Commit Graph

261 Commits

Author SHA1 Message Date
Benjamin Kramer 7d62ea86e5 Miscellaneous cleanups for VecUtils.h
llvm-svn: 179483
2013-04-14 09:33:08 +00:00
Nadav Rotem 3403c11529 SLP: Document the scalarization cost method.
llvm-svn: 179479
2013-04-14 07:22:22 +00:00
Nadav Rotem 54b413d157 SLPVectorizer: Add support for trees that don't start at binary operators, and add the cost of extracting values from the roots of the tree.
llvm-svn: 179475
2013-04-14 05:15:53 +00:00
Nadav Rotem 0b9cf8567b SLPVectorizer: add initial support for reduction variable vectorization.
llvm-svn: 179470
2013-04-14 03:22:20 +00:00
Nadav Rotem 8543ba3e52 SLPVectorizer: add support for vectorization of diamond shaped trees. We now perform a preliminary traversal of the graph to collect values with multiple users and check where the users came from.
llvm-svn: 179414
2013-04-12 21:16:54 +00:00
Nadav Rotem 4da0ab1d68 Add debug prints.
llvm-svn: 179412
2013-04-12 21:11:14 +00:00
Arnold Schwaighofer f9cea17f75 LoopVectorizer: integer division is not a reduction operation
Don't classify idiv/udiv as a reduction operation. Integer division is lossy.
For example : (1 / 2) * 4 != 4/2.

Example:

int a[] = { 2, 5, 2, 2}
int x = 80;

for()
  x /= a[i];

Scalar:
  x /= 2 // = 40
  x /= 5 // = 8
  x /= 2 // = 4
  x /= 2 // = 2

Vectorized:

 <80, 1> / <2,5> //= <40,0>
 <40, 0> / <2,2> //= <20,0>

 20*0 = 0

radar://13640654

llvm-svn: 179381
2013-04-12 15:15:19 +00:00
Benjamin Kramer c86fdf12e8 Rename the C function to create a SLPVectorizerPass to something sane and expose it in the header file.
llvm-svn: 179272
2013-04-11 11:36:36 +00:00
Nadav Rotem 73dffa4184 Make the SLP store-merger less paranoid about function calls. We check for function calls when we check if it is safe to sink instructions.
llvm-svn: 179207
2013-04-10 19:41:36 +00:00
Nadav Rotem 88dd5f7a38 We require DataLayout for analyzing the size of stores.
llvm-svn: 179206
2013-04-10 18:57:27 +00:00
Nadav Rotem 2d9dec322e Add support for bottom-up SLP vectorization infrastructure.
This commit adds the infrastructure for performing bottom-up SLP vectorization (and other optimizations) on parallel computations.
The infrastructure has three potential users:

  1. The loop vectorizer needs to be able to vectorize AOS data structures such as (sum += A[i] + A[i+1]).

  2. The BB-vectorizer needs this infrastructure for bottom-up SLP vectorization, because bottom-up vectorization is faster to compute.

  3. A loop-roller needs to be able to analyze consecutive chains and roll them into a loop, in order to reduce code size. A loop roller does not need to create vector instructions, and this infrastructure separates the chain analysis from the vectorization.

This patch also includes a simple (100 LOC) bottom up SLP vectorizer that uses the infrastructure, and can vectorize this code:

void SAXPY(int *x, int *y, int a, int i) {
  x[i]   = a * x[i]   + y[i];
  x[i+1] = a * x[i+1] + y[i+1];
  x[i+2] = a * x[i+2] + y[i+2];
  x[i+3] = a * x[i+3] + y[i+3];
}

llvm-svn: 179117
2013-04-09 19:44:35 +00:00
Arnold Schwaighofer df6f67ed87 LoopVectorizer: Pass OperandValueKind information to the cost model
Pass down the fact that an operand is going to be a vector of constants.

