package linksem
A formalisation of the core ELF and DWARF file formats written in Lem
Install
Dune Dependency
Authors
Maintainers
Sources
0.8.tar.gz
md5=2075c56715539b3b8f54ae65cc808b8c
sha512=f7c16e4036a1440a6a8d13707a43f0f9f9db0c68489215f948cc300b6a164dba5bf852e58f89503e9d9f38180ee658d9478156ca1a1ef64d6861eec5f9cf43d2
doc/src/linksem_zarith/show.ml.html
Source file show.ml
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(*Generated by Lem from show.lem.*) (** [show.lem] exports the typeclass [Show] and associated functions for pretty * printing arbitrary values. *) open Lem_function open Lem_list open Lem_maybe open Lem_num open Lem_string open Lem_string_extra type 'a show_class={ show_method : 'a -> string } (** [string_of_unit u] produces a string representation of unit [u]. *) (*val string_of_unit : unit -> string*) let string_of_unit u:string= "()" let instance_Show_Show_unit_dict:(unit)show_class= ({ show_method = string_of_unit}) (** [string_of_bool b] produces a string representation of boolean [b]. *) (*val string_of_bool : bool -> string*) let string_of_bool b:string= ((match b with | true -> "true" | false -> "false" )) let instance_Show_Show_bool_dict:(bool)show_class= ({ show_method = string_of_bool}) (** To give control over extraction as instances cannot be target specific, but * the functions they are bound to can be... *) (*val string_of_string : string -> string*) let string_of_string x:string= x let instance_Show_Show_string_dict:(string)show_class= ({ show_method = string_of_string}) (** [string_of_pair p] produces a string representation of pair [p]. *) (*val string_of_pair : forall 'a 'b. Show 'a, Show 'b => ('a * 'b) -> string*) let string_of_pair dict_Show_Show_a dict_Show_Show_b (left, right):string= ("(" ^ (dict_Show_Show_a.show_method left ^ (", " ^ (dict_Show_Show_b.show_method right ^ ")")))) let instance_Show_Show_tup2_dict dict_Show_Show_a dict_Show_Show_b:('a*'b)show_class= ({ show_method = (string_of_pair dict_Show_Show_a dict_Show_Show_b)}) (** [string_of_triple p] produces a string representation of triple [p]. *) (*val string_of_triple : forall 'a 'b 'c. Show 'a, Show 'b, Show 'c => ('a * 'b * 'c) -> string*) let string_of_triple dict_Show_Show_a dict_Show_Show_b dict_Show_Show_c (left, middle, right):string= ("(" ^ (dict_Show_Show_a.show_method left ^ (", " ^ (dict_Show_Show_b.show_method middle ^ (", " ^ (dict_Show_Show_c.show_method right ^ ")")))))) let instance_Show_Show_tup3_dict dict_Show_Show_a dict_Show_Show_b dict_Show_Show_c:('a*'b*'c)show_class= ({ show_method = (string_of_triple dict_Show_Show_a dict_Show_Show_b dict_Show_Show_c)}) (** [string_of_quad p] produces a string representation of quad [p]. *) (*val string_of_quad : forall 'a 'b 'c 'd. Show 'a, Show 'b, Show 'c, Show 'd => ('a * 'b * 'c * 'd) -> string*) let string_of_quad dict_Show_Show_a dict_Show_Show_b dict_Show_Show_c dict_Show_Show_d (left, middle1, middle2, right):string= ("(" ^ (dict_Show_Show_a.show_method left ^ (", " ^ (dict_Show_Show_b.show_method middle1 ^ (", " ^ (dict_Show_Show_c.show_method middle2 ^ (", " ^ (dict_Show_Show_d.show_method right ^ ")")))))))) let instance_Show_Show_tup4_dict dict_Show_Show_a dict_Show_Show_b dict_Show_Show_c dict_Show_Show_d:('a*'b*'c*'d)show_class= ({ show_method = (string_of_quad dict_Show_Show_a dict_Show_Show_b dict_Show_Show_c dict_Show_Show_d)}) (** [string_of_maybe m] produces a string representation of maybe value [m]. *) (*val string_of_maybe : forall 'a. Show 'a => maybe 'a -> string*) let string_of_maybe dict_Show_Show_a m:string= ((match m with | None -> "Nothing" | Some e -> "Just " ^ dict_Show_Show_a.show_method e )) let instance_Show_Show_Maybe_maybe_dict dict_Show_Show_a:('a option)show_class= ({ show_method = (string_of_maybe dict_Show_Show_a)}) (** [show_else s m] produces a string representation of maybe [m], using [s] * in the case [m] = Nothing. *) (*val show_else : forall 'a. Show 'a => string -> maybe 'a -> string*) let show_else dict_Show_Show_a subst m:string= ((match m with Some x -> dict_Show_Show_a.show_method x | None -> subst )) (** [string_of_nat m] produces a string representation of nat value [m]. *) (*val string_of_nat : nat -> string*) let instance_Show_Show_nat_dict:(int)show_class= ({ show_method = Stdlib.string_of_int}) let instance_Show_Show_Num_natural_dict:(Nat_big_num.num)show_class= ({ show_method = Nat_big_num.to_string}) (*val string_of_integer : integer -> string*) let instance_Show_Show_Num_integer_dict:(Nat_big_num.num)show_class= ({ show_method = Nat_big_num.to_string})
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