Commit Graph

1167 Commits

Author SHA1 Message Date
Eugene Zelenko be709f2c19 [Analysis] Fix some Clang-tidy modernize and Include What You Use warnings; other minor fixes (NFC).
llvm-svn: 311212
2017-08-18 23:51:26 +00:00
Amara Emerson 56dca4e3ca [SCEV] Preserve NSW information for sext(subtract).
Pushes the sext onto the operands of a Sub if NSW is present.
Also adds support for propagating the nowrap flags of the
llvm.ssub.with.overflow intrinsic during analysis.

Differential Revision: https://reviews.llvm.org/D35256

llvm-svn: 310117
2017-08-04 20:19:46 +00:00
Max Kazantsev 2cb3653404 [SCEV] Re-enable "Cache results of computeExitLimit"
The patch rL309080 was reverted because it did not clean up the cache on "forgetValue"
method call. This patch re-enables this change, adds the missing check and introduces
two new unit tests that make sure that the cache is cleaned properly.

Differential Revision: https://reviews.llvm.org/D36087

llvm-svn: 309925
2017-08-03 08:41:30 +00:00
Sanjoy Das 4cad61adb3 [SCEV/IndVars] Always compute loop exiting values if the backedge count is 0
If SCEV can prove that the backedge taken count for a loop is zero, it does not
need to "understand" a recursive PHI to compute its exiting value.

This should fix PR33885.

llvm-svn: 309758
2017-08-01 22:37:58 +00:00
Sanjoy Das b5a968f62d [SCEV] Change an early exit to an assert; NFC
llvm-svn: 309480
2017-07-29 05:32:47 +00:00
Max Kazantsev fa4969539a [SCEV] Do not visit nodes twice in containsConstantSomewhere
This patch reworks the function that searches constants in Add and Mul SCEV expression
chains so that now it does not visit a node more than once, and also renames this function
for better correspondence between its implementation and semantics.

Differential Revision: https://reviews.llvm.org/D35931

llvm-svn: 309367
2017-07-28 06:42:15 +00:00
Sanjoy Das 843ab57457 Revert "[SCEV] Cache results of computeExitLimit"
This reverts commit r309080.  The patch needs to clear out the
ScalarEvolution::ExitLimits cache in forgetMemoizedResults.

I've replied on the commit thread for the patch with more details.

llvm-svn: 309357
2017-07-28 03:25:07 +00:00
Max Kazantsev f282aed428 [SCEV] Cache results of computeExitLimit
This patch adds a cache for computeExitLimit to save compilation time. A lot of examples of
tests that take extensive time to compile are attached to the bug 33494.

Differential Revision: https://reviews.llvm.org/D35827

llvm-svn: 309080
2017-07-26 04:55:54 +00:00
Sanjoy Das 469e740f2b [SCEV] Remove unnecessary call to forgetMemoizedResults
`SCEVUnknown::allUsesReplacedWith` does not need to call `forgetMemoizedResults`
since RAUW does a value-equivalent replacement by assumption.  If this
assumption was false then the later setValPtr(New) call would be incorrect too.

This is a non-trivial performance optimization for functions with a large number
of loops since `forgetMemoizedResults` walks all loop backedge taken counts to
see if any of them use the SCEVUnknown being RAUWed.  However, this improvement
is difficult to demonstrate without checking in an excessively large IR file.

llvm-svn: 309072
2017-07-26 01:32:19 +00:00
Max Kazantsev 0e9e0796f4 [SCEV] Limit max size of AddRecExpr during evolving
When SCEV calculates product of two SCEVAddRecs from the same loop, it
tries to combine them into one big AddRecExpr. If the sizes of the initial
SCEVs were `S1` and `S2`, the size of their product is `S1 + S2 - 1`, and every
operand of the resulting SCEV is combined from operands of initial SCEV and
has much higher complexity than they have.

As result, if we try to calculate something like:
  %x1 = {a,+,b}
  %x2 = mul i32 %x1, %x1
  %x3 = mul i32 %x2, %x1
  %x4 = mul i32 %x3, %x2
  ...
The size of such SCEVs grows as `2^N`, and the arguments
become more and more complex as we go forth. This leads
to long compilation and huge memory consumption.

