add more operators
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985eff44a9
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@ -1,5 +1,5 @@
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include Types
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include Misc
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(* include Misc *)
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include Combinators
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module Types = Types
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@ -4,6 +4,17 @@ module Option = Simple_utils.Option
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module SMap = Map.String
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module Errors = struct
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let bad_kind expected location =
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let title () = Format.asprintf "a %s was expected" expected in
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let message () = "" in
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let data = [
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("location" , fun () -> Format.asprintf "%a" Location.pp location) ;
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] in
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error ~data title message
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end
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open Errors
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let t_bool : type_expression = T_constant ("bool", [])
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let t_string : type_expression = T_constant ("string", [])
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let t_bytes : type_expression = T_constant ("bytes", [])
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@ -145,3 +156,13 @@ let get_e_failwith = fun e ->
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| _ -> simple_fail "not a failwith"
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let is_e_failwith e = to_bool @@ get_e_failwith e
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let extract_pair : expression -> (expression * expression) result = fun e ->
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match Location.unwrap e with
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| E_tuple [ a ; b ] -> ok (a , b)
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| _ -> fail @@ bad_kind "pair" e.location
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let extract_list : expression -> (expression list) result = fun e ->
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match Location.unwrap e with
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| E_list lst -> ok lst
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| _ -> fail @@ bad_kind "list" e.location
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@ -6,14 +6,17 @@ type storage = {
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finish_time : timestamp ;
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}
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type init_action = (string * timestamp * timestamp)
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type init_action = {
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title : string ;
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beginning_time : timestamp ;
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finish_time : timestamp ;
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}
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type action =
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| Vote of string
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| Init of (string * timestamp * timestamp)
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| Init of init_action
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let init (init_params : init_action) (_ : storage) =
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let (title , s , t) = init_params in
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let candidates = Map [
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("Yes" , 0) ;
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("No" , 0)
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@ -21,21 +24,19 @@ let init (init_params : init_action) (_ : storage) =
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(
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([] : operation list),
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{
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title = title ;
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title = init_params.title ;
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candidates = candidates ;
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voters = (Set [] : address set) ;
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beginning_time = s ;
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finish_time = t ;
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beginning_time = init_params.beginning_time ;
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finish_time = init_params.finish_time ;
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}
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)
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let vote (parameter : string) (storage : storage) =
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let now = Current.time () in
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assert (now >= storage.beginning_time && storage.finish_time < now) ;
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let addr = Current.source () in
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assert (not Set.mem addr storage.voters) ;
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let now = Current.time in
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let _ = assert (now >= storage.beginning_time && storage.finish_time < now) in
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let addr = Current.source in
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let _ = assert (not Set.mem addr storage.voters) in
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let x = Map.find parameter storage.candidates in
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(
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([] : operation list),
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@ -47,7 +48,7 @@ let vote (parameter : string) (storage : storage) =
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finish_time = storage.finish_time ;
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}
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)
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)
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let main (action : action) (storage : storage) =
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match action with
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| Vote p -> vote p storage
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@ -88,6 +88,7 @@ module Typer = struct
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t_string () ;
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t_bytes () ;
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t_address () ;
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t_timestamp () ;
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] in
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ok @@ t_bool ()
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@ -90,6 +90,8 @@ module Simplify = struct
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module Ligodity = struct
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let constants = [
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("assert" , "ASSERT") ;
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("Current.balance", "BALANCE") ;
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("balance", "BALANCE") ;
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("Current.time", "NOW") ;
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@ -100,6 +102,8 @@ module Simplify = struct
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("gas", "STEPS_TO_QUOTA") ;
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("Current.sender" , "SENDER") ;
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("sender", "SENDER") ;
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("Current.source" , "SOURCE") ;
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("source", "SOURCE") ;
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("Current.failwith", "FAILWITH") ;
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("failwith" , "FAILWITH") ;
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@ -209,7 +213,7 @@ module Typer = struct
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let%bind () = assert_type_value_eq (dst, v) in
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ok m
