Commit Graph

673 Commits

Author SHA1 Message Date
Vivek Pandya 00d887447b This patch fixes https://bugs.llvm.org/show_bug.cgi?id=32352
It enables OptimizationRemarkEmitter::allowExtraAnalysis and MachineOptimizationRemarkEmitter::allowExtraAnalysis to return true not only for -fsave-optimization-record but when specific remarks are requested with
command line options.
The diagnostic handler used to be callback now this patch adds a class
DiagnosticHandler. It has virtual method to provide custom diagnostic handler
and methods to control which particular remarks are enabled. 
However LLVM-C API users can still provide callback function for diagnostic handler.

llvm-svn: 313382
2017-09-15 19:30:59 +00:00
Eugene Zelenko 8002c504cd [Transforms] Fix some Clang-tidy modernize-use-using and Include What You Use warnings; other minor fixes (NFC).
llvm-svn: 313198
2017-09-13 21:43:53 +00:00
Wei Mi bb9106ac4b [GVN] Remove stale entries in phitranslate cache when new phi is generated for PRE
When a new phi is generated for scalarpre of an expression, the phiTranslate cache
will become stale: Before PRE, the candidate expression must not be available in a
predecessor block, and phitranslate will cache the information. After PRE, the
expression will become available in all predecessor blocks, so the related entries
in phiTranslate cache becomes stale. The patch will simply remove the stale entries
so phiTranslate can be recomputed next time.

The stale entries in phitranslate cache will not affect correctness but will cause
missing PRE opportunity for later instructions.

Differential Revision: https://reviews.llvm.org/D36124

llvm-svn: 310421
2017-08-08 21:40:14 +00:00
Wei Mi 55c05e14af [GVN] Recommit the patch "Add phi-translate support in scalarpre"
Recommit after workaround the bug PR31652.

Three bugs fixed in previous recommits: The first one is to use CurrentBlock
instead of PREInstr's Parent as param of performScalarPREInsertion because
the Parent of a clone instruction may be uninitialized. The second one is stop
PRE when CurrentBlock to its predecessor is a backedge and an operand of CurInst
is defined inside of CurrentBlock. The same value defined inside of loop in last
iteration can not be regarded as available. The third one is an out-of-bound
array access in a flipped if guard.

Right now scalarpre doesn't have phi-translate support, so it will miss some
simple pre opportunities. Like the following testcase, current scalarpre cannot
recognize the last "a * b" is fully redundent because a and b used by the last
"a * b" expr are both defined by phis.

long a[100], b[100], g1, g2, g3;
__attribute__((pure)) long goo();

void foo(long a, long b, long c, long d) {

  g1 = a * b;
  if (__builtin_expect(g2 > 3, 0)) {
    a = c;
    b = d;
    g2 = a * b;
  }
  g3 = a * b;      // fully redundant.

}

The patch adds phi-translate support in scalarpre. This is only a temporary
solution before the newpre based on newgvn is available.

Differential Revision: https://reviews.llvm.org/D32252

llvm-svn: 309397
2017-07-28 15:47:25 +00:00
Weiming Zhao 984f1dc338 Fix DebugLoc propagation for unreachable LoadInst
Summary: Currently, when GVN creates a load and when InstCombine creates a new store for unreachable Load, the DebugLoc info gets lost.

Reviewers: dberlin, davide, aprantl

Reviewed By: aprantl

Subscribers: davide, llvm-commits

Differential Revision: https://reviews.llvm.org/D34639

llvm-svn: 308404
2017-07-19 01:27:24 +00:00
Konstantin Zhuravlyov bb80d3e1d3 Enhance synchscope representation
OpenCL 2.0 introduces the notion of memory scopes in atomic operations to
  global and local memory. These scopes restrict how synchronization is
  achieved, which can result in improved performance.

  This change extends existing notion of synchronization scopes in LLVM to
  support arbitrary scopes expressed as target-specific strings, in addition to
  the already defined scopes (single thread, system).

  The LLVM IR and MIR syntax for expressing synchronization scopes has changed
  to use *syncscope("<scope>")*, where <scope> can be "singlethread" (this
  replaces *singlethread* keyword), or a target-specific name. As before, if
  the scope is not specified, it defaults to CrossThread/System scope.

  Implementation details:
    - Mapping from synchronization scope name/string to synchronization scope id
      is stored in LLVM context;
    - CrossThread/System and SingleThread scopes are pre-defined to efficiently
      check for known scopes without comparing strings;
    - Synchronization scope names are stored in SYNC_SCOPE_NAMES_BLOCK in
      the bitcode.

Differential Revision: https://reviews.llvm.org/D21723

llvm-svn: 307722
2017-07-11 22:23:00 +00:00
Craig Topper 95d2347ae1 [IR] Make use of Type::isPtrOrPtrVectorTy/isIntOrIntVectorTy/isFPOrFPVectorTy to shorten code. NFC
llvm-svn: 307491
2017-07-09 07:04:00 +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
Benjamin Kramer fb620493e1 Revert "[GVN] Recommit the patch "Add phi-translate support in scalarpre"."
This reverts commit r306313. This breaks selfhost at -O3 and PR33652.
Let me know if you need additional information on reproducing the issue.

llvm-svn: 307021
2017-07-03 12:23:10 +00:00
Wei Mi 71f06420e4 [GVN] Recommit the patch "Add phi-translate support in scalarpre".
The recommit fixes three bugs: The first one is to use CurrentBlock instead of
PREInstr's Parent as param of performScalarPREInsertion because the Parent
of a clone instruction may be uninitialized. The second one is stop PRE when
CurrentBlock to its predecessor is a backedge and an operand of CurInst is
defined inside of CurrentBlock. The same value defined inside of loop in last
iteration can not be regarded as available. The third one is an out-of-bound
array access in a flipped if guard.

Right now scalarpre doesn't have phi-translate support, so it will miss some
simple pre opportunities. Like the following testcase, current scalarpre cannot
recognize the last "a * b" is fully redundent because a and b used by the last
"a * b" expr are both defined by phis.

long a[100], b[100], g1, g2, g3;
__attribute__((pure)) long goo();

void foo(long a, long b, long c, long d) {

  g1 = a * b;
  if (__builtin_expect(g2 > 3, 0)) {
    a = c;
    b = d;
    g2 = a * b;
  }
  g3 = a * b;      // fully redundant.

}

The patch adds phi-translate support in scalarpre. This is only a temporary
solution before the newpre based on newgvn is available.

llvm-svn: 306313
2017-06-26 18:16:10 +00:00
Sam Clegg 705f798bff Mark dump() methods as const. NFC
Add const qualifier to any dump() method where adding one
was trivial.

