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black.py
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black.py
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import asyncio
from asyncio.base_events import BaseEventLoop
from concurrent.futures import Executor, ProcessPoolExecutor
from datetime import datetime
from enum import Enum, Flag
from functools import lru_cache, partial, wraps
import io
import itertools
import keyword
import logging
from multiprocessing import Manager, freeze_support
import os
from pathlib import Path
import pickle
import re
import signal
import sys
import tokenize
from typing import (
Any,
Callable,
Collection,
Dict,
Generator,
Generic,
Iterable,
Iterator,
List,
Optional,
Pattern,
Sequence,
Set,
Tuple,
TypeVar,
Union,
cast,
)
from appdirs import user_cache_dir
from attr import dataclass, Factory
import click
import toml
# lib2to3 fork
from blib2to3.pytree import Node, Leaf, type_repr
from blib2to3 import pygram, pytree
from blib2to3.pgen2 import driver, token
from blib2to3.pgen2.parse import ParseError
__version__ = "18.9b0"
DEFAULT_LINE_LENGTH = 88
DEFAULT_EXCLUDES = (
r"/(\.eggs|\.git|\.hg|\.mypy_cache|\.nox|\.tox|\.venv|_build|buck-out|build|dist)/"
)
DEFAULT_INCLUDES = r"\.pyi?$"
CACHE_DIR = Path(user_cache_dir("black", version=__version__))
# types
FileContent = str
Encoding = str
NewLine = str
Depth = int
NodeType = int
LeafID = int
Priority = int
Index = int
LN = Union[Leaf, Node]
SplitFunc = Callable[["Line", bool], Iterator["Line"]]
Timestamp = float
FileSize = int
CacheInfo = Tuple[Timestamp, FileSize]
Cache = Dict[Path, CacheInfo]
out = partial(click.secho, bold=True, err=True)
err = partial(click.secho, fg="red", err=True)
pygram.initialize(CACHE_DIR)
syms = pygram.python_symbols
class NothingChanged(UserWarning):
"""Raised when reformatted code is the same as source."""
class CannotSplit(Exception):
"""A readable split that fits the allotted line length is impossible."""
class InvalidInput(ValueError):
"""Raised when input source code fails all parse attempts."""
class WriteBack(Enum):
NO = 0
YES = 1
DIFF = 2
CHECK = 3
@classmethod
def from_configuration(cls, *, check: bool, diff: bool) -> "WriteBack":
if check and not diff:
return cls.CHECK
return cls.DIFF if diff else cls.YES
class Changed(Enum):
NO = 0
CACHED = 1
YES = 2
class FileMode(Flag):
AUTO_DETECT = 0
PYTHON36 = 1
PYI = 2
NO_STRING_NORMALIZATION = 4
NO_NUMERIC_UNDERSCORE_NORMALIZATION = 8
@classmethod
def from_configuration(
cls,
*,
py36: bool,
pyi: bool,
skip_string_normalization: bool,
skip_numeric_underscore_normalization: bool,
) -> "FileMode":
mode = cls.AUTO_DETECT
if py36:
mode |= cls.PYTHON36
if pyi:
mode |= cls.PYI
if skip_string_normalization:
mode |= cls.NO_STRING_NORMALIZATION
if skip_numeric_underscore_normalization:
mode |= cls.NO_NUMERIC_UNDERSCORE_NORMALIZATION
return mode
def read_pyproject_toml(
ctx: click.Context, param: click.Parameter, value: Union[str, int, bool, None]
) -> Optional[str]:
"""Inject Black configuration from "pyproject.toml" into defaults in `ctx`.
Returns the path to a successfully found and read configuration file, None
otherwise.