This patch sets a limit after which we don't try to combine two
`SCEVAddRecExpr`s into one. By default, max allowed size of the
resulting AddRecExpr is set to 16.

Differential Revision: https://reviews.llvm.org/D35664

llvm-svn: 308847
2017-07-23 15:40:19 +00:00
Dorit Nuzman ca4fd18ddc PSCEV] Create AddRec for Phis in cases of possible integer overflow,
using runtime checks

Extend the SCEVPredicateRewriter to work a bit harder when it encounters an
UnknownSCEV for a Phi node; Try to build an AddRecurrence also for Phi nodes
whose update chain involves casts that can be ignored under the proper runtime
overflow test. This is one step towards addressing PR30654.

Differential revision: http://reviews.llvm.org/D30041

llvm-svn: 308299
2017-07-18 11:57:08 +00:00
Craig Topper ca2c87653c [Constants] Replace calls to ConstantInt::equalsInt(0)/equalsInt(1) with isZero and isOne. NFCI
llvm-svn: 307293
2017-07-06 18:39:49 +00:00
Craig Topper 79ab643da8 [Constants] If we already have a ConstantInt*, prefer to use isZero/isOne/isMinusOne instead of isNullValue/isOneValue/isAllOnesValue inherited from Constant. NFCI
Going through the Constant methods requires redetermining that the Constant is a ConstantInt and then calling isZero/isOne/isMinusOne.

llvm-svn: 307292
2017-07-06 18:39:47 +00:00
Max Kazantsev 8d0322e612 [SCEV] Use depth limit instead of local cache for SExt and ZExt
In rL300494 there was an attempt to deal with excessive compile time on
invocations of getSign/ZeroExtExpr using local caching. This approach only
helps if we request the same SCEV multiple times throughout recursion. But
in the bug PR33431 we see a case where we request different values all the time,
so caching does not help and the size of the cache grows enormously.

In this patch we remove the local cache for this methods and add the recursion
depth limit instead, as we do for arithmetics. This gives us a guarantee that the
invocation sequence is limited and reasonably short.

Differential Revision: https://reviews.llvm.org/D34273

llvm-svn: 306785
2017-06-30 05:04:09 +00:00
Alexandre Isoard 41044876fc Reverting r306695 while investigating failing test case.
Failing test case:
    Transforms/LoopVectorize.iv_outside_user.ll

llvm-svn: 306723
2017-06-29 18:48:56 +00:00
Alexandre Isoard aa29afc756 ScalarEvolution: Add URem support
In LLVM IR the following code:

    %r = urem <ty> %t, %b

is equivalent to:

    %q = udiv <ty> %t, %b
    %s = mul <ty> nuw %q, %b
    %r = sub <ty> nuw %t, %q ; (t / b) * b + (t % b) = t

As UDiv, Mul and Sub are already supported by SCEV, URem can be
implemented with minimal effort this way.

Note: While SRem and SDiv are also related this way, SCEV does not
provides SDiv yet.

llvm-svn: 306695
2017-06-29 16:29:04 +00:00
Craig Topper 010203964d [SCEV] Avoid copying ConstantRange just to get the min/max value
Summary:
This patch changes getRange to getRangeRef and returns a reference to the ConstantRange object stored inside the DenseMap caches. We then take advantage of that to add new helper methods that can return min/max value of a signed or unsigned ConstantRange using that reference without first copying the ConstantRange.

getRangeRef calls itself recursively and I believe the reference return is fine for those calls.

I've left getSignedRange and getUnsignedRange returning a ConstantRange object so they will make a copy now. This is to ensure safety since the reference will be invalidated if the DenseMap changes.

I'm sure there are still more places that can take advantage of the reference and I'll submit future patches as I find them.

Reviewers: sanjoy, davide

Reviewed By: sanjoy

Subscribers: zzheng, llvm-commits, mzolotukhin

Differential Revision: https://reviews.llvm.org/D32978

llvm-svn: 306229
2017-06-24 23:34:50 +00:00
Max Kazantsev eac01d4c62 [SCEV] Make MulOpsInlineThreshold lower to avoid excessive compilation time
MulOpsInlineThreshold option of SCEV is defaulted to 1000, which is inadequately high.
When constructing SCEVs of expressions like:

  x1 = a * a
  x2 = x1 * x1
  x3 = x2 * x2
    ...

