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298 changed files with 24581 additions and 11933 deletions
1
.gitattributes
vendored
Normal file
1
.gitattributes
vendored
Normal file
|
|
@ -0,0 +1 @@
|
|||
llvm/_version.py export-subst
|
||||
3
.gitignore
vendored
3
.gitignore
vendored
|
|
@ -2,4 +2,7 @@
|
|||
build
|
||||
_build
|
||||
*.pyc
|
||||
*.so
|
||||
/llvm/_intrinsic_ids.py
|
||||
llvm_
|
||||
newbinding/api/*
|
||||
24
.travis.yml
Normal file
24
.travis.yml
Normal file
|
|
@ -0,0 +1,24 @@
|
|||
language: python
|
||||
|
||||
python:
|
||||
- "2.6"
|
||||
- "2.7"
|
||||
- "3.2"
|
||||
- "3.3"
|
||||
|
||||
branches:
|
||||
only:
|
||||
- master
|
||||
|
||||
install:
|
||||
- wget "http://repo.continuum.io/pkgs/free/linux-64/llvm-3.2-0.tar.bz2"
|
||||
- tar -xjf llvm-3.2-0.tar.bz2
|
||||
- PATH+=":`pwd`/bin"
|
||||
- export LD_LIBRARY_PATH="`pwd`/lib"
|
||||
- export LLVM_CONFIG_PATH="`pwd`/bin/llvm-config"
|
||||
- $LLVM_CONFIG_PATH --cflags # test llvm-config
|
||||
- export LLVMPY_DYNLINK=1
|
||||
- python setup.py install -q
|
||||
|
||||
script: cd ~; python -c "import sys;import llvm;sys.exit(0 if llvm.test() == 0 else 1)"
|
||||
|
||||
107
CHANGELOG
107
CHANGELOG
|
|
@ -1,14 +1,88 @@
|
|||
2014-04-28 0.12.5:
|
||||
---------------------
|
||||
* Fixes memory leaks (#92)
|
||||
* Fixes tarball (#99)
|
||||
|
||||
0.7, in progress:
|
||||
2014-03-20 0.12.4:
|
||||
---------------------
|
||||
* Add dylib_import_library and friends
|
||||
* Fix BasicBlock downcast
|
||||
* Module hashing
|
||||
* Fix test script
|
||||
|
||||
2014-02-18 0.12.3:
|
||||
---------------------
|
||||
* Fix deprecation message for py2.6
|
||||
* Fix llvm_cbuilder for using deprecated_alloca
|
||||
* Merged PR #88 by cantora
|
||||
* Merged PR #94 by cgohlke
|
||||
|
||||
2014-02-04 0.12.2:
|
||||
---------------------
|
||||
* enhance wrapper efficiency by moving some capsule code into C++
|
||||
* fix unclosed file handler in avx_support
|
||||
* multiple-dimension insert_value, extract_value
|
||||
* various minor fixes
|
||||
|
||||
2013-11-11 0.12.1:
|
||||
---------------------
|
||||
* various bug fixes
|
||||
|
||||
2013-08-28 0.12.0:
|
||||
---------------------
|
||||
* update to LLVM 3.3 and maintain compatibility with LLVM 3.2
|
||||
* add LLRT for minimal support for 64-bit divmod on 32-bit platform
|
||||
* start to adopt MCJIT (not quite usable on win32)
|
||||
* various bug fixes
|
||||
|
||||
2013-03-05 0.11.1:
|
||||
--------------------
|
||||
* fix test when cc is not available
|
||||
* fix Python 3 division (Hernan Grecco) (Issue #59)
|
||||
* add relocation enums and add reloc argument for TargetMachine
|
||||
|
||||
|
||||
2013-03-01 0.11.0:
|
||||
--------------------
|
||||
* fix Python 3 support on Windows
|
||||
* New llvm binding
|
||||
|
||||
|
||||
2013-02-01 0.10.2:
|
||||
--------------------
|
||||
* change default to link dynamically to LLVM use:
|
||||
$ export LLVMPY_DYNLINK=0 # link statically
|
||||
$ export LLVMPY_DYNLINK=1 # link dynamically
|
||||
$ unset LLVMPY_DYNLINK # tries to link dynamically if LLVM shared
|
||||
# objects are found and statically otherwise
|
||||
* fix llpython for Python 2.6 support
|
||||
|
||||
|
||||
2013-01-25 0.10.1:
|
||||
--------------------
|
||||
* fix support for Python 2.6
|
||||
|
||||
|
||||
2013-01-18 0.10.0:
|
||||
--------------------
|
||||
* Add LLVM 3.2 support.
|
||||
* New TargetData class.
|
||||
* Fixed windows issue (Issue #42).
|
||||
* Add ExecutionEngine.add_global_mapping and .get_pointer_to_global.
|
||||
* Improved TargetMachine class and added code-model constants (CM_*).
|
||||
* Added llvm.passes.build_pass_managers as a simpler way to build PassManagers.
|
||||
|
||||
|
||||
in progress, 0.7:
|
||||
-----------------
|
||||
* Add llvm.core.Argument.alignment property.
|
||||
* Migrate to LLVM 2.8.
|
||||
* Fix ffi link issue on darwin (Albert Mietus) (Issue #29).
|
||||
* LLVM tutorial ported (Max Shawabkeh) (Issue #33).
|
||||
|
||||
|
||||
0.6, 31-Aug-2010:
|
||||
|
||||
2010-08-31 0.6:
|
||||
-----------------
|
||||
* Add and remove function attributes (Krzysztof Goj) (Issue #21).
|
||||
* Wrap fadd,fsub,fmul (Aaron S Lav) (Issue #31).
|
||||
* Migrate to LLVM 2.7.
|
||||
|
|
@ -27,16 +101,16 @@
|
|||
* Migrate to LLVM 2.5.
|
||||
|
||||
|
||||
0.5, 22-Nov-2008:
|
||||
|
||||
2008-11-22 0.5:
|
||||
-----------------
|
||||
* Added vicmp, vfcmp instructions and constant expressions.
|
||||
* Builds on FreeBSD.
|
||||
* Updated documentation.
|
||||
* Migrate to LLVM 2.4.
|
||||
|
||||
|
||||
0.4, 21-Nov-2008:
|
||||
|
||||
2008-11-21 0.4:
|
||||
-----------------
|
||||
* Code cleanup, added license headers.
|
||||
* Added llvm.core.load_library_permanently() (Issue #12).
|
||||
* Fix comparison using != (Issue #11).
|
||||
|
|
@ -45,8 +119,8 @@
|
|||
* Added viewCFG methods to Function (Paulo Silva).
|
||||
|
||||
|
||||
0.3, 8-Sep-2008:
|
||||
|
||||
2008-09-08 0.3:
|
||||
-----------------
|
||||
* Passes added.
|
||||
* Assembly support: create modules from .ll files.
|
||||
* Various bug fixes.
|
||||
|
|
@ -58,13 +132,13 @@
|
|||
* Updated documentation.
|
||||
|
||||
|
||||
0.2.1, 18-Jun-2008:
|
||||
|
||||
2008-06-28 0.2.1:
|
||||
-------------------
|
||||
* Build cleanly with LLVM 2.3 and 2.3svn.
|
||||
|
||||
|
||||
0.2, 15-Jun-2008:
|
||||
|
||||
2008-06-15 0.2:
|
||||
-----------------
|
||||
* Independent package, need not be unpacked into llvm/bindings.
|
||||
* Fixed ownership issues with Module/ModuleProvider.
|
||||
* Modules, values and types can be stringified, to get their LLVM
|
||||
|
|
@ -79,7 +153,6 @@
|
|||
* Lots of cleanup.
|
||||
|
||||
|
||||
0.1, 10-May-2008:
|
||||
|
||||
* Initial release.
|
||||
|
||||
2008-05-10 0.1:
|
||||
-----------------
|
||||
* Initial release
|
||||
|
|
|
|||
|
|
@ -1,4 +1,6 @@
|
|||
include CHANGELOG LICENSE README setup.py MANIFEST.in
|
||||
include CHANGELOG LICENSE README.rst setup.py MANIFEST.in versioneer.py
|
||||
recursive-include llvm *
|
||||
recursive-include llvmpy *
|
||||
recursive-include www *
|
||||
recursive-include test *
|
||||
recursive-include tools *
|
||||
|
|
|
|||
40
README.rst
40
README.rst
|
|
@ -10,27 +10,55 @@ http://www.llvmpy.org
|
|||
Versions
|
||||
--------
|
||||
|
||||
This package has only been tested with LLVM 3.1, and Python 2.7, (not Python 3.x).
|
||||
This package has been tested with LLVM 3.2, Python 2.6, 2.7 and 3.3.
|
||||
Other Python versions may work.
|
||||
|
||||
Quickstart
|
||||
----------
|
||||
|
||||
1. Get 3.1 version of LLVM, build it. Make sure ``--enable-pic`` is passed to
|
||||
LLVM's ``configure``.
|
||||
1. Get and extract LLVM 3.2 source tarball from
|
||||
`llvm.org <http://llvm.org/releases/download.html#3.2>`_. Then, ``cd`` into
|
||||
the extracted directory.
|
||||
|
||||
2. Get llvm-py and install it::
|
||||
2. Run ``./configure --enable-optimized --prefix=LLVM_INSTALL_PATH``.
|
||||
|
||||
**Note**: Without the ``--enable-optimized`` flag, debug build will be
|
||||
selected. Unless you are developing LLVM or llvmpy, it is recommended
|
||||
that the flag is used to reduce build time and binary size.
|
||||
|
||||
**Note**: Use prefix to select the installation path. It is recommended
|
||||
to separate your custom build from the default system package. Please
|
||||
replace ``LLVM_INSTALL_PATH`` with your own path.
|
||||
|
||||
3. Run ``REQUIRES_RTTI=1 make install`` to build and install.
|
||||
|
||||
**Note**: With LLVM 3.2, the default build configuration has C++ RTTI
|
||||
disabled. However, llvmpy requires RTTI.
|
||||
|
||||
**Note**: Use ``make -j2 install`` to enable concurrent build.
|
||||
Replace ``2`` with the actual number of processor you have.
|
||||
|
||||
4. Get llvm-py and install it::
|
||||
|
||||
$ git clone git@github.com:llvmpy/llvmpy.git
|
||||
$ cd llvmpy
|
||||
$ python setup.py install
|
||||
$ LLVM_CONFIG_PATH=LLVM_INSTALL_PATH/bin/llvm-config python setup.py install
|
||||
|
||||
Run the tests::
|
||||
|
||||
$ python -c "import llvm; llvm.test()"
|
||||
|
||||
3. See documentation at 'http://www.llvmpy.org/pages.html' and examples
|
||||
5. See documentation at 'http://www.llvmpy.org' and examples
|
||||
under 'test'.
|
||||
|
||||
Common Build Problems
|
||||
---------------------
|
||||
|
||||
1. If llvmpy cannot be imported due to "undefined symbol:
|
||||
_ZTIN4llvm24PassRegistrationListenerE", it is because RTTI is not enabled
|
||||
when building LLVM. "_ZTIN4llvm24PassRegistrationListenerE" is the typeinfo
|
||||
of PassRegistrationListener class.
|
||||
|
||||
LICENSE
|
||||
-------
|
||||
|
||||
|
|
|
|||
144
README_LLVM_CBUILDER.md
Normal file
144
README_LLVM_CBUILDER.md
Normal file
|
|
@ -0,0 +1,144 @@
|
|||
LLVM CBuilder
|
||||
=============
|
||||
|
||||
A few short examples:
|
||||
(TODO: add more later)
|
||||
|
||||
```python
|
||||
from llvm.core import *
|
||||
from llvm_cbuilder import *
|
||||
import llvm_cbuilder.shortnames as C
|
||||
```
|
||||
|
||||
```python
|
||||
class Square(CDefinition):
|
||||
_name_ = 'square'
|
||||
_retty_ = C.double
|
||||
_argtys_ = [ ('x', C.double) ]
|
||||
|
||||
def body(self, x):
|
||||
y = x * x
|
||||
self.ret(y)
|
||||
```
|
||||
|
||||
```python
|
||||
m = Module.new('my_module')
|
||||
llvm_square = Square()(m)
|
||||
print(m)
|
||||
```
|
||||
|
||||
```
|
||||
; ModuleID = 'my_module'
|
||||
|
||||
define double @square(double %x) {
|
||||
decl:
|
||||
%0 = fmul double %x, %x
|
||||
ret double %0
|
||||
}
|
||||
```
|
||||
|
||||
|
||||
```python
|
||||
class IsPrime(CDefinition):
|
||||
_name_ = 'isprime'
|
||||
_retty_ = C.int
|
||||
_argtys_ = [('x', C.int)]
|
||||
|
||||
def body(self, x):
|
||||
false = zero = self.constant(C.int, 0)
|
||||
true = one = self.constant(C.int, 1)
|
||||
|
||||
two = self.constant(C.int, 2)
|
||||
|
||||
with self.ifelse( x <= two ) as ifelse:
|
||||
with ifelse.then():
|
||||
self.ret(true)
|
||||
|
||||
with self.ifelse( (x % two) == zero ) as ifelse:
|
||||
with ifelse.then():
|
||||
self.ret(false)
|
||||
|
||||
idx = self.var(C.int, 3, name='idx')
|
||||
|
||||
with self.loop() as loop:
|
||||
with loop.condition() as setcond:
|
||||
setcond( idx < x )
|
||||
|
||||
with loop.body():
|
||||
with self.ifelse( (x % idx ) == zero ) as ifelse:
|
||||
with ifelse.then():
|
||||
self.ret(false)
|
||||
idx += two
|
||||
|
||||
self.ret(true)
|
||||
```
|
||||
|
||||
|
||||
|
||||
```
|
||||
define i32 @isprime(i32 %x) {
|
||||
decl:
|
||||
%0 = icmp sle i32 %x, 2
|
||||
br i1 %0, label %if.then, label %if.end
|
||||
|
||||
if.then: ; preds = %loop.body, %loop.cond, %if.end, %decl
|
||||
%merge = phi i32 [ 1, %decl ], [ 0, %if.end ], [ 1, %loop.cond ], [ 0, %loop.body ]
|
||||
ret i32 %merge
|
||||
|
||||
if.end: ; preds = %decl
|
||||
%1 = srem i32 %x, 2
|
||||
%2 = icmp eq i32 %1, 0
|
||||
br i1 %2, label %if.then, label %if.end4
|
||||
|
||||
if.end4: ; preds = %if.end
|
||||
br label %loop.cond
|
||||
|
||||
loop.cond: ; preds = %if.end7, %if.end4
|
||||
%idx.0 = phi i32 [ 3, %if.end4 ], [ %6, %if.end7 ]
|
||||
%3 = icmp slt i32 %idx.0, %x
|
||||
br i1 %3, label %loop.body, label %if.then
|
||||
|
||||
loop.body: ; preds = %loop.cond
|
||||
%4 = srem i32 %x, %idx.0
|
||||
%5 = icmp eq i32 %4, 0
|
||||
br i1 %5, label %if.then, label %if.end7
|
||||
|
||||
if.end7: ; preds = %loop.body
|
||||
%6 = add i32 %idx.0, 2
|
||||
br label %loop.cond
|
||||
}
|
||||
|
||||
; ModuleID = 'my_module'
|
||||
|
||||
define i32 @isprime(i32 %x) {
|
||||
decl:
|
||||
%0 = icmp sle i32 %x, 2
|
||||
br i1 %0, label %if.then, label %if.end
|
||||
|
||||
if.then: ; preds = %loop.body, %loop.cond, %if.end, %decl
|
||||
%merge = phi i32 [ 1, %decl ], [ 0, %if.end ], [ 1, %loop.cond ], [ 0, %loop.body ]
|
||||
ret i32 %merge
|
||||
|
||||
if.end: ; preds = %decl
|
||||
%1 = srem i32 %x, 2
|
||||
%2 = icmp eq i32 %1, 0
|
||||
br i1 %2, label %if.then, label %if.end4
|
||||
|
||||
if.end4: ; preds = %if.end
|
||||
br label %loop.cond
|
||||
|
||||
loop.cond: ; preds = %if.end7, %if.end4
|
||||
%idx.0 = phi i32 [ 3, %if.end4 ], [ %6, %if.end7 ]
|
||||
%3 = icmp slt i32 %idx.0, %x
|
||||
br i1 %3, label %loop.body, label %if.then
|
||||
|
||||
loop.body: ; preds = %loop.cond
|
||||
%4 = srem i32 %x, %idx.0
|
||||
%5 = icmp eq i32 %4, 0
|
||||
br i1 %5, label %if.then, label %if.end7
|
||||
|
||||
if.end7: ; preds = %loop.body
|
||||
%6 = add i32 %idx.0, 2
|
||||
br label %loop.cond
|
||||
}
|
||||
```
|
||||
6
buildscripts/condarecipe/bld.bat
Normal file
6
buildscripts/condarecipe/bld.bat
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
set LLVMPY_DYNLINK=0
|
||||
set INCLUDE=%LIBRARY_INC%
|
||||
set LIBPATH=%LIBRARY_LIB%
|
||||
set LIB=%LIBRARY_LIB%
|
||||
%PYTHON% setup.py install
|
||||
if errorlevel 1 exit 1
|
||||
13
buildscripts/condarecipe/build.sh
Normal file
13
buildscripts/condarecipe/build.sh
Normal file
|
|
@ -0,0 +1,13 @@
|
|||
#!/bin/bash
|
||||
|
||||
if [[ (`uname` == Linux) && (`uname -m` != armv6l) ]]
|
||||
then
|
||||
export CC=gcc
|
||||
#gcc44
|
||||
export CXX=g++
|
||||
#g++44
|
||||
fi
|
||||
|
||||
export LLVMPY_DYNLINK=$DISTRO_BUILD
|
||||
|
||||
$PYTHON setup.py install
|
||||
28
buildscripts/condarecipe/meta.yaml
Normal file
28
buildscripts/condarecipe/meta.yaml
Normal file
|
|
@ -0,0 +1,28 @@
|
|||
package:
|
||||
name: llvmpy
|
||||
version: 99.9.9
|
||||
|
||||
source:
|
||||
git_url: git@github.com:llvmpy/llvmpy.git
|
||||
# git_tag: 0.12.0
|
||||
|
||||
requirements:
|
||||
build:
|
||||
- llvm
|
||||
- python
|
||||
#- chrpath [linux]
|
||||
run:
|
||||
- llvm [unix]
|
||||
- python
|
||||
|
||||
test:
|
||||
imports:
|
||||
- llvm
|
||||
- llvmpy
|
||||
- llvmpy._api
|
||||
- llvmpy._capsule
|
||||
- llpython
|
||||
- llvm_array
|
||||
- llvm_cbuilder
|
||||
|
||||
|
||||
22
buildscripts/condarecipe/run_test.py
Normal file
22
buildscripts/condarecipe/run_test.py
Normal file
|
|
@ -0,0 +1,22 @@
|
|||
import sys
|
||||
import platform
|
||||
import llvm
|
||||
|
||||
from llvm.core import Module
|
||||
from llvm.ee import EngineBuilder
|
||||
from llvm.utils import check_intrinsics
|
||||
|
||||
m = Module.new('fjoidajfa')
|
||||
eb = EngineBuilder.new(m)
|
||||
target = eb.select_target()
|
||||
|
||||
print('target.triple=%r' % target.triple)
|
||||
if sys.platform == 'darwin':
|
||||
s = {'64bit': 'x86_64', '32bit': 'x86'}[platform.architecture()[0]]
|
||||
assert target.triple.startswith(s + '-apple-darwin')
|
||||
|
||||
assert llvm.test(verbosity=2, run_isolated=False) == 0
|
||||
#check_intrinsics.main()
|
||||
|
||||
print('llvm.__version__: %s' % llvm.__version__)
|
||||
#assert llvm.__version__ == '0.12.0'
|
||||
|
|
@ -30,7 +30,7 @@ from subprocess import Popen, PIPE, CalledProcessError, check_call
|
|||
pages_dir = 'gh-pages'
|
||||
html_dir = '_build/html'
|
||||
pdf_dir = '_build/latex'
|
||||
pages_repo = 'git@github.com:llvmpy/llvmpy-doc.git'
|
||||
pages_repo = 'https://github.com/llvmpy/llvmpy-doc.git'
|
||||
|
||||
#-----------------------------------------------------------------------------
|
||||
# Functions
|
||||
|
|
|
|||
|
|
@ -11,12 +11,23 @@
|
|||
# All configuration values have a default; values that are commented out
|
||||
# serve to show the default.
|
||||
|
||||
import sys, os
|
||||
import sys, os, glob
|
||||
|
||||
# If extensions (or modules to document with autodoc) are in another directory,
|
||||
# add these directories to sys.path here. If the directory is relative to the
|
||||
# documentation root, use os.path.abspath to make it absolute, like shown here.
|
||||
#sys.path.insert(0, os.path.abspath('.'))
|
||||
#sys.path.insert(0, os.path.abspath('../..'))
|
||||
|
||||
# Support sphinx.ext.autodoc to extract docstrings from modules without installing
|
||||
# complete package.
|
||||
# The python modules depend on _core, so we must build entire package first though.
|
||||
built_lib = glob.glob('../../build/lib.*-%d.%d/' % sys.version_info[:2])
|
||||
if not built_lib:
|
||||
sys.stderr.write("WARNING: To build complete documentation you must build "
|
||||
"package first\n")
|
||||
else:
|
||||
# lib dir has platform suffix
|
||||
sys.path.insert(0, os.path.abspath(built_lib[0]))
|
||||
|
||||
# -- General configuration -----------------------------------------------------
|
||||
|
||||
|
|
@ -25,7 +36,7 @@ import sys, os
|
|||
|
||||
# Add any Sphinx extension module names here, as strings. They can be extensions
|
||||
# coming with Sphinx (named 'sphinx.ext.*') or your custom ones.
|
||||
extensions = ['sphinx.ext.mathjax']
|
||||
extensions = ['sphinx.ext.mathjax', 'sphinx.ext.autodoc']
|
||||
|
||||
# Add any paths that contain templates here, relative to this directory.
|
||||
templates_path = ['_templates']
|
||||
|
|
@ -41,16 +52,22 @@ master_doc = 'index'
|
|||
|
||||
# General information about the project.
|
||||
project = u'llvmpy'
|
||||
copyright = u'2012, Mahadevan R (2008-2010), Continuum Analytics (2012)'
|
||||
copyright = u'2013, Mahadevan R (2008-2010), Continuum Analytics (2012-2013)'
|
||||
|
||||
# The version info for the project you're documenting, acts as replacement for
|
||||
# |version| and |release|, also used in various other places throughout the
|
||||
# built documents.
|
||||
#
|
||||
# The short X.Y version.
|
||||
version = '0.8'
|
||||
# The full version, including alpha/beta/rc tags.
|
||||
release = '0.8.2'
|
||||
try:
|
||||
import llvm
|
||||
version_strs = llvm.__version__.split('.')
|
||||
# The short X.Y version.
|
||||
version = '.'.join(version_strs[:2])
|
||||
# The full version, including alpha/beta/rc tags.
|
||||
release = '%s.%s' % (version, '-'.join(version_strs[2].split('-')[:2]))
|
||||
except ImportError:
|
||||
version = 'unknown-version'
|
||||
release = 'unknown-release'
|
||||
|
||||
# The language for content autogenerated by Sphinx. Refer to documentation
|
||||
# for a list of supported languages.
|
||||
|
|
|
|||
9
docs/source/doc/core.rst
Normal file
9
docs/source/doc/core.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.core
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.core.*
|
||||
|
|
@ -1,5 +1,5 @@
|
|||
A More Complicated Function
|
||||
====================
|
||||
===========================
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
|
|
|
|||
|
|
@ -26,7 +26,7 @@ Both LLVM and llvmpy are distributed under (different) permissive open
|
|||
source licenses. llvmpy uses the `new BSD
|
||||
license <http://opensource.org/licenses/bsd-license.php>`_. More
|
||||
information is available
|
||||
`here <https://github.com/numba/llvmpy/blob/master/LICENSE>`_.
|
||||
`here <https://github.com/llvmpy/llvmpy/blob/master/LICENSE>`_.
|
||||
|
||||
Platforms
|
||||
---------
|
||||
|
|
@ -38,12 +38,11 @@ supported, for a variety of reasons.
|
|||
Versions
|
||||
--------
|
||||
|
||||
llvmpy 0.8.2 requires version 3.1 of LLVM. It may not work with
|
||||
llvmpy 0.11.2 uses LLVM 3.2 (or at least 3.1). It may not work with
|
||||
previous versions.
|
||||
|
||||
llvmpy has been built and tested with Python 2.7. It should work with
|
||||
earlier versions. It has not been tried with Python 3.x (patches
|
||||
welcome).
|
||||
llvmpy has been built and tested with Python 2.7 and 3.2. It should work with
|
||||
earlier versions.
|
||||
|
||||
|
||||
Installation
|
||||
|
|
@ -66,22 +65,6 @@ It does not matter which compiler LLVM itself was built with (``g++``,
|
|||
``llvm-g++`` or any other); llvmpy can be built with any compiler. It
|
||||
has been tried only with gcc/g++ though.
|
||||
|
||||
|
||||
LLVM and ``--enable-pic``
|
||||
-------------------------
|
||||
|
||||
The result of an LLVM build is a set of static libraries and object
|
||||
files. The llvmpy contains an extension package that is built into a
|
||||
shared object (\_core.so) which links to these static libraries and
|
||||
object files. It is therefore required that the LLVM libraries and
|
||||
object files be built with the ``-fPIC`` option (generate position
|
||||
independent code). Be sure to use the ``--enable-pic`` option while
|
||||
configuring LLVM (default is no PIC), like this:
|
||||
|
||||
.. code-block:: bash
|
||||
|
||||
$ ~/llvm ./configure --enable-pic --enable-optimized
|
||||
|
||||
llvm-config
|
||||
-----------
|
||||
|
||||
|
|
@ -99,13 +82,34 @@ is different from that of 'root', so even if ``llvm-config`` is in your
|
|||
Steps
|
||||
-----
|
||||
|
||||
Get 3.1 version of LLVM, build it. Make sure '--enable-pic' is passed to
|
||||
LLVM's 'configure'.
|
||||
1. Get and extract LLVM 3.2 source tarball from
|
||||
`llvm.org <http://llvm.org/releases/download.html#3.2>`_. Then, ``cd`` into
|
||||
the extracted directory.
|
||||
|
||||
Get llvmpy and install it:
|
||||
2. Run ``./configure --enable-optimized --prefix=LLVM_INSTALL_PATH``.
|
||||
|
||||
**Note**: Without the ``--enable-optimized`` flag, debug build will be
|
||||
selected. Unless you are developing LLVM or llvmpy, it is recommended
|
||||
that the flag is used to reduce build time and binary size.
|
||||
|
||||
.. code-block:: bash
|
||||
**Note**: Use prefix to select the installation path. It is recommended
|
||||
to separate your custom build from the default system package. Please
|
||||
replace ``LLVM_INSTALL_PATH`` with your own path.
|
||||
|
||||
$ git clone git@github.com:numba/llvmpy.git
|
||||
$ cd llvmpy $ python setup.py install
|
||||
3. Run ``REQUIRES_RTTI=1 make`` to build.
|
||||
|
||||
**Note**: With LLVM 3.2, the default build configuration has C++ RTTI
|
||||
disabled. However, llvmpy requires RTTI.
