feat: ж/д слой + cant_swim в скоринг + профили вне модели

Определение специфических рекомендаций (матрица профилей §8):

1. Ж/д слой (закрыт мёртвый railway ×2.5 у РАС):
   - /api/v1/water/{case_id} отдаёт railway=rail как LineString
     (без service/industrial/military веток), кэш общий v2;
   - railway_warning «перекрыть/проверить немедленно» по профилям;
   - SearchMap: Polyline слой ж/д (тёмно-красный), счётчики 💧/🚂.

2. cant_swim → профиль не_умеет_плавать (water ×3.0, без изменения
   радиуса, critical_warning «обследовать водоёмы НЕМЕДЛЕННО»):
   - раньше чекбокс влиял только на текст, в скоринге был пробел;
   - derive в analyze._derive_profiles — работает и для closed_cases.

3. unmodeled_profiles: ДЦП/слабое зрение/слух — честная пометка
   «вне поведенческой модели» с пояснением (vector_tasks B12:
   профили без аналога не выдавать за учтённые); блок на фронте
   в карточке здоровья.

Площадь воды: сферический эксцесс, проверен на квадрате 53° (744017 м²
vs 743272 точного). Тесты: 202 passed (новый test_cant_swim_profile).
This commit is contained in:
2026-09-09 13:12:55 +03:00
parent 98e8e58023
commit f20080305d
2069 changed files with 803865 additions and 97 deletions
@@ -0,0 +1,200 @@
from __future__ import annotations
import contextlib
import re
from dataclasses import dataclass
from typing import TYPE_CHECKING, NoReturn
from .specifiers import Specifier
if TYPE_CHECKING:
from collections.abc import Generator, Mapping
@dataclass
class Token:
__slots__ = ("name", "position", "text")
name: str
text: str
position: int
class ParserSyntaxError(Exception):
"""The provided source text could not be parsed correctly."""
def __init__(
self,
message: str,
*,
source: str,
span: tuple[int, int],
) -> None:
self.span = span
self.message = message
self.source = source
super().__init__()
def __str__(self) -> str:
marker = " " * self.span[0] + "~" * (self.span[1] - self.span[0]) + "^"
return f"{self.message}\n {self.source}\n {marker}"
DEFAULT_RULES: dict[str, re.Pattern[str]] = {
"LEFT_PARENTHESIS": re.compile(r"\("),
"RIGHT_PARENTHESIS": re.compile(r"\)"),
"LEFT_BRACKET": re.compile(r"\["),
"RIGHT_BRACKET": re.compile(r"\]"),
"SEMICOLON": re.compile(r";"),
"COMMA": re.compile(r","),
"QUOTED_STRING": re.compile(
r"""
(
('[^']*')
|
("[^"]*")
)
""",
re.VERBOSE,
),
"OP": re.compile(r"(===|==|~=|!=|<=|>=|<|>)"),
"BOOLOP": re.compile(r"\b(or|and)\b"),
"IN": re.compile(r"\bin\b"),
"NOT": re.compile(r"\bnot\b"),
"VARIABLE": re.compile(
r"""
\b(
python_version
|python_full_version
|os[._]name
|sys[._]platform
|platform_(release|system)
|platform[._](version|machine|python_implementation)
|python_implementation
|implementation_(name|version)
|extras?
|dependency_groups
)\b
""",
re.VERBOSE,
),
"SPECIFIER": re.compile(
Specifier._specifier_regex_str,
re.VERBOSE | re.IGNORECASE,
),
"AT": re.compile(r"\@"),
"URL": re.compile(r"[^ \t]+"),
"IDENTIFIER": re.compile(r"\b[a-zA-Z0-9][a-zA-Z0-9._-]*\b"),
"VERSION_PREFIX_TRAIL": re.compile(r"\.\*"),
"VERSION_LOCAL_LABEL_TRAIL": re.compile(r"\+[a-z0-9]+(?:[-_\.][a-z0-9]+)*"),
"WS": re.compile(r"[ \t]+"),
"END": re.compile(r"\Z"),
}
class Tokenizer:
"""Context-sensitive token parsing.
Provides methods to examine the input stream to check whether the next token
matches.
"""
__slots__ = ("next_token", "position", "rules", "source")
def __init__(
self,
source: str,
*,
rules: Mapping[str, re.Pattern[str]],
) -> None:
self.source = source
self.rules = rules
self.next_token: Token | None = None
self.position = 0
def consume(self, name: str) -> None:
"""Move beyond provided token name, if at current position."""
if self.check(name):
self.read()
def check(self, name: str, *, peek: bool = False) -> bool:
"""Check whether the next token has the provided name.
By default, if the check succeeds, the token *must* be read before
another check. If `peek` is set to `True`, the token is not loaded and
would need to be checked again.
"""
assert self.next_token is None, (
f"Cannot check for {name!r}, already have {self.next_token!r}"
)
assert name in self.rules, f"Unknown token name: {name!r}"
expression = self.rules[name]
match = expression.match(self.source, self.position)
if match is None:
return False
if not peek:
self.next_token = Token(name, match[0], self.position)
return True
def expect(self, name: str, *, expected: str) -> Token:
"""Expect a certain token name next, failing with a syntax error otherwise.
The token is read and returned.
"""
if not self.check(name):
raise self.raise_syntax_error(f"Expected {expected}")
return self.read()
def read(self) -> Token:
"""Consume the next token and return it."""
token = self.next_token
assert token is not None
self.position += len(token.text)
self.next_token = None
return token
def raise_syntax_error(
self,
message: str,
*,
span_start: int | None = None,
span_end: int | None = None,
) -> NoReturn:
"""Raise ParserSyntaxError at the given position."""
span = (
self.position if span_start is None else span_start,
self.position if span_end is None else span_end,
)
raise ParserSyntaxError(
message,
source=self.source,
span=span,
)
@contextlib.contextmanager
def enclosing_tokens(
self, open_token: str, close_token: str, *, around: str
) -> Generator[None, None, None]:
if self.check(open_token):
open_position = self.position
self.read()
else:
open_position = None
yield
if open_position is None:
return
if not self.check(close_token):
self.raise_syntax_error(
f"Expected matching {close_token} for {open_token}, after {around}",
span_start=open_position,
)
self.read()