This adds support for the `table.copy` instruction from the bulk memory
proposal. It also supports multiple tables, which were introduced by the
reference types proposal.
Part of #928
* Improve robustness of cache loading/storing
Today wasmtime incorrectly loads compiled compiled modules from the
global cache when toggling settings such as optimizations. For example
if you execute `wasmtime foo.wasm` that will cache globally an
unoptimized version of the wasm module. If you then execute `wasmtime -O
foo.wasm` it would then reload the unoptimized version from cache, not
realizing the compilation settings were different, and use that instead.
This can lead to very surprising behavior naturally!
This commit updates how the cache is managed in an attempt to make it
much more robust against these sorts of issues. This takes a leaf out of
rustc's playbook and models the cache with a function that looks like:
fn load<T: Hash>(
&self,
data: T,
compute: fn(T) -> CacheEntry,
) -> CacheEntry;
The goal here is that it guarantees that all the `data` necessary to
`compute` the result of the cache entry is hashable and stored into the
hash key entry. This was previously open-coded and manually managed
where items were hashed explicitly, but this construction guarantees
that everything reasonable `compute` could use to compile the module is
stored in `data`, which is itself hashable.
This refactoring then resulted in a few workarounds and a few fixes,
including the original issue:
* The `Module` type was split into `Module` and `ModuleLocal` where only
the latter is hashed. The previous hash function for a `Module` left
out items like the `start_func` and didn't hash items like the imports
of the module. Omitting the `start_func` was fine since compilation
didn't actually use it, but omitting imports seemed uncomfortable
because while compilation didn't use the import values it did use the
*number* of imports, which seems like it should then be put into the
cache key. The `ModuleLocal` type now derives `Hash` to guarantee that
all of its contents affect the hash key.
* The `ModuleTranslationState` from `cranelift-wasm` doesn't implement
`Hash` which means that we have a manual wrapper to work around that.
This will be fixed with an upstream implementation, since this state
affects the generated wasm code. Currently this is just a map of
signatures, which is present in `Module` anyway, so we should be good
for the time being.
* Hashing `dyn TargetIsa` was also added, where previously it was not
fully hashed. Previously only the target name was used as part of the
cache key, but crucially the flags of compilation were omitted (for
example the optimization flags). Unfortunately the trait object itself
is not hashable so we still have to manually write a wrapper to hash
it, but we likely want to add upstream some utilities to hash isa
objects into cranelift itself. For now though we can continue to add
hashed fields as necessary.
Overall the goal here was to use the compiler to expose what we're not
hashing, and then make sure we organize data and write the right code to
ensure everything is hashed, and nothing more.
* Update crates/environ/src/module.rs
Co-Authored-By: Peter Huene <peterhuene@protonmail.com>
* Fix lightbeam
* Fix compilation of tests
* Update the expected structure of the cache
* Revert "Update the expected structure of the cache"
This reverts commit 2b53fee426a4e411c313d8c1e424841ba304a9cd.
* Separate the cache dir a bit
* Add a test the cache is busted with opt levels
* rustfmt
Co-authored-by: Peter Huene <peterhuene@protonmail.com>
If write doesn't write the full buffer, start the next write at the
point where the write left off.
Also, usize `ssize_t` for the return types of `read` and `write`.
This commit renames `wasi_config_set_std[in|out|err]` to
`wasi_config_set_std[in|out|err]_file` so we can reserve the former for
when the C API supports a stream abstraction.
This commit makes `WasiCtxBuilder` take `&mut Self` and return `&mut
Self` for its methods. This is needed to allow for the same
(unmoved) `WasiCtxBuilder` to be used when building a WASI context.
Also fixes up the C API to remove the unnecessary `Box::from_raw` and
`forget` calls which were previously needed for the moving version of
`WasiCtxBuilder`.
* Update rust embed example (#967)
Ensures that the example works with the current API.
Drops mention of HostRef as the example is complete without it.
* Cleanup
This commit implements an initial WASI C API that can be used to instantiate
and configure a WASI instance from C.
This also implements a `WasiBuilder` for the C# API enabling .NET hosts to bind
to Wasmtime's WASI implementation.
* Optimize generated code via the CLI by default
This commit updates the behavior of the CLI and adds a new flag. It
first enables the `--optimize` flag by default, ensuring that usage of
the `wasmtime` CLI will enable cranelift optimizations by default. Next
it also adds a `--opt-level` flag which is similar to Rust's
`-Copt-level` where it takes a string argument of how to optimize. This
is updates to support 0/1/2/s, where 1 is currently the same as 2 but
added for consistency with other compilers. The default setting is
`--opt-level=2`.
When the `-O` flag is not passed the `--opt-level` flag is used,
otherwise `-O` takes precedent in the sense that it implies
`--opt-level=2` which is the highest optimization level. The thinking is
that these flags will in general select the highest optimization level
specified as the final optimization level.
* Add inline docs
* fix a test
This commit is an attempt to fix the issue pointed out at
https://github.com/bytecodealliance/wasmtime/issues/312#issuecomment-576429580
where our publication to pypi is failing (and causes our binary release
process to also fail). By updating the dependency here we should pull in
the necessary support to support the `packages_dir` option.
The `wasmtime` release procees seems like it's been a bit ad-hoc up to
this point, so I figured it'd be good to try to document what we do
today and codify what should be done as well as a form of release
checklist.
I've noticed that we have a number of releases (like v0.11.0) but the
`Cargo.toml` files in the repository don't reflect the current version
of `wasmtime`. Additionally I've noticed that the [most recent release]
ended up having failed tests because `Cargo.toml` was modified but
`Cargo.lock` wasn't updated. I'm hoping that by having a checklist we
can avoid these sorts of accidental issues in the future!
