Commit Graph

200 Commits

Author SHA1 Message Date
Edd Barrett 2e62a26fd7
[stackmaps] Legalise patchpoint arguments.
This is similar to D125680, but for llvm.experimental.patchpoint
(instead of llvm.experimental.stackmap).

Differential review: https://reviews.llvm.org/D129268
2022-07-15 12:01:59 +01:00
Edd Barrett ed8ef65f3d
[stackmaps] Start legalizing live variable operands
Prior to this change, live variable operands passed to
`llvm.experimental.stackmap` would be emitted directly to target nodes,
meaning that they don't get legalised. The upshot of this is that LLVM
may crash when encountering illegally typed target nodes.

e.g. https://github.com/llvm/llvm-project/issues/21657

This change introduces a platform independent stackmap DAG node whose
operands are legalised as per usual, thus avoiding aforementioned
crashes.

Note that some kinds of argument are still not handled properly, namely
vectors, structs, and large integers, like i128s. These will need to be
addressed in follow-up changes.

Note also that this does not change the behaviour of
`llvm.experimental.patchpoint`. A follow up change will do the same for
this intrinsic.

Differential review:
https://reviews.llvm.org/D125680
2022-07-06 14:01:54 +01:00
Benjamin Kramer fb34d531af Promote bf16 to f32 when the target doesn't support it
This is modeled after the half-precision fp support. Two new nodes are
introduced for casting from and to bf16. Since casting from bf16 is a
simple operation I opted to always directly lower it to integer
arithmetic. The other way round is more complicated if you want to
preserve IEEE semantics, so it's handled by a new __truncsfbf2
compiler-rt builtin.

This is of course very bare bones, but sufficient to get a semi-softened
fadd on x86.

Possible future improvements:
 - Targets with bf16 conversion instructions can now make fp_to_bf16 legal
 - The software conversion to bf16 can be replaced by a trivial
   implementation under fast math.

Differential Revision: https://reviews.llvm.org/D126953
2022-06-15 12:56:31 +02:00
Serge Pavlov 170a903144 Intrinsic for checking floating point class
This change introduces a new intrinsic, `llvm.is.fpclass`, which checks
if the provided floating-point number belongs to any of the the specified
value classes. The intrinsic implements the checks made by C standard
library functions `isnan`, `isinf`, `isfinite`, `isnormal`, `issubnormal`,
`issignaling` and corresponding IEEE-754 operations.

The primary motivation for this intrinsic is the support of strict FP
mode. In this mode using compare instructions or other FP operations is
not possible, because if the value is a signaling NaN, floating-point
exception `Invalid` is raised, but the aforementioned functions must
never raise exceptions.

Currently there are two solutions for this problem, both are
implemented partially. One of them is using integer operations to
implement the check. It was implemented in https://reviews.llvm.org/D95948
for `isnan`. It solves the problem of exceptions, but offers one
solution for all targets, although some can do the check in more
efficient way.

The other, implemented in https://reviews.llvm.org/D96568, introduced a
hook 'clang::TargetCodeGenInfo::testFPKind', which injects a target
specific code into IR to implement `isnan` and some other functions. It is
convenient for targets that have dedicated instruction to determine FP data
class. However using target-specific intrinsic complicates analysis and can
prevent some optimizations.

A special intrinsic for value class checks allows representing data class
tests with enough flexibility. During IR transformations it represents the
check in target-independent way and saves it from undesired transformations.
In the instruction selector it allows efficient lowering depending on the
used target and mode.

This implementation is an extended variant of `llvm.isnan` introduced
in https://reviews.llvm.org/D104854. It is limited to minimal intrinsic
support. Target-specific treatment will be implemented in separate
patches.

Differential Revision: https://reviews.llvm.org/D112025
2022-04-26 13:09:16 +07:00
Daniil Kovalev 62a983ebc5 Revert "[CodeGen] Place SDNode debug ID declaration under appropriate #if"
This reverts commit 83a798d4b0.

As discussed in D120714 with @thakis, the patch added unneeded complexity
without noticeable benefits.
2022-04-06 20:32:53 +03:00
Daniil Kovalev 83a798d4b0 [CodeGen] Place SDNode debug ID declaration under appropriate #if
Place PersistentId declaration under #if LLVM_ENABLE_ABI_BREAKING_CHECKS to
reduce memory usage when it is not needed.

Differential Revision: https://reviews.llvm.org/D120714
2022-04-06 14:09:32 +03:00
Craig Topper 73f0af106b [SelectionDAG] Add printing support for the Align value of AssertAlign nodes.
Differential Revision: https://reviews.llvm.org/D122262
2022-03-22 14:16:32 -07:00
serge-sans-paille ed98c1b376 Cleanup includes: DebugInfo & CodeGen
Discourse thread: https://discourse.llvm.org/t/include-what-you-use-include-cleanup
Differential Revision: https://reviews.llvm.org/D121332
2022-03-12 17:26:40 +01:00
David Green 4072e362c0 [ISel] Port AArch64 HADD and RHADD to ISel
This ports the aarch64 combines for HADD and RHADD over to DAG combine,
so that they can be used in more architectures (notably MVE in a
followup patch). They are renamed to AVGFLOOR and AVGCEIL in the
process, to avoid confusion with instructions such as X86 hadd. The code
was also rewritten slightly to remove the AArch64 idiosyncrasies.

The general pattern for a AVGFLOORS is
  %xe = sext i8 %x to i32
  %ye = sext i8 %y to i32
  %a = add i32 %xe, %ye
  %r = lshr i32 %a, 1
  %t = trunc i32 %r to i8

An AVGFLOORU is equivalent with zext. Because of the truncate
lshr==ashr, as the top bits are not demanded. An AVGCEIL also includes
an extra rounding, so includes an extra add of 1.

