1001 Commits

Author SHA1 Message Date
Sami Tolvanen
5dc8aaac39 [llvm][IR] Add no_cfi constant
With Control-Flow Integrity (CFI), the LowerTypeTests pass replaces
function references with CFI jump table references, which is a problem
for low-level code that needs the address of the actual function body.

For example, in the Linux kernel, the code that sets up interrupt
handlers needs to take the address of the interrupt handler function
instead of the CFI jump table, as the jump table may not even be mapped
into memory when an interrupt is triggered.

This change adds the no_cfi constant type, which wraps function
references in a value that LowerTypeTestsModule::replaceCfiUses does not
replace.

Link: https://github.com/ClangBuiltLinux/linux/issues/1353

Reviewed By: nickdesaulniers, pcc

Differential Revision: https://reviews.llvm.org/D108478
2021-12-20 12:55:32 -08:00
Nikita Popov
474b20b450 [LLParser] Avoid unnecessary AttrBuilder<->AttributeSet roundtrip (NFC)
This was creating an AttributeSet from an AttrBuilder, and then
(implicitly) constructing an AttrBuilder from the AttributeSet,
and then the method would internally convert that back into an
AttributeSet. Instead, directly pass the AttrBuilder.
2021-12-18 17:57:15 +01:00
Mingming Liu
09a704c5ef [LTO] Ignore unreachable virtual functions in WPD in hybrid LTO.
Differential Revision: https://reviews.llvm.org/D115492
2021-12-14 20:18:04 +00:00
Cullen Rhodes
0395e01583 [IR] Split vscale_range interface
Interface is split from:

  std::pair<unsigned, unsigned> getVScaleRangeArgs()

into separate functions for min/max:

  unsigned getVScaleRangeMin();
  Optional<unsigned> getVScaleRangeMax();

Reviewed By: sdesmalen, paulwalker-arm

Differential Revision: https://reviews.llvm.org/D114075
2021-12-07 10:38:26 +00:00
Zarko Todorovski
95875d246a [LLVM][NFC]Inclusive language: remove occurances of sanity check/test from llvm
Part of work to use more inclusive language in clang/llvm. Rewording
some comments and change function and variable names.
2021-11-24 17:29:55 -05:00
Arthur Eubanks
05963a3d66 Revert "[DebugInfo] Enforce implicit constraints on distinct MDNodes"
This reverts commit ee7652569854af567ba83e5255d70e80cc8619a1.

Causes crashes, see comments in D104827.
2021-11-09 14:27:55 -08:00
Scott Linder
ee76525698 [DebugInfo] Enforce implicit constraints on distinct MDNodes
Add UNIQUED and DISTINCT properties in Metadata.def and use them to
implement restrictions on the `distinct` property of MDNodes:

* DIExpression can currently be parsed from IR or read from bitcode
  as `distinct`, but this property is silently dropped when printing
  to IR. This causes accepted IR to fail to round-trip. As DIExpression
  appears inline at each use in the canonical form of IR, it cannot
  actually be `distinct` anyway, as there is no syntax to describe it.
* Similarly, DIArgList is conceptually always uniqued. It is currently
  restricted to only appearing in contexts where there is no syntax for
  `distinct`, but for consistency it is treated equivalently to
  DIExpression in this patch.
* DICompileUnit is already restricted to always being `distinct`, but
  along with adding general support for the inverse restriction I went
  ahead and described this in Metadata.def and updated the parser to be
  general. Future nodes which have this restriction can share this
  support.

The new UNIQUED property applies to DIExpression and DIArgList, and
forbids them to be `distinct`. It also implies they are canonically
printed inline at each use, rather than via MDNode ID.

The new DISTINCT property applies to DICompileUnit, and requires it to
be `distinct`.

A potential alternative change is to forbid the non-inline syntax for
DIExpression entirely, as is done with DIArgList implicitly by requiring
it appear in the context of a function. For example, we would forbid:

    !named = !{!0}
    !0 = !DIExpression()

Instead we would only accept the equivalent inlined version:

    !named = !{!DIExpression()}

This essentially removes the ability to create a `distinct` DIExpression
by construction, as there is no syntax for `distinct` inline. If this
patch is accepted as-is, the result would be that the non-canonical
version is accepted, but the following would be an error and produce a diagnostic:

    !named = !{!0}
    ; error: 'distinct' not allowed for !DIExpression()
    !0 = distinct !DIExpression()

Also update some documentation to consistently use the inline syntax for
DIExpression, and to describe the restrictions on `distinct` for nodes
where applicable.

