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Commit Graph

19148 Commits

Author SHA1 Message Date
Alexander Kornienko
d817824d74 Recover gracefully when deserializing invalid YAML input.
Fixes http://llvm.org/PR16221, http://llvm.org/PR15927
Phabricator: http://llvm-reviews.chandlerc.com/D1236

Patch by Andrew Tulloch!

llvm-svn: 195016
2013-11-18 15:50:04 +00:00
Alexey Samsonov
22aed953fb Fix forgotten member initialization detected by MSan bootstrap bot
llvm-svn: 195003
2013-11-18 11:06:01 +00:00
Alexey Samsonov
3bfef6bdb6 Revert r194865 and r194874.
This change is incorrect. If you delete virtual destructor of both a base class
and a subclass, then the following code:
  Base *foo = new Child();
  delete foo;
will not cause the destructor for members of Child class. As a result, I observe
plently of memory leaks. Notable examples I investigated are:
ObjectBuffer and ObjectBufferStream, AttributeImpl and StringSAttributeImpl.

llvm-svn: 194997
2013-11-18 09:31:53 +00:00
Hao Liu
fcc294f3dd Implement the newly added ACLE functions for ld1/st1 with 2/3/4 vectors.
The functions are like: vst1_s8_x2 ...

llvm-svn: 194990
2013-11-18 06:31:53 +00:00
Matt Arsenault
763728c818 Fix spacing, forward declare order.
llvm-svn: 194985
2013-11-18 02:51:33 +00:00
Manman Ren
275e338e51 Debug Info: fix typo in function name.
llvm-svn: 194975
2013-11-17 19:35:03 +00:00
Manman Ren
9edd2cf001 Debug Info Verifier: enable public functions of Finder to update the type map.
We used to depend on running processModule before the other public functions
such as processDeclare, processValue and processLocation. We are now relaxing
the constraint by adding a module argument to the three functions and
letting the three functions to initialize the type map. This will be used in
a follow-on patch that collects nodes reachable from a Function.

llvm-svn: 194973
2013-11-17 18:42:37 +00:00
Hal Finkel
2557302085 Add a loop rerolling flag to the PassManagerBuilder
This adds a boolean member variable to the PassManagerBuilder to control loop
rerolling (just like we have for unrolling and the various vectorization
options). This is necessary for control by the frontend. Loop rerolling remains
disabled by default at all optimization levels.

llvm-svn: 194966
2013-11-17 16:02:50 +00:00
Yaron Keren
0d735d41b6 DebugLoc defines LineCol as 32 bit in comment but unsigned in code.
This patch modifies LineCol to be a uint32_t.

See http://llvm.org/bugs/show_bug.cgi?id=17957

llvm-svn: 194957
2013-11-17 09:47:39 +00:00
Michael Gottesman
e011e8ef82 [block-freq] Add BlockFrequency::scale that returns a remainder from the division and make the private scale in BlockFrequency more performant.
This change is the first in a series of changes improving LLVM's Block
Frequency propogation implementation to not lose probability mass in
branchy code when propogating block frequency information from a basic
block to its successors. This patch is a simple infrastructure
improvement that does not actually modify the block frequency
algorithm. The specific changes are:

1. Changes the division algorithm used when scaling block frequencies by
branch probabilities to a short division algorithm. This gives us the
remainder for free as well as provides a nice speed boost. When I
benched the old routine and the new routine on a Sandy Bridge iMac with
disabled turbo mode performing 8192 iterations on an array of length
32768, I saw ~600% increase in speed in mean/median performance.

