.q@ E      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~                                  ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s t u v w x y z { | } ~                                                                                                                                                                   ! 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N@ O@ P@ Q@ R@ S@ T@ U@ V@ W@ X@ Y@ Z@ [@ \@ ]@ ^@ _@ `@ a@ b@ c@ d@ e@ f@ g@ h@ iA jA kA lA mB nB oB pB qB rB sC tD uE vF wG xG yH zI {I |I }I ~I I I J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J J K K L M M M M M M M M M N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N N O O O O O O O O O P P P Q Q Q Q Q Q Q !Q "Q #Q $Q %Q &Q 'Q (Q )Q *Q +Q ,Q -Q .Q /Q 0Q 1Q 2Q 3Q 4Q 5Q 6Q 7Q 8Q 9Q :Q ;Q <Q =Q >Q ?Q @Q AQ BQ CQ DQ EQ FQ GQ HQ IQ JQ KQ LQ MQ NQ OQ PQ QQ RQ SQ TQ UQ VQ WQ XQ YQ ZQ [Q \Q ]Q ^Q _Q `Q aQ bQ cQ dQ eQ fQ gQ hQ iQ jQ kQ lQ mQ nQ oQ pQ qQ rQ sQ tQ uQ vQ wQ xQ yQ zQ {Q |Q }Q ~Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q Q R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R S S S S S S S S T T T T T T T U U U U U U U U U U V W W W W W W W W X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X X !X "X #X $X %X &X 'X (X )X *X +X ,X -X .Y /Y 0Y 1Y 2Y 3Y 4Y 5Z 6Z 7Z 8Z 9Z :Z ;Z <Z =Z >Z ?Z @Z AZ BZ CZ DZbNone ./23468FT  !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSS  !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRT6=<;:98715432-0/.(,+*)&'S%$#"!  >?@ABCDEFGHIJKLMNOPQR!%$#"!  &'(,+*)-0/.154326=<;:987>?@ABCDEFGHIJKLMNOPQRSNone./23468 E F G H IT JTT E F G H IT J[None./23468 K L K L K L\None./23468 M M M]None./23468 NU O P Q R S T UV V WWU T UV V WW NU O P Q R S T UV V WW^None./23468 X X XNone./23468Y(One kind of argument followed by anotherZ#Zero or one of one kind of argument[$Zero or more of one kind of argument\5An Idris declaration, as might be contained in a file]The width of the console^ do not use_No completion (yet!?)`)The command is the colour-setting commanda The command takes a metavariablebThe command takes an optionc"The command takes a namespace namedThe command takes a module nameeThe command takes a filefThe command takes a namegThe command takes an expressioni6Use these for completion, but don't show them in :helpXYZ[\]^_`abcdefghi YXYZ[\]^_`abcdefghiXgfedcba`_^]\[ZYhiXgfedcba`_^]\[ZYhi YNone ./23468jjjjNone./23468$Idris's default console colour theme3Set the colour of a string using POSIX escape codes&klmnopqrstuvwxyz{|}~ Z%klmnopqrstuvwxyz{|}~%~tuvwxyz{|}ksrqponmlksrqponmlt uvwxyz{|}~ ZNone -./23468 [ \ ] ^ _ [ \ ] ^ __None./23468 ` a b c d ` b c d ` a b c dNone ./23468 e f g h i UVW WVU e f g h iNone ./23468:M `None./23468 j k l m n o p\ q r s t u v w x y z { | } ~  j k l m n j k l m n o p None -./23468S&an environment with de Bruijn indices  normalised, so that they all refer to this environmentTerms in the core language. The type parameter is the type of identifiers used for bindings and explicit named references; usually we use TT ..Uniqueness type universe (disjoint from TType)the type of types at some level"special case for totality checkingan erased termTargument projection; runtime only (-1) is a special case for 'subtract one from BI'constantfunction, function type, arg a binding%a resolved de Bruijn-indexed variable#named references with type (P for  ParameterC, motivated by McKinna and Pollack's Pure Type Systems Formalized)Type constructorData constructorUniverse constraintsLess than or equal toStrictly less than*Universe expressions for universe checkingexplicit universe leveluniverse variableAll binding forms are represented in a uniform fashion. This type only represents the types of bindings (and their values, if any); the attached identifiers are part of the  constructor for the  type.A pattern variableA binding that occurs in a let expressionvalue for bound variable:A binding that occurs in a function type expression, e.g. (x:Int) -> ... "type annotation for bound variable }Contexts allow us to map names to things. A root name maps to a collection of things in different namespaces with that name.xNames are hierarchies of strings, describing scope (so no danger of duplicate names, but need to be careful on lookup).>Reference to IBC file symbol table (used during serialisation)Decorated function names.Name of something which is never used in scopeMachine chosen namesRoot, namespacesUser-provided nameeIdris errors. Used as exceptions in the compiler, but reported to users if they reach the top level.AUsed for error reflectionF&Output annotations for pretty-printingG pprint bound vars, original termKname, doc overviewLtype, doc overviewN%^ The name and whether it is implicitOB^ The name, classification, docs overview, and pretty-printed typePText formatting outputT:Output annotation for pretty-printed name - decides colourZFC with equality]<Source location. These are typically produced by the parser Ra_Filename`:Line and column numbers for the start of the location spana8Line and column numbers for the end of the location spaneEmpty source locationfSource location with file only{Return True if the argument 3 should be interpreted as the name of a typeclass.xLook up a name in the context, given an optional namespace. The name (n) may itself have a (partial) namespace given.Rules for resolution:jif an explicit namespace is given, return the names which match it. If none match, return all names.oif the name has has explicit namespace given, return the names which match it and ignore the given namespace.otherwise, return all names.7Determines whether the input constant represents a typeGet the docstring for a ConstA term is injective iff it is a data constructor, type constructor, constant, the type Type, pi-binding, or an application of an injective term.<Count the number of instances of a de Bruijn index in a termFReplace the outermost (index 0) de Bruijn variable with the given termAs , but also decrement the indices of all de Bruijn variables remaining in the term, so that there are no more references to the variable that has been substituted.jReplace all non-free de Bruijn references in the given term with references to the name of their binding. Replace references to the given /-like id with references to de Bruijn index 0.9Convert several names. First in the list comes out as V 0Replace de Bruijn indices in the given term with explicit references to the names of the bindings they refer to. It is an error if the given term contains free de Bruijn indices.dReplace every non-free reference to the name of a binding in the given term with a de Bruijn index.As , but in addition to replacing  0#, replace references to the given  -like id.As [, but takes a list of (name, substitution) pairs instead of a single name and substitution*Replaces all terms equal (in the sense of (==)%) to the old term with the new term.