We actually have huge SCEVs with max allowed amount of operands inlined.
Such expressions are easy to get from unrolling of loops looking like

  x = a
  for (i = 0; i < n; i++)
    x = x * x

Or more tricky cases where big powers are involved. If some non-linear analysis
tries to work with a SCEV that has 1000 operands, it may lead to excessively long
compilation. The attached test does not pass within 1 minute with default threshold.

This patch decreases its default value to 32, which looks much more reasonable if we
use analyzes with complexity O(N^2) or O(N^3) working with SCEV.

Differential Revision: https://reviews.llvm.org/D34397

llvm-svn: 305882
2017-06-21 07:28:13 +00:00
Max Kazantsev 0bcf6ec85c [SCEV][NFC] Fix a misleading description of AddOpsInlineThreshold
The description of this option was copy-pasted from another one and does not
correspond to reality.

Differential Revision: https://reviews.llvm.org/D34390

llvm-svn: 305782
2017-06-20 08:37:31 +00:00
Max Kazantsev dc80366d52 [ScalarEvolution] Apply Depth limit to getMulExpr
This is a fix for PR33292 that shows a case of extremely long compilation
of a single .c file with clang, with most time spent within SCEV.

We have a mechanism of limiting recursion depth for getAddExpr to avoid
long analysis in SCEV. However, there are calls from getAddExpr to getMulExpr
and back that do not propagate the info about depth. As result of this, a chain

  getAddExpr -> ... .> getAddExpr -> getMulExpr -> getAddExpr -> ... -> getAddExpr

can be extremely long, with every segment of getAddExpr's being up to max depth long.
This leads either to long compilation or crash by stack overflow. We face this situation while
analyzing big SCEVs in the test of PR33292.

This patch applies the same limit on max expression depth for getAddExpr and getMulExpr.

Differential Revision: https://reviews.llvm.org/D33984

llvm-svn: 305463
2017-06-15 11:48:21 +00:00
Andrew Kaylor 647025f9e1 [InstSimplify] Don't constant fold or DCE calls that are marked nobuiltin
Differential Revision: https://reviews.llvm.org/D33737

llvm-svn: 305132
2017-06-09 23:18:11 +00:00
Chandler Carruth 6bda14b313 Sort the remaining #include lines in include/... and lib/....
I did this a long time ago with a janky python script, but now
clang-format has built-in support for this. I fed clang-format every
line with a #include and let it re-sort things according to the precise
LLVM rules for include ordering baked into clang-format these days.

I've reverted a number of files where the results of sorting includes
isn't healthy. Either places where we have legacy code relying on
particular include ordering (where possible, I'll fix these separately)
or where we have particular formatting around #include lines that
I didn't want to disturb in this patch.

This patch is *entirely* mechanical. If you get merge conflicts or
anything, just ignore the changes in this patch and run clang-format
over your #include lines in the files.

Sorry for any noise here, but it is important to keep these things
stable. I was seeing an increasing number of patches with irrelevant
re-ordering of #include lines because clang-format was used. This patch
at least isolates that churn, makes it easy to skip when resolving
conflicts, and gets us to a clean baseline (again).

llvm-svn: 304787
2017-06-06 11:49:48 +00:00
Galina Kistanova 8514dd540d Added LLVM_FALLTHROUGH to address warning: this statement may fall through. NFC.
llvm-svn: 304358
2017-05-31 22:09:46 +00:00
Max Kazantsev d8fe3eb9cb [SCEV][NFC] Remove redundant params from isAvailableAtLoopEntry
Params DT and LI are redundant, because these values are contained in fields anyways.

Differential Revision: https://reviews.llvm.org/D33668

llvm-svn: 304204
2017-05-30 10:54:58 +00:00
Tobias Grosser e3684d0b84 [SCEV] Assume parameters coming from function calls contain IVs
The optimistic delinearization implemented in LLVM detects array sizes by
looking for non-linear products between parameters and induction variables.
In OpenCL code, such products often look like:

  A[get_global_id(0) * N + get_global_id(1)]

Hence, the IV is hidden in the get_global_id() call and consequently
delinearization would fail as no induction variable is available that helps
us to identify N as array size parameter.