Reviewed By: StephenTozer, t-tye

Differential Revision: https://reviews.llvm.org/D104827
2021-11-09 18:19:11 +00:00
Itay Bookstein
08ed216000 [IR] Refactor GlobalIFunc to inherit from GlobalObject, Remove GlobalIndirectSymbol
As discussed in:
* https://reviews.llvm.org/D94166
* https://lists.llvm.org/pipermail/llvm-dev/2020-September/145031.html

The GlobalIndirectSymbol class lost most of its meaning in
https://reviews.llvm.org/D109792, which disambiguated getBaseObject
(now getAliaseeObject) between GlobalIFunc and everything else.
In addition, as long as GlobalIFunc is not a GlobalObject and
getAliaseeObject returns GlobalObjects, a GlobalAlias whose aliasee
is a GlobalIFunc cannot currently be modeled properly. Creating
aliases for GlobalIFuncs does happen in the wild (e.g. glibc). In addition,
calling getAliaseeObject on a GlobalIFunc will currently return nullptr,
which is undesirable because it should return the object itself for
non-aliases.

This patch refactors the GlobalIFunc class to inherit directly from
GlobalObject, and removes GlobalIndirectSymbol (while inlining the
relevant parts into GlobalAlias and GlobalIFunc). This allows for
calling getAliaseeObject() on a GlobalIFunc to return the GlobalIFunc
itself, making getAliaseeObject() more consistent and enabling
alias-to-ifunc to be properly modeled in the IR.

I exercised some judgement in the API clients of GlobalIndirectSymbol:
some were 'monomorphized' for GlobalAlias and GlobalIFunc, and
some remained shared (with the type adapted to become GlobalValue).

Reviewed By: MaskRay

Differential Revision: https://reviews.llvm.org/D108872
2021-10-20 10:29:47 -07:00
Arthur Eubanks
05392466f0 Reland [IR] Increase max alignment to 4GB
Currently the max alignment representable is 1GB, see D108661.
Setting the align of an object to 4GB is desirable in some cases to make sure the lower 32 bits are clear which can be used for some optimizations, e.g. https://crbug.com/1016945.

This uses an extra bit in instructions that carry an alignment. We can store 15 bits of "free" information, and with this change some instructions (e.g. AtomicCmpXchgInst) use 14 bits.
We can increase the max alignment representable above 4GB (up to 2^62) since we're only using 33 of the 64 values, but I've just limited it to 4GB for now.

The one place we have to update the bitcode format is for the alloca instruction. It stores its alignment into 5 bits of a 32 bit bitfield. I've added another field which is 8 bits and should be future proof for a while. For backward compatibility, we check if the old field has a value and use that, otherwise use the new field.

Updating clang's max allowed alignment will come in a future patch.

Reviewed By: hans

Differential Revision: https://reviews.llvm.org/D110451
2021-10-06 13:29:23 -07:00
Arthur Eubanks
569346f274 Revert "Reland [IR] Increase max alignment to 4GB"
This reverts commit 8d64314ffea55f2ad94c1b489586daa8ce30f451.
2021-10-06 11:38:11 -07:00
Arthur Eubanks
8d64314ffe Reland [IR] Increase max alignment to 4GB
Currently the max alignment representable is 1GB, see D108661.
Setting the align of an object to 4GB is desirable in some cases to make sure the lower 32 bits are clear which can be used for some optimizations, e.g. https://crbug.com/1016945.

This uses an extra bit in instructions that carry an alignment. We can store 15 bits of "free" information, and with this change some instructions (e.g. AtomicCmpXchgInst) use 14 bits.
We can increase the max alignment representable above 4GB (up to 2^62) since we're only using 33 of the 64 values, but I've just limited it to 4GB for now.

The one place we have to update the bitcode format is for the alloca instruction. It stores its alignment into 5 bits of a 32 bit bitfield. I've added another field which is 8 bits and should be future proof for a while. For backward compatibility, we check if the old field has a value and use that, otherwise use the new field.

