29 use crate::machinst::{CompiledCode, CompiledCodeStencil};
30 use crate::result::CompileResult;
31 use crate::{isa::TargetIsa, timing};
32 use crate::{trace, CompileError, Context};
33 use alloc::borrow::{Cow, ToOwned as _};
34 use alloc::string::ToString as _;
35 use cranelift_control::ControlPlane;
36 
37 impl Context {
38     /// Compile the function, as in `compile`, but tries to reuse compiled artifacts from former
39     /// compilations using the provided cache store.
40     pub fn compile_with_cache(
41         &mut self,
42         isa: &dyn TargetIsa,
43         cache_store: &mut dyn CacheKvStore,
44         ctrl_plane: &mut ControlPlane,
45     ) -> CompileResult<(&CompiledCode, bool)> {
46         let cache_key_hash = {
47             let _tt = timing::try_incremental_cache();
48 
49             let cache_key_hash = compute_cache_key(isa, &self.func);
50 
51             if let Some(blob) = cache_store.get(&cache_key_hash.0) {
52                 match try_finish_recompile(&self.func, &blob) {
53                     Ok(compiled_code) => {
54                         let info = compiled_code.code_info();
55 
56                         if isa.flags().enable_incremental_compilation_cache_checks() {
57                             let actual_result = self.compile(isa, ctrl_plane)?;
58                             assert_eq!(*actual_result, compiled_code);
59                             assert_eq!(actual_result.code_info(), info);
60                             // no need to set `compiled_code` here, it's set by `compile()`.
61                             return Ok((actual_result, true));
62                         }
63 
64                         let compiled_code = self.compiled_code.insert(compiled_code);
65                         return Ok((compiled_code, true));
66                     }
67                     Err(err) => {
68                         trace!("error when finishing recompilation: {err}");
69                     }
70                 }
71             }
72 
73             cache_key_hash
74         };
75 
76         let stencil = self
77             .compile_stencil(isa, ctrl_plane)
78             .map_err(|err| CompileError {
79                 inner: err,
80                 func: &self.func,
81             })?;
82 
83         let stencil = {
84             let _tt = timing::store_incremental_cache();
85             let (stencil, res) = serialize_compiled(stencil);
86             if let Ok(blob) = res {
87                 cache_store.insert(&cache_key_hash.0, blob);
88             }
89             stencil
90         };
91 
92         let compiled_code = self
93             .compiled_code
94             .insert(stencil.apply_params(&self.func.params));
95 
96         Ok((compiled_code, false))
97     }
98 }
99 
100 /// Backing storage for an incremental compilation cache, when enabled.
101 pub trait CacheKvStore {
102     /// Given a cache key hash, retrieves the associated opaque serialized data.
103     fn get(&self, key: &[u8]) -> Option<Cow<[u8]>>;
104 
105     /// Given a new cache key and a serialized blob obtained from `serialize_compiled`, stores it
106     /// in the cache store.
107     fn insert(&mut self, key: &[u8], val: Vec<u8>);
108 }
109 
110 /// Hashed `CachedKey`, to use as an identifier when looking up whether a function has already been
111 /// compiled or not.
112 #[derive(Clone, Hash, PartialEq, Eq)]
113 pub struct CacheKeyHash([u8; 32]);
114 
115 impl std::fmt::Display for CacheKeyHash {
116     fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
117         write!(f, "CacheKeyHash:{:?}", self.0)
118     }
119 }
120 
121 #[derive(serde_derive::Serialize, serde_derive::Deserialize)]
122 struct CachedFunc {
123     // Note: The version marker must be first to ensure deserialization stops in case of a version
124     // mismatch before attempting to deserialize the actual compiled code.
125     version_marker: VersionMarker,
126     stencil: CompiledCodeStencil,
127 }
128 
129 /// Key for caching a single function's compilation.
130 ///
131 /// If two functions get the same `CacheKey`, then we can reuse the compiled artifacts, modulo some
132 /// fixups.
133 ///
134 /// Note: the key will be invalidated across different versions of cranelift, as the
135 /// `FunctionStencil` contains a `VersionMarker` itself.
