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214 lines
7.8 KiB
Python
214 lines
7.8 KiB
Python
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"""
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Update Emoji.py
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Refeshes OMZ emoji database based on the latest Unicode spec
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"""
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import re
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import json
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spec = open("emoji-data.txt", "r")
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# Regexes
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# regex_emoji will return, respectively:
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# the code points, its type (status), the actual emoji, and its official name
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regex_emoji = r"^([\w ].*?\S)\s*;\s*([\w-]+)\s*#\s*(.*?)\s(\S.*).*$"
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# regex_group returns the group of subgroup that a line opens
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regex_group = r"^#\s*(group|subgroup):\s*(.*)$"
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headers = """
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# emoji-char-definitions.zsh - Emoji definitions for oh-my-zsh emoji plugin
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#
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# This file is auto-generated by update_emoji.py. Do not edit it manually.
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#
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# This contains the definition for:
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# $emoji - which maps character names to Unicode characters
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# $emoji_flags - maps country names to Unicode flag characters using region
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# indicators
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# $emoji_mod - maps modifier components to Unicode characters
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# $emoji_groups - a single associative array to avoid cluttering up the
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# global namespace, and to allow adding additional group
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# definitions at run time. The keys are the group names, and
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# the values are whitespace-separated lists of emoji
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# character names.
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# Main emoji
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typeset -gAH emoji
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# National flags
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typeset -gAH emoji_flags
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# Combining modifiers
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typeset -gAH emoji_mod
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# Emoji groups
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typeset -gAH emoji_groups
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"""
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#######
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# Adding country codes
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#######
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# This is the only part of this script that relies on an external library
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# (country_converter), and is hence commented out by default.
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# You can uncomment it to have country codes added as aliases for flag
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# emojis. (By default, when you install this extension, country codes are
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# included as aliases, but not if you re-run this script without uncommenting.)
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# Warning: country_converter is very verbose, and will print warnings all over
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# your terminal.
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# import country_converter as coco # pylint: disable=wrong-import-position
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# cc = coco.CountryConverter()
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# def country_iso(_all_names, _omz_name):
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# """ Using the external library country_converter,
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# this funciton can detect the ISO2 and ISO3 codes
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# of the country. It takes as argument the array
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# with all the names of the emoji, and returns that array."""
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# omz_no_underscore = re.sub(r'_', r' ', _omz_name)
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# iso2 = cc.convert(names=[omz_no_underscore], to='ISO2')
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# if iso2 != 'not found':
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# _all_names.append(iso2)
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# iso3 = cc.convert(names=[omz_no_underscore], to='ISO3')
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# _all_names.append(iso3)
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# return _all_names
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#######
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# Helper functions
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#######
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def code_to_omz(_code_points):
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""" Returns a ZSH-compatible Unicode string from the code point(s) """
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return r'\U' + r'\U'.join(_code_points.split(' '))
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def name_to_omz(_name, _group, _subgroup, _status):
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""" Returns a reasonable snake_case name for the emoji. """
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def snake_case(_string):
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""" Does the regex work of snake_case """
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remove_dots = re.sub(r'\.\(\)', r'', _string)
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replace_ands = re.sub(r'\&', r'and', remove_dots)
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remove_whitespace = re.sub(r'[^\#\*\w]', r'_', replace_ands)
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return re.sub(r'__', r'_', remove_whitespace)
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shortname = ""
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split_at_colon = lambda s: s.split(": ")
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# Special treatment by group and subgroup
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# If the emoji is a flag, we strip "flag" from its name
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if _group == "Flags" and len(split_at_colon(_name)) > 1:
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shortname = snake_case(split_at_colon(_name)[1])
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else:
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shortname = snake_case(_name)
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# Special treatment by status
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# Enables us to have every emoji combination,
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# even the one that are not officially sanctionned
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# and are implemeted by, say, only one vendor
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if _status == "unqualified":
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shortname += "_unqualified"
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elif _status == "minimally-qualified":
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shortname += "_minimally"
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return shortname
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def increment_name(_shortname):
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""" Increment the short name by 1. If you get, say,
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'woman_detective_unqualified', it returns
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'woman_detective_unqualified_1', and then
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'woman_detective_unqualified_2', etc. """
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last_char = _shortname[-1]
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if last_char.isdigit():
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num = int(last_char)
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return _shortname[:-1] + str(num + 1)
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return _shortname + "_1"
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########
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# Going through every line
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########
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group, subgroup, short_name_buffer = "", "", ""
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emoji_database = []
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for line in spec:
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# First, test if this line opens a group or subgroup
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group_match = re.findall(regex_group, line)
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if group_match != []:
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gr_or_sub, name = group_match[0]
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if gr_or_sub == "group":
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group = name
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elif gr_or_sub == "subgroup":
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subgroup = name
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continue # Moving on...
