forked from varia/varia.website
457 lines
18 KiB
Python
457 lines
18 KiB
Python
# -*- coding: utf-8 -*-
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"""
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pygments.lexers.theorem
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~~~~~~~~~~~~~~~~~~~~~~~
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Lexers for theorem-proving languages.
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:copyright: Copyright 2006-2019 by the Pygments team, see AUTHORS.
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:license: BSD, see LICENSE for details.
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"""
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import re
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from pygments.lexer import RegexLexer, default, words
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from pygments.token import Text, Comment, Operator, Keyword, Name, String, \
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Number, Punctuation, Generic
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__all__ = ['CoqLexer', 'IsabelleLexer', 'LeanLexer']
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class CoqLexer(RegexLexer):
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"""
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For the `Coq <http://coq.inria.fr/>`_ theorem prover.
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.. versionadded:: 1.5
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"""
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name = 'Coq'
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aliases = ['coq']
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filenames = ['*.v']
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mimetypes = ['text/x-coq']
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keywords1 = (
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# Vernacular commands
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'Section', 'Module', 'End', 'Require', 'Import', 'Export', 'Variable',
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'Variables', 'Parameter', 'Parameters', 'Axiom', 'Hypothesis',
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'Hypotheses', 'Notation', 'Local', 'Tactic', 'Reserved', 'Scope',
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'Open', 'Close', 'Bind', 'Delimit', 'Definition', 'Let', 'Ltac',
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'Fixpoint', 'CoFixpoint', 'Morphism', 'Relation', 'Implicit',
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'Arguments', 'Set', 'Unset', 'Contextual', 'Strict', 'Prenex',
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'Implicits', 'Inductive', 'CoInductive', 'Record', 'Structure',
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'Canonical', 'Coercion', 'Theorem', 'Lemma', 'Corollary',
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'Proposition', 'Fact', 'Remark', 'Example', 'Proof', 'Goal', 'Save',
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'Qed', 'Defined', 'Hint', 'Resolve', 'Rewrite', 'View', 'Search',
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'Show', 'Print', 'Printing', 'All', 'Graph', 'Projections', 'inside',
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'outside', 'Check', 'Global', 'Instance', 'Class', 'Existing',
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'Universe', 'Polymorphic', 'Monomorphic', 'Context'
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)
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keywords2 = (
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# Gallina
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'forall', 'exists', 'exists2', 'fun', 'fix', 'cofix', 'struct',
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'match', 'end', 'in', 'return', 'let', 'if', 'is', 'then', 'else',
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'for', 'of', 'nosimpl', 'with', 'as',
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)
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keywords3 = (
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# Sorts
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'Type', 'Prop',
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)
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keywords4 = (
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# Tactics
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'pose', 'set', 'move', 'case', 'elim', 'apply', 'clear', 'hnf', 'intro',
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'intros', 'generalize', 'rename', 'pattern', 'after', 'destruct',
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'induction', 'using', 'refine', 'inversion', 'injection', 'rewrite',
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'congr', 'unlock', 'compute', 'ring', 'field', 'replace', 'fold',
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'unfold', 'change', 'cutrewrite', 'simpl', 'have', 'suff', 'wlog',
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'suffices', 'without', 'loss', 'nat_norm', 'assert', 'cut', 'trivial',
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'revert', 'bool_congr', 'nat_congr', 'symmetry', 'transitivity', 'auto',
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'split', 'left', 'right', 'autorewrite', 'tauto', 'setoid_rewrite',
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'intuition', 'eauto', 'eapply', 'econstructor', 'etransitivity',
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'constructor', 'erewrite', 'red', 'cbv', 'lazy', 'vm_compute',
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'native_compute', 'subst',
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)
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keywords5 = (
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# Terminators
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'by', 'done', 'exact', 'reflexivity', 'tauto', 'romega', 'omega',
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'assumption', 'solve', 'contradiction', 'discriminate',
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'congruence',
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)
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keywords6 = (
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# Control
