Commit Graph

58 Commits

Author SHA1 Message Date
Nikita Popov
c117d77e93 [ConstantFold] Refactor load folding
This refactors load folding to happen in two cleanly separated
steps: ConstantFoldLoadFromConstPtr() takes a pointer to load from
and decomposes it into a constant initializer base and an offset.
Then ConstantFoldLoadFromConst() loads from that initializer at
the given offset. This makes the core logic independent of having
actual GEP expressions (and those GEP expressions having certain
structure) and will allow exposing ConstantFoldLoadFromConst() as
an independent API in the future.

This is mostly only a refactoring, but it does make the folding
logic slightly more powerful.

Differential Revision: https://reviews.llvm.org/D111023
2021-10-05 18:07:57 +02:00
Nikita Popov
3be4acbaa3 [InstSimplify] Add additional load from constant test (NFC)
This case does not get folded, because the GEP indexes too deeply
(to the i8), making the bitcast logic not apply (on the [8 x i8]).
2021-10-03 15:52:36 +02:00
Nikita Popov
af382b9383 [IR] Handle constant expressions in containsUndefinedElement()
If the constant is a constant expression, then getAggregateElement()
will return null. Guard against this before calling HasFn().
2021-09-09 22:04:12 +02:00
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
David Sherwood
8439415333 [IR] Let ConstantVector::getSplat use poison instead of undef
This patch updates ConstantVector::getSplat to use poison instead
of undef when using insertelement/shufflevector to splat.

This follows on from D93793.

Differential Revision: https://reviews.llvm.org/D107751
2021-08-10 08:27:43 +01:00
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
Sanjay Patel
13302c06cd [ConstantFolding] avoid crashing on a fake math library call
https://llvm.org/PR50960
2021-07-20 18:25:21 -04:00
Juneyoung Lee
5af8bacc94 [InstSimplify] Add more poison folding optimizations
This adds more poison folding optimizations to InstSimplify.

Since all binary operators propagate poison, these are fine.

Also, the precondition of `select cond, undef, x` -> `x` is relaxed to allow the case when `x` is undef.

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D104661
2021-06-23 20:25:24 +09:00
Bjorn Pettersson
4c7f820b2b Update @llvm.powi to handle different int sizes for the exponent
This can be seen as a follow up to commit 0ee439b705,
that changed the second argument of __powidf2, __powisf2 and
__powitf2 in compiler-rt from si_int to int. That was to align with
how those runtimes are defined in libgcc.
One thing that seem to have been missing in that patch was to make
sure that the rest of LLVM also handle that the argument now depends
on the size of int (not using the si_int machine mode for 32-bit).
When using __builtin_powi for a target with 16-bit int clang crashed.
And when emitting libcalls to those rtlib functions, typically when
lowering @llvm.powi), the backend would always prepare the exponent
argument as an i32 which caused miscompiles when the rtlib was
compiled with 16-bit int.

The solution used here is to use an overloaded type for the second
argument in @llvm.powi. This way clang can use the "correct" type
when lowering __builtin_powi, and then later when emitting the libcall
it is assumed that the type used in @llvm.powi matches the rtlib
function.

One thing that needed some extra attention was that when vectorizing
calls several passes did not support that several arguments could
be overloaded in the intrinsics. This patch allows overload of a
scalar operand by adding hasVectorInstrinsicOverloadedScalarOpd, with
an entry for powi.

Differential Revision: https://reviews.llvm.org/D99439
2021-06-17 09:38:28 +02:00
Caroline Concatto
3c1f0e9ef8 [InstSimplify] Add constant fold for extractelement + splat for scalable vectors
This patch allows that scalable vector can fold extractelement and constant splat
only when the lane index is lower than the minimum number of elements of the vector.

Differential Revision: https://reviews.llvm.org/D103180
2021-06-10 12:41:40 +01:00
Serge Pavlov
8ff36aab69 [ConstantFolding] Enable folding of min/max/copysign for all floats
Previously such folding was enabled for half, float and double values
only. With this change it is allowed for other floating point values
also.

Differential Revision: https://reviews.llvm.org/D103956
2021-06-10 11:57:51 +07:00
Sanjay Patel
8a4d05ddb3 [ConstantFolding] add copysign tests for more FP types; NFC
D102673 proposes to ease the current type check, but
there doesn't appear to be any test coverage for that.
2021-06-04 11:42:53 -04:00
Arthur Eubanks
8086f9d87e [ConstFold] Simplify a load's GEP operand through local aliases
MSVC-style RTTI produces loads through a GEP of a local alias which
itself is a GEP. Currently we aren't able to devirtualize any virtual
calls when MSVC RTTI is enabled.

