37 Commits

Author SHA1 Message Date
Stanislav Mekhanoshin
23db8e4b43 [AMDGPU] Use v_mad_u64_u32 for IMAD32
Nic Curtis done the experiments to prove it is faster than a
separate mul and add.

Fixes: SWDEV-332806

Differential Revision: https://reviews.llvm.org/D127253
2022-06-09 11:39:49 -07:00
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
Stanislav Mekhanoshin
41ebd19681 [AMDGPU] Do not ignore exec use where exec is read as data
Compares, v_cndmask_b32, and v_readfirstlane_b32 use EXEC
in a way which modifies the result. This implicit EXEC use
shall not be ignored for the purposes of instruction moves.

Differential Revision: https://reviews.llvm.org/D117814
2022-01-20 14:05:22 -08:00
Vang Thao
10ed1eca24 [MachineSink] Allow sinking of constant or ignorable physreg uses
For AMDGPU, any use of the physical register EXEC prevents sinking even if it is not a real physical register read. Add check to see if a physical
register use can be ignored for sinking.

Also perform same constant and ignorable physical register check when considering sinking in loops.

https://reviews.llvm.org/D116053
2022-01-18 14:17:40 +00:00
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
Matt Arsenault
729bf9b26b AMDGPU: Enable fixed function ABI by default
Code using indirect calls is broken without this, and there isn't
really much value in supporting the old attempt to vary the argument
placement based on uses. This resulted in more argument shuffling code
anyway.

Also have the option stop implying all inputs need to be passed. This
will no rely on the amdgpu-no-* attributes to avoid passing
unnecessary values.
2021-12-04 10:49:18 -05:00
Stanislav Mekhanoshin
3b17cb1506 [AMDGPU] Kill def when folding immediate in two-addr pass
Two-address pass works right before RA and if an immediate
was folded into an instruction there is nothing to remove
the dead def. We end up with something like:

	v_mov_b32_e32 v14, 0xc1700000
	v_mov_b32_e32 v14, 0x41200000
	v_fmaak_f32 v51, s67, v19, 0xc1700000
	v_fmaak_f32 v38, v51, v19, 0x4120000

The patch kills the dead move instruction right in the folding.

Differential Revision: https://reviews.llvm.org/D114999
2021-12-03 09:37:49 -08:00
RamNalamothu
18f9351223 [AMDGPU] Do not generate ELF symbols for the local branch target labels
The compiler was generating symbols in the final code object for local
branch target labels. This bloats the code object, slows down the loader,
and is only used to simplify disassembly.

Use '--symbolize-operands' with llvm-objdump to improve readability of the
branch target operands in disassembly.

Fixes: SWDEV-312223

Reviewed By: scott.linder

Differential Revision: https://reviews.llvm.org/D114273
2021-11-20 10:32:41 +05:30
Stanislav Mekhanoshin
c80d8a8cea [AMDGPU] MachineLICM cannot hoist VALU
MachineLoop::isLoopInvariant() returns false for all VALU
because of the exec use. Check TII::isIgnorableUse() to
allow hoisting.

That unfortunately results in higher register consumption
since MachineLICM does not adequately estimate pressure.
Therefor I think it shall only be enabled after D107677 even
though it does not depend on it.

Differential Revision: https://reviews.llvm.org/D107859
2021-10-20 11:47:24 -07:00
Joe Nash
3ce1b9631a [AMDGPU] Switch PostRA sched to MachineSched
Use GCNHazardRecognizer in postra sched.
Updated tests for the new schedules.

Reviewed By: arsenm

Differential Revision: https://reviews.llvm.org/D109536

Change-Id: Ia86ba2ae168f12fb34b4d8efdab491f84d936cde
2021-09-14 15:11:27 -04:00
Matt Arsenault
eebe841a47 RegAlloc: Allow targets to split register allocation
AMDGPU normally spills SGPRs to VGPRs. Previously, since all register
classes are handled at the same time, this was problematic. We don't
know ahead of time how many registers will be needed to be reserved to
handle the spilling. If no VGPRs were left for spilling, we would have
to try to spill to memory. If the spilled SGPRs were required for exec
mask manipulation, it is highly problematic because the lanes active
at the point of spill are not necessarily the same as at the restore
point.

Avoid this problem by fully allocating SGPRs in a separate regalloc
run from VGPRs. This way we know the exact number of VGPRs needed, and
can reserve them for a second run.  This fixes the most serious
issues, but it is still possible using inline asm to make all VGPRs
unavailable. Start erroring in the case where we ever would require
memory for an SGPR spill.