Differential Revision: https://reviews.llvm.org/D106237
2022-02-11 18:28:56 +00:00
Roman Lebedev 3f1f08f0ed
Revert @llvm.isnan intrinsic patchset.
Please refer to
https://lists.llvm.org/pipermail/llvm-dev/2021-September/152440.html
(and that whole thread.)

TLDR: the original patch had no prior RFC, yet it had some changes that
really need a proper RFC discussion. It won't be productive to discuss
such an RFC, once it's actually posted, while said patch is already
committed, because that introduces bias towards already-committed stuff,
and the tree is potentially in broken state meanwhile.

While the end result of discussion may lead back to the current design,
it may also not lead to the current design.

Therefore i take it upon myself
to revert the tree back to last known good state.

This reverts commit 4c4093e6e3.
This reverts commit 0a2b1ba33a.
This reverts commit d9873711cb.
This reverts commit 791006fb8c.
This reverts commit c22b64ef66.
This reverts commit 72ebcd3198.
This reverts commit 5fa6039a5f.
This reverts commit 9efda541bf.
This reverts commit 94d3ff09cf.
2021-09-02 13:53:56 +03:00
Serge Pavlov 4c4093e6e3 Introduce intrinsic llvm.isnan
This is recommit of the patch 16ff91ebcc,
reverted in 0c28a7c990 because it had
an error in call of getFastMathFlags (base type should be FPMathOperator
but not Instruction). The original commit message is duplicated below:

    Clang has builtin function '__builtin_isnan', which implements C
    library function 'isnan'. This function now is implemented entirely in
    clang codegen, which expands the function into set of IR operations.
    There are three mechanisms by which the expansion can be made.

    * The most common mechanism is using an unordered comparison made by
      instruction 'fcmp uno'. This simple solution is target-independent
      and works well in most cases. It however is not suitable if floating
      point exceptions are tracked. Corresponding IEEE 754 operation and C
      function must never raise FP exception, even if the argument is a
      signaling NaN. Compare instructions usually does not have such
      property, they raise 'invalid' exception in such case. So this
      mechanism is unsuitable when exception behavior is strict. In
      particular it could result in unexpected trapping if argument is SNaN.

    * Another solution was implemented in https://reviews.llvm.org/D95948.
      It is used in the cases when raising FP exceptions by 'isnan' is not
      allowed. This solution implements 'isnan' using integer operations.
      It solves the problem of exceptions, but offers one solution for all
      targets, however some can do the check in more efficient way.

    * Solution implemented by https://reviews.llvm.org/D96568 introduced a
      hook 'clang::TargetCodeGenInfo::testFPKind', which injects target
      specific code into IR. Now only SystemZ implements this hook and it
      generates a call to target specific intrinsic function.

    Although these mechanisms allow to implement 'isnan' with enough
    efficiency, expanding 'isnan' in clang has drawbacks:

    * The operation 'isnan' is hidden behind generic integer operations or
      target-specific intrinsics. It complicates analysis and can prevent
      some optimizations.

    * IR can be created by tools other than clang, in this case treatment
      of 'isnan' has to be duplicated in that tool.

    Another issue with the current implementation of 'isnan' comes from the
    use of options '-ffast-math' or '-fno-honor-nans'. If such option is
    specified, 'fcmp uno' may be optimized to 'false'. It is valid
    optimization in general, but it results in 'isnan' always returning
    'false'. For example, in some libc++ implementations the following code
    returns 'false':

        std::isnan(std::numeric_limits<float>::quiet_NaN())

    The options '-ffast-math' and '-fno-honor-nans' imply that FP operation
    operands are never NaNs. This assumption however should not be applied
    to the functions that check FP number properties, including 'isnan'. If
    such function returns expected result instead of actually making
    checks, it becomes useless in many cases. The option '-ffast-math' is
    often used for performance critical code, as it can speed up execution
    by the expense of manual treatment of corner cases. If 'isnan' returns
    assumed result, a user cannot use it in the manual treatment of NaNs
    and has to invent replacements, like making the check using integer
    operations. There is a discussion in https://reviews.llvm.org/D18513#387418,
    which also expresses the opinion, that limitations imposed by
    '-ffast-math' should be applied only to 'math' functions but not to
    'tests'.

    To overcome these drawbacks, this change introduces a new IR intrinsic
    function 'llvm.isnan', which realizes the check as specified by IEEE-754
    and C standards in target-agnostic way. During IR transformations it
    does not undergo undesirable optimizations. It reaches instruction
    selection, where is lowered in target-dependent way. The lowering can
    vary depending on options like '-ffast-math' or '-ffp-model' so the
    resulting code satisfies requested semantics.

    Differential Revision: https://reviews.llvm.org/D104854
2021-08-06 14:32:27 +07:00
Serge Pavlov 0c28a7c990 Revert "Introduce intrinsic llvm.isnan"
This reverts commit 16ff91ebcc.
Several errors were reported mainly test-suite execution time. Reverted
for investigation.
2021-08-04 17:18:15 +07:00
Serge Pavlov 16ff91ebcc Introduce intrinsic llvm.isnan
Clang has builtin function '__builtin_isnan', which implements C
library function 'isnan'. This function now is implemented entirely in
clang codegen, which expands the function into set of IR operations.
There are three mechanisms by which the expansion can be made.