2. Exposes a scale method that returns a remainder. This is important so
we can ensure that when we scale a block frequency by some branch
probability BP = N/D, the remainder from the division by D can be
retrieved and propagated to other children to ensure no probability mass
is lost (more to come on this).

llvm-svn: 194950
2013-11-17 03:25:24 +00:00
Chandler Carruth
07fce80a5a [PM] Completely remove support for explicit 'require' methods on the
AnalysisManager. All this method did was assert something and we have
a perfectly good way to trigger that assert from the query path.

llvm-svn: 194947
2013-11-17 03:18:05 +00:00
Andrew Trick
bd486c29f4 Added a size field to the stack map record to handle subregister spills.
Implementing this on bigendian platforms could get strange. I added a
target hook, getStackSlotRange, per Jakob's recommendation to make
this as explicit as possible.

llvm-svn: 194942
2013-11-17 01:36:23 +00:00
Hal Finkel
cc70e01f05 Add a loop rerolling pass
This adds a loop rerolling pass: the opposite of (partial) loop unrolling. The
transformation aims to take loops like this:

for (int i = 0; i < 3200; i += 5) {
  a[i]     += alpha * b[i];
  a[i + 1] += alpha * b[i + 1];
  a[i + 2] += alpha * b[i + 2];
  a[i + 3] += alpha * b[i + 3];
  a[i + 4] += alpha * b[i + 4];
}

and turn them into this:

for (int i = 0; i < 3200; ++i) {
  a[i] += alpha * b[i];
}

and loops like this:

for (int i = 0; i < 500; ++i) {
  x[3*i] = foo(0);
  x[3*i+1] = foo(0);
  x[3*i+2] = foo(0);
}

and turn them into this:

for (int i = 0; i < 1500; ++i) {
  x[i] = foo(0);
}

There are two motivations for this transformation:

  1. Code-size reduction (especially relevant, obviously, when compiling for
code size).

  2. Providing greater choice to the loop vectorizer (and generic unroller) to
choose the unrolling factor (and a better ability to vectorize). The loop
vectorizer can take vector lengths and register pressure into account when
choosing an unrolling factor, for example, and a pre-unrolled loop limits that
choice. This is especially problematic if the manual unrolling was optimized
for a machine different from the current target.

The current implementation is limited to single basic-block loops only. The
rerolling recognition should work regardless of how the loop iterations are
intermixed within the loop body (subject to dependency and side-effect
constraints), but the significant restriction is that the order of the
instructions in each iteration must be identical. This seems sufficient to
capture all current use cases.

This pass is not currently enabled by default at any optimization level.

llvm-svn: 194939
2013-11-16 23:59:05 +00:00
Benjamin Kramer
891fca3708 ScalarEvolution: Warn if the result of setFlags/clearFlags is unused.
This was a source of bugs in the past.

llvm-svn: 194929
2013-11-16 16:25:47 +00:00
Benjamin Kramer
56648addca Annotate APInt methods where it's not clear whether they are in place with warn_unused_result.
Fix ScalarEvolution bugs uncovered by this.

llvm-svn: 194928
2013-11-16 16:25:41 +00:00
Duncan P. N. Exon Smith
c331c75e8e Fix filename in header comment
llvm-svn: 194924
2013-11-16 15:40:54 +00:00
Jim Grosbach
56d800bb1e X86: Encode the 'h' cpu subtype in the MachO header for x86.
llvm-svn: 194906
2013-11-16 00:52:57 +00:00
Ana Pazos
b1568fd504 Implemented aarch64 Neon scalar vmulx_lane intrinsics
Implemented aarch64 Neon scalar vfma_lane intrinsics
Implemented aarch64 Neon scalar vfms_lane intrinsics

Implemented legacy vmul_n_f64, vmul_lane_f64, vmul_laneq_f64
intrinsics (v1f64 parameter type) using Neon scalar instructions.

Implemented legacy vfma_lane_f64, vfms_lane_f64,
vfma_laneq_f64, vfms_laneq_f64 intrinsics (v1f64 parameter type)
using Neon scalar instructions.

llvm-svn: 194888
2013-11-15 23:32:10 +00:00
Juergen Ributzka
ee3af15269 [weak vtables] Remove a bunch of weak vtables
This patch removes most of the trivial cases of weak vtables by pinning them to
a single object file.

