Commit Graph

64 Commits

Author SHA1 Message Date
Sam Parker 9303546b42 [CostModel] Unify getMemoryOpCost
Use getMemoryOpCost from the generic implementation of getUserCost
and have getInstructionThroughput return the result of that for loads
and stores.

This also means that the X86 implementation of getUserCost can be
removed with the functionality folded into its getMemoryOpCost.

Differential Revision: https://reviews.llvm.org/D80984
2020-06-05 10:13:38 +01:00
Christopher Tetreault c2625f330f [SVE] Eliminate calls to default-false VectorType::get() from SystemZ
Reviewers: efriedma, jnspaulsson, kmclaughlin, sdesmalen, samparker, uweigand

Reviewed By: uweigand

Subscribers: tschuett, hiraditya, rkruppe, psnobl, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D80329
2020-06-04 10:05:38 -07:00
Sam Parker 8aaabadece [CostModel] Unify getCastInstrCost
Add the remaining cast instruction opcodes to the base implementation
of getUserCost and directly return the result. This allows
getInstructionThroughput to return getUserCost for the casts. This
has required changes to PPC and SystemZ because they implement
getUserCost and/or getCastInstrCost with adjustments for vector
operations. Adjusts have also been made in the remaining backends
that implement the method so that they still produce a cost of zero
or one for cost kinds other than throughput.

Differential Revision: https://reviews.llvm.org/D79848
2020-05-26 11:29:57 +01:00
Sam Parker 8cc911fa5b [NFCI][CostModel] Refactor getIntrinsicInstrCost
Combine the two API calls into one by introducing a structure to hold
the relevant data. This has the added benefit of moving the boiler
plate code for arguments and flags, into the constructors. This is
intended to be a non-functional change, but the complicated web of
logic involved here makes it very hard to guarantee.

Differential Revision: https://reviews.llvm.org/D79941
2020-05-20 11:59:08 +01:00
Christopher Tetreault 920ff806d4 [SVE] Remove usages of VectorType::getNumElements() from SystemZ
Reviewers: efriedma, david-arm, c-rhodes, jnspaulsson

Reviewed By: david-arm

Subscribers: tschuett, hiraditya, rkruppe, psnobl, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D79824
2020-05-14 12:46:51 -07:00
Simon Pilgrim 4e3c005554 [TTI] getScalarizationOverhead - use explicit VectorType operand
getScalarizationOverhead is only ever called with vectors (and we already had a load of cast<VectorType> calls immediately inside the functions).

Followup to D78357

Reviewed By: @samparker

Differential Revision: https://reviews.llvm.org/D79341
2020-05-05 16:59:23 +01:00
Sam Parker 40574fefe9 [NFC][CostModel] Add TargetCostKind to relevant APIs
Make the kind of cost explicit throughout the cost model which,
apart from making the cost clear, will allow the generic parts to
calculate better costs. It will also allow some backends to
approximate and correlate the different costs if they wish. Another
benefit is that it will also help simplify the cost model around
immediate and intrinsic costs, where we currently have multiple APIs.

RFC thread:
http://lists.llvm.org/pipermail/llvm-dev/2020-April/141263.html

Differential Revision: https://reviews.llvm.org/D79002
2020-05-05 10:35:54 +01:00
Craig Topper daadb48553 [CallSite removal][TargetTransformInfoImpl] Replace CallSite with CallBase. NFC 2020-04-21 22:49:30 -07:00
Sam Parker e3056ae9a0 [NFC][TTI] Explicit use of VectorType
The API for shuffles and reductions uses generic Type parameters,
instead of VectorType, and so assertions and casts are used a lot.
This patch makes those types explicit, which means that the clients
can't be lazy, but results in less ambiguity, and that can only be a
good thing.

Bugzilla: https://bugs.llvm.org/show_bug.cgi?id=45562

Differential Revision: https://reviews.llvm.org/D78357
2020-04-20 09:16:52 +01:00
Christopher Tetreault 65b8b643b4 Clean up usages of asserting vector getters in Type
Summary:
Remove usages of asserting vector getters in Type in preparation for the
VectorType refactor. The existence of these functions complicates the
refactor while adding little value.

