Commit Graph

16 Commits

Author SHA1 Message Date
Michael Munday e28b6a60bc [RISCV][NFC] Regenerate RISCV CodeGen tests
Regenerated using:

./llvm/utils/update_llc_test_checks.py -u llvm/test/CodeGen/RISCV/*.ll

This has added comments to spill-related instructions and added @plt to
some symbols.

Differential Revision: https://reviews.llvm.org/D92841
2020-12-09 19:42:49 +00:00
Luís Marques 5b1d0dc6bf [RISCV][NFC] Fix use of missing attribute groups in tests 2019-12-23 15:39:04 +00:00
Guozhi Wei 72942459d0 [MBP] Avoid tail duplication if it can't bring benefit
Current tail duplication integrated in bb layout is designed to increase the fallthrough from a BB's predecessor to its successor, but we have observed cases that duplication doesn't increase fallthrough, or it brings too much size overhead.

To overcome these two issues in function canTailDuplicateUnplacedPreds I add two checks:

  make sure there is at least one duplication in current work set.
  the number of duplication should not exceed the number of successors.

The modification in hasBetterLayoutPredecessor fixes a bug that potential predecessor must be at the bottom of a chain.

Differential Revision: https://reviews.llvm.org/D64376
2019-12-06 09:53:53 -08:00
Luis Marques 3d0fbafd0b [RISCV] Switch to the Machine Scheduler
Most of the test changes are trivial instruction reorderings and differing
register allocations, without any obvious performance impact.

Differential Revision: https://reviews.llvm.org/D66973

llvm-svn: 372106
2019-09-17 11:15:35 +00:00
Luis Marques 2d550d19b3 Revert Patch from Phabricator
This reverts r372092 (git commit e38695a025)

llvm-svn: 372104
2019-09-17 10:52:09 +00:00
Luis Marques e38695a025 Patch from Phabricator
llvm-svn: 372092
2019-09-17 09:43:08 +00:00
Jordan Rupprecht f9f81289e6 Revert [MBP] Disable aggressive loop rotate in plain mode
This reverts r369664 (git commit 51f48295cb)

It causes many benchmark regressions, internally and in llvm's benchmark suite.

llvm-svn: 370398
2019-08-29 19:03:58 +00:00
Guozhi Wei 51f48295cb [MBP] Disable aggressive loop rotate in plain mode
Patch https://reviews.llvm.org/D43256 introduced more aggressive loop layout optimization which depends on profile information. If profile information is not available, the statically estimated profile information(generated by BranchProbabilityInfo.cpp) is used. If user program doesn't behave as BranchProbabilityInfo.cpp expected, the layout may be worse.

To be conservative this patch restores the original layout algorithm in plain mode. But user can still try the aggressive layout optimization with -force-precise-rotation-cost=true.

Differential Revision: https://reviews.llvm.org/D65673

llvm-svn: 369664
2019-08-22 16:21:32 +00:00
Hans Wennborg a45f301f7a Revert r368339 "[MBP] Disable aggressive loop rotate in plain mode"
It caused assertions to fire when building Chromium:

  lib/CodeGen/LiveDebugValues.cpp:331: bool
  {anonymous}::LiveDebugValues::OpenRangesSet::empty() const: Assertion
  `Vars.empty() == VarLocs.empty() && "open ranges are inconsistent"' failed.

See https://crbug.com/992871#c3 for how to reproduce.

> Patch https://reviews.llvm.org/D43256 introduced more aggressive loop layout optimization which depends on profile information. If profile information is not available, the statically estimated profile information(generated by BranchProbabilityInfo.cpp) is used. If user program doesn't behave as BranchProbabilityInfo.cpp expected, the layout may be worse.
>
> To be conservative this patch restores the original layout algorithm in plain mode. But user can still try the aggressive layout optimization with -force-precise-rotation-cost=true.
>
> Differential Revision: https://reviews.llvm.org/D65673

llvm-svn: 368579
2019-08-12 14:23:13 +00:00
Guozhi Wei 80347c3acc [MBP] Disable aggressive loop rotate in plain mode
Patch https://reviews.llvm.org/D43256 introduced more aggressive loop layout optimization which depends on profile information. If profile information is not available, the statically estimated profile information(generated by BranchProbabilityInfo.cpp) is used. If user program doesn't behave as BranchProbabilityInfo.cpp expected, the layout may be worse.

