11 Commits

Author SHA1 Message Date
Joe Nash
b982ba2a6e [AMDGPU][GFX11] Use VGPR_32_Lo128 for VOP1,2,C
Due to the encoding changes in GFX11, we had a hack in place that
    disables the use of VGPRs above 128. This patch removes the need for
    that hack.

    We introduce a new register class VGPR_32_Lo128 which is used for 16-bit
    operands of VOP1, VOP2, and VOPC instructions. This register class only has the
    low 128 VGPRs, but is otherwise identical to VGPR_32. Therefore, 16-bit VOP1,
    VOP2, and VOPC instructions are correctly limited to use the first 128
    VGPRs, while the other instructions can freely use all 256.

    We introduce new pseduo-instructions used on GFX11 which have the suffix
    t16 (True 16) to use the VGPR_32_Lo128 register class.

Reviewed By: foad, rampitec, #amdgpu

Differential Revision: https://reviews.llvm.org/D133723
2022-09-20 09:56:28 -04:00
Venkata Ramanaiah Nalamothu
04fff547e2 [AMDGPU] Move call clobbered return address registers s[30:31] to callee saved range
Currently the return address ABI registers s[30:31], which fall in the call
clobbered register range, are added as a live-in on the function entry to
preserve its value when we have calls so that it gets saved and restored
around the calls.

But the DWARF unwind information (CFI) needs to track where the return address
resides in a frame and the above approach makes it difficult to track the
return address when the CFI information is emitted during the frame lowering,
due to the involvment of understanding the control flow.

This patch moves the return address ABI registers s[30:31] into callee saved
registers range and stops adding live-in for return address registers, so that
the CFI machinery will know where the return address resides when CSR
save/restore happen during the frame lowering.

And doing the above poses an issue that now the return instruction uses undefined
register `sgpr30_sgpr31`. This is resolved by hiding the return address register
use by the return instruction through the `SI_RETURN` pseudo instruction, which
doesn't take any input operands, until the `SI_RETURN` pseudo gets lowered to the
`S_SETPC_B64_return` during the `expandPostRAPseudo()`.

As an added benefit, this patch simplifies overall return instruction handling.

Note: The AMDGPU CFI changes are there only in the downstream code and another
version of this patch will be posted for review for the downstream code.

Reviewed By: arsenm, ronlieb

Differential Revision: https://reviews.llvm.org/D114652
2022-03-09 12:18:02 +05:30
Ron Lieberman
09b53296cf Revert "[AMDGPU] Move call clobbered return address registers s[30:31] to callee saved range"
This reverts commit 9075009d1fd5f2bf9aa6c2f362d2993691a316b3.

 Failed amdgpu runtime buildbot # 3514
2021-12-22 11:39:28 -05:00
RamNalamothu
9075009d1f [AMDGPU] Move call clobbered return address registers s[30:31] to callee saved range
Currently the return address ABI registers s[30:31], which fall in the call
clobbered register range, are added as a live-in on the function entry to
preserve its value when we have calls so that it gets saved and restored
around the calls.

But the DWARF unwind information (CFI) needs to track where the return address
resides in a frame and the above approach makes it difficult to track the
return address when the CFI information is emitted during the frame lowering,
due to the involvment of understanding the control flow.

This patch moves the return address ABI registers s[30:31] into callee saved
registers range and stops adding live-in for return address registers, so that
the CFI machinery will know where the return address resides when CSR
save/restore happen during the frame lowering.

And doing the above poses an issue that now the return instruction uses undefined
register `sgpr30_sgpr31`. This is resolved by hiding the return address register
use by the return instruction through the `SI_RETURN` pseudo instruction, which
doesn't take any input operands, until the `SI_RETURN` pseudo gets lowered to the
`S_SETPC_B64_return` during the `expandPostRAPseudo()`.

As an added benefit, this patch simplifies overall return instruction handling.

Note: The AMDGPU CFI changes are there only in the downstream code and another
version of this patch will be posted for review for the downstream code.

Reviewed By: arsenm

Differential Revision: https://reviews.llvm.org/D114652
2021-12-22 20:51:12 +05:30
Christudasan Devadasan
654c89d85a [AMDGPU] Make vector superclasses allocatable
The combined vector register classes with both
VGPRs and AGPRs are currently unallocatable.
This patch turns them into allocatable as a
prerequisite to enable copy between VGPR and
AGPR registers during regalloc.

Also, added the missing AV register classes from
192b to 1024b.

Reviewed By: rampitec

Differential Revision: https://reviews.llvm.org/D109300
2021-11-26 00:42:12 -05:00
Thomas Symalla
76cbe62262 [AMDGPU] Changes the AMDGPU_Gfx calling convention by making the SGPRs 4..29 callee-save. This is to avoid superfluous s_movs when executing amdgpu_gfx function calls as the callee is likely not going to change the argument values.
This patch changes the AMDGPU_Gfx calling convention. It defines the SGPR registers s[4:29] as callee-save and leaves some SGPRs usable for callers. The intention is to avoid unneccessary s_mov instructions for arguments the caller would otherwise save and restore in these registers.

Reviewed By: sebastian-ne

Differential Revision: https://reviews.llvm.org/D111637
2021-11-04 21:50:18 +01:00
Thomas Symalla
f0331100f7 [AMDGPU] Regenerate some tests with the current version of update_mir_test_checks.py 2021-10-25 14:42:13 +02:00
Carl Ritson
c7f2f81f5e [AMDGPU] Tidy SReg/SGPR definitions using template class
Use a multiclass to consistently define SReg/SGPR/TTMP register classes.
Add missing TTMP registers for 96b, 160b, 192b, 224b.

Reviewed By: foad

Differential Revision: https://reviews.llvm.org/D105800
2021-07-17 11:26:46 +09:00
Matt Arsenault
78b6d73a93 AMDGPU: Add even aligned VGPR/AGPR register classes
gfx90a operations require even aligned registers, but this was
previously achieved by reserving registers inside the full class.

Ideally this would be captured in the static instruction definitions
for the operands, and we would have different instructions per
subtarget. The hackiest part of this is we need to manually reassign
AGPR register classes after instruction selection (we get away without
this for VGPRs since those types are actually registered for legal
types).
2021-02-24 14:49:37 -05:00
Stanislav Mekhanoshin
a8d9d50762 [AMDGPU] gfx90a support
Differential Revision: https://reviews.llvm.org/D96906
2021-02-17 16:01:32 -08:00
Matt Arsenault
af2cbe8eff AMDGPU: Fix adding extra operands for i128 asm constraints
We don't register i128 as a legal type with addRegisterClass, but it
appears in the list of legal register types. This inconsistency
resulted in the asm constraint lowering trying to use 2 128-bit
registers for these operands. This would leave behind a dead def that
would waste registers.

Regresses GlobalISel tests for i128 load/store, but these aren't very
important right now. Ideally these would not depend on the list of
register types.
2021-02-02 19:01:04 -05:00