* The most common mechanism is using an unordered comparison made by
  instruction 'fcmp uno'. This simple solution is target-independent
  and works well in most cases. It however is not suitable if floating
  point exceptions are tracked. Corresponding IEEE 754 operation and C
  function must never raise FP exception, even if the argument is a
  signaling NaN. Compare instructions usually does not have such
  property, they raise 'invalid' exception in such case. So this
  mechanism is unsuitable when exception behavior is strict. In
  particular it could result in unexpected trapping if argument is SNaN.

* Another solution was implemented in https://reviews.llvm.org/D95948.
  It is used in the cases when raising FP exceptions by 'isnan' is not
  allowed. This solution implements 'isnan' using integer operations.
  It solves the problem of exceptions, but offers one solution for all
  targets, however some can do the check in more efficient way.

* Solution implemented by https://reviews.llvm.org/D96568 introduced a
  hook 'clang::TargetCodeGenInfo::testFPKind', which injects target
  specific code into IR. Now only SystemZ implements this hook and it
  generates a call to target specific intrinsic function.

Although these mechanisms allow to implement 'isnan' with enough
efficiency, expanding 'isnan' in clang has drawbacks:

* The operation 'isnan' is hidden behind generic integer operations or
  target-specific intrinsics. It complicates analysis and can prevent
  some optimizations.

* IR can be created by tools other than clang, in this case treatment
  of 'isnan' has to be duplicated in that tool.

Another issue with the current implementation of 'isnan' comes from the
use of options '-ffast-math' or '-fno-honor-nans'. If such option is
specified, 'fcmp uno' may be optimized to 'false'. It is valid
optimization in general, but it results in 'isnan' always returning
'false'. For example, in some libc++ implementations the following code
returns 'false':

    std::isnan(std::numeric_limits<float>::quiet_NaN())

The options '-ffast-math' and '-fno-honor-nans' imply that FP operation
operands are never NaNs. This assumption however should not be applied
to the functions that check FP number properties, including 'isnan'. If
such function returns expected result instead of actually making
checks, it becomes useless in many cases. The option '-ffast-math' is
often used for performance critical code, as it can speed up execution
by the expense of manual treatment of corner cases. If 'isnan' returns
assumed result, a user cannot use it in the manual treatment of NaNs
and has to invent replacements, like making the check using integer
operations. There is a discussion in https://reviews.llvm.org/D18513#387418,
which also expresses the opinion, that limitations imposed by
'-ffast-math' should be applied only to 'math' functions but not to
'tests'.

To overcome these drawbacks, this change introduces a new IR intrinsic
function 'llvm.isnan', which realizes the check as specified by IEEE-754
and C standards in target-agnostic way. During IR transformations it
does not undergo undesirable optimizations. It reaches instruction
selection, where is lowered in target-dependent way. The lowering can
vary depending on options like '-ffast-math' or '-ffp-model' so the
resulting code satisfies requested semantics.

Differential Revision: https://reviews.llvm.org/D104854
2021-08-04 15:27:49 +07:00
Simon Pilgrim 3c0b596ecc SelectionDAGDumper.cpp - remove nested if-else return chain. NFCI.
Match style and don't use an else after a return.
2021-07-30 19:23:05 +01:00
Simon Pilgrim 986841cca2 SelectionDAGDumper.cpp - printrWithDepthHelper - remove dead code. NFCI.
Fixes coverity warning - we have an early-out for unsigned depth == 0, so the depth < 1 early-out later on is dead code.
2021-07-30 19:23:04 +01:00
David Green 2887f14639 [ISel] Port AArch64 SABD and UABD to DAGCombine
This ports the AArch64 SABD and USBD over to DAG Combine, where they can be
used by more backends (notably MVE in a follow-up patch). The matching code
has changed very little, just to handle legal operations and types
differently. It selects from (ABS (SUB (EXTEND a), (EXTEND b))), producing
a ubds/abdu which is zexted to the original type.

Differential Revision: https://reviews.llvm.org/D91937
2021-06-26 19:34:16 +01:00
Jeroen Dobbelaere bb8ce25e88 Intrinsic::getName: require a Module argument
Ensure that we provide a `Module` when checking if a rename of an intrinsic is necessary.

This fixes the issue that was detected by https://bugs.chromium.org/p/oss-fuzz/issues/detail?id=32288
(as mentioned by @fhahn), after committing D91250.

Note that the `LLVMIntrinsicCopyOverloadedName` is being deprecated in favor of `LLVMIntrinsicCopyOverloadedName2`.

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D99173
2021-06-14 14:52:29 +02:00
David Sherwood 748ae5281d [IR][SVE] Add new llvm.experimental.stepvector intrinsic
This patch adds a new llvm.experimental.stepvector intrinsic,
which takes no arguments and returns a linear integer sequence of
values of the form <0, 1, ...>. It is primarily intended for
scalable vectors, although it will work for fixed width vectors
too. It is intended that later patches will make use of this
new intrinsic when vectorising induction variables, currently only
supported for fixed width. I've added a new CreateStepVector
method to the IRBuilder, which will generate a call to this
intrinsic for scalable vectors and fall back on creating a
ConstantVector for fixed width.

For scalable vectors this intrinsic is lowered to a new ISD node
called STEP_VECTOR, which takes a single constant integer argument
as the step. During lowering this argument is set to a value of 1.
The reason for this additional argument at the codegen level is
because in future patches we will introduce various generic DAG
combines such as

  mul step_vector(1), 2 -> step_vector(2)
  add step_vector(1), step_vector(1) -> step_vector(2)
  shl step_vector(1), 1 -> step_vector(2)
  etc.

that encourage a canonical format for all targets. This hopefully
means all other targets supporting scalable vectors can benefit
from this too.