Differential Revision: https://reviews.llvm.org/D34481

llvm-svn: 305963
2017-06-21 22:19:17 +00:00
Wei Mi c7ba876323 Revert rL305578. There is still some buildbot failure to be fixed.
llvm-svn: 305603
2017-06-16 23:14:35 +00:00
Wei Mi a2493b6ad9 [GVN] Recommit the patch "Add phi-translate support in scalarpre".
The recommit fixes two bugs: The first one is to use CurrentBlock instead of
PREInstr's Parent as param of performScalarPREInsertion because the Parent
of a clone instruction may be uninitialized. The second one is stop PRE when
CurrentBlock to its predecessor is a backedge and an operand of CurInst is
defined inside of CurrentBlock. The same value defined inside of loop in last
iteration can not be regarded as available.

Right now scalarpre doesn't have phi-translate support, so it will miss some
simple pre opportunities. Like the following testcase, current scalarpre cannot
recognize the last "a * b" is fully redundent because a and b used by the last
"a * b" expr are both defined by phis.

long a[100], b[100], g1, g2, g3;
__attribute__((pure)) long goo();

void foo(long a, long b, long c, long d) {

  g1 = a * b;
  if (__builtin_expect(g2 > 3, 0)) {
    a = c;
    b = d;
    g2 = a * b;
  }
  g3 = a * b;      // fully redundant.

}
The patch adds phi-translate support in scalarpre. This is only a temporary
solution before the newpre based on newgvn is available.

Differential Revision: https://reviews.llvm.org/D32252

llvm-svn: 305578
2017-06-16 20:21:01 +00:00
Wei Mi 0bd3f41588 Revert rL304050. It may break sanitizer bootstrap. Revert it for now while investigating.
llvm-svn: 304350
2017-05-31 21:29:33 +00:00
Wei Mi 5bbb5aafc1 [GVN] Recommit the patch "Add phi-translate support in scalarpre".
The recommit is to fix a bug about ExtractValue and InsertValue ops. For those
ops, some varargs inside GVN::Expression are not value numbers but raw index
numbers. It is wrong to do phi-translate for raw index numbers, and the fix is
to stop doing that.

Right now scalarpre doesn't have phi-translate support, so it will miss some
simple pre opportunities. Like the following testcase, current scalarpre cannot
recognize the last "a * b" is fully redundent because a and b used by the last
"a * b" expr are both defined by phis.

long a[100], b[100], g1, g2, g3;
__attribute__((pure)) long goo();

void foo(long a, long b, long c, long d) {
  g1 = a * b;
  if (__builtin_expect(g2 > 3, 0)) {
    a = c;
    b = d;
    g2 = a * b;
  }
  g3 = a * b;      // fully redundant.
}
The patch adds phi-translate support in scalarpre. This is only a temporary
solution before the newpre based on newgvn is available.

Differential Revision: https://reviews.llvm.org/D32252

llvm-svn: 304050
2017-05-27 00:54:19 +00:00
Wei Mi 3250ae3f7c Revert rL303923 since it broke the sanitizer bootstrap build bot.
llvm-svn: 303969
2017-05-26 05:42:50 +00:00
Wei Mi fd257fa7bf [GVN] Add phi-translate support in scalarpre.
Right now scalarpre doesn't have phi-translate support, so it will miss some
simple pre opportunities. Like the following testcase, current scalarpre cannot
recognize the last "a * b" is fully redundent because a and b used by the last
"a * b" expr are both defined by phis.

  long a[100], b[100], g1, g2, g3;
  __attribute__((pure)) long goo();

  void foo(long a, long b, long c, long d) {
    g1 = a * b;
    if (__builtin_expect(g2 > 3, 0)) {
      a = c;
      b = d;
      g2 = a * b;
    }
    g3 = a * b;      // fully redundant.
  }

The patch adds phi-translate support in scalarpre. This is only a temporary
solution before the newpre based on newgvn is available.

Differential Revision: https://reviews.llvm.org/D32252

llvm-svn: 303923
2017-05-25 21:49:02 +00:00
Reid Kleckner 96ab8726a3 [IR] De-virtualize ~Value to save a vptr
Summary:
Implements PR889

Removing the virtual table pointer from Value saves 1% of RSS when doing
LTO of llc on Linux. The impact on time was positive, but too noisy to
conclusively say that performance improved. Here is a link to the
spreadsheet with the original data:

https://docs.google.com/spreadsheets/d/1F4FHir0qYnV0MEp2sYYp_BuvnJgWlWPhWOwZ6LbW7W4/edit?usp=sharing

This change makes it invalid to directly delete a Value, User, or
Instruction pointer. Instead, such code can be rewritten to a null check
and a call Value::deleteValue(). Value objects tend to have their
lifetimes managed through iplist, so for the most part, this isn't a big
deal.  However, there are some places where LLVM deletes values, and
those places had to be migrated to deleteValue.  I have also created
llvm::unique_value, which has a custom deleter, so it can be used in
place of std::unique_ptr<Value>.

I had to add the "DerivedUser" Deleter escape hatch for MemorySSA, which
derives from User outside of lib/IR. Code in IR cannot include MemorySSA
headers or call the MemoryAccess object destructors without introducing
a circular dependency, so we need some level of indirection.
Unfortunately, no class derived from User may have any virtual methods,
because adding a virtual method would break User::getHungOffOperands(),
which assumes that it can find the use list immediately prior to the
User object. I've added a static_assert to the appropriate OperandTraits
templates to help people avoid this trap.

Reviewers: chandlerc, mehdi_amini, pete, dberlin, george.burgess.iv

Reviewed By: chandlerc

Subscribers: krytarowski, eraman, george.burgess.iv, mzolotukhin, Prazek, nlewycky, hans, inglorion, pcc, tejohnson, dberlin, llvm-commits

Differential Revision: https://reviews.llvm.org/D31261

llvm-svn: 303362
2017-05-18 17:24:10 +00:00
Daniel Berlin 4d0fe64ae3 Kill off the old SimplifyInstruction API by converting remaining users.
llvm-svn: 301673
2017-04-28 19:55:38 +00:00
Chandler Carruth 927d8e610a [IR] Redesign the case iterator in SwitchInst to actually be an iterator
and to expose a handle to represent the actual case rather than having
the iterator return a reference to itself.

All of this allows the iterator to be used with common STL facilities,
standard algorithms, etc.

Doing this exposed some missing facilities in the iterator facade that
I've fixed and required some work to the actual iterator to fully
support the necessary API.

Differential Revision: https://reviews.llvm.org/D31548

llvm-svn: 300032
2017-04-12 07:27:28 +00:00
Daniel Berlin 12883b1673 Templatize parts of VNCoercion, and add constant-only versions of the functions to be used in NewGVN.
NFCI.

Summary:
This is ground work for the changes to enable coercion in NewGVN.
GVN doesn't care if they end up constant because it eliminates as it goes.
NewGVN cares.

IRBuilder and ConstantFolder deliberately present the same interface,
so we use this to our advantage to templatize our functions to make
them either constant only or not.

