73 Commits

Author SHA1 Message Date
Johannes Doerfert
cd3a4c31bc
[Attributor][NFC] update tests (#91011) 2024-05-03 16:38:55 -07:00
Johannes Doerfert
88b5d23021 [Attributor] Allow multiple LHS/RHS values when simplifying comparisons
We use to deal with multiple values but not in the handleCmp function.
Now we also allow multiple simplified operands there.
2023-07-25 20:31:21 -07:00
Johannes Doerfert
e31724f1a6 [Attributor] Check readonly call sites for nosync in AANoSync
See @nosync_convergent_callee_test() in nosync.ll. The other changes are
call sites now annotated with `nosync`.
2023-07-25 17:47:33 -07:00
Johannes Doerfert
ebec3dd1bf [Attributor] Port AANoCapture to the isImpliedByIR interface
AANoCapture is now the first non-boolean AA that is always queried via
the new APIs and not created manually.

We explicitly do not manifest nocapture for `null` and `undef` anymore.
2023-07-09 16:04:20 -07:00
Johannes Doerfert
aae749b275 [Attributor] Port AANoAlias to the isImpliedByIR interface
As part of this we do not annotate literal `null` and `undef/poison` as
`noalias` anymore. This was not really needed anyway.
2023-07-09 16:04:20 -07:00
Johannes Doerfert
369930bc20 [Attributor] Manifest attributes implied by the IR
If an attribute is implied by the IR we do not (always) create an AA
anymore. To keep test coverage, and given the lack of a good heuristic
to decide otherwise, we will now also manifest such attributes.
2023-07-03 16:05:17 -07:00
Johannes Doerfert
b672c602c7 [Attributor][NFCI] Merge MemoryEffects explicitly
We had some custom handling for existing MemoryEffects but we now move
it to the place we check other existing attributes before we manifest
new ones. If we later decide to curb duplication (of attributes on the
call site and callee), we can do that at a single location and for all
attributes.

The test changes basically add known `memory` callee information to the
call sites.
2023-07-03 11:57:29 -07:00
Johannes Doerfert
badafc53c6 [Attributor] Check IR attributes before creating new AAs
Instead of creating an AA for an IR attribute we can first check if it
is implied/known. If so, we can save the time to create the AA, figure
out it is implied, fix it, and later manifest it in the IR
(redundantly). Other IR attributes can be added to the list in
`AA::hasAssumedIRAttr` later on, for now we support 8 different ones.
2023-06-23 17:21:21 -07:00
Johannes Doerfert
23dafbb1e5 [Attributor] Remove the iteration count verification
It was never really useful to track #iterations, though it helped during
the initial development. What we should track, in a follow up, are
potentially #updates. That is also what we should restrict instead of
the #iterations.
2023-06-23 16:32:36 -07:00
Johannes Doerfert
dbbe9b3776 [Attributor] Create AAMustProgress for the mustprogress attribute
Derive the mustprogress attribute based on the willreturn attribute
or the fact that all callers are mustprogress.

Differential Revision: https://reviews.llvm.org/D94740
2023-06-05 16:33:52 -07:00
Nikita Popov
e44b11d9b6 [ValueTracking] Treat branch on undef as UB as well
We were already treating branch on poison as UB, but branch on
undef is also UB. Move the checks into the correct function.

From LangRef for br:

> If ‘cond’ is poison or undef, this instruction has undefined behavior.

From LangRef for switch:

> If ‘value’ is poison or undef, this instruction has undefined behavior.

There is a minor regression in dont-distribute-phi.ll, apparently
we handle that pattern in logical but not bitwise form.
2023-01-02 12:34:23 +01:00
Nikita Popov
4f4787e3f6 [Attributor] Convert some tests to opaque pointers (NFC)
These were converted without adjustments.
2022-12-23 09:56:14 +01:00
Nikita Popov
304f1d59ca [IR] Switch everything to use memory attribute
This switches everything to use the memory attribute proposed in
https://discourse.llvm.org/t/rfc-unify-memory-effect-attributes/65579.
The old argmemonly, inaccessiblememonly and inaccessiblemem_or_argmemonly
attributes are dropped. The readnone, readonly and writeonly attributes
are restricted to parameters only.

