Summary:
The minimum version of Python necessary to run the LLVM test suite is
2.7. Code to work around Python 2.5 and lower isn't necessary.
Reviewers: ddunbar, echristo, delcypher, beanz
Subscribers: llvm-commits, mehdi_amini
Differential Revision: https://reviews.llvm.org/D25209
llvm-svn: 283169
Summary:
optparse is deprecated in Python 2.7, which is the minimum version of
Python required to run the LLVM test suite. Replace its usage in lit
with argparse, optparse's 2.7 replacement module.
argparse has several benefits over optparse, but this commit does not
make use of those benefits yet. Instead, it simply uses the new API,
and attempts to keep the number of changes to a minimum.
Confirmed that lit's test suite, as well as LLVM's regression test suite,
still pass with these changes.
Patch By Brian Gesiak!
Reviewers: ddunbar, echristo, beanz, delcypher
Subscribers: llvm-commits, mehdi_amini
Differential Revision: https://reviews.llvm.org/D25173
llvm-svn: 283152
Summary:
lit's `OneCommandFileTest` class implements an abstract method that
raises if called. However, it raises by referencing an undefined
symbol. Instead, raise explicitly by throwing a `NotImplementedError`.
This is clearer, and appeases Python linters.
Patch By Brian Gesiak!
Reviewers: ddunbar, echristo, beanz
Subscribers: llvm-commits, mehdi_amini
Differential Revision: https://reviews.llvm.org/D25170
llvm-svn: 283090
Summary:
In Python, `None` is a singleton, so checking whether a variable is
`None` may be done with `is` or `is not`. This has a slight advantage
over equiality comparisons `== None` and `!= None`, since `__eq__` may
be overridden in Python to produce sometimes unexpected results.
Using `is None` and `is not None` is also recommended practice in
https://www.python.org/dev/peps/pep-0008:
> Comparisons to singletons like `None` should always be done with `is` or
> `is not`, never the equality operators.
Patch by Brian Gesiak!
Reviewers: ddunbar, echristo, beanz
Subscribers: llvm-commits, mehdi_amini
Differential Revision: https://reviews.llvm.org/D25168
llvm-svn: 283088
- This is primarily useful as a "fail fast" mode for lit, where it will stop
running tests after the first failure.
- Patch by Max Moiseev.
llvm-svn: 282452
Add two options to the code coverage artifact prep script:
* --use-existing-profdata: Use an existing indexed profile instead of
merging the same profiles again.
* --restrict: Restrict the coverage reporting to the given list of
source directories.
With this in place, we can teach the coverage bot how to prepare
separate reports for each of the llvm tools.
llvm-svn: 282204
In practice, it's way too noisy.
It's also a maintenance burden, since we apparently can't add tests for
it without breaking some Windows setups (see: D22692).
llvm-svn: 281871
descriptions now tag add instructions, and the Hexagon backend is using this to
identify loop induction statements.
Patch by Sam Parker and Sjoerd Meijer.
Differential Revision: https://reviews.llvm.org/D23601
llvm-svn: 281304
Previously, gtest/gtest_main were not exported via cmake. The intention here was
to ensure that users whom are linking against the LLVM install tree would not
get the gtest/gtest_main targets. This prevents downstream projects that link
against the LLVM build tree (i.e. Swift) from getting this dependency
information in their cmake builds. Without such dependency information, linker
issues can result on linux due to LLVMSupport being put before gtest on the
linker command line.
This commit preserves behavior that we want for the install tree, while adding
support for the build tree by:
1. The special casing for gtest/gtest_main in the add_llvm_library code is
removed in favor of a flag called "BUILDTREE_ONLY". If this is set, then the
library is communicating that it is only meant to be exported into the build
tree and is not meant to be installed or exported via the install tree. This
part is just a tweak to remove the special case, the underlying code is the
same.
2. The cmake code that exports cmake targets for the build tree has special code
to import an additional targets file called
LLVMBuildTreeOnlyExports.cmake. Additionally the extra targets are added to the
LLVMConfig.cmake's LLVM_EXPORTED_TARGETS variable. In contrast, the
"installation" cmake file uses the normal LLVM_EXPORTS_TARGETS as before and
does not include the extra exports file. This is implemented by
defining/undefining variables when performing a configure of the build/install
tree LLVMConfig.cmake files.
llvm-svn: 281085
Summary:
This allows specifying instructions that are available only in specific assembler variant. If AsmVariantName is specified then instruction will be presented only in MatchTable for this variant. If not specified then assembler variants will be determined based on AsmString.