Reviewers: davide

Subscribers: llvm-commits, Prazek

Differential Revision: https://reviews.llvm.org/D30928

llvm-svn: 298262
2017-03-20 16:08:29 +00:00
Craig Topper d55e153b87 [GVN] Fix accidental double storage of the function BasicBlock list in iterateOnFunction
Summary:
iterateOnFunction creates a ReversePostOrderTraversal object which does a post order traversal in its constructor and stores the results in an internal vector. Iteration over it just reads from the internal vector in reverse order.

The GVN code seems to be unaware of this and iterates over ReversePostOrderTraversal object and makes a copy of the vector into a local vector. (I think at one point in time we used a DFS here instead which would have required the local vector).

The net affect of this is that we have two vectors containing the basic block list. As I didn't want to expose the implementation detail of ReversePostOrderTraversal's constructor to GVN, I've changed the code to do an explicit post order traversal storing into the local vector and then reverse iterate over that.

I've also removed the reserve(256) since the ReversePostOrderTraversal wasn't doing that. I can add it back if we thinks it important. Though it seemed weird that it wasn't based on the size of the function.

Reviewers: davide, anemet, dberlin

Subscribers: llvm-commits

Differential Revision: https://reviews.llvm.org/D31084

llvm-svn: 298191
2017-03-18 18:24:41 +00:00
Daniel Berlin cd07a0f685 VNCoercion: Make the function signatures all consistent
llvm-svn: 297537
2017-03-11 00:51:01 +00:00
Daniel Berlin 5ac9179f6c Move memory coercion functions from GVN.cpp to VNCoercion.cpp so they can be shared between GVN and NewGVN.
Summary:
These are the functions used to determine when values of loads can be
extracted from stores, etc, and to perform the necessary insertions to
do this.  There are no changes to the functions themselves except
reformatting, and one case where memdep was informed of a removed load
(which was pushed into the caller).

Reviewers: davide

Subscribers: mgorny, llvm-commits, Prazek

Differential Revision: https://reviews.llvm.org/D30478

llvm-svn: 297438
2017-03-10 04:54:10 +00:00
Davide Italiano 116464a55d [NewGVN] Preserve TargetLibraryInfo analysis.
We can maybe preserve more but this is a first step.
Ack'ed by Danny on IRC.

llvm-svn: 293694
2017-01-31 21:53:18 +00:00
Taewook Oh 75acec8a14 Do not propagate DebugLoc across basic blocks
Summary:
DebugLoc shouldn't be propagated across basic blocks to prevent incorrect stepping and imprecise sample profile result. rL288903 addressed the wrong DebugLoc propagation issue by limiting the copy of DebugLoc when GVN removes a fully redundant load that is dominated by some other load. However, DebugLoc is still incorrectly propagated in the following example:


```
1:  extern int g;
2: 
3:  void foo(int x, int y, int z) {
4:    if (x)
5:      g = 0;
6:    else
7:      g = 1;
8:
9:    int i = 0;
10:   for ( ; i < y ; i++)
11:     if (i > z)
12:       g++;
13: }

```
Below is LLVM IR representation of the program before GVN:


```
@g = external local_unnamed_addr global i32, align 4

; Function Attrs: nounwind uwtable
define void @foo(i32 %x, i32 %y, i32 %z) local_unnamed_addr #0 !dbg !4 {
entry:
  %not.tobool = icmp eq i32 %x, 0, !dbg !8
  %.sink = zext i1 %not.tobool to i32, !dbg !8
  store i32 %.sink, i32* @g, align 4, !tbaa !9
  %cmp8 = icmp sgt i32 %y, 0, !dbg !13
  br i1 %cmp8, label %for.body.preheader, label %for.end, !dbg !17

for.body.preheader:                               ; preds = %entry
  br label %for.body, !dbg !19

for.body:                                         ; preds = %for.body.preheader, %for.inc
  %i.09 = phi i32 [ %inc4, %for.inc ], [ 0, %for.body.preheader ]
  %cmp1 = icmp sgt i32 %i.09, %z, !dbg !19
  br i1 %cmp1, label %if.then2, label %for.inc, !dbg !21

if.then2:                                         ; preds = %for.body
  %0 = load i32, i32* @g, align 4, !dbg !22, !tbaa !9
  %inc = add nsw i32 %0, 1, !dbg !22
  store i32 %inc, i32* @g, align 4, !dbg !22, !tbaa !9
  br label %for.inc, !dbg !23

for.inc:                                          ; preds = %for.body, %if.then2
  %inc4 = add nuw nsw i32 %i.09, 1, !dbg !24
  %exitcond = icmp ne i32 %inc4, %y, !dbg !13
  br i1 %exitcond, label %for.body, label %for.end.loopexit, !dbg !17

for.end.loopexit:                                 ; preds = %for.inc
  br label %for.end, !dbg !26

for.end:                                          ; preds = %for.end.loopexit, %entry
  ret void, !dbg !26
}

```
where 


```
!21 = !DILocation(line: 11, column: 9, scope: !15)
!22 = !DILocation(line: 12, column: 8, scope: !20)
!23 = !DILocation(line: 12, column: 7, scope: !20)
!24 = !DILocation(line: 10, column: 20, scope: !25)
```

And below is after GVN:


```
@g = external local_unnamed_addr global i32, align 4

define void @foo(i32 %x, i32 %y, i32 %z) local_unnamed_addr !dbg !4 {
entry:
  %not.tobool = icmp eq i32 %x, 0, !dbg !8
  %.sink = zext i1 %not.tobool to i32, !dbg !8
  store i32 %.sink, i32* @g, align 4, !tbaa !9
  %cmp8 = icmp sgt i32 %y, 0, !dbg !13
  br i1 %cmp8, label %for.body.preheader, label %for.end, !dbg !17

for.body.preheader:                               ; preds = %entry
  br label %for.body, !dbg !19

for.body:                                         ; preds = %for.inc, %for.body.preheader
  %0 = phi i32 [ %1, %for.inc ], [ %.sink, %for.body.preheader ], !dbg !21
  %i.09 = phi i32 [ %inc4, %for.inc ], [ 0, %for.body.preheader ]
  %cmp1 = icmp sgt i32 %i.09, %z, !dbg !19
  br i1 %cmp1, label %if.then2, label %for.inc, !dbg !22

if.then2:                                         ; preds = %for.body
  %inc = add nsw i32 %0, 1, !dbg !21
  store i32 %inc, i32* @g, align 4, !dbg !21, !tbaa !9
  br label %for.inc, !dbg !23

for.inc:                                          ; preds = %if.then2, %for.body
  %1 = phi i32 [ %inc, %if.then2 ], [ %0, %for.body ]
  %inc4 = add nuw nsw i32 %i.09, 1, !dbg !24
  %exitcond = icmp ne i32 %inc4, %y, !dbg !13
  br i1 %exitcond, label %for.body, label %for.end.loopexit, !dbg !17

for.end.loopexit:                                 ; preds = %for.inc
  br label %for.end, !dbg !26

for.end:                                          ; preds = %for.end.loopexit, %entry
  ret void, !dbg !26
}

```
As you see, GVN removes the load in if.then2 block and creates a phi instruction in for.body for it. The problem is that DebugLoc of remove load instruction is propagated to the newly created phi instruction, which is wrong. rL288903 cannot handle this case because ValuesPerBlock.size() is not 1 in this example when the load is removed.

