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debuginstall: gracefully handle missing __file__ attributes This was crashing PyOxidizer. While here, point "Python lib" and "installed modules" to the oxidized binary when read from memory instead of pretending their location is unknown. Differential Revision: https://phab.mercurial-scm.org/D7451

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filesetlang.py
352 lines | 10.3 KiB | text/x-python | PythonLexer
Yuya Nishihara
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r38841 # filesetlang.py - parser, tokenizer and utility for file set language
#
# Copyright 2010 Matt Mackall <mpm@selenic.com>
#
# This software may be used and distributed according to the terms of the
# GNU General Public License version 2 or any later version.
from __future__ import absolute_import
from .i18n import _
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r43359 from .pycompat import getattr
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r38841 from . import (
error,
parser,
pycompat,
)
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r38899 # common weight constants for static optimization
# (see registrar.filesetpredicate for details)
WEIGHT_CHECK_FILENAME = 0.5
WEIGHT_READ_CONTENTS = 30
WEIGHT_STATUS = 10
WEIGHT_STATUS_THOROUGH = 50
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r38841 elements = {
# token-type: binding-strength, primary, prefix, infix, suffix
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r43347 b"(": (20, None, (b"group", 1, b")"), (b"func", 1, b")"), None),
b":": (15, None, None, (b"kindpat", 15), None),
b"-": (5, None, (b"negate", 19), (b"minus", 5), None),
b"not": (10, None, (b"not", 10), None, None),
b"!": (10, None, (b"not", 10), None, None),
b"and": (5, None, None, (b"and", 5), None),
b"&": (5, None, None, (b"and", 5), None),
b"or": (4, None, None, (b"or", 4), None),
b"|": (4, None, None, (b"or", 4), None),
b"+": (4, None, None, (b"or", 4), None),
b",": (2, None, None, (b"list", 2), None),
b")": (0, None, None, None, None),
b"symbol": (0, b"symbol", None, None, None),
b"string": (0, b"string", None, None, None),
b"end": (0, None, None, None, None),
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r38841 }
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r43347 keywords = {b'and', b'or', b'not'}
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r38841
symbols = {}
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r43347 globchars = b".*{}[]?/\\_"
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r38841
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r38841 def tokenize(program):
pos, l = 0, len(program)
program = pycompat.bytestr(program)
while pos < l:
c = program[pos]
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r43346 if c.isspace(): # skip inter-token whitespace
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r38841 pass
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r43347 elif c in b"(),-:|&+!": # handle simple operators
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r38841 yield (c, None, pos)
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r43346 elif (
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r43347 c in b'"\''
or c == b'r'
and program[pos : pos + 2] in (b"r'", b'r"')
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r43346 ): # handle quoted strings
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r43347 if c == b'r':
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r38841 pos += 1
c = program[pos]
decode = lambda x: x
else:
decode = parser.unescapestr
pos += 1
s = pos
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r43346 while pos < l: # find closing quote
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r38841 d = program[pos]
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r43347 if d == b'\\': # skip over escaped characters
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r38841 pos += 2
continue
if d == c:
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r43347 yield (b'string', decode(program[s:pos]), s)
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r38841 break
pos += 1
else:
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r43347 raise error.ParseError(_(b"unterminated string"), s)
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r38841 elif c.isalnum() or c in globchars or ord(c) > 127:
# gather up a symbol/keyword
s = pos
pos += 1
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r43346 while pos < l: # find end of symbol
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r38841 d = program[pos]
if not (d.isalnum() or d in globchars or ord(d) > 127):
break
pos += 1
sym = program[s:pos]
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r43346 if sym in keywords: # operator keywords
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r38841 yield (sym, None, s)
else:
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r43347 yield (b'symbol', sym, s)
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r38841 pos -= 1
else:
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r43347 raise error.ParseError(_(b"syntax error"), pos)
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r38841 pos += 1
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r43347 yield (b'end', None, pos)
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r38841
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r38841 def parse(expr):
p = parser.parser(elements)
tree, pos = p.parse(tokenize(expr))
if pos != len(expr):
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r43347 raise error.ParseError(_(b"invalid token"), pos)
return parser.simplifyinfixops(tree, {b'list', b'or'})
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r38841
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r38841 def getsymbol(x):
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r43347 if x and x[0] == b'symbol':
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r38841 return x[1]
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r43347 raise error.ParseError(_(b'not a symbol'))
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r38841
