This is an implementation of P1061 Structure Bindings Introduce a Pack
without the ability to use packs outside of templates. There is a couple
of ways the AST could have been sliced so let me know what you think.
The only part of this change that I am unsure of is the
serialization/deserialization stuff. I followed the implementation of
other Exprs, but I do not really know how it is tested. Thank you for
your time considering this.
---------
Co-authored-by: Yanzuo Liu <zwuis@outlook.com>
This PR removes the old `nocapture` attribute, replacing it with the new
`captures` attribute introduced in #116990. This change is
intended to be essentially NFC, replacing existing uses of `nocapture`
with `captures(none)` without adding any new analysis capabilities.
Making use of non-`none` values is left for a followup.
Some notes:
* `nocapture` will be upgraded to `captures(none)` by the bitcode
reader.
* `nocapture` will also be upgraded by the textual IR reader. This is to
make it easier to use old IR files and somewhat reduce the test churn in
this PR.
* Helper APIs like `doesNotCapture()` will check for `captures(none)`.
* MLIR import will convert `captures(none)` into an `llvm.nocapture`
attribute. The representation in the LLVM IR dialect should be updated
separately.
When no vtable is emitted in the debug info because a record was marked
`__declspec(novtable)`, only a forward declaration of that type will be
emitted. This PR fixes that by not omitting the definition for the
`RecordDecl` in this case.
Fixes#124638.
HandleImmediateInvocation can call MarkExpressionAsImmediateEscalating
and should always be called before
CheckImmediateEscalatingFunctionDefinition.
However, we were not doing that in `ActFunctionBody`.
Fixes#119046
HandleImmediateInvocation can call MarkExpressionAsImmediateEscalating
and should always be called before
CheckImmediateEscalatingFunctionDefinition.
However, we were not doing that in `ActFunctionBody`.
We simply move CheckImmediateEscalatingFunctionDefinition to
PopExpressionEvaluationContext.
Fixes#119046
Reimplement Neon FP8 vector types using attribute `neon_vector_type`
instead of having them as builtin types.
This allows to implement FP8 Neon intrinsics without the need to add
special cases for these types when using `__builtin_shufflevector`
or bitcast (using C-style cast operator) between vectors, both
extensively used in the generated code in `arm_neon.h`.
These cannot be detected by reading the ID_AA64ISAR1_EL1 register since
their corresponding bitfields are hidden. Additionally the instructions
that these features enable are unusable from EL0.
ACLE: https://github.com/ARM-software/acle/pull/382
This fixes a bug where a member function pointer signed using a function type with noexcept as the discriminator was being authenticated using a function type without noexcept.
Fixes https://github.com/llvm/llvm-project/issues/106487.
Clang uses a long-time special handling of the case where 3 element
vector loads and stores are performed as 4 element, and then a
shufflevector is used to extract the used elements. Odd sized vector
codegen should now work reasonably well.
This patch removes the compiler argument `-fpreserve-vec3-type` and adds
a target hook to determine if the special handling of vector type is
needed.
---------
Co-authored-by: Matt Arsenault <Matthew.Arsenault@amd.com>
When we did the initial AMDGCNSPIRV commits we left the initialisation
of the feature map in a relatively disorderly state. This change
corrects that oversight:
- We make sure that AMDGCNSPIRV actually advertises the union of all
AMDGCN features, as some were not included;
- We keep feature initialisation in sorted order to make it easy to pick
an insertion point when features are added in the future.
In preparation of making `-Wreturn-type` default to an error (as there
is virtually no situation where you’d *want* to fall off the end of a
function that is supposed to return a value), this patch fixes tests
that have relied on this being only a warning, of which there seem
to be 3 kinds:
1. Tests which for no apparent reason have a function that triggers the
warning.
I suspect that a lot of these were on accident (or from before the
warning was introduced), since a lot of people will open issues w/ their
problematic code in the `main` function (which is the one case where you
don’t need to return from a non-void function, after all...), which
someone will then copy, possibly into a namespace, possibly renaming it,
the end result of that being that you end up w/ something that
definitely is not `main` anymore, but which still is declared as
returning `int`, and which still has no return statement (another reason
why I think this might apply to a lot of these is because usually the
actual return type of such problematic functions is quite literally
`int`).