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let map_update : typer = typer_3 "MAP_UPDATE_TODO" @@ fun k v m ->
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let map_update : typer = typer_3 "MAP_UPDATE" @@ fun k v m ->
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let%bind (src, dst) = get_t_map m in
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let%bind () = assert_type_value_eq (src, k) in
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let%bind v' = get_t_option v in
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@ -221,7 +225,12 @@ module Typer = struct
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let%bind () = assert_type_value_eq (src, k) in
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ok @@ t_bool ()
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let map_find : typer = typer_2 "MAP_FIND_TODO" @@ fun k m ->
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let map_find : typer = typer_2 "MAP_FIND" @@ fun k m ->
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let%bind (src, dst) = get_t_map m in
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let%bind () = assert_type_value_eq (src, k) in
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ok @@ dst
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let map_find_opt : typer = typer_2 "MAP_FIND_OPT" @@ fun k m ->
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let%bind (src, dst) = get_t_map m in
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let%bind () = assert_type_value_eq (src, k) in
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ok @@ t_option dst ()
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@ -341,6 +350,11 @@ module Typer = struct
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let%bind () = assert_t_int t in
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ok @@ t_nat ()
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let assertion = typer_1 "ASSERT" @@ fun a ->
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if eq_1 a (t_bool ())
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then ok @@ t_unit ()
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else simple_fail "Asserting a non-bool"
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let times = typer_2 "TIMES" @@ fun a b ->
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if eq_2 (a , b) (t_nat ())
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then ok @@ t_nat () else
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@ -375,6 +389,29 @@ module Typer = struct
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then ok @@ t_int () else
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simple_fail "Adding with wrong types. Expected nat, int or tez."
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let set_mem = typer_2 "SET_MEM" @@ fun elt set ->
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let%bind key = get_t_set set in
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if eq_1 elt key
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then ok @@ t_bool ()
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else simple_fail "Set_mem: elt and set don't match"
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let set_add = typer_2 "SET_ADD" @@ fun elt set ->
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let%bind key = get_t_set set in
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if eq_1 elt key
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then ok set
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else simple_fail "Set_add: elt and set don't match"
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let set_remove = typer_2 "SET_REMOVE" @@ fun elt set ->
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let%bind key = get_t_set set in
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if eq_1 elt key
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then ok set
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else simple_fail "Set_remove: elt and set don't match"
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let not_ = typer_1 "NOT" @@ fun elt ->
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if eq_1 elt (t_bool ())
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then ok @@ t_bool ()
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else simple_fail "bad parameter to not"
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let constant_typers = Map.String.of_list [
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add ;
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times ;
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@ -391,6 +428,7 @@ module Typer = struct
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comparator "GE" ;
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boolean_operator_2 "OR" ;
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boolean_operator_2 "AND" ;
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not_ ;
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map_remove ;
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map_add ;
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map_update ;
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@ -400,6 +438,9 @@ module Typer = struct
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map_map ;
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map_fold ;
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map_iter ;
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set_mem ;
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set_add ;
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set_remove ;
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(* map_size ; (* use size *) *)
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int ;
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size ;
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@ -422,6 +463,7 @@ module Typer = struct
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now ;
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slice ;
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address ;
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assertion ;
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]
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end
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@ -104,7 +104,7 @@ let keywords = Token.[
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"and", None;
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"as", None;
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"asr", None;
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"assert", None;
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(* "assert", None; *)
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"class", None;
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"constraint", None;
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"do", None;
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@ -147,6 +147,22 @@ module Errors = struct
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] in
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error ~data title message
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let bad_set_definition =
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let title () = "bad set definition" in
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let message () = "a set definition is a list" in
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info title message
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let bad_list_definition =
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let title () = "bad list definition" in
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let message () = "a list definition is a list" in
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info title message
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let bad_map_definition =
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let title () = "bad map definition" in
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let message () = "a map definition is a list of pairs" in
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info title message
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let corner_case ~loc message =
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let title () = "corner case" in
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let content () = "We don't have a good error message for this case. \
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@ -158,6 +174,7 @@ module Errors = struct
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("message" , fun () -> message) ;
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] in
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error ~data title content
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end
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open Errors
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@ -170,6 +187,7 @@ let rec pattern_to_var : Raw.pattern -> _ = fun p ->