|
||||
|
||||
4. Get llvm-py and install it::
|
||||
|
||||
$ git clone git@github.com:llvmpy/llvmpy.git
|
||||
$ cd llvmpy
|
||||
$ LLVM_CONFIG_PATH=LLVM_INSTALL_PATH/bin/llvm-config python setup.py install
|
||||
|
||||
Run the tests::
|
||||
|
||||
$ python -c "import llvm; llvm.test()"
|
||||
|
||||
5. See documentation at 'http://www.llvmpy.org' and examples
|
||||
under 'test'.
|
||||
|
|
|
|||
|
|
@ -6,7 +6,7 @@ Written by `Chris Lattner <mailto:sabre@nondot.org>`_ and `Max
|
|||
Shawabkeh <http://max99x.com>`_
|
||||
|
||||
Introduction
|
||||
=========
|
||||
============
|
||||
|
||||
Welcome to the "Implementing a language with LLVM" tutorial. This
|
||||
tutorial runs through the implementation of a simple language, showing
|
||||
|
|
@ -115,13 +115,13 @@ following simple example computes `Fibonacci
|
|||
numbers <http://en.wikipedia.org/wiki/Fibonacci_number>`_:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
.. code-block:: text
|
||||
|
||||
# Compute the x'th fibonacci number.
|
||||
def fib(x):
|
||||
if x < 3:
|
||||
def fib(x)
|
||||
if x < 3
|
||||
return 1
|
||||
else:
|
||||
else
|
||||
return fib(x-1)+fib(x-2)
|
||||
|
||||
# This expression will compute the 40th number.
|
||||
|
|
@ -226,7 +226,7 @@ the line.
|
|||
|
||||
# Regular expressions that tokens and comments of our language.
|
||||
REGEX_NUMBER = re.compile('[0-9]+(?:.[0-9]+)?')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9]\ *')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9]*')
|
||||
REGEX_COMMENT = re.compile('#.*')
|
||||
|
||||
|
||||
|
|
|
|||
|
|
@ -772,7 +772,7 @@ Lexer
|
|||
|
||||
# Regular expressions that tokens and comments of our language.
|
||||
REGEX_NUMBER = re.compile('[0-9]+(?:\.[0-9]+)?')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9] *')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9]*')
|
||||
REGEX_COMMENT = re.compile('#.*')
|
||||
|
||||
def Tokenize(string):
|
||||
|
|
@ -811,7 +811,7 @@ Lexer
|
|||
yield CharacterToken(string[0])
|
||||
string = string[1:]
|
||||
|
||||
yield EOFToken()
|
||||
yield EOFToken()
|
||||
|
||||
|
||||
|
||||
|
|
|
|||
|
|
@ -1058,7 +1058,7 @@ Main driver code.
|
|||
'+': 20,
|
||||
'-': 20,
|
||||
'*': 40
|
||||
}
|
||||
}
|
||||
|
||||
# Run the main "interpreter loop".
|
||||
while True:
|
||||
|
|
|
|||
|
|
@ -217,7 +217,8 @@ Kaleidoscope looks something like this:
|
|||
br i1 %ifcond, label %then, label %else
|
||||
|
||||
then: ; preds = %entry
|
||||
%calltmp1 = call double @bar()
|
||||
%calltmp = call double @foo()
|
||||
br label %ifcont
|
||||
|
||||
else: ; preds = %entry
|
||||
%calltmp1 = call double @bar()
|
||||
|
|
|
|||
|
|
@ -847,7 +847,7 @@ Lexer
|
|||
|
||||
# Regular expressions that tokens and comments of our language.
|
||||
REGEX_NUMBER = re.compile('[0-9]+(?:\.[0-9]+)?')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9] *')
|
||||
REGEX_IDENTIFIER = re.compile('[a-zA-Z][a-zA-Z0-9]*')
|
||||
REGEX_COMMENT = re.compile('#.*')
|
||||
|
||||
def Tokenize(string):
|
||||
|
|
|
|||
|
|
@ -121,8 +121,8 @@ to talk about how LLVM represents stack variables.
|
|||
In LLVM, all memory accesses are explicit with load/store instructions,
|
||||
and it is carefully designed not to have (or need) an "address-of"
|
||||
operator. Notice how the type of the @G/@H global variables is actually
|
||||
"i32\ *" even though the variable is defined as "i32". What this means
|
||||
is that @G defines* space* for an i32 in the global data area, but its
|
||||
"i32\*" even though the variable is defined as "i32". What this means
|
||||
is that @G defines *space* for an i32 in the global data area, but its
|
||||
*name* actually refers to the address for that space. Stack variables
|
||||
work the same way, except that instead of being declared with global
|
||||
variable definitions, they are declared with the `LLVM alloca
|
||||
|
|
@ -133,11 +133,11 @@ instruction <http://www.llvm.org/docs/LangRef.html#i_alloca>`_:
|
|||
|
||||
define i32 @example() {
|
||||
entry:
|
||||
%X = alloca i32 ; type of %X is i32 *.
|
||||
%X = alloca i32 ; type of %X is i32*
|
||||
...
|
||||
%tmp = load i32* %X ; load the stack value %X from the stack.
|
||||
%tmp2 = add i32 %tmp, 1 ; increment it store i32 %tmp2,
|
||||
i32* %X ; store it back
|
||||
%tmp = load i32* %X ; load the stack value %X from the stack
|
||||
%tmp2 = add i32 %tmp, 1 ; increment it
|
||||
store i32 %tmp2, i32* %X ; store it back
|
||||
...
|
||||
|
||||
|
||||
|
|
@ -295,7 +295,7 @@ variables is a useful thing regardless of whether you will be mutating
|
|||
them. Here's a motivating example that shows how we could use these:
|
||||
|
||||
|
||||
.. code-block::
|
||||
.. code-block:: none
|
||||
|
||||
# Define ':' for sequencing: as a low-precedence operator that ignores operands
|
||||
# and just returns the RHS.
|
||||
|
|
@ -352,7 +352,7 @@ function that ensures that the allocas are created in the entry block of
|
|||
the function:
|
||||
|
||||
|
||||
.. code-block::
|
||||
.. code-block:: python
|
||||
|
||||
# Creates an alloca instruction in the entry block of the function. This is used
|
||||
# for mutable variables.
|
||||
|
|
@ -475,7 +475,7 @@ It is interesting to see what the code looks like before and after the
|
|||
mem2reg optimization runs. For example, this is the before/after code
|
||||
for our recursive fib function. Before the optimization:
|
||||
|
||||
.. code-block::
|
||||
.. code-block:: llvm
|
||||
|
||||
define double @fib(double %x) {
|
||||
entry:
|
||||
|
|
@ -515,7 +515,7 @@ still just make the PHI.
|
|||
|
||||
Here is the code after the mem2reg pass runs:
|
||||
|
||||
.. code-block::
|
||||
.. code-block:: llvm
|
||||
|
||||
define double @fib(double %x) {
|
||||
entry:
|
||||
|
|
@ -651,7 +651,7 @@ Now that we have an assignment operator, we can mutate loop variables
|
|||
and arguments. For example, we can now run code like this:
|
||||
|
||||
|
||||
.. code-block::
|
||||
.. code-block:: none
|
||||
|
||||
# Function to print a double.
|
||||
extern printd(x)
|
||||
|
|
|
|||
|
|
@ -1,6 +1,6 @@
|
|||
*************************************************
|
||||
***************************************************
|
||||
Chapter 8: Conclusion and other useful LLVM tidbits
|
||||
*************************************************
|
||||
***************************************************
|
||||
|
||||
Written by Chris Lattner
|
||||
|
||||
|
|
@ -106,7 +106,7 @@ generating LLVM IR. These are some of the more subtle things that may not be obv
|
|||
but are very useful if you want to take advantage of LLVM's capabilities.
|
||||
|
||||
Properties of the LLVM IR
|
||||
========================
|
||||
=========================
|
||||
|
||||
We have a couple common questions about code in the LLVM IR form - let's
|
||||
just get these out of the way right now, shall we?
|
||||
|
|
@ -164,7 +164,7 @@ This can make sense for specialized domains such as an in-kernel language.
|
|||
--------------
|
||||
|
||||
Safety Guarantees
|
||||
----------------
|
||||
-----------------
|
||||
|
||||
Many of the languages above are also "safe" languages: it is
|
||||
impossible for a program written in Java to corrupt its address space and
|
||||
|
|
@ -236,7 +236,7 @@ you desire in your front-end, on the language-specific AST.
|
|||
--------------
|
||||
|
||||
Tips and Tricks
|
||||
==============
|
||||
===============
|
||||
|
||||
There is a variety of useful tips and tricks that you come to
|
||||
know after working on/with LLVM that aren't obvious at first glance.
|
||||
|
|
|
|||
10
docs/source/doc/llpython/articles.rst
Normal file
10
docs/source/doc/llpython/articles.rst
Normal file
|
|
@ -0,0 +1,10 @@
|
|||
LLPython Articles
|
||||
=================
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 1
|
||||
|
||||
intro_llpython.rst
|
||||
nobitey_dev.rst
|
||||
ctmp_in_llpython.rst
|
||||
5
docs/source/doc/llpython/ctmp_in_llpython.rst
Normal file
5
docs/source/doc/llpython/ctmp_in_llpython.rst
Normal file
|
|
@ -0,0 +1,5 @@
|
|||
Compile-time Metaprogramming in LLPython
|
||||
========================================
|
||||
|
||||
In this article, we discuss how LLPython supports compile-time
|
||||
metaprogramming.
|
||||
9
docs/source/doc/llpython/index.rst
Normal file
9
docs/source/doc/llpython/index.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
LLPython Documentation
|
||||
======================
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 2
|
||||
|
||||
articles.rst
|
||||
reference.rst
|
||||
46
docs/source/doc/llpython/intro_llpython.rst
Normal file
46
docs/source/doc/llpython/intro_llpython.rst
Normal file
|
|
@ -0,0 +1,46 @@
|
|||
====================
|
||||
Introducing LLPython
|
||||
====================
|
||||
|
||||
In this article, we introduce the llpython package. The primary goal
|
||||
of the llpython package is to provide a Python dialect/subset that
|
||||
maps directly to LLVM code. LLPython differs from its originating
|
||||
LLVM translator, Numba, in the following aspects:
|
||||
|
||||
* LLPython code is not intended to work in Python if not translated
|
||||
and wrapped.
|
||||
* The LLPython translator only uses LLVM types.
|
||||
* LLPython is explicitly typed, and does not support type inference.
|
||||
LLPython does not support implicit casts, all casts must be explicit.
|
||||
* LLPython supports code that directly calls the C API, the Python C
|
||||
API, and the llvm.core.Builder methods.
|
||||
|
||||
Additionally, we designed the sub-package to have the following
|
||||
engineering properties:
|
||||
|
||||
* Usable from Python 2.7, and 3.X. At the time of writing, we plan
|
||||
to support Python 2.6.
|
||||
* Clean from Numba dependencies (other than llvmpy), and can be used
|
||||
as a standalone code generator without a full Numba installation.
|
||||
* Provides a series of Python bytecode passes that can be easily
|
||||
used by other projects.
|
||||
|
||||
|
||||
LLPython Origins
|
||||
================
|
||||
|
||||
We developed LLPython with the initial goal of simplifying writing
|
||||
LLVM code.
|
||||
|
||||
|
||||
LLPython Internals
|
||||
==================
|
||||
|
||||
In this section, we describe the various passes performed by the
|
||||
LLPython translator.
|
||||
|
||||
|
||||
Conclusions
|
||||
===========
|
||||
|
||||
LLPython is neat.
|
||||
6
docs/source/doc/llpython/llpython.byte_control.rst
Normal file
6
docs/source/doc/llpython/llpython.byte_control.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=====================
|
||||
llpython.byte_control
|
||||
=====================
|
||||
|
||||
.. automodule:: llpython.byte_control
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.byte_flow.rst
Normal file
6
docs/source/doc/llpython/llpython.byte_flow.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
==================
|
||||
llpython.byte_flow
|
||||
==================
|
||||
|
||||
.. automodule:: llpython.byte_flow
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.byte_translator.rst
Normal file
6
docs/source/doc/llpython/llpython.byte_translator.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
========================
|
||||
llpython.byte_translator
|
||||
========================
|
||||
|
||||
.. automodule:: llpython.byte_translator
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.bytecode_visitor.rst
Normal file
6
docs/source/doc/llpython/llpython.bytecode_visitor.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=========================
|
||||
llpython.bytecode_visitor
|
||||
=========================
|
||||
|
||||
.. automodule:: llpython.bytecode_visitor
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.bytetype.rst
Normal file
6
docs/source/doc/llpython/llpython.bytetype.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=================
|
||||
llpython.bytetype
|
||||
=================
|
||||
|
||||
.. automodule:: llpython.bytetype
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.control_flow.rst
Normal file
6
docs/source/doc/llpython/llpython.control_flow.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=====================
|
||||
llpython.control_flow
|
||||
=====================
|
||||
|
||||
.. automodule:: llpython.control_flow
|
||||
:members:
|
||||
|
|
@ -0,0 +1,6 @@
|
|||
=============================
|
||||
llpython.gen_bytecode_visitor
|
||||
=============================
|
||||
|
||||
.. automodule:: llpython.gen_bytecode_visitor
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.nobitey.rst
Normal file
6
docs/source/doc/llpython/llpython.nobitey.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
================
|
||||
llpython.nobitey
|
||||
================
|
||||
|
||||
.. automodule:: llpython.nobitey
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.opcode_util.rst
Normal file
6
docs/source/doc/llpython/llpython.opcode_util.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
====================
|
||||
llpython.opcode_util
|
||||
====================
|
||||
|
||||
.. automodule:: llpython.opcode_util
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.phi_injector.rst
Normal file
6
docs/source/doc/llpython/llpython.phi_injector.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
=====================
|
||||
llpython.phi_injector
|
||||
=====================
|
||||
|
||||
.. automodule:: llpython.phi_injector
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.pyaddfunc.rst
Normal file
6
docs/source/doc/llpython/llpython.pyaddfunc.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
==================
|
||||
llpython.pyaddfunc
|
||||
==================
|
||||
|
||||
.. automodule:: llpython.pyaddfunc
|
||||
:members:
|
||||
6
docs/source/doc/llpython/llpython.rst
Normal file
6
docs/source/doc/llpython/llpython.rst
Normal file
|
|
@ -0,0 +1,6 @@
|
|||
========
|
||||
llpython
|
||||
========
|
||||
|
||||
.. automodule:: llpython
|
||||
:members:
|
||||
5
docs/source/doc/llpython/nobitey_dev.rst
Normal file
5
docs/source/doc/llpython/nobitey_dev.rst
Normal file
|
|
@ -0,0 +1,5 @@
|
|||
nobitey: Using ctypes and llvmpy to Bypass ctypes
|
||||
=================================================
|
||||
|
||||
In this article, we show how nobitey uses llvmpy to eliminate the
|
||||
ctypes call overhead.
|
||||
21
docs/source/doc/llpython/reference.rst
Normal file
21
docs/source/doc/llpython/reference.rst
Normal file
|
|
@ -0,0 +1,21 @@
|
|||
LLPython Module Reference
|
||||
=========================
|
||||
|
||||
Contents:
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:maxdepth: 2
|
||||
|
||||
llpython.rst
|
||||
llpython.bytecode_visitor.rst
|
||||
llpython.byte_control.rst
|
||||
llpython.byte_flow.rst
|
||||
llpython.byte_translator.rst
|
||||
llpython.bytetype.rst
|
||||
llpython.control_flow.rst
|
||||
llpython.gen_bytecode_visitor.rst
|
||||
llpython.nobitey.rst
|
||||
llpython.opcode_util.rst
|
||||
llpython.phi_injector.rst
|
||||
llpython.pyaddfunc.rst
|
||||
|
|
@ -56,3 +56,10 @@ Add an attribute ``attr`` to the argument, from the set listed above.
|
|||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Remove the attribute ``attr`` of the argument.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Argument
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -28,3 +28,10 @@ A ``Type`` object representing the type of the element of the array.
|
|||
[read-only]
|
||||
|
||||
The number of elements in the array.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.ArrayType
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -42,3 +42,10 @@ The parent function of this basicblock.
|
|||
~~~~~~~~~~~~~~~~
|
||||
|
||||
A list of instructions in this basicblock.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.BasicBlock
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -409,3 +409,10 @@ positioned.
|
|||
~~~~~~~~~
|
||||
|
||||
Deprecated. Same as ``basic_block``
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Builder
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -4,6 +4,9 @@
|
|||
| title: Constant (llvm.core) |
|
||||
+-------------------------------+
|
||||
|
||||
llvm.core.Constant
|
||||
==================
|
||||
|
||||
``Constant``-s represents constants that appear within the code. The
|
||||
values of such objects are known at creation time. Constants can be
|
||||
created from Python constants. A constant expression is also a constant
|
||||
|
|
@ -23,331 +26,338 @@ some examples:
|
|||
|
||||
tr = Type.float()
|
||||
|
||||
r1 = Constant.real(tr, "3.141592") # create from a string r2 =
|
||||
Constant.real(tr, 1.61803399) # create from a Python float {%
|
||||
endhighlight %}
|
||||
r1 = Constant.real(tr, "3.141592") # create from a string
|
||||
r2 = Constant.real(tr, 1.61803399) # create from a Python float
|
||||
|
||||
# llvm.core.Constant
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
Static factory methods
|
||||
----------------------
|
||||
# llvm.core.Constant
|
||||
- This will become a table of contents (this text will be scraped).
|
||||
{:toc}
|
||||
|
||||
``null(ty)``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
A null value (all zeros) of type ``ty``
|
||||
Static factory methods
|
||||
----------------------
|
||||
|
||||
``all_ones(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
``null(ty)``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
All 1's value of type ``ty``
|
||||
A null value (all zeros) of type ``ty``
|
||||
|
||||
``undef(ty)``
|
||||
~~~~~~~~~~~~~
|
||||
``all_ones(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
An undefined value of type ``ty``
|
||||
All 1's value of type ``ty``
|
||||
|
||||
``int(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
``undef(ty)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Integer of type ``ty``, with value ``value`` (a Python int or long)
|
||||
An undefined value of type ``ty``
|
||||
|
||||
``int_signextend(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
``int(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Integer of signed type ``ty`` (use for signed types)
|
||||
Integer of type ``ty``, with value ``value`` (a Python int or long)
|
||||
|
||||
``real(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~~
|
||||
``int_signextend(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Floating point value of type ``ty``, with value ``value`` (a Python
|
||||
float)
|
||||
Integer of signed type ``ty`` (use for signed types)
|
||||
|
||||
``stringz(value)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
``real(ty, value)``
|
||||
~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
A null-terminated string. ``value`` is a Python string
|
||||
Floating point value of type ``ty``, with value ``value`` (a Python
|
||||
float)
|
||||
|
||||
``string(value)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
``stringz(value)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
As ``string(ty)``, but not null terminated
|
||||
A null-terminated string. ``value`` is a Python string
|
||||
|
||||
``array(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
``string(value)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Array of type ``ty``, initialized with ``consts`` (an iterable yielding
|
||||
``Constant`` objects of the appropriate type)
|
||||
As ``string(ty)``, but not null terminated
|
||||
|
||||
``struct(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
``array(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Struct (unpacked) of type ``ty``, initialized with ``consts`` (an
|
||||
iterable yielding ``Constant`` objects of the appropriate type)
|
||||
Array of type ``ty``, initialized with ``consts`` (an iterable yielding
|
||||
``Constant`` objects of the appropriate type)
|
||||
|
||||
``packed_struct(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
``struct(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
As ``struct(ty, consts)`` but packed
|
||||
Struct (unpacked) of type ``ty``, initialized with ``consts`` (an
|
||||
iterable yielding ``Constant`` objects of the appropriate type)
|
||||
|
||||
``vector(consts)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
``packed_struct(ty, consts)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Vector, initialized with ``consts`` (an iterable yielding ``Constant``
|
||||
objects of the appropriate type)
|
||||
As ``struct(ty, consts)`` but packed
|
||||
|
||||
``sizeof(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
``vector(consts)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Constant value representing the sizeof the type ``ty``
|
||||
Vector, initialized with ``consts`` (an iterable yielding ``Constant``
|
||||
objects of the appropriate type)
|
||||
|
||||
Methods
|
||||
-------
|
||||
``sizeof(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
The following operations on constants are supported. For more details on
|
||||
any operation, consult the `Constant
|
||||
Expressions <http://www.llvm.org/docs/LangRef.html#constantexprs>`_
|
||||
section of the LLVM Language Reference.
|
||||
Constant value representing the sizeof the type ``ty``
|
||||
|
||||
``k.neg()``
|
||||
~~~~~~~~~~~
|
||||
Methods
|
||||
-------
|
||||
|
||||
negation, same as ``0 - k``
|
||||
The following operations on constants are supported. For more details on
|
||||
any operation, consult the `Constant
|
||||
Expressions <http://www.llvm.org/docs/LangRef.html#constantexprs>`_
|
||||
section of the LLVM Language Reference.
|
||||
|
||||
``k.not_()``
|
||||
~~~~~~~~~~~~
|
||||
``k.neg()``
|
||||
~~~~~~~~~~~
|
||||
|
||||
1's complement of ``k``. Note trailing underscore.
|
||||
negation, same as ``0 - k``
|
||||
|
||||
``k.add(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
``k.not_()``
|
||||
~~~~~~~~~~~~
|
||||
|
||||
``k + k2``, where ``k`` and ``k2`` are integers.
|
||||
1's complement of ``k``. Note trailing underscore.
|
||||
|
||||
``k.fadd(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.add(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
``k + k2``, where ``k`` and ``k2`` are floating-point.
|
||||
``k + k2``, where ``k`` and ``k2`` are integers.
|
||||
|
||||
``k.sub(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
``k.fadd(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
``k - k2``, where ``k`` and ``k2`` are integers.
|
||||
``k + k2``, where ``k`` and ``k2`` are floating-point.
|
||||
|
||||
``k.fsub(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.sub(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
``k - k2``, where ``k`` and ``k2`` are floating-point.
|
||||
``k - k2``, where ``k`` and ``k2`` are integers.
|
||||
|
||||
``k.mul(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
``k.fsub(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
``k * k2``, where ``k`` and ``k2`` are integers.
|
||||
``k - k2``, where ``k`` and ``k2`` are floating-point.
|
||||
|
||||
``k.fmul(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.mul(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
``k * k2``, where ``k`` and ``k2`` are floating-point.
|
||||
``k * k2``, where ``k`` and ``k2`` are integers.
|
||||
|
||||
``k.udiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.fmul(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Quotient of unsigned division of ``k`` with ``k2``
|
||||
``k * k2``, where ``k`` and ``k2`` are floating-point.
|
||||
|
||||
``k.sdiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.udiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Quotient of signed division of ``k`` with ``k2``
|
||||
Quotient of unsigned division of ``k`` with ``k2``
|
||||
|
||||
``k.fdiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.sdiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Quotient of floating point division of ``k`` with ``k2``
|
||||
Quotient of signed division of ``k`` with ``k2``
|
||||
|
||||
``k.urem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.fdiv(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Reminder of unsigned division of ``k`` with ``k2``
|
||||
Quotient of floating point division of ``k`` with ``k2``
|
||||
|
||||
``k.srem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.urem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Reminder of signed division of ``k`` with ``k2``
|
||||
Reminder of unsigned division of ``k`` with ``k2``
|
||||
|
||||
``k.frem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.srem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Reminder of floating point division of ``k`` with ``k2``
|
||||
Reminder of signed division of ``k`` with ``k2``
|
||||
|
||||
``k.and_(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.frem(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Bitwise and of ``k`` and ``k2``. Note trailing underscore.
|
||||
Reminder of floating point division of ``k`` with ``k2``
|
||||
|
||||
``k.or_(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
``k.and_(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Bitwise or of ``k`` and ``k2``. Note trailing underscore.
|
||||
Bitwise and of ``k`` and ``k2``. Note trailing underscore.
|
||||
|
||||
``k.xor(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
``k.or_(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Bitwise exclusive-or of ``k`` and ``k2``.
|
||||
Bitwise or of ``k`` and ``k2``. Note trailing underscore.
|
||||
|
||||
``k.icmp(icmp, k2)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
``k.xor(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Compare ``k`` with ``k2`` using the predicate ``icmp``. See
|
||||
`here <comparision.html#icmp>`_ for list of predicates for integer
|
||||
operands.
|
||||
Bitwise exclusive-or of ``k`` and ``k2``.
|
||||
|
||||
``k.fcmp(fcmp, k2)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
``k.icmp(icmp, k2)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Compare ``k`` with ``k2`` using the predicate ``fcmp``. See
|
||||
`here <comparision.html#fcmp>`_ for list of predicates for real
|
||||
operands.
|
||||
Compare ``k`` with ``k2`` using the predicate ``icmp``. See
|
||||
`here <comparision.html#icmp>`_ for list of predicates for integer
|
||||
operands.
|
||||
|
||||
``k.shl(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
``k.fcmp(fcmp, k2)``
|
||||
~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Shift ``k`` left by ``k2`` bits.
|
||||
Compare ``k`` with ``k2`` using the predicate ``fcmp``. See
|
||||
`here <comparision.html#fcmp>`_ for list of predicates for real
|
||||
operands.
|
||||
|
||||
``k.lshr(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.shl(k2)``
|
||||
~~~~~~~~~~~~~
|
||||
|
||||
Shift ``k`` logically right by ``k2`` bits (new bits are 0s).
|
||||
Shift ``k`` left by ``k2`` bits.
|
||||
|
||||
``k.ashr(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.lshr(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Shift ``k`` arithmetically right by ``k2`` bits (new bits are same as
|
||||
previous sign bit).
|
||||
Shift ``k`` logically right by ``k2`` bits (new bits are 0s).
|
||||
|
||||
``k.gep(indices)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
``k.ashr(k2)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
GEP, see `LLVM docs <http://www.llvm.org/docs/GetElementPtr.html>`_.
|
||||
Shift ``k`` arithmetically right by ``k2`` bits (new bits are same as
|
||||
previous sign bit).
|
||||
|
||||
``k.trunc(ty)``
|
||||
~~~~~~~~~~~~~~~
|
||||
``k.gep(indices)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Truncate ``k`` to a type ``ty`` of lower bitwidth.
|
||||
GEP, see `LLVM docs <http://www.llvm.org/docs/GetElementPtr.html>`_.
|
||||
|
||||
``k.sext(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.trunc(ty)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Sign extend ``k`` to a type ``ty`` of higher bitwidth, while extending
|
||||
the sign bit.
|
||||
Truncate ``k`` to a type ``ty`` of lower bitwidth.
|
||||
|
||||
``k.zext(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
``k.sext(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Sign extend ``k`` to a type ``ty`` of higher bitwidth, all new bits are
|
||||
0s.
|
||||
Sign extend ``k`` to a type ``ty`` of higher bitwidth, while extending
|
||||
the sign bit.
|
||||
|
||||
``k.fptrunc(ty)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
``k.zext(ty)``
|
||||
~~~~~~~~~~~~~~
|
||||
|
||||
Truncate floating point constant ``k`` to floating point type ``ty`` of
|
||||
lower size than k's.
|
||||
Sign extend ``k`` to a type ``ty`` of higher bitwidth, all new bits are
|
||||
0s.
|
||||
|
||||
``k.fpext(ty)``
|
||||
~~~~~~~~~~~~~~~
|
||||
``k.fptrunc(ty)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Extend floating point constant ``k`` to floating point type ``ty`` of
|
||||
higher size than k's.
