Merge branch 'dev' of gitlab.com:ligolang/ligo into rinderknecht@preproc
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gitlab-pages/docs/intro/FAQ.md
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gitlab-pages/docs/intro/FAQ.md
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---
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id: faq
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title: FAQ
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---
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# Frequently Asked Questions
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Before you ask...
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## Question One
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Answer.
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@ -24,23 +24,21 @@ type 'a sequence_or_record =
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let (<@) f g x = f (g x)
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let (<@) f g x = f (g x)
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(**
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(*
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Covert nsepseq to a chain of TFun's.
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Convert a nsepseq to a chain of TFun's.
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Necessary to handle cases like:
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Necessary to handle cases like:
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`type foo = (int, int) => int;`
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[type foo = (int, int) => int;]
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*)
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*)
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let rec nsepseq_to_curry hd rest =
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match hd, rest with
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let rec curry hd = function
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| hd, (sep, item) :: rest ->
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(sep, item)::rest ->
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let start = type_expr_to_region hd in
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let stop = nsepseq_to_region type_expr_to_region (hd, rest)
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let stop = nsepseq_to_region type_expr_to_region (hd, rest) in
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and start = type_expr_to_region hd in
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let region = cover start stop in
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let region = cover start stop
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TFun {
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and value = hd, sep, curry item rest
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value = hd, sep, (nsepseq_to_curry item rest);
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in TFun {value; region}
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region
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| [] -> hd
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}
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| hd, [] -> hd
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(* END HEADER *)
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(* END HEADER *)
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%}
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%}
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@ -58,6 +56,7 @@ let rec nsepseq_to_curry hd rest =
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can be reduced to [expr -> Ident], but also to
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can be reduced to [expr -> Ident], but also to
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[field_assignment -> Ident].
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[field_assignment -> Ident].
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*)
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*)
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%nonassoc Ident
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%nonassoc Ident
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%nonassoc COLON
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%nonassoc COLON
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@ -175,42 +174,32 @@ type_decl:
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in {region; value} }
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in {region; value} }
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type_expr:
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type_expr:
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cartesian | sum_type | record_type { $1 }
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fun_type | sum_type | record_type { $1 }
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type_expr_func:
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fun_type:
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"=>" cartesian {
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type_name "=>" fun_type {
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$1, $2
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let region = cover $1.region (type_expr_to_region $3)
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in TFun {region; value = TVar $1, $2, $3}
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}
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}
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| "(" fun_type ")" "=>" fun_type {
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let region = cover $1 (type_expr_to_region $5)
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in TFun {region; value = $2,$4,$5}
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}
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| "(" tuple(fun_type) ")" "=>" fun_type {
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let hd, rest = $2 in curry hd (rest @ [($4,$5)])
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}
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| "(" tuple(fun_type) ")" {
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TProd {region = cover $1 $3; value = $2}
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}
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| core_type { $1 }
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cartesian:
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type_args:
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core_type { $1 }
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tuple(fun_type) { $1 }
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| type_name type_expr_func {
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| fun_type { $1, [] }
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let (arrow, c) = $2 in
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let value = TVar $1, arrow, c in
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let region = cover $1.region (type_expr_to_region c) in
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TFun { region; value }
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}
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| "(" cartesian ")" type_expr_func {
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let (arrow, c) = $4 in
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let value = $2, arrow, c in
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let region = cover $1 (type_expr_to_region c) in
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TFun { region; value }
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}
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| "(" cartesian "," nsepseq(cartesian,",") ")" type_expr_func? {
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match $6 with
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| Some (arrow, c) ->
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let (hd, rest) = Utils.nsepseq_cons $2 $3 $4 in
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let rest = rest @ [(arrow, c)] in
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nsepseq_to_curry hd rest
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| None ->
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let value = Utils.nsepseq_cons $2 $3 $4 in
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let region = cover $1 $5 in
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TProd {region; value}
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}
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core_type:
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core_type:
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type_name { TVar $1 }
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type_name { TVar $1 }
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| par(cartesian) { TPar $1 }
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| par(fun_type) { TPar $1 }
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| module_name "." type_name {
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| module_name "." type_name {
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let module_name = $1.value in
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let module_name = $1.value in