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'do', 'last', 'first', 'try', 'idtac', 'repeat',
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)
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# 'as', 'assert', 'begin', 'class', 'constraint', 'do', 'done',
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# 'downto', 'else', 'end', 'exception', 'external', 'false',
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# 'for', 'fun', 'function', 'functor', 'if', 'in', 'include',
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# 'inherit', 'initializer', 'lazy', 'let', 'match', 'method',
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# 'module', 'mutable', 'new', 'object', 'of', 'open', 'private',
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# 'raise', 'rec', 'sig', 'struct', 'then', 'to', 'true', 'try',
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# 'type', 'val', 'virtual', 'when', 'while', 'with'
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keyopts = (
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'!=', '#', '&', '&&', r'\(', r'\)', r'\*', r'\+', ',', '-', r'-\.',
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'->', r'\.', r'\.\.', ':', '::', ':=', ':>', ';', ';;', '<', '<-',
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'<->', '=', '>', '>]', r'>\}', r'\?', r'\?\?', r'\[', r'\[<', r'\[>',
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r'\[\|', ']', '_', '`', r'\{', r'\{<', r'\|', r'\|]', r'\}', '~', '=>',
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r'/\\', r'\\/', r'\{\|', r'\|\}',
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u'Π', u'λ',
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)
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operators = r'[!$%&*+\./:<=>?@^|~-]'
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prefix_syms = r'[!?~]'
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infix_syms = r'[=<>@^|&+\*/$%-]'
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tokens = {
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'root': [
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(r'\s+', Text),
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(r'false|true|\(\)|\[\]', Name.Builtin.Pseudo),
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(r'\(\*', Comment, 'comment'),
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(words(keywords1, prefix=r'\b', suffix=r'\b'), Keyword.Namespace),
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(words(keywords2, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keywords3, prefix=r'\b', suffix=r'\b'), Keyword.Type),
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(words(keywords4, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keywords5, prefix=r'\b', suffix=r'\b'), Keyword.Pseudo),
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(words(keywords6, prefix=r'\b', suffix=r'\b'), Keyword.Reserved),
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# (r'\b([A-Z][\w\']*)(\.)', Name.Namespace, 'dotted'),
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(r'\b([A-Z][\w\']*)', Name),
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(r'(%s)' % '|'.join(keyopts[::-1]), Operator),
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(r'(%s|%s)?%s' % (infix_syms, prefix_syms, operators), Operator),
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(r"[^\W\d][\w']*", Name),
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(r'\d[\d_]*', Number.Integer),
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(r'0[xX][\da-fA-F][\da-fA-F_]*', Number.Hex),
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(r'0[oO][0-7][0-7_]*', Number.Oct),
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(r'0[bB][01][01_]*', Number.Bin),
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(r'-?\d[\d_]*(.[\d_]*)?([eE][+\-]?\d[\d_]*)', Number.Float),
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(r"'(?:(\\[\\\"'ntbr ])|(\\[0-9]{3})|(\\x[0-9a-fA-F]{2}))'",
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String.Char),
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(r"'.'", String.Char),
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(r"'", Keyword), # a stray quote is another syntax element
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(r'"', String.Double, 'string'),
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(r'[~?][a-z][\w\']*:', Name),
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],
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'comment': [
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(r'[^(*)]+', Comment),
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(r'\(\*', Comment, '#push'),
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(r'\*\)', Comment, '#pop'),
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(r'[(*)]', Comment),
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],
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'string': [
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(r'[^"]+', String.Double),
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(r'""', String.Double),
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(r'"', String.Double, '#pop'),
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],
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'dotted': [
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(r'\s+', Text),
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(r'\.', Punctuation),
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(r'[A-Z][\w\']*(?=\s*\.)', Name.Namespace),
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(r'[A-Z][\w\']*', Name.Class, '#pop'),
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(r'[a-z][a-z0-9_\']*', Name, '#pop'),
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default('#pop')
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],
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}
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def analyse_text(text):
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if text.startswith('(*'):
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return True
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class IsabelleLexer(RegexLexer):
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"""
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For the `Isabelle <http://isabelle.in.tum.de/>`_ proof assistant.