|
||||
Truncate floating point constant ``k`` to floating point type ``ty`` of
|
||||
lower size than k's.
|
||||
|
||||
``k.uitofp(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
``k.fpext(ty)``
|
||||
~~~~~~~~~~~~~~~
|
||||
|
||||
Convert an unsigned integer constant ``k`` to floating point constant of
|
||||
type ``ty``.
|
||||
Extend floating point constant ``k`` to floating point type ``ty`` of
|
||||
higher size than k's.
|
||||
|
||||
``k.sitofp(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
``k.uitofp(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a signed integer constant ``k`` to floating point constant of
|
||||
type ``ty``.
|
||||
Convert an unsigned integer constant ``k`` to floating point constant of
|
||||
type ``ty``.
|
||||
|
||||
``k.fptoui(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
``k.sitofp(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a floating point constant ``k`` to an unsigned integer constant
|
||||
of type ``ty``.
|
||||
Convert a signed integer constant ``k`` to floating point constant of
|
||||
type ``ty``.
|
||||
|
||||
``k.fptosi(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
``k.fptoui(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a floating point constant ``k`` to a signed integer constant of
|
||||
type ``ty``.
|
||||
Convert a floating point constant ``k`` to an unsigned integer constant
|
||||
of type ``ty``.
|
||||
|
||||
``k.ptrtoint(ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
``k.fptosi(ty)``
|
||||
~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert a pointer constant ``k`` to an integer constant of type ``ty``.
|
||||
Convert a floating point constant ``k`` to a signed integer constant of
|
||||
type ``ty``.
|
||||
|
||||
``k.inttoptr(ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
``k.ptrtoint(ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert an integer constant ``k`` to a pointer constant of type ``ty``.
|
||||
Convert a pointer constant ``k`` to an integer constant of type ``ty``.
|
||||
|
||||
``k.bitcast(ty)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
``k.inttoptr(ty)``
|
||||
~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Convert ``k`` to a (equal-width) constant of type ``ty``.
|
||||
Convert an integer constant ``k`` to a pointer constant of type ``ty``.
|
||||
|
||||
``k.select(cond,k2,k3)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
``k.bitcast(ty)``
|
||||
~~~~~~~~~~~~~~~~~
|
||||
|
||||
Replace value with ``k2`` if the 1-bit integer constant ``cond`` is 1,
|
||||
else with ``k3``.
|
||||
Convert ``k`` to a (equal-width) constant of type ``ty``.
|
||||
|
||||
``k.extract_element(idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
``k.select(cond,k2,k3)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Extract value at ``idx`` (integer constant) from a vector constant
|
||||
``k``.
|
||||
Replace value with ``k2`` if the 1-bit integer constant ``cond`` is 1,
|
||||
else with ``k3``.
|
||||
|
||||
``k.insert_element(k2,idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
``k.extract_element(idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Insert value ``k2`` (scalar constant) at index ``idx`` (integer
|
||||
constant) of vector constant ``k``.
|
||||
Extract value at ``idx`` (integer constant) from a vector constant
|
||||
``k``.
|
||||
|
||||
``k.shuffle_vector(k2,mask)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
``k.insert_element(k2,idx)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
Shuffle vector constant ``k`` based on vector constants ``k2`` and
|
||||
``mask``.
|
||||
Insert value ``k2`` (scalar constant) at index ``idx`` (integer
|
||||
constant) of vector constant ``k``.
|
||||
|
||||
--------------
|
||||
``k.shuffle_vector(k2,mask)``
|
||||
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
|
||||
|
||||
# Other Constant Classes
|
||||
The following subclasses of ``Constant`` do not provide additional
|
||||
methods, **they serve only to provide richer type information.**
|
||||
Shuffle vector constant ``k`` based on vector constants ``k2`` and
|
||||
``mask``.
|
||||
|
||||
Subclass \| LLVM C++ Class \| Remarks \|
|
||||
---------\|----------------\|---------\| ``ConstantExpr`` \|
|
||||
``llvmConstantExpr`` \| A constant expression \|
|
||||
``ConstantAggregateZero``\ \| ``llvmConstantAggregateZero``\ \| All-zero
|
||||
constant \| ``ConstantInt``\ \| ``llvmConstantInt``\ \| An integer
|
||||
constant \| ``ConstantFP``\ \| ``llvmConstantFP``\ \| A floating-point
|
||||
constant \| ``ConstantArray``\ \| ``llvmConstantArray``\ \| An array
|
||||
constant \| ``ConstantStruct``\ \| ``llvmConstantStruct``\ \| A
|
||||
structure constant \| ``ConstantVector``\ \| ``llvmConstantVector``\ \|
|
||||
A vector constant \| ``ConstantPointerNull``\ \|
|
||||
``llvmConstantPointerNull``\ \| All-zero pointer constant \|
|
||||
``UndefValue``\ \| ``llvmUndefValue``\ \| corresponds to ``undef`` of
|
||||
LLVM IR \|
|
||||
--------------
|
||||
|
||||
These types are helpful in ``isinstance`` checks, like so:
|
||||
# Other Constant Classes
|
||||
The following subclasses of ``Constant`` do not provide additional
|
||||
methods, **they serve only to provide richer type information.**
|
||||
|
||||
{% highlight python %} ti = Type.int(32) k1 = Constant.int(ti, 42) #
|
||||
int32_t k1 = 42; k2 = Constant.array(ti, [k1, k1]) # int32_t k2[] = {
|
||||
k1, k1 };
|
||||
Subclass \| LLVM C++ Class \| Remarks \|
|
||||
---------\|----------------\|---------\| ``ConstantExpr`` \|
|
||||
``llvmConstantExpr`` \| A constant expression \|
|
||||
``ConstantAggregateZero``\ \| ``llvmConstantAggregateZero``\ \| All-zero
|
||||
constant \| ``ConstantInt``\ \| ``llvmConstantInt``\ \| An integer
|
||||
constant \| ``ConstantFP``\ \| ``llvmConstantFP``\ \| A floating-point
|
||||
constant \| ``ConstantArray``\ \| ``llvmConstantArray``\ \| An array
|
||||
constant \| ``ConstantStruct``\ \| ``llvmConstantStruct``\ \| A
|
||||
structure constant \| ``ConstantVector``\ \| ``llvmConstantVector``\ \|
|
||||
A vector constant \| ``ConstantPointerNull``\ \|
|
||||
``llvmConstantPointerNull``\ \| All-zero pointer constant \|
|
||||
``UndefValue``\ \| ``llvmUndefValue``\ \| corresponds to ``undef`` of
|
||||
LLVM IR \|
|
||||
|
||||
assert isinstance(k1, ConstantInt) assert isinstance(k2, ConstantArray)
|
||||
These types are helpful in ``isinstance`` checks, like so:
|
||||
|
||||
{% highlight python %} ti = Type.int(32) k1 = Constant.int(ti, 42) #
|
||||
int32_t k1 = 42; k2 = Constant.array(ti, [k1, k1]) # int32_t k2[] = {
|
||||
k1, k1 };
|
||||
|
||||
assert isinstance(k1, ConstantInt) assert isinstance(k2, ConstantArray)
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Constant
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -149,3 +149,10 @@ function bodies.
|
|||
|
||||
Verifies the function. See `LLVM
|
||||
docs <http://llvm.org/docs/Passes.html#verify>`_.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Function
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -46,3 +46,10 @@ the function. Used like this:
|
|||
Type.int(), Type.int() ] ) for arg in func_type.args: assert arg.kind
|
||||
== TYPE_INTEGER assert arg == Type.int() assert func_type.arg_count
|
||||
== len(func_type.args)
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.FunctionType
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -95,3 +95,9 @@ A power-of-2 integer indicating the boundary to align to.
|
|||
|
||||
The module object to which this global belongs to.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.GlobalValue
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -4,6 +4,9 @@
|
|||
| title: GlobalVariable (llvm.core) |
|
||||
+-------------------------------------+
|
||||
|
||||
llvm.core.GlobalVariable
|
||||
========================
|
||||
|
||||
Global variables (``llvm.core.GlobalVariable``) are subclasses of
|
||||
`llvm.core.GlobalValue <llvm.core.GlobalValue.html>`_ and represent
|
||||
module-level variables. These can have optional initializers and can be
|
||||
|
|
@ -37,3 +40,10 @@ class, or by using the static method ``GlobalVariable.new``.
|
|||
# list all global variables in a module
|
||||
for gv in module_obj.global_variables: print gv.name, "of type",
|
||||
gv.type
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.GlobalVariable
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -240,3 +240,10 @@ Properties
|
|||
|
||||
The predicate of the compare instruction, one of the ``ICMP_*`` or
|
||||
``FCMP_*`` constants.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Instruction
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -21,3 +21,10 @@ Properties
|
|||
[read-only]
|
||||
|
||||
The width of the integer type, in number of bits.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.IntegerType
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -4,16 +4,26 @@
|
|||
| title: Module (llvm.core) |
|
||||
+-----------------------------+
|
||||
|
||||
llvm.core.Module
|
||||
================
|
||||
|
||||
Modules are top-level container objects. You need to create a module
|
||||
object first, before you can add global variables, aliases or functions.
|
||||
Modules are created using the static method ``Module.new``:
|
||||
|
||||
|
||||
.. code-block:: python
|
||||
|
||||
#!/usr/bin/env python
|
||||
|
||||
from llvm import \* from llvm.core import \*
|
||||
from llvm import *
|
||||
from llvm.core import *
|
||||
|
||||
# create a module
|
||||
my_module = Module.new('my_module')
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Module
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -29,3 +29,10 @@ The address space of the pointer.
|
|||
|
||||
A `Type <llvm.core.Type.html>`_ object representing the type of the
|
||||
value pointed to.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.PointerType
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -0,0 +1,8 @@
|
|||
llvm.core.StructType
|
||||
====================
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.StructType
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
@ -126,3 +126,10 @@ Example:
|
|||
|
||||
assert Type.int().kind == TYPE_INTEGER assert
|
||||
Type.void().kind == TYPE_VOID
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Type
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -37,3 +37,10 @@ The list of operands (values, of type
|
|||
|
||||
The number of operands that this value referes to. Same as
|
||||
``len(uses.operands)`` but faster if you just want the count.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.User
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -63,3 +63,10 @@ representation.
|
|||
``Value`` objects can be compared for equality. Internally, this
|
||||
converts both arguments into their LLVM assembly representations and
|
||||
compares the resultant strings.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.Value
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
|
|
@ -29,3 +29,10 @@ element of the vector.
|
|||
[read-only]
|
||||
|
||||
The number of elements in the vector.
|
||||
|
||||
|
||||
Automatically Generated Documentation
|
||||
-------------------------------------
|
||||
.. autoclass:: llvm.core.VectorType
|
||||
:members:
|
||||
:undoc-members:
|
||||
|
|
|
|||
12
docs/source/doc/llvm_cbuilder.rst
Normal file
12
docs/source/doc/llvm_cbuilder.rst
Normal file
|
|
@ -0,0 +1,12 @@
|
|||
llvm_cbuilder
|
||||
=============
|
||||
|
||||
llvm_cbuilder is a set of Python-contexts you can use to write C-like
|
||||
constructs in Python which generates llvmpy code directly.
|
||||
|
||||
Similar to llpython it allows you to build llvm IR without using the
|
||||
llvmpy interface directly.
|
||||
|
||||
Look in the llvm_cbuilder tests directory for examples of use.
|
||||
|
||||
|
||||
|
|
@ -28,6 +28,7 @@ follow these steps:
|
|||
- add a *basic block* to the function
|
||||
- using a helper object called an *instruction builder*, add two
|
||||
instructions into the basic block:
|
||||
|
||||
- an instruction to add the two
|
||||
arguments and store the result into a temporary variable
|
||||
- a return
|
||||
|
|
|
|||
9
docs/source/doc/llvmcore.rst
Normal file
9
docs/source/doc/llvmcore.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.core
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.core.*
|
||||
9
docs/source/doc/llvmee.rst
Normal file
9
docs/source/doc/llvmee.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.ee
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.ee.*
|
||||
9
docs/source/doc/llvmpasses.rst
Normal file
9
docs/source/doc/llvmpasses.rst
Normal file
|
|
@ -0,0 +1,9 @@
|
|||
********************************
|
||||
llvm.passes
|
||||
********************************
|
||||
|
||||
.. toctree::
|
||||
:titlesonly:
|
||||
:glob:
|
||||
|
||||
llvm.passes.*
|
||||
|
|
@ -3,8 +3,8 @@
|
|||
You can adapt this file completely to your liking, but it should at least
|
||||
contain the root `toctree` directive.
|
||||
|
||||
Documentation for llvmpy
|
||||
=================
|
||||
llvmpy
|
||||
======
|
||||
|
||||
Contents:
|
||||
|
||||
|
|
@ -13,11 +13,16 @@ Contents:
|
|||
:maxdepth: 2
|
||||
|
||||
doc/userguide.rst
|
||||
doc/llvm_cbuilder.rst
|
||||
doc/llpython/index.rst
|
||||
doc/examples.rst
|
||||
doc/llvmcore.rst
|
||||
doc/llvmee.rst
|
||||
doc/llvmpasses.rst
|
||||
|
||||
|
||||
Indices and tables
|
||||
==================
|
||||
------------------
|
||||
|
||||
* :ref:`genindex`
|
||||
* :ref:`modindex`
|
||||
|
|
|
|||
152
example/vector_instr.py
Normal file
152
example/vector_instr.py
Normal file
|
|
@ -0,0 +1,152 @@
|
|||
'''
|
||||
This example shows:
|
||||
1) how to use vector instructions
|
||||
2) how to take advantage of LLVM loop vectorization to transform scalar
|
||||
operations to vector operations
|
||||
'''
|
||||
|
||||
from __future__ import print_function
|
||||
import llvm.core as lc
|
||||
import llvm.ee as le
|
||||
import llvm.passes as lp
|
||||
from ctypes import CFUNCTYPE, POINTER, c_int, c_float
|
||||
|
||||
def build_manual_vector():
|
||||
mod = lc.Module.new('manual.vector')
|
||||
intty = lc.Type.int(32)
|
||||
vecty = lc.Type.vector(lc.Type.float(), 4)
|
||||
aryty = lc.Type.pointer(lc.Type.float())
|
||||
fnty = lc.Type.function(lc.Type.void(), [aryty, aryty, aryty, intty])
|
||||
fn = mod.add_function(fnty, name='vector_add')
|
||||
bbentry = fn.append_basic_block('entry')
|
||||
bbloopcond = fn.append_basic_block('loop.cond')
|
||||
bbloopbody = fn.append_basic_block('loop.body')
|
||||
bbexit = fn.append_basic_block('exit')
|
||||
builder = lc.Builder.new(bbentry)
|
||||
|
||||
# populate function body
|
||||
in1, in2, out, size = fn.args
|
||||
ZERO = lc.Constant.null(intty)
|
||||
loopi_ptr = builder.alloca(intty)
|
||||
builder.store(ZERO, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbloopcond)
|
||||
|
||||
loopi = builder.load(loopi_ptr)
|
||||
loopcond = builder.icmp(lc.ICMP_ULT, loopi, size)
|
||||
|
||||
builder.cbranch(loopcond, bbloopbody, bbexit)
|
||||
builder.position_at_end(bbloopbody)
|
||||
|
||||
vecaryty = lc.Type.pointer(vecty)
|
||||
in1asvec = builder.bitcast(builder.gep(in1, [loopi]), vecaryty)
|
||||
in2asvec = builder.bitcast(builder.gep(in2, [loopi]), vecaryty)
|
||||
outasvec = builder.bitcast(builder.gep(out, [loopi]), vecaryty)
|
||||
|
||||
vec1 = builder.load(in1asvec)
|
||||
vec2 = builder.load(in2asvec)
|
||||
|
||||
vecout = builder.fadd(vec1, vec2)
|
||||
|
||||
builder.store(vecout, outasvec)
|
||||
|
||||
next = builder.add(loopi, lc.Constant.int(intty, 4))
|
||||
builder.store(next, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbexit)
|
||||
|
||||
builder.ret_void()
|
||||
|
||||
return mod, fn
|
||||
|
||||
|
||||
def build_auto_vector():
|
||||
mod = lc.Module.new('auto.vector')
|
||||
# Loop vectorize is sensitive to the size of the index size(!?)
|
||||
intty = lc.Type.int(tuple.__itemsize__ * 8)
|
||||
aryty = lc.Type.pointer(lc.Type.float())
|
||||
fnty = lc.Type.function(lc.Type.void(), [aryty, aryty, aryty, intty])
|
||||
fn = mod.add_function(fnty, name='vector_add')
|
||||
bbentry = fn.append_basic_block('entry')
|
||||
bbloopcond = fn.append_basic_block('loop.cond')
|
||||
bbloopbody = fn.append_basic_block('loop.body')
|
||||
bbexit = fn.append_basic_block('exit')
|
||||
builder = lc.Builder.new(bbentry)
|
||||
|
||||
# populate function body
|
||||
in1, in2, out, size = fn.args
|
||||
in1.add_attribute(lc.ATTR_NO_ALIAS)
|
||||
in2.add_attribute(lc.ATTR_NO_ALIAS)
|
||||
out.add_attribute(lc.ATTR_NO_ALIAS)
|
||||
ZERO = lc.Constant.null(intty)
|
||||
loopi_ptr = builder.alloca(intty)
|
||||
builder.store(ZERO, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbloopcond)
|
||||
|
||||
loopi = builder.load(loopi_ptr)
|
||||
loopcond = builder.icmp(lc.ICMP_ULT, loopi, size)
|
||||
|
||||
builder.cbranch(loopcond, bbloopbody, bbexit)
|
||||
builder.position_at_end(bbloopbody)
|
||||
|
||||
in1elem = builder.load(builder.gep(in1, [loopi]))
|
||||
in2elem = builder.load(builder.gep(in2, [loopi]))
|
||||
|
||||
outelem = builder.fadd(in1elem, in2elem)
|
||||
|
||||
builder.store(outelem, builder.gep(out, [loopi]))
|
||||
|
||||
next = builder.add(loopi, lc.Constant.int(intty, 1))
|
||||
builder.store(next, loopi_ptr)
|
||||
|
||||
builder.branch(bbloopcond)
|
||||
builder.position_at_end(bbexit)
|
||||
|
||||
builder.ret_void()
|
||||
|
||||
return mod, fn
|
||||
|
||||
def example(title, module_builder, opt):
|
||||
print(title.center(80, '='))
|
||||
mod, fn = module_builder()
|
||||
|
||||
eb = le.EngineBuilder.new(mod).opt(3)
|
||||
if opt:
|
||||
print('opt')
|
||||
tm = eb.select_target()
|
||||
pms = lp.build_pass_managers(mod=mod, tm=tm, opt=3, loop_vectorize=True,
|
||||
fpm=False)
|
||||
pms.pm.run(mod)
|
||||
|
||||
print(mod)
|
||||
print(mod.to_native_assembly())
|
||||
|
||||
engine = eb.create()
|
||||
ptr = engine.get_pointer_to_function(fn)
|
||||
|
||||
callable = CFUNCTYPE(None, POINTER(c_float), POINTER(c_float),
|
||||
POINTER(c_float), c_int)(ptr)
|
||||
|
||||
N = 20
|
||||
in1 = (c_float * N)(*range(N))
|
||||
in2 = (c_float * N)(*range(N))
|
||||
out = (c_float * N)()
|
||||
|
||||
print('in1: ', list(in1))
|
||||
print('in1: ', list(in2))
|
||||
|
||||
callable(in1, in2, out, N)
|
||||
|
||||
print('out', list(out))
|
||||
|
||||
|
||||
def main():
|
||||
example('manual vector function', build_manual_vector, False)
|
||||
example('auto vector function', build_auto_vector, True)
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
0
llpython/__init__.py
Normal file
0
llpython/__init__.py
Normal file
125
llpython/byte_control.py
Normal file
125
llpython/byte_control.py
Normal file
|
|
@ -0,0 +1,125 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import opcode
|
||||
from . import opcode_util
|
||||
import pprint
|
||||
|
||||
from .bytecode_visitor import BasicBlockVisitor, BenignBytecodeVisitorMixin
|
||||
from .control_flow import ControlFlowGraph
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class ControlFlowBuilder (BenignBytecodeVisitorMixin, BasicBlockVisitor):
|
||||
'''Visitor responsible for traversing a bytecode basic block map and
|
||||
building a control flow graph (CFG).
|
||||
|
||||
The primary purpose of this transformation is to create a CFG,
|
||||
which is used by later transformers for dataflow analysis.
|
||||
'''
|
||||
def visit (self, flow, nargs = 0, *args, **kws):
|
||||
'''Given a bytecode flow, and an optional number of arguments,
|
||||
return a :py:class:`llpython.control_flow.ControlFlowGraph`
|
||||
instance describing the full control flow of the bytecode
|
||||
flow.'''
|
||||
self.nargs = nargs
|
||||
ret_val = super(ControlFlowBuilder, self).visit(flow, *args, **kws)
|
||||
del self.nargs
|
||||
return ret_val
|
||||
|
||||
def enter_blocks (self, blocks):
|
||||
super(ControlFlowBuilder, self).enter_blocks(blocks)
|
||||
self.blocks = blocks
|
||||
self.block_list = list(blocks.keys())
|
||||
self.block_list.sort()
|
||||
self.cfg = ControlFlowGraph()
|
||||
self.loop_stack = []
|
||||
for block in self.block_list:
|
||||
self.cfg.add_block(block, blocks[block])
|
||||
|
||||
def exit_blocks (self, blocks):
|
||||
super(ControlFlowBuilder, self).exit_blocks(blocks)
|
||||
assert self.blocks == blocks
|
||||
self.cfg.compute_dataflow()
|
||||
self.cfg.update_for_ssa()
|
||||
ret_val = self.cfg
|
||||
del self.loop_stack
|
||||
del self.cfg
|
||||
del self.block_list
|
||||
del self.blocks
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
self.block = block
|
||||
assert block in self.cfg.blocks
|
||||
if block == 0:
|
||||
for local_index in range(self.nargs):
|
||||
self.op_STORE_FAST(0, opcode.opmap['STORE_FAST'], local_index)
|
||||
return True
|
||||
|
||||
def _get_next_block (self, block):
|
||||
return self.block_list[self.block_list.index(block) + 1]
|
||||
|
||||
def exit_block (self, block):
|
||||
assert block == self.block
|
||||
del self.block
|
||||
i, op, arg = self.blocks[block][-1]
|
||||
opname = opcode.opname[op]
|
||||
if op in opcode.hasjabs:
|
||||
self.cfg.add_edge(block, arg)
|
||||
elif op in opcode.hasjrel:
|
||||
self.cfg.add_edge(block, i + arg + 3)
|
||||
elif opname == 'BREAK_LOOP':
|
||||
loop_i, _, loop_arg = self.loop_stack[-1]
|
||||
self.cfg.add_edge(block, loop_i + loop_arg + 3)
|
||||
elif opname != 'RETURN_VALUE':
|
||||
self.cfg.add_edge(block, self._get_next_block(block))
|
||||
if op in opcode_util.hascbranch:
|
||||
self.cfg.add_edge(block, self._get_next_block(block))
|
||||
|
||||
def op_LOAD_FAST (self, i, op, arg, *args, **kws):
|
||||
self.cfg.blocks_reads[self.block].add(arg)
|
||||
return super(ControlFlowBuilder, self).op_LOAD_FAST(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
def op_STORE_FAST (self, i, op, arg, *args, **kws):
|
||||
self.cfg.writes_local(self.block, i, arg)
|
||||
return super(ControlFlowBuilder, self).op_STORE_FAST(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
def op_SETUP_LOOP (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.append((i, op, arg))
|
||||
return super(ControlFlowBuilder, self).op_SETUP_LOOP(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
def op_POP_BLOCK (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.pop()
|
||||
return super(ControlFlowBuilder, self).op_POP_BLOCK(i, op, arg, *args,
|
||||
**kws)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_cfg (func):
|
||||
'''Given a Python function, create a bytecode flow, visit the flow
|
||||
object, and return a control flow graph.'''
|
||||
co_obj = opcode_util.get_code_object(func)
|
||||
return ControlFlowBuilder().visit(opcode_util.build_basic_blocks(co_obj),
|
||||
co_obj.co_argcount)
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args, **kws):
|
||||
from tests import llfuncs
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
for arg in args:
|
||||
build_cfg(getattr(llfuncs, arg)).pprint()
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of byte_control.py
|
||||
266
llpython/byte_flow.py
Normal file
266
llpython/byte_flow.py
Normal file
|
|
@ -0,0 +1,266 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import dis
|
||||
import opcode
|
||||
|
||||
from .bytecode_visitor import BasicBlockVisitor
|
||||
from . import opcode_util
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeFlowBuilder (BasicBlockVisitor):
|
||||
'''Transforms a CFG into a bytecode "flow tree".
|
||||
|
||||
The flow tree is a Python dictionary, described loosely by the
|
||||
following set of productions:
|
||||
|
||||
* `flow_tree` ``:=`` ``{`` `blocks` ``*`` ``}``
|
||||
* `blocks` ``:=`` `block_index` ``:`` ``[`` `bytecode_tree` ``*`` ``]``
|
||||
* `bytecode_tree` ``:=`` ``(`` `opcode_index` ``,`` `opcode` ``,``
|
||||
`opname` ``,`` `arg` ``,`` ``[`` `bytecode_tree` ``*`` ``]`` ``)``
|
||||
|
||||
The primary purpose of this transformation is to simulate the
|
||||
value stack, removing it and any stack-specific opcodes.'''
|
||||
|
||||
def __init__ (self, *args, **kws):
|
||||
super(BytecodeFlowBuilder, self).__init__(*args, **kws)
|
||||
om_items = opcode_util.OPCODE_MAP.items()
|
||||
self.opmap = dict((opcode.opmap[opname], (opname, pops, pushes, stmt))
|
||||
for opname, (pops, pushes, stmt) in om_items
|
||||
if opname in opcode.opmap)
|
||||
|
||||
def _visit_op (self, i, op, arg, opname, pops, pushes, appends):
|
||||
assert pops is not None, ('%s not well defined in opcode_util.'