Reviewers: sdesmalen, efriedma, jonpa

Reviewed By: sdesmalen

Subscribers: hiraditya, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D77265
2020-04-10 08:43:32 -07:00
Jonas Paulsson 36d4421f50 [LoopDataPrefetch + SystemZ] Let target decide on prefetching for each loop.
This patch adds

- New arguments to getMinPrefetchStride() to let the target decide on a
  per-loop basis if software prefetching should be done even with a stride
  within the limit of the hw prefetcher.

- New TTI hook enableWritePrefetching() to let a target do write prefetching
  by default (defaults to false).

- In LoopDataPrefetch:

  - A search through the whole loop to gather information before emitting any
    prefetches. This way the target can get information via new arguments to
    getMinPrefetchStride() and emit prefetches more selectively. Collected
    information includes: Does the loop have a call, how many memory
    accesses, how many of them are strided, how many prefetches will cover
    them. This is NFC to before as long as the target does not change its
    definition of getMinPrefetchStride().

  - If a previous access to the same exact address was 'read', and the
    current one is 'write', make it a 'write' prefetch.

  - If two accesses that are covered by the same prefetch do not dominate
    each other, put the prefetch in a block that dominates both of them.

  - If a ConstantMaxTripCount is less than ItersAhead, then skip the loop.

- A SystemZ implementation of getMinPrefetchStride().

Review: Ulrich Weigand, Michael Kruse

Differential Revision: https://reviews.llvm.org/D70228
2020-04-02 14:57:46 +02:00
Anna Welker a6d3bec83f [TTI][ARM][MVE] Refine gather/scatter cost model
Refines the gather/scatter cost model, but also changes the TTI
function getIntrinsicInstrCost to accept an additional parameter
which is needed for the gather/scatter cost evaluation.
This did require trivial changes in some non-ARM backends to
adopt the new parameter.
Extending gathers and truncating scatters are now priced cheaper.

Differential Revision: https://reviews.llvm.org/D75525
2020-03-11 10:23:41 +00:00
Jonas Paulsson 41bd9ead35 [SystemZ] Return scalarized costs for vector instructions on older archs.
A cost query for a vector instruction should return a cost even without
target vector support, and not trigger an assert.

VectorCombine does this with an input containing source code vectors.

Review: Ulrich Weigand
2020-02-21 09:17:37 -08:00
Reid Kleckner 85ba5f637a Rename TTI::getIntImmCost for instructions and intrinsics
Soon Intrinsic::ID will be a plain integer, so this overload will not be
possible.

Rename both overloads to ensure that downstream targets observe this as
a build failure instead of a runtime failure.

Split off from D71320

Reviewers: efriedma

Differential Revision: https://reviews.llvm.org/D71381
2019-12-11 18:00:20 -08:00
David Green be7a107070 [ARM] Teach the Arm cost model that a Shift can be folded into other instructions
This attempts to teach the cost model in Arm that code such as:
  %s = shl i32 %a, 3
  %a = and i32 %s, %b
Can under Arm or Thumb2 become:
  and r0, r1, r2, lsl #3

So the cost of the shift can essentially be free. To do this without
trying to artificially adjust the cost of the "and" instruction, it
needs to get the users of the shl and check if they are a type of
instruction that the shift can be folded into. And so it needs to have
access to the actual instruction in getArithmeticInstrCost, which if
available is added as an extra parameter much like getCastInstrCost.

We otherwise limit it to shifts with a single user, which should
hopefully handle most of the cases. The list of instruction that the
shift can be folded into include ADC, ADD, AND, BIC, CMP, EOR, MVN, ORR,
ORN, RSB, SBC and SUB. This translates to Add, Sub, And, Or, Xor and
ICmp.

Differential Revision: https://reviews.llvm.org/D70966
2019-12-09 10:24:33 +00:00
Guillaume Chatelet a4783ef58d [Alignment][NFC] getMemoryOpCost uses MaybeAlign
Summary:
This is patch is part of a series to introduce an Alignment type.
See this thread for context: http://lists.llvm.org/pipermail/llvm-dev/2019-July/133851.html
See this patch for the introduction of the type: https://reviews.llvm.org/D64790

Reviewers: courbet

Subscribers: nemanjai, hiraditya, kbarton, MaskRay, jsji, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D69307
2019-10-25 21:26:59 +02:00
Zi Xuan Wu 9802268ad3 recommit: [LoopVectorize][PowerPC] Estimate int and float register pressure separately in loop-vectorize
In loop-vectorize, interleave count and vector factor depend on target register number. Currently, it does not
estimate different register pressure for different register class separately(especially for scalar type,
float type should not be on the same position with int type), so it's not accurate. Specifically,
it causes too many times interleaving/unrolling, result in too many register spills in loop body and hurting performance.