"""
assert not isinstance(value, (int, bool)), "Invalid parameter type passed"
if not value:
root = find_project_root(ctx.params.get("src", ()))
path = root / "pyproject.toml"
if path.is_file():
value = str(path)
else:
return None
try:
pyproject_toml = toml.load(value)
config = pyproject_toml.get("tool", {}).get("black", {})
except (toml.TomlDecodeError, OSError) as e:
raise click.FileError(
filename=value, hint=f"Error reading configuration file: {e}"
)
if not config:
return None
if ctx.default_map is None:
ctx.default_map = {}
ctx.default_map.update( # type: ignore # bad types in .pyi
{k.replace("--", "").replace("-", "_"): v for k, v in config.items()}
)
return value
@click.command(context_settings=dict(help_option_names=["-h", "--help"]))
@click.option(
"-l",
"--line-length",
type=int,
default=DEFAULT_LINE_LENGTH,
help="How many characters per line to allow.",
show_default=True,
)
@click.option(
"--py36",
is_flag=True,
help=(
"Allow using Python 3.6-only syntax on all input files. This will put "
"trailing commas in function signatures and calls also after *args and "
"**kwargs. [default: per-file auto-detection]"
),
)
@click.option(
"--pyi",
is_flag=True,
help=(
"Format all input files like typing stubs regardless of file extension "
"(useful when piping source on standard input)."
),
)
@click.option(
"-S",
"--skip-string-normalization",
is_flag=True,
help="Don't normalize string quotes or prefixes.",
)
@click.option(
"-N",
"--skip-numeric-underscore-normalization",
is_flag=True,
help="Don't normalize underscores in numeric literals.",
)
@click.option(
"--check",
is_flag=True,
help=(
"Don't write the files back, just return the status. Return code 0 "
"means nothing would change. Return code 1 means some files would be "
"reformatted. Return code 123 means there was an internal error."
),
)
@click.option(
"--diff",
is_flag=True,
help="Don't write the files back, just output a diff for each file on stdout.",
)
@click.option(
"--fast/--safe",
is_flag=True,
help="If --fast given, skip temporary sanity checks. [default: --safe]",
)
@click.option(
"--include",
type=str,
default=DEFAULT_INCLUDES,
help=(
"A regular expression that matches files and directories that should be "
"included on recursive searches. An empty value means all files are "
"included regardless of the name. Use forward slashes for directories on "
"all platforms (Windows, too). Exclusions are calculated first, inclusions "
"later."
),
show_default=True,
)
@click.option(
"--exclude",
type=str,
default=DEFAULT_EXCLUDES,
help=(
"A regular expression that matches files and directories that should be "
"excluded on recursive searches. An empty value means no paths are excluded. "
"Use forward slashes for directories on all platforms (Windows, too). "
"Exclusions are calculated first, inclusions later."
),
show_default=True,
)
@click.option(
"-q",
"--quiet",
is_flag=True,
help=(
"Don't emit non-error messages to stderr. Errors are still emitted, "
"silence those with 2>/dev/null."
),
)
@click.option(
"-v",
"--verbose",
is_flag=True,
help=(
"Also emit messages to stderr about files that were not changed or were "
"ignored due to --exclude=."
),
)
@click.version_option(version=__version__)
@click.argument(
"src",
nargs=-1,
type=click.Path(
exists=True, file_okay=True, dir_okay=True, readable=True, allow_dash=True
),
is_eager=True,
)
@click.option(
"--config",
type=click.Path(
exists=False, file_okay=True, dir_okay=False, readable=True, allow_dash=False
),
is_eager=True,
callback=read_pyproject_toml,
help="Read configuration from PATH.",
)
@click.pass_context
def main(
ctx: click.Context,
line_length: int,
check: bool,
diff: bool,
fast: bool,
pyi: bool,
py36: bool,
skip_string_normalization: bool,
skip_numeric_underscore_normalization: bool,
quiet: bool,
verbose: bool,
include: str,
exclude: str,
src: Tuple[str],
config: Optional[str],
) -> None:
"""The uncompromising code formatter."""