This is implemented by giving each regalloc pass a callback which
reports if a register class should be handled or not. A few passes
need some small changes to deal with leftover virtual registers.

In the AMDGPU implementation, a new pass is introduced to take the
place of PrologEpilogInserter for SGPR spills emitted during the first
run.

One disadvantage of this is currently StackSlotColoring is no longer
used for SGPR spills. It would need to be run again, which will
require more work.

Error if the standard -regalloc option is used. Introduce new separate
-sgpr-regalloc and -vgpr-regalloc flags, so the two runs can be
controlled individually. PBQB is not currently supported, so this also
prevents using the unhandled allocator.
2021-07-13 18:49:29 -04:00
Sebastian Neubauer
96e1fcb1e0 [AMDGPU] Use s_add_i32 for address additions
This allows to convert the add instruction to s_addk_i32 and
v_add_nc_u32 instead of needing v_add_co_u32 when converting to a VALU
instruction.

Differential Revision: https://reviews.llvm.org/D103322
2021-06-07 16:09:48 +02:00
Piotr Sobczak
68137ef568 [AMDGPU] Skip invariant loads when avoiding WAR conflicts
No need to handle invariant loads when avoiding WAR conflicts, as
there cannot be a vector store to the same memory location.

Reviewed By: foad

Differential Revision: https://reviews.llvm.org/D101177
2021-05-12 10:57:05 +02:00
madhur13490
5682ae2fc6 [AMDGPU] Set implicit arg attributes for indirect calls
This patch adds attributes corresponding to
implicits to functions/kernels if
1. it has an indirect call OR
2. it's address is taken.

Once such attributes are set, rest of the codegen would work
out-of-box for indirect calls. This patch eliminates
the potential overhead -fixed-abi imposes even though indirect functions
calls are not used.

Reviewed By: arsenm

Differential Revision: https://reviews.llvm.org/D99347
2021-04-13 13:15:13 +00:00
Jay Foad
6eb5b06ecf [AMDGPU] Regenerate checks to fix prefixes broken in D96340. NFC. 2021-04-06 11:43:53 +01:00
madhur13490
3c297a2564 Make fixed-abi default for AMD HSA OS
fixed-abi uses pre-defined and predictable
SGPR/VGPRs for passing arguments. This patch makes
this scheme default when HSA OS is specified in triple.

Reviewed By: arsenm

Differential Revision: https://reviews.llvm.org/D96340
2021-02-19 15:05:25 +00:00
Tony
2f499b9aff [AMDGPU] Add volatile support to SIMemoryLegalizer
Treat a non-atomic volatile load and store as a relaxed atomic at
system scope for the address spaces accessed. This will ensure all
relevant caches will be bypassed.

A volatile atomic is not changed and still only bypasses caches upto
the level specified by the SyncScope operand.

Differential Revision: https://reviews.llvm.org/D94214
2021-01-09 00:52:33 +00:00
Jay Foad
58de4b2053 [AMDGPU] Use pseudo instructions for readlane/writelane
This reverts r227987 "R600/SI: Determine target-specific encoding of READLANE and WRITELANE early v2".

All the codegen changes are caused by the post-RA scheduler no longer
treating readlane/writelane as scheduling barriers due to having
unmodelled side effects. (The pseudos are hasSideEffects = 0, but the
real instructions are hasSideEffects = ? which TableGen conservatively
treats as 1.)

Differential Revision: https://reviews.llvm.org/D90401
2020-10-29 16:00:53 +00:00
Sebastian Neubauer
a343b9b032 Revert "[AMDGPU] Insert waitcnt after returning from call"
This reverts commit ca907bfb57d8ad3ec3bcc2cff2abab7b1b933af6.

According to michel.daenzer,
> This completely broke the Mesa radeonsi driver on Navi 14. Xorg +
> xterm come up with major corruption & psychedelic colours.
2020-09-23 17:16:39 +02:00
Sebastian Neubauer
ca907bfb57 [AMDGPU] Insert waitcnt after returning from call
When memory operations are outstanding on function calls, either the
caller or the callee can insert a waitcnt to ensure that all reads are
finished.
Calls need some time to be executed, so if the callee inserts the
waitcnt, filling the instruction buffer and waiting for memory will be
interleaved, hiding some latency. This comes at the cost of having a
waitcnt inside functions that may not be needed as no memory operations
are outstanding.

For function calls, this is already implemented. The same principal
applies to returns: If the caller inserts a waitcnt after the call, the
callee does not have to wait and the return and memory operation can be
run in parallel.

This commit implements waiting in the caller after returning from a
function call.