<Return number of occurrences of V 0 or bound name i the term=Returns true if V 0 and bound name n do not occur in the term'Returns all names used free in the term'Return the arity of a (normalised) typeHDeconstruct an application; returns the function and a list of argumentsxReturns a term representing the application of the first argument (a function) to every element of the second argument.Cast a  term to a  value, discarding universe information and the types of named references and replacing all de Bruijn indices with the corresponding name. It is an error if there are free de Bruijn indices. Introduce a Q into the given term for each element of the given list of (name, binder) pairs.Like  , but the s are 9 terms instead. The first argument is a function to map TT terms to Binder0s. This function might often be something like , which directly constructs a Binder from a TT term.5Return a list of pairs of the names of the outermost ?-bound variables in the given term, together with their types.7Check whether a term has any holes in it - impure if soPWeaken a term by adding i to each de Bruijn index (i.e. lift it over i bindings)kWeaken an environment so that all the de Bruijn indices are correct according to the latest bound variable8Weaken every term in the environment by the given amountGather up all the outer s and =s in an expression and reintroduce them in a canonical orderHIgnore source location equality (so deriving classes do not compare FCs)=      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~The id to replace The replacement term The term to replace in  Old term  New term template term       !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~Ibdc]^_`aZ[\efTYXWVUPSRQFONMLKJIHGAEDCB@?>=<;:9876543210/.-,+*)('&%$#"! ghijklmnopqrstu  vwx yz{|}~        "@?>=<;:9876543210/.-,+*)('&%$#"! AEDCBF ONMLKJIHGPSRQTYXWVUZ[\]^_`abdcefghijklmnopqrstuvwxyz{|}~ None -./23468Freflection function already checked to be impossible error message<special case for projections/thunk-forcing before inspectioninvariant: lowest tags firstQ      ?Convert single branches to projections (only useful at runtime)   4           None./23468           None ./23468F vContexts used for global definitions and for proof state. They contain universe constraints and existing definitions.CMeta information for a data declaration with position of parametersNo meta-information'Reasons why a function may not be totalThe result of totality checking  productive!well-founded arguments05A definition is either a simple function (just an expression with a type), a constant, which could be a data or type constructor, an axiom or as an yet undefined function, or an Operator. An Operator is a function which explains how to reduce. A CaseOp is a function defined by a simple case tree 7A HOAS representation of valuesEONormalise fully type checked terms (so, assume all names/let bindings resolved)JLike normalise, but we only reduce functions that are marked as okay to inline (and probably shouldn't reduce lets?) 20130908: now only used to reduce for totality checking. Inlining should be done elsewhere.K+Simplify for run-time (i.e. basic inlining)L!Reduce a term to head normal form Evaluate in a context of locally named things (i.e. not de Bruijn indexed, such as we might have during construction of a proof)PThe initial empty contextR"Get the definitions from a context^SGet the list of pairs of fully-qualified names and their types that match some name_nGet the pair of a fully-qualified name and its type, if there is a unique one matching the name used as a key.`"Get the types that match some namea4Get the single type that matches some name preciselyp;Create a unique name given context and other existing names   !"#$%&'()*+,-./0123456789:;<=>?@ABC     DEFGHIJKL    M NO PQR STUVWXYZ[\ ]^_`abcdefghijklmnopq      f   !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqiGHEFKJILON04321&'()*+,-./"%$#!   PR STUVWXYZ[\]^_`afhigjnQkmlodcbe7CBA@?>=<;:9856DpqML    ! "%$#&'()*+,-./04321567 CBA@?>=<;:98      DEFGHIJKL    M NO PQR STUVWXYZ[\ ]^_`abcdefghijklmnopq       None -./23468Frstuvwxyz{|}~rstuvwxyz{|}~wxyz{|}~rvuts rvutswxyz{|}~None./23468;Check that a list of universe constraints can be satisfied.      None ./23468F*        ! " # $ % & ' ( ) * + , - . / 0 1 2       # " !  $ ) ( ' & % * + , - . / 0 1 2None ./23468F 3PSmart constructor for unification errors that takes into account the FailContext 4 5 6 7 8 9 : 3 ; < = > ? @ A B C D E F   4 7 6 5 8 9 : 3 ; < = > ? @ A B C D E FNone ./23468F G H I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s t u v w x y z { | } ~  MMG G H) I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s t u v w x y z { | } ~  None ./23468FModify the auxiliary stateGet the auxiliary state#Set whether to show the unifier log4Process a tactic within the current elaborator state7WTurn the current hole into a pattern variable with the provided name, made unique if MN;Set the zipper in the proof state to point at the current sub term (This currently happens automatically, so this will have no effect...)FKPrepare to apply a function by creating holes to be filled by the argumentsq      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFThe operation being appliedWhether arguments are implicitWThe names of the arguments and their holes to be filled with elaborated argument valuesGHIJKLMNOPQRSTUVW      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWq      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWk      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWNone -./23468FXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~XYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~v~}|{zyxwrutsoqpfnmlkjihgbedca^`_]Z\[XYXYZ\[]^`_abedcfnmlkjihgoqprutsvK~}|{zyxwNone./23468.Representation of Idris's inline documentationGConstruct a docstring from a Text that contains Markdown-formatted docs5Convert a docstring to be shown by the pretty-printersConstruct a docstring consisting of the first block-level element of the argument docstring, for use in summaries.The empty docstring"Check whether a docstring is emtpy$Empty documentation for a definition%Does a string occur in the docstring?    None./23468     None ./23468F*     XYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~     *           None./23468 !"#$%&'()* +  !"#$%&'()*++*)('&%$#"!   *)('&%$#"!  + None./23468,-./0123456789:;<=>?@ABCDEF,-./0123456789:;<=>?@ABCDEFBEDC=A@?>F-./0123456789:;<,,-./0123456789:;<=A@?