write_back = WriteBack.from_configuration(check=check, diff=diff)
mode = FileMode.from_configuration(
py36=py36,
pyi=pyi,
skip_string_normalization=skip_string_normalization,
skip_numeric_underscore_normalization=skip_numeric_underscore_normalization,
)
if config and verbose:
out(f"Using configuration from {config}.", bold=False, fg="blue")
try:
include_regex = re_compile_maybe_verbose(include)
except re.error:
err(f"Invalid regular expression for include given: {include!r}")
ctx.exit(2)
try:
exclude_regex = re_compile_maybe_verbose(exclude)
except re.error:
err(f"Invalid regular expression for exclude given: {exclude!r}")
ctx.exit(2)
report = Report(check=check, quiet=quiet, verbose=verbose)
root = find_project_root(src)
sources: Set[Path] = set()
for s in src:
p = Path(s)
if p.is_dir():
sources.update(
gen_python_files_in_dir(p, root, include_regex, exclude_regex, report)
)
elif p.is_file() or s == "-":
# if a file was explicitly given, we don't care about its extension
sources.add(p)
else:
err(f"invalid path: {s}")
if len(sources) == 0:
if verbose or not quiet:
out("No paths given. Nothing to do 😴")
ctx.exit(0)
if len(sources) == 1:
reformat_one(
src=sources.pop(),
line_length=line_length,
fast=fast,
write_back=write_back,
mode=mode,
report=report,
)
else:
loop = asyncio.get_event_loop()
executor = ProcessPoolExecutor(max_workers=os.cpu_count())
try:
loop.run_until_complete(
schedule_formatting(
sources=sources,
line_length=line_length,
fast=fast,
write_back=write_back,
mode=mode,
report=report,
loop=loop,
executor=executor,
)
)
finally:
shutdown(loop)
if verbose or not quiet:
bang = "💥 💔 💥" if report.return_code else "✨ 🍰 ✨"
out(f"All done! {bang}")
click.secho(str(report), err=True)
ctx.exit(report.return_code)
def reformat_one(
src: Path,
line_length: int,
fast: bool,
write_back: WriteBack,
mode: FileMode,
report: "Report",
) -> None:
"""Reformat a single file under `src` without spawning child processes.
If `quiet` is True, non-error messages are not output. `line_length`,
`write_back`, `fast` and `pyi` options are passed to
:func:`format_file_in_place` or :func:`format_stdin_to_stdout`.
"""
try:
changed = Changed.NO
if not src.is_file() and str(src) == "-":
if format_stdin_to_stdout(
line_length=line_length, fast=fast, write_back=write_back, mode=mode
):
changed = Changed.YES
else:
cache: Cache = {}
if write_back != WriteBack.DIFF:
cache = read_cache(line_length, mode)
res_src = src.resolve()
if res_src in cache and cache[res_src] == get_cache_info(res_src):
changed = Changed.CACHED
if changed is not Changed.CACHED and format_file_in_place(
src,
line_length=line_length,
fast=fast,
write_back=write_back,
mode=mode,
):
changed = Changed.YES
if (write_back is WriteBack.YES and changed is not Changed.CACHED) or (
write_back is WriteBack.CHECK and changed is Changed.NO
):
write_cache(cache, [src], line_length, mode)
report.done(src, changed)
except Exception as exc:
report.failed(src, str(exc))
async def schedule_formatting(
sources: Set[Path],
line_length: int,
fast: bool,
write_back: WriteBack,
mode: FileMode,
report: "Report",
loop: BaseEventLoop,
executor: Executor,
) -> None:
"""Run formatting of `sources` in parallel using the provided `executor`.
(Use ProcessPoolExecutors for actual parallelism.)
`line_length`, `write_back`, `fast`, and `pyi` options are passed to
:func:`format_file_in_place`.
"""
cache: Cache = {}
if write_back != WriteBack.DIFF:
cache = read_cache(line_length, mode)
sources, cached = filter_cached(cache, sources)
for src in sorted(cached):
report.done(src, Changed.CACHED)
if not sources:
return
cancelled = []
sources_to_cache = []
lock = None
if write_back == WriteBack.DIFF:
# For diff output, we need locks to ensure we don't interleave output
# from different processes.
manager = Manager()
lock = manager.Lock()
tasks = {
loop.run_in_executor(
executor,
format_file_in_place,
src,
line_length,
fast,
write_back,
mode,
lock,
): src
for src in sorted(sources)
}
pending: Iterable[asyncio.Task] = tasks.keys()
try:
loop.add_signal_handler(signal.SIGINT, cancel, pending)
loop.add_signal_handler(signal.SIGTERM, cancel, pending)
except NotImplementedError:
# There are no good alternatives for these on Windows.
pass
while pending:
done, _ = await asyncio.wait(pending, return_when=asyncio.FIRST_COMPLETED)
for task in done:
src = tasks.pop(task)
if task.cancelled():
cancelled.append(task)
elif task.exception():
report.failed(src, str(task.exception()))
else:
changed = Changed.YES if task.result() else Changed.NO
# If the file was written back or was successfully checked as
# well-formatted, store this information in the cache.
if write_back is WriteBack.YES or (
write_back is WriteBack.CHECK and changed is Changed.NO
):
sources_to_cache.append(src)
report.done(src, changed)
if cancelled:
await asyncio.gather(*cancelled, loop=loop, return_exceptions=True)
if sources_to_cache:
write_cache(cache, sources_to_cache, line_length, mode)
def format_file_in_place(
src: Path,
line_length: int,
fast: bool,
write_back: WriteBack = WriteBack.NO,
mode: FileMode = FileMode.AUTO_DETECT,
lock: Any = None, # multiprocessing.Manager().Lock() is some crazy proxy
) -> bool:
"""Format file under `src` path. Return True if changed.
If `write_back` is DIFF, write a diff to stdout. If it is YES, write reformatted
code to the file.
`line_length` and `fast` options are passed to :func:`format_file_contents`.
"""
if src.suffix == ".pyi":
mode |= FileMode.PYI
then = datetime.utcfromtimestamp(src.stat().st_mtime)
with open(src, "rb") as buf:
src_contents, encoding, newline = decode_bytes(buf.read())
try:
dst_contents = format_file_contents(
src_contents, line_length=line_length, fast=fast, mode=mode
)
except NothingChanged:
return False
if write_back == write_back.YES:
with open(src, "w", encoding=encoding, newline=newline) as f:
f.write(dst_contents)
elif write_back == write_back.DIFF:
now = datetime.utcnow()
src_name = f"{src}\t{then} +0000"
dst_name = f"{src}\t{now} +0000"
diff_contents = diff(src_contents, dst_contents, src_name, dst_name)
if lock:
lock.acquire()
try:
f = io.TextIOWrapper(
sys.stdout.buffer,
encoding=encoding,
newline=newline,
write_through=True,
)
f.write(diff_contents)
f.detach()
finally:
if lock:
lock.release()
return True
def format_stdin_to_stdout(
line_length: int,
fast: bool,
write_back: WriteBack = WriteBack.NO,
mode: FileMode = FileMode.AUTO_DETECT,
) -> bool:
"""Format file on stdin. Return True if changed.
If `write_back` is YES, write reformatted code back to stdout. If it is DIFF,
write a diff to stdout.
`line_length`, `fast`, `is_pyi`, and `force_py36` arguments are passed to
:func:`format_file_contents`.
"""
then = datetime.utcnow()
src, encoding, newline = decode_bytes(sys.stdin.buffer.read())
dst = src
try:
dst = format_file_contents(src, line_length=line_length, fast=fast, mode=mode)
return True
except NothingChanged:
return False
finally:
f = io.TextIOWrapper(
sys.stdout.buffer, encoding=encoding, newline=newline, write_through=True
)
if write_back == WriteBack.YES:
f.write(dst)
elif write_back == WriteBack.DIFF:
now = datetime.utcnow()
src_name = f"STDIN\t{then} +0000"
dst_name = f"STDOUT\t{now} +0000"
f.write(diff(src, dst, src_name, dst_name))
f.detach()
def format_file_contents(
src_contents: str,
*,
line_length: int,
fast: bool,
mode: FileMode = FileMode.AUTO_DETECT,
) -> FileContent:
"""Reformat contents a file and return new contents.
If `fast` is False, additionally confirm that the reformatted code is
valid by calling :func:`assert_equivalent` and :func:`assert_stable` on it.
`line_length` is passed to :func:`format_str`.