Reviewers: aprantl, andreadb, wolfgangp

Reviewed By: andreadb

Subscribers: davide, llvm-commits

Differential Revision: https://reviews.llvm.org/D29254

llvm-svn: 293688
2017-01-31 20:57:13 +00:00
Matthias Braun 8c209aa877 Cleanup dump() functions.
We had various variants of defining dump() functions in LLVM. Normalize
them (this should just consistently implement the things discussed in
http://lists.llvm.org/pipermail/cfe-dev/2014-January/034323.html

For reference:
- Public headers should just declare the dump() method but not use
  LLVM_DUMP_METHOD or #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
- The definition of a dump method should look like this:
  #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
  LLVM_DUMP_METHOD void MyClass::dump() {
    // print stuff to dbgs()...
  }
  #endif

llvm-svn: 293359
2017-01-28 02:02:38 +00:00
Wolfgang Pieb ce13e716c5 [DWARF] Null out the debug locs of load instructions that have been moved by GVN
performing partial redundancy elimination (PRE). Not doing so can cause jumpy line
tables and confusing (though correct) source attributions.

Differential Revision: https://reviews.llvm.org/D27857

llvm-svn: 291037
2017-01-04 23:58:26 +00:00
Daniel Jasper aec2fa352f Revert @llvm.assume with operator bundles (r289755-r289757)
This creates non-linear behavior in the inliner (see more details in
r289755's commit thread).

llvm-svn: 290086
2016-12-19 08:22:17 +00:00
Hal Finkel 3ca4a6bcf1 Remove the AssumptionCache
After r289755, the AssumptionCache is no longer needed. Variables affected by
assumptions are now found by using the new operand-bundle-based scheme. This
new scheme is more computationally efficient, and also we need much less
code...

llvm-svn: 289756
2016-12-15 03:02:15 +00:00
Andrea Di Biagio ae5780104f When GVN removes a redundant load, it should not modify the debug location of the dominating load.
In the case of a fully redundant load LI dominated by an equivalent load V, GVN
should always preserve the original debug location of V. Otherwise, we risk to
introduce an incorrect stepping.
If V has debug info, then clearly it should not be modified. If V has a null
debugloc, then it is still potentially incorrect to propagate LI's debugloc
because LI may not post-dominate V.

Differential Revision: https://reviews.llvm.org/D27468

llvm-svn: 288903
2016-12-07 12:31:36 +00:00
Adam Nemet 4ddb8c01b1 [GVN, OptDiag] Print the interesting instructions involved in missed load-elimination
[recommitting after the fix in r288307]

This includes the intervening store and the load/store that we're trying
to forward from in the optimization remark for the missed load
elimination.

This is hooked up under a new mode in ORE that allows for compile-time
budget for a bit more analysis to print more insightful messages.  This
mode is currently enabled for -fsave-optimization-record (-Rpass is
trickier since it is controlled in the front-end).

With this we can now print the red remark in http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L446

Differential Revision: https://reviews.llvm.org/D26490

llvm-svn: 288381
2016-12-01 17:34:50 +00:00
Adam Nemet 8b5fba8081 [GVN, OptDiag] Include the value that is forwarded in load elimination
[recommitting after the fix in r288307]

This requires some changes to the opt-diag API.  Hal and I have
discussed this at the Dev Meeting and came up with a streaming delimiter
(setExtraArgs) to solve this.

Arguments after this delimiter are only included in the optimization
records and not in the remarks printed in the compiler output.  (Note,
how in the test the content of the YAML file changes but the remarks on
the compiler output don't.)

This implements the green GVN message with a bug fix at line
http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L446

The fix is that now we properly include the constant value in the
message: "load of type i32 eliminated in favor of 7"

Differential Revision: https://reviews.llvm.org/D26489

llvm-svn: 288380
2016-12-01 17:34:44 +00:00
Adam Nemet 4d2a6e5998 [GVN] Basic optimization remark support
[recommitting after the fix in r288307]

Follow-on patches will add more interesting cases.

The goal of this patch-set is to get the GVN messages printed in
opt-viewer from Dhrystone as was presented in my Dev Meeting talk.  This
is the optimization view for the function (the last remark in the
function has a bug which is fixed in this series):
http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L430

Differential Revision: https://reviews.llvm.org/D26488

llvm-svn: 288370
2016-12-01 16:40:32 +00:00
Adam Nemet feafcd9688 [GVN] When merging blocks update LoopInfo if it's available
If LoopInfo is available during GVN, BasicAA will use it.  However
MergeBlockIntoPredecessor does not update LI as it merges blocks.

This didn't use to cause problems because LI was freed before
GVN/BasicAA.  Now with OptimizationRemarkEmitter, the lifetime of LI is
extended so LI needs to be kept up-to-date during GVN.

Differential Revision: https://reviews.llvm.org/D27288

llvm-svn: 288307
2016-12-01 03:56:43 +00:00
Adam Nemet d4717bd8f3 Revert "[GVN] Basic optimization remark support"
This reverts commit r288210.

The failure on the stage2 LTO build is back.

llvm-svn: 288226
2016-11-30 01:14:35 +00:00
Adam Nemet d5747be721 [GVN] Basic optimization remark support
[recommiting patches one-by-one to see which breaks the stage2 LTO bot]

Follow-on patches will add more interesting cases.

The goal of this patch-set is to get the GVN messages printed in
opt-viewer from Dhrystone as was presented in my Dev Meeting talk.  This
is the optimization view for the function (the last remark in the
function has a bug which is fixed in this series):
http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L430

Differential Revision: https://reviews.llvm.org/D26488

llvm-svn: 288210
2016-11-29 22:37:01 +00:00
Adam Nemet c2ed4b35b4 Revert "[GVN] Basic optimization remark support"
This reverts commit r288046.

Trying to see if the revert fixes a compiler crash during a stage2 LTO
build with a GVN backtrace.

llvm-svn: 288179
2016-11-29 18:32:04 +00:00
Adam Nemet 91d4d93f94 Revert "[GVN, OptDiag] Include the value that is forwarded in load elimination"
This reverts commit r288047.

Trying to see if the revert fixes a compiler crash during a stage2 LTO
build with a GVN backtrace.

llvm-svn: 288178
2016-11-29 18:32:00 +00:00
Adam Nemet a4d3d44ec2 Revert "[GVN, OptDiag] Print the interesting instructions involved in missed load-elimination"
This reverts commit r288090.

Trying to see if the revert fixes a compiler crash during a stage2 LTO
build with a GVN backtrace.

llvm-svn: 288177
2016-11-29 18:31:53 +00:00
Adam Nemet b9e53c9056 [GVN, OptDiag] Print the interesting instructions involved in missed load-elimination
This includes the intervening store and the load/store that we're trying
to forward from in the optimization remark for the missed load
elimination.