Differential Revision: https://reviews.llvm.org/D87674
2020-09-23 12:17:59 +02:00
Jay Foad
4bdab2e86a [AMDGPU] Fix offset for REL32_HI relocs
The addend in a REL32 reloc needs to be adjusted to account for the
offset from the PC value returned by the s_getpc instruction to the
point where the reloc is applied. This was being done correctly for
(GOTPC)REL32_LO but not for (GOTPC)REL32_HI. This will only make a
difference if the target symbol happens to get loaded almost exactly
a multiple of 4G away from the relocated instructions.

Differential Revision: https://reviews.llvm.org/D86938
2020-09-02 10:55:55 +01:00
Jay Foad
62fd7f767c [MachineScheduler] Fix the TopDepth/BotHeightReduce latency heuristics
tryLatency compares two sched candidates. For the top zone it prefers
the one with lesser depth, but only if that depth is greater than the
total latency of the instructions we've already scheduled -- otherwise
its latency would be hidden and there would be no stall.

Unfortunately it only tests the depth of one of the candidates. This can
lead to situations where the TopDepthReduce heuristic does not kick in,
but a lower priority heuristic chooses the other candidate, whose depth
*is* greater than the already scheduled latency, which causes a stall.

The fix is to apply the heuristic if the depth of *either* candidate is
greater than the already scheduled latency.

All this also applies to the BotHeightReduce heuristic in the bottom
zone.

Differential Revision: https://reviews.llvm.org/D72392
2020-07-17 11:02:13 +01:00
Christudasan Devadasan
375cec4b6c [AMDGPU] Introduce more scratch registers in the ABI.
The AMDGPU target has a convention that defined all VGPRs
(execept the initial 32 argument registers) as callee-saved.
This convention is not efficient always, esp. when the callee
requiring more registers, ended up emitting a large number of
spills, even though its caller requires only a few.

This patch revises the ABI by introducing more scratch registers
that a callee can freely use.
The 256 vgpr registers now become:
  32 argument registers
  112 scratch registers and
  112 callee saved registers.
The scratch registers and the CSRs are intermixed at regular
intervals (a split boundary of 8) to obtain a better occupancy.

Reviewers: arsenm, t-tye, rampitec, b-sumner, mjbedy, tpr

Reviewed By: arsenm, t-tye

Differential Revision: https://reviews.llvm.org/D76356
2020-05-05 23:02:58 +05:30
Matt Arsenault
5660bb6bc9 AMDGPU: Remove denormal subtarget features
Switch to using the denormal-fp-math/denormal-fp-math-f32 attributes.
2020-04-02 17:17:12 -04:00
Matt Arsenault
75cf30918f AMDGPU: Assume f32 denormals are enabled by default
This will likely introduce catastrophic performance regressions on
older subtargets, but should be correct. A follow up change will
remove the old fp32-denormals subtarget features, and switch to using
the new denormal-fp-math/denormal-fp-math-f32 attributes. Frontends
should be making sure to add the denormal-fp-math-f32 attribute when
appropriate to avoid performance regressions.
2020-04-02 17:17:12 -04:00
Scott Linder
0e9368cc8c [AMDGPU] Move frame pointer from s34 to s33
Remove the gap left between the stack pointer (s32) and frame pointer
(s34) now that the scratch wave offset is no longer a part of the
calling convention ABI.

Update llvm/docs/AMDGPUUsage.rst to reflect the change.

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D75657
2020-03-19 15:35:16 -04:00
Stanislav Mekhanoshin
c262b69dcc [AMDGPU] Fix endcf collapse
Only collapse inner endcf if the outer one belongs to SI_IF.
If it does belong to SI_ELSE then mask being restored in fact
a partial inverse of what we need.

Differential Revision: https://reviews.llvm.org/D76154
2020-03-13 13:50:21 -07:00
Stanislav Mekhanoshin
32e90cbcd1 [AMDGPU] Disable endcf collapse
There are some functional regressions and I suspect our
scopes are not as perfectly enclosed as I expected.
Disable it for now.

Differential Revision: https://reviews.llvm.org/D76148
2020-03-13 12:33:22 -07:00
Stanislav Mekhanoshin
360aff0493 [AMDGPU] Simplify nested SI_END_CF
This is to replace the optimization from the SIOptimizeExecMaskingPreRA.
We have less opportunities in the control flow lowering because many
VGPR copies are still in place and will be removed later, but we know
for sure an instruction is SI_END_CF and not just an arbitrary S_OR_B64
with EXEC.

The subsequent change needs to convert s_and_saveexec into s_and and
address new TODO lines in tests, then code block guarded by the
-amdgpu-remove-redundant-endcf option in the pre-RA exec mask optimizer
will be removed.

