91 Commits

Author SHA1 Message Date
Maurice Heumann
8cbfc0b29d
[X86] Respect blockaddress offsets when performing X86 LEA fixups (#71641)
The X86FixupLEAs pass drops blockaddress offsets, when splitting up slow
3-ops LEAs, as can be seen in this example:

https://godbolt.org/z/bEsc3Poje

Before running the pass, the first instruction in bb.0 is a LEA with
ebp, ebx and a blockaddress.
After the transformation, the blockaddress is missing.

The reason this happens is because the 3-ops LEA is being splitup into a
2-ops LEA + an add instruction.
However, as hasLEAOffset does not take blockaddresses into
consideration, the add is not emitted and thus leading to the offset
being dropped.

Taking blockaddresses into consideration fixes this issue and results in
the add instruction being emitted.

This fixes #71667
2023-11-10 08:12:18 +08:00
Craig Topper
8a417b7b7e [X86] Fix typo in comment in X86FixupLEAs. NFC 2023-11-05 23:04:07 -08:00
Shengchen Kan
c81a121f3f Revert "Revert "[X86] Remove patterns for ADC/SBB with immediate 8 and optimize during MC lowering, NFCI""
This reverts commit cb16b33a03aff70b2499c3452f2f817f3f92d20d.

In fact, the test https://bugs.chromium.org/p/chromium/issues/detail?id=1446973#c2
already passed after 5586bc539acb26cb94e461438de01a5080513401
2023-05-19 22:21:56 +08:00
Hans Wennborg
cb16b33a03 Revert "[X86] Remove patterns for ADC/SBB with immediate 8 and optimize during MC lowering, NFCI"
This caused compiler assertions, see comment on
https://reviews.llvm.org/D150107.

This also reverts the dependent follow-up change:

> [X86] Remove patterns for ADD/AND/OR/SUB/XOR/CMP with immediate 8 and optimize during MC lowering, NFCI
>
> This is follow-up of D150107.
>
> In addition, the function `X86::optimizeToFixedRegisterOrShortImmediateForm` can be
> shared with project bolt and eliminates the code in X86InstrRelaxTables.cpp.
>
> Differential Revision: https://reviews.llvm.org/D150949

This reverts commit 2ef8ae134828876ab3ebda4a81bb2df7b095d030 and
5586bc539acb26cb94e461438de01a5080513401.
2023-05-19 14:43:33 +02:00
Shengchen Kan
5586bc539a [X86] Remove patterns for ADD/AND/OR/SUB/XOR/CMP with immediate 8 and optimize during MC lowering, NFCI
This is follow-up of D150107.

In addition, the function `X86::optimizeToFixedRegisterOrShortImmediateForm` can be
shared with project bolt and eliminates the code in X86InstrRelaxTables.cpp.

Differential Revision: https://reviews.llvm.org/D150949
2023-05-19 18:22:30 +08:00
Kazu Hirata
4241d890ae [Target] Use range-based for loops (NFC) 2023-04-15 14:14:56 -07:00
Noah Goldstein
a2f45348d4 Transform slow LEA_B_I_D/LEA_SLOWBASE_I -> LEA_IS_D/LEA_IS iff base == index
The two 3c LEA cases:
    lea D(base, index,1)      -> lea D(,index,2)
    lea D(r13/rbp, index)     -> lea D(,r13/rbp,2) // D maybe zero

Current take 2 instructions to transform. We can do a bit better by
using LEA w.o a base if base == index and scale == 1.

Reviewed By: pengfei

Differential Revision: https://reviews.llvm.org/D141980
2023-02-01 01:26:06 -06:00
Shengchen Kan
052d37dc7c [NFC][X86] Rename some variables and functions about target features
This is preparation for D121768. The member's name should align w/
the interface for trival target feature.
2022-03-16 13:08:52 +08:00
Jeremy Morse
662799c851 [DebugInfo][InstrRef] Avoid duplicate instruction numbers in x86-lea-fixup
This new-ish LEA-fixup code path creates two substitutions for an
instruction number -- this is incorrect because each Value should be
replaced by a single replacement Value. Fix by deleting the duplicate
substitution. Add some test coverage for this path with debug-info
attached.