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.. versionadded:: 2.0
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"""
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name = 'Isabelle'
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aliases = ['isabelle']
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filenames = ['*.thy']
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mimetypes = ['text/x-isabelle']
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keyword_minor = (
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'and', 'assumes', 'attach', 'avoids', 'binder', 'checking',
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'class_instance', 'class_relation', 'code_module', 'congs',
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'constant', 'constrains', 'datatypes', 'defines', 'file', 'fixes',
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'for', 'functions', 'hints', 'identifier', 'if', 'imports', 'in',
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'includes', 'infix', 'infixl', 'infixr', 'is', 'keywords', 'lazy',
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'module_name', 'monos', 'morphisms', 'no_discs_sels', 'notes',
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'obtains', 'open', 'output', 'overloaded', 'parametric', 'permissive',
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'pervasive', 'rep_compat', 'shows', 'structure', 'type_class',
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'type_constructor', 'unchecked', 'unsafe', 'where',
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)
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keyword_diag = (
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'ML_command', 'ML_val', 'class_deps', 'code_deps', 'code_thms',
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'display_drafts', 'find_consts', 'find_theorems', 'find_unused_assms',
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'full_prf', 'help', 'locale_deps', 'nitpick', 'pr', 'prf',
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'print_abbrevs', 'print_antiquotations', 'print_attributes',
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'print_binds', 'print_bnfs', 'print_bundles',
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'print_case_translations', 'print_cases', 'print_claset',
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'print_classes', 'print_codeproc', 'print_codesetup',
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'print_coercions', 'print_commands', 'print_context',
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'print_defn_rules', 'print_dependencies', 'print_facts',
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'print_induct_rules', 'print_inductives', 'print_interps',
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'print_locale', 'print_locales', 'print_methods', 'print_options',
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'print_orders', 'print_quot_maps', 'print_quotconsts',
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'print_quotients', 'print_quotientsQ3', 'print_quotmapsQ3',
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'print_rules', 'print_simpset', 'print_state', 'print_statement',
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'print_syntax', 'print_theorems', 'print_theory', 'print_trans_rules',
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'prop', 'pwd', 'quickcheck', 'refute', 'sledgehammer', 'smt_status',
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'solve_direct', 'spark_status', 'term', 'thm', 'thm_deps', 'thy_deps',
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'try', 'try0', 'typ', 'unused_thms', 'value', 'values', 'welcome',
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'print_ML_antiquotations', 'print_term_bindings', 'values_prolog',
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)
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keyword_thy = ('theory', 'begin', 'end')
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keyword_section = ('header', 'chapter')
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keyword_subsection = (
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'section', 'subsection', 'subsubsection', 'sect', 'subsect',
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'subsubsect',
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)
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keyword_theory_decl = (
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'ML', 'ML_file', 'abbreviation', 'adhoc_overloading', 'arities',
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'atom_decl', 'attribute_setup', 'axiomatization', 'bundle',
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'case_of_simps', 'class', 'classes', 'classrel', 'codatatype',
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'code_abort', 'code_class', 'code_const', 'code_datatype',
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'code_identifier', 'code_include', 'code_instance', 'code_modulename',
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'code_monad', 'code_printing', 'code_reflect', 'code_reserved',
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'code_type', 'coinductive', 'coinductive_set', 'consts', 'context',
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'datatype', 'datatype_new', 'datatype_new_compat', 'declaration',
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'declare', 'default_sort', 'defer_recdef', 'definition', 'defs',
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'domain', 'domain_isomorphism', 'domaindef', 'equivariance',
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'export_code', 'extract', 'extract_type', 'fixrec', 'fun',
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'fun_cases', 'hide_class', 'hide_const', 'hide_fact', 'hide_type',
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'import_const_map', 'import_file', 'import_tptp', 'import_type_map',
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'inductive', 'inductive_set', 'instantiation', 'judgment', 'lemmas',
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'lifting_forget', 'lifting_update', 'local_setup', 'locale',
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'method_setup', 'nitpick_params', 'no_adhoc_overloading',
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'no_notation', 'no_syntax', 'no_translations', 'no_type_notation',
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'nominal_datatype', 'nonterminal', 'notation', 'notepad', 'oracle',
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'overloading', 'parse_ast_translation', 'parse_translation',
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'partial_function', 'primcorec', 'primrec', 'primrec_new',
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'print_ast_translation', 'print_translation', 'quickcheck_generator',
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'quickcheck_params', 'realizability', 'realizers', 'recdef', 'record',
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'refute_params', 'setup', 'setup_lifting', 'simproc_setup',
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'simps_of_case', 'sledgehammer_params', 'spark_end', 'spark_open',
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'spark_open_siv', 'spark_open_vcg', 'spark_proof_functions',
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'spark_types', 'statespace', 'syntax', 'syntax_declaration', 'text',
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'text_raw', 'theorems', 'translations', 'type_notation',
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'type_synonym', 'typed_print_translation', 'typedecl', 'hoarestate',
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'install_C_file', 'install_C_types', 'wpc_setup', 'c_defs', 'c_types',
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'memsafe', 'SML_export', 'SML_file', 'SML_import', 'approximate',
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'bnf_axiomatization', 'cartouche', 'datatype_compat',
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'free_constructors', 'functor', 'nominal_function',
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'nominal_termination', 'permanent_interpretation',
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'binds', 'defining', 'smt2_status', 'term_cartouche',
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'boogie_file', 'text_cartouche',
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)