|
||||
'OPCODE_MAP' % opname)
|
||||
if pops:
|
||||
if pops < 0:
|
||||
pops = arg - pops - 1
|
||||
assert pops <= len(self.stack), ("Stack underflow at instruction "
|
||||
"%d (%s)!" % (i, opname))
|
||||
stk_args = self.stack[-pops:]
|
||||
del self.stack[-pops:]
|
||||
else:
|
||||
stk_args = []
|
||||
ret_val = (i, op, opname, arg, stk_args)
|
||||
if pushes:
|
||||
self.stack.append(ret_val)
|
||||
if appends:
|
||||
self.block.append(ret_val)
|
||||
return ret_val
|
||||
|
||||
def _op (self, i, op, arg):
|
||||
opname, pops, pushes, appends = self.opmap[op]
|
||||
return self._visit_op(i, op, arg, opname, pops, pushes, appends)
|
||||
|
||||
def visit_cfg (self, cfg):
|
||||
self.cfg = cfg
|
||||
ret_val = self.visit(cfg.blocks)
|
||||
del self.cfg
|
||||
return ret_val
|
||||
|
||||
def enter_blocks (self, blocks):
|
||||
labels = list(blocks.keys())
|
||||
labels.sort()
|
||||
self.blocks = dict((index, [])
|
||||
for index in labels)
|
||||
self.loop_stack = []
|
||||
self.stacks = {}
|
||||
|
||||
def exit_blocks (self, blocks):
|
||||
ret_val = self.blocks
|
||||
del self.stacks
|
||||
del self.loop_stack
|
||||
del self.blocks
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
self.block_no = block
|
||||
self.block = self.blocks[block]
|
||||
in_blocks = self.cfg.blocks_in[block]
|
||||
if len(in_blocks) == 0:
|
||||
self.stack = []
|
||||
else:
|
||||
pred_stack = None
|
||||
for pred in in_blocks:
|
||||
if pred in self.stacks:
|
||||
pred_stack = self.stacks[pred]
|
||||
break
|
||||
if pred_stack is not None:
|
||||
self.stack = pred_stack[:]
|
||||
else:
|
||||
raise NotImplementedError()
|
||||
|
||||
def exit_block (self, block):
|
||||
assert self.block_no == block
|
||||
self.stacks[block] = self.stack
|
||||
del self.stack
|
||||
del self.block
|
||||
del self.block_no
|
||||
|
||||
op_BINARY_ADD = _op
|
||||
op_BINARY_AND = _op
|
||||
op_BINARY_DIVIDE = _op
|
||||
op_BINARY_FLOOR_DIVIDE = _op
|
||||
op_BINARY_LSHIFT = _op
|
||||
op_BINARY_MODULO = _op
|
||||
op_BINARY_MULTIPLY = _op
|
||||
op_BINARY_OR = _op
|
||||
op_BINARY_POWER = _op
|
||||
op_BINARY_RSHIFT = _op
|
||||
op_BINARY_SUBSCR = _op
|
||||
op_BINARY_SUBTRACT = _op
|
||||
op_BINARY_TRUE_DIVIDE = _op
|
||||
op_BINARY_XOR = _op
|
||||
|
||||
def op_BREAK_LOOP (self, i, op, arg):
|
||||
loop_i, _, loop_arg = self.loop_stack[-1]
|
||||
assert arg is None
|
||||
return self._op(i, op, loop_i + loop_arg + 3)
|
||||
|
||||
#op_BUILD_CLASS = _op
|
||||
op_BUILD_LIST = _op
|
||||
op_BUILD_MAP = _op
|
||||
op_BUILD_SLICE = _op
|
||||
op_BUILD_TUPLE = _op
|
||||
op_CALL_FUNCTION = _op
|
||||
op_CALL_FUNCTION_KW = _op
|
||||
op_CALL_FUNCTION_VAR = _op
|
||||
op_CALL_FUNCTION_VAR_KW = _op
|
||||
op_COMPARE_OP = _op
|
||||
#op_CONTINUE_LOOP = _op
|
||||
op_DELETE_ATTR = _op
|
||||
op_DELETE_FAST = _op
|
||||
op_DELETE_GLOBAL = _op
|
||||
op_DELETE_NAME = _op
|
||||
op_DELETE_SLICE = _op
|
||||
op_DELETE_SUBSCR = _op
|
||||
|
||||
def op_DUP_TOP (self, i, op, arg):
|
||||
self.stack.append(self.stack[-1])
|
||||
|
||||
def op_DUP_TOPX (self, i, op, arg):
|
||||
self.stack += self.stack[-arg:]
|
||||
|
||||
#op_END_FINALLY = _op
|
||||
op_EXEC_STMT = _op
|
||||
#op_EXTENDED_ARG = _op
|
||||
op_FOR_ITER = _op
|
||||
op_GET_ITER = _op
|
||||
op_IMPORT_FROM = _op
|
||||
op_IMPORT_NAME = _op
|
||||
op_IMPORT_STAR = _op
|
||||
op_INPLACE_ADD = _op
|
||||
op_INPLACE_AND = _op
|
||||
op_INPLACE_DIVIDE = _op
|
||||
op_INPLACE_FLOOR_DIVIDE = _op
|
||||
op_INPLACE_LSHIFT = _op
|
||||
op_INPLACE_MODULO = _op
|
||||
op_INPLACE_MULTIPLY = _op
|
||||
op_INPLACE_OR = _op
|
||||
op_INPLACE_POWER = _op
|
||||
op_INPLACE_RSHIFT = _op
|
||||
op_INPLACE_SUBTRACT = _op
|
||||
op_INPLACE_TRUE_DIVIDE = _op
|
||||
op_INPLACE_XOR = _op
|
||||
op_JUMP_ABSOLUTE = _op
|
||||
op_JUMP_FORWARD = _op
|
||||
|
||||
def op_JUMP_IF_FALSE (self, i, op, arg):
|
||||
opname, _, _, _ = self.opmap[op]
|
||||
ret_val = (i, op, opname, arg, [self.stack[-1]])
|
||||
self.block.append(ret_val)
|
||||
return ret_val
|
||||
|
||||
op_JUMP_IF_TRUE = op_JUMP_IF_FALSE
|
||||
op_LIST_APPEND = _op
|
||||
op_LOAD_ATTR = _op
|
||||
op_LOAD_CLOSURE = _op
|
||||
op_LOAD_CONST = _op
|
||||
op_LOAD_DEREF = _op
|
||||
op_LOAD_FAST = _op
|
||||
op_LOAD_GLOBAL = _op
|
||||
op_LOAD_LOCALS = _op
|
||||
op_LOAD_NAME = _op
|
||||
op_MAKE_CLOSURE = _op
|
||||
op_MAKE_FUNCTION = _op
|
||||
op_NOP = _op
|
||||
|
||||
def op_POP_BLOCK (self, i, op, arg):
|
||||
self.loop_stack.pop()
|
||||
return self._op(i, op, arg)
|
||||
|
||||
op_POP_JUMP_IF_FALSE = _op
|
||||
op_POP_JUMP_IF_TRUE = _op
|
||||
op_POP_TOP = _op
|
||||
op_PRINT_EXPR = _op
|
||||
op_PRINT_ITEM = _op
|
||||
op_PRINT_ITEM_TO = _op
|
||||
op_PRINT_NEWLINE = _op
|
||||
op_PRINT_NEWLINE_TO = _op
|
||||
op_RAISE_VARARGS = _op
|
||||
op_RETURN_VALUE = _op
|
||||
|
||||
def op_ROT_FOUR (self, i, op, arg):
|
||||
self.stack[-4:] = (self.stack[-1], self.stack[-4], self.stack[-3],
|
||||
self.stack[-2])
|
||||
|
||||
def op_ROT_THREE (self, i, op, arg):
|
||||
self.stack[-3:] = (self.stack[-1], self.stack[-3], self.stack[-2])
|
||||
|
||||
def op_ROT_TWO (self, i, op, arg):
|
||||
self.stack[-2:] = (self.stack[-1], self.stack[-2])
|
||||
|
||||
#op_SETUP_EXCEPT = _op
|
||||
#op_SETUP_FINALLY = _op
|
||||
|
||||
def op_SETUP_LOOP (self, i, op, arg):
|
||||
self.loop_stack.append((i, op, arg))
|
||||
self.block.append((i, op, self.opnames[op], arg, []))
|
||||
|
||||
op_SLICE = _op
|
||||
#op_STOP_CODE = _op
|
||||
op_STORE_ATTR = _op
|
||||
op_STORE_DEREF = _op
|
||||
op_STORE_FAST = _op
|
||||
op_STORE_GLOBAL = _op
|
||||
op_STORE_MAP = _op
|
||||
op_STORE_NAME = _op
|
||||
op_STORE_SLICE = _op
|
||||
op_STORE_SUBSCR = _op
|
||||
op_UNARY_CONVERT = _op
|
||||
op_UNARY_INVERT = _op
|
||||
op_UNARY_NEGATIVE = _op
|
||||
op_UNARY_NOT = _op
|
||||
op_UNARY_POSITIVE = _op
|
||||
op_UNPACK_SEQUENCE = _op
|
||||
#op_WITH_CLEANUP = _op
|
||||
op_YIELD_VALUE = _op
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_flow (func):
|
||||
'''Given a Python function, return a bytecode flow tree for that
|
||||
function.'''
|
||||
import byte_control
|
||||
cfg = byte_control.build_cfg(func)
|
||||
return BytecodeFlowBuilder().visit_cfg(cfg)
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args):
|
||||
import pprint
|
||||
from tests import llfuncs
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
for arg in args:
|
||||
pprint.pprint(build_flow(getattr(llfuncs, arg)))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == '__main__':
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of byte_flow.py
|
||||
612
llpython/byte_translator.py
Normal file
612
llpython/byte_translator.py
Normal file
|
|
@ -0,0 +1,612 @@
|
|||
# ______________________________________________________________________
|
||||
'''Defines a bytecode based LLVM translator for llpython code.
|
||||
'''
|
||||
# ______________________________________________________________________
|
||||
# Module imports
|
||||
from __future__ import absolute_import
|
||||
import opcode
|
||||
import types
|
||||
import logging
|
||||
|
||||
import llvm.core as lc
|
||||
|
||||
from . import opcode_util
|
||||
from . import bytetype
|
||||
from .bytecode_visitor import BytecodeFlowVisitor
|
||||
from .byte_flow import BytecodeFlowBuilder
|
||||
from .byte_control import ControlFlowBuilder
|
||||
from .phi_injector import PhiInjector, synthetic_opname
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Module data
|
||||
|
||||
logger = logging.getLogger(__name__)
|
||||
|
||||
# XXX Stolen from numba.translate:
|
||||
|
||||
_compare_mapping_float = {'>':lc.FCMP_OGT,
|
||||
'<':lc.FCMP_OLT,
|
||||
'==':lc.FCMP_OEQ,
|
||||
'>=':lc.FCMP_OGE,
|
||||
'<=':lc.FCMP_OLE,
|
||||
'!=':lc.FCMP_ONE}
|
||||
|
||||
_compare_mapping_sint = {'>':lc.ICMP_SGT,
|
||||
'<':lc.ICMP_SLT,
|
||||
'==':lc.ICMP_EQ,
|
||||
'>=':lc.ICMP_SGE,
|
||||
'<=':lc.ICMP_SLE,
|
||||
'!=':lc.ICMP_NE}
|
||||
|
||||
# XXX Stolen from numba.llvm_types:
|
||||
|
||||
class LLVMCaster (object):
|
||||
def build_pointer_cast(_, builder, lval1, lty2):
|
||||
return builder.bitcast(lval1, lty2)
|
||||
|
||||
def build_int_cast(_, builder, lval1, lty2, unsigned = False):
|
||||
width1 = lval1.type.width
|
||||
width2 = lty2.width
|
||||
ret_val = lval1
|
||||
if width2 > width1:
|
||||
if unsigned:
|
||||
ret_val = builder.zext(lval1, lty2)
|
||||
else:
|
||||
ret_val = builder.sext(lval1, lty2)
|
||||
elif width2 < width1:
|
||||
ret_val = builder.trunc(lval1, lty2)
|
||||
return ret_val
|
||||
|
||||
def build_float_ext(_, builder, lval1, lty2):
|
||||
return builder.fpext(lval1, lty2)
|
||||
|
||||
def build_float_trunc(_, builder, lval1, lty2):
|
||||
return builder.fptrunc(lval1, lty2)
|
||||
|
||||
def build_int_to_float_cast(_, builder, lval1, lty2, unsigned = False):
|
||||
ret_val = None
|
||||
if unsigned:
|
||||
ret_val = builder.uitofp(lval1, lty2)
|
||||
else:
|
||||
ret_val = builder.sitofp(lval1, lty2)
|
||||
return ret_val
|
||||
|
||||
def build_int_to_ptr_cast(_, builder, lval1, lty2):
|
||||
return builder.inttoptr(lval1, lty2)
|
||||
|
||||
def build_float_to_int_cast(_, builder, lval1, lty2, unsigned = False):
|
||||
ret_val = None
|
||||
if unsigned:
|
||||
ret_val = builder.fptoui(lval1, lty2)
|
||||
else:
|
||||
ret_val = builder.fptosi(lval1, lty2)
|
||||
return ret_val
|
||||
|
||||
CAST_MAP = {
|
||||
lc.TYPE_POINTER : build_pointer_cast,
|
||||
lc.TYPE_INTEGER: build_int_cast,
|
||||
(lc.TYPE_FLOAT, lc.TYPE_DOUBLE) : build_float_ext,
|
||||
(lc.TYPE_DOUBLE, lc.TYPE_FLOAT) : build_float_trunc,
|
||||
(lc.TYPE_INTEGER, lc.TYPE_FLOAT) : build_int_to_float_cast,
|
||||
(lc.TYPE_INTEGER, lc.TYPE_DOUBLE) : build_int_to_float_cast,
|
||||
(lc.TYPE_INTEGER, lc.TYPE_POINTER) : build_int_to_ptr_cast,
|
||||
(lc.TYPE_FLOAT, lc.TYPE_INTEGER) : build_float_to_int_cast,
|
||||
(lc.TYPE_DOUBLE, lc.TYPE_INTEGER) : build_float_to_int_cast,
|
||||
|
||||
}
|
||||
|
||||
@classmethod
|
||||
def build_cast(cls, builder, lval1, lty2, *args, **kws):
|
||||
ret_val = lval1
|
||||
lty1 = lval1.type
|
||||
lkind1 = lty1.kind
|
||||
lkind2 = lty2.kind
|
||||
|
||||
if lkind1 == lkind2:
|
||||
|
||||
if lkind1 in cls.CAST_MAP:
|
||||
ret_val = cls.CAST_MAP[lkind1](cls, builder, lval1, lty2,
|
||||
*args, **kws)
|
||||
else:
|
||||
raise NotImplementedError(lkind1)
|
||||
else:
|
||||
map_index = (lkind1, lkind2)
|
||||
if map_index in cls.CAST_MAP:
|
||||
ret_val = cls.CAST_MAP[map_index](cls, builder, lval1, lty2,
|
||||
*args, **kws)
|
||||
else:
|
||||
raise NotImplementedError(lkind1, lkind2)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Class definitions
|
||||
|
||||
class LLVMTranslator (BytecodeFlowVisitor):
|
||||
'''Transformer responsible for visiting a set of bytecode flow
|
||||
trees, emitting LLVM code.
|
||||
|
||||
Unlike other translators in :py:mod:`llpython`, this
|
||||
incorporates the full transformation chain, starting with
|
||||
:py:class:`llpython.byte_flow.BytecodeFlowBuilder`, then
|
||||
:py:class:`llpython.byte_control.ControlFlowBuilder`, and
|
||||
then :py:class:`llpython.phi_injector.PhiInjector`.'''
|
||||
|
||||
def __init__ (self, llvm_module = None, *args, **kws):
|
||||
'''Constructor for LLVMTranslator.'''
|
||||
super(LLVMTranslator, self).__init__(*args, **kws)
|
||||
if llvm_module is None:
|
||||
llvm_module = lc.Module.new('Translated_Module_%d' % (id(self),))
|
||||
self.llvm_module = llvm_module
|
||||
self.bytecode_flow_builder = BytecodeFlowBuilder()
|
||||
self.control_flow_builder = ControlFlowBuilder()
|
||||
self.phi_injector = PhiInjector()
|
||||
|
||||
def translate (self, function, llvm_type = None, llvm_function = None,
|
||||
env = None):
|
||||
'''Translate a function to the given LLVM function type.
|
||||
|
||||
If no type is given, then assume the function is of LLVM type
|
||||
"void ()".
|
||||
|
||||
The optional env parameter allows extension of the global
|
||||
environment.'''
|
||||
if llvm_type is None:
|
||||
if llvm_function is None:
|
||||
llvm_type = lc.Type.function(bytetype.lvoid, ())
|
||||
else:
|
||||
llvm_type = llvm_function.type.pointee
|
||||
if env is None:
|
||||
env = {}
|
||||
else:
|
||||
env = env.copy()
|
||||
env.update((name, method)
|
||||
for name, method in lc.Builder.__dict__.items()
|
||||
if not name.startswith('_'))
|
||||
env.update((name, value)
|
||||
for name, value in bytetype.__dict__.items()
|
||||
if not name.startswith('_'))
|
||||
self.loop_stack = []
|
||||
self.llvm_type = llvm_type
|
||||
self.target_function_name = env.get('target_function_name',
|
||||
function.__name__)
|
||||
self.function = function
|
||||
self.code_obj = opcode_util.get_code_object(function)
|
||||
func_globals = getattr(function, 'func_globals',
|
||||
getattr(function, '__globals__', {})).copy()
|
||||
func_globals.update(env)
|
||||
self.globals = func_globals
|
||||
nargs = self.code_obj.co_argcount
|
||||
self.cfg = self.control_flow_builder.visit(
|
||||
opcode_util.build_basic_blocks(self.code_obj), nargs)
|
||||
self.cfg.blocks = self.bytecode_flow_builder.visit_cfg(self.cfg)
|
||||
self.llvm_function = llvm_function
|
||||
flow = self.phi_injector.visit_cfg(self.cfg, nargs)
|
||||
ret_val = self.visit(flow)
|
||||
del self.cfg
|
||||
del self.globals
|
||||
del self.code_obj
|
||||
del self.target_function_name
|
||||
del self.function
|
||||
del self.llvm_type
|
||||
del self.loop_stack
|
||||
return ret_val
|
||||
|
||||
def enter_flow_object (self, flow):
|
||||
super(LLVMTranslator, self).enter_flow_object(flow)
|
||||
if self.llvm_function is None:
|
||||
self.llvm_function = self.llvm_module.add_function(
|
||||
self.llvm_type, self.target_function_name)
|
||||
self.llvm_blocks = {}
|
||||
self.llvm_definitions = {}
|
||||
self.pending_phis = {}
|
||||
for block in self.block_list:
|
||||
if 0 in self.cfg.blocks_reaching[block]:
|
||||
bb = self.llvm_function.append_basic_block(
|
||||
'BLOCK_%d' % (block,))
|
||||
self.llvm_blocks[block] = bb
|
||||
|
||||
def exit_flow_object (self, flow):
|
||||
super(LLVMTranslator, self).exit_flow_object(flow)
|
||||
ret_val = self.llvm_function
|
||||
del self.pending_phis
|
||||
del self.llvm_definitions
|
||||
del self.llvm_blocks
|
||||
if __debug__ and logger.getEffectiveLevel() < logging.DEBUG:
|
||||
logger.debug(str(ret_val))
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
ret_val = False
|
||||
if block in self.llvm_blocks:
|
||||
self.llvm_block = self.llvm_blocks[block]
|
||||
self.builder = lc.Builder.new(self.llvm_block)
|
||||
ret_val = True
|
||||
return ret_val
|
||||
|
||||
def exit_block (self, block):
|
||||
bb_instrs = self.llvm_block.instructions
|
||||
if ((len(bb_instrs) == 0) or
|
||||
(not bb_instrs[-1].is_terminator)):
|
||||
out_blocks = list(self.cfg.blocks_out[block])
|
||||
assert len(out_blocks) == 1
|
||||
self.builder.branch(self.llvm_blocks[out_blocks[0]])
|
||||
del self.llvm_block
|
||||
del self.builder
|
||||
|
||||
def visit_synthetic_op (self, i, op, arg, *args, **kws):
|
||||
method = getattr(self, 'op_%s' % (synthetic_opname[op],))
|
||||
return method(i, op, arg, *args, **kws)
|
||||
|
||||
def op_REF_ARG (self, i, op, arg, *args, **kws):
|
||||
return [self.llvm_function.args[arg]]
|
||||
|
||||
def op_BUILD_PHI (self, i, op, arg, *args, **kws):
|
||||
phi_type = None
|
||||
incoming = []
|
||||
pending = []
|
||||
for child_arg in arg:
|
||||
child_block, _, child_opname, child_arg, _ = child_arg
|
||||
assert child_opname == 'REF_DEF'
|
||||
if child_arg in self.llvm_definitions:
|
||||
child_def = self.llvm_definitions[child_arg]
|
||||
if phi_type is None:
|
||||
phi_type = child_def.type
|
||||
incoming.append((child_block, child_def))
|
||||
else:
|
||||
pending.append((child_arg, child_block))
|
||||
phi = self.builder.phi(phi_type)
|
||||
for block_index, defn in incoming:
|
||||
phi.add_incoming(defn, self.llvm_blocks[block_index])
|
||||
for defn_index, block_index in pending:
|
||||
if defn_index not in self.pending_phis:
|
||||
self.pending_phis[defn_index] = []
|
||||
self.pending_phis[defn_index].append((phi, block_index))
|
||||
return [phi]
|
||||
|
||||
def op_DEFINITION (self, i, op, def_index, *args, **kws):
|
||||
assert len(args) == 1
|
||||
arg = args[0]
|
||||
if def_index in self.pending_phis:
|
||||
for phi, block_index in self.pending_phis[def_index]:
|
||||
phi.add_incoming(arg, self.llvm_blocks[block_index])
|
||||
self.llvm_definitions[def_index] = arg
|
||||
return args
|
||||
|
||||
def op_REF_DEF (self, i, op, arg, *args, **kws):
|
||||
return [self.llvm_definitions[arg]]
|
||||
|
||||
def op_BINARY_ADD (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.add(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fadd(arg1, arg2)]
|
||||
elif arg1.type.kind == lc.TYPE_POINTER:
|
||||
ret_val = [self.builder.gep(arg1, [arg2])]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_ADD for %r" %
|
||||
(args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_AND (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.and_(args[0], args[1])]
|
||||
|
||||
def op_BINARY_DIVIDE (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.sdiv(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fdiv(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_DIVIDE for %r"
|
||||
% (args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_FLOOR_DIVIDE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_FLOOR_DIVIDE")
|
||||
|
||||
def op_BINARY_LSHIFT (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.shl(args[0], args[1])]
|
||||
|
||||
def op_BINARY_MODULO (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.srem(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.frem(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_MODULO for %r"
|
||||
% (args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_MULTIPLY (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.mul(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fmul(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_MULTIPLY for "
|
||||
"%r" % (args,))
|
||||
return ret_val
|
||||
|
||||
def op_BINARY_OR (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.or_(args[0], args[1])]
|
||||
|
||||
def op_BINARY_POWER (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_POWER")
|
||||
|
||||
def op_BINARY_RSHIFT (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.lshr(args[0], args[1])]
|
||||
|
||||
def op_BINARY_SUBSCR (self, i, op, arg, *args, **kws):
|
||||
arr_val = args[0]
|
||||
index_vals = args[1:]
|
||||
ret_val = gep_result = self.builder.gep(arr_val, index_vals)
|
||||
if (gep_result.type.kind == lc.TYPE_POINTER and
|
||||
gep_result.type.pointee.kind != lc.TYPE_POINTER):
|
||||
ret_val = self.builder.load(gep_result)
|
||||
return [ret_val]
|
||||
|
||||
def op_BINARY_SUBTRACT (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
if arg1.type.kind == lc.TYPE_INTEGER:
|
||||
ret_val = [self.builder.sub(arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fsub(arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError("LLVMTranslator.op_BINARY_SUBTRACT for "
|
||||
"%r" % (args,))
|
||||
return ret_val
|
||||
|
||||
op_BINARY_TRUE_DIVIDE = op_BINARY_DIVIDE
|
||||
|
||||
def op_BINARY_XOR (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.xor(args[0], args[1])]
|
||||
|
||||
def op_BREAK_LOOP (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.branch(self.llvm_blocks[arg])]
|
||||
|
||||
def op_BUILD_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_BUILD_SLICE")
|
||||
|
||||
def op_BUILD_TUPLE (self, i, op, arg, *args, **kws):
|
||||
return args
|
||||
|
||||
def op_CALL_FUNCTION (self, i, op, arg, *args, **kws):
|
||||
fn = args[0]
|
||||
args = args[1:]
|
||||
fn_name = getattr(fn, '__name__', None)
|
||||
if isinstance(fn, (types.FunctionType, types.MethodType)):
|
||||
ret_val = [fn(self.builder, *args)]
|
||||
elif isinstance(fn, lc.Value):
|
||||
ret_val = [self.builder.call(fn, args)]
|
||||
elif isinstance(fn, lc.Type):
|
||||
if isinstance(fn, lc.FunctionType):
|
||||
ret_val = [self.builder.call(
|
||||
self.llvm_module.get_or_insert_function(fn, fn_name),
|
||||
args)]
|
||||
else:
|
||||
assert len(args) == 1
|
||||
ret_val = [LLVMCaster.build_cast(self.builder, args[0], fn)]
|
||||
else:
|
||||
raise NotImplementedError("Don't know how to call %s() (%r @ %d)!"