Differential Revision: http://llvm-reviews.chandlerc.com/D2068

Reviewed by Andy

llvm-svn: 194865
2013-11-15 22:34:48 +00:00
Chad Rosier
6b1d577e71 [AArch64] Fix the scalar NEON ACLE functions so that they return float/double
rather than the vector equivalent.

llvm-svn: 194853
2013-11-15 21:28:10 +00:00
Rui Ueyama
30dec160ae Path: Recognize COFF import library file magic.
Summary: Make identify_magic to recognize COFF import file.

Reviewers: Bigcheese

CC: llvm-commits

Differential Revision: http://llvm-reviews.chandlerc.com/D2165

llvm-svn: 194852
2013-11-15 21:22:02 +00:00
Rui Ueyama
061635e520 Readobj: If NumbersOfSections is 0xffff, it's an COFF import library.
0xffff does not mean that there are 65535 sections in a COFF file but
indicates that it's a COFF import library. This patch fixes SEGV error
when an import library file is passed to llvm-readobj.

llvm-svn: 194844
2013-11-15 20:23:25 +00:00
Bob Wilson
d433cf7463 Avoid illegal integer promotion in fastisel
Stop folding constant adds into GEP when the type size doesn't match.
Otherwise, the adds' operands are effectively being promoted, changing the
conditions of an overflow.  Results are different when:

    sext(a) + sext(b) != sext(a + b)

Problem originally found on x86-64, but also fixed issues with ARM and PPC,
which used similar code.

<rdar://problem/15292280>

Patch by Duncan Exon Smith!

llvm-svn: 194840
2013-11-15 19:09:27 +00:00
Cameron McInally
cae8bdeb82 Add AVX512 unmasked FMA intrinsics and support.
llvm-svn: 194824
2013-11-15 17:01:14 +00:00
Daniel Sanders
0ebbe1d56c Fix illegal DAG produced by SelectionDAG::getConstant() for v2i64 type
Summary:
When getConstant() is called for an expanded vector type, it is split into
multiple scalar constants which are then combined using appropriate build_vector
and bitcast operations.

In addition to the usual big/little endian differences, the case where the
element-order of the vector does not have the same endianness as the elements
themselves is also accounted for.  For example, for v4i32 on big-endian MIPS,
the byte-order of the vector is <3210,7654,BA98,FEDC>. For little-endian, it is
<0123,4567,89AB,CDEF>.
Handling this case turns out to be a nop since getConstant() returns a splatted
vector (so reversing the element order doesn't change the value)

This fixes a number of cases in MIPS MSA where calling getConstant() during
operation legalization introduces illegal types (e.g. to legalize v2i64 UNDEF
into a v2i64 BUILD_VECTOR of illegal i64 zeros). It should also handle bigger
differences between illegal and legal types such as legalizing v2i64 into v8i16.

lowerMSASplatImm() in the MIPS backend no longer needs to avoid calling
getConstant() so this function has been updated in the same patch.

For the sake of transparency, the steps I've taken since the review are:
* Added 'virtual' to isVectorEltOrderLittleEndian() as requested. This revealed
  that the MIPS tests were falsely passing because a polymorphic function was
  not actually polymorphic in the reviewed patch.
* Fixed the tests that were now failing. This involved deleting the code to
  handle the MIPS MSA element-order (which was previously doing an byte-order
  swap instead of an element-order swap). This left
  isVectorEltOrderLittleEndian() unused and it was deleted.
* Fixed build failures caused by rebasing beyond r194467-r194472. These build
  failures involved the bset, bneg, and bclr instructions added in these commits
  using lowerMSASplatImm() in a way that was no longer valid after this patch.
  Some of these were fixed by calling SelectionDAG::getConstant() instead,
  others were fixed by a new function getBuildVectorSplat() that provided the
  removed functionality of lowerMSASplatImm() in a more sensible way.