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keyword_theory_script = ('inductive_cases', 'inductive_simps')
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keyword_theory_goal = (
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'ax_specification', 'bnf', 'code_pred', 'corollary', 'cpodef',
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'crunch', 'crunch_ignore',
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'enriched_type', 'function', 'instance', 'interpretation', 'lemma',
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'lift_definition', 'nominal_inductive', 'nominal_inductive2',
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'nominal_primrec', 'pcpodef', 'primcorecursive',
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'quotient_definition', 'quotient_type', 'recdef_tc', 'rep_datatype',
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'schematic_corollary', 'schematic_lemma', 'schematic_theorem',
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'spark_vc', 'specification', 'subclass', 'sublocale', 'termination',
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'theorem', 'typedef', 'wrap_free_constructors',
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)
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keyword_qed = ('by', 'done', 'qed')
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keyword_abandon_proof = ('sorry', 'oops')
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keyword_proof_goal = ('have', 'hence', 'interpret')
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keyword_proof_block = ('next', 'proof')
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keyword_proof_chain = (
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'finally', 'from', 'then', 'ultimately', 'with',
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)
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keyword_proof_decl = (
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'ML_prf', 'also', 'include', 'including', 'let', 'moreover', 'note',
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'txt', 'txt_raw', 'unfolding', 'using', 'write',
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)
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keyword_proof_asm = ('assume', 'case', 'def', 'fix', 'presume')
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keyword_proof_asm_goal = ('guess', 'obtain', 'show', 'thus')
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keyword_proof_script = (
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'apply', 'apply_end', 'apply_trace', 'back', 'defer', 'prefer',
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)
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operators = (
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'::', ':', '(', ')', '[', ']', '_', '=', ',', '|',
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'+', '-', '!', '?',
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)
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proof_operators = ('{', '}', '.', '..')
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tokens = {
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'root': [
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(r'\s+', Text),
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(r'\(\*', Comment, 'comment'),
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(r'\{\*', Comment, 'text'),
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(words(operators), Operator),
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(words(proof_operators), Operator.Word),
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(words(keyword_minor, prefix=r'\b', suffix=r'\b'), Keyword.Pseudo),
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(words(keyword_diag, prefix=r'\b', suffix=r'\b'), Keyword.Type),
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(words(keyword_thy, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_theory_decl, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_section, prefix=r'\b', suffix=r'\b'), Generic.Heading),
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(words(keyword_subsection, prefix=r'\b', suffix=r'\b'), Generic.Subheading),
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(words(keyword_theory_goal, prefix=r'\b', suffix=r'\b'), Keyword.Namespace),
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(words(keyword_theory_script, prefix=r'\b', suffix=r'\b'), Keyword.Namespace),
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(words(keyword_abandon_proof, prefix=r'\b', suffix=r'\b'), Generic.Error),
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(words(keyword_qed, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_proof_goal, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_proof_block, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_proof_decl, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_proof_chain, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_proof_asm, prefix=r'\b', suffix=r'\b'), Keyword),
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(words(keyword_proof_asm_goal, prefix=r'\b', suffix=r'\b'), Keyword),
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||
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(words(keyword_proof_script, prefix=r'\b', suffix=r'\b'), Keyword.Pseudo),
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(r'\\<\w*>', Text.Symbol),
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(r"[^\W\d][.\w']*", Name),
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(r"\?[^\W\d][.\w']*", Name),
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(r"'[^\W\d][.\w']*", Name.Type),
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||
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(r'\d[\d_]*', Name), # display numbers as name
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||
(r'0[xX][\da-fA-F][\da-fA-F_]*', Number.Hex),
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(r'0[oO][0-7][0-7_]*', Number.Oct),
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||
(r'0[bB][01][01_]*', Number.Bin),
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||
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(r'"', String, 'string'),
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(r'`', String.Other, 'fact'),
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],
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||
'comment': [
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(r'[^(*)]+', Comment),
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(r'\(\*', Comment, '#push'),
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(r'\*\)', Comment, '#pop'),
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(r'[(*)]', Comment),
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],
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'text': [
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(r'[^*}]+', Comment),
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(r'\*\}', Comment, '#pop'),
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||
(r'\*', Comment),
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(r'\}', Comment),
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||
],
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'string': [
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(r'[^"\\]+', String),
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(r'\\<\w*>', String.Symbol),
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(r'\\"', String),
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(r'\\', String),
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(r'"', String, '#pop'),
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],
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'fact': [
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(r'[^`\\]+', String.Other),
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(r'\\<\w*>', String.Symbol),
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(r'\\`', String.Other),
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(r'\\', String.Other),
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(r'`', String.Other, '#pop'),
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],
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}
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class LeanLexer(RegexLexer):
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"""
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For the `Lean <https://github.com/leanprover/lean>`_
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theorem prover.