This is hooked up under a new mode in ORE that allows for compile-time
budget for a bit more analysis to print more insightful messages.  This
mode is currently enabled for -fsave-optimization-record (-Rpass is
trickier since it is controlled in the front-end).

With this we can now print the red remark in http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L446

Differential Revision: https://reviews.llvm.org/D26490

llvm-svn: 288090
2016-11-29 00:09:22 +00:00
Adam Nemet a415a9bde6 [GVN, OptDiag] Include the value that is forwarded in load elimination
This requires some changes to the opt-diag API.  Hal and I have
discussed this at the Dev Meeting and came up with a streaming delimiter
(setExtraArgs) to solve this.

Arguments after this delimiter are only included in the optimization
records and not in the remarks printed in the compiler output.  (Note,
how in the test the content of the YAML file changes but the remarks on
the compiler output don't.)

This implements the green GVN message with a bug fix at line
http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L446

The fix is that now we properly include the constant value in the
message: "load of type i32 eliminated in favor of 7"

Differential Revision: https://reviews.llvm.org/D26489

llvm-svn: 288047
2016-11-28 17:45:34 +00:00
Adam Nemet e5112b14b9 [GVN] Basic optimization remark support
Follow-on patches will add more interesting cases.

The goal of this patch-set is to get the GVN messages printed in
opt-viewer from Dhrystone as was presented in my Dev Meeting talk.  This
is the optimization view for the function (the last remark in the
function has a bug which is fixed in this series):
http://lab.llvm.org:8080/artifacts/opt-view_test-suite/build/SingleSource/Benchmarks/Dhrystone/CMakeFiles/dry.dir/html/_org_test-suite_SingleSource_Benchmarks_Dhrystone_dry.c.html#L430

Differential Revision: https://reviews.llvm.org/D26488

llvm-svn: 288046
2016-11-28 17:45:28 +00:00
Vyacheslav Klochkov 9a630dfb57 Fixed the lost FastMathFlags in GVN(Global Value Numbering).
Reviewer: Hal Finkel.
Differential Revision: https://reviews.llvm.org/D26952

llvm-svn: 287700
2016-11-22 20:52:53 +00:00
Davide Italiano d15477b09d Revert "[GVN/PRE] Hoist global values outside of loops."
There's no agreement about this patch. I personally find the
PRE machinery of the current GVN hard enough to reason about
that I'm not sure I'll try to land this again, instead of working
on the rewrite).

llvm-svn: 284796
2016-10-21 01:37:02 +00:00
Benjamin Kramer 26b2593b24 [GVN] Use defaulted members. No functional change.
llvm-svn: 284726
2016-10-20 13:09:12 +00:00
Davide Italiano 36efa68463 [GVN] Consistently use division instead of shift. NFCI.
This is in line with other places of GVN (e.g. load coercion
logic).

llvm-svn: 284535
2016-10-18 21:02:27 +00:00
Davide Italiano 64cd985e44 [GVN] Remove dead code. NFC.
llvm-svn: 284534
2016-10-18 21:00:26 +00:00
Davide Italiano 590ad7037e [GVN/PRE] Hoist global values outside of loops.
In theory this could be generalized to move anything where
we prove the operands are available, but that would require
rewriting PRE. As NewGVN will hopefully come soon, and we're
trying to rewrite PRE in terms of NewGVN+MemorySSA, it's probably
not worth spending too much time on it. Fix provided by
Daniel Berlin!

llvm-svn: 284311
2016-10-15 21:35:23 +00:00
Dehao Chen db3810771e revert r280427
Refactor replaceDominatedUsesWith to have a flag to control whether to replace uses in BB itself.

Summary: This is in preparation for LoopSink pass which calls replaceDominatedUsesWith to update after sinking.
llvm-svn: 280949
2016-09-08 15:25:12 +00:00
Dehao Chen ddd0c125e3 Refactor replaceDominatedUsesWith to have a flag to control whether to replace uses in BB itself.
Summary: This is in preparation for LoopSink pass which calls replaceDominatedUsesWith to update after sinking.

Reviewers: chandlerc, davidxl, danielcdh

Subscribers: llvm-commits

Differential Revision: https://reviews.llvm.org/D24170

llvm-svn: 280427
2016-09-01 23:26:48 +00:00
Sean Silva 36e0d01e13 Consistently use FunctionAnalysisManager
Besides a general consistently benefit, the extra layer of indirection
allows the mechanical part of https://reviews.llvm.org/D23256 that
requires touching every transformation and analysis to be factored out
cleanly.

Thanks to David for the suggestion.

llvm-svn: 278077
2016-08-09 00:28:15 +00:00
David Majnemer d536f2328e [ConstnatFolding] Teach the folder how to fold ConstantVector
A ConstantVector can have ConstantExpr operands and vice versa.
However, the folder had no ability to fold ConstantVectors which, in
some cases, was an optimization barrier.

Instead, rephrase the folder in terms of Constants instead of
ConstantExprs and teach callers how to deal with failure.

llvm-svn: 277099
2016-07-29 03:27:26 +00:00
Ekaterina Romanova 7aea5906c0 [GVN] Fold constant expression in GVN.
Fix for PR 28418.

opt never finishes compiling a test when -gvn option is passed.
The problem is caused by the fact that GVN fails to fold a constant expression.

Differential Revision: https://reviews.llvm.org/D22185

llvm-svn: 275483
2016-07-14 22:02:25 +00:00
David Majnemer b8da3a2bb2 Reinstate r273711
r273711 was reverted by r273743.  The inliner needs to know about any
call sites in the inlined function.  These were obscured if we replaced
a call to undef with an undef but kept the call around.

This fixes PR28298.

llvm-svn: 273753
2016-06-25 00:04:10 +00:00
Nico Weber ae2ef4ccd4 Revert r273711, it caused PR28298.
llvm-svn: 273743
2016-06-24 22:52:39 +00:00
David Majnemer 3b3e954ea2 SimplifyInstruction does not imply DCE
We cannot remove an instruction with no uses just because
SimplifyInstruction succeeds.  It may have side effects.

llvm-svn: 273711
2016-06-24 19:34:46 +00:00
Benjamin Kramer 1afc1de406 Apply another batch of fixes from clang-tidy's performance-unnecessary-value-param.
Contains some manual fixes. No functionality change intended.

llvm-svn: 273047
2016-06-17 20:41:14 +00:00
Davide Italiano fea0a4c5b2 [PM] Preserve the correct set of analyses for GVN.
llvm-svn: 271934
2016-06-06 20:01:50 +00:00
Davide Italiano 82c447823b [GVN] Switch dump() definition over to LLVM_DUMP_METHOD.
llvm-svn: 271932
2016-06-06 19:24:27 +00:00
Sanjoy Das 6fff9dc932 [GVN] Preserve !range metadata when PRE'ing loads
Reviewers: dberlin, reames, george.burgess.iv