Reviewers: bkramer

Reviewed By: bkramer

CC: llvm-commits

Differential Revision: http://llvm-reviews.chandlerc.com/D1973

llvm-svn: 194811
2013-11-15 12:56:49 +00:00
Matt Arsenault
084675c776 Add target hook to prevent folding some bitcasted loads.
This is to avoid this transformation in some cases:
fold (conv (load x)) -> (load (conv*)x)

On architectures that don't natively support some vector
loads efficiently casting the load to a smaller vector of
larger types and loading is more efficient.

Patch by Micah Villmow.

llvm-svn: 194783
2013-11-15 04:42:23 +00:00
Peter Zotov
d805fbbee2 [llvm-c] Add missing const qualifiers to LLVMCreateTargetMachine
llvm-svn: 194770
2013-11-15 02:51:12 +00:00
Peter Zotov
9d1fb89548 [llvm-c] Simplify signature of LLVMGetTargetFromName
LLVMGetTargetFromName was not yet present in an LLVM release,
so this does not break compatibility.

llvm-svn: 194769
2013-11-15 02:51:01 +00:00
Matt Arsenault
9921608896 Add addrspacecast instruction.
Patch by Michele Scandale!

llvm-svn: 194760
2013-11-15 01:34:59 +00:00
Rui Ueyama
0a09bce84f Include raw_ostream.h.
Including only Debug.h did not cause a compilation error, but you couldn't
do anything (like writing something with <<) to raw_ostreams returned by
llvm::dbgs() or llvm::errs() without including raw_ostream.h. So including
it from Debug.h should make sense.

Differential Revision: http://llvm-reviews.chandlerc.com/D2183

llvm-svn: 194759
2013-11-15 01:25:34 +00:00
Chandler Carruth
46b00ab145 Fix the header comment of the new pass manager stuff to not claim to be
the legacy stuff. =]

llvm-svn: 194689
2013-11-14 10:55:14 +00:00
Kevin Qin
7409a29609 [AArch64 neon] support poly64 and relevant intrinsic functions.
llvm-svn: 194659
2013-11-14 03:27:58 +00:00
Kevin Qin
47a3b639e3 Implement aarch64 neon instruction class SIMD misc.
llvm-svn: 194656
2013-11-14 02:44:13 +00:00
Nick Kledzik
5701cc8c01 Add dyn_cast<> support to YAML I/O's IO class
llvm-svn: 194655
2013-11-14 02:38:07 +00:00
Michael Gottesman
37877d5d63 Added BlockFrequencyInfo::view for displaying the block frequency propagation graph via graphviz.
This is useful for debugging issues in the BlockFrequency implementation since
one can easily visualize where probability mass and other errors occur in the
propagation.

llvm-svn: 194654
2013-11-14 02:27:46 +00:00
Jiangning Liu
5a9b5605ba Implement AArch64 NEON instruction set AdvSIMD (table).
llvm-svn: 194648
2013-11-14 01:57:32 +00:00
Nick Kledzik
cbecad4abd Add simple support for tags in YAML I/O
llvm-svn: 194644
2013-11-14 00:59:59 +00:00
Yuchen Wu
68c54ebed9 llvm-cov: Slightly improved error checking.
- readInt() should check all 4 bytes can be read, not just 1.
- In the event of false data in the gcno file, it was possible to index
  into a non-existent index of SmallVector, causing assertion error.

llvm-svn: 194639
2013-11-14 00:38:41 +00:00
Yuchen Wu
97ff0f44ba llvm-cov: Removed StringMap holding GCOVLines.
According to the hazy gcov documentation, it appeared to be technically
possible for lines within a block to belong to different source files.
However, upon further investigation, gcov does not actually support
multiple source files for a single block.

This change removes a level of separation between blocks and lines by
replacing the StringMap of GCOVLines with a SmallVector of ints
representing line numbers. This also means that the GCOVLines class is
no longer needed.