Updating clang's max allowed alignment will come in a future patch.

Reviewed By: hans

Differential Revision: https://reviews.llvm.org/D110451
2021-10-06 11:03:51 -07:00
Arthur Eubanks
72cf8b6044 Revert "[IR] Increase max alignment to 4GB"
This reverts commit df84c1fe78130a86445d57563dea742e1b85156a.

Breaks some bots
2021-10-06 10:21:35 -07:00
Arthur Eubanks
df84c1fe78 [IR] Increase max alignment to 4GB
Currently the max alignment representable is 1GB, see D108661.
Setting the align of an object to 4GB is desirable in some cases to make sure the lower 32 bits are clear which can be used for some optimizations, e.g. https://crbug.com/1016945.

This uses an extra bit in instructions that carry an alignment. We can store 15 bits of "free" information, and with this change some instructions (e.g. AtomicCmpXchgInst) use 14 bits.
We can increase the max alignment representable above 4GB (up to 2^62) since we're only using 33 of the 64 values, but I've just limited it to 4GB for now.

The one place we have to update the bitcode format is for the alloca instruction. It stores its alignment into 5 bits of a 32 bit bitfield. I've added another field which is 8 bits and should be future proof for a while. For backward compatibility, we check if the old field has a value and use that, otherwise use the new field.

Updating clang's max allowed alignment will come in a future patch.

Reviewed By: hans

Differential Revision: https://reviews.llvm.org/D110451
2021-10-06 09:54:14 -07:00
Dávid Bolvanský
fb84aa2a8f Fixed warnings in target/parser codes produced by -Wbitwise-instead-of-logicala 2021-10-03 15:04:01 +02:00
Dávid Bolvanský
5f2f611880 Fixed more warnings in LLVM produced by -Wbitwise-instead-of-logical 2021-10-03 13:58:10 +02:00
modimo
20faf78919 [ThinLTO] Add noRecurse and noUnwind thinlink function attribute propagation
Thinlink provides an opportunity to propagate function attributes across modules, enabling additional propagation opportunities.

This change propagates (currently default off, turn on with `disable-thinlto-funcattrs=1`) noRecurse and noUnwind based off of function summaries of the prevailing functions in bottom-up call-graph order. Testing on clang self-build:
1. There's a 35-40% increase in noUnwind functions due to the additional propagation opportunities.
2. Throughput is measured at 10-15% increase in thinlink time which itself is 1.5% of E2E link time.

Implementation-wise this adds the following summary function attributes:
1. noUnwind: function is noUnwind
2. mayThrow: function contains a non-call instruction that `Instruction::mayThrow` returns true on (e.g. windows SEH instructions)
3. hasUnknownCall: function contains calls that don't make it into the summary call-graph thus should not be propagated from (e.g. indirect for now, could add no-opt functions as well)

Testing:
Clang self-build passes and 2nd stage build passes check-all
ninja check-all with newly added tests passing

Reviewed By: tejohnson

Differential Revision: https://reviews.llvm.org/D36850
2021-09-27 12:28:07 -07:00
Kazu Hirata
85b4b21c8b [llvm] Use make_early_inc_range (NFC) 2021-09-20 19:30:02 -07:00
Alok Kumar Sharma
a5b72abc9e [DebugInfo] Enhance DIImportedEntity to accept children entities
New field `elements` is added to '!DIImportedEntity', representing
list of aliased entities.
This is needed to dump optimized debugging information where all names
in a module are imported, but a few names are imported with overriding
aliases.

Reviewed By: dblaikie

Differential Revision: https://reviews.llvm.org/D109343
2021-09-16 10:41:55 +05:30
Nikita Popov
90ec6dff86 [OpaquePtr] Forbid mixing typed and opaque pointers
Currently, opaque pointers are supported in two forms: The
-force-opaque-pointers mode, where all pointers are opaque and
typed pointers do not exist. And as a simple ptr type that can
coexist with typed pointers.

This patch removes support for the mixed mode. You either get
typed pointers, or you get opaque pointers, but not both. In the
(current) default mode, using ptr is forbidden. In -opaque-pointers
mode, all pointers are opaque.