A lot of these are really old tests that don’t use `-verify`, which is
why no-one noticed or had to care about the extra warning that was
already being emitted by them until now.
2. Tests which test either `-Wreturn-type`, `[[noreturn]]`, or what
codegen and sanitisers do whenever you do fall off the end of a
function.
3. Tests where I struggle to figure out what is even being tested
(usually because they’re Objective-C tests, and I don’t know
Objective-C), whether falling off the end of a function matters in the
first place, and tests where actually spelling out an expression to
return would be rather cumbersome (e.g. matrix types currently don’t
support list initialisation, so I can’t write e.g. `return {}`).
For tests that fall into categories 2 and 3, I just added
`-Wno-error=return-type` to the `RUN` lines and called it a day. This
was especially necessary for the former since `-Wreturn-type` is an
analysis-based warning, meaning that it is currently impossible to test
for more than one occurrence of it in the same compilation if it
defaults to an error since the analysis pass is skipped for subsequent
functions as soon as an error is emitted.
I’ve also added `-Werror=return-type` to a few tests that I had already
updated as this patch was previously already making the warning an error
by default, but we’ve decided to split that into two patches instead.
This reverts commit c3a935e3f967f8f22f5db240d145459ee621c1e0.
The only change to the reverted commit is that this also updates
the OCaml bindings according to the C debug-info API changes.
The build failure originally introduced was:
```
FAILED: bindings/ocaml/debuginfo/debuginfo_ocaml.o /b/1/llvm-clang-x86_64-expensive-checks-debian/build/bindings/ocaml/debuginfo/debuginfo_ocaml.o
cd /b/1/llvm-clang-x86_64-expensive-checks-debian/build/bindings/ocaml/debuginfo && /usr/bin/ocamlfind ocamlc -c /b/1/llvm-clang-x86_64-expensive-checks-debian/build/bindings/ocaml/debuginfo/debuginfo_ocaml.c -ccopt "-I/b/1/llvm-clang-x86_64-expensive-checks-debian/llvm-project/llvm/bindings/ocaml/debuginfo/../llvm -D_GNU_SOURCE -D_DEBUG -D_GLIBCXX_ASSERTIONS -DEXPENSIVE_CHECKS -D_GLIBCXX_DEBUG -D__STDC_CONSTANT_MACROS -D__STDC_FORMAT_MACROS -D__STDC_LIMIT_MACROS -I/b/1/llvm-clang-x86_64-expensive-checks-debian/build/include -I/b/1/llvm-clang-x86_64-expensive-checks-debian/llvm-project/llvm/include -DNDEBUG "
/b/1/llvm-clang-x86_64-expensive-checks-debian/build/bindings/ocaml/debuginfo/debuginfo_ocaml.c: In function ‘llvm_dibuild_create_object_pointer_type’:
/b/1/llvm-clang-x86_64-expensive-checks-debian/build/bindings/ocaml/debuginfo/debuginfo_ocaml.c:620:30: error: too few arguments to function ‘LLVMDIBuilderCreateObjectPointerType’
620 | LLVMMetadataRef Metadata = LLVMDIBuilderCreateObjectPointerType(
| ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
In file included from /b/1/llvm-clang-x86_64-expensive-checks-debian/build/bindings/ocaml/debuginfo/debuginfo_ocaml.c:23:
/b/1/llvm-clang-x86_64-expensive-checks-debian/llvm-project/llvm/include/llvm-c/DebugInfo.h:880:17: note: declared here
880 | LLVMMetadataRef LLVMDIBuilderCreateObjectPointerType(LLVMDIBuilderRef Builder,
| ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
```
We currently don't emit `DW_AT_object_pointer` on function declarations
or definitions. GCC suffers from the same issue:
https://godbolt.org/z/h4jeT54G5
Fixing this will help LLDB in identifying static vs. non-static member
functions (see https://github.com/llvm/llvm-project/issues/120856).