136 #[derive(Hash)]
137 struct CacheKey<'a> {
138     stencil: &'a FunctionStencil,
139     parameters: CompileParameters,
140 }
141 
142 #[derive(Clone, PartialEq, Hash, serde_derive::Serialize, serde_derive::Deserialize)]
143 struct CompileParameters {
144     isa: String,
145     triple: String,
146     flags: String,
147     isa_flags: Vec<String>,
148 }
149 
150 impl CompileParameters {
151     fn from_isa(isa: &dyn TargetIsa) -> Self {
152         Self {
153             isa: isa.name().to_owned(),
154             triple: isa.triple().to_string(),
155             flags: isa.flags().to_string(),
156             isa_flags: isa
157                 .isa_flags()
158                 .into_iter()
159                 .map(|v| v.value_string())
160                 .collect(),
161         }
162     }
163 }
164 
165 impl<'a> CacheKey<'a> {
166     /// Creates a new cache store key for a function.
167     ///
168     /// This is a bit expensive to compute, so it should be cached and reused as much as possible.
169     fn new(isa: &dyn TargetIsa, f: &'a Function) -> Self {
170         CacheKey {
171             stencil: &f.stencil,
172             parameters: CompileParameters::from_isa(isa),
173         }
174     }
175 }
176 
177 /// Compute a cache key, and hash it on your behalf.
178 ///
179 /// Since computing the `CacheKey` is a bit expensive, it should be done as least as possible.
180 pub fn compute_cache_key(isa: &dyn TargetIsa, func: &Function) -> CacheKeyHash {
181     use core::hash::{Hash as _, Hasher};
182     use sha2::Digest as _;
183 
184     struct Sha256Hasher(sha2::Sha256);
185 
186     impl Hasher for Sha256Hasher {
187         fn finish(&self) -> u64 {
188             panic!("Sha256Hasher doesn't support finish!");
189         }
190         fn write(&mut self, bytes: &[u8]) {
191             self.0.update(bytes);
192         }
193     }
194 
195     let cache_key = CacheKey::new(isa, func);
196 
197     let mut hasher = Sha256Hasher(sha2::Sha256::new());
198     cache_key.hash(&mut hasher);
199     let hash: [u8; 32] = hasher.0.finalize().into();
200 
201     CacheKeyHash(hash)
202 }
203 
204 /// Given a function that's been successfully compiled, serialize it to a blob that the caller may
205 /// store somewhere for future use by `try_finish_recompile`.
206 ///
207 /// As this function requires ownership on the `CompiledCodeStencil`, it gives it back at the end
208 /// of the function call. The value is left untouched.
209 pub fn serialize_compiled(
210     result: CompiledCodeStencil,
211 ) -> (CompiledCodeStencil, Result<Vec<u8>, postcard::Error>) {
212     let cached = CachedFunc {
213         version_marker: VersionMarker,
214         stencil: result,
215     };
216     let result = postcard::to_allocvec(&cached);
217     (cached.stencil, result)
218 }
219 
220 /// An error returned when recompiling failed.
221 #[derive(Debug)]
222 pub enum RecompileError {
223     /// The version embedded in the cache entry isn't the same as cranelift's current version.
224     VersionMismatch,
225     /// An error occurred while deserializing the cache entry.
226     Deserialize(postcard::Error),
227 }
228 
229 impl fmt::Display for RecompileError {
230     fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
231         match self {
232             RecompileError::VersionMismatch => write!(f, "cranelift version mismatch",),
233             RecompileError::Deserialize(err) => {
234                 write!(f, "postcard failed during deserialization: {err}")
235             }
236         }
237     }
238 }
239 
240 /// Given a function that's been precompiled and its entry in the caching storage, try to shortcut
241 /// compilation of the given function.
242 ///
243 /// Precondition: the bytes must have retrieved from a cache store entry which hash value
244 /// is strictly the same as the `Function`'s computed hash retrieved from `compute_cache_key`.
245 pub fn try_finish_recompile(func: &Function, bytes: &[u8]) -> Result<CompiledCode, RecompileError> {
246     match postcard::from_bytes::<CachedFunc>(bytes) {
247         Ok(result) => {
248             if result.version_marker != func.stencil.version_marker {
249                 Err(RecompileError::VersionMismatch)
250             } else {
251                 Ok(result.stencil.apply_params(&func.params))
252             }
253         }
254         Err(err) => Err(RecompileError::Deserialize(err)),
255     }
256 }
257