>BEDCFNone -./23468Fk{)Miscellaneous information about functions.possible solutions to a metavariable in a type(a function with a partially defined type)the bool is whether to search recursivelyHigh level language terms,Term`(Term [: Term]))never run implicit converions on the term/dump a trace of unifications when building term#Preferences for explicit namespaces5To mark a coerced argument, so as not to coerce twice6Special case for declaring when an LHS can't typecheckError to report on elaborationAs PProof, but no auto solving Proof script Builtin typesSome universe  typeIrrelevant or hidden pattern"Heterogeneous equality type: A = B_|_ Unit type..?$Make an application by type matchingimplicitly bound applicatione.g. IO (), List Char, length xTerm with explicit type(n : t1) -> t2A name to be defined laterData declaration Placeholder. for data whose constructors are defined laterData declarationThe name of the datatypeType constructor ConstructorsIOne clause of a top-level definition. Term arguments to constructors are: ^The whole application (missing for PClauseR and PWithR because they're within a "with" clause)The list of extra with patternsThe right-hand sideThe where block (PDecl' t)A normal top-level definition.\Top-level declarations such as compiler directives, definitions, datatypes and typeclasses.WSource-to-source transformation rule. If bool is True, lhs and rhs must be convertible>Type provider. The first t is the type, the second is the termSCompiler directive. The parser inserts the corresponding action in the Idris monad. Mutual block Syntax definition DSL declaration Instance declaration: arguments are syntax info, source location, constraints, class name, parameters, full instance type, optional explicit name, and definitions Type class: arguments are documentation, syntax info, source location, constraints, class name, parameters, method declarations Record declaration New namespace Params blockData declaration.Top level constantPattern clause PostulateType declarationFixity declarationType provider - what to provide$goal type must be Type, so only term2the first is the goal type, the second is the termData declaration options8Set if a case function should be generated for data type6Set if an eliminator should be generated for data type'Set if the the data-type is coinductive%6^ attempt to reverse normalise before showing in error&=^ an error handler for use with the ErrorReflection extensionF8Automatically issue "solve" tactic in interactive proverG#Automatically adjust terminal widthy REPL commandsjthe first bool is whether to update, the second is whether to search recursively (i.e. for the arguments)Each V should be either a type declaration (at most one) or a clause defining the same name.The monad for the main REPL - reading and processing files and updating global state (hence the IO inner monad). type Idris = WriterT [Either String (IO ())] (State IState a))(The global state used in the Idris monad/All the currently defined names and their termsGA list of universe constraints and their corresponding source locations!Currently defined infix operators.list of lhs/rhs, and a list of missing clauses#Full application LHS on source line2The currently defined but not proven metavariablesThe imported modules Imported ibc file names-What was the span of the latest token parsed?Global error handlers!Specific error handlers##How many chars wide is the console?'FList of names that were defined in the repl, and can be re-/un-defined(How wide is the console?)+Attempt to determine width, or 80 otherwise*%Manually specified - must be positive+:Have pretty-printer assume that lines should not be broken,The output mode in use-1Send IDE output for some request ID to the handle.(Print user output directly to the handle4^ whether to show implicits;^ show implicitsJ,automatically apply "solve" tactic in proverKe.g. Builtins+PreludeZ/Pretty printing options with default verbosity.[0Pretty printing options with the most verbosity.\8Get pretty printing options from the big options record.]7Get pretty printing options from an idris state record._"The initial state for the compilerColourise annotations according to an Idris state. It ignores the names in the annotation, as there's no good way to show extended information on a terminal.^Pretty-print a high-level closed Idris term with no information about precedence/associativity8Serialise something to base64 using its Binary instance.4Do the right thing for rendering a term in an IStateMPretty-print a high-level Idris term in some bindings context with infix info4Pretty-printer helper for the binding site of a nameEPretty-printer helper for names that attaches the correct annotationsShow Idris name&Show a term with implicits, no colours}GHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~^ pretty printing options^ the term to pretty-print^ pretty printing options9^ the currently-bound names and whether they are implicit.^ names to always show in pi, even if not used^ Fixity declarations^ the term to pretty-print^ the bound name^ whether the name is implicitE^ whether the name should be parenthesised if it is an infix operator^ whether to show namespaces;^ the current bound variables and whether they are implicit^ the name to pprint:^ the Idris state, for information about names and colours2^ the bound variables and whether they're implicit^ pretty printing options^ whether to colourise^ the term to show@^ the Idris state, for information about identifiers and colours^ the term to showoGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~SVUTLMNOPQRWX56789:;<=>?@ABCDEFGHIJKY234Z[\]/10,.-(+*)      !"#$%&'^_y~}|{zExwvutsrqponmlkjihgfedcba`_^]\[ZYXWVUTSRQPONMLKJIHGF?CBA@DDDD=>:<;1654278978978783`abcd!0/.-,+*)('&%$#" ef     ghijklmnop~{|}wxyzpqrstuvdefghijklmnoc_ba`]^W\[ZYXqTVUGHIJKLMNOPQRSrstuvwxyz{|}~G HIJKLMNOPQRSTVUW\[ZYX]^_ba`cd efghijklmnopqrstuvwxyz{|}~%)      !0/.-,+*)('&%$#"1654278978978783:<;=>?CBA@DDDDE3xwvutsrqponmlkjihgfedcba`_^]\[ZYXWVUTSRQPONMLKJIHGFy6~}|{z$@      !"#$%&'(+*),.-/1023456789:;<=>?@ABCDEFGHIJKLMNOPQRSVUTWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~None./23468&&&None./23468bNone./23468   None./23468None./23468&      !"#$%&'()*+&      !"#$%&'()*+&      !"#$%&'()*+       !"