The old attributes are auto-upgraded both in bitcode and IR.
The bitcode upgrade is a policy requirement that has to be retained
indefinitely. The IR upgrade is mainly there so it's not necessary
to update all tests using memory attributes in this patch, which
is already large enough. We could drop that part after migrating
tests, or retain it longer term, to make it easier to import IR
from older LLVM versions.

High-level Function/CallBase APIs like doesNotAccessMemory() or
setDoesNotAccessMemory() are mapped transparently to the memory
attribute. Code that directly manipulates attributes (e.g. via
AttributeList) on the other hand needs to switch to working with
the memory attribute instead.

Differential Revision: https://reviews.llvm.org/D135780
2022-11-04 10:21:38 +01:00
Nikita Popov
846709b287 [Attribute] Clean up test prefixes (NFC)
Now that the legacy PM is no longer tested, the huge matrix of
test prefixes used by attributor tests is no longer needed and very
confusing for the casual reader. Reduce the prefixes down to just
CHECK, TUNIT and CGSCC.
2022-09-23 11:08:11 +02:00
Sebastian Peryt
99c9b37d11 [NFC][1/n] Remove -enable-new-pm=0 flags from lit tests
This is the first patch in a series intended for removing flag
-enable-new-pm=0 from lit tests. This is part of a bigger
effort of completely removing legacy code related to legacy
pass manager in favor of currently default new pass manager.

In this patch flag has been removed only from tests where no significant
change has been required because checks has been duplicated for
both PMs.

Reviewed By: fhahn

Differential Revision: https://reviews.llvm.org/D134150
2022-09-19 09:57:37 -07:00
Johannes Doerfert
bf789b1957 [Attributor] Replace AAValueSimplify with AAPotentialValues
For the longest time we used `AAValueSimplify` and
`genericValueTraversal` to determine "potential values". This was
problematic for many reasons:
- We recomputed the result a lot as there was no caching for the 9
  locations calling `genericValueTraversal`.
- We added the idea of "intra" vs. "inter" procedural simplification
  only as an afterthought. `genericValueTraversal` did offer an option
  but `AAValueSimplify` did not. Thus, we might end up with "too much"
  simplification in certain situations and then gave up on it.
- Because `genericValueTraversal` was not a real `AA` we ended up with
  problems like the infinite recursion bug (#54981) as well as code
  duplication.

This patch introduces `AAPotentialValues` and replaces the
`AAValueSimplify` uses with it. `genericValueTraversal` is folded into
`AAPotentialValues` as are the instruction simplifications performed in
`AAValueSimplify` before. We further distinguish "intra" and "inter"
procedural simplification now.

`AAValueSimplify` was not deleted as we haven't ported the
re-materialization of instructions yet. There are other differences over
the former handling, e.g., we may not fold trivially foldable
instructions right now, e.g., `add i32 1, 1` is not folded to `i32 2`
but if an operand would be simplified to `i32 1` we would fold it still.

We are also even more aware of function/SCC boundaries in CGSCC passes,
which is good even if some tests look like they regress.