Differential Revision: https://reviews.llvm.org/D119232
2022-02-10 16:36:50 +00:00
Kazu Hirata
259cd6f893 [llvm] Use range-based for loops (NFC) 2021-11-25 22:17:10 -08:00
Jay Foad
3264e95938 [CodeGen] Update LiveIntervals in TargetInstrInfo::convertToThreeAddress
Delegate updating of LiveIntervals to each target's
convertToThreeAddress implementation, instead of repairing LiveIntervals
after the fact in TwoAddressInstruction::convertInstTo3Addr.

Differential Revision: https://reviews.llvm.org/D113493
2021-11-17 10:16:47 +00:00
Jay Foad
6cef28ed2d [TII] Remove the MFI argument to convertToThreeAddress. NFC.
This simplifies the API and addresses a FIXME in
TwoAddressInstructionPass::convertInstTo3Addr.

Differential Revision: https://reviews.llvm.org/D110229
2021-09-23 08:58:46 +01:00
Guozhi Wei
5609c8b607 [X86FixupLEAs] Try again to transform the sequence LEA/SUB to SUB/SUB
This patch transforms the sequence
    lea (reg1, reg2), reg3
    sub reg3, reg4
to two sub instructions
    sub reg1, reg4
    sub reg2, reg4

Similar optimization can also be applied to LEA/ADD sequence.

The modifications to TwoAddressInstructionPass is to ensure the operands of ADD
instruction has expected order (the dest register of LEA should be src register
of ADD).

Differential Revision: https://reviews.llvm.org/D104684
2021-07-16 10:16:03 -07:00
Florian Hahn
5cd66420cc
Revert "[X86FixupLEAs] Transform the sequence LEA/SUB to SUB/SUB"
This reverts commit 1b748faf2bae246e2fc77d88420df13c2e60f4df because it
breaks building the llvm-test-suite with -verify-machineinstrs on X86:
http://green.lab.llvm.org/green/job/test-suite-verify-machineinstrs-x86_64-O3/9585/

Running llc -verify-machineinstr on X86 crashes on the IR below:

    target datalayout = "e-m:o-p270:32:32-p271:32:32-p272:64:64-i64:64-f80:128-n8:16:32:64-S128"

    %struct.widget = type { i32, i32, i32, i32, i32*, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, [16 x [16 x i16]], [6 x [32 x i32]], [16 x [16 x i32]], [4 x [12 x [4 x [4 x i32]]]], [16 x i32], i8**, i32*, i32***, i32**, i32, i32, i32, i32, %struct.baz*, %struct.wobble.1*, i32, i32, i32, i32, i32, i32, %struct.quux.2*, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, [3 x i32], i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32***, i32***, i32****, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, [3 x [2 x i32]], [3 x [2 x i32]], i32, i32, i64, i64, %struct.zot.3, %struct.zot.3, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32 }
    %struct.baz = type { i32, i32, i32, i32, i32, i32, i32, i32, i32, %struct.snork*, %struct.wombat.0*, %struct.wobble*, i32, i32*, i32*, i32*, i32, i32*, i32*, i32*, i32 (%struct.widget*, %struct.eggs*)*, i32, i32, i32, i32 }
    %struct.snork = type { %struct.spam*, %struct.zot, i32 (%struct.wombat*, %struct.widget*, %struct.snork*)* }
    %struct.spam = type { i32, i32, i32, i32, i8*, i32 }
    %struct.zot = type { i32, i32, i32, i32, i32, i8*, i32* }
    %struct.wombat = type { i32, i32, i32, i32, i32, i32, i32, i32, void (i32, i32, i32*, i32*)*, void (%struct.wombat*, %struct.widget*, %struct.zot*)* }
    %struct.wombat.0 = type { [4 x [11 x %struct.quux]], [2 x [9 x %struct.quux]], [2 x [10 x %struct.quux]], [2 x [6 x %struct.quux]], [4 x %struct.quux], [4 x %struct.quux], [3 x %struct.quux] }
    %struct.quux = type { i16, i8 }
    %struct.wobble = type { [2 x %struct.quux], [4 x %struct.quux], [3 x [4 x %struct.quux]], [10 x [4 x %struct.quux]], [10 x [15 x %struct.quux]], [10 x [15 x %struct.quux]], [10 x [5 x %struct.quux]], [10 x [5 x %struct.quux]], [10 x [15 x %struct.quux]], [10 x [15 x %struct.quux]] }
    %struct.eggs = type { [1000 x i8], [1000 x i8], [1000 x i8], i32, i32, i32, i32, i32, i32, i32, i32 }
    %struct.wobble.1 = type { i32, [2 x i32], i32, i32, %struct.wobble.1*, %struct.wobble.1*, i32, [2 x [4 x [4 x [2 x i32]]]], i32, i64, i64, i32, i32, [4 x i8], [4 x i8], i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32, i32 }
    %struct.quux.2 = type { i32, i32, i32, i32, i32, %struct.quux.2* }
    %struct.zot.3 = type { i64, i16, i16, i16 }