This paves the way for supporting the "-a" option, which will output
block information.

llvm-svn: 194637
2013-11-14 00:32:00 +00:00
Yuchen Wu
fe9ba771b2 llvm-cov: Replaced asserts with proper error handling.
Unified the interface for read functions. They all return a boolean
indicating if the read from file succeeded. Functions that previously
returned the read value now store it into a variable that is passed in
by reference instead. Callers will need to check the return value to
detect if an error occurred.

Also added a new test which ensures that no assertions occur when file
contains invalid data. llvm-cov should return with error code 1 upon
failure.

llvm-svn: 194635
2013-11-14 00:07:15 +00:00
Chad Rosier
fae5b22550 [AArch64] Add support for legacy AArch32 NEON scalar shift by immediate
instructions.  This patch does not include the shift right and accumulate
instructions.  A number of non-overloaded intrinsics have been remove in favor
of their overloaded counterparts.

llvm-svn: 194598
2013-11-13 20:05:37 +00:00
Benjamin Kramer
3bed3b6cb7 Make sure LLVMLoadLibraryPermanently gets an extern "C" symbol.
Otherwise it's impossible to use it. Also don't include C++ headers in
a C header.

llvm-svn: 194581
2013-11-13 15:35:13 +00:00
Rafael Espindola
3c0d3eb4a9 Remove AllowQuotesInName and friends from MCAsmInfo.
Accepting quotes is a property of an assembler, not of an object file. For
example, ELF can support any names for sections and symbols, but the gnu
assembler only accepts quotes in some contexts and llvm-mc in a few more.

LLVM should not produce different symbols based on a guess about which assembler
will be reading the code it is printing.

llvm-svn: 194575
2013-11-13 14:01:59 +00:00
Diego Novillo
7b4e2dda6b SampleProfileLoader pass. Initial setup.
This adds a new scalar pass that reads a file with samples generated
by 'perf' during runtime. The samples read from the profile are
incorporated and emmited as IR metadata reflecting that profile.

The profile file is assumed to have been generated by an external
profile source. The profile information is converted into IR metadata,
which is later used by the analysis routines to estimate block
frequencies, edge weights and other related data.

External profile information files have no fixed format, each profiler
is free to define its own. This includes both the on-disk representation
of the profile and the kind of profile information stored in the file.
A common kind of profile is based on sampling (e.g., perf), which
essentially counts how many times each line of the program has been
executed during the run.

The SampleProfileLoader pass is organized as a scalar transformation.
On startup, it reads the file given in -sample-profile-file to
determine what kind of profile it contains.  This file is assumed to
contain profile information for the whole application. The profile
data in the file is read and incorporated into the internal state of
the corresponding profiler.

To facilitate testing, I've organized the profilers to support two file
formats: text and native. The native format is whatever on-disk
representation the profiler wants to support, I think this will mostly
be bitcode files, but it could be anything the profiler wants to
support. To do this, every profiler must implement the
SampleProfile::loadNative() function.

The text format is mostly meant for debugging. Records are separated by
newlines, but each profiler is free to interpret records as it sees fit.
Profilers must implement the SampleProfile::loadText() function.

Finally, the pass will call SampleProfile::emitAnnotations() for each
function in the current translation unit. This function needs to
translate the loaded profile into IR metadata, which the analyzer will
later be able to use.

This patch implements the first steps towards the above design. I've
implemented a sample-based flat profiler. The format of the profile is
fairly simplistic. Each sampled function contains a list of relative
line locations (from the start of the function) together with a count
representing how many samples were collected at that line during
execution. I generate this profile using perf and a separate converter
tool.

Currently, I have only implemented a text format for these profiles. I
am interested in initial feedback to the whole approach before I send
the other parts of the implementation for review.

This patch implements:

- The SampleProfileLoader pass.
- The base ExternalProfile class with the core interface.
- A SampleProfile sub-class using the above interface. The profiler
  generates branch weight metadata on every branch instructions that
  matches the profiles.
- A text loader class to assist the implementation of
  SampleProfile::loadText().
- Basic unit tests for the pass.

Additionally, the patch uses profile information to compute branch
weights based on instruction samples.