#$%&'()*+None ./23468F.,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXY.,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXY.,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXY.,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYNone./23468Z[\]^_`abcdefghijklmnopqrstuvwZ[\]^_`abcdefghijklmnopq^_\]wvuZ[tsr`abcdefghijklmnopqZ[\]^_`abcdefghijklmnopqrstuvw None./23468xyz{|}~xyz{|}~xyz{|}~xyz{|}~!None ./23468F _Compile a simple expression and use the given continuation to postprocess the resulting value.G  @    "None -./23468F#None./23468$None./23468%None./23468   &None ./23468F1^ the Int is the column count for pretty-printing&^ Recursive?, line, name, hints, depthC    ''&    'None -./23468FwAdds error handlers for a particular function and argument. If names are ambiguous, all matching handlers are updated.OA version of liftIO that puts errors into the exception type of the Idris monad+Tell clients how much was parsed and loadedP6Add the implicit arguments to applications in the term      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`aGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVa`WXYZ[\]^_      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`a(None ./23468FHM[bcdefghi j                          ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M N O bcdefghij jbcdefghiTbcdefghi j                          ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M N O)None ./23468Fklmnopklmnopklmnopklmnop*None ./23468F qrstuvwxyz{|qrst qr|{zyxwvsut qrstuvwxyz{|+None ./23468F}~}~}~}~,None./23468Find definitions that are relevant to all space-delimited components of some string. Relevance is one or more of the following:%the string is a substring of the name-the string occurs in the documentation string%the type of the definition is apropos -None ./23468F.None ./23468F PHow far to indent sub-errors QaActually indent a sub-error - no line at end because a newline can end multiple layers of indent+Pretty-print a core term using delaboration"Pretty-print the type of some name"implicit arguments to type, if anyuse full names#Don't treat metavariables specially P Q R S T U V W X Y Z [ \ ]   P Q R S T U V W X Y Z [ \ ]/None ./23468F SData type representing binding-time annotations for partial evaluation of arguments3Erasable dynamic argument (found under unification)Explicit dynamic argumentExplicit static argumentImplicit dynamic argumentImplicit static argument8Partially evaluates given terms under the given context.Specialises the type of a partially evaluated TT function returning a pair of the specialised type and the types of expected arguments.Creates an Idris type declaration given current state and a specialised TT function application type. Can be used in combination with the output of . ^>Checks if a given argument is a type class constraint argument _Checks if the given arguments of a type class constraint are all either constants or references (i.e. that it doesn't contain any complex terms).;Creates a new clause for a specialised function application1Get specialised applications for a given function  ^ _   ^ _0None ./23468F ` a b c d e    ` a b c d e1None./23468 f g h i j f g h i j2None./23468 k l m n o p q r s t u k l m n o p q r s t u3None ./23468F  4None./23468 v w x y z { | } ~   v w x y z { | } ~  5None ./23468F5  /   6None./23468AWrite a pretty-printed term to the console with semantic coloringVPretty-print a collection of overloadings to REPL or IDESlave - corresponds to :t nameAWrite pretty-printed output to IDESlave with semantic annotations(Show an error with semantic highlighting7Warn about totality problems without failing to compile7None +./23468GIssue a warning on "with"-terms whose namespace is empty or nonexistent    8None ./23468:FM9None ./23468FCheck a PTerm against documentation and ensure that every documented argument actually exists. This must be run _after_ implicits have been found, or it will give spurious errors.:None./23468           ;None -./23468F 2Wrap a type provider in the type of type providers \Handle an error, if the type provider returned an error. Otherwise return the provided term.                <None ./23468F        =None ./23468F      >None ./23468F Given a mainF term to compiler, return the IRs which can be used to generate code.     ?None ./23468F Prefix a name with the Language.Reflection namespace 1Reify tactics from their reflected representation !/Reify terms from their reflected representation #3Reify raw terms from their reflected representation 17Create a reflected call to a named function/constructor 2:Lift a term into its Language.Reflection.TT representation 4Convert a reflected term to a more suitable form for pattern-matching. In particular, the less-interesting bits are elaborated to _ patterns. This happens to NameTypes, universe levels, names that are bound but not used, and the type annotation field of the P constructor. 5CCreate a reflected term, but leave refs to the provided name intact 8Elaborate a name to a pattern. This means that NS and UN will be intact. MNs corresponding to will care about the string but not the number. All others become _. >BReflect the environment of a proof into a List (TTName, Binder TT) ?<Reflect an error into the internal datatype of Idris -- TODO KAttempt to reify a report part from TT to the internal representation. Not in Idris or ElabD monads because it should be usable from either.A                   ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L MA                   ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L MA                   ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M>                    ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M@None ./23468F N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h S T U V W X Y Z [ \ ] ^ _ O R Q P ` a N b c d e f g h N O R Q P S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g hANone ./23468F jIElaborate a top-level type declaration - for example, "foo : Int -> Int". i j k l i j k l i j k l i j k lBNone ./23468F m\Elaborate a collection of left-hand and right-hand pairs - that is, a top-level definition. nFind static3 applications in a term and partially evaluate them m n o p q r m n o p q r m n o p q r m n o p q rCNone ./23468F sX^^ TODO: the above is a comment from the past; forcenames is probably no longer needed s  s s s DNone ./23468F t t t tENone ./23468F u u u  uFNone ./23468F v v v vGNone ./23468F w x w x x w w xHNone ./23468F yElaborate a type provider y y y yINone -./23468F {'Return the elaborated term which calls main |Elaborate primitives z { | } ~   z { | } ~   z { | } ~   z { | } ~  JNone &*./23468BF: Representation of an operation that can compare the current indentation with the last indentation, and an error message if it fails +Generalized monadic parsing constraint type +Idris parser with state used during parsing 5Helper to run Idris inner parser based stateT parsers KConsumes any simple whitespace (any character which satisfies Char.isSpace) #Checks if a charcter is end of line Consumes a single-line comment  SingleLineComment_t ::= '--'% EOL_t | '--'= ~DocCommentMarker_t ~EOL_t* EOL_t ; Consumes a multi-line comment [ MultiLineComment_t ::= '{ -- }' | '{ -' ~DocCommentMarker_t InCommentChars_t ; k InCommentChars_t ::= '- }' | MultiLineComment_t InCommentChars_t | ~'- }'+ InCommentChars_t ; KParses a documentation comment (similar to haddoc) given a marker character  DocComment_t ::= |||" ~EOL_t* EOL_t ; Parses some white space Parses a string literal Parses a char literal Parses a natural number Parses an integral number Parses a floating point number 5Idris Style for parsing identifiers/reserved keywords Parses a character as a token Parses string as a token Parses a reserved identifier Parses a reserved operator 6Parses an identifier with possible namespace as a name 1Parses an string possibly prefixed by a namespace  Parses a name List of all initial segments in ascending order of a list. Every such initial segment ends right before an element satisfying the given condition.  