The motivation here is that the mixed mode introduces additional
issues that don't exist in fully opaque mode. D105155 is an example
of a design problem. Looking at D109259, it would probably need
additional work to support mixed mode (e.g. to generate GEPs for
typed base but opaque result). Mixed mode will also end up
inserting many casts between i8* and ptr, which would require
significant additional work to consistently avoid.

I don't think the mixed mode is particularly valuable, as it
doesn't align with our end goal. The only thing I've found it to
be moderately useful for is adding some opaque pointer tests in
between typed pointer tests, but I think we can live without that.

Differential Revision: https://reviews.llvm.org/D109290
2021-09-10 15:18:23 +02:00
Nikita Popov
881677b58a [AsmParser] Support %ty* in force-opaque-pointers mode
Only enforce that ptr* is illegal if the base type is a simple type,
not when it is something like %ty, where %ty may resolve to an
opaque pointer in force-opaque-pointers mode.

Differential Revision: https://reviews.llvm.org/D108876
2021-08-30 19:05:00 +02:00
Yonghong Song
1bebc31c61 [DebugInfo] generate btf_tag annotations for func parameters
Generate btf_tag annotations for function parameters.
A field "annotations" is introduced to DILocalVariable, and
annotations are represented as an DINodeArray, similar to
DIComposite elements. The following example illustrates how
annotations are encoded in IR:
    distinct !DILocalVariable(name: "info",, arg: 1, ..., annotations: !10)
    !10 = !{!11, !12}
    !11 = !{!"btf_tag", !"a"}
    !12 = !{!"btf_tag", !"b"}

Differential Revision: https://reviews.llvm.org/D106620
2021-08-26 14:18:30 -07:00
Yonghong Song
30c288489a [DebugInfo] generate btf_tag annotations for DIGlobalVariable
Generate btf_tag annotations for DIGlobalVariable.
A field "annotations" is introduced to DIGlobalVariable, and
annotations are represented as an DINodeArray, similar to
DIComposite elements. The following example illustrates how
annotations are encoded in IR:
    distinct !DIGlobalVariable(..., annotations: !10)
    !10 = !{!11, !12}
    !11 = !{!"btf_tag", !"a"}
    !12 = !{!"btf_tag", !"b"}

Differential Revision: https://reviews.llvm.org/D106619
2021-08-26 10:03:44 -07:00
Yonghong Song
d383df32c0 [DebugInfo] generate btf_tag annotations for DISubprogram types
Generate btf_tag annotations for DISubprogram types.
A field "annotations" is introduced to DISubprogram, and
annotations are represented as an DINodeArray, similar to
DIComposite elements. The following example illustrates how
annotations are encoded in IR:
    distinct !DISubprogram(..., annotations: !10)
    !10 = !{!11, !12}
    !11 = !{!"btf_tag", !"a"}
    !12 = !{!"btf_tag", !"b"}

Differential Revision: https://reviews.llvm.org/D106618
2021-08-26 08:24:19 -07:00
Arthur Eubanks
b109becdce [NFC] Add and use AttributeList::removeFnAttributes() 2021-08-24 09:53:39 -07:00
Yonghong Song
430e223881 [DebugInfo] generate btf_tag annotations for DIDerived types
Generate btf_tag annotations for DIDrived types. More specifically,
clang frontend generates the btf_tag annotations for record
fields. The annotations are represented as an DINodeArray
in DebugInfo. The following example illustrate how
annotations are encoded in IR:
      distinct !DIDerivedType(tag: DW_TAG_member, ..., annotations: !10)
      !10 = !{!11, !12}
      !11 = !{!"btf_tag", !"a"}
      !12 = !{!"btf_tag", !"b"}

Differential Revision: https://reviews.llvm.org/D106616
2021-08-20 12:06:37 -07:00
Yonghong Song
0b32dca12e Reland [DebugInfo] generate btf_tag annotations for DIComposite types
Clang patch D106614 added attribute btf_tag support. This patch
generates btf_tag annotations for DIComposite types.
A field "annotations" is introduced to DIComposite, and the
annotations are represented as an DINodeArray, similar to
DIComposite elements. The following example illustrates
how annotations are encoded in IR:
  distinct !DICompositeType(..., annotations: !10)
  !10 = !{!11, !12}
  !11 = !{!"btf_tag", !"a"}
  !12 = !{!"btf_tag", !"b"}
Each btf_tag annotation is represented as a 2D array of
meta strings. Each record may have more than one
btf_tag annotations, as in the above example.