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.. versionadded:: 2.0
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"""
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name = 'Lean'
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aliases = ['lean']
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filenames = ['*.lean']
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mimetypes = ['text/x-lean']
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flags = re.MULTILINE | re.UNICODE
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keywords1 = (
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'import', 'abbreviation', 'opaque_hint', 'tactic_hint', 'definition',
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'renaming', 'inline', 'hiding', 'exposing', 'parameter', 'parameters',
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'conjecture', 'hypothesis', 'lemma', 'corollary', 'variable', 'variables',
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'theorem', 'axiom', 'inductive', 'structure', 'universe', 'alias',
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'help', 'options', 'precedence', 'postfix', 'prefix', 'calc_trans',
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'calc_subst', 'calc_refl', 'infix', 'infixl', 'infixr', 'notation', 'eval',
|
||
'check', 'exit', 'coercion', 'end', 'private', 'using', 'namespace',
|
||
'including', 'instance', 'section', 'context', 'protected', 'expose',
|
||
'export', 'set_option', 'add_rewrite', 'extends', 'open', 'example',
|
||
'constant', 'constants', 'print', 'opaque', 'reducible', 'irreducible',
|
||
)
|
||
|
||
keywords2 = (
|
||
'forall', 'fun', 'Pi', 'obtain', 'from', 'have', 'show', 'assume',
|
||
'take', 'let', 'if', 'else', 'then', 'by', 'in', 'with', 'begin',
|
||
'proof', 'qed', 'calc', 'match',
|
||
)
|
||
|
||
keywords3 = (
|
||
# Sorts
|
||
'Type', 'Prop',
|
||
)
|
||
|
||
operators = (
|
||
u'!=', u'#', u'&', u'&&', u'*', u'+', u'-', u'/', u'@', u'!', u'`',
|
||
u'-.', u'->', u'.', u'..', u'...', u'::', u':>', u';', u';;', u'<',
|
||
u'<-', u'=', u'==', u'>', u'_', u'|', u'||', u'~', u'=>', u'<=', u'>=',
|
||
u'/\\', u'\\/', u'∀', u'Π', u'λ', u'↔', u'∧', u'∨', u'≠', u'≤', u'≥',
|
||
u'¬', u'⁻¹', u'⬝', u'▸', u'→', u'∃', u'ℕ', u'ℤ', u'≈', u'×', u'⌞',
|
||
u'⌟', u'≡', u'⟨', u'⟩', u'^',
|
||
)
|
||
|
||
punctuation = (u'(', u')', u':', u'{', u'}', u'[', u']', u'⦃', u'⦄',
|
||
u':=', u',')
|
||
|
||
tokens = {
|
||
'root': [
|
||
(r'\s+', Text),
|
||
(r'/-', Comment, 'comment'),
|
||
(r'--.*?$', Comment.Single),
|
||
(words(keywords1, prefix=r'\b', suffix=r'\b'), Keyword.Namespace),
|
||
(words(keywords2, prefix=r'\b', suffix=r'\b'), Keyword),
|
||
(words(keywords3, prefix=r'\b', suffix=r'\b'), Keyword.Type),
|
||
(words(operators), Name.Builtin.Pseudo),
|
||
(words(punctuation), Operator),
|
||
(u"[A-Za-z_\u03b1-\u03ba\u03bc-\u03fb\u1f00-\u1ffe\u2100-\u214f]"
|
||
u"[A-Za-z_'\u03b1-\u03ba\u03bc-\u03fb\u1f00-\u1ffe\u2070-\u2079"
|
||
u"\u207f-\u2089\u2090-\u209c\u2100-\u214f0-9]*", Name),
|
||
(r'\d+', Number.Integer),
|
||
(r'"', String.Double, 'string'),
|
||
(r'[~?][a-z][\w\']*:', Name.Variable)
|
||
],
|
||
'comment': [
|
||
# Multiline Comments
|
||
(r'[^/-]', Comment.Multiline),
|
||
(r'/-', Comment.Multiline, '#push'),
|
||
(r'-/', Comment.Multiline, '#pop'),
|
||
(r'[/-]', Comment.Multiline)
|
||
],
|
||
'string': [
|
||
(r'[^\\"]+', String.Double),
|
||
(r'\\[n"\\]', String.Escape),
|
||
('"', String.Double, '#pop'),
|
||
],
|
||
}
|