Subscribers: mcrosier, llvm-commits

Differential Revision: http://reviews.llvm.org/D20743

llvm-svn: 271034
2016-05-27 19:03:10 +00:00
Philip Reames 4a3c3b66d7 [GVN] PRE of unordered loads
Again, fairly simple.  Only change is ensuring that we actually copy the property of the load correctly.  The aliasing legality constraints were already handled by the FRE patches.  There's nothing special about unorder atomics from the perspective of the PRE algorithm itself.

llvm-svn: 268804
2016-05-06 21:43:51 +00:00
Philip Reames 1fdce639d2 [GVN] Handle unordered atomics in cross block FRE
You'll note there are essentially no code changes here.  Cross block FRE heavily reuses code from the block local FRE.  All of the tricky parts were done as part of the previous patch and the refactoring that removed the original code duplication.  

llvm-svn: 268775
2016-05-06 18:46:45 +00:00
Philip Reames ae8997f496 [GVN] Do local FRE for unordered atomic loads
This patch is the first in a small series teaching GVN to optimize unordered loads aggressively. This change just handles block local FRE because that's the simplest thing which lets me test MDA, and the AvailableValue pieces. Somewhat suprisingly, MDA appears fine and only a couple of small changes are needed in GVN.

Once this is in, I'll tackle non-local FRE and PRE. The former looks like a natural extension of this, the later will require a couple of minor changes.

Differential Revision: http://reviews.llvm.org/D19440

llvm-svn: 268770
2016-05-06 18:17:13 +00:00
Chad Rosier 712b7d7630 [GVN] Minor code cleanup. NFC.
Differential Revision: http://reviews.llvm.org/D18828
Patch by Aditya Kumar!

llvm-svn: 267898
2016-04-28 16:00:15 +00:00
Andrew Kaylor aa641a5171 Re-commit optimization bisect support (r267022) without new pass manager support.
The original commit was reverted because of a buildbot problem with LazyCallGraph::SCC handling (not related to the OptBisect handling).

Differential Revision: http://reviews.llvm.org/D19172

llvm-svn: 267231
2016-04-22 22:06:11 +00:00
Vedant Kumar 6013f45f92 Revert "Initial implementation of optimization bisect support."
This reverts commit r267022, due to an ASan failure:

  http://lab.llvm.org:8080/green/job/clang-stage2-cmake-RgSan_check/1549

llvm-svn: 267115
2016-04-22 06:51:37 +00:00
David Majnemer d0ce8f1485 [GVN] Respect fast-math-flags on fcmps
We assumed that flags were only present on binary operators.  This is
not true, they may also be present on calls and fcmps.

llvm-svn: 267113
2016-04-22 06:37:51 +00:00
Andrew Kaylor f0f279291c Initial implementation of optimization bisect support.
This patch implements a optimization bisect feature, which will allow optimizations to be selectively disabled at compile time in order to track down test failures that are caused by incorrect optimizations.

The bisection is enabled using a new command line option (-opt-bisect-limit).  Individual passes that may be skipped call the OptBisect object (via an LLVMContext) to see if they should be skipped based on the bisect limit.  A finer level of control (disabling individual transformations) can be managed through an addition OptBisect method, but this is not yet used.

The skip checking in this implementation is based on (and replaces) the skipOptnoneFunction check.  Where that check was being called, a new call has been inserted in its place which checks the bisect limit and the optnone attribute.  A new function call has been added for module and SCC passes that behaves in a similar way.

Differential Revision: http://reviews.llvm.org/D19172

llvm-svn: 267022
2016-04-21 17:58:54 +00:00
Mehdi Amini b550cb1750 [NFC] Header cleanup
Removed some unused headers, replaced some headers with forward class declarations.

Found using simple scripts like this one:
clear && ack --cpp -l '#include "llvm/ADT/IndexedMap.h"' | xargs grep -L 'IndexedMap[<]' | xargs grep -n --color=auto 'IndexedMap'

Patch by Eugene Kosov <claprix@yandex.ru>

Differential Revision: http://reviews.llvm.org/D19219

From: Mehdi Amini <mehdi.amini@apple.com>
llvm-svn: 266595
2016-04-18 09:17:29 +00:00
Ulrich Weigand fc23907673 [GVN] Address review comments for D18662
As suggested by Chandler in his review comments for D18662, this
follow-on patch renames some variables in GetLoadValueForLoad and
CoerceAvailableValueToLoadType to hopefully make it more obvious
which variables hold value sizes and which hold load/store sizes.

No functional change intended.

llvm-svn: 265687
2016-04-07 15:55:11 +00:00
Ulrich Weigand 6e6966460a [GVN] Fix handling of sub-byte types in big-endian mode
When GVN wants to re-interpret an already available value in a smaller
type, it needs to right-shift the value on big-endian systems to ensure
the correct bytes are accessed.  The shift value is the difference of
the sizes of the two types.

This is correct as long as both types occupy multiples of full bytes.
However, when one of them is a sub-byte type like i1, this no longer
holds true: we still need to shift, but only to access the correct
*byte*.  Accessing bits within the byte requires no shift in either
endianness; e.g. an i1 resides in the least-significant bit of its
containing byte on both big- and little-endian systems.

Therefore, the appropriate shift value to be used is the difference of
the *storage* sizes of the two types.  This is already handled correctly
in one place where such a shift takes place (GetStoreValueForLoad), but
is incorrect in two other places: GetLoadValueForLoad and
CoerceAvailableValueToLoadType.

This patch changes both places to use the storage size as well.

Differential Revision: http://reviews.llvm.org/D18662

llvm-svn: 265684
2016-04-07 15:45:02 +00:00
Chandler Carruth ace8c8f765 [PM] Sink the "Expression" type for GVN into the class as a private
member type.

Because of how this type is used by the ValueTable, it cannot actually
have hidden visibility. GCC actually nicely warns about this but Clang
just silently ... I don't even know. =/ We should do a better job either
way though.

This should resolve a bunch of the GCC warnings about visibility that
the port of GVN triggered and make the visibility story a bit more
correct.

llvm-svn: 263250
2016-03-11 16:25:19 +00:00
Chandler Carruth 3bc9c7fb45 [PM] The order of evaluation of these analyses is actually significant,
much to my horror, so use variables to fix it in place.

This terrifies me. Both basic-aa and memdep will provide more precise
information when the domtree and/or the loop info is available. Because
of this, if your pass (like GVN) requires domtree, and then queries
memdep or basic-aa, it will get more precise results. If it does this in
the other order, it gets less precise results.

All of the ideas I have for fixing this are, essentially, terrible. Here
I've just caused us to stop having unspecified behavior as different
implementations evaluate the order of these arguments differently. I'm
actually rather glad that they do, or the fragility of memdep and
basic-aa would have gone on unnoticed. I've left comments so we don't
immediately break this again. This should fix bots whose host compilers
evaluate the order of arguments differently from Clang.

llvm-svn: 263231
2016-03-11 13:26:47 +00:00
Chandler Carruth b47f8010a9 [PM] Make the AnalysisManager parameter to run methods a reference.
This was originally a pointer to support pass managers which didn't use
AnalysisManagers. However, that doesn't realistically come up much and
the complexity of supporting it doesn't really make sense.