Create a D from a pair of strings representing a base name and its namespace. Parses an operator SGet filename from position (returns "(interactive)" when no source file is given) Get line number from position  Get column number from position Get file position as FC Bind constraints to term Push indentation to stack Pops indentation from stack Gets current indentation Gets last indentation &Applies parser in an indented position FApplies parser to get a block (which has possibly indented statements) bApplies parser to get a block with at least one statement (which has possibly indented statements) LApplies parser to get a block with exactly one (possibly indented) statement 9Checks if the following character matches provided parser Parses a start of block Parses an end of block Parses a terminator Parses and keeps a terminator -Checks if application expression does not end "Checks that it is not end of block ?Allows comparison of indent, and fails if property doesn't hold Greater-than indent property (Greater-than or equal to indent property Equal indent property Less-than indent property %Less-than or equal to indent property 3Checks that there are no braces that are not closed 7Parses an accessibilty modifier (e.g. public, private) &Adds accessibility option for function HAdd accessbility option for data declarations (works for classes too - abstract2 means the data/class is visible but members not) 'Error message with possible fixes list Collect  with the same function nameH G H E   KNone./23468 6A specification of the arguments that tactics can take Names: n1, n2, n3, ... n ;A list of available tactics and their argument requirements mConvert a name into a string usable for completion. Filters out names that users probably don't want to see. >Get the user-visible names from the current interpreter state. 4Get the completion function for a particular command .Complete REPL commands and defined identifiers $Complete tactics and their arguments &The names of current local assumptions    LNone ./23468F' 4A map from namespace names to information about them 2All information to be documented about a namespace@All information to be documented about a single namespace member;Internal representation of a fully qualified namespace name#Either an error message or a result YGenerates HTML documentation for a series of loaded namespaces and their dependencies.Make an error messageIdrisDoc versionRConverts a Name into a [Text] corresponding to the namespace part of a NS Name.&Retrieves the namespace part of a Name(String to replace for the root namespace Converts a NsName to string form .Fetch info about namespaces and their contents fRemoves loose class methods and data constructors, leaving them documented only under their parent. 9Whether a Name names something which should be documented Whether a NsItem should be included in the documentation. It must not be Hidden and filterName must return True for the name. Also it must have Docs -- without Docs, nothing can be done. ~Finds all namespaces indirectly referred by a set of namespaces. The NsItems of the namespaces are searched for references.1Gets all namespaces directly referred by a NsItemGReturns an NsDict of containing all known namespaces and their contents!Gets the Accessibility for a Name/Simple predicate for whether an NsItem has DocsPredicate saying whether a Name possibly may have docs defined Without this, getDocs from Idris.Docs may fail a pattern match.Retrieves the Docs for a NameExtracts names referred from a type. The covering of all PTerms ensures that we avoid unanticipated cases, though all of them are not needed. The author just did not know which! TODO: Remove unnecessary cases"Shorter name for extractPTermNames%Helper function for extractPTermNames%Helper function for extractPTermNames%Helper function for extractPTermNamesGenerates the actual HTML output based on info from a NsDict A merge of the new docs and any existing docs located in the output dir is attempted. TODO: Ensure the merge always succeeds. Currently the content of 'docs/<builtins>.html'{ may change between runs, thus not always containing all items referred from other namespace .html files.(Over)writes the  'index.html'Z file in the given directory with an (updated) index of namespaces in the documentationdGenerates a HTML file for a namespace and its contents. The location for e.g. Prelude.Algebra is  basePrelude Algebra.htmlEGenerates a relative filepath for a namespace, appending an extensionmGenerates a HTML type signature with proper tags TODO: Turn docstrings into title attributes more robustly,Generates HTML documentation for a function.bGenerates HTML documentation for any Docs type TODO: Generate actual signatures for typeclasses 7Generates everything but the actual content of the page!Non-break space character"GReturns a list of namespaces already documented in a IdrisDoc directory#?Copies IdrisDoc dependencies such as stylesheets to a directory'  <IState where all necessary information is extracted from.4List of namespaces to generate documentation for.8The directory to which documentation will be written.Name to convertName to retrieve namespace forNsName to convert IState to fetch info from$List of namespaces to fetch info for9Mapping from namespace name to info about its contents List to remove orphans fromOrphan-free list  Name to checkPredicate result Accessibility to checkPredicate result )Mappings of namespaces and their contentsSet of namespaces to trace'Set of namespaces which has been traced-Set of namespaces to trace and all traced one7The name to get all directly referred namespaces for+IState containing accessibility informationThe Name to retrieve access forThe NsItem to test The resultThe Name to test The result!IState to extract infomation fromName to load Docs forWhere to extract names fromExtracted namesWhere to extract names fromExtracted names&Needed to determine the types of names$All info from which to generate docs=The base directory to which documentation will be written.1Set of namespace names to include in the index=The base directory to which documentation will be written.