So we need classify the register classes in IR level, and importantly these are abstract register classes,
and are not the target register class of backend provided in td file. It's used to establish the mapping between
the types of IR values and the number of simultaneous live ranges to which we'd like to limit for some set of those types.

For example, POWER target, register num is special when VSX is enabled. When VSX is enabled, the number of int scalar register is 32(GPR),
float is 64(VSR), but for int and float vector register both are 64(VSR). So there should be 2 kinds of register class when vsx is enabled,
and 3 kinds of register class when VSX is NOT enabled.

It runs on POWER target, it makes big(+~30%) performance improvement in one specific bmk(503.bwaves_r) of spec2017 and no other obvious degressions.

Differential revision: https://reviews.llvm.org/D67148

llvm-svn: 374634
2019-10-12 02:53:04 +00:00
Jinsong Ji 9912232b46 Revert "[LoopVectorize][PowerPC] Estimate int and float register pressure separately in loop-vectorize"
Also Revert "[LoopVectorize] Fix non-debug builds after rL374017"

This reverts commit 9f41deccc0.
This reverts commit 18b6fe07bc.

The patch is breaking PowerPC internal build, checked with author, reverting
on behalf of him for now due to timezone.

llvm-svn: 374091
2019-10-08 17:32:56 +00:00
Zi Xuan Wu 9f41deccc0 [LoopVectorize][PowerPC] Estimate int and float register pressure separately in loop-vectorize
In loop-vectorize, interleave count and vector factor depend on target register number. Currently, it does not
estimate different register pressure for different register class separately(especially for scalar type,
float type should not be on the same position with int type), so it's not accurate. Specifically,
it causes too many times interleaving/unrolling, result in too many register spills in loop body and hurting performance.

So we need classify the register classes in IR level, and importantly these are abstract register classes,
and are not the target register class of backend provided in td file. It's used to establish the mapping between
the types of IR values and the number of simultaneous live ranges to which we'd like to limit for some set of those types.

For example, POWER target, register num is special when VSX is enabled. When VSX is enabled, the number of int scalar register is 32(GPR),
float is 64(VSR), but for int and float vector register both are 64(VSR). So there should be 2 kinds of register class when vsx is enabled,
and 3 kinds of register class when VSX is NOT enabled.

It runs on POWER target, it makes big(+~30%) performance improvement in one specific bmk(503.bwaves_r) of spec2017 and no other obvious degressions.

Differential revision: https://reviews.llvm.org/D67148

llvm-svn: 374017
2019-10-08 03:28:33 +00:00
Ulrich Weigand 819c1651f7 [SystemZ] Support z15 processor name
The recently announced IBM z15 processor implements the architecture
already supported as "arch13" in LLVM.  This patch adds support for
"z15" as an alternate architecture name for arch13.

The patch also uses z15 in a number of places where we used arch13
as long as the official name was not yet announced.

llvm-svn: 372435
2019-09-20 23:04:45 +00:00
Ulrich Weigand 0f0a8b7784 [SystemZ] Add support for new cpu architecture - arch13
This patch series adds support for the next-generation arch13
CPU architecture to the SystemZ backend.

This includes:
- Basic support for the new processor and its features.
- Assembler/disassembler support for new instructions.
- CodeGen for new instructions, including new LLVM intrinsics.
- Scheduler description for the new processor.
- Detection of arch13 as host processor.

Note: No currently available Z system supports the arch13
architecture.  Once new systems become available, the
official system name will be added as supported -march name.

llvm-svn: 365932
2019-07-12 18:13:16 +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
Jonas Paulsson 8ae0f88b13 [SystemZ::TTI] Return zero cost for ICmp that becomes Load And Test.
A loaded value with multiple users compared with 0 will become a load and
test single instruction. The load is not folded in this case (multiple
users), but the compare instruction is eliminated.

This patch returns 0 cost for the icmp in these cases.