This should bring the performance of MultiSource/Benchmarks/PAQ8p/paq8p on x86
back. It had degraded to scalar performance due to my pervious shift cost change
that made all shifts expensive on x86.

radar://13576547

llvm-svn: 178809
2013-04-04 23:26:27 +00:00
Arnold Schwaighofer c63cf3a0ae LoopVectorize: Invert case when we use a vector cmp value to query select cost
We generate a select with a vectorized condition argument when the condition is
NOT loop invariant. Not the other way around.

llvm-svn: 177098
2013-03-14 18:54:36 +00:00
Hal Finkel f610be9f36 BBVectorize: Fixup debugging statements
After the recent data-structure improvements, a couple of debugging statements
were broken (printing pointer values).

llvm-svn: 176791
2013-03-10 20:57:42 +00:00
Benjamin Kramer 6eda79f69a Remove a source of nondeterminism from the LoopVectorizer.
This made us emit runtime checks in a random order. Hopefully bootstrap
miscompares will go away now.

llvm-svn: 176775
2013-03-09 19:22:40 +00:00
Arnold Schwaighofer 8b3dc09400 LoopVectorizer: Ignore all dbg intrinisic
Ignore all DbgIntriniscInfo instructions instead of just DbgValueInst.

llvm-svn: 176769
2013-03-09 16:27:27 +00:00
Arnold Schwaighofer 4090b61ac3 LoopVectorizer: Ignore dbg.value instructions
We want vectorization to happen at -g. Ignore calls to the dbg.value intrinsic
and don't transfer them to the vectorized code.

radar://13378964

llvm-svn: 176768
2013-03-09 15:56:34 +00:00
Benjamin Kramer 37c2d65c5a Insert the reduction start value into the first bypass block to preserve domination.
Fixes PR15344.

llvm-svn: 176701
2013-03-08 16:58:37 +00:00
Nadav Rotem 739e37a0d2 PR14448 - prevent the loop vectorizer from vectorizing the same loop twice.
The LoopVectorizer often runs multiple times on the same function due to inlining.
When this happens the loop vectorizer often vectorizes the same loops multiple times, increasing code size and adding unneeded branches.
With this patch, the vectorizer during vectorization puts metadata on scalar loops and marks them as 'already vectorized' so that it knows to ignore them when it sees them a second time.

PR14448.

llvm-svn: 176399
2013-03-02 01:33:49 +00:00
Benjamin Kramer 12f98fae98 LoopVectorize: Don't hang forever if a PHI only has skipped PHI uses.
Fixes PR15384.

llvm-svn: 176366
2013-03-01 19:07:31 +00:00
Benjamin Kramer dc145816fd LoopVectorize: Vectorize math builtin calls.
This properly asks TargetLibraryInfo if a call is available and if it is, it
can be translated into the corresponding LLVM builtin. We don't vectorize sqrt()
yet because I'm not sure about the semantics for negative numbers. The other
intrinsic should be exact equivalents to the libm functions.

Differential Revision: http://llvm-reviews.chandlerc.com/D465

llvm-svn: 176188
2013-02-27 15:24:19 +00:00
Renato Golin cf928cb53f Allow GlobalValues to vectorize with AliasAnalysis
Storing the load/store instructions with the values
and inspect them using Alias Analysis to make sure
they don't alias, since the GEP pointer operand doesn't
take the offset into account.

Trying hard to not add any extra cost to loads and stores
that don't overlap on global values, AA is *only* calculated
if all of the previous attempts failed.

Using biggest vector register size as the stride for the
vectorization access, as we're being conservative and
the cost model (which calculates the real vectorization
factor) is only run after the legalization phase.

We might re-think this relationship in the future, but
for now, I'd rather be safe than sorry.

llvm-svn: 175818
2013-02-21 22:39:03 +00:00
Hal Finkel 76e65e4542 BBVectorize: Fix an invalid reference bug
This fixes PR15289. This bug was introduced (recently) in r175215; collecting
all std::vector references for candidate pairs to delete at once is invalid
because subsequent lookups in the owning DenseMap could invalidate the
references.

bugpoint was able to reduce a useful test case. Unfortunately, because whether
or not this asserts depends on memory layout, this test case will sometimes
appear to produce valid output. Nevertheless, running under valgrind will
reveal the error.

llvm-svn: 175397
2013-02-17 15:59:26 +00:00
Hal Finkel 89909397a1 BBVectorize: Call a DAG and DAG instead of a tree
Several functions and variable names used the term 'tree' to refer
to what is actually a DAG. Correcting this mistake will, hopefully,
prevent confusion in the future.

No functionality change intended.

llvm-svn: 175278
2013-02-15 17:20:54 +00:00
Hal Finkel 283f4f0e66 BBVectorize: Cap the number of candidate pairs in each instruction group
For some basic blocks, it is possible to generate many candidate pairs for
relatively few pairable instructions. When many (tens of thousands) of these pairs
are generated for a single instruction group, the time taken to generate and
rank the different vectorization plans can become quite large. As a result, we now
cap the number of candidate pairs within each instruction group. This is done by
closing out the group once the threshold is reached (set now at 3000 pairs).