This patch attempts to simplify a load's GEP operand by calling
SymbolicallyEvaluateGEP() with an option to look through local aliases.

Differential Revision: https://reviews.llvm.org/D101100
2021-05-27 16:04:19 -07:00
Sanjay Patel
a0e71f1832 [ConstProp] propagate poison from vector reduction element(s) to result
This follows from the underlying logic for binops and min/max.
Although it does not appear that we handle this for min/max
intrinsics currently.
https://alive2.llvm.org/ce/z/Kq9Xnh
2021-05-24 10:34:40 -04:00
Sanjay Patel
3dd2063671 [ConstProp] add tests for vector reductions with poison elements; NFC 2021-05-24 10:34:40 -04:00
Juneyoung Lee
395607af3c Reapply [ConstantFold] Fold more operations to poison
This was reverted to mitigate mitigate miscompiles caused by
the logical and/or to bitwise and/or fold. Reapply it now that
the underlying issue has been fixed by D101191.

-----

This patch folds more operations to poison.

Alive2 proof: https://alive2.llvm.org/ce/z/mxcb9G (it does not contain tests about div/rem because they fold to poison when raising UB)

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D92270
2021-05-13 16:04:12 +02:00
Stanislav Mekhanoshin
22d295f695 [AMDGPU] Constant fold Intrinsic::amdgcn_perm
Differential Revision: https://reviews.llvm.org/D102203
2021-05-10 16:23:11 -07:00
Sanjay Patel
1089158c5a [ConstantFolding] propagate poison through vector reduction intrinsics 2021-04-29 12:54:20 -04:00
Sanjay Patel
678018138d [ConstProp] add tests for vector reductions of poison; NFC 2021-04-29 12:20:59 -04:00
Joe Ellis
effacc1599 [AArch64] Constant fold sve_convert_from_svbool(zero) to zero
Co-authored-by: Paul Walker <paul.walker@arm.com>

Differential Revision: https://reviews.llvm.org/D100463
2021-04-20 10:02:49 +00:00
Thomas Lively
5c729750a6 [WebAssembly] Remove saturating fp-to-int target intrinsics
Use the target-independent @llvm.fptosi and @llvm.fptoui intrinsics instead.
This includes removing the instrinsics for i32x4.trunc_sat_zero_f64x2_{s,u},
which are now represented in IR as a saturating truncation to a v2i32 followed by
a concatenation with a zero vector.

Differential Revision: https://reviews.llvm.org/D100596
2021-04-16 12:11:20 -07:00
George Mitenkov
807b019ca2 [ConstantFolding] Fixing addo/subo with undef
When folding addo/subo with undef, the current
convention is to use { -1, false } for addo and
{ 0, false } for subo. This was fixed for InstSimplify in
https://reviews.llvm.org/rGf094d65beaa492e845b03561eddd75b5be653a01,
but not in ConstantFolding.

Reviewed By: nikic, lebedev.ri

Differential Revision: https://reviews.llvm.org/D99564
2021-03-31 21:47:29 +03:00
Nikita Popov
59dbf4d516 [InstSimplify] Add load of undef aggregate test (NFC)
To make sure this doesn't crash the following commit.
2021-03-21 17:42:26 +01:00
Nikita Popov
b32f5d5045 [InstSimplify] Regenerate test checks (NFC) 2021-03-21 17:41:21 +01:00
Bjorn Pettersson
3638bdfbda [ConstantFold] Handle undef/poison when constant folding smul_fix/smul_fix_sat
Do constant folding according to
  posion * C -> poison
  C * poison -> poison
  undef * C -> 0
  C * undef -> 0
for smul_fix and smul_fix_sat intrinsics (for any scale).

Reviewed By: nikic, aqjune, nagisa

Differential Revision: https://reviews.llvm.org/D98410
2021-03-12 09:09:58 +01:00
Nikita Popov
7faad5c900 [ConstantFold] Handle icmp of global and null consistently
Return UGT rather than NE for icmp @g, null, which is slightly
stronger. This is consistent with what we do for more complex
folds. It is somewhat silly that @g ugt null does not get folded
while (gep @g) ugt null does.
2021-03-08 17:18:01 +01:00
Nikita Popov
f08148e874 [ConstProp] Fix folding of pointer icmp with signed predicates
While @g ugt null is always true (ignoring weak symbols),
@g sgt null is not necessarily the case -- that would imply that
it is forbidden to place globals in the high half of the address
space.
2021-03-08 17:12:12 +01:00
Nikita Popov
2ef03bc3a8 [ConstProp] Add more tests for pointer icmp folding (NFC) 2021-03-08 17:06:12 +01:00
Sanjay Patel
f75b5305f4 [ConstantFold] allow folding icmp of null and constexpr
I noticed that we were not folding expressions like this:
icmp ult (constexpr), null
in https://llvm.org/PR49355, so we end up with extremely large
icmp instructions as the constant expressions pile up on each other.