|
||||
% (fn_name, fn, i))
|
||||
return ret_val
|
||||
|
||||
def op_CALL_FUNCTION_KW (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_CALL_FUNCTION_KW")
|
||||
|
||||
def op_CALL_FUNCTION_VAR (self, i, op, arg, *args, **kws):
|
||||
args = list(args)
|
||||
var_args = list(args.pop())
|
||||
args.extend(var_args)
|
||||
return self.op_CALL_FUNCTION(i, op, arg, *args, **kws)
|
||||
|
||||
def op_CALL_FUNCTION_VAR_KW (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_CALL_FUNCTION_VAR_KW")
|
||||
|
||||
def op_COMPARE_OP (self, i, op, arg, *args, **kws):
|
||||
arg1, arg2 = args
|
||||
cmp_kind = opcode.cmp_op[arg]
|
||||
if isinstance(arg1.type, lc.IntegerType):
|
||||
ret_val = [self.builder.icmp(_compare_mapping_sint[cmp_kind],
|
||||
arg1, arg2)]
|
||||
elif arg1.type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
ret_val = [self.builder.fcmp(_compare_mapping_float[cmp_kind],
|
||||
arg1, arg2)]
|
||||
else:
|
||||
raise NotImplementedError('Comparison of type %r' % (arg1.type,))
|
||||
return ret_val
|
||||
|
||||
def op_CONTINUE_LOOP (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_CONTINUE_LOOP")
|
||||
|
||||
def op_DELETE_ATTR (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_DELETE_ATTR")
|
||||
|
||||
def op_DELETE_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_DELETE_SLICE")
|
||||
|
||||
def op_FOR_ITER (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_FOR_ITER")
|
||||
|
||||
def op_GET_ITER (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_GET_ITER")
|
||||
|
||||
op_INPLACE_ADD = op_BINARY_ADD
|
||||
op_INPLACE_AND = op_BINARY_AND
|
||||
op_INPLACE_DIVIDE = op_BINARY_DIVIDE
|
||||
op_INPLACE_FLOOR_DIVIDE = op_BINARY_FLOOR_DIVIDE
|
||||
op_INPLACE_LSHIFT = op_BINARY_LSHIFT
|
||||
op_INPLACE_MODULO = op_BINARY_MODULO
|
||||
op_INPLACE_MULTIPLY = op_BINARY_MULTIPLY
|
||||
op_INPLACE_OR = op_BINARY_OR
|
||||
op_INPLACE_POWER = op_BINARY_POWER
|
||||
op_INPLACE_RSHIFT = op_BINARY_RSHIFT
|
||||
op_INPLACE_SUBTRACT = op_BINARY_SUBTRACT
|
||||
op_INPLACE_TRUE_DIVIDE = op_BINARY_TRUE_DIVIDE
|
||||
op_INPLACE_XOR = op_BINARY_XOR
|
||||
|
||||
def op_JUMP_ABSOLUTE (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.branch(self.llvm_blocks[arg])]
|
||||
|
||||
def op_JUMP_FORWARD (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.branch(self.llvm_blocks[i + arg + 3])]
|
||||
|
||||
def op_JUMP_IF_FALSE (self, i, op, arg, *args, **kws):
|
||||
cond = args[0]
|
||||
block_false = self.llvm_blocks[i + 3 + arg]
|
||||
block_true = self.llvm_blocks[i + 3]
|
||||
return [self.builder.cbranch(cond, block_true, block_false)]
|
||||
# raise NotImplementedError("LLVMTranslator.op_JUMP_IF_FALSE")
|
||||
|
||||
def op_JUMP_IF_FALSE_OR_POP (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_JUMP_IF_FALSE_OR_POP")
|
||||
|
||||
def op_JUMP_IF_TRUE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_JUMP_IF_TRUE")
|
||||
|
||||
def op_JUMP_IF_TRUE_OR_POP (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_JUMP_IF_TRUE_OR_POP")
|
||||
|
||||
def op_LOAD_ATTR (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_LOAD_ATTR")
|
||||
|
||||
def op_LOAD_CONST (self, i, op, arg, *args, **kws):
|
||||
py_val = self.code_obj.co_consts[arg]
|
||||
if isinstance(py_val, int):
|
||||
ret_val = [lc.Constant.int(bytetype.lc_int, py_val)]
|
||||
elif isinstance(py_val, float):
|
||||
ret_val = [lc.Constant.double(py_val)]
|
||||
elif py_val == None:
|
||||
ret_val = [None]
|
||||
else:
|
||||
raise NotImplementedError('Constant converstion for %r' %
|
||||
(py_val,))
|
||||
return ret_val
|
||||
|
||||
def op_LOAD_DEREF (self, i, op, arg, *args, **kws):
|
||||
name = self.code_obj.co_freevars[arg]
|
||||
ret_val = self.globals[name]
|
||||
if isinstance(ret_val, lc.Type) and not hasattr(ret_val, '__name__'):
|
||||
ret_val.__name__ = name
|
||||
return [ret_val]
|
||||
|
||||
def op_LOAD_GLOBAL (self, i, op, arg, *args, **kws):
|
||||
name = self.code_obj.co_names[arg]
|
||||
ret_val = self.globals[name]
|
||||
if isinstance(ret_val, lc.Type) and not hasattr(ret_val, '__name__'):
|
||||
ret_val.__name__ = name
|
||||
return [ret_val]
|
||||
|
||||
def op_POP_BLOCK (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.pop()
|
||||
return [self.builder.branch(self.llvm_blocks[i + 1])]
|
||||
|
||||
def op_POP_JUMP_IF_FALSE (self, i, op, arg, *args, **kws):
|
||||
return [self.builder.cbranch(args[0], self.llvm_blocks[i + 3],
|
||||
self.llvm_blocks[arg])]
|
||||
|
||||
def op_POP_JUMP_IF_TRUE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_POP_JUMP_IF_TRUE")
|
||||
|
||||
def op_POP_TOP (self, i, op, arg, *args, **kws):
|
||||
return args
|
||||
|
||||
def op_RETURN_VALUE (self, i, op, arg, *args, **kws):
|
||||
if args[0] is None:
|
||||
ret_val = [self.builder.ret_void()]
|
||||
else:
|
||||
ret_val = [self.builder.ret(args[0])]
|
||||
return ret_val
|
||||
|
||||
def op_SETUP_LOOP (self, i, op, arg, *args, **kws):
|
||||
self.loop_stack.append((i, arg))
|
||||
return [self.builder.branch(self.llvm_blocks[i + 3])]
|
||||
|
||||
def op_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_SLICE")
|
||||
|
||||
def op_STORE_ATTR (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_STORE_ATTR")
|
||||
|
||||
def op_STORE_SLICE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_STORE_SLICE")
|
||||
|
||||
def op_STORE_SUBSCR (self, i, op, arg, *args, **kws):
|
||||
store_val, arr_val, index_val = args
|
||||
dest_addr = self.builder.gep(arr_val, [index_val])
|
||||
return [self.builder.store(store_val, dest_addr)]
|
||||
|
||||
def op_UNARY_CONVERT (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_CONVERT")
|
||||
|
||||
def op_UNARY_INVERT (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_INVERT")
|
||||
|
||||
def op_UNARY_NEGATIVE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_NEGATIVE")
|
||||
|
||||
def op_UNARY_NOT (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_NOT")
|
||||
|
||||
def op_UNARY_POSITIVE (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("LLVMTranslator.op_UNARY_POSITIVE")
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def translate_function (func, lltype, llvm_module = None, **kws):
|
||||
'''Given a function and an LLVM function type, emit LLVM code for
|
||||
that function using a new LLVMTranslator instance.'''
|
||||
translator = LLVMTranslator(llvm_module)
|
||||
ret_val = translator.translate(func, lltype, env = kws)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def translate_into_function (py_function, llvm_function, **kws):
|
||||
translator = LLVMTranslator(llvm_function.module)
|
||||
ret_val = translator.translate(py_function, llvm_function = llvm_function,
|
||||
env = kws)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def llpython (lltype, llvm_module = None, **kws):
|
||||
'''Decorator version of translate_function().'''
|
||||
def _llpython (func):
|
||||
return translate_function(func, lltype, llvm_module, **kws)
|
||||
return _llpython
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def llpython_into (llvm_function, **kws):
|
||||
def _llpython_into (func):
|
||||
return translate_into_function(llvm_function, func, **kws)
|
||||
return _llpython_into
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args):
|
||||
from tests import llfuncs, llfunctys
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
elif 'all' in args:
|
||||
args = [llfunc
|
||||
for llfunc in dir(llfuncs) if not llfunc.startswith('_')]
|
||||
llvm_module = lc.Module.new('test_module')
|
||||
for arg in args:
|
||||
translate_function(getattr(llfuncs, arg), getattr(llfunctys, arg),
|
||||
llvm_module)
|
||||
print(llvm_module)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == '__main__':
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of byte_translator.py
|
||||
360
llpython/bytecode_visitor.py
Normal file
360
llpython/bytecode_visitor.py
Normal file
|
|
@ -0,0 +1,360 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import itertools
|
||||
|
||||
import opcode
|
||||
from .opcode_util import itercode
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeVisitor (object):
|
||||
opnames = [name.split('+')[0] for name in opcode.opname]
|
||||
|
||||
def visit_op (self, i, op, arg, *args, **kws):
|
||||
if op < 0:
|
||||
ret_val = self.visit_synthetic_op(i, op, arg, *args, **kws)
|
||||
else:
|
||||
method = getattr(self, 'op_' + self.opnames[op])
|
||||
ret_val = method(i, op, arg, *args, **kws)
|
||||
return ret_val
|
||||
|
||||
def visit_synthetic_op (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError(
|
||||
'BytecodeVisitor.visit_synthetic_op() must be overloaded if using '
|
||||
'synthetic opcodes.')
|
||||
|
||||
def _not_implemented (self, i, op, arg, *args, **kws):
|
||||
raise NotImplementedError("BytecodeVisitor.op_%s (@ bytecode index %d)"
|
||||
% (self.opnames[op], i))
|
||||
|
||||
op_BINARY_ADD = _not_implemented
|
||||
op_BINARY_AND = _not_implemented
|
||||
op_BINARY_DIVIDE = _not_implemented
|
||||
op_BINARY_FLOOR_DIVIDE = _not_implemented
|
||||
op_BINARY_LSHIFT = _not_implemented
|
||||
op_BINARY_MODULO = _not_implemented
|
||||
op_BINARY_MULTIPLY = _not_implemented
|
||||
op_BINARY_OR = _not_implemented
|
||||
op_BINARY_POWER = _not_implemented
|
||||
op_BINARY_RSHIFT = _not_implemented
|
||||
op_BINARY_SUBSCR = _not_implemented
|
||||
op_BINARY_SUBTRACT = _not_implemented
|
||||
op_BINARY_TRUE_DIVIDE = _not_implemented
|
||||
op_BINARY_XOR = _not_implemented
|
||||
op_BREAK_LOOP = _not_implemented
|
||||
op_BUILD_CLASS = _not_implemented
|
||||
op_BUILD_LIST = _not_implemented
|
||||
op_BUILD_MAP = _not_implemented
|
||||
op_BUILD_SET = _not_implemented
|
||||
op_BUILD_SLICE = _not_implemented
|
||||
op_BUILD_TUPLE = _not_implemented
|
||||
op_CALL_FUNCTION = _not_implemented
|
||||
op_CALL_FUNCTION_KW = _not_implemented
|
||||
op_CALL_FUNCTION_VAR = _not_implemented
|
||||
op_CALL_FUNCTION_VAR_KW = _not_implemented
|
||||
op_COMPARE_OP = _not_implemented
|
||||
op_CONTINUE_LOOP = _not_implemented
|
||||
op_DELETE_ATTR = _not_implemented
|
||||
op_DELETE_DEREF = _not_implemented
|
||||
op_DELETE_FAST = _not_implemented
|
||||
op_DELETE_GLOBAL = _not_implemented
|
||||
op_DELETE_NAME = _not_implemented
|
||||
op_DELETE_SLICE = _not_implemented
|
||||
op_DELETE_SUBSCR = _not_implemented
|
||||
op_DUP_TOP = _not_implemented
|
||||
op_DUP_TOPX = _not_implemented
|
||||
op_DUP_TOP_TWO = _not_implemented
|
||||
op_END_FINALLY = _not_implemented
|
||||
op_EXEC_STMT = _not_implemented
|
||||
op_EXTENDED_ARG = _not_implemented
|
||||
op_FOR_ITER = _not_implemented
|
||||
op_GET_ITER = _not_implemented
|
||||
op_IMPORT_FROM = _not_implemented
|
||||
op_IMPORT_NAME = _not_implemented
|
||||
op_IMPORT_STAR = _not_implemented
|
||||
op_INPLACE_ADD = _not_implemented
|
||||
op_INPLACE_AND = _not_implemented
|
||||
op_INPLACE_DIVIDE = _not_implemented
|
||||
op_INPLACE_FLOOR_DIVIDE = _not_implemented
|
||||
op_INPLACE_LSHIFT = _not_implemented
|
||||
op_INPLACE_MODULO = _not_implemented
|
||||
op_INPLACE_MULTIPLY = _not_implemented
|
||||
op_INPLACE_OR = _not_implemented
|
||||
op_INPLACE_POWER = _not_implemented
|
||||
op_INPLACE_RSHIFT = _not_implemented
|
||||
op_INPLACE_SUBTRACT = _not_implemented
|
||||
op_INPLACE_TRUE_DIVIDE = _not_implemented
|
||||
op_INPLACE_XOR = _not_implemented
|
||||
op_JUMP_ABSOLUTE = _not_implemented
|
||||
op_JUMP_FORWARD = _not_implemented
|
||||
op_JUMP_IF_FALSE = _not_implemented
|
||||
op_JUMP_IF_FALSE_OR_POP = _not_implemented
|
||||
op_JUMP_IF_TRUE = _not_implemented
|
||||
op_JUMP_IF_TRUE_OR_POP = _not_implemented
|
||||
op_LIST_APPEND = _not_implemented
|
||||
op_LOAD_ATTR = _not_implemented
|
||||
op_LOAD_BUILD_CLASS = _not_implemented
|
||||
op_LOAD_CLOSURE = _not_implemented
|
||||
op_LOAD_CONST = _not_implemented
|
||||
op_LOAD_DEREF = _not_implemented
|
||||
op_LOAD_FAST = _not_implemented
|
||||
op_LOAD_GLOBAL = _not_implemented
|
||||
op_LOAD_LOCALS = _not_implemented
|
||||
op_LOAD_NAME = _not_implemented
|
||||
op_MAKE_CLOSURE = _not_implemented
|
||||
op_MAKE_FUNCTION = _not_implemented
|
||||
op_MAP_ADD = _not_implemented
|
||||
op_NOP = _not_implemented
|
||||
op_POP_BLOCK = _not_implemented
|
||||
op_POP_EXCEPT = _not_implemented
|
||||
op_POP_JUMP_IF_FALSE = _not_implemented
|
||||
op_POP_JUMP_IF_TRUE = _not_implemented
|
||||
op_POP_TOP = _not_implemented
|
||||
op_PRINT_EXPR = _not_implemented
|
||||
op_PRINT_ITEM = _not_implemented
|
||||
op_PRINT_ITEM_TO = _not_implemented
|
||||
op_PRINT_NEWLINE = _not_implemented
|
||||
op_PRINT_NEWLINE_TO = _not_implemented
|
||||
op_RAISE_VARARGS = _not_implemented
|
||||
op_RETURN_VALUE = _not_implemented
|
||||
op_ROT_FOUR = _not_implemented
|
||||
op_ROT_THREE = _not_implemented
|
||||
op_ROT_TWO = _not_implemented
|
||||
op_SETUP_EXCEPT = _not_implemented
|
||||
op_SETUP_FINALLY = _not_implemented
|
||||
op_SETUP_LOOP = _not_implemented
|
||||
op_SETUP_WITH = _not_implemented
|
||||
op_SET_ADD = _not_implemented
|
||||
op_SLICE = _not_implemented
|
||||
op_STOP_CODE = _not_implemented
|
||||
op_STORE_ATTR = _not_implemented
|
||||
op_STORE_DEREF = _not_implemented
|
||||
op_STORE_FAST = _not_implemented
|
||||
op_STORE_GLOBAL = _not_implemented
|
||||
op_STORE_LOCALS = _not_implemented
|
||||
op_STORE_MAP = _not_implemented
|
||||
op_STORE_NAME = _not_implemented
|
||||
op_STORE_SLICE = _not_implemented
|
||||
op_STORE_SUBSCR = _not_implemented
|
||||
op_UNARY_CONVERT = _not_implemented
|
||||
op_UNARY_INVERT = _not_implemented
|
||||
op_UNARY_NEGATIVE = _not_implemented
|
||||
op_UNARY_NOT = _not_implemented
|
||||
op_UNARY_POSITIVE = _not_implemented
|
||||
op_UNPACK_EX = _not_implemented
|
||||
op_UNPACK_SEQUENCE = _not_implemented
|
||||
op_WITH_CLEANUP = _not_implemented
|
||||
op_YIELD_VALUE = _not_implemented
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeIterVisitor (BytecodeVisitor):
|
||||
def visit (self, co_obj):
|
||||
self.enter_code_object(co_obj)
|
||||
for i, op, arg in itercode(co_obj.co_code):
|
||||
self.visit_op(i, op, arg)
|
||||
return self.exit_code_object(co_obj)
|
||||
|
||||
def enter_code_object (self, co_obj):
|
||||
pass
|
||||
|
||||
def exit_code_object (self, co_obj):
|
||||
pass
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BasicBlockVisitor (BytecodeVisitor):
|
||||
def visit (self, blocks):
|
||||
self.enter_blocks(blocks)
|
||||
block_indices = list(blocks.keys())
|
||||
block_indices.sort()
|
||||
for block_index in block_indices:
|
||||
self.enter_block(block_index)
|
||||
for i, op, arg in blocks[block_index]:
|
||||
self.visit_op(i, op, arg)
|
||||
self.exit_block(block_index)
|
||||
return self.exit_blocks(blocks)
|
||||
|
||||
def enter_blocks (self, blocks):
|
||||
pass
|
||||
|
||||
def exit_blocks (self, blocks):
|
||||
pass
|
||||
|
||||
def enter_block (self, block_index):
|
||||
pass
|
||||
|
||||
def exit_block (self, block_index):
|
||||
pass
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BytecodeFlowVisitor (BytecodeVisitor):
|
||||
def visit (self, flow):
|
||||
self.block_list = list(flow.keys())
|
||||
self.block_list.sort()
|
||||
self.enter_flow_object(flow)
|
||||
for block in self.block_list:
|
||||
prelude = self.enter_block(block)
|
||||
prelude_isa_list = isinstance(prelude, list)
|
||||
if prelude or prelude_isa_list:
|
||||
if not prelude_isa_list:
|
||||
prelude = []
|
||||
new_stmts = list(self.visit_op(i, op, arg, *args)
|
||||
for i, op, _, arg, args in flow[block])
|
||||
self.new_flow[block] = list(itertools.chain(
|
||||
prelude, *new_stmts))
|
||||
self.exit_block(block)
|
||||
del self.block_list
|
||||
return self.exit_flow_object(flow)
|
||||
|
||||
def visit_op (self, i, op, arg, *args, **kws):
|
||||
new_args = []
|
||||
for child_i, child_op, _, child_arg, child_args in args:
|
||||
new_args.extend(self.visit_op(child_i, child_op, child_arg,
|
||||
*child_args))
|
||||
ret_val = super(BytecodeFlowVisitor, self).visit_op(i, op, arg,
|
||||
*new_args)
|
||||
return ret_val
|
||||
|
||||
def enter_flow_object (self, flow):
|
||||
self.new_flow = {}
|
||||
|
||||
def exit_flow_object (self, flow):
|
||||
ret_val = self.new_flow
|
||||
del self.new_flow
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
pass
|
||||
|
||||
def exit_block (self, block):
|
||||
pass
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class BenignBytecodeVisitorMixin (object):
|
||||
def _do_nothing (self, i, op, arg, *args, **kws):
|
||||
return [(i, op, self.opnames[op], arg, args)]
|
||||
|
||||
op_BINARY_ADD = _do_nothing
|
||||
op_BINARY_AND = _do_nothing
|
||||
op_BINARY_DIVIDE = _do_nothing
|
||||
op_BINARY_FLOOR_DIVIDE = _do_nothing
|
||||
op_BINARY_LSHIFT = _do_nothing
|
||||
op_BINARY_MODULO = _do_nothing
|
||||
op_BINARY_MULTIPLY = _do_nothing
|
||||
op_BINARY_OR = _do_nothing
|
||||
op_BINARY_POWER = _do_nothing
|
||||
op_BINARY_RSHIFT = _do_nothing
|
||||
op_BINARY_SUBSCR = _do_nothing
|
||||
op_BINARY_SUBTRACT = _do_nothing
|
||||
op_BINARY_TRUE_DIVIDE = _do_nothing
|
||||
op_BINARY_XOR = _do_nothing
|
||||
op_BREAK_LOOP = _do_nothing
|
||||
op_BUILD_CLASS = _do_nothing
|
||||
op_BUILD_LIST = _do_nothing
|
||||
op_BUILD_MAP = _do_nothing
|
||||
op_BUILD_SET = _do_nothing
|
||||
op_BUILD_SLICE = _do_nothing
|
||||
op_BUILD_TUPLE = _do_nothing
|
||||
op_CALL_FUNCTION = _do_nothing
|
||||
op_CALL_FUNCTION_KW = _do_nothing
|
||||
op_CALL_FUNCTION_VAR = _do_nothing
|
||||
op_CALL_FUNCTION_VAR_KW = _do_nothing
|
||||
op_COMPARE_OP = _do_nothing
|
||||
op_CONTINUE_LOOP = _do_nothing
|
||||
op_DELETE_ATTR = _do_nothing
|
||||
op_DELETE_DEREF = _do_nothing
|
||||
op_DELETE_FAST = _do_nothing
|
||||
op_DELETE_GLOBAL = _do_nothing
|
||||
op_DELETE_NAME = _do_nothing
|
||||
op_DELETE_SLICE = _do_nothing
|
||||
op_DELETE_SUBSCR = _do_nothing
|
||||
op_DUP_TOP = _do_nothing
|
||||
op_DUP_TOPX = _do_nothing
|
||||
op_DUP_TOP_TWO = _do_nothing
|
||||
op_END_FINALLY = _do_nothing
|
||||
op_EXEC_STMT = _do_nothing
|
||||
op_EXTENDED_ARG = _do_nothing
|
||||
op_FOR_ITER = _do_nothing
|
||||
op_GET_ITER = _do_nothing
|
||||
op_IMPORT_FROM = _do_nothing
|
||||
op_IMPORT_NAME = _do_nothing
|
||||
op_IMPORT_STAR = _do_nothing
|
||||
op_INPLACE_ADD = _do_nothing
|
||||
op_INPLACE_AND = _do_nothing
|
||||
op_INPLACE_DIVIDE = _do_nothing
|
||||
op_INPLACE_FLOOR_DIVIDE = _do_nothing
|
||||
op_INPLACE_LSHIFT = _do_nothing
|
||||
op_INPLACE_MODULO = _do_nothing
|
||||
op_INPLACE_MULTIPLY = _do_nothing
|
||||
op_INPLACE_OR = _do_nothing
|
||||
op_INPLACE_POWER = _do_nothing
|
||||
op_INPLACE_RSHIFT = _do_nothing
|
||||
op_INPLACE_SUBTRACT = _do_nothing
|
||||
op_INPLACE_TRUE_DIVIDE = _do_nothing
|
||||
op_INPLACE_XOR = _do_nothing
|
||||
op_JUMP_ABSOLUTE = _do_nothing
|
||||
op_JUMP_FORWARD = _do_nothing
|
||||
op_JUMP_IF_FALSE = _do_nothing
|
||||
op_JUMP_IF_FALSE_OR_POP = _do_nothing
|
||||
op_JUMP_IF_TRUE = _do_nothing
|
||||
op_JUMP_IF_TRUE_OR_POP = _do_nothing
|
||||
op_LIST_APPEND = _do_nothing
|
||||
op_LOAD_ATTR = _do_nothing
|
||||
op_LOAD_BUILD_CLASS = _do_nothing
|
||||
op_LOAD_CLOSURE = _do_nothing
|
||||
op_LOAD_CONST = _do_nothing
|
||||
op_LOAD_DEREF = _do_nothing
|
||||
op_LOAD_FAST = _do_nothing
|
||||
op_LOAD_GLOBAL = _do_nothing
|
||||
op_LOAD_LOCALS = _do_nothing
|
||||
op_LOAD_NAME = _do_nothing
|
||||
op_MAKE_CLOSURE = _do_nothing
|
||||
op_MAKE_FUNCTION = _do_nothing
|
||||
op_MAP_ADD = _do_nothing
|
||||
op_NOP = _do_nothing
|
||||
op_POP_BLOCK = _do_nothing
|
||||
op_POP_EXCEPT = _do_nothing
|
||||
op_POP_JUMP_IF_FALSE = _do_nothing
|
||||
op_POP_JUMP_IF_TRUE = _do_nothing
|
||||
op_POP_TOP = _do_nothing
|
||||
op_PRINT_EXPR = _do_nothing
|
||||
op_PRINT_ITEM = _do_nothing
|
||||
op_PRINT_ITEM_TO = _do_nothing
|
||||
op_PRINT_NEWLINE = _do_nothing
|
||||
op_PRINT_NEWLINE_TO = _do_nothing
|
||||
op_RAISE_VARARGS = _do_nothing
|
||||
op_RETURN_VALUE = _do_nothing
|
||||
op_ROT_FOUR = _do_nothing
|
||||
op_ROT_THREE = _do_nothing
|
||||
op_ROT_TWO = _do_nothing
|
||||
op_SETUP_EXCEPT = _do_nothing
|
||||
op_SETUP_FINALLY = _do_nothing
|
||||
op_SETUP_LOOP = _do_nothing
|
||||
op_SETUP_WITH = _do_nothing
|
||||
op_SET_ADD = _do_nothing
|
||||
op_SLICE = _do_nothing
|
||||
op_STOP_CODE = _do_nothing
|
||||
op_STORE_ATTR = _do_nothing
|
||||
op_STORE_DEREF = _do_nothing
|
||||
op_STORE_FAST = _do_nothing
|
||||
op_STORE_GLOBAL = _do_nothing
|
||||
op_STORE_LOCALS = _do_nothing
|
||||
op_STORE_MAP = _do_nothing
|
||||
op_STORE_NAME = _do_nothing
|
||||
op_STORE_SLICE = _do_nothing
|
||||
op_STORE_SUBSCR = _do_nothing
|
||||
op_UNARY_CONVERT = _do_nothing
|
||||
op_UNARY_INVERT = _do_nothing
|
||||
op_UNARY_NEGATIVE = _do_nothing
|
||||
op_UNARY_NOT = _do_nothing
|
||||
op_UNARY_POSITIVE = _do_nothing
|
||||
op_UNPACK_EX = _do_nothing
|
||||
op_UNPACK_SEQUENCE = _do_nothing
|
||||
op_WITH_CLEANUP = _do_nothing
|
||||
op_YIELD_VALUE = _do_nothing
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of bytecode_visitor.py
|
||||
42
llpython/bytetype.py
Normal file
42
llpython/bytetype.py
Normal file
|
|
@ -0,0 +1,42 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import ctypes
|
||||
|
||||
import llvm.core as lc
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
lvoid = lc.Type.void()
|
||||
li1 = lc.Type.int(1)
|
||||
li8 = lc.Type.int(8)
|
||||
li16 = lc.Type.int(16)
|
||||
li32 = lc.Type.int(32)
|
||||
li64 = lc.Type.int(64)
|
||||
liptr = lc.Type.int(ctypes.sizeof(ctypes.c_void_p) * 8)
|
||||
lc_size_t = lc.Type.int(ctypes.sizeof(
|
||||
getattr(ctypes, 'c_ssize_t', getattr(ctypes, 'c_size_t'))) * 8)
|
||||
lfloat = lc.Type.float()
|
||||
ldouble = lc.Type.double()
|
||||
li8_ptr = lc.Type.pointer(li8)
|
||||
|
||||
lc_int = lc.Type.int(ctypes.sizeof(ctypes.c_int) * 8)
|
||||
lc_long = lc.Type.int(ctypes.sizeof(ctypes.c_long) * 8)
|
||||
|
||||
l_pyobject_head = [lc_size_t, lc.Type.pointer(li32)]
|
||||
l_pyobject_head_struct = lc.Type.struct(l_pyobject_head)
|
||||
l_pyobj_p = l_pyobject_head_struct_p = lc.Type.pointer(l_pyobject_head_struct)
|
||||
l_pyfunc = lc.Type.function(l_pyobj_p, (l_pyobj_p, l_pyobj_p))
|
||||
|
||||
strlen = lc.Type.function(lc_size_t, (li8_ptr,))
|
||||
strncpy = lc.Type.function(li8_ptr, (li8_ptr, li8_ptr, lc_size_t))
|
||||
strndup = lc.Type.function(li8_ptr, (li8_ptr, lc_size_t))
|
||||
malloc = lc.Type.function(li8_ptr, (lc_size_t,))
|
||||
free = lc.Type.function(lvoid, (li8_ptr,))
|
||||
|
||||
Py_BuildValue = lc.Type.function(l_pyobj_p, [li8_ptr], True)
|
||||
PyArg_ParseTuple = lc.Type.function(lc_int, [l_pyobj_p, li8_ptr], True)
|
||||
PyEval_SaveThread = lc.Type.function(li8_ptr, [])
|
||||
PyEval_RestoreThread = lc.Type.function(lc.Type.void(), [li8_ptr])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of bytetype.py
|
||||
217
llpython/control_flow.py
Normal file
217
llpython/control_flow.py
Normal file
|
|
@ -0,0 +1,217 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import pprint
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class ControlFlowGraph (object):
|
||||
def __init__ (self):
|
||||
self.blocks = {}
|
||||
self.blocks_in = {}
|
||||
self.blocks_out = {}
|
||||
self.blocks_reads = {}
|
||||
self.blocks_writes = {}
|
||||
self.blocks_writer = {}
|
||||
self.blocks_dom = {}
|
||||
self.blocks_reaching = {}
|
||||
|
||||
def add_block (self, key, value = None):
|
||||
self.blocks[key] = value
|
||||
if key not in self.blocks_in:
|
||||
self.blocks_in[key] = set()
|
||||
self.blocks_out[key] = set()
|
||||
self.blocks_reads[key] = set()
|
||||
self.blocks_writes[key] = set()
|
||||
self.blocks_writer[key] = {}
|
||||
|
||||
def add_edge (self, from_block, to_block):
|
||||
self.blocks_out[from_block].add(to_block)
|
||||
self.blocks_in[to_block].add(from_block)
|
||||
|
||||
def unlink_unreachables (self):
|
||||
changed = True
|
||||
next_blocks = self.blocks.keys()
|
||||
next_blocks.remove(0)
|
||||
while changed:
|
||||
changed = False
|
||||
blocks = next_blocks
|
||||
next_blocks = blocks[:]
|
||||
for block in blocks:
|
||||
if len(self.blocks_in[block]) == 0:
|
||||
blocks_out = self.blocks_out[block]
|
||||
for out_edge in blocks_out:
|
||||
self.blocks_in[out_edge].discard(block)
|
||||
blocks_out.clear()
|
||||
next_blocks.remove(block)
|
||||
changed = True
|
||||
|
||||
def compute_dataflow (self):
|
||||
'''Compute the dominator and reaching dataflow relationships
|
||||
in the CFG.'''