Differential Revision: https://reviews.llvm.org/D76033
2020-03-12 11:25:07 -07:00
Changpeng Fang
2531535984 AMDGPU: Implement FDIV optimizations in AMDGPUCodeGenPrepare
Summary:
      RCP has the accuracy limit. If FDIV fpmath require high accuracy rcp may not
    meet the requirement. However, in DAG lowering, fpmath information gets lost,
    and thus we may generate either inaccurate rcp related computation or slow code
    for fdiv.

    In patch implements fdiv optimizations in the AMDGPUCodeGenPrepare, which could
    exactly know !fpmath.

     FastUnsafeRcpLegal: We determine whether it is legal to use rcp based on
                         unsafe-fp-math, fast math flags, denormals and fpmath
                         accuracy request.

     RCP Optimizations:
       1/x -> rcp(x) when fast unsafe rcp is legal or fpmath >= 2.5ULP with
                                                      denormals flushed.
       a/b -> a*rcp(b) when fast unsafe rcp is legal.

     Use fdiv.fast:
       a/b -> fdiv.fast(a, b) when RCP optimization is not performed and
                              fpmath >= 2.5ULP with denormals flushed.

       1/x -> fdiv.fast(1,x)  when RCP optimization is not performed and
                              fpmath >= 2.5ULP with denormals.

    Reviewers:
      arsenm

    Differential Revision:
      https://reviews.llvm.org/D71293
2020-01-23 16:57:43 -08:00
cdevadas
e53a9d96e6 Resubmit: [AMDGPU] Invert the handling of skip insertion.
The current implementation of skip insertion (SIInsertSkip) makes it a
mandatory pass required for correctness. Initially, the idea was to
have an optional pass. This patch inserts the s_cbranch_execz upfront
during SILowerControlFlow to skip over the sections of code when no
lanes are active. Later, SIRemoveShortExecBranches removes the skips
for short branches, unless there is a sideeffect and the skip branch is
really necessary.

This new pass will replace the handling of skip insertion in the
existing SIInsertSkip Pass.

Differential revision: https://reviews.llvm.org/D68092
2020-01-22 13:18:32 +09:00
Nicolai Hähnle
a80291ce10 Revert "[AMDGPU] Invert the handling of skip insertion."
This reverts commit 0dc6c249bffac9f23a605ce4e42a84341da3ddbd.

The commit is reported to cause a regression in piglit/bin/glsl-vs-loop for
Mesa.
2020-01-21 09:17:25 +01:00
cdevadas
0dc6c249bf [AMDGPU] Invert the handling of skip insertion.
The current implementation of skip insertion (SIInsertSkip) makes it a
mandatory pass required for correctness. Initially, the idea was to
have an optional pass. This patch inserts the s_cbranch_execz upfront
during SILowerControlFlow to skip over the sections of code when no
lanes are active. Later, SIRemoveShortExecBranches removes the skips
for short branches, unless there is a sideeffect and the skip branch is
really necessary.

This new pass will replace the handling of skip insertion in the
existing SIInsertSkip Pass.

Differential revision: https://reviews.llvm.org/D68092
2020-01-15 15:18:16 +05:30
Stanislav Mekhanoshin
cd69e4c74c [AMDGPU] Fix bundle scheduling
Bundles coming to scheduler considered free, i.e. zero latency.
Fixed.

Differential Revision: https://reviews.llvm.org/D72487
2020-01-09 15:56:36 -08:00
Matt Arsenault
3b95986a32 AMDGPU: Run AMDGPUCodeGenPrepare after scalar opts
The mul24 matching could interfere with SLSR and the other addressing
mode related passes. This probably is not the optimal placement, but
is an intermediate step. This should probably be moved after all the
generic IR passes, particularly LSR. Moving this after LSR seems to
help in some cases, and hurts others.

As-is in this patch, in idiv-licm, it saves 1-2 instructions inside
some of the loop bodies, but increases the number in others. Moving
this later helps these loops. In the new lsr tests in
mul24-pass-ordering, the intrinsic prevents introducing more
instructions in the loop preheader, so moving this later ends up
hurting them. This shouldn't be any worse than before the intrinsics
were introduced in r366094, and LSR should probably be smarter. I
think it's because it doesn't know the and inside the loop will be
folded away.

llvm-svn: 369991
2019-08-27 00:08:31 +00:00
Matt Arsenault
74115ef791 AMDGPU: Add baseline test for mul24 ordering issues
llvm-svn: 369858
2019-08-24 22:22:38 +00:00