I've added cost model tests for both fixed width and scalable
vectors:

  llvm/test/Analysis/CostModel/AArch64/neon-stepvector.ll
  llvm/test/Analysis/CostModel/AArch64/sve-stepvector.ll

as well as codegen lowering tests for fixed width and scalable
vectors:

  llvm/test/CodeGen/AArch64/neon-stepvector.ll
  llvm/test/CodeGen/AArch64/sve-stepvector.ll

See this thread for discussion of the intrinsic:
https://lists.llvm.org/pipermail/llvm-dev/2021-January/147943.html
2021-03-23 10:43:35 +00:00
Craig Topper 9106d04554 [RISCV][SelectionDAG] Introduce an ISD::SPLAT_VECTOR_PARTS node that can represent a splat of 2 i32 values into a nxvXi64 vector for riscv32.
On riscv32, i64 isn't a legal scalar type but we would like to
support scalable vectors of i64.

This patch introduces a new node that can represent a splat made
of multiple scalar values. I've used this new node to solve the current
crashes we experience when getConstant is used after type legalization.

For RISCV, we are now default expanding SPLAT_VECTOR to SPLAT_VECTOR_PARTS
when needed and then handling the SPLAT_VECTOR_PARTS later during
LegalizeOps. I've remove the special case I previously put in for
ABS for D97991 as the default expansion is now able to succesfully
use getConstant.

Reviewed By: frasercrmck

Differential Revision: https://reviews.llvm.org/D98004
2021-03-10 09:46:18 -08:00
Cullen Rhodes 2750f3ed31 [IR] Introduce llvm.experimental.vector.splice intrinsic
This patch introduces a new intrinsic @llvm.experimental.vector.splice
that constructs a vector of the same type as the two input vectors,
based on a immediate where the sign of the immediate distinguishes two
variants. A positive immediate specifies an index into the first vector
and a negative immediate specifies the number of trailing elements to
extract from the first vector.

For example:

  @llvm.experimental.vector.splice(<A,B,C,D>, <E,F,G,H>, 1) ==> <B, C, D, E>  ; index
  @llvm.experimental.vector.splice(<A,B,C,D>, <E,F,G,H>, -3) ==> <B, C, D, E> ; trailing element count

These intrinsics support both fixed and scalable vectors, where the
former is lowered to a shufflevector to maintain existing behaviour,
although while marked as experimental the recommended way to express
this operation for fixed-width vectors is to use shufflevector. For
scalable vectors where it is not possible to express a shufflevector
mask for this operation, a new ISD node has been implemented.

This is one of the named shufflevector intrinsics proposed on the
mailing-list in the RFC at [1].

Patch by Paul Walker and Cullen Rhodes.

[1] https://lists.llvm.org/pipermail/llvm-dev/2020-November/146864.html

Reviewed By: sdesmalen

Differential Revision: https://reviews.llvm.org/D94708
2021-03-09 10:44:22 +00:00
gbtozers 9525af7b91 [DebugInfo] Support representation of multiple location operands in SDDbgValue
This patch modifies the class that represents debug values during ISel,
SDDbgValue, to support multiple location operands (to represent a dbg.value that
uses a DIArgList). Part of this class's functionality has been split off into a
new class, SDDbgOperand.

The new class SDDbgOperand represents a single value, corresponding to an SSA
value or MachineOperand in the IR and MIR respectively. Members of SDDbgValue
that were previously related to that specific value (as opposed to the
variable or DIExpression), such as the Kind enum, have been moved to
SDDbgOperand. SDDbgValue now contains an array of SDDbgOperand instead, allowing
it to hold more than one of these values.

All changes outside SDDbgValue are simply updates to use the new interface.

Differential Revision: https://reviews.llvm.org/D88585
2021-03-08 18:45:17 +00:00
Kazu Hirata 0b417ba20f [CodeGen] Use range-based for loops (NFC) 2021-02-20 21:46:02 -08:00
Caroline Concatto 2d728bbff5 [CodeGen][SelectionDAG]Add new intrinsic experimental.vector.reverse
This patch adds  a new intrinsic experimental.vector.reduce that takes a single
vector and returns a vector of matching type but with the original lane order
 reversed. For example:

```
vector.reverse(<A,B,C,D>) ==> <D,C,B,A>
```

The new intrinsic supports fixed and scalable vectors types.
The fixed-width vector relies on shufflevector to maintain existing behaviour.
Scalable vector uses the new ISD node - VECTOR_REVERSE.

This new intrinsic is one of the named shufflevector intrinsics proposed on the
mailing-list in the RFC at [1].

Patch by Paul Walker (@paulwalker-arm).

[1] https://lists.llvm.org/pipermail/llvm-dev/2020-November/146864.html

Differential Revision: https://reviews.llvm.org/D94883
2021-02-15 13:39:43 +00:00
Serge Pavlov bf416d166b [FPEnv] Intrinsic for setting rounding mode
To set non-default rounding mode user usually calls function 'fesetround'
from standard C library. This way has some disadvantages.

* It creates unnecessary dependency on libc. On the other hand, setting
  rounding mode requires few instructions and could be made by compiler.
  Sometimes standard C library even is not available, like in the case of
  GPU or AI cores that execute small kernels.
* Compiler could generate more effective code if it knows that a particular
  call just sets rounding mode.