&Needed to determine the types of names8The name of the namespace to create documentation forThe contents of the namespace=The base directory to which documentation will be written. Namespace to generate a path forExtension suffix&Needed to determine the types of names%Type to generate type declaration forResulting HTML&Needed to determine the types of namesFunction to generate block forResulting HTML&Needed to determine the types of names)Namespace item to generate HTML block forResulting HTML &Namespace name, unless it is the index Inner HTML!"%The base directory containing the docs+ directory with existing namespace pages#=The base directory to which dependencies should be written  '        !"#MNone &./23468BF Creates table for fixity declarations to build expression parser using pre-build and user-defined operator/fixity declarations (Calculates table for fixtiy declarations Binary operator Prefix operator Backtick operator ZParses an operator in function position i.e. enclosed by `()', with an optional namespace  OperatorFront ::= '(' '=' ')' | (Identifier_t $)? '(' Operator_t ')' ; 2Parses a function (either normal name or operator) # FnName ::= Name | OperatorFront; Parses a fixity declaration ? Fixity ::= FixityType Natural_t OperatorList Terminator ; FParses a fixity declaration type (i.e. infix or prefix, associtavity)  FixityType ::= 'infixl' | 'infixr' | 'infix' |   ; NNone &./23468BF3  Allow implicit type declarations #Disallow implicit type declarations  Parses an expression as a whole  FullExpr ::= Expr EOF_t; Parses an expression  Expr ::= Pi 4Parses an expression with possible operator applied  OpExpr ::= ; IParses either an internally defined expression or a user-defined one E Expr' ::= "External (User-defined) Syntax" | InternalExpr; !Parses a user-defined expression (Parses a simple user-defined expression NTries to parse a user-defined expression given a list of syntactic extensions 7Tries to parse an expression given a user-defined rule &Parses a (normal) built-in expression  InternalExpr ::= UnifyLog | RecordType | SimpleExpr | Lambda | QuoteGoal | Let | RewriteTerm | CaseExpr | DoBlock | App ; Parses a case expression  CaseExpr ::= 'case' Expr 'of'# OpenBlock CaseOption+ CloseBlock; #Parses a case in a case expression  CaseOption ::= Expr '=>' Expr Terminator ; Parses a proof block  ProofExpr ::= proof# OpenBlock Tactic'* CloseBlock ; Parses a tactics block  TacticsExpr := tactics! OpenBlock Tactic'* CloseBlock ; +Parses a simple expression @ SimpleExpr ::=| ? Name | %  'instance' | refl} ('{' Expr '}')? | ProofExpr | TacticsExpr | FnName | Idiom | List | Alt | Bracketed | Constant | Type | '_|_' | Quasiquote | Unquote | '_' ; @ Parses an expression in braces  Bracketed ::= '(' Bracketed' +Parses the rest of an expression in braces = Bracketed' ::= ')' | Expr ')' | ExprList ')' | Expr %? Expr ')' | Operator Expr ')' | Expr Operator ')' | Name : Expr % Expr ')' ; (Finds optimal type for integer constant AParses an alternative expression @ Alt ::= '(|' Expr_List '|)';7Expr_List ::= Expr' | Expr' ',' Expr_List ; @ +Parses a possibly hidden simple expression  HSimpleExpr ::= $ SimpleExpr | SimpleExpr ; 3Parses a unification log expression UnifyLog ::= %   SimpleExpr ; 1Parses a disambiguation expression Disamb ::= %   NameList Expr ; !Parses a no implicits expression  NoImplicits ::= %   SimpleExpr ; )Parses a function application expression  App ::=  mkForeignI Arg Arg* | MatchApp | SimpleExpr Arg* ; MatchApp ::= SimpleExpr <== FnName ; Parses a function argument < Arg ::= ImplicitArg | ConstraintArg | SimpleExpr ; %Parses an implicit function argument  ImplicitArg ::= '{' Name ('=' Expr)? '}' ; HParses a constraint argument (for selecting a named type class instance) . ConstraintArg ::= '@{' Expr '}' ; RParses a quasiquote expression (for building reflected terms using the elaborator) Quasiquote ::= '`(' Expr ')' _Parses an unquoting inside a quasiquotation (for building reflected terms using the elaborator) Unquote ::= ',' Expr (Parses a record field setter expression  RecordType ::= record '{' FieldTypeList '}';  C FieldTypeList ::= FieldType | FieldType ',' FieldTypeList ;   FieldType ::= FnName '=' Expr ; 7Creates setters for record types on necessary functions Parses a type signature  TypeSig ::= : Expr ;  $ TypeExpr ::= ConstraintList? Expr; Parses a lambda expression  Lambda ::= & TypeOptDeclList '=>' Expr | & SimpleExprList '=>' Expr ;  G SimpleExprList ::= SimpleExpr | SimpleExpr ',' SimpleExprList ; !Parses a term rewrite expression  RewriteTerm ::= rewrite Expr (==> Expr)? 'in' Expr ; !Parses a let binding @ Let ::= 'let' Name TypeSig'? '=' Expr 'in' Expr | 'let' Expr' '=' Expr' 'in' ExprTypeSig' ::= : Expr' ; @ Parses a quote goal QuoteGoal ::=   Name by Expr 'in' Expr ; !Parses a dependent type signature Pi ::= PiOpts Static? Pi' Pi' ::= OpExpr ('->'4 Pi)? | '(' TypeDeclList ')' '->'2 Pi | '{' TypeDeclList '}' '->' Pi | '{' auto TypeDeclList '}' '->' Pi | '{'  'default' SimpleExpr TypeDeclList '}' '->' Pi ; +Parses Possible Options for Pi Expressions  PiOpts ::= $? Parses a type constraint list )ConstraintList ::= '(' Expr_List ')' '=>' | Expr '=>' ; Parses a type declaration list E TypeDeclList ::= FunctionSignatureList | NameList TypeSig ; ZFunctionSignatureList ::= Name TypeSig | Name TypeSig ',' FunctionSignatureList ; 8Parses a type declaration list with optional parameters k TypeOptDeclList ::= NameOrPlaceholder TypeSig? | NameOrPlaceholder TypeSig? ',' TypeOptDeclList ; NameOrPlaceHolder ::= Name | '_'; `Parses a list literal expression e.g. [1,2,3] or a comprehension [ (x, y) | x <- xs , y <- ys ] ( ListExpr ::= '[' ']' | '[' Expr '|'# DoList ']' | '[' ExprList ']' ;  ) DoList ::= Do | Do ',' DoList ;  / ExprList ::= Expr | Expr ',' ExprList ; Parses a do-block  Do' ::= Do KeepTerminator; DoBlock ::= 'do' OpenBlock Do'+ CloseBlock ; 'Parses an expression inside a do block  Do ::= 'let' Name TypeSig'? '=' Expr | 'let' Expr' '=' Expr | Name '<-' Expr | Expr' '<-' Expr | Expr ; 'Parses an expression in idiom brackets  Idiom ::= '[|' Expr '|]'; 'Parses a constant or literal expression Constant ::= ' | ( | ) | * | + | Ptr |  ManagedPtr | prim__UnsafeBuffer | Bits8 | Bits16 | Bits32 | Bits64 | Bits8x16 | Bits16x8 | Bits32x4 | Bits64x2L | Float_t | Natural_t | VerbatimString_t | String_t | Char_t ; ;Parses a verbatim multi-line string literal (triple-quoted) ,VerbatimString_t ::= '"""' ~'"""' '"""' ; Parses a static modifier Static ::= '[' static ']' ; Parses a tactic script  Tactic ::= intro NameList? | intros | refine Name Imp+ | mrefine Name | rewrite Expr |  induction Expr | equiv Expr | 'let' Name : Expr' '=' Expr | 'let' Name '=' Expr | focus Name | exact Expr |  applyTactic Expr | reflect Expr | fill Expr | , Tactic '|'0 Tactic | '{' TacticSeq '}' | compute | trivial | solve | attack | - | term | undo | qed | abandon | : q ; Imp ::= ? | '_'D; TacticSeq ::= Tactic ';' Tactic | Tactic ';' TacticSeq ; Parses a tactic as a whole9         9         9         7          ONone &./23468BF JParses a record type declaration Record ::= DocComment Accessibility?   