[release]: https://github.com/bytecodealliance/wasmtime/runs/434690272
This commit does a bit of everything: refactors bits here and there,
fixes a bug discovered in another #701, and combines all structs that
we used in `yanix` and `wasi-common` crates to represent file types
on *nix into one struct, `yanix::file::FileType`.
Up until now, in `yanix`, we've had two separate structs used to
represent file types on the host: `yanix::dir::FileType` and
`yanix::file::SFlags` (well, not quite, but that was its main use).
They both were used in different context (the former when parsing
`dirent` struct, and the latter when parsing `stat` struct), they
were C-compatible (as far as their representation goes), and as it
turns out, they shared possible enumeration values. This commit
combines them both into an idiomatic Rust enum with the caveat that
it is now *not* C-compatible, however, I couldn't find a single use
where that would actually matter, and even if it does in the future,
we can simply add appropriate impl methods.
The combine `yanix::file::FileType` struct can be constructed in two
ways: 1) either from `stat.st_mode` value (and while we're here,
now it's done correctly according to POSIX which fixes the bug mentioned
in VFS impl PR #701), or 2) from `dirent.d_type` value. Also, since we now
have one struct for representing both contexts, this cleans up nicely
a lot of duplicated code in `host` module.
This allows getN to return a detailed explanation of any type signature
mismatch, and makes it easy to just use `?` on the result of getN rather
than constructing a (necessarily vaguer) error message in the caller.
* Cargo.lock: Update, to no longer use multiple versions of autocfg
* Update wasmtime-debug and wasmtime-profiling to current gimli 0.20.0
This also eliminates duplicate versions of gimli and arrayvec, and
eliminates the nodrop dependency entirely.
* Update wasmtime-profiling to goblin 0.1.3 and object 0.17.0
This also eliminates two duplicate versions of goblin, and duplicate
versions of proc-macro2, quote, syn, scroll_derive, and unicode-xid.
* Update wasmtime-profiling to current scroll 0.10.1
This eliminates duplicate versions of scroll.
* Update wasmtime-profiling to current target-lexicon 0.10.0
This eliminates duplicate versions of target-lexicon.
* Update wasmtime-interface-types to current walrus and wasm-webidl-bindings
This also eliminates the oldest of the three duplicate versions of
wasmparser.
* Update wasmtime-wast to current wast 8.0.0
This eliminates one of the duplicate versions of wast.
* Func: Number type arguments rather than using successive letters
This simplifies future extension, and avoids potential conflicts with
other type argument names.
* Extend Func::getN up to get10, allowing up to 10-argument functions
Patch adds support for the perf jitdump file specification.
With this patch it should be possible to see profile data for code
generated and maped at runtime. Specifically the patch adds support
for the JIT_CODE_LOAD and the JIT_DEBUG_INFO record as described in
the specification. Dumping jitfiles is enabled with the --jitdump
flag. When the -g flag is also used there is an attempt to dump file
and line number information where this option would be most useful
when the WASM file already includes DWARF debug information.
The generation of the jitdump files has been tested on only a few wasm
files. This patch is expected to be useful/serviceable where currently
there is no means for jit profiling, but future patches may benefit
line mapping and add support for additional jitdump record types.
Usage Example:
Record
sudo perf record -k 1 -e instructions:u target/debug/wasmtime -g
--jitdump test.wasm
Combine
sudo perf inject -v -j -i perf.data -o perf.jit.data
Report
sudo perf report -i perf.jit.data -F+period,srcline
We've got some OOM fuzz test cases getting reported, but these aren't
very interesting. The OOMs, after some investigation, are confirmed to
be happening because the test is simply allocating thousands of
instances with massive tables, quickly exceeding the 2GB memory
threshold for fuzzing. This isn't really interesting because this is
expected behavior if you instantiate these sorts of modules.
This commit updates the fuzz test case generator to have a "prediction"
for each module how much memory it will take to instantiate it. This
prediction is then used to avoid instantiating new modules if we predict
that it will exceed our memory limit. The limits here are intentionally
very squishy and imprecise. The goal here is to still generate lots of
interesting test cases, but not ones that simply exhaust memory
trivially.
* witx tagged unions: updates to wig to use new semantics
* wig: emit a `#variant: ()` union variant for empty variants
* wasi-common: translate to use tagged unions
* update to flattened layout of event struct
* wig: generate layout tests, and delete bindgen ones
the bindgen tests became out-of-date with the latest changes to the
representation of unions, and the re-jiggering of various struct
definitions that went along with it.
* wasi: point at master with tagged union PR merged
* fix event struct repr on windows
* Add API to statically assert signature of a `Func`
This commit add a family of APIs to `Func` named `getN` where `N` is the
number of arguments. Each function will attempt to statically assert the
signature of a `Func` and, if matching, returns a corresponding closure
which can be used to invoke the underlying function.
The purpose of this commit is to add a highly optimized way to enter a
wasm module, performing type checks up front and avoiding all the costs
of boxing and unboxing arguments within a `Val`. In general this should
be much more optimized than the previous `call` API for entering a wasm
module, if the signature is statically known.
* rustfmt
* Remove stray debugging
This commit shrinks the `RelocationTarget` enumeration to remove
intrinsic-related relocations since they are no longer used. Instead
these function calls are done indirectly via a table in the `VMContext`.
This means that all of this is essentially dead code!
* Fix a possible use-after-free with `Global`
This commit fixes an issue with the implementation of the
`wasmtime::Global` type where if it previously outlived the original
`Instance` it came from then you could run into a use-after-free. Now
the `Global` type holds onto its underlying `InstanceHandle` to ensure
it retains ownership of the underlying backing store of the global's
memory.
* rustfmt