In fact, *many* parts of the pass manager were just assuming the pointer
was never null already. This at least makes it much more explicit and
clear.

llvm-svn: 263219
2016-03-11 11:05:24 +00:00
Chandler Carruth 89c45a162f [PM] Port GVN to the new pass manager, wire it up, and teach a couple of
tests to run GVN in both modes.

This is mostly the boring refactoring just like SROA and other complex
transformation passes. There is some trickiness in that GVN's
ValueNumber class requires hand holding to get to compile cleanly. I'm
open to suggestions about a better pattern there, but I tried several
before settling on this. I was trying to balance my desire to sink as
much implementation detail into the source file as possible without
introducing overly many layers of abstraction.

Much like with SROA, the design of this system is made somewhat more
cumbersome by the need to support both pass managers without duplicating
the significant state and logic of the pass. The same compromise is
struck here.

I've also left a FIXME in a doxygen comment as the GVN pass seems to
have pretty woeful documentation within it. I'd like to submit this with
the FIXME and let those more deeply familiar backfill the information
here now that we have a nice place in an interface to put that kind of
documentaiton.

Differential Revision: http://reviews.llvm.org/D18019

llvm-svn: 263208
2016-03-11 08:50:55 +00:00
Chandler Carruth 7776377e62 [gvn] Fix more indenting and formatting in regions of code that will
need to be changed for porting to the new pass manager.

Also sink the comment on the ValueTable class back to that class instead
of it dangling on an anonymous namespace.

No functionality changed.

llvm-svn: 263084
2016-03-10 00:58:20 +00:00
Chandler Carruth 169c84f1cc [gvn] Reformat a chunk of the GVN code that is strangely indented prior
to restructuring it for porting to the new pass manager.

No functionality changed.

llvm-svn: 263083
2016-03-10 00:58:18 +00:00
Chandler Carruth 61440d225b [PM] Port memdep to the new pass manager.
This is a fairly straightforward port to the new pass manager with one
exception. It removes a very questionable use of releaseMemory() in
the old pass to invalidate its caches between runs on a function.
I don't think this is really guaranteed to be safe. I've just used the
more direct port to the new PM to address this by nuking the results
object each time the pass runs. While this could cause some minor malloc
traffic increase, I don't expect the compile time performance hit to be
noticable, and it makes the correctness and other aspects of the pass
much easier to reason about. In some cases, it may make things faster by
making the sets and maps smaller with better locality. Indeed, the
measurements collected by Bruno (thanks!!!) show mostly compile time
improvements.

There is sadly very limited testing at this point as there are only two
tests of memdep, and both rely on GVN. I'll be porting GVN next and that
will exercise this heavily though.

Differential Revision: http://reviews.llvm.org/D17962

llvm-svn: 263082
2016-03-10 00:55:30 +00:00
David Majnemer 01674939b2 Remove unused variable
llvm-svn: 260722
2016-02-12 20:33:51 +00:00
Philip Reames 96fccc2d09 [GVN] Common code for local and non-local load availability [NFCI]
The attached patch removes all of the block local code for performing X-load forwarding by reusing the code used in the non-local case.

The motivation here is to remove duplication and in the process increase our test coverage of some fairly tricky code. I have some upcoming changes I'll be proposing in this area and wanted to have the code cleaned up a bit first.

Note: The review for this mostly happened in email which didn't make it to phabricator on the 258882 commit thread.

Differential Revision: http://reviews.llvm.org/D16608

llvm-svn: 260711
2016-02-12 19:24:57 +00:00
Philip Reames 10e678d25a [GVN] Add clarifying assert [NFCI]
Just adding an assert which makes invariants between AnalyzeLoadsFromClobberingLoads and GetLoadValueForLoad slightly more clear.

llvm-svn: 259145
2016-01-29 02:23:10 +00:00
Philip Reames 8e785a4ec0 [GVN] Split AvailableValueInBlock into two parts [NFC]
AvailableValue is the part that represents the potential rematerialization.  AvailableValueInBlock is simply a pair of an AvailableValue and a BB which we might materialize it in.

This is motivated by http://reviews.llvm.org/D16608.  The intent is that we'll have a single function which handles the local case which both local and non-local will use to identify available values.  Once that's done, the local case can rematerialize at the use site and the non-local case can do the SSA construction as it does currently.

llvm-svn: 258882
2016-01-26 23:43:16 +00:00
Philip Reames 273dcb0d82 [GVN] Rearrange code to make local vs non-local cases more obvious [NFCI]
llvm-svn: 258747
2016-01-25 23:37:53 +00:00
Philip Reames 10a50b188e [GVN] Factor out common code [NFCI]
We had the same code duplicated for each type of Def.  We also have the entire block duplicated between the local and non-local case, but let's start with local cleanup.

llvm-svn: 258740
2016-01-25 23:19:12 +00:00
Eduard Burtescu 1423921a24 [opaque pointer types] [NFC] Add an explicit type argument to ConstantFoldLoadFromConstPtr.
Reviewers: mjacob, dblaikie

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D16418

llvm-svn: 258472
2016-01-22 01:17:26 +00:00
David L Kreitzer 4d7257dfa1 Fix for two constant propagation problems in GVN with the assume intrinsic
instruction.

Patch by Yuanrui Zhang.

Differential Revision: http://reviews.llvm.org/D16100

llvm-svn: 258435
2016-01-21 21:32:35 +00:00
Craig Topper e471cf32a0 Use range-based for loops. NFC
llvm-svn: 254222
2015-11-28 08:23:04 +00:00
Andrew Kaylor 0615a0e65d [WinEH] Fix a case where GVN could incorrectly PRE a load into an EH pad.
Differential Revision: http://reviews.llvm.org/D14842

llvm-svn: 253908
2015-11-23 19:51:41 +00:00
Weiming Zhao b69babd01e Fix bug 25440: GVN assertion after coercing loads
Optimizations like LoadPRE in GVN will insert new instructions.
If the insertion point is in a already processed BB, they should
get a value number explicitly. If the insertion point is after
current instruction, then just leave it. However, current GVN framework
has no support for it.
In this patch, we just bail out if a VN can't be found.

Dfferential Revision: http://reviews.llvm.org/D14670

A    test/Transforms/GVN/pr25440.ll
M    lib/Transforms/Scalar/GVN.cpp

llvm-svn: 253536
2015-11-19 02:45:18 +00:00
Mehdi Amini adb4057a15 Fix returned value for GVN: could return "false" even after modifying the IR
This bug would manifest in some very specific cases where all the following
conditions are fullfilled:

- GVN didn't remove block
- The regular GVN iteration didn't change the IR
- PRE is enabled
- PRE will not split critical edge
- The last instruction processed by PRE didn't change the IR

Because the CallGraph PassManager relies on this returned value to decide
if it needs to recompute a node after the execution of Function passes,
not returning the right value can lead to unexpected results.