There is no potential to mis-fold an unsigned boundary condition
with a zero/null, so this is just falling through a crack in the
pattern matching.

The more general case of comparisons of non-zero constants and
constexpr are more tricky and may require the datalayout to know
how to cast to different types, etc. Negative tests verify that
we are only changing a subset of potential patterns.

Differential Revision: https://reviews.llvm.org/D98150
2021-03-08 08:53:59 -05:00
Sanjay Patel
a093942c28 [ConstProp][JumpThreading] add more test coverage for potential nullptr folds; NFC
See D98150.
2021-03-08 08:53:59 -05:00
Sanjay Patel
898b40645d [ConstProp] add tests for cmp with null and constexpr; NFC 2021-03-07 14:02:44 -05:00
Juneyoung Lee
06829034ca Revert "[ConstantFold] Fold more operations to poison"
This reverts commit 53040a968d due to its
bad interaction with select i1 -> and/or i1 transformation.

This fixes:
https://bugs.llvm.org/show_bug.cgi?id=49005
https://bugs.llvm.org/show_bug.cgi?id=48435
2021-02-04 00:24:02 +09:00
Florian Hahn
292077072e [Local] Treat calls that may not return as being alive.
With the addition of the `willreturn` attribute, functions that may
not return (e.g. due to an infinite loop) are well defined, if they are
not marked as `willreturn`.

This patch updates `wouldInstructionBeTriviallyDead` to not consider
calls that may not return as dead.

This patch still provides an escape hatch for intrinsics, which are
still assumed as willreturn unconditionally. It will be removed once
all intrinsics definitions have been reviewed and updated.

Reviewed By: jdoerfert

Differential Revision: https://reviews.llvm.org/D94106
2021-01-23 16:05:14 +00:00
Nikita Popov
fdab28edef [InstSimplify] Add willreturn to more libcall tests (NFC)
Annotate more math libcalls with willreturn. The attribute would
have been added by the InferFuncAttrs.
2021-01-22 21:58:59 +01:00
Nikita Popov
9d2796210f [Tests] Add willreturn to libcalls in some tests
Willreturn would be inferred by FuncAttrs for these. Annotate them
to preserve test behavior in the future.
2021-01-22 21:47:35 +01:00
David Green
e185b1dd7b [ConstProp] Constant propagation for get.active.lane.mask instrinsics
Similar to the Arm VCTP intrinsics, if the operands of an
active.lane.mask are both known, the constant lane mask can be
calculated. This can come up after unrolling the loops.

Differential Revision: https://reviews.llvm.org/D94103
2021-01-08 16:10:01 +00:00
Juneyoung Lee
ae6e89327b Precommit tests that have poison as shufflevector's placeholder
This commit copies existing tests at llvm/Transforms containing
'shufflevector X, undef' and replaces them with 'shufflevector X, poison'.
The new copied tests have *-inseltpoison.ll suffix at its file name
(as db7a2f347f did)
See https://reviews.llvm.org/D93793

Test files listed using

grep -R -E "^[^;]*shufflevector <.*> .*, <.*> undef" | cut -d":" -f1 | uniq

Test files copied & updated using

file_org=llvm/test/Transforms/$1
if [[ "$file_org" = *-inseltpoison.ll ]]; then
  file=$file_org
else
  file=${file_org%.ll}-inseltpoison.ll
  if [ ! -f $file ]; then
    cp $file_org $file
  fi
fi
sed -i -E 's/^([^;]*)shufflevector <(.*)> (.*), <(.*)> undef/\1shufflevector <\2> \3, <\4> poison/g' $file
head -1 $file | grep "Assertions have been autogenerated by utils/update_test_checks.py" -q
if [ "$?" == 1 ]; then
  echo "$file : should be manually updated"
  # The test is manually updated
  exit 1
fi
python3 ./llvm/utils/update_test_checks.py --opt-binary=./build-releaseassert/bin/opt $file
2020-12-29 17:09:31 +09:00
Juneyoung Lee
db7a2f347f Precommit transform tests that have poison as insertelement's placeholder
This commit copies existing tests at llvm/Transforms and replaces
'insertelement undef' in those files with 'insertelement poison'.
(see https://reviews.llvm.org/D93586)