Review: Ulrich Weigand
https://reviews.llvm.org/D55111

llvm-svn: 348141
2018-12-03 14:30:18 +00:00
Jonas Paulsson b1d014883c [SystemZ::TTI] i8/i16 operands extension costs revisited
Three minor changes to these extra costs:

* For ICmp instructions, instead of adding 2 all the time for extending each
  operand, this is only done if that operand is neither a load or an
  immediate.

* The operands extension costs for divides removed, because we now use a high
  cost already for the divide (20).

* The costs for lhsr/ashr extra costs removed as this did not seem useful.

Review: Ulrich Weigand
https://reviews.llvm.org/D55053

llvm-svn: 347961
2018-11-30 07:09:34 +00:00
Jonas Paulsson 06acb3a236 [SystemZ::TTI] Improve cost for compare of i64 with extended i32 load
CGF/CLGF compares an i64 register with a sign/zero extended loaded i32 value
in memory.

This patch makes such a load considered foldable and so gets a 0 cost.

Review: Ulrich Weigand
https://reviews.llvm.org/D54944

llvm-svn: 347735
2018-11-28 08:58:27 +00:00
Jonas Paulsson d6b7aca911 [SystemZ::TTI] Improve costs for i16 add, sub and mul against memory.
AH, SH and MH costs are already covered in the cases where LHS is 32 bits and
RHS is 16 bits of memory sign-extended to i32.

As these instructions are also used when LHS is i16, this patch recognizes
that the loads will get folded then as well.

Review: Ulrich Weigand
https://reviews.llvm.org/D54940

llvm-svn: 347734
2018-11-28 08:31:50 +00:00
Jonas Paulsson 011a503f25 [SystemZ::TTI] Improved cost values for comparison against memory.
Single instructions exist for i8 and i16 comparisons of memory against a
small immediate.

This patch makes sure that if the load in these cases has a single user (the
ICmp), it gets a 0 cost (folded), and also that the ICmp gets a cost of 1.

Review: Ulrich Weigand
https://reviews.llvm.org/D54897

llvm-svn: 347733
2018-11-28 08:08:05 +00:00
Jonas Paulsson 5da8e432b9 [SystemZ::TTI] Return zero cost for scalar load/store connected with a bswap.
Since byte-swapping loads and stores are supported, a 'load -> bswap' or
'bswap -> store' sequence should have the cost of one.

Review: Ulrich Weigand
https://reviews.llvm.org/D54870

llvm-svn: 347732
2018-11-28 07:52:34 +00:00
Jonas Paulsson 96782c2c0b [SystemZTTIImpl] Give correct cost values for vector bswap intrinsics.
Implement getIntrinsicInstrCost() and return costs reflecting that bswap can
be done with a vperm per vector register.

Review: Ulrich Weigand
https://reviews.llvm.org/D54789

llvm-svn: 347445
2018-11-22 07:17:29 +00:00
Jonas Paulsson 5cea85dd59 [SystemZ::TTI] Improve accuracy of costs for vector fp <-> int conversions
Improve getCastInstrCost() by respecting the different types of Src and Dst
for vector integer <-> fp conversions.

This means that extracting from integer becomes more expensive (by the
extraction penalty), and the extraction from fp becomes cheaper (no longer
has a false extraction penalty).

Review: Ulrich Weigand
https://reviews.llvm.org/D54423

llvm-svn: 346663
2018-11-12 15:32:27 +00:00
Jonas Paulsson cced2a2775 [SystemZ::TTI] Improve cost handling of uint/sint to fp conversions.
Let i8/i16 uint/sint to fp conversions cost 1 if operand is a load.

Since the load already does the extension, there is no extra cost (previously
returned 2).

Review: Ulrich Weigand
https://reviews.llvm.org/D54028

llvm-svn: 346009
2018-11-02 17:53:31 +00:00
Jonas Paulsson 79f2441eee [SystemZ] Rework getInterleavedMemoryOpCost()
Model this function more closely after the BasicTTIImpl version, with
separate handling of loads and stores. For loads, the set of actually loaded
vectors is checked.

This makes it more readable and just slightly more accurate generally.