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r38841 def getstring(x, err):
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r43347 if x and (x[0] == b'string' or x[0] == b'symbol'):
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r38841 return x[1]
raise error.ParseError(err)
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r38841 def getkindpat(x, y, allkinds, err):
kind = getsymbol(x)
pat = getstring(y, err)
if kind not in allkinds:
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r43347 raise error.ParseError(_(b"invalid pattern kind: %s") % kind)
return b'%s:%s' % (kind, pat)
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r38841
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r38841 def getpattern(x, allkinds, err):
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r43347 if x and x[0] == b'kindpat':
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r38841 return getkindpat(x[1], x[2], allkinds, err)
return getstring(x, err)
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r38841 def getlist(x):
if not x:
return []
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r43347 if x[0] == b'list':
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r38841 return list(x[1:])
return [x]
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r38841 def getargs(x, min, max, err):
l = getlist(x)
if len(l) < min or len(l) > max:
raise error.ParseError(err)
return l
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r38862 def _analyze(x):
if x is None:
return x
op = x[0]
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r43347 if op in {b'string', b'symbol'}:
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r38862 return x
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r43347 if op == b'kindpat':
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r38862 getsymbol(x[1]) # kind must be a symbol
t = _analyze(x[2])
return (op, x[1], t)
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r43347 if op == b'group':
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r38863 return _analyze(x[1])
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r43347 if op == b'negate':
raise error.ParseError(_(b"can't use negate operator in this context"))
if op == b'not':
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r38862 t = _analyze(x[1])
return (op, t)
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r43347 if op == b'and':
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r38862 ta = _analyze(x[1])
tb = _analyze(x[2])
return (op, ta, tb)
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r43347 if op == b'minus':
return _analyze((b'and', x[1], (b'not', x[2])))
if op in {b'list', b'or'}:
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r38862 ts = tuple(_analyze(y) for y in x[1:])
return (op,) + ts
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r43347 if op == b'func':
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r38862 getsymbol(x[1]) # function name must be a symbol
ta = _analyze(x[2])
return (op, x[1], ta)
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r43347 raise error.ProgrammingError(b'invalid operator %r' % op)
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r38862
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r38915 def _insertstatushints(x):
"""Insert hint nodes where status should be calculated (first path)
This works in bottom-up way, summing up status names and inserting hint
nodes at 'and' and 'or' as needed. Thus redundant hint nodes may be left.
Returns (status-names, new-tree) at the given subtree, where status-names
is a sum of status names referenced in the given subtree.
"""
if x is None:
return (), x
op = x[0]
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r43347 if op in {b'string', b'symbol', b'kindpat'}:
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r38915 return (), x
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r43347 if op == b'not':
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r38915 h, t = _insertstatushints(x[1])
return h, (op, t)
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r43347 if op == b'and':
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r38915 ha, ta = _insertstatushints(x[1])
hb, tb = _insertstatushints(x[2])
hr = ha + hb
if ha and hb:
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r43347 return hr, (b'withstatus', (op, ta, tb), (b'string', b' '.join(hr)))
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r38915 return hr, (op, ta, tb)
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r43347 if op == b'or':
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r38915 hs, ts = zip(*(_insertstatushints(y) for y in x[1:]))
hr = sum(hs, ())
if sum(bool(h) for h in hs) > 1:
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r43347 return hr, (b'withstatus', (op,) + ts, (b'string', b' '.join(hr)))
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r38915 return hr, (op,) + ts
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r43347 if op == b'list':
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r38915 hs, ts = zip(*(_insertstatushints(y) for y in x[1:]))
return sum(hs, ()), (op,) + ts
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r43347 if op == b'func':
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r38915 f = getsymbol(x[1])
# don't propagate 'ha' crossing a function boundary
ha, ta = _insertstatushints(x[2])
if getattr(symbols.get(f), '_callstatus', False):
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r43347 return (f,), (b'withstatus', (op, x[1], ta), (b'string', f))
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r38915 return (), (op, x[1], ta)
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r43347 raise error.ProgrammingError(b'invalid operator %r' % op)
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r38915
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r43346
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r38915 def _mergestatushints(x, instatus):
"""Remove redundant status hint nodes (second path)
This is the top-down path to eliminate inner hint nodes.
