Micheline: small improvements to the tests
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10c2406ce6
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@ -66,7 +66,6 @@ let test_tokenize_basic () =
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assert_tokenize ~loc:__LOC__ "0xabc" [ Bytes "0xabc" ] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "0x" [ Bytes "0x" ] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "0x1" [ Bytes "0x1" ] >>=? fun () ->
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(*FIXME why xabc is is not equal *)
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assert_tokenize_error ~loc:__LOC__ "xabc" [ Bytes "xabc" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "1xabc" [ Bytes "1xabc" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "1c" [ Bytes "1c" ] >>=? fun () ->
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@ -85,7 +84,6 @@ let test_tokenize_basic () =
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assert_tokenize ~loc:__LOC__ "-1" [ Int "-1" ] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "1" [ Int "1" ] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "-10" [ Int "-10" ] >>=? fun () ->
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(*FIXME it is not equal*)
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assert_tokenize_error ~loc:__LOC__ ".1000" [ Int ".1000" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "10_00" [ Int "10_00" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "1,000" [ Int "1,000" ] >>=? fun () ->
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@ -123,7 +121,8 @@ let test_tokenize_basic () =
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assert_tokenize_error ~loc:__LOC__ "$$t" [ Annot "$$t" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "_from" [ Annot "_from" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ ".from" [ Annot ".from" ] >>=? fun () ->
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(*FIXME: why these cases below are not equal? and fail and not the %@?*)
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(*NOTE: the cases below fail because ':' is used in the middle of the
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annotation. *)
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assert_tokenize_error ~loc:__LOC__ "%:from" [ Annot "%:from" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "%:@from" [ Annot "%:@from" ] >>=? fun () ->
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assert_tokenize_error ~loc:__LOC__ "::t" [ Annot "::t" ] >>=? fun () ->
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@ -166,15 +165,15 @@ let test_one_line_contract () =
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[Ident "PUSH"; Ident "string"; String "abc"; Semi] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "DROP; SWAP"
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[Ident "DROP"; Semi; Ident "SWAP"] >>=? fun () ->
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(*FIXME: these cases do not fail? *)
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(* NOTE: the cases below do not fail because we only do tokenization. *)
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assert_tokenize ~loc:__LOC__ "DIP {ADD"
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[Ident "DIP"; Open_brace; Ident "ADD"] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "(option int"
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[Open_paren; Ident "option"; Ident "int"] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "parameter int}"
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[Ident "parameter"; Ident "int"; Close_brace] >>=? fun () ->
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assert_tokenize ~loc:__LOC__ "(option int"
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[Open_paren; Ident "option"; Ident "int"]
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assert_tokenize ~loc:__LOC__ "}{}{}{"
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[Close_brace; Open_brace; Close_brace; Open_brace; Close_brace; Open_brace]
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(*********************************)
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(* Conditional contracts *)
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@ -203,7 +202,7 @@ let test_condition_contract () =
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Close_brace; Close_brace; Close_brace; Semi;
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Ident "UNIT"; Semi; Ident "SWAP"; Semi; Ident "PAIR"; Close_brace
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] >>=? fun () ->
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(*FIXME: this case should fail because it is missing the close_paren?*)
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(* NOTE: the cases below do not fail because we only do tokenization. *)
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assert_tokenize ~loc:__LOC__
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"parameter (or string (option int);"
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[Ident "parameter"; Open_paren; Ident "or"; Ident "string"; Open_paren;
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@ -259,7 +258,7 @@ let test_basic_parsing () =
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[Prim ((), "int", [], []);
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Int ((), Z.of_int 100)],
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[])] >>=? fun () ->
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(*FIXME: this case should fail *)
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(*NOTE: this case doesn't fail because we don't type check *)
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assert_toplevel_parsing ~loc:__LOC__ "PUSH string 100"
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[Prim ((), "PUSH",
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[Prim ((), "string", [], []);
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