This patch converts instruction samples into branch weights. It
does a fairly simplistic conversion:

Given a multi-way branch instruction, it calculates the weight of
each branch based on the maximum sample count gathered from each
target basic block.

Note that this assignment of branch weights is somewhat lossy and can be
misleading. If a basic block has more than one incoming branch, all the
incoming branches will get the same weight. In reality, it may be that
only one of them is the most heavily taken branch.

I will adjust this assignment in subsequent patches.

llvm-svn: 194566
2013-11-13 12:22:21 +00:00
Chandler Carruth
e238c58a05 Add another (perhaps better) video for Sean's talk. (Thanks Marshall!)
llvm-svn: 194549
2013-11-13 02:49:38 +00:00
Chandler Carruth
7c64c22064 Fix a null pointer dereference when copying a null polymorphic pointer.
This bug only bit the C++98 build bots because all of the actual uses
really do move. ;] But not *quite* ready to do the whole C++11 switch
yet, so clean it up. Also add a unit test that catches this immediately.

llvm-svn: 194548
2013-11-13 02:48:20 +00:00
Chandler Carruth
4b8976e254 Give folks a reference to some material on the fundamental design
pattern in use here. Addresses review feedback from Sean (thanks!) and
others.

llvm-svn: 194541
2013-11-13 01:51:36 +00:00
Chandler Carruth
4e1d27ef68 Introduce an AnalysisManager which is like a pass manager but with a lot
more smarts in it. This is where most of the interesting logic that used
to live in the implicit-scheduling-hackery of the old pass manager will
live.

Like the previous commits, note that this is a very early prototype!
I expect substantial changes before this is ready to use.

The core of the design is the following:

- We have an AnalysisManager which can be used across a series of
  passes over a module.
- The code setting up a pass pipeline registers the analyses available
  with the manager.
- Individual transform passes can check than an analysis manager
  provides the analyses they require in order to fail-fast.
- There is *no* implicit registration or scheduling.
- Analysis passes are different from other passes: they produce an
  analysis result that is cached and made available via the analysis
  manager.
- Cached results are invalidated automatically by the pass managers.
- When a transform pass requests an analysis result, either the analysis
  is run to produce the result or a cached result is provided.

There are a few aspects of this design that I *know* will change in
subsequent commits:
- Currently there is no "preservation" system, that needs to be added.
- All of the analysis management should move up to the analysis library.
- The analysis management needs to support at least SCC passes. Maybe
  loop passes. Living in the analysis library will facilitate this.
- Need support for analyses which are *both* module and function passes.
- Need support for pro-actively running module analyses to have cached
  results within a function pass manager.
- Need a clear design for "immutable" passes.
- Need support for requesting cached results when available and not
  re-running the pass even if that would be necessary.
- Need more thorough testing of all of this infrastructure.

There are other aspects that I view as open questions I'm hoping to
resolve as I iterate a bit on the infrastructure, and especially as
I start writing actual passes against this.
- Should we have separate management layers for function, module, and
  SCC analyses? I think "yes", but I'm not yet ready to switch the code.
  Adding SCC support will likely resolve this definitively.
- How should the 'require' functionality work? Should *that* be the only
  way to request results to ensure that passes always require things?
- How should preservation work?
- Probably some other things I'm forgetting. =]

Look forward to more patches in shorter order now that this is in place.

llvm-svn: 194538
2013-11-13 01:12:08 +00:00
Aaron Ballman
247357cde7 Removing llvm::huge_vald and llvm::huge_vall because they are not currently used, and HUGE_VALD does not appear to be supported everywhere anyways.
llvm-svn: 194535
2013-11-13 00:20:43 +00:00
Aaron Ballman
7c6e917033 Replacing HUGE_VALF with llvm::huge_valf in order to work around a warning triggered in MSVC 12.
Patch reviewed by Reid Kleckner and Jim Grosbach.

llvm-svn: 194533
2013-11-13 00:15:44 +00:00