Fixes: https://github.com/llvm/llvm-project/issues/54981

Note: A previous version was flawed and consequently reverted in
      6555558a80589d1c5a1154b92cc3af9495f8f86c.
2022-07-19 16:24:42 -05:00
Johannes Doerfert
f6e0c05e3d Revert "[Attributor] Replace AAValueSimplify with AAPotentialValues"
This reverts commit f17639ea0cd30f52ac853ba2eb25518426cc3bb8 as three
AMDGPU tests haven't been updated. Will need to verify the changes are
not regressions we should avoid.
2022-07-08 00:53:38 -05:00
Johannes Doerfert
f17639ea0c [Attributor] Replace AAValueSimplify with AAPotentialValues
For the longest time we used `AAValueSimplify` and
`genericValueTraversal` to determine "potential values". This was
problematic for many reasons:
- We recomputed the result a lot as there was no caching for the 9
  locations calling `genericValueTraversal`.
- We added the idea of "intra" vs. "inter" procedural simplification
  only as an afterthought. `genericValueTraversal` did offer an option
  but `AAValueSimplify` did not. Thus, we might end up with "too much"
  simplification in certain situations and then gave up on it.
- Because `genericValueTraversal` was not a real `AA` we ended up with
  problems like the infinite recursion bug (#54981) as well as code
  duplication.

This patch introduces `AAPotentialValues` and replaces the
`AAValueSimplify` uses with it. `genericValueTraversal` is folded into
`AAPotentialValues` as are the instruction simplifications performed in
`AAValueSimplify` before. We further distinguish "intra" and "inter"
procedural simplification now.

`AAValueSimplify` was not deleted as we haven't ported the
re-materialization of instructions yet. There are other differences over
the former handling, e.g., we may not fold trivially foldable
instructions right now, e.g., `add i32 1, 1` is not folded to `i32 2`
but if an operand would be simplified to `i32 1` we would fold it still.

We are also even more aware of function/SCC boundaries in CGSCC passes,
which is good even if some tests look like they regress.

Fixes: https://github.com/llvm/llvm-project/issues/54981

Note: A previous version was flawed and consequently reverted in
      6555558a80589d1c5a1154b92cc3af9495f8f86c.
2022-07-08 00:38:27 -05:00
Johannes Doerfert
6555558a80 Revert "[Attributor] Replace AAValueSimplify with AAPotentialValues"
This reverts commit da50dab1ae111e9e6cb0248a47a038b17f798705.

Patch broke AMD GPU OpenMP offload buildbots.
https://lab.llvm.org/buildbot/#/builders/193/builds/13246
2022-06-09 17:04:01 +02:00
Johannes Doerfert
da50dab1ae [Attributor] Replace AAValueSimplify with AAPotentialValues
For the longest time we used `AAValueSimplify` and
`genericValueTraversal` to determine "potential values". This was
problematic for many reasons:
- We recomputed the result a lot as there was no caching for the 9
  locations calling `genericValueTraversal`.
- We added the idea of "intra" vs. "inter" procedural simplification
  only as an afterthought. `genericValueTraversal` did offer an option
  but `AAValueSimplify` did not. Thus, we might end up with "too much"
  simplification in certain situations and then gave up on it.
- Because `genericValueTraversal` was not a real `AA` we ended up with
  problems like the infinite recursion bug (#54981) as well as code
  duplication.

This patch introduces `AAPotentialValues` and replaces the
`AAValueSimplify` uses with it. `genericValueTraversal` is folded into
`AAPotentialValues` as are the instruction simplifications performed in
`AAValueSimplify` before. We further distinguish "intra" and "inter"
procedural simplification now.

`AAValueSimplify` was not deleted as we haven't ported the
re-materialization of instructions yet. There are other differences over
the former handling, e.g., we may not fold trivially foldable
instructions right now, e.g., `add i32 1, 1` is not folded to `i32 2`
but if an operand would be simplified to `i32 1` we would fold it still.

We are also even more aware of function/SCC boundaries in CGSCC passes,
which is good.

Fixes: https://github.com/llvm/llvm-project/issues/54981
2022-06-09 16:48:53 +02:00
Johannes Doerfert
e87f10a771 [Attributor] CGSCC pass should not recompute results outside the SCC (reapply)
When we run the CGSCC pass we should only invest time on the SCC. We can
initialize AAs with information from the module slice but we should not
update those AAs. We make an exception for are call site of the SCC as
they are helpful providing information for the SCC.