We now use a very simple heuristic to change this. We assume that each parameter
that comes directly from a function call is a hidden induction variable. As
a result, we can delinearize the access above to:

  A[get_global_id(0)][get_global_id(1]

llvm-svn: 304073
2017-05-27 15:17:49 +00:00
Max Kazantsev 41450329f7 Re-enable "[SCEV] Do not fold dominated SCEVUnknown into AddRecExpr start"
The patch rL303730 was reverted because test lsr-expand-quadratic.ll failed on
many non-X86 configs with this patch. The reason of this is that the patch
makes a correctless fix that changes optimizer's behavior for this test.
Without the change, LSR was making an overconfident simplification basing on a
wrong SCEV. Apparently it did not need the IV analysis to do this. With the
change, it chose a different way to simplify (that wasn't so confident), and
this way required the IV analysis. Now, following the right execution path,
LSR tries to make a transformation relying on IV Users analysis. This analysis
is target-dependent due to this code:

  // LSR is not APInt clean, do not touch integers bigger than 64-bits.
  // Also avoid creating IVs of non-native types. For example, we don't want a
  // 64-bit IV in 32-bit code just because the loop has one 64-bit cast.
  uint64_t Width = SE->getTypeSizeInBits(I->getType());
  if (Width > 64 || !DL.isLegalInteger(Width))
    return false;

To make a proper transformation in this test case, the type i32 needs to be
legal for the specified data layout. When the test runs on some non-X86
configuration (e.g. pure ARM 64), opt gets confused by the specified target
and does not use it, rejecting the specified data layout as well. Instead,
it uses some default layout that does not treat i32 as a legal type
(currently the layout that is used when it is not specified does not have
legal types at all). As result, the transformation we expect to happen does
not happen for this test.

This re-enabling patch does not have any source code changes compared to the
original patch rL303730. The only difference is that the failing test is
moved to X86 directory and now has requirement of running on x86 only to comply
with the specified target triple and data layout.

Differential Revision: https://reviews.llvm.org/D33543

llvm-svn: 303971
2017-05-26 06:47:04 +00:00
Craig Topper 8205a1a9b6 [ValueTracking] Convert most of the calls to computeKnownBits to use the version that returns the KnownBits object.
This continues the changes started when computeSignBit was replaced with this new version of computeKnowBits.

Differential Revision: https://reviews.llvm.org/D33431

llvm-svn: 303773
2017-05-24 16:53:07 +00:00
Diana Picus 183863fc3b Revert "[SCEV] Do not fold dominated SCEVUnknown into AddRecExpr start"
This reverts commit r303730 because it broke all the buildbots.

llvm-svn: 303747
2017-05-24 14:16:04 +00:00
Max Kazantsev 13e016bf48 [SCEV] Do not fold dominated SCEVUnknown into AddRecExpr start
When folding arguments of AddExpr or MulExpr with recurrences, we rely on the fact that
the loop of our base recurrency is the bottom-lost in terms of domination. This assumption
may be broken by an expression which is treated as invariant, and which depends on a complex
Phi for which SCEVUnknown was created. If such Phi is a loop Phi, and this loop is lower than
the chosen AddRecExpr's loop, it is invalid to fold our expression with the recurrence.

Another reason why it might be invalid to fold SCEVUnknown into Phi start value is that unlike
other SCEVs, SCEVUnknown are sometimes position-bound. For example, here:

for (...) { // loop
  phi = {A,+,B}
}
X = load ...
Folding phi + X into {A+X,+,B}<loop> actually makes no sense, because X does not exist and cannot
exist while we are iterating in loop (this memory can be even not allocated and not filled by this moment).
It is only valid to make such folding if X is defined before the loop. In this case the recurrence {A+X,+,B}<loop>
may be existant.

