Merge branch 'llvm_cbuilder'
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commit
23e3f43d44
6 changed files with 1696 additions and 0 deletions
3
llvm_cbuilder/__init__.py
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3
llvm_cbuilder/__init__.py
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from .builder import *
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from .executor import CExecutor
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1383
llvm_cbuilder/builder.py
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1383
llvm_cbuilder/builder.py
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67
llvm_cbuilder/executor.py
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67
llvm_cbuilder/executor.py
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'''
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This is mostly a convenience module for testing with ctypes.
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'''
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from llvm.core import Type, Module
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import llvm.ee as le
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import ctypes as ct
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MAP_CTYPES = {
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'void' : None,
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'bool' : ct.c_bool,
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'char' : ct.c_char,
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'uchar' : ct.c_ubyte,
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'short' : ct.c_short,
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'ushort' : ct.c_ushort,
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'int' : ct.c_int,
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'uint' : ct.c_uint,
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'long' : ct.c_long,
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'ulong' : ct.c_ulong,
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'int8' : ct.c_int8,
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'uint8' : ct.c_uint8,
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'int16' : ct.c_int16,
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'uint16' : ct.c_uint16,
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'int32' : ct.c_int32,
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'uint32' : ct.c_uint32,
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'int64' : ct.c_int64,
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'uint64' : ct.c_uint64,
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'float' : ct.c_float,
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'double' : ct.c_double,
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'longdouble' : ct.c_longdouble,
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}
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class CExecutor(object):
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'''a convenient class for creating ctype functions from LLVM modules
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'''
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def __init__(self, mod_or_engine):
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if isinstance(mod_or_engine, Module):
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self.engine = le.EngineBuilder.new(mod_or_engine).opt(3).create()
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else:
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self.engine = mod_or_engine
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def get_ctype_function(self, fn, *typeinfo):
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'''create a ctype function from a LLVM function
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typeinfo : string of types (see `MAP_CTYPES`) or
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list of ctypes datatype.
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First value is the return type.
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A function that takes no argument and return nothing
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should use `"void"` or `None`.
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'''
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if len(typeinfo)==1 and isinstance(typeinfo[0], str):
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types = [ MAP_CTYPES[s.strip()] for s in typeinfo[0].split(',') ]
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if not types:
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retty = None
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argtys = []
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else:
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retty = types[0]
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argtys = types[1:]
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else:
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retty = typeinfo[0]
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argtys = typeinfo[1:]
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prototype = ct.CFUNCTYPE(retty, *argtys)
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fnptr = self.engine.get_pointer_to_function(fn)
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return prototype(fnptr)
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8
llvm_cbuilder/libc.py
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8
llvm_cbuilder/libc.py
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from .builder import CExternal
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import llvm.core as lc
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from . import shortnames as types
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class LibC(CExternal):
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printf = lc.Type.function(types.int, [types.char_p], True)
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# TODO a lot more to add
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41
llvm_cbuilder/shortnames.py
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41
llvm_cbuilder/shortnames.py
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from numba.minivect import minitypes
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import numba.decorators
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from llvm.core import Type
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void = Type.void()
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char = Type.int(8)
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short = Type.int(16)
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int = Type.int(32)
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int16 = short
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int32 = int
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int64 = Type.int(64)
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float = Type.float()
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double = Type.double()
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npy_intp = minitypes.npy_intp.to_llvm(numba.decorators.context)
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py_ssize_t = minitypes.Py_ssize_t.to_llvm(numba.decorators.context)
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# pointers
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pointer = Type.pointer
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void_p = pointer(char)
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char_p = pointer(char)
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npy_intp_p = pointer(npy_intp)
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# platform dependent
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def _determine_pointer_size():
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from ctypes import sizeof, c_void_p
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return sizeof(c_void_p) * 8
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pointer_size = _determine_pointer_size()
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intp = {32: int32, 64: int64}[pointer_size]
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# vector
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def vector(ty, ct):
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return Type.vector(ty, 4)
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194
llvm_cbuilder/translator.py
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194
llvm_cbuilder/translator.py
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# A handy translator that converts control flow into the appropriate
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# llvm_cbuilder constructs
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from numba.functions import _get_ast, fix_ast_lineno
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import inspect, functools, ast
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import logging
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logger = logging.getLogger(__name__)
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def translate(func):
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# TODO use meta package
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wrapper = functools.wraps(func)
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caller_frame = inspect.currentframe().f_back
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tree = _get_ast(func)
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tree = ast.Module(body=tree.body)
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tree = ExpandControlFlow().visit(tree)
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fix_ast_lineno(tree)
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# prepare locals for execution
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local_dict = locals()
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local_dict.update(caller_frame.f_locals)
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local_dict.update(caller_frame.f_globals)
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try:
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compiled = compile(tree, '<string>', 'exec')
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return eval(compiled)
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except Exception, e:
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logger.debug(ast.dump(tree))
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from ArminRonacher import codegen # uses Armin Ronacher's codegen to debug
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# http://dev.pocoo.org/hg/sandbox/file/852a1248c8eb/ast/codegen.py
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logger.debug(codegen.to_source(tree))