This change introduces new IR intrinsic, namely 'llvm.set.rounding', which
sets current rounding mode, similar to 'fesetround'. It however differs
from the latter, because it is a lower level facility:

* 'llvm.set.rounding' does not return any value, whereas 'fesetround'
  returns non-zero value in the case of failure. In glibc 'fesetround'
  reports failure if its argument is invalid or unsupported or if floating
  point operations are unavailable on the hardware. Compiler usually knows
  what core it generates code for and it can validate arguments in many
  cases.
* Rounding mode is specified in 'fesetround' using constants like
  'FE_TONEAREST', which are target dependent. It is inconvenient to work
  with such constants at IR level.

C standard provides a target-independent way to specify rounding mode, it
is used in FLT_ROUNDS, however it does not define standard way to set
rounding mode using this encoding.

This change implements only IR intrinsic. Lowering it to machine code is
target-specific and will be implemented latter. Mapping of 'fesetround'
to 'llvm.set.rounding' is also not implemented here.

Differential Revision: https://reviews.llvm.org/D74729
2021-02-01 11:28:14 +07:00
Bjorn Pettersson a89d751fb4 Add intrinsics for saturating float to int casts
This patch adds support for the fptoui.sat and fptosi.sat intrinsics,
which provide basically the same functionality as the existing fptoui
and fptosi instructions, but will saturate (or return 0 for NaN) on
values unrepresentable in the target type, instead of returning
poison. Related mailing list discussion can be found at:
https://groups.google.com/d/msg/llvm-dev/cgDFaBmCnDQ/CZAIMj4IBAAJ

The intrinsics have overloaded source and result type and support
vector operands:

    i32 @llvm.fptoui.sat.i32.f32(float %f)
    i100 @llvm.fptoui.sat.i100.f64(double %f)
    <4 x i32> @llvm.fptoui.sat.v4i32.v4f16(half %f)
    // etc

On the SelectionDAG layer two new ISD opcodes are added,
FP_TO_UINT_SAT and FP_TO_SINT_SAT. These opcodes have two operands
and one result. The second operand is an integer constant specifying
the scalar saturation width. The idea here is that initially the
second operand and the scalar width of the result type are the same,
but they may change during type legalization. For example:

    i19 @llvm.fptsi.sat.i19.f32(float %f)
    // builds
    i19 fp_to_sint_sat f, 19
    // type legalizes (through integer result promotion)
    i32 fp_to_sint_sat f, 19

I went for this approach, because saturated conversion does not
compose well. There is no good way of "adjusting" a saturating
conversion to i32 into one to i19 short of saturating twice.
Specifying the saturation width separately allows directly saturating
to the correct width.

There are two baseline expansions for the fp_to_xint_sat opcodes. If
the integer bounds can be exactly represented in the float type and
fminnum/fmaxnum are legal, we can expand to something like:

    f = fmaxnum f, FP(MIN)
    f = fminnum f, FP(MAX)
    i = fptoxi f
    i = select f uo f, 0, i # unnecessary if unsigned as 0 = MIN

If the bounds cannot be exactly represented, we expand to something
like this instead:

    i = fptoxi f
    i = select f ult FP(MIN), MIN, i
    i = select f ogt FP(MAX), MAX, i
    i = select f uo f, 0, i # unnecessary if unsigned as 0 = MIN

It should be noted that this expansion assumes a non-trapping fptoxi.

Initial tests are for AArch64, x86_64 and ARM. This exercises all of
the scalar and vector legalization. ARM is included to test float
softening.

Original patch by @nikic and @ebevhan (based on D54696).

Differential Revision: https://reviews.llvm.org/D54749
2020-12-18 11:09:41 +01:00
Kerry McLaughlin 4519ff4b6f [SVE][CodeGen] Add the ExtensionType flag to MGATHER
Adds the ExtensionType flag, which reflects the LoadExtType of a MaskedGatherSDNode.
Also updated SelectionDAGDumper::print_details so that details of the gather
load (is signed, is scaled & extension type) are printed.

Reviewed By: sdesmalen

Differential Revision: https://reviews.llvm.org/D91084
2020-12-09 11:19:08 +00:00
Simon Moll 3ffbc79357 [VP] Build VP SDNodes
Translate VP intrinsics to VP_* SDNodes.  The tests check whether a
matching vp_* SDNode is emitted.

Reviewed By: craig.topper

Differential Revision: https://reviews.llvm.org/D91441
2020-12-09 11:36:51 +01:00
Tim Northover c5978f42ec UBSAN: emit distinctive traps
Sometimes people get minimal crash reports after a UBSAN incident. This change
tags each trap with an integer representing the kind of failure encountered,
which can aid in tracking down the root cause of the problem.
2020-12-08 10:28:26 +00:00
Hongtao Yu d0e42037bf [CSSPGO] MIR target-independent pseudo instruction for pseudo-probe intrinsic
This change introduces a MIR target-independent pseudo instruction corresponding to the IR intrinsic llvm.pseudoprobe for pseudo-probe block instrumentation. Please refer to https://reviews.llvm.org/D86193 for the whole story.