This patch prohibits folding of SCEVUnknown (and those who use them) into the start value of an AddRecExpr,
if this instruction is dominated by the loop. Merging the dominating unknown values is still valid. Some tests that
relied on the fact that some SCEVUnknown should be folded into AddRec's are changed so that they no longer
expect such behavior.

llvm-svn: 303730
2017-05-24 08:52:18 +00:00
Sanjoy Das 036dda25a5 [SCEV] Clarify behavior around max backedge taken count
This is a re-application of a r303497 that was reverted in r303498.
I thought it had broken a bot when it had not (the breakage did not
go away with the revert).

This change makes the split between the "exact" backedge taken count
and the "maximum" backedge taken count a bit more obvious.  Both of
these are upper bounds on the number of times the loop header
executes (since SCEV does not account for most kinds of abnormal
control flow), but the latter is guaranteed to be a constant.

There were a few places where the max backedge taken count *was* a
non-constant; I've changed those to compute constants instead.

At this point, I'm not sure if the constant max backedge count can be
computed by calling `getUnsignedRange(Exact).getUnsignedMax()` without
losing precision.  If it can, we can simplify even further by making
`getMaxBackedgeTakenCount` a thin wrapper around
`getBackedgeTakenCount` and `getUnsignedRange`.

llvm-svn: 303531
2017-05-22 06:46:04 +00:00
Sanjoy Das 8963650cfa Revert "[SCEV] Clarify behavior around max backedge taken count"
This reverts commit r303497 since it breaks the msan bootstrap bot:
http://lab.llvm.org:8011/builders/sanitizer-x86_64-linux-bootstrap/builds/1379/

llvm-svn: 303498
2017-05-21 05:02:12 +00:00
Sanjoy Das 5207168383 [SCEV] Clarify behavior around max backedge taken count
This change makes the split between the "exact" backedge taken count
and the "maximum" backedge taken count a bit more obvious.  Both of
these are upper bounds on the number of times the loop header
executes (since SCEV does not account for most kinds of abnormal
control flow), but the latter is guaranteed to be a constant.

There were a few places where the max backedge taken count *was* a
non-constant; I've changed those to compute constants instead.

At this point, I'm not sure if the constant max backedge count can be
computed by calling `getUnsignedRange(Exact).getUnsignedMax()` without
losing precision.  If it can, we can simplify even further by making
`getMaxBackedgeTakenCount` a thin wrapper around
`getBackedgeTakenCount` and `getUnsignedRange`.

llvm-svn: 303497
2017-05-21 01:47:50 +00:00
Max Kazantsev 627ad0fec3 [SCEV][NFC] Remove duplication of isLoopInvariant code
Replace two places that duplicate the code of isLoopInvariant method with
the invocation of this method.

Differential Revision: https://reviews.llvm.org/D33313

llvm-svn: 303336
2017-05-18 08:26:41 +00:00
Max Kazantsev 4c7f293d24 [SCEV] Always sort AddRecExprs from different loops by dominance
Sorting of AddRecExprs by loop nesting does not make sense since we only invoke
the CompareSCEVComplexity for AddRecExprs that are used by one SCEV. This
guarantees that there is always a dominance relationship between them. This
patch removes the sorting by nesting which is a dead code in current usage of
this function.

Reviewed By: sanjoy

Differential Revision: https://reviews.llvm.org/D33228

llvm-svn: 303235
2017-05-17 04:09:14 +00:00
Max Kazantsev b67d344850 [SCEV][NFC] Replace redundant dyn_cast with cast in getAddExpr
Replace dyn_cast which is ensured by isa just one line above with cast.

Differential Revision: https://reviews.llvm.org/D33231

llvm-svn: 303234
2017-05-17 03:58:42 +00:00
Max Kazantsev b09b5db793 [SCEV] Fix sorting order for AddRecExprs
The existing sorting order in defined CompareSCEVComplexity sorts AddRecExprs
by loop depth, but does not pay attention to dominance of loops. This can
lead us to the following buggy situation:

for (...) { // loop1
  op1 = {A,+,B}
}
for (...) { // loop2
  op2 = {A,+,B}
  S = add op1, op2
}

In this case there is no guarantee that in operand list of S the op2 comes
before op1 (loop depth is the same, so they will be sorted just
lexicographically), so we can incorrectly treat S as a recurrence of loop1,
which is wrong.