Minor modifications to pointer privatization allow us to perform it even
in the CGSCC pass, similar to ArgumentPromotion.
2022-04-17 12:48:49 -05:00
Johannes Doerfert
39a68cc016 Revert "[Attributor] CGSCC pass should not recompute results outside the SCC"
This reverts commit 0d7f81e31315f8cda56ce6fde5ff5145e0325c51, it caused
the AMDGPU tests that use the Attributor to fail.
2022-04-15 15:29:51 -05:00
Johannes Doerfert
0d7f81e313 [Attributor] CGSCC pass should not recompute results outside the SCC
When we run the CGSCC pass we should only invest time on the SCC. We can
initialize AAs with information from the module slice but we should not
update those AAs.
2022-04-15 14:56:09 -05:00
Johannes Doerfert
f44f60a297 [Attributor] Avoid replacing return operands twice
As replacements will become more complex it is better to have a single
AA responsible for replacing a use. Before this patch AAValueSimplify*
and AAValueSimplifyReturned could both try to replace the returned
value. The latter was marginally better for the old pass manager
when a function was already carrying a `returned` attribute and when
the context of the return instruction was important. The second
shortcoming was resolved by looking for return attributes in the
AAValueSimplifyCallSiteReturned initialization. The old PM impact is
not concerning.

This is yet another step towards the removal of AAReturnedValues, the
very first AA we should now try to eliminate due to the overlapping
logic with value simplification.
2022-03-11 21:55:19 -06:00
Johannes Doerfert
f3ad8cf00e [Attributor] Cleanup manifest and liveness for CGSCC passes
There was some ad-hoc handling of liveness and manifest to avoid
breaking CGSCC guarantees. Things always slipped through though.
This cleanup will:

1) Prevent us from manifesting any "information" outside the CGSCC.
   This might be too conservative but we need to opt-in to annotation
   not try to avoid some problematic ones.
2) Avoid running any liveness analysis outside the CGSCC. We did have
   some AAIsDeadFunction handling to this end but we need this for all
   AAIsDead classes. The reason is that AAIsDead information is only
   correct if we actually manifest it, since we don't (see point 1) we
   cannot actually derive/use it at all. We are currently trying to
   avoid running any AA updates outside the CGSCC but that seems to
   impact things quite a bit.
3) Assert, don't check, that our modifications (during cleanup) modifies
   only CGSCC functions.
2022-03-11 16:46:02 -06:00
Johannes Doerfert
dd101c808b [Attributor][FIX] Do not use assumed information for UB detection
The helper `Attributor::checkForAllReturnedValuesAndReturnInsts`
simplifies the returned value optimistically. In `AAUndefinedBehavior`
we cannot use such optimistic values when deducing UB. As a result, we
assumed UB for the return value of a function because we initially
(=optimistically) thought the function return is `undef`. While we later
adjusted this properly, the `AAUndefinedBehavior` was under the
impression the return value is "known" (=fix) and could never change.

To correct this we use `Attributor::checkForAllInstructions` and then
manually to perform simplification of the return value, only allowing
known values to be used. This actually matches the other UB deductions.

Fixes #53647
2022-02-07 20:19:19 -06:00
Johannes Doerfert
b51b83f68e [Attributor] Introduce the concept of query AAs
D106720 introduced features that did not work properly as we could add
new queries after a fixpoint was reached and which could not be answered
by the information gathered up to the fixpoint alone.

As an alternative to D110078, which forced eager computation where we
want to continue to be lazy, this patch fixes the problem.

QueryAAs are AAs that allow lazy queries during their lifetime. They are
never fixed if they have no outstanding dependences and always run as
part of the updates in an iteration. To determine if we are done, all
query AAs are asked if they received new queries, if not, we only need
to consider updated AAs, as before. If new queries are present we go for
another iteration.

Differential Revision: https://reviews.llvm.org/D118669
2022-02-01 01:40:44 -06:00
Johannes Doerfert
ac3ec22df9 [Attributor] Use AAFunctionReachability to determine AANoRecurse
We missed out on AANoRecurse in the module pass because we had no call
graph. With AAFunctionReachability we can simply ask if the function may
reach itself.