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match p with
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| Raw.PPar p -> pattern_to_var p.value.inside
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| Raw.PVar v -> ok v
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| Raw.PWild r -> ok @@ ({ region = r ; value = "_" } : Raw.variable)
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| _ -> fail @@ wrong_pattern "var" p
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let rec pattern_to_typed_var : Raw.pattern -> _ = fun p ->
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@ -181,6 +199,7 @@ let rec pattern_to_typed_var : Raw.pattern -> _ = fun p ->
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ok (v , Some tp.type_expr)
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)
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| Raw.PVar v -> ok (v , None)
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| Raw.PWild r -> ok (({ region = r ; value = "_" } : Raw.variable) , None)
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| _ -> fail @@ wrong_pattern "typed variable" p
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let rec expr_to_typed_expr : Raw.expr -> _ = fun e ->
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@ -358,11 +377,38 @@ let rec simpl_expression :
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let (c_name , _c_loc) = r_split c_name in
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let args =
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match args with
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None -> []
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| None -> []
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| Some arg -> [arg] in
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let%bind arg = simpl_tuple_expression @@ args in
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match c_name with
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| "Set" -> (
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let%bind args' =
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trace bad_set_definition @@
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extract_list arg in
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return @@ e_set ~loc args'
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)
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| "List" -> (
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let%bind args' =
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trace bad_list_definition @@
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extract_list arg in
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return @@ e_list ~loc args'
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)
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| "Map" -> (
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let%bind args' =
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trace bad_map_definition @@
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extract_list arg in
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let%bind pairs =
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trace bad_map_definition @@
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bind_map_list extract_pair args' in
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return @@ e_map ~loc pairs
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)
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| "Some" -> (
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return @@ e_some ~loc arg
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)
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| _ -> (
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return @@ e_constructor ~loc c_name arg
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)
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)
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| EArith (Add c) ->
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simpl_binop "ADD" c
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| EArith (Sub c) ->
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@ -217,7 +217,7 @@ let sell () =
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let expected_storage =
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let cards = List.hds @@ cards_ez first_owner n in
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basic 99 1000 cards (2 * n) in
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Ast_simplified.assert_value_eq (expected_storage , storage)
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Ast_simplified.Misc.assert_value_eq (expected_storage , storage)
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in
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let%bind () =
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let amount = Memory_proto_alpha.Alpha_context.Tez.zero in
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@ -71,7 +71,7 @@ let expect_eq ?options program entry_point input expected =
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Ast_simplified.PP.expression result in
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error title content in
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trace expect_error @@
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Ast_simplified.assert_value_eq (expected , result) in
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Ast_simplified.Misc.assert_value_eq (expected , result) in
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expect ?options program entry_point input expecter
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let expect_evaluate program entry_point expecter =
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@ -85,7 +85,7 @@ let expect_evaluate program entry_point expecter =
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let expect_eq_evaluate program entry_point expected =
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let expecter = fun result ->
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Ast_simplified.assert_value_eq (expected , result) in
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Ast_simplified.Misc.assert_value_eq (expected , result) in
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expect_evaluate program entry_point expecter
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let expect_n_aux ?options lst program entry_point make_input make_expecter =
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@ -27,5 +27,5 @@ let init_vote () =
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ok ()
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let main = test_suite "Vote" [
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(* test "type" init_vote ; *)
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test "type" init_vote ;
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]
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@ -206,11 +206,13 @@ module Errors = struct
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] in
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error ~data title message ()
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let constant_error loc =
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let constant_error loc lst tv_opt =
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let title () = "typing constant" in
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let message () = "" in
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let data = [
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("location" , fun () -> Format.asprintf "%a" Location.pp loc ) ;
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("argument_types" , fun () -> Format.asprintf "%a" PP_helpers.(list_sep Ast_typed.PP.type_value (const " , ")) lst) ;
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("type_opt" , fun () -> Format.asprintf "%a" PP_helpers.(option Ast_typed.PP.type_value) tv_opt) ;
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] in
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error ~data title message
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end
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@ -761,7 +763,7 @@ and type_constant (name:string) (lst:O.type_value list) (tv_opt:O.type_value opt
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let%bind typer =
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trace_option (unrecognized_constant name loc) @@
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Map.String.find_opt name ct in
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trace (constant_error loc) @@
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trace (constant_error loc lst tv_opt) @@
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typer lst tv_opt
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let untype_type_value (t:O.type_value) : (I.type_expression) result =
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