|
||||
blocks = set(self.blocks.keys())
|
||||
nonentry_blocks = blocks.copy()
|
||||
for block in blocks:
|
||||
self.blocks_dom[block] = blocks
|
||||
self.blocks_reaching[block] = set((block,))
|
||||
if len(self.blocks_in[block]) == 0:
|
||||
self.blocks_dom[block] = set((block,))
|
||||
nonentry_blocks.remove(block)
|
||||
changed = True
|
||||
while changed:
|
||||
changed = False
|
||||
for block in nonentry_blocks:
|
||||
olddom = self.blocks_dom[block]
|
||||
newdom = set.intersection(*[self.blocks_dom[pred]
|
||||
for pred in self.blocks_in[block]])
|
||||
newdom.add(block)
|
||||
if newdom != olddom:
|
||||
changed = True
|
||||
self.blocks_dom[block] = newdom
|
||||
oldreaching = self.blocks_reaching[block]
|
||||
newreaching = set.union(
|
||||
*[self.blocks_reaching[pred]
|
||||
for pred in self.blocks_in[block]])
|
||||
newreaching.add(block)
|
||||
if newreaching != oldreaching:
|
||||
changed = True
|
||||
self.blocks_reaching[block] = newreaching
|
||||
return self.blocks_dom, self.blocks_reaching
|
||||
|
||||
def update_for_ssa (self):
|
||||
'''Modify the blocks_writes map to reflect phi nodes inserted
|
||||
for static single assignment representations.'''
|
||||
joins = [block for block in self.blocks.keys()
|
||||
if len(self.blocks_in[block]) > 1]
|
||||
changed = True
|
||||
while changed:
|
||||
changed = False
|
||||
for block in joins:
|
||||
phis_needed = self.phi_needed(block)
|
||||
for affected_local in phis_needed:
|
||||
if affected_local not in self.blocks_writes[block]:
|
||||
changed = True
|
||||
# NOTE: For this to work, we assume that basic
|
||||
# blocks are indexed by their instruction
|
||||
# index in the VM bytecode.
|
||||
self.writes_local(block, block, affected_local)
|
||||
if changed:
|
||||
# Any modifications have invalidated the reaching
|
||||
# definitions, so delete any memoized results.
|
||||
if hasattr(self, 'reaching_definitions'):
|
||||
del self.reaching_definitions
|
||||
|
||||
def idom (self, block):
|
||||
'''Compute the immediate dominator (idom) of the given block
|
||||
key. Returns None if the block has no in edges.
|
||||
|
||||
Note that in the case where there are multiple immediate
|
||||
dominators (a join after a non-loop branch), this returns one
|
||||
of the predecessors, but is not guaranteed to reliably select
|
||||
one over the others (depends on the ordering of the set type
|
||||
iterator).'''
|
||||
preds = self.blocks_in[block]
|
||||
npreds = len(preds)
|
||||
if npreds == 0:
|
||||
ret_val = None
|
||||
elif npreds == 1:
|
||||
ret_val = tuple(preds)[0]
|
||||
else:
|
||||
ret_val = [pred for pred in preds
|
||||
if block not in self.blocks_dom[pred]][0]
|
||||
return ret_val
|
||||
|
||||
def block_writes_to_writer_map (self, block):
|
||||
ret_val = {}
|
||||
for local in self.blocks_writes[block]:
|
||||
ret_val[local] = block
|
||||
return ret_val
|
||||
|
||||
def get_reaching_definitions (self, block):
|
||||
'''Return a nested map for the given block
|
||||
s.t. ret_val[pred][local] equals the block key for the
|
||||
definition of local that reaches the argument block via that
|
||||
predecessor.
|
||||
|
||||
Useful for actually populating phi nodes, once you know you
|
||||
need them.'''
|
||||
has_memoized = hasattr(self, 'reaching_definitions')
|
||||
if has_memoized and block in self.reaching_definitions:
|
||||
ret_val = self.reaching_definitions[block]
|
||||
else:
|
||||
preds = self.blocks_in[block]
|
||||
ret_val = {}
|
||||
for pred in preds:
|
||||
ret_val[pred] = self.block_writes_to_writer_map(pred)
|
||||
crnt = self.idom(pred)
|
||||
while crnt != None:
|
||||
crnt_writer_map = self.block_writes_to_writer_map(crnt)
|
||||
# This order of update favors the first definitions
|
||||
# encountered in the traversal since the traversal
|
||||
# visits blocks in reverse execution order.
|
||||
crnt_writer_map.update(ret_val[pred])
|
||||
ret_val[pred] = crnt_writer_map
|
||||
crnt = self.idom(crnt)
|
||||
if not has_memoized:
|
||||
self.reaching_definitions = {}
|
||||
self.reaching_definitions[block] = ret_val
|
||||
return ret_val
|
||||
|
||||
def nreaches (self, block):
|
||||
'''For each local, find the number of unique reaching
|
||||
definitions the current block has.'''
|
||||
reaching_definitions = self.get_reaching_definitions(block)
|
||||
definition_map = {}
|
||||
for pred in self.blocks_in[block]:
|
||||
reaching_from_pred = reaching_definitions[pred]
|
||||
for local in reaching_from_pred.keys():
|
||||
if local not in definition_map:
|
||||
definition_map[local] = set()
|
||||
definition_map[local].add(reaching_from_pred[local])
|
||||
ret_val = {}
|
||||
for local in definition_map.keys():
|
||||
ret_val[local] = len(definition_map[local])
|
||||
return ret_val
|
||||
|
||||
def writes_local (self, block, write_instr_index, local_index):
|
||||
self.blocks_writes[block].add(local_index)
|
||||
block_writers = self.blocks_writer[block]
|
||||
old_index = block_writers.get(local_index, -1)
|
||||
# This checks for a corner case that would impact
|
||||
# numba.translate.Translate.build_phi_nodes().
|
||||
assert old_index != write_instr_index, (
|
||||
"Found corner case for STORE_FAST at a CFG join!")
|
||||
block_writers[local_index] = max(write_instr_index, old_index)
|
||||
|
||||
def phi_needed (self, join):
|
||||
'''Return the set of locals that will require a phi node to be
|
||||
generated at the given join.'''
|
||||
nreaches = self.nreaches(join)
|
||||
return set([local for local in nreaches.keys()
|
||||
if nreaches[local] > 1])
|
||||
|
||||
def pprint (self, *args, **kws):
|
||||
pprint.pprint(self.__dict__, *args, **kws)
|
||||
|
||||
def pformat (self, *args, **kws):
|
||||
return pprint.pformat(self.__dict__, *args, **kws)
|
||||
|
||||
def to_dot (self, graph_name = None):
|
||||
'''Return a dot (digraph visualizer in Graphviz) graph
|
||||
description as a string.'''
|
||||
if graph_name is None:
|
||||
graph_name = 'CFG_%d' % id(self)
|
||||
lines_out = []
|
||||
for block_index in self.blocks:
|
||||
lines_out.append(
|
||||
'BLOCK_%r [shape=box, label="BLOCK_%r\\nr: %r, w: %r"];' %
|
||||
(block_index, block_index,
|
||||
tuple(self.blocks_reads[block_index]),
|
||||
tuple(self.blocks_writes[block_index])))
|
||||
for block_index in self.blocks:
|
||||
for out_edge in self.blocks_out[block_index]:
|
||||
lines_out.append('BLOCK_%r -> BLOCK_%r;' %
|
||||
(block_index, out_edge))
|
||||
return 'digraph %s {\n%s\n}\n' % (graph_name, '\n'.join(lines_out))
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of control_flow.py
|
||||
26
llpython/gen_bytecode_visitor.py
Normal file
26
llpython/gen_bytecode_visitor.py
Normal file
|
|
@ -0,0 +1,26 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
from . import opcode_util
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def generate_bytecode_visitor (classname = 'BytecodeVisitor',
|
||||
baseclass = 'object'):
|
||||
opnames = list(set((opname.split('+')[0]
|
||||
for opname in opcode_util.OPCODE_MAP.keys())))
|
||||
opnames.sort()
|
||||
return 'class %s (%s):\n%s\n' % (
|
||||
classname, baseclass,
|
||||
'\n\n'.join((' def op_%s (self, i, op, arg):\n'
|
||||
' raise NotImplementedError("%s.op_%s")' %
|
||||
(opname, classname, opname)
|
||||
for opname in opnames)))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
print(generate_bytecode_visitor(*sys.argv[1:]))
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of gen_bytecode_visitor.py
|
||||
367
llpython/nobitey.py
Normal file
367
llpython/nobitey.py
Normal file
|
|
@ -0,0 +1,367 @@
|
|||
# ______________________________________________________________________
|
||||
from __future__ import absolute_import
|
||||
import sys
|
||||
import os.path
|
||||
import imp
|
||||
import io
|
||||
import types
|
||||
|
||||
import llvm.core as lc
|
||||
import llvm.ee as le
|
||||
|
||||
from . import bytetype, byte_translator
|
||||
from .pyaddfunc import pyaddfunc
|
||||
|
||||
LLVM_TO_INT_PARSE_STR_MAP = {
|
||||
8 : 'b',
|
||||
16 : 'h',
|
||||
32 : 'i', # Note that on 32-bit systems sizeof(int) == sizeof(long)
|
||||
64 : 'L', # Seeing sizeof(long long) == 8 on both 32 and 64-bit platforms
|
||||
}
|
||||
|
||||
LLVM_TO_PARSE_STR_MAP = {
|
||||
lc.TYPE_FLOAT : 'f',
|
||||
lc.TYPE_DOUBLE : 'd',
|
||||
}
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
# XXX Stolen from numba.translate
|
||||
|
||||
def get_string_constant (module, const_str):
|
||||
const_name = "__STR_%x" % (hash(const_str),)
|
||||
try:
|
||||
ret_val = module.get_global_variable_named(const_name)
|
||||
except:
|
||||
lconst_str = lc.Constant.stringz(const_str)
|
||||
ret_val = module.add_global_variable(lconst_str.type, const_name)
|
||||
ret_val.initializer = lconst_str
|
||||
ret_val.linkage = lc.LINKAGE_INTERNAL
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class NoBitey (object):
|
||||
def __init__ (self, target_module = None, type_annotations = None):
|
||||
if target_module is None:
|
||||
target_module = lc.Module.new('NoBitey_%d' % id(self))
|
||||
if type_annotations is None:
|
||||
type_annotations = {}
|
||||
self.target_module = target_module
|
||||
self.type_aliases = type_annotations # Reserved for future use.
|
||||
|
||||
def _build_parse_string (self, llvm_type):
|
||||
kind = llvm_type.kind
|
||||
if kind == lc.TYPE_INTEGER:
|
||||
ret_val = LLVM_TO_INT_PARSE_STR_MAP[llvm_type.width]
|
||||
elif kind in LLVM_TO_PARSE_STR_MAP:
|
||||
ret_val = LLVM_TO_PARSE_STR_MAP[kind]
|
||||
else:
|
||||
raise TypeError('Unsupported LLVM type: %s' % str(llvm_type))
|
||||
return ret_val
|
||||
|
||||
def build_parse_string (self, llvm_tys):
|
||||
"""Given a set of LLVM types, return a string for parsing
|
||||
them via PyArg_ParseTuple."""
|
||||
return ''.join((self._build_parse_string(ty)
|
||||
for ty in llvm_tys))
|
||||
|
||||
def handle_abi_casts (self, builder, result):
|
||||
if result.type.kind == lc.TYPE_FLOAT:
|
||||
# NOTE: The C ABI apparently casts floats to doubles when
|
||||
# an argument must be pushed on the stack, as is the case
|
||||
# when calling a variable argument function.
|
||||
# XXX Is there documentation on this where I can find all
|
||||
# coercion rules? Do we still need some libffi
|
||||
# integration?
|
||||
result = builder.fpext(result, bytetype.ldouble)
|
||||
return result
|
||||
|
||||
def build_wrapper_function (self, llvm_function, engine = None):
|
||||
arg_types = llvm_function.type.pointee.args
|
||||
return_type = llvm_function.type.pointee.return_type
|
||||
li32_0 = lc.Constant.int(bytetype.li32, 0)
|
||||
def get_llvm_function (builder):
|
||||
if self.target_module != llvm_function.module:
|
||||
llvm_function_ptr = self.target_module.add_global_variable(
|
||||
llvm_function.type, llvm_function.name)
|
||||
llvm_function_ptr.initializer = lc.Constant.inttoptr(
|
||||
lc.Constant.int(
|
||||
bytetype.liptr,
|
||||
engine.get_pointer_to_function(llvm_function)),
|
||||
llvm_function.type)
|
||||
llvm_function_ptr.linkage = lc.LINKAGE_INTERNAL
|
||||
ret_val = builder.load(llvm_function_ptr)
|
||||
else:
|
||||
ret_val = llvm_function
|
||||
return ret_val
|
||||
def build_parse_args (builder):
|
||||
return [builder.alloca(arg_type) for arg_type in arg_types]
|
||||
def build_parse_string (builder):
|
||||
parse_str = get_string_constant(
|
||||
self.target_module, self.build_parse_string(arg_types))
|
||||
return builder.gep(parse_str, (li32_0, li32_0))
|
||||
def load_target_args (builder, args):
|
||||
return [builder.load(arg) for arg in args]
|
||||
def build_build_string (builder):
|
||||
build_str = get_string_constant(
|
||||
self.target_module, self._build_parse_string(return_type))
|
||||
return builder.gep(build_str, (li32_0, li32_0))
|
||||
handle_abi_casts = self.handle_abi_casts
|
||||
target_function_name = llvm_function.name + "_wrapper"
|
||||
# __________________________________________________
|
||||
@byte_translator.llpython(bytetype.l_pyfunc, self.target_module,
|
||||
**locals())
|
||||
def _wrapper (self, args):
|
||||
ret_val = l_pyobj_p(0)
|
||||
parse_args = build_parse_args()
|
||||
parse_result = PyArg_ParseTuple(args, build_parse_string(),
|
||||
*parse_args)
|
||||
if parse_result != li32(0):
|
||||
thread_state = PyEval_SaveThread()
|
||||
target_args = load_target_args(parse_args)
|
||||
llresult = handle_abi_casts(get_llvm_function()(*target_args))
|
||||
PyEval_RestoreThread(thread_state)
|
||||
ret_val = Py_BuildValue(build_build_string(), llresult)
|
||||
return ret_val
|
||||
# __________________________________________________
|
||||
return _wrapper
|
||||
|
||||
def wrap_llvm_module (self, llvm_module, engine = None, py_module = None):
|
||||
'''
|
||||
Shamefully adapted from bitey.bind.wrap_llvm_module().
|
||||
'''
|
||||
functions = [func for func in llvm_module.functions
|
||||
if not func.name.startswith("_")
|
||||
and not func.is_declaration
|
||||
and func.linkage == lc.LINKAGE_EXTERNAL]
|
||||
if engine is None:
|
||||
engine = le.ExecutionEngine.new(llvm_module)
|
||||
wrappers = [self.build_wrapper_function(func, engine)
|
||||
for func in functions]
|
||||
if __debug__: print(self.target_module)
|
||||
if self.target_module != llvm_module:
|
||||
engine.add_module(self.target_module)
|
||||
py_wrappers = [pyaddfunc(wrapper.name,
|
||||
engine.get_pointer_to_function(wrapper))
|
||||
for wrapper in wrappers]
|
||||
if py_module:
|
||||
for py_wrapper in py_wrappers:
|
||||
setattr(py_module, py_wrapper.__name__[:-8], py_wrapper)
|
||||
setattr(py_module, '_llvm_module', llvm_module)
|
||||
setattr(py_module, '_llvm_engine', engine)
|
||||
if self.target_module != llvm_module:
|
||||
setattr(py_module, '_llvm_wrappers', self.target_module)
|
||||
return engine, py_wrappers
|
||||
|
||||
def wrap_llvm_module_in_python (self, llvm_module, py_module = None):
|
||||
'''
|
||||
Mildly reworked and abstracted bitey.bind.wrap_llvm_bitcode().
|
||||
Abstracted to accept any existing LLVM Module object, and
|
||||
return a Python wrapper module (even if one wasn't originally
|
||||
specified).
|
||||
'''
|
||||
if py_module is None:
|
||||
py_module = types.ModuleType(str(llvm_module.id))
|
||||
engine = le.ExecutionEngine.new(llvm_module)
|
||||
self.wrap_llvm_module(llvm_module, engine, py_module)
|
||||
return py_module
|
||||
|
||||
def wrap_llvm_bitcode (self, bitcode, py_module = None):
|
||||
'''
|
||||
Intended to be drop-in replacement of
|
||||
bitey.bind.wrap_llvm_bitcode().
|
||||
'''
|
||||
return self.wrap_llvm_module_in_python(
|
||||
lc.Module.from_bitcode(io.BytesIO(bitcode)), py_module)
|
||||
|
||||
def wrap_llvm_assembly (self, llvm_asm, py_module = None):
|
||||
return self.wrap_llvm_module_in_python(
|
||||
lc.Module.from_assembly(io.BytesIO(llvm_asm)), py_module)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class NoBiteyLoader(object):
|
||||
"""
|
||||
Load LLVM compiled bitcode and autogenerate a ctypes binding.
|
||||
|
||||
Initially copied and adapted from bitey.loader module.
|
||||
"""
|
||||
def __init__(self, pkg, name, source, preload, postload):
|
||||
self.package = pkg
|
||||
self.name = name
|
||||
self.fullname = '.'.join((pkg,name))
|
||||
self.source = source
|
||||
self.preload = preload
|
||||
self.postload = postload
|
||||
|
||||
@classmethod
|
||||
def _check_magic(cls, filename):
|
||||
if os.path.exists(filename):
|
||||
magic = open(filename,"rb").read(4)
|
||||
if magic == b'\xde\xc0\x17\x0b':
|
||||
return True
|
||||
elif magic[:2] == b'\x42\x43':
|
||||
return True
|
||||
else:
|
||||
return False
|
||||
else:
|
||||
return False
|
||||
|
||||
@classmethod
|
||||
def build_module(cls, fullname, source_path, source_data, preload=None,
|
||||
postload=None):
|
||||
name = fullname.split(".")[-1]
|
||||
mod = imp.new_module(name)
|
||||
if preload:
|
||||
exec(preload, mod.__dict__, mod.__dict__)
|
||||
type_annotations = getattr(mod, '_type_annotations', None)
|
||||
nb = NoBitey(type_annotations = type_annotations)
|
||||
if source_path.endswith(('.o', '.bc')):
|
||||
nb.wrap_llvm_bitcode(source_data, mod)
|
||||
elif source_path.endswith('.s'):
|
||||
nb.wrap_llvm_assembly(source_data, mod)
|
||||
if postload:
|
||||
exec(postload, mod.__dict__, mod.__dict__)
|
||||
return mod
|
||||
|
||||
@classmethod
|
||||
def find_module(cls, fullname, paths = None):
|
||||
if paths is None:
|
||||
paths = sys.path
|
||||
names = fullname.split('.')
|
||||
modname = names[-1]
|
||||
source_paths = None
|
||||
for f in paths:
|
||||
path = os.path.join(os.path.realpath(f), modname)
|
||||
source = path + '.o'
|
||||
if cls._check_magic(source):
|
||||
source_paths = path, source
|
||||
break
|
||||
source = path + '.bc'
|
||||
if os.path.exists(source):
|
||||
source_paths = path, source
|
||||
break
|
||||
source = path + '.s'
|
||||
if os.path.exists(source):
|
||||
source_paths = path, source
|
||||
break
|
||||
if source_paths:
|
||||
path, source = source_paths
|
||||
return cls('.'.join(names[:-1]), modname, source,
|
||||
path + ".pre.py", path + ".post.py")
|
||||
|
||||
def get_code(self, module):
|
||||
pass
|
||||
|
||||
def get_data(self, module):
|
||||
pass
|
||||
|
||||
def get_filename(self, name):
|
||||
return self.source
|
||||
|
||||
def get_source(self, name):
|
||||
with open(self.source, 'rb') as f:
|
||||
return f.read()
|
||||
|
||||
def is_package(self, *args, **kw):
|
||||
return False
|
||||
|
||||
def load_module(self, fullname):
|
||||
if fullname in sys.modules:
|
||||
return sys.modules[fullname]
|
||||
|
||||
preload = None
|
||||
postload = None
|
||||
|
||||
# Get the preload file (if any)
|
||||
if os.path.exists(self.preload):
|
||||
with open(self.preload) as f:
|
||||
preload = f.read()
|
||||
|
||||
# Get the source
|
||||
with open(self.source, 'rb') as f:
|
||||
source_data = f.read()
|
||||
|
||||
# Get the postload file (if any)
|
||||
if os.path.exists(self.postload):
|
||||
with open(self.postload) as f:
|
||||
postload = f.read()
|
||||
|
||||
mod = self.build_module(fullname, self.get_filename(None), source_data,
|
||||
preload, postload)
|
||||
sys.modules[fullname] = mod
|
||||
mod.__loader__ = self
|
||||
mod.__file__ = self.source
|
||||
return mod
|
||||
|
||||
@classmethod
|
||||
def install(cls):
|
||||
if cls not in sys.meta_path:
|
||||
sys.meta_path.append(cls)
|
||||
|
||||
@classmethod
|
||||
def remove(cls):
|
||||
sys.meta_path.remove(cls)
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def _mk_add_42 (llvm_module, at_type = bytetype.lc_long):
|
||||
f = llvm_module.add_function(
|
||||
lc.Type.function(at_type, [at_type]), 'add_42_%s' % str(at_type))
|
||||
block = f.append_basic_block('entry')
|
||||
builder = lc.Builder.new(block)
|
||||
if at_type.kind == lc.TYPE_INTEGER:
|
||||
const_42 = lc.Constant.int(at_type, 42)
|
||||
add = builder.add
|
||||
elif at_type.kind in (lc.TYPE_FLOAT, lc.TYPE_DOUBLE):
|
||||
const_42 = lc.Constant.real(at_type, 42.)
|
||||
add = builder.fadd
|
||||
else:
|
||||
raise TypeError('Unsupported type: %s' % str(at_type))
|
||||
builder.ret(add(f.args[0], const_42))
|
||||
return f
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_test_module ():
|
||||
llvm_module = lc.Module.new('nobitey_test')
|
||||
for ty in (bytetype.li32, bytetype.li64, bytetype.lfloat,
|
||||
bytetype.ldouble):
|
||||
fn = _mk_add_42(llvm_module, ty)
|
||||
return llvm_module
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def test_wrap_module (arg = None):
|
||||
# Build up a module.
|
||||
m = build_test_module()
|
||||
if arg and arg.lower() == 'separated':
|
||||
wrap_module = NoBitey().wrap_llvm_module_in_python(m)
|
||||
else:
|
||||
wrap_module = NoBitey(m).wrap_llvm_module_in_python(m)
|
||||
# Now try running the generated wrappers.
|
||||
for py_wf_name in ('add_42_i32', 'add_42_i64', 'add_42_float',
|
||||
'add_42_double'):
|
||||
py_wf = getattr(wrap_module, py_wf_name)
|
||||
for i in range(42):
|
||||
result = py_wf(i)
|
||||
expected = i + 42
|
||||
assert result == expected, "%r != %r in %r" % (
|
||||
result, expected, py_wf)
|
||||
return wrap_module
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def main (*args):
|
||||
if args:
|
||||
for arg in args:
|
||||
test_wrap_module(arg)
|
||||
else:
|
||||
test_wrap_module()
|
||||
|
||||
if __name__ == "__main__":
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of nobitey.py
|
||||
225
llpython/opcode_util.py
Normal file
225
llpython/opcode_util.py
Normal file
|
|
@ -0,0 +1,225 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import dis
|
||||
import opcode
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Module data
|
||||
|
||||
hasjump = opcode.hasjrel + opcode.hasjabs
|
||||
hascbranch = [op for op in hasjump
|
||||
if 'IF' in opcode.opname[op]
|
||||
or opcode.opname[op] in ('FOR_ITER', 'SETUP_LOOP')]