    define void @blam(%struct.widget* %arg, i32 %arg1) local_unnamed_addr {
    bb:
      %tmp = load i32, i32* undef, align 4
      %tmp2 = sdiv i32 %tmp, 6
      %tmp3 = sdiv i32 undef, 6
      %tmp4 = load i32, i32* undef, align 4
      %tmp5 = icmp eq i32 %tmp4, 4
      %tmp6 = select i1 %tmp5, i32 %tmp3, i32 %tmp2
      %tmp7 = getelementptr inbounds [4 x [4 x i32]], [4 x [4 x i32]]* undef, i64 0, i64 0, i64 0
      %tmp8 = zext i16 undef to i32
      %tmp9 = zext i16 undef to i32
      %tmp10 = load i16, i16* undef, align 2
      %tmp11 = zext i16 %tmp10 to i32
      %tmp12 = zext i16 undef to i32
      %tmp13 = zext i16 undef to i32
      %tmp14 = zext i16 undef to i32
      %tmp15 = load i16, i16* undef, align 2
      %tmp16 = zext i16 %tmp15 to i32
      %tmp17 = zext i16 undef to i32
      %tmp18 = sub nsw i32 %tmp8, %tmp9
      %tmp19 = shl nsw i32 undef, 1
      %tmp20 = add nsw i32 %tmp19, %tmp18
      %tmp21 = sub nsw i32 %tmp11, %tmp12
      %tmp22 = shl nsw i32 undef, 1
      %tmp23 = add nsw i32 %tmp22, %tmp21
      %tmp24 = sub nsw i32 %tmp13, %tmp14
      %tmp25 = shl nsw i32 undef, 1
      %tmp26 = add nsw i32 %tmp25, %tmp24
      %tmp27 = sub nsw i32 %tmp16, %tmp17
      %tmp28 = shl nsw i32 undef, 1
      %tmp29 = add nsw i32 %tmp28, %tmp27
      %tmp30 = sub nsw i32 %tmp20, %tmp29
      %tmp31 = sub nsw i32 %tmp23, %tmp26
      %tmp32 = shl nsw i32 %tmp30, 1
      %tmp33 = add nsw i32 %tmp32, %tmp31
      store i32 %tmp33, i32* undef, align 4
      %tmp34 = mul nsw i32 %tmp31, -2
      %tmp35 = add nsw i32 %tmp34, %tmp30
      store i32 %tmp35, i32* undef, align 4
      %tmp36 = select i1 %tmp5, i32 undef, i32 undef
      br label %bb37