If I interpreted the DWARFv5 spec correctly, it doesn't mandate this
attribute be present *only* for implicit object parameters:
```
If the member function entry describes a non-static member function,
then that entry has a DW_AT_object_pointer attribute whose value is a reference to
the formal parameter entry that corresponds to the object for which the
function is called.
That parameter also has a DW_AT_artificial attribute whose value is true.
```
This patch attaches the `DW_AT_object_pointer` for function
*defintions*. The declarations will be handled in a separate patch.
The part about `DW_AT_artificial` seems overly restrictive, and not true
for explicit object parameters. We probably should relax this part of
the DWARF spec.
Partially fixes https://github.com/llvm/llvm-project/issues/120974
The fix for passing Pure Scalable Types
(https://github.com/llvm/llvm-project/pull/112747) was incomplete,
it didn't handle correctly tuples of SVE vectors (e.g. `sveboolx2_t`,
`svfloat32x4_t`, etc).
These types are Pure Scalable Types and should be passed either entirely
in vector registers
or indirectly in memory, not split.
Currently we need at least one more version other than the default to
trigger FMV. However we would like a header file declaration
__attribute__((target_version("default"))) void f(void);
to guarantee that there will be f.default
This fixes a crash when instantiating default arguments for templated
friend function declarations which lack a definition.
There are implementation limits which prevents us from finding the
pattern for such functions, and this causes difficulties
setting up the instantiation scope for the function parameters.
This patch skips instantiating the default argument in these cases,
which causes a minor regression in error recovery, but otherwise avoids
the crash.
The previous attempt #113777 accidentally skipped all default argument
constructions, causing some regressions. This patch resolves that by
moving the guard to InstantiateDefaultArgument() where the handling of
templates takes place.
Fixes https://github.com/llvm/llvm-project/issues/113324
This is a rebase of #95112 with my own feedback apply as @MitalAshok has
been inactive for a while.
It's fairly important this makes clang 20 as it is a blocker for #107451
---
[CWG2813](https://cplusplus.github.io/CWG/issues/2813.html)
prvalue.member_fn(expression-list) now will not materialize a temporary
for prvalue if member_fn is an explicit object member function, and
prvalue will bind directly to the object parameter.
The E1 in E1.static_member is now a discarded-value expression, so if E1
was a call to a [[nodiscard]] function, there will now be a warning.
This also affects C++98 with [[gnu::warn_unused_result]] functions.
This should not affect C where TemporaryMaterializationConversion is a
no-op.
Closes#100314Fixes#100341
---------
Co-authored-by: Mital Ashok <mital@mitalashok.co.uk>
We already support vector types, and since matrix element types have to
be scalar types, there should be no problem w/ just enabling this.
This now also allows matrix types to be stored in STL containers.
Essentially, this makes this ill-formed:
```c++
using mat4 = _BitInt(12) [[clang::matrix_type(3, 3)]];
```
This matches preexisting behaviour for vector types (e.g.
`ext_vector_type`), and given that LLVM IR intrinsics for matrices also
take vector types, it seems like a sensible thing to do.
This is currently especially problematic since we sometimes lower matrix
types to LLVM array types instead, and while e.g. `[4 x i32]` and `<4 x
i32>` *probably* have the same similar memory layout (though I don’t
think it’s sound to rely on that either, see #117486), `[4 x i12]` and
`<4 x i12>` definitely don’t.
UBSan handler calls are sometimes merged by the backend, which complicates debugging. Merging is currently disabled for UBSan traps if -ubsan-unique-traps is specified or if optimization is disabled. This patch applies the same policy to non-trap handler calls.
N.B. "-ubsan-unique-traps" becomes somewhat of a misnomer since it will now apply to non-trap handler calls as well as traps; nonetheless, we keep the naming for backwards compatibility.
Previously, this hit an `llvm_unreachable()` assertion as the type of
`vec_t` did not exactly match `__SVInt8_t`, as it was wrapped in a
typedef.
Comparing the canonical types instead allows the types to match
correctly and avoids the crash.
Fixes#107609
Fixes https://github.com/llvm/llvm-project/issues/115990.