Fix for: https://llvm.org/bugs/show_bug.cgi?id=24715

Patch by Wenxiang Qiu <vincentqiuuu@gmail.com>

From: Mehdi Amini <mehdi.amini@apple.com>
llvm-svn: 253518
2015-11-18 22:49:49 +00:00
Mike Aizatsky c7810baaa6 Disable gvn non-local speculative loads under asan.
Summary: Fix for https://llvm.org/bugs/show_bug.cgi?id=25550

Differential Revision: http://reviews.llvm.org/D14763

llvm-svn: 253498
2015-11-18 20:43:00 +00:00
Philip Reames b6e8fe3dac [PRE] Preserve !invariant.load metadata
Spoted via inspection.  Test case included.

llvm-svn: 253275
2015-11-17 00:15:09 +00:00
Tobias Grosser 8241795d20 Revert "Fix bug 25440: GVN assertion after coercing loads"
This reverts 252919 which broke LNT: MultiSource/Applications/SPASS

llvm-svn: 252936
2015-11-12 20:04:21 +00:00
Weiming Zhao eed0145dd2 Fix bug 25440: GVN assertion after coercing loads
Summary:
when coercing loads, it inserts some instructions, which have no GV assigned.

https://llvm.org/bugs/show_bug.cgi?id=25440


Reviewers: hfinkel, dberlin

Subscribers: dberlin, llvm-commits

Differential Revision: http://reviews.llvm.org/D14479

llvm-svn: 252919
2015-11-12 18:19:59 +00:00
Tim Northover d4f55c0b1b GVN: don't try to replace instruction with itself.
After some look-ahead PRE was added for GEPs, an instruction could end
up in the table of candidates before it was actually inspected. When
this happened the pass might decide it was the best candidate to
replace itself. This didn't go well.

Should fix PR25291

llvm-svn: 251145
2015-10-23 20:30:02 +00:00
Duncan P. N. Exon Smith 3a9c9e3dcd Scalar: Remove some implicit ilist iterator conversions, NFC
Remove some of the implicit ilist iterator conversions in
LLVMScalarOpts.  More to go.

llvm-svn: 250197
2015-10-13 18:26:00 +00:00
Piotr Padlewski dc9b2cfc50 inariant.group handling in GVN
The most important part required to make clang
devirtualization works ( ͡°͜ʖ ͡°).
The code is able to find non local dependencies, but unfortunatelly
because the caller can only handle local dependencies, I had to add
some restrictions to look for dependencies only in the same BB.

http://reviews.llvm.org/D12992

llvm-svn: 249196
2015-10-02 22:12:22 +00:00
Piotr Padlewski a4d43337d4 gvn small fix
http://reviews.llvm.org/D12928

llvm-svn: 247935
2015-09-17 20:34:22 +00:00
Chandler Carruth 7b560d40bd [PM/AA] Rebuild LLVM's alias analysis infrastructure in a way compatible
with the new pass manager, and no longer relying on analysis groups.

This builds essentially a ground-up new AA infrastructure stack for
LLVM. The core ideas are the same that are used throughout the new pass
manager: type erased polymorphism and direct composition. The design is
as follows:

- FunctionAAResults is a type-erasing alias analysis results aggregation
  interface to walk a single query across a range of results from
  different alias analyses. Currently this is function-specific as we
  always assume that aliasing queries are *within* a function.

- AAResultBase is a CRTP utility providing stub implementations of
  various parts of the alias analysis result concept, notably in several
  cases in terms of other more general parts of the interface. This can
  be used to implement only a narrow part of the interface rather than
  the entire interface. This isn't really ideal, this logic should be
  hoisted into FunctionAAResults as currently it will cause
  a significant amount of redundant work, but it faithfully models the
  behavior of the prior infrastructure.

- All the alias analysis passes are ported to be wrapper passes for the
  legacy PM and new-style analysis passes for the new PM with a shared
  result object. In some cases (most notably CFL), this is an extremely
  naive approach that we should revisit when we can specialize for the
  new pass manager.

- BasicAA has been restructured to reflect that it is much more
  fundamentally a function analysis because it uses dominator trees and
  loop info that need to be constructed for each function.

All of the references to getting alias analysis results have been
updated to use the new aggregation interface. All the preservation and
other pass management code has been updated accordingly.

The way the FunctionAAResultsWrapperPass works is to detect the
available alias analyses when run, and add them to the results object.
This means that we should be able to continue to respect when various
passes are added to the pipeline, for example adding CFL or adding TBAA
passes should just cause their results to be available and to get folded
into this. The exception to this rule is BasicAA which really needs to
be a function pass due to using dominator trees and loop info. As
a consequence, the FunctionAAResultsWrapperPass directly depends on
BasicAA and always includes it in the aggregation.

This has significant implications for preserving analyses. Generally,
most passes shouldn't bother preserving FunctionAAResultsWrapperPass
because rebuilding the results just updates the set of known AA passes.
The exception to this rule are LoopPass instances which need to preserve
all the function analyses that the loop pass manager will end up
needing. This means preserving both BasicAAWrapperPass and the
aggregating FunctionAAResultsWrapperPass.

Now, when preserving an alias analysis, you do so by directly preserving
that analysis. This is only necessary for non-immutable-pass-provided
alias analyses though, and there are only three of interest: BasicAA,
GlobalsAA (formerly GlobalsModRef), and SCEVAA. Usually BasicAA is
preserved when needed because it (like DominatorTree and LoopInfo) is
marked as a CFG-only pass. I've expanded GlobalsAA into the preserved
set everywhere we previously were preserving all of AliasAnalysis, and
I've added SCEVAA in the intersection of that with where we preserve
SCEV itself.

One significant challenge to all of this is that the CGSCC passes were
actually using the alias analysis implementations by taking advantage of
a pretty amazing set of loop holes in the old pass manager's analysis
management code which allowed analysis groups to slide through in many
cases. Moving away from analysis groups makes this problem much more
obvious. To fix it, I've leveraged the flexibility the design of the new
PM components provides to just directly construct the relevant alias
analyses for the relevant functions in the IPO passes that need them.
This is a bit hacky, but should go away with the new pass manager, and
is already in many ways cleaner than the prior state.

Another significant challenge is that various facilities of the old
alias analysis infrastructure just don't fit any more. The most
significant of these is the alias analysis 'counter' pass. That pass
relied on the ability to snoop on AA queries at different points in the
analysis group chain. Instead, I'm planning to build printing
functionality directly into the aggregation layer. I've not included
that in this patch merely to keep it smaller.

Note that all of this needs a nearly complete rewrite of the AA
documentation. I'm planning to do that, but I'd like to make sure the
new design settles, and to flesh out a bit more of what it looks like in
the new pass manager first.

Differential Revision: http://reviews.llvm.org/D12080

llvm-svn: 247167
2015-09-09 17:55:00 +00:00