    bb37:                                             ; preds = %bb
      %tmp38 = load i32, i32* undef, align 4
      %tmp39 = ashr i32 %tmp38, %tmp6
      %tmp40 = load i32, i32* undef, align 4
      %tmp41 = sdiv i32 %tmp39, %tmp40
      store i32 %tmp41, i32* undef, align 4
      ret void
    }
2021-06-12 11:41:38 +01:00
Florian Hahn
e087b4f149
Revert "[X86FixupLEAs] Sub register usage of LEA dest should block LEA/SUB optimization"
This reverts commit f35bcea1d4748889b8240defdf00cb7a71cbe070 because it
depends on 1b748faf2bae246e2fc77d88420df13c2e60f4df, which breaks
building the llvm-test-suite with -verify-machineinstrs on X86.

See 154adc0f135cff3f8a8861c335d2b88c8049d098 for more details.
2021-06-12 11:40:47 +01:00
Guozhi Wei
f35bcea1d4 [X86FixupLEAs] Sub register usage of LEA dest should block LEA/SUB optimization
In function searchALUInst, sub register usage of LEA dest should also block LEA/SUB optimization, otherwise the sub register usage gets an undefined value.

This patch fixes https://bugs.llvm.org/show_bug.cgi?id=50615.

Differential Revision: https://reviews.llvm.org/D103922
2021-06-11 09:45:56 -07:00
Guozhi Wei
1b748faf2b [X86FixupLEAs] Transform the sequence LEA/SUB to SUB/SUB
This patch transforms the sequence

    lea (reg1, reg2), reg3
    sub reg3, reg4

to two sub instructions

    sub reg1, reg4
    sub reg2, reg4

Similar optimization can also be applied to LEA/ADD sequence.
The modifications to TwoAddressInstructionPass is to ensure the operands of ADD
instruction has expected order (the dest register of LEA should be src register of ADD).

Differential Revision: https://reviews.llvm.org/D101970
2021-06-01 10:31:30 -07:00
Simon Pilgrim
707fc2e2f2 Revert rG528bc10e95d5f9d6a338f9bab5e91d7265d1cf05 : "[X86FixupLEAs] Transform the sequence LEA/SUB to SUB/SUB"
Reports on D101970 indicate this is causing failures on multi-stage compiles.
2021-05-19 15:01:20 +01:00
Guozhi Wei
528bc10e95 [X86FixupLEAs] Transform the sequence LEA/SUB to SUB/SUB
This patch transforms the sequence

    lea (reg1, reg2), reg3
    sub reg3, reg4

to two sub instructions

    sub reg1, reg4
    sub reg2, reg4

Similar optimization can also be applied to LEA/ADD sequence.
The modifications to TwoAddressInstructionPass is to ensure the operands of ADD
instruction has expected order (the dest register of LEA should be src register
of ADD).

Differential Revision: https://reviews.llvm.org/D101970
2021-05-18 18:02:36 -07:00
Jeremy Morse
d73275993b [DebugInstrRef] Substitute debug value numbers to handle optimizations
This patch touches two optimizations, TwoAddressInstruction and X86's
FixupLEAs pass, both of which optimize by re-creating instructions. For
LEAs, various bits of arithmetic are better represented as LEAs on X86,
while TwoAddressInstruction sometimes converts instrs into three address
instructions if it's profitable.

For debug instruction referencing, both of these require substitutions to
be created -- the old instruction number must be pointed to the new
instruction number, as illustrated in the added test. If this isn't done,
any variable locations based on the optimized instruction are
conservatively dropped.

Differential Revision: https://reviews.llvm.org/D85756
2020-10-22 13:01:03 +01:00
Craig Topper
815a9b256b [X86] Remove isSafeToClobberEFLAGS helper and just inline it into the call sites.
This is just a thin wrapper around computeRegisterLivness which
we can just call directly. The only real difference is that
isSafeToClobberEFLAGS returns a bool and computeRegisterLivness
returns an enum. So we need to check for the specific enum value
that isSafeToClobberEFLAGS was hiding.