Reland with additional fixes for llvm/unittests/IR/DebugTypeODRUniquingTest.cpp.

Differential Revision: https://reviews.llvm.org/D106615
2021-08-19 17:33:50 -07:00
Yonghong Song
c1169b8bd3 Revert "[DebugInfo] generate btf_tag annotations for DIComposite types"
This reverts commit 2fded193e7a8fb5bd8fb339f00fd9de686390530.

Builtbot reports some test failures. Revert now so I can take time
to fix the issues.
2021-08-19 15:54:38 -07:00
Yonghong Song
2fded193e7 [DebugInfo] generate btf_tag annotations for DIComposite types
Clang patch D106614 added attribute btf_tag support. This patch
generates btf_tag annotations for DIComposite types.
A field "annotations" is introduced to DIComposite, and the
annotations are represented as an DINodeArray, similar to
DIComposite elements. The following example illustrates
how annotations are encoded in IR:
  distinct !DICompositeType(..., annotations: !10)
  !10 = !{!11, !12}
  !11 = !{!"btf_tag", !"a"}
  !12 = !{!"btf_tag", !"b"}
Each btf_tag annotation is represented as a 2D array of
meta strings. Each record may have more than one
btf_tag annotations, as in the above example.

Differential Revision: https://reviews.llvm.org/D106615
2021-08-19 15:37:44 -07:00
Arthur Eubanks
de0ae9e89e [NFC] Cleanup more AttributeList::addAttribute() 2021-08-17 21:05:41 -07:00
Kazu Hirata
8f5e9d65d6 [AsmParser] Remove MDConstant (NFC)
The last use was removed on Sep 22, 2016 in commit
fcee2d80017f8e2db6a8ac3a70bdc0653afa7d01.
2021-08-16 21:21:11 -07:00
Kazu Hirata
e6e687f2d9 [AsmParser] Remove MDSignedOrUnsignedField (NFC)
The last use was removed on Apr 18, 2020 in commit
aad3d578da0ddf6d0d3d95e5e09a32e47f6dfeb8.
2021-08-15 09:31:39 -07:00
Arthur Eubanks
d7593ebaee [NFC] Clean up users of AttributeList::hasAttribute()
AttributeList::hasAttribute() is confusing, use clearer methods like
hasParamAttr()/hasRetAttr().

Add hasRetAttr() since it was missing from AttributeList.
2021-08-13 11:59:18 -07:00
Arthur Eubanks
80ea2bb574 [NFC] Rename AttributeList::getParam/Ret/FnAttributes() -> get*Attributes()
This is more consistent with similar methods.
2021-08-13 11:16:52 -07:00
Fangrui Song
3924877932 [IR] Rename comdat noduplicates to comdat nodeduplicate
In the textual format, `noduplicates` means no COMDAT/section group
deduplication is performed. Therefore, if both sets of sections are retained, and
they happen to define strong external symbols with the same names,
there will be a duplicate definition linker error.

In PE/COFF, the selection kind lowers to `IMAGE_COMDAT_SELECT_NODUPLICATES`.
The name describes the corollary instead of the immediate semantics.  The name
can cause confusion to other binary formats (ELF, wasm) which have implemented/
want to implement the "no deduplication" selection kind. Rename it to be clearer.

Reviewed By: rnk

Differential Revision: https://reviews.llvm.org/D106319
2021-07-20 12:47:10 -07:00
Nikita Popov
f59209a86e [AsmParser] Unify parsing of attributes
Continuing on from D105780, this should be the last major bit of
attribute cleanup. Currently, LLParser implements attribute parsing
for functions, parameters and returns separately, enumerating all
supported (and unsupported) attributes each time. This patch
extracts the common parsing logic, and performs a check afterwards
whether the attribute is valid in the given position. Parameters
and returns are handled together, while function attributes need
slightly different logic to support attribute groups.