An `llvm.pseudoprobe` intrinsic call will be lowered into a target-independent operation named `PSEUDO_PROBE`. Given the following instrumented IR,

```
define internal void @foo2(i32 %x, void (i32)* %f) !dbg !4 {
bb0:
   %cmp = icmp eq i32 %x, 0
   call void @llvm.pseudoprobe(i64 837061429793323041, i64 1)
   br i1 %cmp, label %bb1, label %bb2
bb1:
   call void @llvm.pseudoprobe(i64 837061429793323041, i64 2)
   br label %bb3
bb2:
   call void @llvm.pseudoprobe(i64 837061429793323041, i64 3)
   br label %bb3
bb3:
   call void @llvm.pseudoprobe(i64 837061429793323041, i64 4)
   ret void
}
```
the corresponding MIR is shown below. Note that block `bb3` is duplicated into `bb1` and `bb2` where its probe is duplicated too. This allows for an accurate execution count to be collected for `bb3`, which is basically the sum of the counts of `bb1` and `bb2`.

```
bb.0.bb0:
   frame-setup PUSH64r undef $rax, implicit-def $rsp, implicit $rsp
   TEST32rr killed renamable $edi, renamable $edi, implicit-def $eflags
   PSEUDO_PROBE 837061429793323041, 1, 0
   $edi = MOV32ri 1, debug-location !13; test.c:0
   JCC_1 %bb.1, 4, implicit $eflags

bb.2.bb2:
   PSEUDO_PROBE 837061429793323041, 3, 0
   PSEUDO_PROBE 837061429793323041, 4, 0
   $rax = frame-destroy POP64r implicit-def $rsp, implicit $rsp
   RETQ

bb.1.bb1:
   PSEUDO_PROBE 837061429793323041, 2, 0
   PSEUDO_PROBE 837061429793323041, 4, 0
   $rax = frame-destroy POP64r implicit-def $rsp, implicit $rsp
   RETQ
```

The target op PSEUDO_PROBE will be converted into a piece of binary data by the object emitter with no machine instructions generated. This is done in a different patch.

Reviewed By: wmi

Differential Revision: https://reviews.llvm.org/D86495
2020-11-20 10:52:43 -08:00
Kerry McLaughlin ffbbfc76ca [SVE][CodeGen] Add the isTruncatingStore flag to MSCATTER
This patch adds the IsTruncatingStore flag to MaskedScatterSDNode, set by getMaskedScatter().
Updated SelectionDAGDumper::print_details for MaskedScatterSDNode to print
the details of masked scatters (is truncating, signed or scaled).

This is the first in a series of patches which adds support for scalable masked scatters

Reviewed By: sdesmalen

Differential Revision: https://reviews.llvm.org/D90939
2020-11-11 10:58:24 +00:00
Craig Topper 1687a8d83b [X86][SelectionDAG] Add SADDO_CARRY and SSUBO_CARRY to support multipart signed add/sub overflow legalization.
This passes existing X86 test but I'm not sure if it handles all type
legalization cases it needs to.

Alternative to D89200

Reviewed By: efriedma

Differential Revision: https://reviews.llvm.org/D89222
2020-10-12 23:18:29 -07:00
Amara Emerson e72cfd938f Rename the VECREDUCE_STRICT_{FADD,FMUL} SDNodes to VECREDUCE_SEQ_{FADD,FMUL}.
The STRICT was causing unnecessary confusion. I think SEQ is a more accurate
name for what they actually do, and the other obvious option of "ORDERED"
has the issue of already having a meaning in FP contexts.

Differential Revision: https://reviews.llvm.org/D88791
2020-10-07 10:45:09 -07:00
Craig Topper ad3d6f993d [SelectionDAG][X86][ARM][AArch64] Add ISD opcode for __builtin_parity. Expand it to shifts and xors.
Clang emits (and (ctpop X), 1) for __builtin_parity. If ctpop
isn't natively supported by the target, this leads to poor codegen
due to the expansion of ctpop being more complex than what is needed
for parity.

This adds a DAG combine to convert the pattern to ISD::PARITY
before operation legalization. Type legalization is updated
to handled Expanding and Promoting this operation. If after type
legalization, CTPOP is supported for this type, LegalizeDAG will
turn it back into CTPOP+AND. Otherwise LegalizeDAG will emit a
series of shifts and xors followed by an AND with 1.

I've avoided vectors in this patch to avoid more legalization
complexity for this patch.

X86 previously had a custom DAG combiner for this. This is now
moved to Custom lowering for the new opcode. There is a minor
regression in vector-reduce-xor-bool.ll, but a follow up patch
can easily fix that.

Fixes PR47433

Reviewed By: efriedma

Differential Revision: https://reviews.llvm.org/D87209
2020-09-12 11:42:18 -07:00
Bevin Hansson 5de6c56f7e [Intrinsic] Add sshl.sat/ushl.sat, saturated shift intrinsics.
Summary:
This patch adds two intrinsics, llvm.sshl.sat and llvm.ushl.sat,
which perform signed and unsigned saturating left shift,
respectively.

These are useful for implementing the Embedded-C fixed point
support in Clang, originally discussed in
http://lists.llvm.org/pipermail/llvm-dev/2018-August/125433.html
and
http://lists.llvm.org/pipermail/cfe-dev/2018-May/058019.html

Reviewers: leonardchan, craig.topper, bjope, jdoerfert

Subscribers: hiraditya, jdoerfert, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D83216
2020-08-07 15:09:24 +02:00
Michael Liao b1360caa82 [SDAG] Add new AssertAlign ISD node.
Summary:
- AssertAlign node records the guaranteed alignment on its source node,
  where these alignments are retrieved from alignment attributes in LLVM
  IR. These tracked alignments could help DAG combining and lowering
  generating efficient code.
- In this patch, the basic support of AssertAlign node is added. So far,
  we only generate AssertAlign nodes on return values from intrinsic
  calls.
- Addressing selection in AMDGPU is revised accordingly to capture the
  new (base + offset) patterns.

Reviewers: arsenm, bogner

Subscribers: jvesely, wdng, nhaehnle, tpr, hiraditya, kerbowa, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D81711
2020-06-23 00:51:11 -04:00
Serge Pavlov 4d20e31f73 [FPEnv] Intrinsic llvm.roundeven
This intrinsic implements IEEE-754 operation roundToIntegralTiesToEven,
and performs rounding to the nearest integer value, rounding halfway
cases to even. The intrinsic represents the missed case of IEEE-754
rounding operations and now llvm provides full support of the rounding
operations defined by the standard.