"""
if x is None:
return x
op = x[0]
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r43347 if op == b'withstatus':
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r38915 if instatus:
# drop redundant hint node
return _mergestatushints(x[1], instatus)
t = _mergestatushints(x[1], instatus=True)
return (op, t, x[2])
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r43347 if op in {b'string', b'symbol', b'kindpat'}:
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r38915 return x
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r43347 if op == b'not':
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r38915 t = _mergestatushints(x[1], instatus)
return (op, t)
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r43347 if op == b'and':
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r38915 ta = _mergestatushints(x[1], instatus)
tb = _mergestatushints(x[2], instatus)
return (op, ta, tb)
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r43347 if op in {b'list', b'or'}:
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r38915 ts = tuple(_mergestatushints(y, instatus) for y in x[1:])
return (op,) + ts
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r43347 if op == b'func':
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r38915 # don't propagate 'instatus' crossing a function boundary
ta = _mergestatushints(x[2], instatus=False)
return (op, x[1], ta)
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r43347 raise error.ProgrammingError(b'invalid operator %r' % op)
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r38915
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r38862 def analyze(x):
"""Transform raw parsed tree to evaluatable tree which can be fed to
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r38865 optimize() or getmatch()
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r38862
All pseudo operations should be mapped to real operations or functions
defined in methods or symbols table respectively.
"""
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r38915 t = _analyze(x)
_h, t = _insertstatushints(t)
return _mergestatushints(t, instatus=False)
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r38862
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r43346
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r38868 def _optimizeandops(op, ta, tb):
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r43347 if tb is not None and tb[0] == b'not':
return (b'minus', ta, tb[1])
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r38868 return (op, ta, tb)
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r43346
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r38901 def _optimizeunion(xs):
# collect string patterns so they can be compiled into a single regexp
ws, ts, ss = [], [], []
for x in xs:
w, t = _optimize(x)
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r43347 if t is not None and t[0] in {b'string', b'symbol', b'kindpat'}:
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r38901 ss.append(t)
continue
ws.append(w)
ts.append(t)
if ss:
ws.append(WEIGHT_CHECK_FILENAME)
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r43347 ts.append((b'patterns',) + tuple(ss))
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r38901 return ws, ts
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r38865 def _optimize(x):
if x is None:
return 0, x
op = x[0]
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r43347 if op == b'withstatus':
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r38915 w, t = _optimize(x[1])
return w, (op, t, x[2])
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r43347 if op in {b'string', b'symbol'}:
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r38899 return WEIGHT_CHECK_FILENAME, x
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r43347 if op == b'kindpat':
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r38865 w, t = _optimize(x[2])
return w, (op, x[1], t)
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r43347 if op == b'not':
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r38865 w, t = _optimize(x[1])
return w, (op, t)
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r43347 if op == b'and':
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r38867 wa, ta = _optimize(x[1])
wb, tb = _optimize(x[2])
if wa <= wb:
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r38868 return wa, _optimizeandops(op, ta, tb)
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r38867 else:
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r38868 return wb, _optimizeandops(op, tb, ta)
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r43347 if op == b'or':
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r38901 ws, ts = _optimizeunion(x[1:])
if len(ts) == 1:
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r43346 return ws[0], ts[0] # 'or' operation is fully optimized out
ts = tuple(
it[1] for it in sorted(enumerate(ts), key=lambda it: ws[it[0]])
)
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r38865 return max(ws), (op,) + ts
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r43347 if op == b'list':
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r38865 ws, ts = zip(*(_optimize(y) for y in x[1:]))
return sum(ws), (op,) + ts
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r43347 if op == b'func':
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r38865 f = getsymbol(x[1])
w = getattr(symbols.get(f), '_weight', 1)
wa, ta = _optimize(x[2])
return w + wa, (op, x[1], ta)
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r43347 raise error.ProgrammingError(b'invalid operator %r' % op)
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r38865
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formatting: blacken the codebase...
r43346
Yuya Nishihara
fileset: add stub for weight-based optimization...
r38865 def optimize(x):
"""Reorder/rewrite evaluatable tree for optimization
All pseudo operations should be transformed beforehand.
"""
_w, t = _optimize(x)
return t
Augie Fackler
formatting: blacken the codebase...
r43346
Yuya Nishihara
fileset: extract language processing part to new module (API)...
r38841 def prettyformat(tree):
Augie Fackler
formatting: byteify all mercurial/ and hgext/ string literals...
r43347 return parser.prettyformat(tree, (b'string', b'symbol'))