Differential Revision: https://reviews.llvm.org/D105938
2021-07-15 17:51:11 +02:00
Nikita Popov
42cc7f3c52 [AttrBuilder] Make handling of type attributes more generic (NFCI)
While working on the elementtype attribute, I felt that the type
attribute handling in AttrBuilder is overly repetitive. This patch
converts the separate Type* members into an std::array<Type*>, so
that all type attribute kinds can be handled generically.

There's more room for improvement here (especially when it comes to
converting the AttrBuilder to an Attribute), but this seems like a
good starting point.

Differential Revision: https://reviews.llvm.org/D105658
2021-07-09 17:48:09 +02:00
Jonas Devlieghere
52b5491a21 Revert "[DebugInfo] Enforce implicit constraints on distinct MDNodes"
This reverts commit 8cd35ad854ab4458fd509447359066ea3578b494.

It breaks `TestMembersAndLocalsWithSameName.py` on GreenDragon and
Mikael Holmén points out in D104827 that bitcode files created with the
patch cannot be parsed with binaries built before it.
2021-07-02 15:57:07 -07:00
Alex Richardson
c142c06c19 Place the BlockAddress type in the address space of the containing function
While this should not matter for most architectures (where the program
address space is 0), it is important for CHERI (and therefore Arm Morello).
We use address space 200 for all of our code pointers and without this
change we assert in the SelectionDAG handling of BlockAddress nodes.

It is also useful for AVR: previously programs targeting
AVR that attempt to read their own machine code
via a pointer to a label would instead read from RAM
using a pointer relative to the the start of program flash.

Reviewed By: dylanmckay, theraven
Differential Revision: https://reviews.llvm.org/D48803
2021-07-02 12:17:55 +01:00
Duncan P. N. Exon Smith
ac2bec5add OpaquePtr: Support i32** with --force-opaque-pointers
4506f614cb6983a16d117cf77a968608e66d7a5c fixed parsing of textual IR to
reject `ptr*`, but broke the auto-conversion of `i32**` to `ptr` with
`--force-opaque-pointers`.

Get that working again by refactoring LLParser::parseType to only send
`ptr`-spelled pointers into the type suffix logic when it's the return
of a function type. This also rejects `ptr addrspace(3) addrspace(2)`,
which 1e6303e60ca5af4fbe7ca728572fd65666a98271 invadvertently started
accepting. Just the default top-level error message for the
double-addrspace since I had trouble thinking of something nice;
probably it's fine as is (it doesn't look valid the way that `ptr*`
does).

Differential Revision: https://reviews.llvm.org/D105146
2021-06-29 14:10:29 -07:00
Nikita Popov
f8aaec19e6 [OpaquePtr] Support forward references in textual IR
Currently, LLParser will create a Function/GlobalVariable forward
reference based on the desired pointer type and then modify it when
it is declared. With opaque pointers, we generally do not know the
correct type to use until we see the declaration.

Solve this by creating the forward reference with a dummy type, and
then performing a RAUW with the correct Function/GlobalVariable when
it is declared. The approach is adopted from
b5b55963f6.

This results in a change to the use list order, which is why we see
test changes on some module passes that are not stable under use list
reordering.

Differential Revision: https://reviews.llvm.org/D104950
2021-06-29 20:10:31 +02:00
Scott Linder
8cd35ad854 [DebugInfo] Enforce implicit constraints on distinct MDNodes
Add UNIQUED and DISTINCT properties in Metadata.def and use them to
implement restrictions on the `distinct` property of MDNodes:

* DIExpression can currently be parsed from IR or read from bitcode
  as `distinct`, but this property is silently dropped when printing
  to IR. This causes accepted IR to fail to round-trip. As DIExpression
  appears inline at each use in the canonical form of IR, it cannot
  actually be `distinct` anyway, as there is no syntax to describe it.
* Similarly, DIArgList is conceptually always uniqued. It is currently
  restricted to only appearing in contexts where there is no syntax for
  `distinct`, but for consistency it is treated equivalently to
  DIExpression in this patch.
* DICompileUnit is already restricted to always being `distinct`, but
  along with adding general support for the inverse restriction I went
  ahead and described this in Metadata.def and updated the parser to be
  general. Future nodes which have this restriction can share this
  support.

The new UNIQUED property applies to DIExpression and DIArgList, and
forbids them to be `distinct`. It also implies they are canonically
printed inline at each use, rather than via MDNode ID.