Review: Ulrich Weigand
https://reviews.llvm.org/D53071

llvm-svn: 345998
2018-11-02 17:15:36 +00:00
Jonas Paulsson 6749c24f40 [SystemZ::TTI] Recognize the higher cost of scalar i1 -> fp conversion
Scalar i1 to fp conversions are done with a branch sequence, so it should
have a higher cost.

Review: Ulrich Weigand
https://reviews.llvm.org/D53924

llvm-svn: 345818
2018-11-01 09:05:32 +00:00
Jonas Paulsson f15a53bc81 [SystemZ::TTI] Accurate costs for i1->double vector conversions
This factors out a new method getBoolVecToIntConversionCost() containing the
code for vector sext/zext of i1, in order to reuse it for i1 to double vector
conversions.

Review: Ulrich Weigand
https://reviews.llvm.org/D53923

llvm-svn: 345817
2018-11-01 09:01:51 +00:00
Dorit Nuzman 34da6dd696 [LV] Support vectorization of interleave-groups that require an epilog under
optsize using masked wide loads 

Under Opt for Size, the vectorizer does not vectorize interleave-groups that
have gaps at the end of the group (such as a loop that reads only the even
elements: a[2*i]) because that implies that we'll require a scalar epilogue
(which is not allowed under Opt for Size). This patch extends the support for
masked-interleave-groups (introduced by D53011 for conditional accesses) to
also cover the case of gaps in a group of loads; Targets that enable the
masked-interleave-group feature don't have to invalidate interleave-groups of
loads with gaps; they could now use masked wide-loads and shuffles (if that's
what the cost model selects).

Reviewers: Ayal, hsaito, dcaballe, fhahn

Reviewed By: Ayal

Differential Revision: https://reviews.llvm.org/D53668

llvm-svn: 345705
2018-10-31 09:57:56 +00:00
Jonas Paulsson af8e036c29 [SystemZ] Improve isFoldableLoad() for Sub, SDiv and UDiv.
Sub, SDiv and UDiv are not commutative, so only the RHS operand can fold a
load. This patch adds a check for this.

Review: Ulrich Weigand
https://reviews.llvm.org/D53791

llvm-svn: 345596
2018-10-30 13:41:03 +00:00
Jonas Paulsson 2b280ea604 [SystemZ] NFC reformatting in SystemZTargetTransformInfo.cpp
Some lines more than 80 characters long reformatted.

llvm-svn: 345331
2018-10-25 22:53:27 +00:00
Jonas Paulsson b7caa809e1 [SystemZ] Improve getMemoryOpCost() to find foldable loads that are converted.
The SystemZ backend can do arithmetic of memory by loading and then extending
one of the operands. Similarly, a load + truncate can be folded into an
operand.

This patch improves the SystemZ TTI cost function to recognize this.

Review: Ulrich Weigand
https://reviews.llvm.org/D52692

llvm-svn: 345327
2018-10-25 22:28:25 +00:00
Jonas Paulsson 4645711a8d [SystemZ] Improve handling and cost estimates of vector integer div/rem
Enable the DAG optimization that converts vector div/rem with constants into
multiply+shifts sequences by expanding them early. This is needed since
ISD::SMUL_LOHI is 'Custom' lowered on SystemZ, and will therefore not be
available to BuildSDIV after legalization.

Better cost values for these instructions based on how they will be
implemented (a constant divisor is cheaper).

Review: Ulrich Weigand
https://reviews.llvm.org/D53196

llvm-svn: 345321
2018-10-25 21:47:22 +00:00
Dorit Nuzman 38bbf81ade recommit 344472 after fixing build failure on ARM and PPC.
llvm-svn: 344475
2018-10-14 08:50:06 +00:00
Dorit Nuzman 5118c68cde revert 344472 due to failures.
llvm-svn: 344473
2018-10-14 07:21:20 +00:00
Dorit Nuzman 8174368955 [IAI,LV] Add support for vectorizing predicated strided accesses using masked
interleave-group

The vectorizer currently does not attempt to create interleave-groups that
contain predicated loads/stores; predicated strided accesses can currently be
vectorized only using masked gather/scatter or scalarization. This patch makes
predicated loads/stores candidates for forming interleave-groups during the
Loop-Vectorizer's analysis, and adds the proper support for masked-interleave-
groups to the Loop-Vectorizer's planning and transformation stages. The patch
also extends the TTI API to allow querying the cost of masked interleave groups
(which each target can control); Targets that support masked vector loads/
stores may choose to enable this feature and allow vectorizing predicated
strided loads/stores using masked wide loads/stores and shuffles.