Differential Revision: https://reviews.llvm.org/D110099
2022-02-01 01:40:44 -06:00
Johannes Doerfert
a1db0e523d [Attributor][FIX] Liveness handling in the isAssumedDead helpers
This fixes a conceptual problem with our AAIsDead usage which conflated
call site liveness with call site return value liveness. Without the
fix tests would obviously miscompile as we make genericValueTraversal
more powerful (in a follow up). The effects on the tests are mixed but
mostly marginal. The most prominent one is the lack of `noreturn` for
functions. The reason is that we make entire blocks live at the same
time (for time reasons). Now that we actually look at the block
liveness, which we need to do, the return instructions are live and
will survive. As an example,  `noreturn_async.ll` has been modified
to retain the `noreturn` even with block granularity. We could address
this easily but there is little need in practice.
2022-02-01 01:18:52 -06:00
Arthur Eubanks
05392466f0 Reland [IR] Increase max alignment to 4GB
Currently the max alignment representable is 1GB, see D108661.
Setting the align of an object to 4GB is desirable in some cases to make sure the lower 32 bits are clear which can be used for some optimizations, e.g. https://crbug.com/1016945.

This uses an extra bit in instructions that carry an alignment. We can store 15 bits of "free" information, and with this change some instructions (e.g. AtomicCmpXchgInst) use 14 bits.
We can increase the max alignment representable above 4GB (up to 2^62) since we're only using 33 of the 64 values, but I've just limited it to 4GB for now.

The one place we have to update the bitcode format is for the alloca instruction. It stores its alignment into 5 bits of a 32 bit bitfield. I've added another field which is 8 bits and should be future proof for a while. For backward compatibility, we check if the old field has a value and use that, otherwise use the new field.

Updating clang's max allowed alignment will come in a future patch.

Reviewed By: hans

Differential Revision: https://reviews.llvm.org/D110451
2021-10-06 13:29:23 -07:00
Arthur Eubanks
569346f274 Revert "Reland [IR] Increase max alignment to 4GB"
This reverts commit 8d64314ffea55f2ad94c1b489586daa8ce30f451.
2021-10-06 11:38:11 -07:00
Arthur Eubanks
8d64314ffe Reland [IR] Increase max alignment to 4GB
Currently the max alignment representable is 1GB, see D108661.
Setting the align of an object to 4GB is desirable in some cases to make sure the lower 32 bits are clear which can be used for some optimizations, e.g. https://crbug.com/1016945.

This uses an extra bit in instructions that carry an alignment. We can store 15 bits of "free" information, and with this change some instructions (e.g. AtomicCmpXchgInst) use 14 bits.
We can increase the max alignment representable above 4GB (up to 2^62) since we're only using 33 of the 64 values, but I've just limited it to 4GB for now.

The one place we have to update the bitcode format is for the alloca instruction. It stores its alignment into 5 bits of a 32 bit bitfield. I've added another field which is 8 bits and should be future proof for a while. For backward compatibility, we check if the old field has a value and use that, otherwise use the new field.

Updating clang's max allowed alignment will come in a future patch.

Reviewed By: hans

Differential Revision: https://reviews.llvm.org/D110451
2021-10-06 11:03:51 -07:00
Arthur Eubanks
72cf8b6044 Revert "[IR] Increase max alignment to 4GB"
This reverts commit df84c1fe78130a86445d57563dea742e1b85156a.

Breaks some bots
2021-10-06 10:21:35 -07:00
Arthur Eubanks
df84c1fe78 [IR] Increase max alignment to 4GB
Currently the max alignment representable is 1GB, see D108661.
Setting the align of an object to 4GB is desirable in some cases to make sure the lower 32 bits are clear which can be used for some optimizations, e.g. https://crbug.com/1016945.