FnName TypeSig 'where'1 OpenBlock Constructor KeepTerminator CloseBlock; :Parses data declaration type (normal or codata) DataI ::= 'data' | s; LParses if a data should not have a default eliminator DefaultEliminator ::= noelim? $Parses a data type declaration Data ::= DocComment? Accessibility? DataI DefaultEliminator FnName TypeSig ExplicitTypeDataRest? | DocComment? Accessibility? DataI DefaultEliminator FnName Name* DataRest? ; Constructor' ::= Constructor KeepTerminator; ExplicitTypeDataRest ::= 'where'$ OpenBlock Constructor'* CloseBlock; DataRest ::= '='0 SimpleConstructorList Terminator | 'where'U! ; SimpleConstructorList ::= SimpleConstructor | SimpleConstructor '|' SimpleConstructorList ; SParses a type constructor declaration Constructor ::= DocComment? FnName TypeSig; vParses a constructor for simple discriminative union data types SimpleConstructor ::= FnName SimpleExpr* DocComment? Checks DSL for errors 9Parses a DSL overload declaration OverloadIdentifier ::= 'let'/ | Identifier; Overload ::= OverloadIdentifier '=' Expr;                                    PNone ./23468M.;The state corresponding to an attempted match of two types./#names which have yet to be resolved0Oarguments and typeclass constraints for each type which have yet to be resolved1the score so far2all names that have been used3A list of typeclass constraints4GA directed acyclic graph representing the arguments to a function The (B represents the position of the argument (1st argument, 2nd, etc.)5Homogenous tuples6)Asymmetric modifications to keep track of7<Conduct a type-directed search using a given match predicate8.reverse the edges for a directed acyclic graph9Compute a directed acyclic graph corresponding to the arguments of a function. returns [(the name and type of the bound variable the names in the type of the bound variable)]:Collect the names and types of all the free variables The Boolean indicates those variables which are determined due to injectivity I have not given nearly enough thought to know whether this is correct;+Remove a node from a directed acyclic graph<=Could be a functor instance, but let's avoid name overloading=Compute the power set>Try to match two types together in a unification-like procedure. Returns a list of types and their minimum scores, sorted in order of increasing score.3.?/01234@ABCD5EFG6HIJK 7 L89filter to remove some arguments:;MN<OP QRSTUVWX=Y>Z[\]      #.?/01234@ABCD5EFG6HIJK 7 L89:;MN<OP QRSTUVWX=Y>Z[\]QNone./23468       ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s t u v w x y z { | } ~  Z       ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s D       ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C E F G H I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s  ~ } | { z y x w v u t_ )      ! " # $ % & ' ( ) * + , - . / 0 1 2 3 4 5 6 7 8 9 : ; < = > ? @ A B C D E F G H I J K L M N O P Q R S T U V W X Y Z [ \ ] ^ _ ` a b c d e f g h i j k l m n o p q r s t u v w x y z { | } ~  RNone &./23468BF/ Parses module definition  ModuleHeader ::= 'module' Identifier_t ';'?; Parses an import statement  Import ::= 'import' Identifier_t ';'?; Parses program source  Prog ::= Decl* EOF; Parses a top-level declaration Decl ::= Decl' | Using | Params | Mutual | Namespace | Class | Instance | DSL | Directive | Provider | Transform | Import! ; 9Parses a top-level declaration with possible syntax sugar IDecl' ::= Fixity | FunDecl' | Data | Record | SyntaxDecl ; IParses a syntax extension declaration (and adds the rule to parser state)  SyntaxDecl ::= SyntaxRule; %Parses a syntax extension declaration SyntaxRuleOpts ::= term |  ;  !SyntaxRule ::= SyntaxRuleOpts? syntax SyntaxSym+ '=' TypeExpr Terminator; SyntaxSym ::= '[' Name_t ']' | '{' Name_t '}' | Name_t | StringLiteral_t ; GParses a syntax symbol (either binding variable, keyword or expression) SyntaxSym ::= '[' Name_t ']' | '{' Name_t '}' | Name_t | StringLiteral_t ; 8Parses a function declaration with possible syntax sugar  FunDecl ::= FunDecl'; Parses a function declaration } FunDecl' ::= DocComment_t? FnOpts* Accessibility? FnOpts* FnName TypeSig Terminator | Postulate | Pattern | CAF ; -Parses function options given initial options  FnOpts ::= total | partial | J | %  no_implicit | %  assert_total | %  error_handler | %  reflection | % I '[' NameTimesList? ']' ;  NameTimes ::= FnName Natural?; BNameTimesList ::= NameTimes | NameTimes ',' NameTimesList ; Parses a postulate Postulate ::= DocComment_t?  = FnOpts* Accesibility? FnOpts* FnName TypeSig Terminator ; Parses a using declaration  Using ::= I6 '(' UsingDeclList ')' OpenBlock Decl* CloseBlock ; Parses a parameters declaration  Params ::=  parameters5 '(' TypeDeclList ')' OpenBlock Decl* CloseBlock ; >Parses a mutual declaration (for mutually recursive functions)  Mutual ::=   OpenBlock Decl* CloseBlock ; Parses a namespace declaration Namespace ::=  + identifier OpenBlock Decl+ CloseBlock ; &Parses a methods block (for instances)  InstanceBlock ::= 'where' OpenBlock FnDecl* CloseBlock 7Parses a methods and instances block (for type classes) 2MethodOrInstance ::= FnDecl | Instance ; ClassBlock ::= 'where', OpenBlock MethodOrInstance* CloseBlock ; Parses a type class declaration (ClassArgument ::= Name | '(' Name : Expr ')' ; )Class ::= DocComment_t? Accessibility? 'class'5 ConstraintList? Name ClassArgument* ClassBlock? ; (Parses a type class instance declaration  Instance ::=  'instance'E InstanceName? ConstraintList? Name SimpleExpr* InstanceBlock? ; InstanceName ::= '[' Name ']'; Parses a using declaration list <UsingDeclList ::= UsingDeclList' | NameList TypeSig ;  DUsingDeclList' ::= UsingDecl | UsingDecl ',' UsingDeclList' ; .NameList ::= Name | Name ',' NameList ; Parses a using declaration 6UsingDecl ::= FnName TypeSig | FnName FnName+ ; Parse a clause with patterns Pattern ::= Clause; -Parse a constant applicative form declaration CAF ::= 'let' FnName '=' Expr Terminator; Parse an argument expression ArgExpr ::= HSimpleExpr | ; %Parse a right hand side of a function RHS ::= '=' Expr | ?