Differential Revision: https://reviews.llvm.org/D75670
2020-05-26 19:24:58 +07:00
Arthur Eubanks 8a88755610 Reland [X86] Codegen for preallocated
See https://reviews.llvm.org/D74651 for the preallocated IR constructs
and LangRef changes.

In X86TargetLowering::LowerCall(), if a call is preallocated, record
each argument's offset from the stack pointer and the total stack
adjustment. Associate the call Value with an integer index. Store the
info in X86MachineFunctionInfo with the integer index as the key.

This adds two new target independent ISDOpcodes and two new target
dependent Opcodes corresponding to @llvm.call.preallocated.{setup,arg}.

The setup ISelDAG node takes in a chain and outputs a chain and a
SrcValue of the preallocated call Value. It is lowered to a target
dependent node with the SrcValue replaced with the integer index key by
looking in X86MachineFunctionInfo. In
X86TargetLowering::EmitInstrWithCustomInserter() this is lowered to an
%esp adjustment, the exact amount determined by looking in
X86MachineFunctionInfo with the integer index key.

The arg ISelDAG node takes in a chain, a SrcValue of the preallocated
call Value, and the arg index int constant. It produces a chain and the
pointer fo the arg. It is lowered to a target dependent node with the
SrcValue replaced with the integer index key by looking in
X86MachineFunctionInfo. In
X86TargetLowering::EmitInstrWithCustomInserter() this is lowered to a
lea of the stack pointer plus an offset determined by looking in
X86MachineFunctionInfo with the integer index key.

Force any function containing a preallocated call to use the frame
pointer.

Does not yet handle a setup without a call, or a conditional call.
Does not yet handle musttail. That requires a LangRef change first.

Tried to look at all references to inalloca and see if they apply to
preallocated. I've made preallocated versions of tests testing inalloca
whenever possible and when they make sense (e.g. not alloca related,
inalloca edge cases).

Aside from the tests added here, I checked that this codegen produces
correct code for something like

```
struct A {
        A();
        A(A&&);
        ~A();
};

void bar() {
        foo(foo(foo(foo(foo(A(), 4), 5), 6), 7), 8);
}
```

by replacing the inalloca version of the .ll file with the appropriate
preallocated code. Running the executable produces the same results as
using the current inalloca implementation.

Reverted due to unexpectedly passing tests, added REQUIRES: asserts for reland.

Subscribers: hiraditya, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D77689
2020-05-20 11:25:44 -07:00
Arthur Eubanks b8cbff51d3 Revert "[X86] Codegen for preallocated"
This reverts commit 810567dc69.

Some tests are unexpectedly passing
2020-05-20 10:04:55 -07:00
Arthur Eubanks 810567dc69 [X86] Codegen for preallocated
See https://reviews.llvm.org/D74651 for the preallocated IR constructs
and LangRef changes.

In X86TargetLowering::LowerCall(), if a call is preallocated, record
each argument's offset from the stack pointer and the total stack
adjustment. Associate the call Value with an integer index. Store the
info in X86MachineFunctionInfo with the integer index as the key.

This adds two new target independent ISDOpcodes and two new target
dependent Opcodes corresponding to @llvm.call.preallocated.{setup,arg}.

The setup ISelDAG node takes in a chain and outputs a chain and a
SrcValue of the preallocated call Value. It is lowered to a target
dependent node with the SrcValue replaced with the integer index key by
looking in X86MachineFunctionInfo. In
X86TargetLowering::EmitInstrWithCustomInserter() this is lowered to an
%esp adjustment, the exact amount determined by looking in
X86MachineFunctionInfo with the integer index key.

The arg ISelDAG node takes in a chain, a SrcValue of the preallocated
call Value, and the arg index int constant. It produces a chain and the
pointer fo the arg. It is lowered to a target dependent node with the
SrcValue replaced with the integer index key by looking in
X86MachineFunctionInfo. In
X86TargetLowering::EmitInstrWithCustomInserter() this is lowered to a
lea of the stack pointer plus an offset determined by looking in
X86MachineFunctionInfo with the integer index key.

Force any function containing a preallocated call to use the frame
pointer.

Does not yet handle a setup without a call, or a conditional call.
Does not yet handle musttail. That requires a LangRef change first.

Tried to look at all references to inalloca and see if they apply to
preallocated. I've made preallocated versions of tests testing inalloca
whenever possible and when they make sense (e.g. not alloca related,
inalloca edge cases).

Aside from the tests added here, I checked that this codegen produces
correct code for something like

```
struct A {
        A();
        A(A&&);
        ~A();
};

void bar() {
        foo(foo(foo(foo(foo(A(), 4), 5), 6), 7), 8);
}
```

by replacing the inalloca version of the .ll file with the appropriate
preallocated code. Running the executable produces the same results as
using the current inalloca implementation.

Subscribers: hiraditya, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D77689
2020-05-20 09:20:38 -07:00
Craig Topper 9f7d4150b9 [X86] Move combineLoopMAddPattern and combineLoopSADPattern to an IR pass before SelecitonDAG.
These transforms rely on a vector reduction flag on the SDNode
set by SelectionDAGBuilder. This flag exists because SelectionDAG
can't see across basic blocks so SelectionDAGBuilder is looking
across and saving the info. X86 is the only target that uses this
flag currently. By removing the X86 code we can remove the flag
and the SelectionDAGBuilder code.