This uses an extra bit in instructions that carry an alignment. We can store 15 bits of "free" information, and with this change some instructions (e.g. AtomicCmpXchgInst) use 14 bits.
We can increase the max alignment representable above 4GB (up to 2^62) since we're only using 33 of the 64 values, but I've just limited it to 4GB for now.

The one place we have to update the bitcode format is for the alloca instruction. It stores its alignment into 5 bits of a 32 bit bitfield. I've added another field which is 8 bits and should be future proof for a while. For backward compatibility, we check if the old field has a value and use that, otherwise use the new field.

Updating clang's max allowed alignment will come in a future patch.

Reviewed By: hans

Differential Revision: https://reviews.llvm.org/D110451
2021-10-06 09:54:14 -07:00
Roman Lebedev
564d85e090
The maximal representable alignment in LLVM IR is 1GiB, not 512MiB
In LLVM IR, `AlignmentBitfieldElementT` is 5-bit wide
But that means that the maximal alignment exponent is `(1<<5)-2`,
which is `30`, not `29`. And indeed, alignment of `1073741824`
roundtrips IR serialization-deserialization.

While this doesn't seem all that important, this doubles
the maximal supported alignment from 512MiB to 1GiB,
and there's actually one noticeable use-case for that;
On X86, the huge pages can have sizes of 2MiB and 1GiB (!).

So while this doesn't add support for truly huge alignments,
which i think we can easily-ish do if wanted, i think this adds
zero-cost support for a not-trivially-dismissable case.

I don't believe we need any upgrade infrastructure,
and since we don't explicitly record the IR version,
we don't need to bump one either.

As @craig.topper speculates in D108661#2963519,
this might be an artificial limit imposed by the original implementation
of the `getAlignment()` functions.

Differential Revision: https://reviews.llvm.org/D108661
2021-08-26 12:53:39 +03:00
Johannes Doerfert
a420f80bf1 [Attributor] Do not delete volatile stores to null/undef
See D106309.

Differential Revision: https://reviews.llvm.org/D107906
2021-08-12 10:39:52 -05:00
Johannes Doerfert
28c78a9e12 [Attributor] Simplify loads
As a first step to simplify loads we only handle `null` and `undef`
underlying objects, as well as objects that have the load as a single user.
Loads of those values can be replaced by the initializer, if any.
Proper reasoning is introduced in a follow up patch

Differential Revision: https://reviews.llvm.org/D103862
2021-07-19 22:47:29 -05:00
Johannes Doerfert
5ef18e2421 [Attributor] Use AAValueSimplify to simplify returned values
We should use AAValueSimplify for all value simplification, however
there was some leftover logic that predates AAValueSimplify in
AAReturnedValues. This remove the AAReturnedValues part and provides a
replacement by making AAValueSimplifyReturned strong enough to handle
all previously covered cases. Further, this improve
AAValueSimplifyCallSiteReturned to handle returned arguments.

AAReturnedValues is now much easier and the collected returned
values/instructions are now from the associated function only, making it
much more sane. We also do not have the brittle logic anymore that looks
for unresolved calls. Instead, we use AAValueSimplify to handle
recursion.

Useful code has been split into helper functions, e.g., an Attributor
interface to get a simplified value.

Differential Revision: https://reviews.llvm.org/D103860
2021-07-10 15:52:36 -05:00
Nico Weber
d3e7491333 Revert Attributor patch series
Broke check-clang, see https://reviews.llvm.org/D102307#2869065
Ran `git revert -n ebbe149a6f08535ede848a531a601ae6591cfbc5..269416d41908bb670f67af689155d5ab8eea689a`
2021-07-10 16:15:55 -04:00
Johannes Doerfert
374e573cfc [Attributor] Use AAValueSimplify to simplify returned values
We should use AAValueSimplify for all value simplification, however
there was some leftover logic that predates AAValueSimplify in
AAReturnedValues. This remove the AAReturnedValues part and provides a
replacement by making AAValueSimplifyReturned strong enough to handle
all previously covered cases. Further, this improve
AAValueSimplifyCallSiteReturned to handle returned arguments.