Also this allows splitting assembler match tables in same way as it is done in dissasembler.
Reviewers: ab, tstellarAMD, craig.topper, vpykhtin
Subscribers: wdng
Differential Revision: https://reviews.llvm.org/D24249
llvm-svn: 280952
Lots of unittests started failing under asan after r280455. It seems
they've been failing for a long time, but lit silently ignored them.
Downgrade the error so we can figure out what is going on.
Filed http://llvm.org/PR30285.
llvm-svn: 280674
Summary:
This is a follow up to r280455, where a check for the process exit code
was introduced. Some ASAN bots throw this error now, but it's impossible
to understand what's wrong with them, and the issue is not reproducible.
Reviewers: vitalybuka
Differential Revision: https://reviews.llvm.org/D24210
llvm-svn: 280550
Do this by creating a temp directory in the normal system temp
directory, and cleaning it up on exit.
It is still possible for this temp directory to leak if Python exits
abnormally, but this is probably good enough for now.
Fixes PR18335
llvm-svn: 280501
googletest formatted tests are discovered by running the test executable.
Previously testing would silently succeed if the test executable crashed
during the discovery process. Now testing fails with "error: unable to
discover google-tests ..." if the test executable exits with a non-zero status.
llvm-svn: 280455
Apparently nobody evaluated multiprocessing on Windows since Daniel
enabled multiprocessing on Unix in r193279. It works so far as I can
tell.
Today this is worth about an 8x speedup (631.29s to 73.25s) on my 24
core Windows machine. Hopefully this will improve Windows buildbot cycle
time, where currently it takes more time to run check-all than it does
to self-host with assertions enabled:
http://lab.llvm.org:8011/builders/clang-x86-windows-msvc2015/builds/20
build stage 2 ninja all ( 28 mins, 22 secs )
ninja check 2 stage 2 ( 37 mins, 38 secs )
llvm-svn: 280382
This mapping is between pointers, which DenseMap is particularly good
at. Most targets aren't really affected, but if there's a lot of
subregister composition this can shave off a good chunk of time from
generating registers.
llvm-svn: 279875
1. Add the "explicit" specifier to the single-argument constructor of Pattern
2. Reorder the fields to remove excessive padding (8 bytes).
Patch by Alexander Shaposhnikov!
llvm-svn: 279832
This tries to keep all the ModRM memory and register forms in their own regions of the encodings. Hoping to make it simple on some of the switch statements that operate on these encodings.
llvm-svn: 279422
Summary:
This is one possible solution to the problem of ignoring constraints that Simon
raised in D21473 but it's a bit of a hack.
The integrated assembler currently ignores violations of the tied register
constraints when the operands involved in a tie are both present in the AsmText.
For example, 'dati $rs, $rt, $imm' with the '$rs = $rt' will silently replace
$rt with $rs. So 'dati $2, $3, 1' is processed as if the user provided
'dati $2, $2, 1' without any diagnostic being emitted.
This is difficult to solve properly because there are multiple parts of the
matcher that are silently forcing these constraints to be met. Tied operands are
rendered to instructions by cloning previously rendered operands but this is
unnecessary because the matcher was already instructed to render the operand it
would have cloned. This is also unnecessary because earlier code has already
replaced the MCParsedOperand with the one it was tied to (so the parsed input
is matched as if it were 'dati <RegIdx 2>, <RegIdx 2>, <Imm 1>'). As a result,
it looks like fixing this properly amounts to a rewrite of the tied operand
handling which affects all targets.
This patch however, merely inserts a checking hook just before the
substitution of MCParsedOperands and the Mips target overrides it. It's not
possible to accurately check the registers are the same this early (because
numeric registers haven't been bound to a register class yet) so it cheats a
bit and checks that the tokens that produced the operand are lexically
identical. This works because tied registers need to have the same register
class but it does have a flaw. It will reject 'dati $4, $a0, 1' for violating
the constraint even though $a0 ends up as the same register as $4.
Reviewers: sdardis
Subscribers: dsanders, llvm-commits, sdardis
Differential Revision: https://reviews.llvm.org/D21994
llvm-svn: 276867