I've also adjusted which sites pass an explicit value for
Neighborhood since the default for computeRegisterLivness is 10.
2020-08-08 12:31:58 -07:00
Craig Topper
8d3ae64b04 Recommit "[X86] Increase the number of instructions searched for isSafeToClobberEFLAGS in a couple places"
I messed up the bug numbers in the commit message before

Previously this function searched 4 instructions forwards or
backwards to determine if it was ok to clobber eflags.

This is called in 3 places: rematerialization, turning 2 operand
leas into adds or splitting 3 ops leas into an lea and add on some
CPU targets.

This patch increases the search limit to 10 instructions for
rematerialization and 2 operand lea to add. I've left the old
treshold for 3 ops lea spliting as that increases code size.

Fixes PR47024 and PR46315.
2020-08-08 11:53:14 -07:00
Craig Topper
761f568420 Revert "[X86] Increase the number of instructions searched for isSafeToClobberEFLAGS in a couple places"
This reverts commit 44b260cb0aab387d85e4d59c16fc7b8866264f5e.

I messed up the bug number in the commit message so I'm reverting
to fix it.
2020-08-08 11:53:14 -07:00
Craig Topper
44b260cb0a [X86] Increase the number of instructions searched for isSafeToClobberEFLAGS in a couple places
Previously this function searched 4 instructions forwards or
backwards to determine if it was ok to clobber eflags.

This is called in 3 places: rematerialization, turning 2 operand
leas into adds or splitting 3 ops leas into an lea and add on some
CPU targets.

This patch increases the search limit to 10 instructions for
rematerialization and 2 operand lea to add. I've left the old
treshold for 3 ops lea spliting as that increases code size.

Fixes PR47024 and PR43014
2020-08-08 11:29:41 -07:00
Hiroshi Yamauchi
153a0b8906 [PGO][PGSO] Add profile guided size optimization to the X86 LEA fixup.
Differential Revision: https://reviews.llvm.org/D83330
2020-07-13 09:46:22 -07:00
Craig Topper
3adc819b7a [X86] Erase dead LEA instruction after converting it to MOV in FixupLEAPass::processInstrForSlow3OpLEA. 2019-12-11 07:51:23 -08:00
Simon Pilgrim
a8653da432 [X86] Fix uninitialized variable warnings. NFCI. 2019-11-04 17:24:35 +00:00
Craig Topper
2c4f078877 [X86] Support LEA64_32r in processInstrForSlow3OpLEA and use INC/DEC when possible.
Move the erasing and iterator updating inside to match the
other slow LEA function.

I've adapted code from optTwoAddrLEA and basically rebuilt the
implementation here. We do lose the kill flags now just like
optTwoAddrLEA. This runs late enough in the pipeline that
shouldn't really be a problem.

llvm-svn: 373877
2019-10-07 06:27:55 +00:00
Craig Topper
a17d1d2250 [X86] Use Register/MCRegister in more places in X86
This was a quick pass through some obvious places. I haven't tried the clang-tidy check.

I also replaced the zeroes in getX86SubSuperRegister with X86::NoRegister which is the real sentinel name.

Differential Revision: https://reviews.llvm.org/D66363

llvm-svn: 369151
2019-08-16 20:50:23 +00:00
Daniel Sanders
0c47611131 Apply llvm-prefer-register-over-unsigned from clang-tidy to LLVM
Summary:
This clang-tidy check is looking for unsigned integer variables whose initializer
starts with an implicit cast from llvm::Register and changes the type of the
variable to llvm::Register (dropping the llvm:: where possible).

