6 Commits

Author SHA1 Message Date
Pierre van Houtryve
9375962ac9
[TableGen][GlobalISel] Specialize more MatchTable Opcodes (#89736)
The vast majority of the following (very common) opcodes were always
called with identical arguments:

- `GIM_CheckType` for the root
- `GIM_CheckRegBankForClass` for the root
- `GIR_Copy` between the old and new root
- `GIR_ConstrainSelectedInstOperands` on the new root
- `GIR_BuildMI` to create the new root

I added overloaded version of each opcode specialized for the root
instructions. It always saves between 1 and 2 bytes per instance
depending on the number of arguments specialized into the opcode. Some
of these opcodes had between 5 and 15k occurences in the AArch64
GlobalISel Match Table.

Additionally, the following opcodes are almost always used in the same
sequence:

- `GIR_EraseFromParent 0` + `GIR_Done` 
- `GIR_EraseRootFromParent_Done` has been created to do both. Saves 2
bytes per occurence.
- `GIR_IsSafeToFold` was *always* called for each InsnID except 0.
- Changed the opcode to take the number of instructions to check after
`MI[0]`

The savings from these are pretty neat. For `AArch64GenGlobalISel.inc`:
- `AArch64InstructionSelector.cpp.o` goes down from 772kb to 704kb (-10%
code size)
- Self-reported MatchTable size goes from 420380 bytes to 352426 bytes
(~ -17%)

A smaller match table means a faster match table because we spend less
time iterating and decoding.
I don't have a solid measurement methodology for GlobalISel performance
so I don't have precise numbers but I saw a few % of improvements in a
simple testcase.
2024-04-24 09:19:18 +02:00
Pierre van Houtryve
a110e991c6
[GlobalISel] Change MatchTable entries to 1 byte each (#74429)
See
https://discourse.llvm.org/t/rfc-make-globalisel-match-table-entries-1-byte-instead-of-8/75411

This helps reduce llc's binary size, at the cost of some added
complexity to the MatchTable machinery.
2023-12-13 08:48:56 +01:00
Michael Liao
03481287ca Refactor argument attribute specification in intrinsic definition. NFC.
- Argument attribute needs specifiying through `ArgIndex<n>`
  (corresponding to `FirstArgIndex`) to distinguish explicitly from the
  index number from the overloaded type list.
- In addition, `RetIndex` (corresponding to `ReturnIndex`) and
  `FuncIndex` (corresponding to `FunctionIndex`) are introduced for us
  to associate attributes on the return value and potentially function
  itself.

Differential Revision: https://reviews.llvm.org/D80422
2020-05-27 16:37:53 -04:00
Matt Arsenault
3ecab8e455 Reapply r372285 "GlobalISel: Don't materialize immarg arguments to intrinsics"
This reverts r372314, reapplying r372285 and the commits which depend
on it (r372286-r372293, and r372296-r372297)

This was missing one switch to getTargetConstant in an untested case.

llvm-svn: 372338
2019-09-19 16:26:14 +00:00
Hans Wennborg
13bdae8541 Revert r372285 "GlobalISel: Don't materialize immarg arguments to intrinsics"
This broke the Chromium build, causing it to fail with e.g.

  fatal error: error in backend: Cannot select: t362: v4i32 = X86ISD::VSHLI t392, Constant:i8<15>

See llvm-commits thread of r372285 for details.

This also reverts r372286, r372287, r372288, r372289, r372290, r372291,
r372292, r372293, r372296, and r372297, which seemed to depend on the
main commit.

> Encode them directly as an imm argument to G_INTRINSIC*.
>
> Since now intrinsics can now define what parameters are required to be
> immediates, avoid using registers for them. Intrinsics could
> potentially want a constant that isn't a legal register type. Also,
> since G_CONSTANT is subject to CSE and legalization, transforms could
> potentially obscure the value (and create extra work for the
> selector). The register bank of a G_CONSTANT is also meaningful, so
> this could throw off future folding and legalization logic for AMDGPU.
>
> This will be much more convenient to work with than needing to call
> getConstantVRegVal and checking if it may have failed for every
> constant intrinsic parameter. AMDGPU has quite a lot of intrinsics wth
> immarg operands, many of which need inspection during lowering. Having
> to find the value in a register is going to add a lot of boilerplate
> and waste compile time.
>
> SelectionDAG has always provided TargetConstant for constants which
> should not be legalized or materialized in a register. The distinction
> between Constant and TargetConstant was somewhat fuzzy, and there was
> no automatic way to force usage of TargetConstant for certain
> intrinsic parameters. They were both ultimately ConstantSDNode, and it
> was inconsistently used. It was quite easy to mis-select an
> instruction requiring an immediate. For SelectionDAG, start emitting
> TargetConstant for these arguments, and using timm to match them.
>
> Most of the work here is to cleanup target handling of constants. Some
> targets process intrinsics through intermediate custom nodes, which
> need to preserve TargetConstant usage to match the intrinsic
> expectation. Pattern inputs now need to distinguish whether a constant
> is merely compatible with an operand or whether it is mandatory.
>
> The GlobalISelEmitter needs to treat timm as a special case of a leaf
> node, simlar to MachineBasicBlock operands. This should also enable
> handling of patterns for some G_* instructions with immediates, like
> G_FENCE or G_EXTRACT.
>
> This does include a workaround for a crash in GlobalISelEmitter when
> ARM tries to uses "imm" in an output with a "timm" pattern source.

llvm-svn: 372314
2019-09-19 12:33:07 +00:00
Matt Arsenault
d8399d12cd GlobalISel: Don't materialize immarg arguments to intrinsics
Encode them directly as an imm argument to G_INTRINSIC*.

Since now intrinsics can now define what parameters are required to be
immediates, avoid using registers for them. Intrinsics could
potentially want a constant that isn't a legal register type. Also,
since G_CONSTANT is subject to CSE and legalization, transforms could
potentially obscure the value (and create extra work for the
selector). The register bank of a G_CONSTANT is also meaningful, so
this could throw off future folding and legalization logic for AMDGPU.

This will be much more convenient to work with than needing to call
getConstantVRegVal and checking if it may have failed for every
constant intrinsic parameter. AMDGPU has quite a lot of intrinsics wth
immarg operands, many of which need inspection during lowering. Having
to find the value in a register is going to add a lot of boilerplate
and waste compile time.

SelectionDAG has always provided TargetConstant for constants which
should not be legalized or materialized in a register. The distinction
between Constant and TargetConstant was somewhat fuzzy, and there was
no automatic way to force usage of TargetConstant for certain
intrinsic parameters. They were both ultimately ConstantSDNode, and it
was inconsistently used. It was quite easy to mis-select an
instruction requiring an immediate. For SelectionDAG, start emitting
TargetConstant for these arguments, and using timm to match them.

Most of the work here is to cleanup target handling of constants. Some
targets process intrinsics through intermediate custom nodes, which
need to preserve TargetConstant usage to match the intrinsic
expectation. Pattern inputs now need to distinguish whether a constant
is merely compatible with an operand or whether it is mandatory.

The GlobalISelEmitter needs to treat timm as a special case of a leaf
node, simlar to MachineBasicBlock operands. This should also enable
handling of patterns for some G_* instructions with immediates, like
G_FENCE or G_EXTRACT.

This does include a workaround for a crash in GlobalISelEmitter when
ARM tries to uses "imm" in an output with a "timm" pattern source.

llvm-svn: 372285
2019-09-19 01:33:14 +00:00