AAReturnedValues is now much easier and the collected returned
values/instructions are now from the associated function only, making it
much more sane. We also do not have the brittle logic anymore that looks
for unresolved calls. Instead, we use AAValueSimplify to handle
recursion.

Useful code has been split into helper functions, e.g., an Attributor
interface to get a simplified value.

Differential Revision: https://reviews.llvm.org/D103860
2021-07-10 12:32:50 -05:00
Johannes Doerfert
55e9c28212 [Attributor] Teach AAIsDead about undef values
Not only if the branch or switch condition is dead but also if it is
assumed `undef` we can delay AAIsDead exploration.
2021-05-23 23:00:40 -05:00
Johannes Doerfert
e93ac1e2de [Attributor][FIX] Account for undef in the constant value lattice
The constant value lattice looks like this

```
  <None>
     |
  <undef>
  /  |   \
... <0>  ...
 \   |   /
 <unknown>
```
We did not account for the undef and assumed a value meant we could not
change anymore. Now we actually check if we have the same value as
before, which will signal CHANGED to the users when we go from undef to
a specific constant.

This fixes, among other things, the bug exposed by @ipccp4 in
`value-simplify.ll`.
2021-05-23 20:47:06 -05:00
Johannes Doerfert
9c2074dccb [Attributor][NFC] Update tests after D94741
The update_test_checks script can now check for global symbols and is able
to handle them properly when they differ across prefixes, e.g.,
attribute #0 might be different in different runs.

This patch simply updates all the Attributor tests with the new script.

Reviewed By: sstefan1

Differential Revision: https://reviews.llvm.org/D97906
2021-03-11 23:31:39 -06:00
aqjune
5f3c99085d [ValueTracking] Dereferenced pointers are noundef
This is a follow-up of D95238's LangRef update.
This patch updates `programUndefinedIfUndefOrPoison(V)` to return true if
`V` is used by any memory-accessing instruction.
Interestingly, this affected many tests in Attributors, mainly about adding noundefs.
The tests are updated using llvm/utils/update_test_checks.py. I checked that the diffs
are about updating noundefs.

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D96642
2021-02-14 22:50:48 +09:00
Shinji Okumura
5d13479574 [Attributor] Make use of AANoUndef in AAUndefinedBehavior
This patch makes it possible for AAUB to use information from AANoUndef.
This is the next patch of D86983

Reviewed By: jdoerfert

Differential Revision: https://reviews.llvm.org/D86984
2020-09-02 16:08:03 +09:00
sstefan1
8d8ce85b23 [Attributor] Introduce module slice.
Summary:
The module slice describes which functions we can analyze and transform
while working on an SCC as part of the Attributor-CGSCC pass. So far we
simply restricted it to the SCC.

Reviewers: jdoerfert

Differential Revision: https://reviews.llvm.org/D86319
2020-08-30 10:30:44 +02:00
Shinji Okumura
a7ca9e09bd [Attributor] Fix callsite check in AAUndefinedBehavior
This is the next patch of D86842
When we check `noundef` attribute violation at callsites, we do not have to require `nonnull` in the following two cases.
1. An argument is known to be simplified to undef
2. An argument is known to be dead

Reviewed By: jdoerfert

Differential Revision: https://reviews.llvm.org/D86845
2020-08-30 13:17:02 +09:00
sstefan1
6ce5b74b82 [Attributor][NFC] rerun update_test_checks without --scrub-attributes 2020-08-29 19:34:10 +02:00
Shinji Okumura
5e361e2aa4 [Attributor] Deduce noundef attribute
This patch introduces a new abstract attribute `AANoUndef` which corresponds to `noundef` IR attribute and deduce them.

Reviewed By: jdoerfert

Differential Revision: https://reviews.llvm.org/D85184
2020-08-18 18:05:54 +09:00
Johannes Doerfert
19bd4ef157 [Attributor] Properly use the call site argument position 2020-08-17 18:21:09 -05:00