mirror of https://github.com/python/cpython
288 lines
9.3 KiB
Python
288 lines
9.3 KiB
Python
# Copyright 2000-2010 Michael Hudson-Doyle <micahel@gmail.com>
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# Antonio Cuni
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#
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# All Rights Reserved
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#
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#
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# Permission to use, copy, modify, and distribute this software and
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# its documentation for any purpose is hereby granted without fee,
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# provided that the above copyright notice appear in all copies and
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# that both that copyright notice and this permission notice appear in
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# supporting documentation.
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#
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# THE AUTHOR MICHAEL HUDSON DISCLAIMS ALL WARRANTIES WITH REGARD TO
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# THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
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# AND FITNESS, IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL,
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# INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER
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# RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF
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# CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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# CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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from __future__ import annotations
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from dataclasses import dataclass, field
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import re
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from . import commands, console, reader
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from .reader import Reader
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# types
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Command = commands.Command
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if False:
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from .types import KeySpec, CommandName
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def prefix(wordlist: list[str], j: int = 0) -> str:
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d = {}
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i = j
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try:
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while 1:
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for word in wordlist:
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d[word[i]] = 1
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if len(d) > 1:
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return wordlist[0][j:i]
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i += 1
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d = {}
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except IndexError:
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return wordlist[0][j:i]
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return ""
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STRIPCOLOR_REGEX = re.compile(r"\x1B\[([0-9]{1,3}(;[0-9]{1,2})?)?[m|K]")
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def stripcolor(s: str) -> str:
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return STRIPCOLOR_REGEX.sub('', s)
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def real_len(s: str) -> int:
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return len(stripcolor(s))
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def left_align(s: str, maxlen: int) -> str:
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stripped = stripcolor(s)
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if len(stripped) > maxlen:
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# too bad, we remove the color
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return stripped[:maxlen]
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padding = maxlen - len(stripped)
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return s + ' '*padding
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def build_menu(
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cons: console.Console,
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wordlist: list[str],
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start: int,
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use_brackets: bool,
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sort_in_column: bool,
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) -> tuple[list[str], int]:
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if use_brackets:
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item = "[ %s ]"
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padding = 4
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else:
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item = "%s "
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padding = 2
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maxlen = min(max(map(real_len, wordlist)), cons.width - padding)
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cols = int(cons.width / (maxlen + padding))
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rows = int((len(wordlist) - 1)/cols + 1)
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if sort_in_column:
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# sort_in_column=False (default) sort_in_column=True
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# A B C A D G
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# D E F B E
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# G C F
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#
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# "fill" the table with empty words, so we always have the same amout
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# of rows for each column
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missing = cols*rows - len(wordlist)
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wordlist = wordlist + ['']*missing
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indexes = [(i % cols) * rows + i // cols for i in range(len(wordlist))]
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wordlist = [wordlist[i] for i in indexes]
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menu = []
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i = start
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for r in range(rows):
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row = []
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for col in range(cols):
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row.append(item % left_align(wordlist[i], maxlen))
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i += 1
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if i >= len(wordlist):
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break
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menu.append(''.join(row))
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if i >= len(wordlist):
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i = 0
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break
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if r + 5 > cons.height:
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menu.append(" %d more... " % (len(wordlist) - i))
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break
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return menu, i
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# this gets somewhat user interface-y, and as a result the logic gets
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# very convoluted.
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#
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# To summarise the summary of the summary:- people are a problem.
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# -- The Hitch-Hikers Guide to the Galaxy, Episode 12
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#### Desired behaviour of the completions commands.
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# the considerations are:
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# (1) how many completions are possible
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# (2) whether the last command was a completion
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# (3) if we can assume that the completer is going to return the same set of
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# completions: this is controlled by the ``assume_immutable_completions``
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# variable on the reader, which is True by default to match the historical
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# behaviour of pyrepl, but e.g. False in the ReadlineAlikeReader to match
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# more closely readline's semantics (this is needed e.g. by
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# fancycompleter)
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#
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# if there's no possible completion, beep at the user and point this out.
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# this is easy.
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#
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# if there's only one possible completion, stick it in. if the last thing
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# user did was a completion, point out that he isn't getting anywhere, but
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# only if the ``assume_immutable_completions`` is True.
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#
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# now it gets complicated.
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#
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# for the first press of a completion key:
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# if there's a common prefix, stick it in.
