9 Commits

Author SHA1 Message Date
Krzysztof Drewniak
f0415f2a45 Re-land "[AMDGPU] Define data layout entries for buffers""
Re-land D145441 with data layout upgrade code fixed to not break OpenMP.

This reverts commit 3f2fbe92d0f40bcb46db7636db9ec3f7e7899b27.

Differential Revision: https://reviews.llvm.org/D149776
2023-05-03 19:43:56 +00:00
Krzysztof Drewniak
3f2fbe92d0 Revert "[AMDGPU] Define data layout entries for buffers"
This reverts commit f9c1ede2543b37fabe9f2d8f8fed5073c475d850.

Differential Revision: https://reviews.llvm.org/D149758
2023-05-03 16:11:00 +00:00
Krzysztof Drewniak
f9c1ede254 [AMDGPU] Define data layout entries for buffers
Per discussion at
https://discourse.llvm.org/t/representing-buffer-descriptors-in-the-amdgpu-target-call-for-suggestions/68798,
we define two new address spaces for AMDGCN targets.

The first is address space 7, a non-integral address space (which was
already in the data layout) that has 160-bit pointers (which are
256-bit aligned) and uses a 32-bit offset. These pointers combine a
128-bit buffer descriptor and a 32-bit offset, and will be usable with
normal LLVM operations (load, store, GEP). However, they will be
rewritten out of existence before code generation.

The second of these is address space 8, the address space for "buffer
resources". These will be used to represent the resource arguments to
buffer instructions, and new buffer intrinsics will be defined that
take them instead of <4 x i32> as resource arguments. ptr
addrspace(8). These pointers are 128-bits long (with the same
alignment). They must not be used as the arguments to getelementptr or
otherwise used in address computations, since they can have
arbitrarily complex inherent addressing semantics that can't be
represented in LLVM. Even though, like their address space 7 cousins,
these pointers have deterministic ptrtoint/inttoptr semantics, they
are defined to be non-integral in order to prevent optimizations that
rely on pointers being a [0, [addr_max]] value from applying to them.

Future work includes:
- Defining new buffer intrinsics that take ptr addrspace(8) resources.
- A late rewrite to turn address space 7 operations into buffer
intrinsics and offset computations.

This commit also updates the "fallback address space" for buffer
intrinsics to the buffer resource, and updates the alias analysis
table.

Depends on D143437

Reviewed By: arsenm

Differential Revision: https://reviews.llvm.org/D145441
2023-05-03 15:25:58 +00:00
Bjorn Pettersson
3528e63d89 [test] Remove duplicate RUN lines in Transform tests 2022-12-08 11:47:16 +01:00
Nikita Popov
151602c7a9 [Inline] Convert some tests to opaque pointers (NFC) 2022-12-08 10:05:23 +01:00
Roman Lebedev
e5369823bc
[NFC] Port all Inline tests to -passes= syntax 2022-12-08 03:09:27 +03:00
Johannes Doerfert
f6e3a89cc0 [AMDGPU] Annotate the intrinsics to be default and nocallback
Differential Revision: https://reviews.llvm.org/D135155
2022-12-07 14:25:25 -08:00
Arthur Eubanks
a11bf9a7fb [AMDGPU][Inliner] Remove amdgpu-inline and add a new TTI inline hook
Having a custom inliner doesn't really fit in with the new PM's
pipeline. It's also extra technical debt.

amdgpu-inline only does a couple of custom things compared to the normal
inliner:
1) It disables inlining if the number of BBs in a function would exceed
   some limit
2) It increases the threshold if there are pointers to private arrays(?)

These can all be handled as TTI inliner hooks.
There already exists a hook for backends to multiply the inlining
threshold.

This way we can remove the custom amdgpu-inline pass.

This caused inline-hint.ll to fail, and after some investigation, it
looks like getInliningThresholdMultiplier() was previously getting
applied twice in amdgpu-inline (https://reviews.llvm.org/D62707 fixed it
not applying at all, so some later inliner change must have fixed
something), so I had to change the threshold in the test.

Reviewed By: rampitec

Differential Revision: https://reviews.llvm.org/D94153
2021-01-21 20:29:17 -08:00
Matt Arsenault
0ff901fba0 AMDGPU: Boost inline threshold with addrspacecasted alloca arguments
This was skipping GetUnderlyingObject for nonprivate addresses, but an
alloca could also be found through an addrspacecast if it's flat.

llvm-svn: 361649
2019-05-24 16:52:35 +00:00