Although this will limit the overall compile-time impact, this may not be the best
way to achieve this result. It might be better, for example, to prune excessive
candidate pairs after the fact the prevent the generation of short, but highly-connected
groups. We can experiment with this in the future.

This change reduces the overall compile-time slowdown of the csa.ll test case in
PR15222 to ~5x. If 5x is still considered too large, a lower limit can be
used as the default.

This represents a functionality change, but only for very large inputs
(thus, there is no regression test).

llvm-svn: 175251
2013-02-15 04:28:42 +00:00
Hal Finkel e7a1ef422b BBVectorize: Remove the remaining instances of std::multimap
All instances of std::multimap have now been replaced by
DenseMap<K, std::vector<V> >, and this yields a speedup of 5% on the
csa.ll test case from PR15222.

No functionality change intended.

llvm-svn: 175216
2013-02-14 22:38:04 +00:00
Hal Finkel c3a4425c34 BBVectorize: Don't store candidate pairs in a std::multimap
This is another commit on the road to removing std::multimap from
BBVectorize. This gives an ~1% speedup on the csa.ll test case
in PR15222.

No functionality change intended.

llvm-svn: 175215
2013-02-14 22:37:09 +00:00
Benjamin Kramer 0aa2ad6104 LoopVectorize: Simplify code for clarity.
No functionality change.

llvm-svn: 175076
2013-02-13 21:12:29 +00:00
Pekka Jaaskelainen 0d23725a8d Metadata for annotating loops as parallel. The first consumer for this
metadata is the loop vectorizer.

See the documentation update for more info.

llvm-svn: 175060
2013-02-13 18:08:57 +00:00
Hal Finkel 6ae564b4a0 BBVectorize: Don't over-search when building the dependency map
When building the pairable-instruction dependency map, don't search
past the last pairable instruction. For large blocks that have been
divided into multiple instruction groups, searching past the last
instruction in each group is very wasteful. This gives a 32% speedup
on the csa.ll test case from PR15222 (when using 50 instructions
in each group).

No functionality change intended.

llvm-svn: 174915
2013-02-11 23:02:17 +00:00
Hal Finkel 39a95032d2 BBVectorize: Omit unnecessary entries in PairableInstUsers
This map is queried only for instructions in pairs of pairable
instructions; so make sure that only pairs of pairable
instructions are added to the map. This gives a 3.5% speedup
on the csa.ll test case from PR15222.

No functionality change intended.

llvm-svn: 174914
2013-02-11 23:02:09 +00:00
Hal Finkel 0b8ae895b4 BBVectorize: Eliminate one more restricted linear search
This eliminates one more linear search over a range of
std::multimap entries. This gives a 22% speedup on the
csa.ll test case from PR15222.

No functionality change intended.

llvm-svn: 174893
2013-02-11 17:19:34 +00:00
Hal Finkel cb268f7995 BBVectorize: Remove the linear searches from pair connection searching
This removes the last of the linear searches over ranges of std::multimap
iterators, giving a 7% speedup on the doduc.bc input from PR15222.

No functionality change intended.

llvm-svn: 174859
2013-02-11 05:29:51 +00:00
Hal Finkel fee38f9754 BBVectorize: Avoid linear searches within the load-move set
This is another cleanup aimed at eliminating linear searches
in ranges of std::multimap.

No functionality change intended.

llvm-svn: 174858
2013-02-11 05:29:49 +00:00
Hal Finkel dd4bc66593 BBVectorize: isa/cast cleanup in getInstructionTypes
Profiling suggests that getInstructionTypes is performance-sensitive,
this cleans up some double-casting in that function in favor of
using dyn_cast.

No functionality change intended.

llvm-svn: 174857
2013-02-11 05:29:48 +00:00
Hal Finkel c1cc166948 BBVectorize: Make the bookkeeping to support full cycle checking less expensive
By itself, this does not have much of an effect, but only because in the default
configuration the full cycle checks are used only for small problem sizes.
This is part of a general cleanup of uses of iteration over std::multimap
ranges only for the purpose of checking membership.

No functionality change intended.

llvm-svn: 174856
2013-02-11 05:29:41 +00:00
Hal Finkel dd2721842d BBVectorize: Use TTI->getAddressComputationCost
This is a follow-up to the cost-model change in r174713 which splits
the cost of a memory operation between the address computation and the
actual memory access. In r174713, this cost is always added to the
memory operation cost, and so BBVectorize will do the same.