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# irrespective of whether anything got stuck in, if the word is now
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# complete, show the "complete but not unique" message
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# if there's no common prefix and if the word is not now complete,
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# beep.
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# common prefix -> yes no
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# word complete \/
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# yes "cbnu" "cbnu"
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# no - beep
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# for the second bang on the completion key
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# there will necessarily be no common prefix
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# show a menu of the choices.
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# for subsequent bangs, rotate the menu around (if there are sufficient
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# choices).
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class complete(commands.Command):
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def do(self) -> None:
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r: CompletingReader
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r = self.reader # type: ignore[assignment]
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last_is_completer = r.last_command_is(self.__class__)
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immutable_completions = r.assume_immutable_completions
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completions_unchangable = last_is_completer and immutable_completions
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stem = r.get_stem()
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if not completions_unchangable:
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r.cmpltn_menu_choices = r.get_completions(stem)
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completions = r.cmpltn_menu_choices
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if not completions:
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r.error("no matches")
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elif len(completions) == 1:
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if completions_unchangable and len(completions[0]) == len(stem):
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r.msg = "[ sole completion ]"
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r.dirty = True
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r.insert(completions[0][len(stem):])
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else:
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p = prefix(completions, len(stem))
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if p:
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r.insert(p)
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if last_is_completer:
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if not r.cmpltn_menu_visible:
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r.cmpltn_menu_visible = True
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r.cmpltn_menu, r.cmpltn_menu_end = build_menu(
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r.console, completions, r.cmpltn_menu_end,
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r.use_brackets, r.sort_in_column)
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r.dirty = True
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elif stem + p in completions:
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r.msg = "[ complete but not unique ]"
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r.dirty = True
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else:
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r.msg = "[ not unique ]"
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r.dirty = True
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class self_insert(commands.self_insert):
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def do(self) -> None:
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r: CompletingReader
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r = self.reader # type: ignore[assignment]
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commands.self_insert.do(self)
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if r.cmpltn_menu_visible:
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stem = r.get_stem()
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if len(stem) < 1:
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r.cmpltn_reset()
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else:
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completions = [w for w in r.cmpltn_menu_choices
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if w.startswith(stem)]
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if completions:
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r.cmpltn_menu, r.cmpltn_menu_end = build_menu(
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r.console, completions, 0,
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r.use_brackets, r.sort_in_column)
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else:
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r.cmpltn_reset()
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@dataclass
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class CompletingReader(Reader):
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"""Adds completion support"""
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### Class variables
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# see the comment for the complete command
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assume_immutable_completions = True
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use_brackets = True # display completions inside []
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sort_in_column = False
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### Instance variables
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cmpltn_menu: list[str] = field(init=False)
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cmpltn_menu_visible: bool = field(init=False)
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cmpltn_menu_end: int = field(init=False)
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cmpltn_menu_choices: list[str] = field(init=False)
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def __post_init__(self) -> None:
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super().__post_init__()
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self.cmpltn_reset()
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for c in (complete, self_insert):
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self.commands[c.__name__] = c
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self.commands[c.__name__.replace('_', '-')] = c
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def collect_keymap(self) -> tuple[tuple[KeySpec, CommandName], ...]:
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return super().collect_keymap() + (
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(r'\t', 'complete'),)
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def after_command(self, cmd: Command) -> None:
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super().after_command(cmd)
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if not isinstance(cmd, (complete, self_insert)):
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self.cmpltn_reset()
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def calc_complete_screen(self) -> list[str]:
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screen = super().calc_complete_screen()
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if self.cmpltn_menu_visible:
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ly = self.lxy[1]
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screen[ly:ly] = self.cmpltn_menu
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self.screeninfo[ly:ly] = [(0, [])]*len(self.cmpltn_menu)
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self.cxy = self.cxy[0], self.cxy[1] + len(self.cmpltn_menu)
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return screen
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def finish(self) -> None:
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super().finish()
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self.cmpltn_reset()
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def cmpltn_reset(self) -> None:
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self.cmpltn_menu = []
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self.cmpltn_menu_visible = False
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self.cmpltn_menu_end = 0
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self.cmpltn_menu_choices = []
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def get_stem(self) -> str:
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st = self.syntax_table
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SW = reader.SYNTAX_WORD
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b = self.buffer
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p = self.pos - 1
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while p >= 0 and st.get(b[p], SW) == SW:
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p -= 1
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return ''.join(b[p+1:self.pos])
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def get_completions(self, stem: str) -> list[str]:
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return []
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