"""
if src_contents.strip() == "":
raise NothingChanged
dst_contents = format_str(src_contents, line_length=line_length, mode=mode)
if src_contents == dst_contents:
raise NothingChanged
if not fast:
assert_equivalent(src_contents, dst_contents)
assert_stable(src_contents, dst_contents, line_length=line_length, mode=mode)
return dst_contents
def format_str(
src_contents: str, line_length: int, *, mode: FileMode = FileMode.AUTO_DETECT
) -> FileContent:
"""Reformat a string and return new contents.
`line_length` determines how many characters per line are allowed.
"""
src_node = lib2to3_parse(src_contents.lstrip())
dst_contents = ""
future_imports = get_future_imports(src_node)
is_pyi = bool(mode & FileMode.PYI)
py36 = bool(mode & FileMode.PYTHON36) or is_python36(src_node)
normalize_strings = not bool(mode & FileMode.NO_STRING_NORMALIZATION)
normalize_fmt_off(src_node)
lines = LineGenerator(
remove_u_prefix=py36 or "unicode_literals" in future_imports,
is_pyi=is_pyi,
normalize_strings=normalize_strings,
allow_underscores=py36
and not bool(mode & FileMode.NO_NUMERIC_UNDERSCORE_NORMALIZATION),
)
elt = EmptyLineTracker(is_pyi=is_pyi)
empty_line = Line()
after = 0
for current_line in lines.visit(src_node):
for _ in range(after):
dst_contents += str(empty_line)
before, after = elt.maybe_empty_lines(current_line)
for _ in range(before):
dst_contents += str(empty_line)
for line in split_line(current_line, line_length=line_length, py36=py36):
dst_contents += str(line)
return dst_contents
def decode_bytes(src: bytes) -> Tuple[FileContent, Encoding, NewLine]:
"""Return a tuple of (decoded_contents, encoding, newline).
`newline` is either CRLF or LF but `decoded_contents` is decoded with
universal newlines (i.e. only contains LF).
"""
srcbuf = io.BytesIO(src)
encoding, lines = tokenize.detect_encoding(srcbuf.readline)
if not lines:
return "", encoding, "\n"
newline = "\r\n" if b"\r\n" == lines[0][-2:] else "\n"
srcbuf.seek(0)
with io.TextIOWrapper(srcbuf, encoding) as tiow:
return tiow.read(), encoding, newline
GRAMMARS = [
pygram.python_grammar_no_print_statement_no_exec_statement,
pygram.python_grammar_no_print_statement,
pygram.python_grammar,
]
def lib2to3_parse(src_txt: str) -> Node:
"""Given a string with source, return the lib2to3 Node."""
if src_txt[-1:] != "\n":
src_txt += "\n"
for grammar in GRAMMARS:
drv = driver.Driver(grammar, pytree.convert)
try:
result = drv.parse_string(src_txt, True)
break
except ParseError as pe:
lineno, column = pe.context[1]
lines = src_txt.splitlines()
try:
faulty_line = lines[lineno - 1]
except IndexError:
faulty_line = "<line number missing in source>"
exc = InvalidInput(f"Cannot parse: {lineno}:{column}: {faulty_line}")
else:
raise exc from None
if isinstance(result, Leaf):
result = Node(syms.file_input, [result])
return result
def lib2to3_unparse(node: Node) -> str:
"""Given a lib2to3 node, return its string representation."""
code = str(node)
return code
T = TypeVar("T")
class Visitor(Generic[T]):
"""Basic lib2to3 visitor that yields things of type `T` on `visit()`."""
def visit(self, node: LN) -> Iterator[T]:
"""Main method to visit `node` and its children.
It tries to find a `visit_*()` method for the given `node.type`, like
`visit_simple_stmt` for Node objects or `visit_INDENT` for Leaf objects.
If no dedicated `visit_*()` method is found, chooses `visit_default()`
instead.
Then yields objects of type `T` from the selected visitor.