|
||||
|
||||
# Since the actual opcode value may change, manage opcode abstraction
|
||||
# data by opcode name.
|
||||
|
||||
OPCODE_MAP = {
|
||||
'BINARY_ADD': (2, 1, None),
|
||||
'BINARY_AND': (2, 1, None),
|
||||
'BINARY_DIVIDE': (2, 1, None),
|
||||
'BINARY_FLOOR_DIVIDE': (2, 1, None),
|
||||
'BINARY_LSHIFT': (2, 1, None),
|
||||
'BINARY_MODULO': (2, 1, None),
|
||||
'BINARY_MULTIPLY': (2, 1, None),
|
||||
'BINARY_OR': (2, 1, None),
|
||||
'BINARY_POWER': (2, 1, None),
|
||||
'BINARY_RSHIFT': (2, 1, None),
|
||||
'BINARY_SUBSCR': (2, 1, None),
|
||||
'BINARY_SUBTRACT': (2, 1, None),
|
||||
'BINARY_TRUE_DIVIDE': (2, 1, None),
|
||||
'BINARY_XOR': (2, 1, None),
|
||||
'BREAK_LOOP': (0, None, 1),
|
||||
'BUILD_CLASS': (None, None, None),
|
||||
'BUILD_LIST': (-1, 1, None),
|
||||
'BUILD_MAP': (None, None, None),
|
||||
'BUILD_SET': (None, None, None),
|
||||
'BUILD_SLICE': (None, None, None),
|
||||
'BUILD_TUPLE': (-1, 1, None),
|
||||
'CALL_FUNCTION': (-2, 1, None),
|
||||
'CALL_FUNCTION_KW': (-3, 1, None),
|
||||
'CALL_FUNCTION_VAR': (-3, 1, None),
|
||||
'CALL_FUNCTION_VAR_KW': (-4, 1, None),
|
||||
'COMPARE_OP': (2, 1, None),
|
||||
'CONTINUE_LOOP': (None, None, None),
|
||||
'DELETE_ATTR': (1, None, 1),
|
||||
'DELETE_DEREF': (None, None, None),
|
||||
'DELETE_FAST': (0, None, 1),
|
||||
'DELETE_GLOBAL': (0, None, 1),
|
||||
'DELETE_NAME': (0, None, 1),
|
||||
'DELETE_SLICE+0': (1, None, 1),
|
||||
'DELETE_SLICE+1': (2, None, 1),
|
||||
'DELETE_SLICE+2': (2, None, 1),
|
||||
'DELETE_SLICE+3': (3, None, 1),
|
||||
'DELETE_SUBSCR': (2, None, 1),
|
||||
'DUP_TOP': (None, None, None),
|
||||
'DUP_TOPX': (None, None, None),
|
||||
'DUP_TOP_TWO': (None, None, None),
|
||||
'END_FINALLY': (None, None, None),
|
||||
'EXEC_STMT': (None, None, None),
|
||||
'EXTENDED_ARG': (None, None, None),
|
||||
'FOR_ITER': (1, 1, 1),
|
||||
'GET_ITER': (1, 1, None),
|
||||
'IMPORT_FROM': (None, None, None),
|
||||
'IMPORT_NAME': (None, None, None),
|
||||
'IMPORT_STAR': (1, None, 1),
|
||||
'INPLACE_ADD': (2, 1, None),
|
||||
'INPLACE_AND': (2, 1, None),
|
||||
'INPLACE_DIVIDE': (2, 1, None),
|
||||
'INPLACE_FLOOR_DIVIDE': (2, 1, None),
|
||||
'INPLACE_LSHIFT': (2, 1, None),
|
||||
'INPLACE_MODULO': (2, 1, None),
|
||||
'INPLACE_MULTIPLY': (2, 1, None),
|
||||
'INPLACE_OR': (2, 1, None),
|
||||
'INPLACE_POWER': (2, 1, None),
|
||||
'INPLACE_RSHIFT': (2, 1, None),
|
||||
'INPLACE_SUBTRACT': (2, 1, None),
|
||||
'INPLACE_TRUE_DIVIDE': (2, 1, None),
|
||||
'INPLACE_XOR': (2, 1, None),
|
||||
'JUMP_ABSOLUTE': (0, None, 1),
|
||||
'JUMP_FORWARD': (0, None, 1),
|
||||
'JUMP_IF_FALSE': (1, 1, 1),
|
||||
'JUMP_IF_FALSE_OR_POP': (None, None, None),
|
||||
'JUMP_IF_TRUE': (1, 1, 1),
|
||||
'JUMP_IF_TRUE_OR_POP': (None, None, None),
|
||||
'LIST_APPEND': (2, 0, 1),
|
||||
'LOAD_ATTR': (1, 1, None),
|
||||
'LOAD_BUILD_CLASS': (None, None, None),
|
||||
'LOAD_CLOSURE': (None, None, None),
|
||||
'LOAD_CONST': (0, 1, None),
|
||||
'LOAD_DEREF': (0, 1, None),
|
||||
'LOAD_FAST': (0, 1, None),
|
||||
'LOAD_GLOBAL': (0, 1, None),
|
||||
'LOAD_LOCALS': (None, None, None),
|
||||
'LOAD_NAME': (0, 1, None),
|
||||
'MAKE_CLOSURE': (None, None, None),
|
||||
'MAKE_FUNCTION': (-2, 1, None),
|
||||
'MAP_ADD': (None, None, None),
|
||||
'NOP': (0, None, None),
|
||||
'POP_BLOCK': (0, None, 1),
|
||||
'POP_EXCEPT': (None, None, None),
|
||||
'POP_JUMP_IF_FALSE': (1, None, 1),
|
||||
'POP_JUMP_IF_TRUE': (1, None, 1),
|
||||
'POP_TOP': (1, None, 1),
|
||||
'PRINT_EXPR': (1, None, 1),
|
||||
'PRINT_ITEM': (1, None, 1),
|
||||
'PRINT_ITEM_TO': (2, None, 1),
|
||||
'PRINT_NEWLINE': (0, None, 1),
|
||||
'PRINT_NEWLINE_TO': (1, None, 1),
|
||||
'RAISE_VARARGS': (None, None, None),
|
||||
'RETURN_VALUE': (1, None, 1),
|
||||
'ROT_FOUR': (None, None, None),
|
||||
'ROT_THREE': (None, None, None),
|
||||
'ROT_TWO': (None, None, None),
|
||||
'SETUP_EXCEPT': (None, None, None),
|
||||
'SETUP_FINALLY': (None, None, None),
|
||||
'SETUP_LOOP': (None, None, None),
|
||||
'SETUP_WITH': (None, None, None),
|
||||
'SET_ADD': (None, None, None),
|
||||
'SLICE+0': (1, 1, None),
|
||||
'SLICE+1': (2, 1, None),
|
||||
'SLICE+2': (2, 1, None),
|
||||
'SLICE+3': (3, 1, None),
|
||||
'STOP_CODE': (None, None, None),
|
||||
'STORE_ATTR': (2, None, 1),
|
||||
'STORE_DEREF': (1, 0, 1),
|
||||
'STORE_FAST': (1, None, 1),
|
||||
'STORE_GLOBAL': (1, None, 1),
|
||||
'STORE_LOCALS': (None, None, None),
|
||||
'STORE_MAP': (1, None, 1),
|
||||
'STORE_NAME': (1, None, 1),
|
||||
'STORE_SLICE+0': (1, None, 1),
|
||||
'STORE_SLICE+1': (2, None, 1),
|
||||
'STORE_SLICE+2': (2, None, 1),
|
||||
'STORE_SLICE+3': (3, None, 1),
|
||||
'STORE_SUBSCR': (3, None, 1),
|
||||
'UNARY_CONVERT': (1, 1, None),
|
||||
'UNARY_INVERT': (1, 1, None),
|
||||
'UNARY_NEGATIVE': (1, 1, None),
|
||||
'UNARY_NOT': (1, 1, None),
|
||||
'UNARY_POSITIVE': (1, 1, None),
|
||||
'UNPACK_EX': (None, None, None),
|
||||
'UNPACK_SEQUENCE': (None, None, None),
|
||||
'WITH_CLEANUP': (None, None, None),
|
||||
'YIELD_VALUE': (1, None, 1),
|
||||
}
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Module functions
|
||||
|
||||
def itercode(code, start = 0):
|
||||
"""Return a generator of byte-offset, opcode, and argument
|
||||
from a byte-code-string
|
||||
"""
|
||||
i = 0
|
||||
extended_arg = 0
|
||||
if isinstance(code[0], str):
|
||||
code = [ord(c) for c in code]
|
||||
n = len(code)
|
||||
while i < n:
|
||||
op = code[i]
|
||||
num = i + start
|
||||
i = i + 1
|
||||
oparg = None
|
||||
if op >= opcode.HAVE_ARGUMENT:
|
||||
oparg = code[i] + (code[i + 1] * 256) + extended_arg
|
||||
extended_arg = 0
|
||||
i = i + 2
|
||||
if op == opcode.EXTENDED_ARG:
|
||||
extended_arg = oparg * 65536
|
||||
|
||||
delta = yield num, op, oparg
|
||||
if delta is not None:
|
||||
abs_rel, dst = delta
|
||||
assert abs_rel == 'abs' or abs_rel == 'rel'
|
||||
i = dst if abs_rel == 'abs' else i + dst
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def extendlabels(code, labels = None):
|
||||
"""Extend the set of jump target labels to account for the
|
||||
passthrough targets of conditional branches.
|
||||
|
||||
This allows us to create a control flow graph where there is at
|
||||
most one branch per basic block.
|
||||
"""
|
||||
if labels is None:
|
||||
labels = []
|
||||
if isinstance(code[0], str):
|
||||
code = [ord(c) for c in code]
|
||||
n = len(code)
|
||||
i = 0
|
||||
while i < n:
|
||||
op = code[i]
|
||||
i += 1
|
||||
if op >= dis.HAVE_ARGUMENT:
|
||||
i += 2
|
||||
label = -1
|
||||
if op in hasjump:
|
||||
label = i
|
||||
if label >= 0:
|
||||
if label not in labels:
|
||||
labels.append(label)
|
||||
elif op == opcode.opmap['BREAK_LOOP']:
|
||||
if i not in labels:
|
||||
labels.append(i)
|
||||
return labels
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def get_code_object (func):
|
||||
return getattr(func, '__code__', getattr(func, 'func_code', None))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def build_basic_blocks (co_obj):
|
||||
co_code = co_obj.co_code
|
||||
labels = extendlabels(co_code, dis.findlabels(co_code))
|
||||
labels.sort()
|
||||
blocks = dict((index, list(itercode(co_code[index:next_index], index)))
|
||||
for index, next_index in zip([0] + labels,
|
||||
labels + [len(co_code)]))
|
||||
return blocks
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of opcode_util.py
|
||||
153
llpython/phi_injector.py
Normal file
153
llpython/phi_injector.py
Normal file
|
|
@ -0,0 +1,153 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
from .bytecode_visitor import BytecodeFlowVisitor, BenignBytecodeVisitorMixin
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
synthetic_opname = []
|
||||
synthetic_opmap = {}
|
||||
|
||||
def def_synth_op (opname):
|
||||
global synthetic_opname, synthetic_opmap
|
||||
ret_val = -(len(synthetic_opname) + 1)
|
||||
synthetic_opname.insert(0, opname)
|
||||
synthetic_opmap[opname] = ret_val
|
||||
return ret_val
|
||||
|
||||
REF_ARG = def_synth_op('REF_ARG')
|
||||
BUILD_PHI = def_synth_op('BUILD_PHI')
|
||||
DEFINITION = def_synth_op('DEFINITION')
|
||||
REF_DEF = def_synth_op('REF_DEF')
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
class PhiInjector (BenignBytecodeVisitorMixin, BytecodeFlowVisitor):
|
||||
'''Transformer responsible for modifying a bytecode flow, removing
|
||||
LOAD_FAST and STORE_FAST opcodes, and replacing them with a static
|
||||
single assignment (SSA) representation.
|
||||
|
||||
In order to support SSA, PhiInjector adds the following synthetic
|
||||
opcodes to transformed flows:
|
||||
|
||||
* REF_ARG: Specifically reference an incomming argument value.
|
||||
|
||||
* BUILD_PHI: Build a phi node to disambiguate between several
|
||||
possible definitions at a control flow join.
|
||||
|
||||
* DEFINITION: Unique value definition indexed by the "arg" field
|
||||
in the tuple.
|
||||
|
||||
* REF_DEF: Reference a specific value definition.'''
|
||||
|
||||
def visit_cfg (self, cfg, nargs = 0, *args, **kws):
|
||||
self.cfg = cfg
|
||||
ret_val = self.visit(cfg.blocks, nargs)
|
||||
del self.cfg
|
||||
return ret_val
|
||||
|
||||
def visit (self, flow, nargs = 0, *args, **kws):
|
||||
self.nargs = nargs
|
||||
self.definitions = []
|
||||
self.phis = []
|
||||
self.prev_blocks = []
|
||||
self.blocks_locals = dict((block, {})
|
||||
for block in self.cfg.blocks.keys())
|
||||
ret_val = super(PhiInjector, self).visit(flow, *args, **kws)
|
||||
for block, _, _, args, _ in self.phis:
|
||||
local = args.pop()
|
||||
reaching_definitions = self.cfg.reaching_definitions[block]
|
||||
for prev in reaching_definitions.keys():
|
||||
if 0 in self.cfg.blocks_reaching[prev]:
|
||||
args.append((prev, REF_DEF, 'REF_DEF',
|
||||
self.blocks_locals[prev][local], ()))
|
||||
args.sort()
|
||||
del self.blocks_locals
|
||||
del self.prev_blocks
|
||||
del self.phis
|
||||
del self.definitions
|
||||
del self.nargs
|
||||
return ret_val
|
||||
|
||||
def add_definition (self, index, local, arg):
|
||||
definition_index = len(self.definitions)
|
||||
definition = (index, DEFINITION, 'DEFINITION', definition_index,
|
||||
(arg,))
|
||||
self.definitions.append(definition)
|
||||
self.blocks_locals[self.block][local] = definition_index
|
||||
return definition
|
||||
|
||||
def add_phi (self, index, local):
|
||||
ret_val = (index, BUILD_PHI, 'BUILD_PHI', [local], ())
|
||||
self.phis.append(ret_val)
|
||||
return ret_val
|
||||
|
||||
def enter_block (self, block):
|
||||
ret_val = False
|
||||
self.block = block
|
||||
if block == 0:
|
||||
if self.nargs > 0:
|
||||
ret_val = [self.add_definition(-1, arg,
|
||||
(-1, REF_ARG, 'REF_ARG', arg,
|
||||
()))
|
||||
for arg in range(self.nargs)]
|
||||
else:
|
||||
ret_val = True
|
||||
elif 0 in self.cfg.blocks_reaching[block]:
|
||||
ret_val = True
|
||||
prev_block_locals = None
|
||||
for pred_block in self.cfg.blocks_in[block]:
|
||||
if pred_block in self.prev_blocks:
|
||||
prev_block_locals = self.blocks_locals[pred_block]
|
||||
break
|
||||
assert prev_block_locals is not None, "Internal translation error"
|
||||
self.blocks_locals[block] = prev_block_locals.copy()
|
||||
phis_needed = self.cfg.phi_needed(block)
|
||||
if phis_needed:
|
||||
ret_val = [self.add_definition(block, local,
|
||||
self.add_phi(block, local))
|
||||
for local in phis_needed]
|
||||
return ret_val
|
||||
|
||||
def exit_block (self, block):
|
||||
if 0 in self.cfg.blocks_reaching[block]:
|
||||
self.prev_blocks.append(block)
|
||||
del self.block
|
||||
|
||||
def op_STORE_FAST (self, i, op, arg, *args, **kws):
|
||||
assert len(args) == 1
|
||||
return [self.add_definition(i, arg, args[0])]
|
||||
|
||||
def op_LOAD_FAST (self, i, op, arg, *args, **kws):
|
||||
return [(i, REF_DEF, 'REF_DEF', self.blocks_locals[self.block][arg],
|
||||
args)]
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
def inject_phis (func):
|
||||
'''Given a Python function, return a bytecode flow object that has
|
||||
been transformed by a fresh PhiInjector instance.'''
|
||||
import byte_control, byte_flow
|
||||
argcount = byte_control.opcode_util.get_code_object(func).co_argcount
|
||||
cfg = byte_control.build_cfg(func)
|
||||
cfg.blocks = byte_flow.BytecodeFlowBuilder().visit_cfg(cfg)
|
||||
return PhiInjector().visit_cfg(cfg, argcount)
|
||||
|
||||
# ______________________________________________________________________
|
||||
# Main (self-test) routine
|
||||
|
||||
def main (*args):
|
||||
import pprint
|
||||
from tests import llfuncs
|
||||
if not args:
|
||||
args = ('doslice',)
|
||||
for arg in args:
|
||||
pprint.pprint(inject_phis(getattr(llfuncs, arg)))
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
if __name__ == "__main__":
|
||||
import sys
|
||||
main(*sys.argv[1:])
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of phi_injector.py
|
||||
40
llpython/pyaddfunc.py
Normal file
40
llpython/pyaddfunc.py
Normal file
|
|
@ -0,0 +1,40 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import ctypes
|
||||
|
||||
# ______________________________________________________________________
|
||||
class PyMethodDef (ctypes.Structure):
|
||||
_fields_ = [
|
||||
('ml_name', ctypes.c_char_p),
|
||||
('ml_meth', ctypes.c_void_p),
|
||||
('ml_flags', ctypes.c_int),
|
||||
('ml_doc', ctypes.c_char_p),
|
||||
]
|
||||
|
||||
PyCFunction_NewEx = ctypes.pythonapi.PyCFunction_NewEx
|
||||
PyCFunction_NewEx.argtypes = (ctypes.POINTER(PyMethodDef),
|
||||
ctypes.c_void_p,
|
||||
ctypes.c_void_p)
|
||||
PyCFunction_NewEx.restype = ctypes.py_object
|
||||
|
||||
cache = {} # Unsure if this is necessary to keep the PyMethodDef
|
||||
# structures from being garbage collected. Assuming so...
|
||||
|
||||
def pyaddfunc (func_name, func_ptr, func_doc = None):
|
||||
global cache
|
||||
if bytes != str:
|
||||
func_name = bytes(ord(ch) for ch in func_name)
|
||||
key = (func_name, func_ptr)
|
||||
if key in cache:
|
||||
_, ret_val = cache[key]
|
||||
else:
|
||||
mdef = PyMethodDef(bytes(func_name),
|
||||
func_ptr,
|
||||
1, # == METH_VARARGS (hopefully remains so...)
|
||||
func_doc)
|
||||
ret_val = PyCFunction_NewEx(ctypes.byref(mdef), 0, 0)
|
||||
cache[key] = (mdef, ret_val)
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of pyaddfunc.py
|
||||
0
llpython/tests/__init__.py
Normal file
0
llpython/tests/__init__.py
Normal file
41
llpython/tests/llfuncs.py
Normal file
41
llpython/tests/llfuncs.py
Normal file
|
|
@ -0,0 +1,41 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
def doslice (in_string, lower, upper):
|
||||
l = strlen(in_string)
|
||||
if lower < lc_size_t(0):
|
||||
lower += l
|
||||
if upper < lc_size_t(0):
|
||||
upper += l
|
||||
temp_len = upper - lower
|
||||
if temp_len < lc_size_t(0):
|
||||
temp_len = lc_size_t(0)
|
||||
ret_val = alloca_array(li8, temp_len + lc_size_t(1))
|
||||
strncpy(ret_val, in_string + lower, temp_len)
|
||||
ret_val[temp_len] = li8(0)
|
||||
return ret_val
|
||||
|
||||
def ipow (val, exp):
|
||||
ret_val = 1
|
||||
temp = val
|
||||
w = exp
|
||||
while w > 0:
|
||||
if (w & 1) != 0:
|
||||
ret_val *= temp
|
||||
# TODO: Overflow check on ret_val
|
||||
w >>= 1
|
||||
if w == 0: break
|
||||
temp *= temp
|
||||
# TODO: Overflow check on temp
|
||||
return ret_val
|
||||
|
||||
def pymod (arg1, arg2):
|
||||
ret_val = arg1 % arg2
|
||||
if ret_val < 0:
|
||||
if arg2 > 0:
|
||||
ret_val += arg2
|
||||
elif arg2 < 0:
|
||||
ret_val += arg2
|
||||
return ret_val
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of llfuncs.py
|
||||
19
llpython/tests/llfunctys.py
Normal file
19
llpython/tests/llfunctys.py
Normal file
|
|
@ -0,0 +1,19 @@
|
|||
# ______________________________________________________________________
|
||||
|
||||
import llvm.core as lc
|
||||
|
||||
from llpython import bytetype
|
||||
|
||||
# ______________________________________________________________________
|
||||
|
||||
doslice = lc.Type.function(bytetype.li8_ptr, (
|
||||
bytetype.li8_ptr, bytetype.lc_size_t, bytetype.lc_size_t))
|
||||
|
||||
ipow = lc.Type.function(bytetype.li32, (bytetype.li32,
|
||||
bytetype.li32))
|
||||
|
||||
pymod = lc.Type.function(bytetype.li32, (bytetype.li32,
|
||||
bytetype.li32))
|
||||
|
||||
# ______________________________________________________________________
|
||||
# End of llfunctys.py
|
||||
22
llrtc/Makefile
Normal file
22
llrtc/Makefile
Normal file
|
|
@ -0,0 +1,22 @@
|
|||
all:
|
||||
make -C lib
|
||||
|
||||
ir:
|
||||
make -C lib ir
|
||||
|
||||
test:
|
||||
make -C lib test
|
||||
|
||||
clean-test:
|
||||
make -C lib clean-test
|
||||
|
||||
clean-temp:
|
||||
make -C lib clean-temp
|
||||
|
||||
clean:
|
||||
make -C lib clean
|
||||
|
||||
install: ir
|
||||
cp llrt_*.ll ../llvm/llrt
|
||||
make -C lib clean-temp
|
||||
|
||||
25
llrtc/README.md
Normal file
25
llrtc/README.md
Normal file
|
|
@ -0,0 +1,25 @@
|
|||
# LLRT: Low Level Runtime
|
||||
|
||||
## Why?
|
||||
|
||||
The same reason for LLVM compiler-rt. LLVM generates libgcc symbols, such as
|
||||
__divdi3 for 64-bit division on 32-bit platform. They are not also available.
|
||||
We need to ship compiler-rt but it is not Windows ready.
|
||||
This subproject aims to provide a small portable subset of compiler-rt.
|
||||
Start small and add only the things we really needed.
|
||||
Performance is not crucial but should not be terrible.
|
||||
Functionality and usefullness should be more important than performance.
|
||||
|
||||
## Developer Instructions
|
||||
|
||||
LLRT implements some functionalities in compiler-rt in ANSI C.
|
||||
The C files are compiled using clang to produce LLVM IR which are shipped.
|
||||
The IR files are committed in the repository.
|
||||
So, remember to build the IR files commit them after modifying the C files.
|
||||
|
||||
## Build Requirement
|
||||
|
||||
- Make
|
||||
- Clang
|
||||
- Python
|
||||
|
||||
4
llrtc/lib/.gitignore
vendored
Normal file
4
llrtc/lib/.gitignore
vendored
Normal file
|
|
@ -0,0 +1,4 @@
|
|||
*.o
|
||||
*.run
|
||||
*.out
|
||||
*.ll
|
||||
66
llrtc/lib/Makefile
Normal file
66
llrtc/lib/Makefile
Normal file
|
|
@ -0,0 +1,66 @@
|
|||
OUTPUT = llrt
|
||||
SOURCES = udivmod64.c sdivmod64.c div64.c mod64.c
|
||||
TESTS = test_udivmod64.c test_sdivmod64.c
|
||||
|
||||
CLANG = clang
|
||||
LLVM_LINK = llvm-link
|
||||
CF = -Wall -ansi
|
||||
CF_TEST = $(CF) -ftrapv
|
||||
CF_BUILD = $(CF) -O0 -emit-llvm
|
||||
OUTDIR = ..
|
||||
STRIPPER = ../tools/striptriple.py
|
||||
|
||||
all: ir
|
||||
|
||||
ir: $(OUTDIR)/$(OUTPUT)_x86.ll $(OUTDIR)/$(OUTPUT)_x86_64.ll
|
||||
|
||||
$(OUTDIR)/$(OUTPUT)_x86.ll: $(SOURCES:.c=_x86.bc)
|
||||
$(LLVM_LINK) -S $+ -o $@
|
||||
python $(STRIPPER) $@
|
||||
|
||||
$(OUTDIR)/$(OUTPUT)_x86_64.ll: $(SOURCES:.c=_x86_64.bc)
|
||||
$(LLVM_LINK) -S $+ -o $@
|
||||
python $(STRIPPER) $@
|
||||
|
||||
build-test: $(SOURCES:.c=.o) $(TESTS:.c=.run)
|
||||
|
||||
lib$(OUTPUT).a: $(SOURCES:.c=.o)
|
||||
$(CLANG) -static $+ -o $@
|
||||
|
||||
test: $(TESTS:.c=.run)
|
||||
for src in $+; do \
|
||||
echo "testing $${src}"; \
|
||||
python $${src%.*}.py > $${src%.*}.out; \
|
||||
done;
|
||||
|
||||
clean-test:
|
||||
rm -f *.out
|
||||
rm -f *.o
|
||||
rm -f *.run
|
||||
|
||||
clean-dist: clean-temp
|
||||
rm -f *.ll
|
||||
|
||||
clean-temp:
|
||||
rm -f *.bc
|
||||
rm -f *.o
|
||||
rm -f *.out
|
||||
|
||||
clean: clean-test clean-dist
|
||||
|
||||
%.c: llrt.h
|
||||
|
||||
%_x86.bc: %.c
|
||||
$(CLANG) -m32 $(CF_BUILD) -c $< -o $@
|
||||
|
||||
%_x86_64.bc: %.c
|
||||
$(CLANG) -m64 $(CF_BUILD) -c $< -o $@
|
||||
|
||||
%.o: %.c
|
||||
$(CLANG) $(CF_TEST) -c $<
|
||||
|
||||
%.run: %.c
|
||||
$(CLANG) $(CF_TEST) -o $@ $+
|
||||
|
||||
test_udivmod64.run: udivmod64.o
|
||||
test_sdivmod64.run: udivmod64.o sdivmod64.o
|
||||
11
llrtc/lib/div64.c
Normal file
11
llrtc/lib/div64.c
Normal file
|
|
@ -0,0 +1,11 @@
|
|||
#include "llrt.h"
|
||||
|
||||
uint64_t udiv64(uint64_t dividend, uint64_t divisor)
|
||||
{
|
||||
return udivmod64(dividend, divisor, NULL);
|
||||
}
|
||||
|
||||
int64_t sdiv64(int64_t dividend, int64_t divisor)
|
||||
{
|
||||
return sdivmod64(dividend, divisor, NULL);
|
||||
}
|
||||
19
llrtc/lib/llrt.h
Normal file
19
llrtc/lib/llrt.h
Normal file
|
|
@ -0,0 +1,19 @@
|
|||
#ifndef LLRT_H_
|
||||
#define LLRT_H_
|
||||
|
||||
#include <stdint.h>
|
||||
|
||||
#define NULL 0
|
||||
#define BITS_PER_BYTE 8
|
||||
|
||||
uint64_t udivmod64(uint64_t dividend, uint64_t divisor, uint64_t *remainder);
|
||||
int64_t sdivmod64(int64_t dividend, int64_t divisor, int64_t *remainder);
|
||||
|
||||
uint64_t udiv64(uint64_t dividend, uint64_t divisor);
|
||||
int64_t sdiv64(int64_t dividend, int64_t divisor);
|
||||
|
||||
uint64_t umod64(uint64_t dividend, uint64_t divisor);
|
||||
int64_t smod64(int64_t dividend, int64_t divisor);
|
||||
|
||||
#endif /* LLRT_H_ */
|
||||
|
||||
15
llrtc/lib/mod64.c
Normal file
15
llrtc/lib/mod64.c
Normal file
|
|
@ -0,0 +1,15 @@
|
|||
#include "llrt.h"
|
||||
|
||||
uint64_t umod64(uint64_t dividend, uint64_t divisor)
|
||||
{
|
||||
uint64_t rem;
|
||||
udivmod64(dividend, divisor, &rem);
|
||||
return rem;
|
||||
}
|
||||
|
||||
int64_t smod64(int64_t dividend, int64_t divisor)
|
||||
{
|
||||
int64_t rem;
|
||||
sdivmod64(dividend, divisor, &rem);
|
||||
return rem;
|
||||
}
|
||||
40
llrtc/lib/sdivmod64.c
Normal file
40
llrtc/lib/sdivmod64.c
Normal file
|
|
@ -0,0 +1,40 @@
|
|||
#include "llrt.h"
|
||||
#include <stdio.h>
|
||||
|
||||
/*
|
||||
Calls to udivmod64 internally.
|
||||
Note: remainder uses sign of divisor.