Tests listed using this script:

grep -R -E '^[^;]*insertelement <.*> undef,' . | cut -d":" -f1 | uniq |
wc -l

Tests updated:

file_org=llvm/test/Transforms/$1
file=${file_org%.ll}-inseltpoison.ll
cp $file_org $file
sed -i -E 's/^([^;]*)insertelement <(.*)> undef/\1insertelement <\2> poison/g' $file
head -1 $file | grep "Assertions have been autogenerated by utils/update_test_checks.py" -q
if [ "$?" == 1 ]; then
  echo "$file : should be manually updated"
  # I manually updated the script
  exit 1
fi
python3 ./llvm/utils/update_test_checks.py --opt-binary=./build-releaseassert/bin/opt $file
2020-12-24 11:46:17 +09:00
Juneyoung Lee
9c49dcc356 [ConstantFold] Don't fold and/or i1 poison to poison (NFC)
.. because it causes miscompilation when combined with select i1 -> and/or.

It is the select fold which is incorrect; but it is costly to disable the fold, so hack this one.

D92270
2020-11-30 22:58:31 +09:00
Juneyoung Lee
53040a968d [ConstantFold] Fold more operations to poison
This patch folds more operations to poison.

Alive2 proof: https://alive2.llvm.org/ce/z/mxcb9G (it does not contain tests about div/rem because they fold to poison when raising UB)

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D92270
2020-11-29 21:19:48 +09:00
Juneyoung Lee
c6b62efb91 [ConstantFold] Fold operations to poison if possible
This patch updates ConstantFold, so operations are folded into poison if possible.

<alive2 proofs>
casts: https://alive2.llvm.org/ce/z/WSj7rw
binary operations (arithmetic): https://alive2.llvm.org/ce/z/_7dEyJ
binary operations (bitwise): https://alive2.llvm.org/ce/z/cezjVN
vector/aggregate operations: https://alive2.llvm.org/ce/z/BQ7hWz
unary ops: https://alive2.llvm.org/ce/z/yBRs4q
other ops: https://alive2.llvm.org/ce/z/iXbcFD

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D92203
2020-11-29 02:28:40 +09:00
Christopher Tetreault
792f8e1114 [SVE] Take constant fold fast path for splatted vscale vectors
This should be a perfectly reasonable operation for scalable vectors.
Currently, it only works for zeroinitializer values of
ScalableVectorType, but the fundamental operation is sound and it should
be possible to make it work for other splats

Reviewed By: david-arm

Differential Revision: https://reviews.llvm.org/D77442
2020-11-17 12:45:31 -08:00
Simon Pilgrim
6fa7030a76 [ConstProp] Remove unused check-prefixes
Just use default CHECK and remove duplicate RUN
2020-11-09 13:12:40 +00:00
Jay Foad
1417abe54c [AMDGPU] Add new llvm.amdgcn.fma.legacy intrinsic
Differential Revision: https://reviews.llvm.org/D89558
2020-10-16 17:10:21 +01:00
Amara Emerson
322d0afd87 [llvm][mlir] Promote the experimental reduction intrinsics to be first class intrinsics.
This change renames the intrinsics to not have "experimental" in the name.

The autoupgrader will handle legacy intrinsics.

Relevant ML thread: http://lists.llvm.org/pipermail/llvm-dev/2020-April/140729.html

Differential Revision: https://reviews.llvm.org/D88787
2020-10-07 10:36:44 -07:00
Sanjay Patel
149f5b573c [APFloat] convert SNaN to QNaN in convert() and raise Invalid signal
This is an alternate fix (see D87835) for a bug where a NaN constant
gets wrongly transformed into Infinity via truncation.
In this patch, we uniformly convert any SNaN to QNaN while raising
'invalid op'.
But we don't have a way to directly specify a 32-bit SNaN value in LLVM IR,
so those are always encoded/decoded by calling convert from/to 64-bit hex.

See D88664 for a clang fix needed to allow this change.

Differential Revision: https://reviews.llvm.org/D88238
2020-10-01 14:37:38 -04:00
Sanjay Patel
e34bd1e0b0 [APFloat] prevent NaN morphing into Inf on conversion (PR43907)
We shift the significand right on a truncation, but that needs to be made NaN-safe:
always set at least 1 bit in the significand.
https://llvm.org/PR43907

See D88238 for the likely follow-up (but needs some plumbing fixes before it can proceed).

Differential Revision: https://reviews.llvm.org/D87835
2020-09-24 14:02:19 -04:00
Arthur Eubanks
f4f7df037e [DIE] Remove DeadInstEliminationPass
This pass is like DeadCodeEliminationPass, but only does one pass
through a function instead of iterating on users of eliminated
instructions.

DeadCodeEliminationPass should be used in all cases.

Reviewed By: asbirlea

Differential Revision: https://reviews.llvm.org/D87933
2020-09-21 12:12:25 -07:00