This pass adds a dedicated IR pass for X86 that looks across the
blocks and transforms the IR into a form that the X86 SelectionDAG
can finish.

An advantage of this new approach is that we can enhance it to
shrink the phi nodes and final reduction tree based on the zeroes
that we need to concatenate to bring the partially reduced
reduction back up to the original width.

Differential Revision: https://reviews.llvm.org/D76649
2020-03-26 14:10:20 -07:00
Juneyoung Lee 7802be4a3d [SelDag] Add FREEZE
Summary:
- Add FREEZE node to SelDag
- Lower FreezeInst (in IR) to FREEZE node
- Add Legalization for FREEZE node

Reviewers: qcolombet, bogner, efriedma, lebedev.ri, nlopes, craig.topper, arsenm

Reviewed By: lebedev.ri

Subscribers: wdng, xbolva00, Petar.Avramovic, liuz, lkail, dylanmckay, hiraditya, Jim, arsenm, craig.topper, RKSimon, spatel, lebedev.ri, regehr, trentxintong, nlopes, mkuper, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D29014
2020-03-24 23:04:58 +09:00
Bevin Hansson 6e561d1c94 [Intrinsic] Add fixed point saturating division intrinsics.
Summary:
This patch adds intrinsics and ISelDAG nodes for signed
and unsigned fixed-point division:

```
llvm.sdiv.fix.sat.*
llvm.udiv.fix.sat.*
```

These intrinsics perform scaled, saturating division
on two integers or vectors of integers. They are
required for the implementation of the Embedded-C
fixed-point arithmetic in Clang.

Reviewers: bjope, leonardchan, craig.topper

Subscribers: hiraditya, jdoerfert, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D71550
2020-02-24 10:50:52 +01:00
Craig Topper 0daf9b8e41 [X86][LegalizeTypes] Add SoftPromoteHalf support STRICT_FP_EXTEND and STRICT_FP_ROUND
This adds a strict version of FP16_TO_FP and FP_TO_FP16 and uses
them to implement soft promotion for the half type. This is
enough to provide basic support for __fp16 with strictfp.

Add the necessary X86 support to use VCVTPS2PH/VCVTPH2PS when F16C
is enabled.
2020-02-11 22:30:04 -08:00
Benjamin Kramer adcd026838 Make llvm::StringRef to std::string conversions explicit.
This is how it should've been and brings it more in line with
std::string_view. There should be no functional change here.

This is mostly mechanical from a custom clang-tidy check, with a lot of
manual fixups. It uncovers a lot of minor inefficiencies.

This doesn't actually modify StringRef yet, I'll do that in a follow-up.
2020-01-28 23:25:25 +01:00
Sander de Smalen 67d4c9924c Add support for (expressing) vscale.
In LLVM IR, vscale can be represented with an intrinsic. For some targets,
this is equivalent to the constexpr:

  getelementptr <vscale x 1 x i8>, <vscale x 1 x i8>* null, i32 1

This can be used to propagate the value in CodeGenPrepare.

In ISel we add a node that can be legalized to one or more
instructions to materialize the runtime vector length.

This patch also adds SVE CodeGen support for VSCALE, which maps this
node to RDVL instructions (for scaled multiples of 16bytes) or CNT[HSD]
instructions (scaled multiples of 2, 4, or 8 bytes, respectively).

Reviewers: rengolin, cameron.mcinally, hfinkel, sebpop, SjoerdMeijer, efriedma, lattner

Reviewed by: efriedma

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D68203
2020-01-22 10:09:27 +00:00
Peng Guo cfd8498401 [MIR] Fix cyclic dependency of MIR formatter
Summary:
Move MIR formatter pointer from TargetMachine to TargetInstrInfo to
avoid cyclic dependency between target & codegen.

Reviewers: dsanders, bkramer, arsenm

Subscribers: wdng, hiraditya, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D72485
2020-01-10 11:18:12 +01:00
Daniel Sanders de3d0ee023 Revert "Revert "[MIR] Target specific MIR formating and parsing""
There was an unguarded dereference of MF in a function that permitted
nullptr. Fixed

This reverts commit 71d64f72f9.
2020-01-08 20:03:29 -08:00
Nico Weber 71d64f72f9 Revert "[MIR] Target specific MIR formating and parsing"
This reverts commit 3ef05d85be.
It broke check-llvm on many bots, see comments on D69836.
2020-01-08 22:50:49 -05:00
Peng Guo 3ef05d85be [MIR] Target specific MIR formating and parsing
Summary:
Added MIRFormatter for target specific MIR formating and parsing with
immediate and custom pseudo source values. Target machine can subclass
MIRFormatter and implement custom logic for printing and parsing
immediate and custom pseudo source values for better readability.

* Target specific immediate mnemonic need to start with "." follows by
  identifier string. When MIR parser sees immediate it will call target
  specific parsing function.

* Custom pseudo source value need to start with custom follows by
  double-quoted string. MIR parser will pass the quoted string to target
  specific PSV parsing function.

* MIRFormatter have 2 helper functions to facilitate LLVM value printing
  and parsing for custom PSV if they refers LLVM values.

Patch by Peng Guo

Reviewers: dsanders, arsenm

Reviewed By: dsanders

Subscribers: wdng, jvesely, nhaehnle, hiraditya, jfb, llvm-commits

Tags: #llvm

Differential Revision: https://reviews.llvm.org/D69836
2020-01-08 18:48:02 -08:00
Daniel Sanders 5ab6fa7b70 Revert "[MIR] Target specific MIR formating and parsing"
Forgot to credit Peng in the commit message.

This reverts commit be841f89d0.
2020-01-08 18:48:02 -08:00