To be conservative this patch restores the original layout algorithm in plain mode. But user can still try the aggressive layout optimization with -force-precise-rotation-cost=true.

Differential Revision: https://reviews.llvm.org/D65673

llvm-svn: 368339
2019-08-08 20:25:23 +00:00
Fangrui Song e1aa69f755 [RISCV] Regenerate remat.ll and atomic-rmw.ll after D43256
llvm-svn: 363487
2019-06-15 07:49:14 +00:00
Alex Bradbury 8a70468a27 [RISCV] Only mark fp as reserved if the function has a dedicated frame pointer
This follows similar logic in the ARM and Mips backends, and allows the free
use of s0 in functions without a dedicated frame pointer. The changes in
callee-saved-gprs.ll most clearly show the effect of this patch.

llvm-svn: 356063
2019-03-13 16:33:45 +00:00
Ana Pazos 05a6064385 Reapply: [RISCV] Set isAsCheapAsAMove for ADDI, ORI, XORI, LUI
This reapplies commit r352010 with RISC-V test fixes.

llvm-svn: 352237
2019-01-25 20:22:49 +00:00
Sameer AbuAsal eadce02741 [RISCV] Set CostPerUse for registers
Summary:
 Set CostPerUse higher for registers that are not used in the compressed
 instruction set. This will influence the greedy register allocator to reduce
 the use of registers that can't be encoded in 16 bit instructions. This
 affects register allocation even when compressed instruction isn't targeted,
 we see no major negative codegen impact.

Reviewers: asb

Reviewed By: asb

Subscribers: rbar, johnrusso, simoncook, jordy.potman.lists, apazos, niosHD, kito-cheng, shiva0217, zzheng, edward-jones, mgrang

Differential Revision: https://reviews.llvm.org/D47039

llvm-svn: 333132
2018-05-23 21:34:30 +00:00
Alex Bradbury 6a53023b4e [RISCV] Set isReMaterializable on ADDI and LUI instructions
The isReMaterlizable flag is somewhat confusing, unlike most other instruction 
flags it is currently interpreted as a hint (mightBeRematerializable would be 
a better name). While LUI is always rematerialisable, for an instruction like 
ADDI it depends on its operands. TargetInstrInfo::isTriviallyReMaterializable 
will call TargetInstrInfo::isReallyTriviallyReMaterializable, which in turn 
calls TargetInstrInfo::isReallyTriviallyReMaterializableGeneric. We rely on 
the logic in the latter to pick out instances of ADDI that really are 
rematerializable.

The isReMaterializable flag does make a difference on a variety of test 
programs. The recently committed remat.ll test case demonstrates how stack 
usage is reduce and a unnecessary lw/sw can be removed. Stack usage in the 
Proc0 function in dhrystone reduces from 192 bytes to 112 bytes.

For the sake of completeness, this patch also implements 
RISCVRegisterInfo::isConstantPhysReg. Although this is called from a number of 
places, it doesn't seem to result in different codegen for any programs I've 
thrown at it. However, it is called in the rematerialisation codepath and it 
seems sensible to implement something correct here.

Differential Revision: https://reviews.llvm.org/D46182

llvm-svn: 332617
2018-05-17 15:51:37 +00:00
Alex Bradbury f5800a2aa0 [RISCV] Add remat.ll test case
This test case demonstrates suboptimal codegen due to the fact that simple 
constants aren't recognised as rematerialisable.

llvm-svn: 331028
2018-04-27 11:50:30 +00:00