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# Second, test if this line references one emoji
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emoji_match = re.findall(regex_emoji, line)
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if emoji_match != []:
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code_points, status, emoji, name = emoji_match[0]
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omz_codes = code_to_omz(code_points)
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omz_name = name_to_omz(name, group, subgroup, status)
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# If this emoji has the same shortname as the preceding one
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if omz_name in short_name_buffer:
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omz_name = increment_name(short_name_buffer)
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short_name_buffer = omz_name
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emoji_database.append(
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[omz_codes, status, emoji, omz_name, group, subgroup])
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spec.close()
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########
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# Write to emoji-char-definitions.zsh
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########
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# Aliases for emojis are retrieved through the DB of Gemoji
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# Retrieved on Aug 9 2019 from the following URL:
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# https://raw.githubusercontent.com/github/gemoji/master/db/emoji.json
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gemoji_db = open("gemoji_db.json")
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j = json.load(gemoji_db)
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aliases_map = {entry['emoji']: entry['aliases'] for entry in j}
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all_omz_names = [emoji_data[3] for emoji_data in emoji_database]
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# Let's begin writing to this file
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output = open("emoji-char-definitions.zsh", "w")
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output.write(headers)
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emoji_groups = {"fruits": "\n", "vehicles": "\n", "hands": "\n",
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"people": "\n", "animals": "\n", "faces": "\n",
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"flags": "\n"}
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# First, write every emoji down
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for _omz_codes, _status, _emoji, _omz_name, _group, _subgroup in emoji_database:
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# One emoji can be mapped to multiple names (aliases or country codes)
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names_for_this_emoji = [_omz_name]
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# Variable that indicates in which map the emoji will be located
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emoji_map = "emoji"
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if _status == "component":
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emoji_map = "emoji_mod"
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if _group == "Flags":
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emoji_map = "emoji_flags"
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# Adding country codes (Optional, see above)
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# names_for_this_emoji = country_iso(names_for_this_emoji, _omz_name)
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# Check if there is an alias available in the Gemoji DB
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if _emoji in aliases_map.keys():
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for alias in aliases_map[_emoji]:
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if alias not in all_omz_names:
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names_for_this_emoji.append(alias)
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# And now we write to the definitions file
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for one_name in names_for_this_emoji:
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output.write(f"{emoji_map}[{one_name}]=$'{_omz_codes}'\n")
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# Storing the emoji in defined subgroups for the next step
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if _status == "fully-qualified":
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if _subgroup == "food-fruit":
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emoji_groups["fruits"] += f" {_omz_name}\n"
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elif "transport-" in _subgroup:
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emoji_groups["vehicles"] += f" {_omz_name}\n"
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elif "hand-" in _subgroup:
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emoji_groups["hands"] += f" {_omz_name}\n"
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elif "person-" in _subgroup or _subgroup == "family":
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emoji_groups["people"] += f" {_omz_name}\n"
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elif "animal-" in _subgroup:
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emoji_groups["animals"] += f" {_omz_name}\n"
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elif "face-" in _subgroup:
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emoji_groups["faces"] += f" {_omz_name}\n"
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elif _group == "Flags":
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emoji_groups["flags"] += f" {_omz_name}\n"
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# Second, write the subgroups to the end of the file
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for name, string in emoji_groups.items():
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output.write(f'\nemoji_groups[{name}]="{string}"\n')
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output.close()
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