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raise
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_if_else_template = '''
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with self.ifelse(__CONDITION__) as _ifelse_:
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with _ifelse_.then():
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__THEN__
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with _ifelse_.otherwise():
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__OTHERWISE__
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'''
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_while_template = '''
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with self.loop() as _loop_:
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with _loop_.condition() as _setcond_:
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_setcond_(__CONDITION__)
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with _loop_.body():
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__BODY__
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'''
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_for_range_template = '''
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with self.for_range(*__ARGS__) as (_loop_, __ITER__):
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__BODY__
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'''
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_return_template = 'self.ret(__RETURN__)'
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_const_int_template = 'self.constant(C.int, __VALUE__)'
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_const_long_template = 'self.constant(C.long, __VALUE__)'
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_const_float_template = 'self.constant(C.double, __VALUE__)'
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def load_template(string):
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'''
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Since ast.parse() returns a ast.Module node,
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it is more useful to trim the Module and get to the first item of body
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'''
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tree = ast.parse(string) # return a Module
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assert isinstance(tree, ast.Module)
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return tree.body[0] # get the first item of body
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class ExpandControlFlow(ast.NodeTransformer):
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'''
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Expand control flow contructs.
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These are the most tedious thing to do in llvm_cbuilder.
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'''
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## Use breadcumb to track parent nodes
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# def __init__(self):
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# self.breadcumb = []
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#
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# def visit(self, node):
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# self.breadcumb.append(node)
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# try:
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# return super(ExpandControlFlow, self).visit(node)
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# finally:
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# self.breadcumb.pop()
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#
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# @property
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# def parent(self):
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# return self.breadcumb[-2]
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def visit_If(self, node):
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mapping = {
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'__CONDITION__' : node.test,
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'__THEN__' : node.body,
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'__OTHERWISE__' : node.orelse,
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}
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ifelse = load_template(_if_else_template)
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ifelse = MacroExpander(mapping).visit(ifelse)
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newnode = self.generic_visit(ifelse)
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return newnode
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def visit_While(self, node):
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mapping = {
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'__CONDITION__' : node.test,
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'__BODY__' : node.body,
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}
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whileloop = load_template(_while_template)
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whileloop = MacroExpander(mapping).visit(whileloop)
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newnode = self.generic_visit(whileloop)
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return newnode
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def visit_For(self, node):
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try:
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if node.iter.func.id not in ['range', 'xrange']:
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return node
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except AttributeError:
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return node
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mapping = {
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'__ITER__' : node.target,
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'__BODY__' : node.body,
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'__ARGS__' : ast.Tuple(elts=node.iter.args, ctx=ast.Load()),
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}
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forloop = load_template(_for_range_template)
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forloop = MacroExpander(mapping).visit(forloop)
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newnode = self.generic_visit(forloop)
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return newnode
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def visit_Return(self, node):
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mapping = {'__RETURN__' : node.value}
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ret = load_template(_return_template)
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repl = MacroExpander(mapping).visit(ret)
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return repl
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def visit_Num(self, node):
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'''convert immediate values
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'''
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typemap = {
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int : _const_int_template,
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long : _const_long_template, # TODO: disable long for py3
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float : _const_float_template,
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}
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template = load_template(typemap[type(node.n)])
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mapping = {
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'__VALUE__' : node,
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}
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constant = MacroExpander(mapping).visit(template).value
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newnode = constant
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return newnode
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class MacroExpander(ast.NodeTransformer):
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def __init__(self, mapping):
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self.mapping = mapping
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def visit_With(self, node):
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'''
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Expand X in the following:
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with blah:
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X
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Nothing should go before or after X.
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X must be a list of nodes.
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'''
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if (len(node.body)==1 # the body of
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and isinstance(node.body[0], ast.Expr)
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and isinstance(node.body[0].value, ast.Name)):
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try:
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repl = self.mapping.pop(node.body[0].value.id)
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except KeyError:
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pass
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else:
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old = node.body[0]
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node.body = repl
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return self.generic_visit(node) # recursively apply expand all macros
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def visit_Name(self, node):
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'''
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Expand all Name node to simple value
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'''
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try:
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repl = self.mapping.pop(node.id)
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except KeyError:
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pass
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else:
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if repl is not None and not isinstance(repl, list):
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return repl
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return node
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