Currently, this new cost function is used only by ARM, and I don't
have any ARM test cases for BBVectorize. Assistance in generating some
good ARM test cases for BBVectorize would be greatly appreciated!

llvm-svn: 174743
2013-02-08 21:13:39 +00:00
Jakob Stoklund Olesen 479e5a9313 Typos.
llvm-svn: 174723
2013-02-08 17:43:32 +00:00
Arnold Schwaighofer 594fa2dc2b ARM cost model: Address computation in vector mem ops not free
Adds a function to target transform info to query for the cost of address
computation. The cost model analysis pass now also queries this interface.
The code in LoopVectorize adds the cost of address computation as part of the
memory instruction cost calculation. Only there, we know whether the instruction
will be scalarized or not.
Increase the penality for inserting in to D registers on swift. This becomes
necessary because we now always assume that address computation has a cost and
three is a closer value to the architecture.

radar://13097204

llvm-svn: 174713
2013-02-08 14:50:48 +00:00
Michael Kuperstein f63b77be7f Test Commit
llvm-svn: 174709
2013-02-08 12:58:29 +00:00
Nadav Rotem a9100f3609 fix 80-col violation and fix the docs.
llvm-svn: 174671
2013-02-07 22:34:07 +00:00
Arnold Schwaighofer 3476fc8c82 Loop Vectorizer: Refactor Memory Cost Computation
We don't want too many classes in a pass and the classes obscure the details. I
was going a little overboard with object modeling here. Replace classes by
generic code that handles both loads and stores.

No functionality change intended.

llvm-svn: 174646
2013-02-07 19:05:21 +00:00
Arnold Schwaighofer 3be40b56c5 Loop Vectorizer: Refactor code to compute vectorized memory instruction cost
Introduce a helper class that computes the cost of memory access instructions.
No functionality change intended.

llvm-svn: 174422
2013-02-05 18:46:41 +00:00
Arnold Schwaighofer 22174f5d5a Loop Vectorizer: Handle pointer stores/loads in getWidestType()
In the loop vectorizer cost model, we used to ignore stores/loads of a pointer
type when computing the widest type within a loop. This meant that if we had
only stores/loads of pointers in a loop we would return a widest type of 8bits
(instead of 32 or 64 bit) and therefore a vector factor that was too big.

Now, if we see a consecutive store/load of pointers we use the size of a pointer
(from data layout).

This problem occured in SingleSource/Benchmarks/Shootout-C++/hash.cpp (reduced
test case is the first test in vector_ptr_load_store.ll).

radar://13139343

llvm-svn: 174377
2013-02-05 15:08:02 +00:00
Pekka Jaaskelainen f50ab84bb1 LoopVectorize: convert TinyTripCountVectorThreshold constant
to a command line switch.

llvm-svn: 173837
2013-01-29 21:42:08 +00:00
Benjamin Kramer cf406756ce LoopVectorize: Clean up ValueMap a bit and avoid double lookups.
No intended functionality change.

llvm-svn: 173809
2013-01-29 17:31:33 +00:00
Renato Golin 1258519674 Vectorization Factor clarification
llvm-svn: 173691
2013-01-28 16:02:45 +00:00
Hal Finkel 293a41d14f BBVectorize: Better use of TTI->getShuffleCost
When flipping the pair of subvectors that form a vector, if the
vector length is 2, we can use the SK_Reverse shuffle kind to get
more-accurate cost information. Also we can use the SK_ExtractSubvector
shuffle kind to get accurate subvector extraction costs.

The current cost model implementations don't yet seem complex enough
for this to make a difference (thus, there are no test cases with this
commit), but it should help in future.

Depending on how the various targets optimize and combine shuffles in
practice, we might be able to get more-accurate costs by combining the
costs of multiple shuffle kinds. For example, the cost of flipping the
subvector pairs could be modeled as two extractions and two subvector
insertions. These changes, however, should probably be motivated
by specific test cases.

llvm-svn: 173621
2013-01-27 20:07:01 +00:00
Hal Finkel 2d443e94b4 BBVectorize: Add a additional comment about the cost computation
llvm-svn: 173580
2013-01-26 16:49:04 +00:00
Hal Finkel 351a75b6d7 BBVectorize: Fix anomalous capital letter in comment
llvm-svn: 173579
2013-01-26 16:49:03 +00:00