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let type_name = $3.value in
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let type_name = $3.value in
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@ -218,12 +207,9 @@ core_type:
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let region = cover $1.region $3.region
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let region = cover $1.region $3.region
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in TVar {region; value}
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in TVar {region; value}
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}
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}
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| type_name par(nsepseq(core_type,",") { $1 }) {
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| type_name par(type_args) {
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let constr, arg = $1, $2 in
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let region = cover $1.region $2.region
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let start = constr.region
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in TApp {region; value = $1,$2} }
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and stop = arg.region in
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let region = cover start stop
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in TApp {region; value = constr,arg} }
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sum_type:
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sum_type:
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ioption("|") nsepseq(variant,"|") {
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ioption("|") nsepseq(variant,"|") {
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@ -233,7 +219,7 @@ sum_type:
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variant:
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variant:
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"<constr>" { {$1 with value={constr=$1; arg=None}} }
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"<constr>" { {$1 with value={constr=$1; arg=None}} }
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| "<constr>" "(" cartesian ")" {
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| "<constr>" "(" fun_type ")" {
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let region = cover $1.region $4
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let region = cover $1.region $4
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and value = {constr=$1; arg = Some (ghost,$3)}
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and value = {constr=$1; arg = Some (ghost,$3)}
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in {region; value} }
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in {region; value} }
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@ -274,9 +260,6 @@ let_declaration:
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let region = cover $2 stop
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let region = cover $2 stop
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in {region; value} }
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in {region; value} }
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es6_func:
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"=>" expr { $1,$2 }
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let_binding:
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let_binding:
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"<ident>" type_annotation? "=" expr {
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"<ident>" type_annotation? "=" expr {
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Scoping.check_reserved_name $1;
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Scoping.check_reserved_name $1;
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@ -452,13 +435,12 @@ type_expr_simple:
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type_annotation_simple:
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type_annotation_simple:
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":" type_expr_simple { $1,$2 }
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":" type_expr_simple { $1,$2 }
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fun_expr:
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fun_expr:
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disj_expr_level es6_func {
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disj_expr_level "=>" expr {
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let arrow, body = $2 in
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let arrow, body = $2, $3
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let kwd_fun = ghost in
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and kwd_fun = ghost in
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let start = expr_to_region $1 in
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let start = expr_to_region $1
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let stop = expr_to_region body in
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and stop = expr_to_region body in
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let region = cover start stop in
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let region = cover start stop in
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let rec arg_to_pattern = function
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let rec arg_to_pattern = function
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@ -525,8 +507,8 @@ fun_expr:
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match type_expr with
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match type_expr with
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| TProd {value; _} ->
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| TProd {value; _} ->
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let (hd, rest) = value in
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let (hd, rest) = value in
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let rest = rest @ [(arrow, expr_to_type body)] in
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let rest = rest @ [(arrow, expr_to_type body)]
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nsepseq_to_curry hd rest
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in curry hd rest
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| e ->
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| e ->
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TFun {
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TFun {
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value = e, arrow, expr_to_type body;
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value = e, arrow, expr_to_type body;
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File diff suppressed because it is too large
Load Diff
3
src/test/contracts/tuple_list.religo
Normal file
3
src/test/contracts/tuple_list.religo
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type z = list((int, int));
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let o: z = [(2,4), (4, 6)];
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@ -2316,6 +2316,10 @@ let no_semicolon_religo () : unit result =
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in
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in
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ok ()
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ok ()
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let tuple_list_religo () : unit result =
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let%bind _ = retype_file "./contracts/tuple_list.religo" in
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ok ()
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let loop_bugs_ligo () : unit result =
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let loop_bugs_ligo () : unit result =
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let%bind program = type_file "./contracts/loop_bugs.ligo" in
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let%bind program = type_file "./contracts/loop_bugs.ligo" in
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let input = e_unit () in
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let input = e_unit () in
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@ -2502,4 +2506,5 @@ let main = test_suite "Integration (End to End)" [
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test "tuple type (religo)" tuple_type_religo ;
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test "tuple type (religo)" tuple_type_religo ;
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test "no semicolon (religo)" no_semicolon_religo ;
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test "no semicolon (religo)" no_semicolon_religo ;
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test "loop_bugs (ligo)" loop_bugs_ligo ;
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test "loop_bugs (ligo)" loop_bugs_ligo ;
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test "tuple_list (religo)" tuple_list_religo ;
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]
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]
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