|
||||
*/
|
||||
int64_t sdivmod64(int64_t dividend, int64_t divisor, int64_t *remainder)
|
||||
{
|
||||
int signbitidx = BITS_PER_BYTE * sizeof(dividend) - 1;
|
||||
int signed_dividend = dividend < 0;
|
||||
int signed_divisor = divisor < 0;
|
||||
int signed_result = signed_divisor ^ signed_dividend;
|
||||
|
||||
int64_t quotient;
|
||||
uint64_t udvd, udvr, uquotient, uremainder;
|
||||
|
||||
udvd = signed_dividend ? -dividend : dividend;
|
||||
udvr = signed_divisor ? -divisor : divisor;
|
||||
uquotient = udivmod64(udvd, udvr, &uremainder);
|
||||
|
||||
if (signed_result){
|
||||
if (uremainder) {
|
||||
quotient = -(int64_t)uquotient - 1;
|
||||
} else {
|
||||
quotient = -(int64_t)uquotient;
|
||||
}
|
||||
if (remainder) {
|
||||
/* if signed, there could be unsigned overflow
|
||||
causing undefined behavior */
|
||||
*remainder = (uint64_t)dividend - (uint64_t)quotient * (uint64_t)divisor;
|
||||
}
|
||||
} else {
|
||||
quotient = (int64_t)uquotient;
|
||||
if (remainder) {
|
||||
*remainder = signed_divisor ? -uremainder : uremainder;
|
||||
}
|
||||
}
|
||||
return quotient;
|
||||
}
|
||||
21
llrtc/lib/test_sdivmod64.c
Normal file
21
llrtc/lib/test_sdivmod64.c
Normal file
|
|
@ -0,0 +1,21 @@
|
|||
#include <stdio.h>
|
||||
#include <stdint.h>
|
||||
#include "llrt.h"
|
||||
|
||||
int main(int argc, char * argv[]){
|
||||
int64_t n, d, q, r;
|
||||
|
||||
if (argc != 3) {
|
||||
printf("invalid argument: %s dividend divisor", argv[0]);
|
||||
return 1;
|
||||
}
|
||||
sscanf(argv[1], "%lld", &n);
|
||||
sscanf(argv[2], "%lld", &d);
|
||||
|
||||
q = sdivmod64(n, d, &r);
|
||||
|
||||
printf("%lld\n", q);
|
||||
printf("%lld\n", r);
|
||||
|
||||
return 0;
|
||||
}
|
||||
56
llrtc/lib/test_sdivmod64.py
Normal file
56
llrtc/lib/test_sdivmod64.py
Normal file
|
|
@ -0,0 +1,56 @@
|
|||
import math
|
||||
import os
|
||||
import subprocess
|
||||
udt = os.path.join('.', 'test_sdivmod64.run')
|
||||
|
||||
def testcase(dividend, divisor):
|
||||
print 'divmod64(%d, %d)' % (dividend, divisor)
|
||||
|
||||
procargs = ('%s %s %s' % (udt, dividend, divisor)).split()
|
||||
result = subprocess.check_output(procargs)
|
||||
gotQ, gotR = map(int, result.splitlines())
|
||||
|
||||
expectQ = dividend // divisor
|
||||
expectR = dividend % divisor
|
||||
|
||||
print 'Q = %d, R = %d' % (gotQ, gotR)
|
||||
|
||||
if expectQ != gotQ:
|
||||
raise ValueError("invalid quotient: got=%d but expect=%d" %
|
||||
(gotQ, expectQ))
|
||||
if expectR != gotR:
|
||||
raise ValueError("invalid remainder: got=%d but expect=%d" %
|
||||
(gotR, expectR))
|
||||
print 'OK'
|
||||
|
||||
def testsequence():
|
||||
subjects = [
|
||||
(0, 1),
|
||||
(0, 0xffffffff),
|
||||
(1, 2),
|
||||
(1, 983219),
|
||||
(2, 2),
|
||||
(3, 2),
|
||||
(1024, 2),
|
||||
(2048, 512),
|
||||
(21321, 512),
|
||||
(9329189, 1031),
|
||||
(0xffffffff, 2),
|
||||
(0xffffffff, 0xffff),
|
||||
(0x1ffffffff, 2),
|
||||
(0x1ffffffff, 0xffff),
|
||||
(0xffff, 0xffffffff),
|
||||
(0x0fffffffffffffff, 0xffff),
|
||||
(0x7fffffffffffffff, 0x7fffffffffffffff),
|
||||
(0x7fffffffffffffff, 0x7ffffffffffffff0),
|
||||
(0x7fffffffffffffff, 87655678587161901),
|
||||
]
|
||||
|
||||
for dvd, dvr in subjects:
|
||||
testcase(dvd, dvr)
|
||||
testcase(dvd, -dvr)
|
||||
testcase(-dvd, dvr)
|
||||
testcase(-dvd, -dvr)
|
||||
|
||||
if __name__ == '__main__':
|
||||
testsequence()
|
||||
20
llrtc/lib/test_udivmod64.c
Normal file
20
llrtc/lib/test_udivmod64.c
Normal file
|
|
@ -0,0 +1,20 @@
|
|||
#include <stdio.h>
|
||||
#include <stdint.h>
|
||||
#include "llrt.h"
|
||||
|
||||
int main(int argc, char * argv[]){
|
||||
uint64_t n, d, q, r;
|
||||
if (argc != 3) {
|
||||
printf("invalid argument: %s dividend divisor", argv[0]);
|
||||
return 1;
|
||||
}
|
||||
sscanf(argv[1], "%llu", &n);
|
||||
sscanf(argv[2], "%llu", &d);
|
||||
|
||||
q = udivmod64(n, d, &r);
|
||||
|
||||
printf("%llu\n", q);
|
||||
printf("%llu\n", r);
|
||||
|
||||
return 0;
|
||||
}
|
||||
53
llrtc/lib/test_udivmod64.py
Normal file
53
llrtc/lib/test_udivmod64.py
Normal file
|
|
@ -0,0 +1,53 @@
|
|||
import math
|
||||
import os
|
||||
import subprocess
|
||||
udt = os.path.join('.', 'test_udivmod64.run')
|
||||
|
||||
def testcase(dividend, divisor):
|
||||
print 'divmod64(%d, %d)' % (dividend, divisor)
|
||||
|
||||
procargs = ('%s %s %s' % (udt, dividend, divisor)).split()
|
||||
result = subprocess.check_output(procargs)
|
||||
gotQ, gotR = map(int, result.splitlines())
|
||||
|
||||
expectQ = dividend // divisor
|
||||
expectR = dividend % divisor
|
||||
|
||||
print 'Q = %d, R = %d' % (gotQ, gotR)
|
||||
|
||||
if expectQ != gotQ:
|
||||
raise ValueError("invalid quotient: got=%d but expect=%d" %
|
||||
(gotQ, expectQ))
|
||||
if expectR != gotR:
|
||||
raise ValueError("invalid remainder: got=%d but expect=%d" %
|
||||
(gotR, expectR))
|
||||
print 'OK'
|
||||
|
||||
def testsequence():
|
||||
subjects = [
|
||||
(0, 1),
|
||||
(0, 0xffffffffffffffff),
|
||||
(1, 2),
|
||||
(1, 983219),
|
||||
(2, 2),
|
||||
(3, 2),
|
||||
(1024, 2),
|
||||
(2048, 512),
|
||||
(21321, 512),
|
||||
(9329189, 1031),
|
||||
(0xffffffff, 2),
|
||||
(0xffffffff, 0xffff),
|
||||
(0x1ffffffff, 2),
|
||||
(0x1ffffffff, 0xffff),
|
||||
(0xffff, 0xffffffff),
|
||||
(0xffffffffffffffff, 0xffff),
|
||||
(0xffffffffffffffff, 0x7fffffffffffffff),
|
||||
(0xffffffffffffffff, 0xfffffffffffffff0),
|
||||
(0xffffffffffffffff, 87655678587161901),
|
||||
]
|
||||
|
||||
for dvd, dvr in subjects:
|
||||
testcase(dvd, dvr)
|
||||
|
||||
if __name__ == '__main__':
|
||||
testsequence()
|
||||
84
llrtc/lib/udivmod64.c
Normal file
84
llrtc/lib/udivmod64.c
Normal file
|
|
@ -0,0 +1,84 @@
|
|||
/*
|
||||
Implements unsigned divmod using for platform missing 64-bit division and/or
|
||||
modulo functions.
|
||||
*/
|
||||
#include "llrt.h"
|
||||
|
||||
/*
|
||||
count left zero for 64-bit words
|
||||
|
||||
*/
|
||||
static
|
||||
int clz64(uint64_t x)
|
||||
{
|
||||
const int total_bits = sizeof(x) * BITS_PER_BYTE;
|
||||
int zc = 0;
|
||||
|
||||
while (zc < total_bits && ((x >> (total_bits - zc - 1)) & 1) == 0) {
|
||||
++zc;
|
||||
}
|
||||
return zc;
|
||||
}
|
||||
|
||||
typedef struct div_state_
|
||||
{
|
||||
uint64_t tmp, dvd;
|
||||
} div_state;
|
||||
|
||||
/*
|
||||
Left shift div_state by 1 bit
|
||||
*/
|
||||
static
|
||||
void div_state_lshift(div_state *state)
|
||||
{
|
||||
state->tmp = (state->tmp << 1) | (state->dvd >> 63);
|
||||
state->dvd = state->dvd << 1;
|
||||
}
|
||||
|
||||
/*
|
||||
Division of unsigned 64-bit word using 64-bit addition and subtration following
|
||||
the shift-restore division algorithm.
|
||||
For those interested in 32-bit implementation,
|
||||
mapping of 64-bit addition and subtraction to 32-bit should be trivial.
|
||||
|
||||
Reference:
|
||||
- IBM. The PowerPC Compiler Writer's Guide
|
||||
- LLVM compiler-rt
|
||||
|
||||
Assumptions:
|
||||
- all operands and results are positive
|
||||
- unsigned wrapped around
|
||||
*/
|
||||
uint64_t udivmod64(uint64_t dividend, uint64_t divisor, uint64_t *remainder)
|
||||
{
|
||||
div_state state = {0, dividend};
|
||||
uint64_t quotient = 0;
|
||||
int i;
|
||||
int skipahead;
|
||||
|
||||
if (divisor == 0) {
|
||||
return 1 / 0; /* intentionally div by zero */
|
||||
}
|
||||
|
||||
/*
|
||||
skipahead to reduce iteration
|
||||
*/
|
||||
skipahead = clz64(dividend);
|
||||
|
||||
for (i = 0; i < skipahead; ++i) {
|
||||
div_state_lshift(&state);
|
||||
}
|
||||
|
||||
/*
|
||||
division loop
|
||||
*/
|
||||
for (i = skipahead; i < 64; ++i) {
|
||||
div_state_lshift(&state);
|
||||
if (state.tmp >= divisor) {
|
||||
state.tmp = state.tmp - divisor;
|
||||
quotient |= 1ull << (63 - i);
|
||||
}
|
||||
}
|
||||
if (remainder) *remainder = state.tmp;
|
||||
return quotient;
|
||||
}
|
||||
15
llrtc/tools/striptriple.py
Normal file
15
llrtc/tools/striptriple.py
Normal file
|
|
@ -0,0 +1,15 @@
|
|||
import sys
|
||||
import re
|
||||
|
||||
buf = []
|
||||
with open(sys.argv[1], 'r') as fin:
|
||||
tripleline = re.compile('^target\s+triple\s+=\s+')
|
||||
for line in fin.readlines():
|
||||
if not tripleline.match(line):
|
||||
buf.append(line)
|
||||
|
||||
with open(sys.argv[1], 'w') as fout:
|
||||
for line in buf:
|
||||
fout.write(line)
|
||||
|
||||
|
||||
|
|
@ -1,76 +1,88 @@
|
|||
import sys, os
|
||||
import re
|
||||
import sys
|
||||
from distutils.spawn import find_executable
|
||||
from os.path import abspath, dirname, isfile, join
|
||||
from os import listdir
|
||||
from subprocess import Popen, PIPE
|
||||
|
||||
def find_path_of(filename, envvar='PATH'):
|
||||
"""Finds the path from $PATH where the file exists, returns None if not found."""
|
||||
pathlist = os.getenv(envvar).split(os.pathsep)
|
||||
for path in pathlist:
|
||||
if os.path.exists(os.path.join(path, filename)):
|
||||
return os.path.abspath(path)
|
||||
return None
|
||||
|
||||
if sys.argv[1] == '--version':
|
||||
cmd = 'llvm-tblgen --version'
|
||||
# Hardcoded extraction, only tested on llvm 3.1
|
||||
result = os.popen(cmd).read().split('\n')[1].strip().split(' ')[2]
|
||||
print result
|
||||
elif sys.argv[1] == '--libs':
|
||||
def find_llvm_tblgen():
|
||||
path = find_executable('llvm-tblgen')
|
||||
if path is None:
|
||||
sys.exit('Error: could not locate llvm-tblgen')
|
||||
return path
|
||||
|
||||
|
||||
def find_llvm_prefix():
|
||||
return abspath(dirname(dirname(find_llvm_tblgen())))
|
||||
|
||||
|
||||
def ensure_file(path):
|
||||
if not isfile(path):
|
||||
sys.exit('Error: no file: %r' % path)
|
||||
|
||||
|
||||
def get_llvm_version():
|
||||
args = [find_llvm_tblgen(), '--version']
|
||||
p = Popen(args, stdout=PIPE, stderr=PIPE)
|
||||
stdout, stderr = p.communicate()
|
||||
if stderr:
|
||||
sys.exit("Error: %r stderr is:\n%s" % (args, stderr.decode()))
|
||||
out = stdout.decode().strip()
|
||||
pat = re.compile(r'llvm\s+version\s+(\d+\.\d+\S*)', re.I)
|
||||
m = pat.search(out)
|
||||
if m is None:
|
||||
sys.exit('Error: could not parse version in:' + out)
|
||||
return m.group(1)
|
||||
|
||||
|
||||
def libs_options():
|
||||
# NOTE: instead of actually looking at the components requested,
|
||||
# we just spit out a bunch of libs
|
||||
# we just print out a bunch of libs
|
||||
for lib in """
|
||||
LLVMAnalysis
|
||||
LLVMAsmParser
|
||||
LLVMAsmPrinter
|
||||
LLVMBitReader
|
||||
LLVMBitWriter
|
||||
LLVMCodeGen
|
||||
LLVMCore
|
||||
LLVMExecutionEngine
|
||||
LLVMInstCombine
|
||||
LLVMInstrumentation
|
||||
LLVMInterpreter
|
||||
LLVMipa
|
||||
LLVMipo
|
||||
LLVMJIT
|
||||
LLVMLinker
|
||||
LLVMMC
|
||||
LLVMMCParser
|
||||
LLVMScalarOpts
|
||||
LLVMSelectionDAG
|
||||
LLVMSupport
|
||||
LLVMTarget
|
||||
LLVMTransformUtils
|
||||
LLVMVectorize
|
||||
LLVMX86AsmParser
|
||||
LLVMX86AsmPrinter
|
||||
LLVMX86CodeGen
|
||||
LLVMX86Desc
|
||||
LLVMX86Info
|
||||
LLVMX86Utils
|
||||
Advapi32
|
||||
Shell32
|
||||
""".split():
|
||||
print('-l%s' % lib)
|
||||
# Look for the PTX .lib in %LIBPATH%
|
||||
if find_path_of('LLVMPTXCodeGen.lib', 'LIBPATH') != None:
|
||||
print('-lLLVMPTXAsmPrinter')
|
||||
print('-lLLVMPTXCodeGen')
|
||||
print('-lLLVMPTXDesc')
|
||||
print('-lLLVMPTXInfo')
|
||||
elif sys.argv[1] == '--includedir':
|
||||
llvmbin = find_path_of('llvm-tblgen.exe')
|
||||
if llvmbin is None:
|
||||
raise RuntimeError('Could not find LLVM')
|
||||
incdir = os.path.abspath(os.path.join(llvmbin, '../include'))
|
||||
if not os.path.exists(os.path.join(incdir, 'llvm/BasicBlock.h')):
|
||||
raise RuntimeError('Could not find LLVM include dir')
|
||||
print incdir
|
||||
elif sys.argv[1] == '--libdir':
|
||||
llvmbin = find_path_of('llvm-tblgen.exe')
|
||||
if llvmbin is None:
|
||||
raise RuntimeError('Could not find LLVM')
|
||||
libdir = os.path.abspath(os.path.join(llvmbin, '../lib'))
|
||||
if not os.path.exists(os.path.join(libdir, 'LLVMCore.lib')):
|
||||
raise RuntimeError('Could not find LLVM lib dir')
|
||||
print libdir
|
||||
else:
|
||||
raise RuntimeError('Unrecognized llvm-config command %s' % sys.argv[1])
|
||||
|
||||
bpath = join(find_llvm_prefix(), 'lib')
|
||||
for filename in listdir(bpath):
|
||||
filepath = join(bpath, filename)
|
||||
if isfile(filepath) and filename.endswith('.lib') and filename.startswith('LLVM'):
|
||||
name = filename.split('.', 1)[0]
|
||||
print('-l%s' % name)
|
||||
|
||||
def main():
|
||||
try:
|
||||
option = sys.argv[1]
|
||||
except IndexError:
|
||||
sys.exit('Error: option missing')
|
||||
|
||||
if option == '--version':
|
||||
print(get_llvm_version())
|
||||
|
||||
elif option == '--targets-built':
|
||||
print('X86') # just do X86
|
||||
|
||||
elif option == '--libs':
|
||||
libs_options()
|
||||
|
||||
elif option == '--includedir':
|
||||
incdir = join(find_llvm_prefix(), 'include')
|
||||
ensure_file(join(incdir, 'llvm' , 'Linker.h'))
|
||||
print(incdir)
|
||||
|
||||
elif option == '--libdir':
|
||||
libdir = join(find_llvm_prefix(), 'lib')
|
||||
ensure_file(join(libdir, 'LLVMCore.lib'))
|
||||
print(libdir)
|
||||
|
||||
elif option in ('--ldflags', '--components'):
|
||||
pass
|
||||
|
||||
else:
|
||||
sys.exit('Error: Unrecognized llvm-config option %r' % option)
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
|
|
|
|||
2117
llvm/2.9_update.diff
2117
llvm/2.9_update.diff
File diff suppressed because it is too large
Load diff
165
llvm/__init__.py
165
llvm/__init__.py
|
|
@ -1,140 +1,47 @@
|
|||
"""
|
||||
Common classes related to LLVM.
|
||||
"""
|
||||
|
||||
__version__ = '0.8.3'
|
||||
from ._version import get_versions
|
||||
__version__ = get_versions()['version']
|
||||
del get_versions
|
||||
|
||||
|
||||
from weakref import WeakValueDictionary
|
||||
from llvmpy import extra
|
||||
|
||||
version = extra.get_llvm_version()
|
||||
del extra
|
||||
|
||||
class Wrapper(object):
|
||||
__slots__ = '__ptr'
|
||||
|
||||
def __init__(self, ptr):
|
||||
assert ptr
|
||||
self.__ptr = ptr
|
||||
|
||||
@property
|
||||
def _ptr(self):
|
||||
try:
|
||||
return self.__ptr
|
||||
except AttributeError:
|
||||
raise AttributeError("_ptr resource has been removed")
|
||||
|
||||
@_ptr.deleter
|
||||
def _ptr(self):
|
||||
del self.__ptr
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# Exceptions
|
||||
#===----------------------------------------------------------------------===
|
||||
def _extract_ptrs(objs):
|
||||
return [(x._ptr if x is not None else None)
|
||||
for x in objs]
|
||||
|
||||
class LLVMException(Exception):
|
||||
"""Generic LLVM exception."""
|
||||
|
||||
def __init__(self, msg=""):
|
||||
Exception.__init__(self, msg)
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# Ownables
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
class Ownable(object):
|
||||
"""Objects that can be owned.
|
||||
|
||||
Modules and Module Providers can be owned, i.e., the responsibility of
|
||||
destruction of ownable objects can be handed over to other objects. The
|
||||
llvm.Ownable class represents objects that can be so owned. This class
|
||||
is NOT intended for public use.
|
||||
"""
|
||||
|
||||
def __init__(self, ptr, del_fn):
|
||||
self.ptr = ptr
|
||||
self.owner = None
|
||||
self.del_fn = del_fn
|
||||
|
||||
def _own(self, owner):
|
||||
if self.owner:
|
||||
raise LLVMException("object already owned")
|
||||
self.owner = owner
|
||||
|
||||
def _disown(self):
|
||||
if not self.owner:
|
||||
raise LLVMException("not owned")
|
||||
self.owner = None
|
||||
|
||||
def __del__(self):
|
||||
if not self.owner:
|
||||
self.del_fn(self.ptr)
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# Dummy owner, will not delete ownee. Be careful.
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
class DummyOwner(object):
|
||||
pass
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# A metaclass to prevent aliasing. It stores a (weak) reference to objects
|
||||
# constructed based on a PyCObject. If an object is constructed based on a
|
||||
# PyCObject with the same underlying pointer as a previous object, a reference
|
||||
# to the previous object is returned rather than a new one.
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
class _ObjectCache(type):
|
||||
"""A metaclass to prevent aliasing.
|
||||
|
||||
Classes using 'ObjectCache' as a metaclass must have constructors
|
||||
that take a PyCObject as their first argument. When the class is
|
||||
called (to create a new instance of the class), the value of the
|
||||
pointer wrapped by the PyCObj is checked:
|
||||
|
||||
If no previous object has been created based on the same
|
||||
underlying pointer (note that different PyCObject objects can
|
||||
wrap the same pointer), the object will be initialized as
|
||||
usual and returned.
|
||||
|
||||
If a previous has been created based on the same pointer,
|
||||
then a reference to that object will be returned, and no
|
||||
object initialization is performed.
|
||||
"""
|
||||
|
||||
__instances = WeakValueDictionary()
|
||||
|
||||
def __call__(cls, ptr, *args, **kwargs):
|
||||
objid = _core.PyCObjectVoidPtrToPyLong(ptr)
|
||||
key = "%s:%d" % (cls.__name__, objid)
|
||||
obj = _ObjectCache.__instances.get(key)
|
||||
if obj is None:
|
||||
obj = super(_ObjectCache, cls).__call__(ptr, *args, **kwargs)
|
||||
_ObjectCache.__instances[key] = obj
|
||||
return obj
|
||||
|
||||
@staticmethod
|
||||
def forget(obj):
|
||||
objid = _core.PyCObjectVoidPtrToPyLong(obj.ptr)
|
||||
key = "%s:%d" % (type(obj).__name__, objid)
|
||||
if key in _ObjectCache.__instances:
|
||||
del _ObjectCache.__instances[key]
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# Cacheables
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
# version 2/3 compatibility help
|
||||
# version 2 metaclass
|
||||
# class Cacheable(object):
|
||||
# __metaclass__ = _ObjectCache # Doing nothing for version 3
|
||||
#
|
||||
# version 3 metaclass
|
||||
# class Cacheable(metaclass=_ObjectCache):
|
||||
#
|
||||
# Reference: http://mikewatkins.ca/2008/11/29/python-2-and-3-metaclasses/#using-the-metaclass-in-python-3-x
|
||||
ObjectCache = _ObjectCache('ObjectCache', (object, ), {})
|
||||
|
||||
class Cacheable(ObjectCache):
|
||||
"""Objects that can be cached.
|
||||
|
||||
Objects that wrap a PyCObject are cached to avoid "aliasing", i.e.,
|
||||
two Python objects each containing a PyCObject which internally points
|
||||
to the same C pointer."""
|
||||
|
||||
def forget(self):
|
||||
ObjectCache.forget(self)
|
||||
|
||||
|
||||
def test(verbosity=1):
|
||||
def test(verbosity=3, run_isolated=True):
|
||||
"""test(verbosity=1) -> TextTestResult
|
||||
|
||||
Run self-test, and return unittest.runner.TextTestResult object.
|
||||
"""
|
||||
from llvm.test_llvmpy import run
|
||||
Run self-test, and return the number of failures + errors
|
||||
"""
|
||||
from llvm.tests import run
|
||||
|
||||
return run(verbosity=verbosity)
|
||||
result = run(verbosity=verbosity, run_isolated=run_isolated)
|
||||
errct = len(result.failures) + len(result.errors)
|
||||
|
||||
return errct
|
||||
|
|
|
|||
2180
llvm/_core.cpp
2180
llvm/_core.cpp
File diff suppressed because it is too large
Load diff
103
llvm/_util.py
103
llvm/_util.py
|
|
@ -1,103 +0,0 @@
|
|||
#
|
||||
# Copyright (c) 2008-10, Mahadevan R All rights reserved.
|
||||
#
|
||||
# Redistribution and use in source and binary forms, with or without
|
||||
# modification, are permitted provided that the following conditions are met:
|
||||
#
|
||||
# * Redistributions of source code must retain the above copyright notice,
|
||||
# this list of conditions and the following disclaimer.
|
||||
#
|
||||
# * Redistributions in binary form must reproduce the above copyright notice,
|
||||
# this list of conditions and the following disclaimer in the documentation
|
||||
# and/or other materials provided with the distribution.
|
||||
#
|
||||
# * Neither the name of this software, nor the names of its
|
||||
# contributors may be used to endorse or promote products derived from
|
||||
# this software without specific prior written permission.
|
||||
#
|
||||
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
|
||||
# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
|
||||
# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
|
||||
# A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
|
||||
# OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
|
||||
# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
|
||||
# LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
|
||||
# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
|
||||
# THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
|
||||
# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
|
||||
# OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
|
||||
#
|
||||
|
||||
"""Utility functions and classes.
|
||||
|
||||
Used only in other modules, not for public use."""
|
||||
|
||||
import llvm
|
||||
import llvm._core as _core # for PyCObjectVoidPtrToPyLong
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# A set of helpers to check various things. Raises exceptions on
|
||||
# failures.
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
def check_gen(obj, typ):
|
||||
if not isinstance(obj, typ):
|
||||
typ_str = typ.__name__
|
||||
msg = "argument not an instance of llvm.core.%s" % typ_str
|
||||
raise TypeError(msg)
|
||||
|
||||
def check_is_unowned(ownable):
|
||||
if ownable.owner:
|
||||
raise llvm.LLVMException("object is already owned")
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# A set of helpers to unpack a list of Python wrapper objects
|
||||
# into a list of PyCObject wrapped objects, checking types along
|
||||
# the way.
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
def unpack_gen(objlist, check_fn):
|
||||
for obj in objlist: check_fn(obj)
|
||||
return [ obj.ptr for obj in objlist ]
|
||||
|
||||
def unpack_gen_allow_none(objlist, check_fn):
|
||||
for obj in objlist:
|
||||
if obj is not None:
|
||||
check_fn(obj)
|
||||
return [ (obj.ptr if obj is not None else None) for obj in objlist ]
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# Helper to wrap over iterables (LLVMFirstXXX, LLVMNextXXX). This used
|
||||
# to be a generator, but that loses subscriptability of the result, so
|
||||
# we now return a list.
|
||||
#===----------------------------------------------------------------------===
|
||||
|
||||
def wrapiter(first, next, container, wrapper):
|
||||
ret = []
|
||||
ptr = first(container)
|
||||
while ptr:
|
||||
ret.append(wrapper(ptr))
|
||||
ptr = next(ptr)
|
||||
return ret
|
||||
|
||||
|
||||
#===----------------------------------------------------------------------===
|
||||
# Py2/3 compatibility string check
|
||||
#===----------------------------------------------------------------------===
|
||||
def _isstring_py2(x):
|
||||
return isinstance(x, basestring)
|
||||
|
||||
def _isstring_py3(x):
|
||||
return isinstance(x, str)
|
||||
|
||||
def _isstring_choose():
|
||||
try:
|
||||
basestring
|
||||
return _isstring_py2
|
||||
except:
|
||||
return _isstring_py3
|
||||
|
||||
isstring = _isstring_choose()
|
||||
|
||||
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