"""
if node.type < 256:
name = token.tok_name[node.type]
else:
name = type_repr(node.type)
yield from getattr(self, f"visit_{name}", self.visit_default)(node)
def visit_default(self, node: LN) -> Iterator[T]:
"""Default `visit_*()` implementation. Recurses to children of `node`."""
if isinstance(node, Node):
for child in node.children:
yield from self.visit(child)
@dataclass
class DebugVisitor(Visitor[T]):
tree_depth: int = 0
def visit_default(self, node: LN) -> Iterator[T]:
indent = " " * (2 * self.tree_depth)
if isinstance(node, Node):
_type = type_repr(node.type)
out(f"{indent}{_type}", fg="yellow")
self.tree_depth += 1
for child in node.children:
yield from self.visit(child)
self.tree_depth -= 1
out(f"{indent}/{_type}", fg="yellow", bold=False)
else:
_type = token.tok_name.get(node.type, str(node.type))
out(f"{indent}{_type}", fg="blue", nl=False)
if node.prefix:
# We don't have to handle prefixes for `Node` objects since
# that delegates to the first child anyway.
out(f" {node.prefix!r}", fg="green", bold=False, nl=False)
out(f" {node.value!r}", fg="blue", bold=False)
@classmethod
def show(cls, code: Union[str, Leaf, Node]) -> None:
"""Pretty-print the lib2to3 AST of a given string of `code`.
Convenience method for debugging.
"""
v: DebugVisitor[None] = DebugVisitor()
if isinstance(code, str):
code = lib2to3_parse(code)
list(v.visit(code))
KEYWORDS = set(keyword.kwlist)
WHITESPACE = {token.DEDENT, token.INDENT, token.NEWLINE}
FLOW_CONTROL = {"return", "raise", "break", "continue"}
STATEMENT = {
syms.if_stmt,
syms.while_stmt,
syms.for_stmt,
syms.try_stmt,
syms.except_clause,
syms.with_stmt,
syms.funcdef,
syms.classdef,
}
STANDALONE_COMMENT = 153
token.tok_name[STANDALONE_COMMENT] = "STANDALONE_COMMENT"
LOGIC_OPERATORS = {"and", "or"}
COMPARATORS = {
token.LESS,
token.GREATER,
token.EQEQUAL,
token.NOTEQUAL,
token.LESSEQUAL,
token.GREATEREQUAL,
}
MATH_OPERATORS = {
token.VBAR,
token.CIRCUMFLEX,
token.AMPER,
token.LEFTSHIFT,
token.RIGHTSHIFT,
token.PLUS,
token.MINUS,
token.STAR,
token.SLASH,
token.DOUBLESLASH,
token.PERCENT,
token.AT,
token.TILDE,
token.DOUBLESTAR,
}
STARS = {token.STAR, token.DOUBLESTAR}
VARARGS_PARENTS = {
syms.arglist,
syms.argument, # double star in arglist
syms.trailer, # single argument to call
syms.typedargslist,
syms.varargslist, # lambdas
}
UNPACKING_PARENTS = {
syms.atom, # single element of a list or set literal
syms.dictsetmaker,
syms.listmaker,
syms.testlist_gexp,
syms.testlist_star_expr,
}
TEST_DESCENDANTS = {
syms.test,
syms.lambdef,
syms.or_test,
syms.and_test,
syms.not_test,
syms.comparison,
syms.star_expr,
syms.expr,
syms.xor_expr,
syms.and_expr,
syms.shift_expr,
syms.arith_expr,
syms.trailer,
syms.term,
syms.power,
}
ASSIGNMENTS = {
"=",
"+=",
"-=",
"*=",
"@=",
"/=",
"%=",
"&=",
"|=",
"^=",
"<<=",
">>=",
"**=",
"//=",
}
COMPREHENSION_PRIORITY = 20
COMMA_PRIORITY = 18
TERNARY_PRIORITY = 16
LOGIC_PRIORITY = 14
STRING_PRIORITY = 12
COMPARATOR_PRIORITY = 10
MATH_PRIORITIES = {
token.VBAR: 9,
token.CIRCUMFLEX: 8,
token.AMPER: 7,
token.LEFTSHIFT: 6,
token.RIGHTSHIFT: 6,
token.PLUS: 5,
token.MINUS: 5,
token.STAR: 4,
token.SLASH: 4,
token.DOUBLESLASH: 4,
token.PERCENT: 4,
token.AT: 4,
token.TILDE: 3,
token.DOUBLESTAR: 2,
}
DOT_PRIORITY = 1
@dataclass
class BracketTracker:
"""Keeps track of brackets on a line."""