The new DISTINCT property applies to DICompileUnit, and requires it to
be `distinct`.

A potential alternative change is to forbid the non-inline syntax for
DIExpression entirely, as is done with DIArgList implicitly by requiring
it appear in the context of a function. For example, we would forbid:

    !named = !{!0}
    !0 = !DIExpression()

Instead we would only accept the equivalent inlined version:

    !named = !{!DIExpression()}

This essentially removes the ability to create a `distinct` DIExpression
by construction, as there is no syntax for `distinct` inline. If this
patch is accepted as-is, the result would be that the non-canonical
version is accepted, but the following would be an error and produce a diagnostic:

    !named = !{!0}
    ; error: 'distinct' not allowed for !DIExpression()
    !0 = distinct !DIExpression()

Also update some documentation to consistently use the inline syntax for
DIExpression, and to describe the restrictions on `distinct` for nodes
where applicable.

Reviewed By: StephenTozer, t-tye

Differential Revision: https://reviews.llvm.org/D104827
2021-06-28 21:20:04 +00:00
Duncan P. N. Exon Smith
4506f614cb OpaquePtr: Reject 'ptr*' again when parsing textual IR
Bring back the testcase dropped in
1e6303e60ca5af4fbe7ca728572fd65666a98271 and get it passing by checking
explicitly for `ptr*` in LLParser. Uses `Type::isOpaquePointerTy()` from
ad4bb8280952c2cacf497e30560ee94c119b36e0.

Differential Revision: https://reviews.llvm.org/D104938
2021-06-25 15:18:44 -07:00
Nikita Popov
ad4bb82809 [IR] Add Type::isOpaquePointerTy() helper (NFC)
Shortcut to check for opaque pointers without a cast to PointerType.
2021-06-25 20:56:59 +02:00
Nikita Popov
7206ad04d5 [OpaquePtr] Allow alias to opaque pointer
By relaxing the LLParser pointer type assertion.
2021-06-25 11:16:36 +02:00
Nikita Popov
f660af46e3 [OpaquePtr] Support call instruction
Add support for call of opaque pointer, currently only possible for
indirect calls.

This requires a bit of special casing in LLParser, as calls do not
specify the callee operand type explicitly.

Differential Revision: https://reviews.llvm.org/D104740
2021-06-23 20:17:26 +02:00
Nikita Popov
3ee6f1a4fa [LLParser] Remove special handling for call address space
Spin-off from D104740: I don't think this special handling is needed
anymore. Calls in textual IR are annotated with addrspace(N) (which
defaults to the program address space from data layout) and specifies
the expected pointer address space of the callee. There is no need
to special-case the program address space on top of that, as it
already is the default expected address space, and we shouldn't
allow use of the program address space if the call was explicitly
annotated with some other address space.

The IsCall parameter is retained because it will be used again soon.

Differential Revision: https://reviews.llvm.org/D104752
2021-06-23 12:07:44 +02:00
Nikita Popov
d9fe96fe26 [OpaquePtr] Support opaque constant expression GEP
Adjust assertions to use isOpaqueOrPointeeTypeMatches() and make
it return an opaque pointer result for an opaque base pointer. We
also need to enumerate the element type, as it is no longer
implicitly enumerated through the pointer type.

Differential Revision: https://reviews.llvm.org/D104655
2021-06-21 20:06:25 +02:00
Xuanda Yang
e0bb502064 [LLParser] Remove outdated deplibs
The comment mentions deplibs should be removed in 4.0. Removing it in this patch.

Reviewed By: compnerd, dexonsmith, lattner

Differential Revision: https://reviews.llvm.org/D102763
2021-06-14 12:46:12 +08:00
Fangrui Song
06e7de795b Fix some -Wunused-but-set-variable in -DLLVM_ENABLE_ASSERTIONS=off build 2021-06-04 23:34:43 -07:00
Arthur Eubanks
1202f559bd [OpaquePtr] Make atomicrmw work with opaque pointers
FullTy is only necessary when we need to figure out what type an
instruction works with given a pointer's pointee type. However, we just
end up using the value operand's type, so FullTy isn't necessary.

Reviewed By: dblaikie

Differential Revision: https://reviews.llvm.org/D102788
2021-05-25 20:16:21 -07:00