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parser.mly
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parser.mly
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%{
open Util
%}
(* Infix operations a la OCaml *)
%token <string Util.Location.t> PREFIXOP INFIXOP0 INFIXOP1 INFIXOP2 INFIXOP3 INFIXOP4
(* Names *)
%token <string> NAME
%token UNDERSCORE
(* Parentheses & punctuations *)
%token LPAREN RPAREN
%token COLONEQ
%token COMMA COLON DARROW ARROW
(* Expressions *)
%token LET IN
%token TYPE
%token PROD
%token LAMBDA
(* Toplevel commands *)
%token <string> QUOTED_STRING
%token LOAD
%token DEF
%token CHECK
%token EVAL
%token AXIOM
(* End of input token *)
%token EOF
(* Precedence and fixity of infix operators *)
%left INFIXOP0
%right INFIXOP1
%left INFIXOP2
%left INFIXOP3
%right INFIXOP4
%start <Syntax.toplevel list> file
%start <Syntax.toplevel> commandline
%%
file:
| f=filecontents EOF
{ f }
filecontents:
|
{ [] }
| d=topcomp ds=filecontents
{ d :: ds }
commandline:
| topcomp EOF
{ $1 }
(* Things that can be defined on toplevel. *)
topcomp: mark_location(topcomp_) { $1 }
topcomp_:
| LOAD fn=QUOTED_STRING
{ Syntax.TopLoad fn }
| DEF x=var_name COLONEQ e=term
{ Syntax.TopDefinition (x, e) }
| CHECK e=term
{ Syntax.TopCheck e }
| EVAL e=term
{ Syntax.TopEval e }
| AXIOM x=var_name COLON e=term
{ Syntax.TopAxiom (x, e) }
term : mark_location(term_) { $1 }
term_:
| e=infix_term_
{ e }
| PROD a=prod_abstraction COMMA e=term
{ Syntax.prod a e }
| e1=infix_term ARROW e2=term
{ Syntax.arrow e1 e2 }
| LAMBDA a=lambda_abstraction DARROW e=term
{ Syntax.lambda a e }
| LET x=var_name COLONEQ e1=term IN e2=term
{ Syntax.Let (x, e1, e2) }
| e=infix_term COLON t=term
{ Syntax.Ascribe (e, t) }
infix_term: mark_location(infix_term_) { $1 }
infix_term_:
| e=app_term_
{ e }
| e2=infix_term oploc=infix e3=infix_term
{ let {Location.data=op; loc} = oploc in
let op = Location.locate ~loc (Syntax.Var op) in
let e1 = Location.locate ~loc (Syntax.Apply (op, e2)) in
Syntax.Apply (e1, e3)
}
app_term: mark_location(app_term_) { $1 }
app_term_:
| e=prefix_term_
{ e }
| e1=app_term e2=prefix_term
{ Syntax.Apply (e1, e2) }
prefix_term: mark_location(prefix_term_) { $1 }
prefix_term_:
| e=simple_term_
{ e }
| oploc=prefix e2=prefix_term
{ let {Location.data=op; loc} = oploc in
let op = Location.locate ~loc (Syntax.Var op) in
Syntax.Apply (op, e2)
}
(* simple_term : mark_location(simple_term_) { $1 } *)
simple_term_:
| LPAREN e=term_ RPAREN
{ e }
| TYPE
{ Syntax.Type }
| x=var_name
{ Syntax.Var x }
var_name:
| NAME
{ $1 }
| LPAREN op=infix RPAREN
{ op.Location.data }
| LPAREN op=prefix RPAREN
{ op.Location.data }
| UNDERSCORE
{ Name.anonymous () }
%inline infix:
| op=INFIXOP0
{ op }
| op=INFIXOP1
{ op }
| op=INFIXOP2
{ op }
| op=INFIXOP3
{ op }
| op=INFIXOP4
{ op }
%inline prefix:
| op=PREFIXOP
{ op }
lambda_abstraction:
| lst=nonempty_list(binder)
{ lst }
prod_abstraction:
| lst=nonempty_list(typed_binder)
{ lst }
typed_binder: mark_location(typed_binder_) { $1 }
typed_binder_:
| LPAREN xs=nonempty_list(var_name) COLON t=term RPAREN
{ (xs, t) }
binder: mark_location(binder_) { $1 }
binder_:
| LPAREN xs=nonempty_list(var_name) COLON t=term RPAREN
{ (xs, Some t) }
| x=var_name
{ ([x], None) }
mark_location(X):
| x=X
{ Location.locate ~loc:(Location.make $startpos $endpos) x }
%%