Partial reverts in:
X86FrameLowering.cpp - Some functions return unsigned and arguably should be MCRegister
X86FixupLEAs.cpp - Some functions return unsigned and arguably should be MCRegister
X86FrameLowering.cpp - Some functions return unsigned and arguably should be MCRegister
HexagonBitSimplify.cpp - Function takes BitTracker::RegisterRef which appears to be unsigned&
MachineVerifier.cpp - Ambiguous operator==() given MCRegister and const Register
PPCFastISel.cpp - No Register::operator-=()
PeepholeOptimizer.cpp - TargetInstrInfo::optimizeLoadInstr() takes an unsigned&
MachineTraceMetrics.cpp - MachineTraceMetrics lacks a suitable constructor

Manual fixups in:
ARMFastISel.cpp - ARMEmitLoad() now takes a Register& instead of unsigned&
HexagonSplitDouble.cpp - Ternary operator was ambiguous between unsigned/Register
HexagonConstExtenders.cpp - Has a local class named Register, used llvm::Register instead of Register.
PPCFastISel.cpp - PPCEmitLoad() now takes a Register& instead of unsigned&

Depends on D65919

Reviewers: arsenm, bogner, craig.topper, RKSimon

Reviewed By: arsenm

Subscribers: RKSimon, craig.topper, lenary, aemerson, wuzish, jholewinski, MatzeB, qcolombet, dschuff, jyknight, dylanmckay, sdardis, nemanjai, jvesely, wdng, nhaehnle, sbc100, jgravelle-google, kristof.beyls, hiraditya, aheejin, kbarton, fedor.sergeev, javed.absar, asb, rbar, johnrusso, simoncook, apazos, sabuasal, niosHD, jrtc27, MaskRay, zzheng, edward-jones, atanasyan, rogfer01, MartinMosbeck, brucehoult, the_o, tpr, PkmX, jocewei, jsji, Petar.Avramovic, asbirlea, Jim, s.egerton, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D65962

llvm-svn: 369041
2019-08-15 19:22:08 +00:00
Craig Topper
88729e3dec [X86] Don't convert 8 or 16 bit ADDs to LEAs on Atom in FixupLEAPass.
We use the functions that convert to three address to do the
conversion, but changing an 8 or 16 bit will cause it to create
a virtual register. This can't be done after register allocation
where this pass runs.

I've switched the pass completely to a white list of instructions
that can be converted to LEA instead of a blacklist that was
incorrect. This will avoid surprises if we enhance the three
address conversion function to include additional instructions
in the future.

Fixes PR42565.

llvm-svn: 365720
2019-07-11 01:01:39 +00:00
Tom Stellard
f335672218 X86: Clean up pass initialization
Summary:
- Remove redundant initializations from pass constructors that were
  already being initialized by LLVMInitializeX86Target().

- Add initialization function for the FPS pass.

Reviewers: craig.topper

Reviewed By: craig.topper

Subscribers: hiraditya, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D63218

llvm-svn: 363221
2019-06-13 02:09:32 +00:00
Craig Topper
46e5052b8e [X86FixupLEAs] Turn optIncDec into a generic two address LEA optimizer. Support LEA64_32r properly.
INC/DEC is really a special case of a more generic issue. We should also turn leas into add reg/reg or add reg/imm regardless of the slow lea flags.

This also supports LEA64_32 which has 64 bit input registers and 32 bit output registers. So we need to convert the 64 bit inputs to their 32 bit equivalents to check if they are equal to base reg.

One thing to note, the original code preserved the kill flags by adding operands to the new instruction instead of using addReg. But I think tied operands aren't supposed to have the kill flag set. I dropped the kill flags, but I could probably try to preserve it in the add reg/reg case if we think its important. Not sure which operand its supposed to go on for the LEA64_32r instruction due to the super reg implicit uses. Though I'm also not sure those are needed since they were probably just created by an INSERT_SUBREG from a 32-bit input.