This patch changes the sorting logic so that it places the dominated recs
before the dominating recs. This ensures that when we pick the first recurrency
in the operands order, it will be the bottom-most in terms of domination tree.
The attached test set includes some tests that produce incorrect SCEV
estimations and crashes with oldlogic.

Reviewers: sanjoy, reames, apilipenko, anna

Reviewed By: sanjoy

Subscribers: llvm-commits, mzolotukhin

Differential Revision: https://reviews.llvm.org/D33121

llvm-svn: 303148
2017-05-16 07:27:06 +00:00
Craig Topper 716cad8bb7 [SCEV] Use copy initialization of APInts instead of direct initialization.
This is based on post commit feed back from r302769.

llvm-svn: 303092
2017-05-15 18:14:16 +00:00
Craig Topper 1a36b7d836 [ValueTracking] Replace all uses of ComputeSignBit with computeKnownBits.
This patch finishes off the conversion of ComputeSignBit to computeKnownBits.

Differential Revision: https://reviews.llvm.org/D33166

llvm-svn: 303035
2017-05-15 06:39:41 +00:00
Sanjoy Das f6f6fb903e Move some code into ScalarEvolution.cpp; NFC
I need to add some asserts to these constructors that are easier to
add once they're in the .cpp file.

llvm-svn: 303032
2017-05-15 04:22:09 +00:00
Craig Topper 8df66c602a [KnownBits] Add bit counting methods to KnownBits struct and use them where possible
This patch adds min/max population count, leading/trailing zero/one bit counting methods.

The min methods return answers based on bits that are known without considering unknown bits. The max methods give answers taking into account the largest count that unknown bits could give.

Differential Revision: https://reviews.llvm.org/D32931

llvm-svn: 302925
2017-05-12 17:20:30 +00:00
Craig Topper e3e1a35f68 [SCEV] Reduce possible APInt allocations a bit.
llvm-svn: 302769
2017-05-11 06:48:54 +00:00
Craig Topper 6694a4e6d6 [SCEV] Remove unneeded 'using namespace APIntOps'.
llvm-svn: 302768
2017-05-11 06:48:51 +00:00
Craig Topper ef869ecf0e [SCEV] Don't use std::move on both inputs to APInt::operator+ or operator-. It might be confusing to the reader. NFC
llvm-svn: 302448
2017-05-08 17:39:01 +00:00
Craig Topper 389d8cebd1 [SCEV] Use APInt::operator*=(uint64_t) to avoid a temporary APInt for a constant.
llvm-svn: 302404
2017-05-08 04:55:13 +00:00
Craig Topper d6f2639fd7 [SCEV] Have getRangeForAffineARHelper take StartRange by const reference to avoid a copy in many of the cases.
llvm-svn: 302398
2017-05-08 02:29:15 +00:00
Craig Topper 252682a41b [SCEV] Use move semantics in ScalarEvolution::setRange
Summary: This makes setRange take ConstantRange by rvalue reference since most callers were passing an unnamed temporary ConstantRange. We can then move that ConstantRange into the DenseMap caches. For the callers that weren't passing a temporary, I've added std::move to to the local variable being passed.

Reviewers: sanjoy, mzolotukhin, efriedma

Reviewed By: sanjoy

Subscribers: takuto.ikuta, llvm-commits

Differential Revision: https://reviews.llvm.org/D32943

llvm-svn: 302371
2017-05-07 16:28:17 +00:00
Sanjoy Das df8c2ebe73 Remove unnecessary const_cast
llvm-svn: 302368
2017-05-07 05:29:36 +00:00
Sanjoy Das 40415eeb59 Use array_pod_sort instead of std::sort
llvm-svn: 302367
2017-05-07 05:29:34 +00:00
Craig Topper 6c5e22a4b8 [SCEV] Remove extra APInt copies from getRangeForAffineARHelper.
This changes one parameter to be a const APInt& since we only read from it. Use std::move on local APInts once they are no longer needed so we can reuse their allocations. Lastly, use operator+=(uint64_t) instead of adding 1 to an APInt twice creating a new APInt each time.

llvm-svn: 302335
2017-05-06 06:03:07 +00:00
Craig Topper 69f1af29fb [SCEV] Use std::move to avoid some APInt copies.
llvm-svn: 302334
2017-05-06 05:22:56 +00:00