MSVC mangling got inadvertently broken here,
https://github.com/llvm/llvm-project/pull/83997, when it was fixed what
decl context a lambda is apart of for uneval contexts.
https://godbolt.org/z/K6jb5v145 for reference.
Given the following code snippet
```
template <typename T>
concept C = requires(const T& t)
{
{ T::test([](){}) };
};
template<typename T, typename = void>
struct Widget;
template <C T>
struct Widget<T> {};
struct Baz
{
template<typename F>
static constexpr decltype(auto) test(F&& f) {}
};
void test()
{
Widget<Baz> w;
}
```
`Baz::test` has a deduced return type which means we must instantiate
that template even in an unevaluated context.
The lambda inside the concept is within the decl context of `struct
Widget<T> {};`. So we end up needing to mangle a name of
`Baz::test<Widget<template-type-0-0>::lambda()>>()` since the lambda
isn't apart of an instantiated substituted class `Widget` yet at the
point the lambda is instantiated.
Upon template instantation of `test` we end up asking for the mangled
name so we can add this instantiation to `CodeGenModule::DefferredDecls`
since `test` is now referenced but not yet used.
I think the longer term more correct solution is to key `DefferedDecls`
off of something else than the mangled name to avoid having to mangle
names for instantations that are referenced but will never be used since
they are only instantiated from an unevaluated context.
As a fix for the regression I just created a custom mangling scheme for
this case since MSVC has no comparable naming scheme as such a template
will never be emitted into the resulting obj as it will never be used.
Similar to arm_sve_vector_bits, the mangling of function types is
implemented as a pseudo template if there are any SME attributes
present, i.e.
`__SME_ATTRS<normal_function_type, sme_state>`
For example, the following function:
`void f(svint8_t (*fn)() __arm_streaming) { fn(); }`
would be mangled as:
`_Z1fP11__SME_ATTRSIFu10__SVInt8_tELj1EE`
See https://github.com/ARM-software/acle/pull/358
In MSVC, when `/d1initall` is enabled, `__declspec(no_init_all)` can be
applied to a type to suppress auto-initialization for all instances of
that type or to a function to suppress auto-initialization for all
locals within that function.
This change does the same for Clang, except that it applies to the
`-ftrivial-auto-var-init` flag instead.
NOTE: I did not add a Clang-specific spelling for this but would be
happy to make a followup PR if folks are interested in that.
This change is part of this proposal:
https://discourse.llvm.org/t/rfc-all-the-math-intrinsics/78294
- `Builtins.td` - Add f16 support for libm atan2 builtin
- `CGBuiltin.cpp` - Emit constraint atan2 intrinsic for clang builtin
- `clang/test/CodeGenCXX/builtin-calling-conv.cpp` - Use erff instead of
atan2 for clang builtin to lib call calling convention check, now that
atan2 maps to an intrinsic.
- add atan2 cases to llvm.experimental.constrained tests for more
backends: ARM, PowerPC, RISCV, SystemZ.
- LangRef.rst: add llvm.experimental.constrained.atan2, revise
llvm.atan2 description.
Last part of Implement the atan2 HLSL Function. Fixes#70096.
Features ebf16, memtag3, and rpres allow existing instructions to behave
differently depending on the value of certain control registers. FMV
does not read the content of control registers making these features
unsuitable for runtime dispatch. See the ACLE patch for more info:
https://github.com/ARM-software/acle/pull/355
Fixes: #113187
Avoid to create init function since clang does not support global
variable with flexible array init.
It will cause assertion failure later.
According to [P0533R9](https://wg21.link/P0533R9), the C++ standard
library functions corresponding to the C macros in `[c.math.abs]` are
now `constexpr`.
To implement this feature in libc++, we must make the built-in abs
function `constexpr`. This patch adds the implementation of a
`constexpr` abs function for the current constant evaluator and the new
bytecode interpreter.
It is important to note that in 2's complement systems, the absolute
value of the most negative value is out of range. In gcc, it will result
in an out-of-range error and will not be evaluated as constants. We
follow the same approach here.