= RHSName? Expr |  impossible ; RHSName ::= '{' FnName '}'; Parses a function clause :RHSOrWithBlock ::= RHS WhereOrTerminator | with: SimpleExpr OpenBlock FnDecl+ CloseBlock ;  uClause ::= WExpr+ RHSOrWithBlock | SimpleExpr <== FnName RHS WhereOrTerminator | ArgExpr Operator ArgExpr WExpr* RHSOrWithBlock | FnName ConstraintArg* ImplicitOrArgExpr* WExpr* RHSOrWithBlock ;  -ImplicitOrArgExpr ::= ImplicitArg | ArgExpr; /WhereOrTerminator ::= WhereBlock | Terminator; Parses with pattern  WExpr ::= '|' Expr'; Parses a where block WhereBlock ::= 'where' OpenBlock Decl+ CloseBlock; -Parses a code generation target language name  Codegen ::= C | Java |  JavaScript | Node | LLVM |  ; Parses a compiler directive 7 StringList ::= String | String ',' StringList ;  Directive ::= % Directive'; Directive' ::= lib, CodeGen String_t | link+ CodeGen String_t | flag+ CodeGen String_t | include( CodeGen String_t | hide Name | freeze Name | access& Accessibility |  'default' Totality | logging Natural | dynamic" StringList |  ( Name NameList | error_handlers Name NameList | language 1 | language 0 ; Parses a totality  Totality ::= partial | total Parses a type provider  Provider ::= % provide' Provider_What? '(' FnName TypeSig ')' with Expr; ProviderWhat ::= proof | term | 'type' |   Parses a transform Transform ::= %   Expr ==> Expr  Parses an expression from input Parses a constant form input Parses a tactic from input Parse module header and imports -There should be a better way of doing this... CCheck if the coloring matches the options and corrects if necessary UA program is a list of declarations, possibly with associated documentation strings. <Load idris module and show error if something wrong happens Load idris module Load idris code from file ALoad idris source code and show error if something wrong happens Load Idris source code Adds names to hide list 0                  0 0 SNone ./23468F^_`abcdefghijklmnopq  line numbervariable name of file (line number that the type is declared on Function nameSource file name %line number that the type is declared Function nameSource file name   ^_`abcdefghijklmnopq TNone ./23468F rst   rst UNone./23468 VNone./23468u?Generate the colour type names using the default Show instance. vwxyz{|}u~  vwxyz{|}u~WNone./23468         XNone -./23468F  Run the REPL Run the REPL server (Run a command on the server on localhost Run the IdeSlave Run IDESlave commands 8Show a term for IDESlave with the specified implicitness 8The prompt consists of the currently loaded modules, or Idris if there are none -Determine whether a file uses literate syntax YInvoke as if from command line. It is an error if there are unresolved totality problems. 2Get the platform-specific, user-specific Idris dir 9Locate the platform-specific location for the init script Run the initialisation script sReturns None if given an Opt which is not PkgMkDoc Otherwise returns Just x, where x is the contents of PkgMkDoc: The initial stateThe loaded modules ^ The handle for communication$^ The continuation ID for the client^ The original IState^ The current open file^ The currently loaded modules^ The command to process                          Opt to extractResult the option to extractthe package file to test ! " # $ % & ' ( ) * + , -:                           ! " # $ % & ' ( ) * + , -:                           ! " # $ % & ' ( ) * + , -:                           ! " # $ % & ' ( ) * + , -YNone ./23468 . / 0 1 2 3 4 . / 0 1 2 3 4 . / 0 1 2 3 4 . / 0 1 2 3 4cNone ./23468 ZNone ./23468 5+Run the package through the idris compiler. 6Type check packages onlybThis differs from build in that executables are not built, if the package contains an executable. 7 Check a package and start a REPL 8Clean Package build files 9Generate IdrisDoc for package TODO: Handle case where module does not contain a matching namespace E.g. from prelude.ipkg: IO, Prelude.Chars, Builtins :CBuild a package with a sythesized main function that runs the tests ;Install package C#Invoke a Makefile's default target. D!Invoke a Makefile's clean target. 5 6 Show Warningsquit on failurePath to ipkg file. 7 8Path to ipkg file. 9Path to .ipkg file. : ; < = > ? @ A B C D 5 6 7 8 9 : ; < = > ? @ A B C D 5 6 7 8 9 : ; < = > ? @ A B C D 5 6 7 8 9 : ; < = > ? @ A B C Ddefghijklmnopqrstuvwxyz{|}~jtu]]]                                 ! 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(. ). *. +. ,. -. ./ // 00 10 20 30 40 50 61 71 81 91 :1 ;2 <2 =2 >2 ?2 @2 A2 B2 C2 D2 E2 F4 G4 H4 I4 J4 K4 L44 M4 N4 O4 P4 Q4 R4 S4 T4 U4 V4 W4 X5 Y5 Y5 Z5 [5 \5 ]5 ^5 _5 `5 a5 b5 c5 d5 e5 f5 g5 h5 i5 j5 k5 l5 m5 n5 o5 p5 q5 r5 s5 t5 u5 v5 w5 x5 y5 z5 {5 |5 }5 ~5 5 5 5 5 5 5 5 5 ; ; ; < = = = = = = = = = = == = = = = = = = > > > > > > > > > -> > > > > > > C C C E E E E K K K K K =K K K K K K K K K K K K K K K K K K L L L L L L LL L L L L L L L L L L L L L L L L L L L L L L L L L L L L L L       P P P PPPPPPPPPPP P P P P P P PPPPPPPPPPPPPPPPPPPP P!P"P#P$P%P&P'P(S)S*S+S,SHS S-S.S/S0S1S2S3S4S5S6S7S8S9S:T;T<T=V>V?V@VAVBVCVDVEVFVGVHWIWJcKcKcLcMcNcOcPcQc cRcScTcUcVcWcXcYc Zidris-0.9.14.3IRTS.JavaScript.AST IRTS.Java.Pom IRTS.System Idris.HelpUtil.ScreenSize Idris.Colours Idris.Core.TCUtil.DynamicLinker Idris.Core.TTIdris.Core.CaseTreeIdris.Core.DeepSeqIdris.Core.EvaluateIdris.Core.TypecheckIdris.Core.ConstraintsIdris.Core.ProofTermIdris.Core.UnifyIdris.Core.ProofStateIdris.Core.Elaborate IRTS.LangIdris.Docstrings Idris.UnlitIRTS.DefunctionaliseIRTS.SimplifiedIRTS.CodegenCommonIdris.AbsSyntaxTree Idris.DeepSeqIdris.ASTUtils IRTS.BCImp IRTS.BytecodeIRTS.Java.JTypesIRTS.Java.ASTBuildingIRTS.Java.ManglingIRTS.CodegenJava IRTS.LangOpts IRTS.DumpBC IRTS.InlinerIdris.Core.BinaryIdris.IdeSlaveIdris.AbsSyntaxIdris.Primitives Idris.DSLIdris.DataOpts Idris.Inliner Idris.AproposIdris.ErrReverseIdris.DelaborateIdris.PartialEval Idris.DocsIdris.ElabQuasiquoteIdris.WhoCallsIdris.Transforms IRTS.CodegenCIRTS.CodegenJavaScript Idris.Output Idris.ErrorIdris.Core.ExecuteIdris.Elab.Utils Idris.ImportsIdris.ProvidersIdris.ProofSearch Idris.Erasure IRTS.CompilerIdris.ElabTermIdris.CoverageIdris.Elab.TypeIdris.Elab.ClauseIdris.Elab.DataIdris.Elab.RecordIdris.Elab.ClassIdris.Elab.InstanceIdris.Elab.ValueIdris.Elab.ProviderIdris.ElabDeclsIdris.ParseHelpersIdris.CompletionIdris.IdrisDocIdris.ParseOpsIdris.ParseExprIdris.ParseDataIdris.TypeSearch Idris.IBC Idris.ParserIdris.CaseSplitIdris.Interactive Idris.ProverIdris.REPLParser Idris.Chaser Idris.REPLIdris.CmdOptions Pkg.PackageUtil.Net Version_idris Paths_idris Util.Zlib Util.System Util.PrettygetFCUtil.LLVMStubs Pkg.PParserFFIFFIErrorFFIArgFFICodeJSJSNoop JSAnnotationJSFFIJSWhileJSParens JSTernaryJSCondJSSwitchJSIndexJSAllocJSAssignJSWordJSNumJSStringJSArrayJSFalseJSTrueJSThis JSUndefinedJSNullJSProjJSPostOpJSPreOpJSBinOpJSErrorJSNewJSAppJSReturnJSSeqJSType JSFunctionJSIdentJSRaw JSConstructorJSWord64JSWord32JSWord16JSWord8 JSIntegerJSFloatJSInt JSBigIntExprJSBigIntJSBigOne JSBigZero JSForgotTyJSPtrTyJSCharTy JSFloatTy JSIntegerTy JSStringTyJSIntTyffi compileJS compileJS' jsInstanceOfjsOrjsAndjsMethjsCalljsTypeOfjsEqjsNotEq jsIsNumberjsIsNulljsBigInt jsUnPackBits jsPackUBits8 jsPackUBits16 jsPackUBits32 jsPackSBits8 jsPackSBits16 jsPackSBits32$fShowJSAnnotation pomStringversion getDataDirgetDataFileNameCmdArgSeqArgs OptionalArgManyArgsDeclArgConsoleWidthArgSpecialHeaderArgNoArg 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