depth: int = 0
bracket_match: Dict[Tuple[Depth, NodeType], Leaf] = Factory(dict)
delimiters: Dict[LeafID, Priority] = Factory(dict)
previous: Optional[Leaf] = None
_for_loop_depths: List[int] = Factory(list)
_lambda_argument_depths: List[int] = Factory(list)
def mark(self, leaf: Leaf) -> None:
"""Mark `leaf` with bracket-related metadata. Keep track of delimiters.
All leaves receive an int `bracket_depth` field that stores how deep
within brackets a given leaf is. 0 means there are no enclosing brackets
that started on this line.
If a leaf is itself a closing bracket, it receives an `opening_bracket`
field that it forms a pair with. This is a one-directional link to
avoid reference cycles.
If a leaf is a delimiter (a token on which Black can split the line if
needed) and it's on depth 0, its `id()` is stored in the tracker's
`delimiters` field.
"""
if leaf.type == token.COMMENT:
return
self.maybe_decrement_after_for_loop_variable(leaf)
self.maybe_decrement_after_lambda_arguments(leaf)
if leaf.type in CLOSING_BRACKETS:
self.depth -= 1
opening_bracket = self.bracket_match.pop((self.depth, leaf.type))
leaf.opening_bracket = opening_bracket
leaf.bracket_depth = self.depth
if self.depth == 0:
delim = is_split_before_delimiter(leaf, self.previous)
if delim and self.previous is not None:
self.delimiters[id(self.previous)] = delim
else:
delim = is_split_after_delimiter(leaf, self.previous)
if delim:
self.delimiters[id(leaf)] = delim
if leaf.type in OPENING_BRACKETS:
self.bracket_match[self.depth, BRACKET[leaf.type]] = leaf
self.depth += 1
self.previous = leaf
self.maybe_increment_lambda_arguments(leaf)
self.maybe_increment_for_loop_variable(leaf)
def any_open_brackets(self) -> bool:
"""Return True if there is an yet unmatched open bracket on the line."""
return bool(self.bracket_match)
def max_delimiter_priority(self, exclude: Iterable[LeafID] = ()) -> int:
"""Return the highest priority of a delimiter found on the line.
Values are consistent with what `is_split_*_delimiter()` return.
Raises ValueError on no delimiters.
"""
return max(v for k, v in self.delimiters.items() if k not in exclude)
def delimiter_count_with_priority(self, priority: int = 0) -> int:
"""Return the number of delimiters with the given `priority`.
If no `priority` is passed, defaults to max priority on the line.
"""
if not self.delimiters:
return 0
priority = priority or self.max_delimiter_priority()
return sum(1 for p in self.delimiters.values() if p == priority)
def maybe_increment_for_loop_variable(self, leaf: Leaf) -> bool:
"""In a for loop, or comprehension, the variables are often unpacks.
To avoid splitting on the comma in this situation, increase the depth of
tokens between `for` and `in`.
"""
if leaf.type == token.NAME and leaf.value == "for":
self.depth += 1
self._for_loop_depths.append(self.depth)
return True
return False
def maybe_decrement_after_for_loop_variable(self, leaf: Leaf) -> bool:
"""See `maybe_increment_for_loop_variable` above for explanation."""
if (
self._for_loop_depths
and self._for_loop_depths[-1] == self.depth
and leaf.type == token.NAME
and leaf.value == "in"
):
self.depth -= 1
self._for_loop_depths.pop()
return True
return False
def maybe_increment_lambda_arguments(self, leaf: Leaf) -> bool:
"""In a lambda expression, there might be more than one argument.
To avoid splitting on the comma in this situation, increase the depth of
tokens between `lambda` and `:`.
"""
if leaf.type == token.NAME and leaf.value == "lambda":