Differential Revision: https://reviews.llvm.org/D61472

llvm-svn: 361691
2019-05-25 06:17:47 +00:00
Simon Pilgrim
5e0f92acad FixupLEAPass::fixupIncDec - non-LEA opcodes should not happen here. NFCI.
Matches what we do in other functions and fixes scan-build warning about uninitialized NewOpcode variable.

llvm-svn: 360525
2019-05-11 16:02:34 +00:00
Craig Topper
bf29238e1a [X86] Remove LEA16r references from X86FixupLEAs. NFCI
As far as I know, we never emit LEA16r

llvm-svn: 359840
2019-05-02 22:46:23 +00:00
Craig Topper
dd66acef96 [X86FixupLEAs] Hoist the calls to isLEA out of the 3 separate functions and put it in the basic block instruction loop. NFC
Now need to check it 3 different times. Just do it once at the top of the loop.

llvm-svn: 359658
2019-05-01 06:53:03 +00:00
Craig Topper
965d1306ae [X86] Initial cleanups on the FixupLEAs pass. Separate Atom LEA creation from other LEA optimizations.
This removes some of the class variables. Merge basic block processing into
runOnMachineFunction to keep the flags local.

Pass MachineBasicBlock around instead of an iterator. We can get the iterator in
the few places that need it. Allows a range-based outer for loop.

Separate the Atom optimization from the rest of the optimizations. This allows
fixupIncDec to create INC/DEC and still allow Atom to turn it back into LEA
when profitable by its heuristics.

I'd like to improve fixupIncDec to turn LEAs into ADD any time the base or index
register is equal to the destination register. This is profitable regardless of
the various slow flags. But again we would want Atom to be able to undo that.

Differential Revision: https://reviews.llvm.org/D60993

llvm-svn: 359581
2019-04-30 17:56:28 +00:00
Evandro Menezes
85bd3978ae [IR] Refactor attribute methods in Function class (NFC)
Rename the functions that query the optimization kind attributes.

Differential revision: https://reviews.llvm.org/D60287

llvm-svn: 357731
2019-04-04 22:40:06 +00:00
Craig Topper
ffd8662558 [X86] Check MI.isConvertibleTo3Addr() before calling convertToThreeAddress in X86FixupLEAs.
X86FixupLEAs just assumes convertToThreeAddress will return nullptr for any instruction that isn't convertible.

But the code in convertToThreeAddress for X86 assumes that any instruction coming in has at least 2 operands and that the second one is a register. But those properties aren't guaranteed of all instructions. We should check the instruction property first.

llvm-svn: 357528
2019-04-02 20:52:10 +00:00
Craig Topper
0d3a533270 [X86] Allow FixupLEAs to form INC/DEC under OptSize not just MinSize
This matches our usual INC/DEC heuristic used during isel.

llvm-svn: 357497
2019-04-02 17:13:03 +00:00
Craig Topper
c5903c935c [X86] Use unsigned type for opcodes throughout X86FixupLEAs.
All of the interfaces related to opcode in MachineInstr and MCInstrInfo refer to opcodes as unsigned.

llvm-svn: 357444
2019-04-02 00:50:58 +00:00
Chandler Carruth
2946cd7010 Update the file headers across all of the LLVM projects in the monorepo
to reflect the new license.

We understand that people may be surprised that we're moving the header
entirely to discuss the new license. We checked this carefully with the
Foundation's lawyer and we believe this is the correct approach.

Essentially, all code in the project is now made available by the LLVM
project under our new license, so you will see that the license headers
include that license only. Some of our contributors have contributed
code under our old license, and accordingly, we have retained a copy of
our old license notice in the top-level files in each project and
repository.

llvm-svn: 351636
2019-01-19 08:50:56 +00:00
Craig Topper
1f02ac3451 [X86] FixupLEAs, reduce number of calls to getOperand and use X86::AddrBaseReg/AddrIndexReg, etc. instead of hardcoded constants.
Makes the code a little more readable.

llvm-svn: 349983
2018-12-22 01:34:47 +00:00
Andrea Di Biagio
4ae974e745 [X86][FixupLEA] Avoid checking target features for every single processed instruction. NFCI
llvm-svn: 346309
2018-11-07 12:26:00 +00:00
Simon Pilgrim
d5d7224355 [X86][X86FixupLEA] Rename processInstructionForSLM to processInstructionForSlowLEA (NFCI)
The function isn't SLM specific (its driven by the FeatureSlowLEA flag).