Reviewers: Ayal, hsaito, dcaballe, fhahn, javed.absar

Reviewed By: Ayal

Differential Revision: https://reviews.llvm.org/D53011

llvm-svn: 344472
2018-10-14 07:06:16 +00:00
Jonas Paulsson bf66f38705 [SystemZ] Temporarily disable high VFs with integer div/rem.
Until mischeduler is clever enough to avoid spilling in a vectorized loop
with many (scalar) DLRs it is better to avoid high vectorization factors (8
and above).

llvm-svn: 344129
2018-10-10 09:30:29 +00:00
Jonas Paulsson 2c8b33770c [SystemZ] Take better care when computing needed vector registers in TTI.
A new function getNumVectorRegs() is better to use for the number of needed
vector registers instead of getNumberOfParts(). This is to make sure that the
number of vector registers (and typically operations) required for a vector
type is accurate.

getNumberOfParts() which was previously used works by splitting the vector
type until it is legal gives incorrect results for types with a non
power of two number of elements (rare).

A new static function getScalarSizeInBits() that also checks for a pointer
type and returns 64U for it since otherwise it gets a value of 0). Used in a
few places where Ty may be pointer.

Review: Ulrich Weigand
llvm-svn: 344115
2018-10-10 07:36:27 +00:00
Jonas Paulsson 77df2f2f38 [SystemZ] Adjust cost functions for subtargets that use LI + LOC instead of IPM
After recent improvements which makes better use of LOC instead of IPM, the
TTI cost functions also needs to be updated to reflect this.

This involves sext, zext and xor of i1.

The tests were updated so that for z13 the new costs are expected, while the
old costs are still checked for on zEC12.

Review: Ulrich Weigand
https://reviews.llvm.org/D51339

llvm-svn: 342207
2018-09-14 06:46:55 +00:00
Fangrui Song f78650a8de Remove trailing space
sed -Ei 's/[[:space:]]+$//' include/**/*.{def,h,td} lib/**/*.{cpp,h}

llvm-svn: 338293
2018-07-30 19:41:25 +00:00
Craig Topper 781aa181ab Fix a bunch of places where operator-> was used directly on the return from dyn_cast.
Inspired by r331508, I did a grep and found these.

Mostly just change from dyn_cast to cast. Some cases also showed a dyn_cast result being converted to bool, so those I changed to isa.

llvm-svn: 331577
2018-05-05 01:57:00 +00:00
David Blaikie b3bde2ea50 Fix a bunch more layering of CodeGen headers that are in Target
All these headers already depend on CodeGen headers so moving them into
CodeGen fixes the layering (since CodeGen depends on Target, not the
other way around).

llvm-svn: 318490
2017-11-17 01:07:10 +00:00
Jonas Paulsson e54cc1a436 [SystemZ] implement hasDivRemOp()
SystemZ can do division and remainder in a single instruction for scalar
integer types, which are now reflected by returning true in this hook for
those cases.

Review: Ulrich Weigand
llvm-svn: 317477
2017-11-06 13:10:31 +00:00
Jonas Paulsson 024e319489 [SystemZ, LoopStrengthReduce]
This patch makes LSR generate better code for SystemZ in the cases of memory
intrinsics, Load->Store pairs or comparison of immediate with memory.

In order to achieve this, the following common code changes were made:

 * New TTI hook: LSRWithInstrQueries(), which defaults to false. Controls if
 LSR should do instruction-based addressing evaluations by calling
 isLegalAddressingMode() with the Instruction pointers.
 * In LoopStrengthReduce: handle address operands of memset, memmove and memcpy
 as address uses, and call isFoldableMemAccessOffset() for any LSRUse::Address,
 not just loads or stores.

SystemZ changes:

 * isLSRCostLess() implemented with Insns first, and without ImmCost.
 * New function supportedAddressingMode() that is a helper for TTI methods
 looking at Instructions passed via pointers.

Review: Ulrich Weigand, Quentin Colombet
https://reviews.llvm.org/D35262
https://reviews.llvm.org/D35049

llvm-svn: 308729
2017-07-21 11:59:37 +00:00