Minor tidyup prior to PR38225.

llvm-svn: 345836
2018-11-01 14:57:07 +00:00
Matthias Braun
a9f900561e X86: Consistently declare pass initializers in X86.h; NFC
This avoids declaring them twice: in X86TargetMachine.cpp and the file
implementing the pass.

llvm-svn: 345801
2018-11-01 00:38:01 +00:00
Craig Topper
b2cc9a1d44 [X86] Add R13D to the isInefficientLEAReg in FixupLEAs.
I'm assuming the R13 restriction extends to R13D. Guessing this restriction is related to the funny encoding of this register as base always requiring a displacement to be encoded.

llvm-svn: 338806
2018-08-03 03:45:19 +00:00
Craig Topper
9164b9b16e [X86] Stop accidentally running the Bonnell LEA fixup path on Goldmont.
In one place we checked X86Subtarget.slowLEA() to decide if the pass should run. But to decide what the pass should we only check isSLM. This resulted in Goldmont going down the Bonnell path.

llvm-svn: 338342
2018-07-31 00:43:54 +00:00
Andrea Di Biagio
b6022aa8d9 [X86][BtVer2] correctly model the latency/throughput of LEA instructions.
This patch fixes the latency/throughput of LEA instructions in the BtVer2
scheduling model.

On Jaguar, A 3-operands LEA has a latency of 2cy, and a reciprocal throughput of
1. That is because it uses one cycle of SAGU followed by 1cy of ALU1.  An LEA
with a "Scale" operand is also slow, and it has the same latency profile as the
3-operands LEA. An LEA16r has a latency of 3cy, and a throughput of 0.5 (i.e.
RThrouhgput of 2.0).

This patch adds a new TIIPredicate named IsThreeOperandsLEAFn to X86Schedule.td.
The tablegen backend (for instruction-info) expands that definition into this
(file X86GenInstrInfo.inc):
```
static bool isThreeOperandsLEA(const MachineInstr &MI) {
  return (
    (
      MI.getOpcode() == X86::LEA32r
      || MI.getOpcode() == X86::LEA64r
      || MI.getOpcode() == X86::LEA64_32r
      || MI.getOpcode() == X86::LEA16r
    )
    && MI.getOperand(1).isReg()
    && MI.getOperand(1).getReg() != 0
    && MI.getOperand(3).isReg()
    && MI.getOperand(3).getReg() != 0
    && (
      (
        MI.getOperand(4).isImm()
        && MI.getOperand(4).getImm() != 0
      )
      || (MI.getOperand(4).isGlobal())
    )
  );
}
```

A similar method is generated in the X86_MC namespace, and included into
X86MCTargetDesc.cpp (the declaration lives in X86MCTargetDesc.h).

Back to the BtVer2 scheduling model:
A new scheduling predicate named JSlowLEAPredicate now checks if either the
instruction is a three-operands LEA, or it is an LEA with a Scale value
different than 1.
A variant scheduling class uses that new predicate to correctly select the
appropriate latency profile.

Differential Revision: https://reviews.llvm.org/D49436

llvm-svn: 337469
2018-07-19 16:42:15 +00:00
Nicola Zaghen
d34e60ca85 Rename DEBUG macro to LLVM_DEBUG.
The DEBUG() macro is very generic so it might clash with other projects.
The renaming was done as follows:
- git grep -l 'DEBUG' | xargs sed -i 's/\bDEBUG\s\?(/LLVM_DEBUG(/g'
- git diff -U0 master | ../clang/tools/clang-format/clang-format-diff.py -i -p1 -style LLVM
- Manual change to APInt
- Manually chage DOCS as regex doesn't match it.

In the transition period the DEBUG() macro is still present and aliased
to the LLVM_DEBUG() one.

Differential Revision: https://reviews.llvm.org/D43624

llvm-svn: 332240
2018-05-14 12:53:11 +00:00