add predecessor timestamp to the CLI
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@ -66,7 +66,7 @@ let amount =
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let open Arg in
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let info =
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let docv = "AMOUNT" in
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let doc = "$(docv) is the amount the dry-run transaction will use." in
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let doc = "$(docv) is the amount the michelson interpreter will use." in
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info ~docv ~doc ["amount"] in
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value @@ opt string "0" info
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@ -74,7 +74,7 @@ let sender =
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let open Arg in
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let info =
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let docv = "SENDER" in
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let doc = "$(docv) is the sender the dry-run transaction will use." in
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let doc = "$(docv) is the sender the michelson interpreter transaction will use." in
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info ~docv ~doc ["sender"] in
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value @@ opt (some string) None info
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@ -82,10 +82,18 @@ let source =
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let open Arg in
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let info =
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let docv = "SOURCE" in
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let doc = "$(docv) is the source the dry-run transaction will use." in
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let doc = "$(docv) is the source the michelson interpreter transaction will use." in
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info ~docv ~doc ["source"] in
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value @@ opt (some string) None info
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let predecessor_timestamp =
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let open Arg in
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let info =
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let docv = "PREDECESSOR_TIMESTAMP" in
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let doc = "$(docv) is the pedecessor_timestamp the michelson interpreter transaction will use (e.g. '2000-01-01T10:10:10Z')" in
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info ~docv ~doc ["predecessor-timestamp"] in
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value @@ opt (some string) None info
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let display_format =
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let open Arg in
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let info =
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@ -176,7 +184,7 @@ let compile_parameter =
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(Term.ret term , Term.info ~doc cmdname)
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let interpret =
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let f expression init_file syntax amount sender source display_format =
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let f expression init_file syntax amount sender source predecessor_timestamp display_format =
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toplevel ~display_format @@
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let%bind (decl_list,state,env) = match init_file with
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| Some init_file ->
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@ -192,13 +200,13 @@ let interpret =
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let%bind (typed_exp,_) = Compile.Of_simplified.compile_expression ~env ~state simplified_exp in
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let%bind mini_c_exp = Compile.Of_typed.compile_expression typed_exp in
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let%bind compiled_exp = Compile.Of_mini_c.aggregate_and_compile_expression decl_list mini_c_exp in
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let%bind options = Run.make_dry_run_options {amount ; sender ; source } in
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let%bind options = Run.make_dry_run_options {predecessor_timestamp ; amount ; sender ; source } in
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let%bind value = Run.run ~options compiled_exp.expr compiled_exp.expr_ty in
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let%bind simplified_output = Uncompile.uncompile_expression typed_exp.type_annotation value in
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ok @@ Format.asprintf "%a\n" Ast_simplified.PP.expression simplified_output
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in
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let term =
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Term.(const f $ expression "EXPRESSION" 0 $ init_file $ syntax $ amount $ sender $ source $ display_format ) in
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Term.(const f $ expression "EXPRESSION" 0 $ init_file $ syntax $ amount $ sender $ source $ predecessor_timestamp $ display_format ) in
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let cmdname = "interpret" in
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let doc = "Subcommand: interpret the expression in the context initialized by the provided source file." in
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(Term.ret term , Term.info ~doc cmdname)
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@ -233,7 +241,7 @@ let compile_storage =
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(Term.ret term , Term.info ~doc cmdname)
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let dry_run =
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let f source_file entry_point storage input amount sender source syntax display_format =
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let f source_file entry_point storage input amount sender source predecessor_timestamp syntax display_format =
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toplevel ~display_format @@
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let%bind simplified = Compile.Of_source.compile source_file (Syntax_name syntax) in
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let%bind typed_prg,state = Compile.Of_simplified.compile simplified in
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@ -251,20 +259,20 @@ let dry_run =
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let%bind compiled_params = Compile.Of_mini_c.compile_expression mini_c in
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let%bind args_michelson = Run.evaluate_expression compiled_params.expr compiled_params.expr_ty in
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let%bind options = Run.make_dry_run_options {amount ; sender ; source } in
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let%bind options = Run.make_dry_run_options {predecessor_timestamp ; amount ; sender ; source } in
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let%bind michelson_output = Run.run_contract ~options michelson_prg.expr michelson_prg.expr_ty args_michelson in
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let%bind simplified_output = Uncompile.uncompile_typed_program_entry_function_result typed_prg entry_point michelson_output in
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ok @@ Format.asprintf "%a\n" Ast_simplified.PP.expression simplified_output
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in
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let term =
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Term.(const f $ source_file 0 $ entry_point 1 $ expression "PARAMETER" 2 $ expression "STORAGE" 3 $ amount $ sender $ source $ syntax $ display_format) in
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Term.(const f $ source_file 0 $ entry_point 1 $ expression "PARAMETER" 2 $ expression "STORAGE" 3 $ amount $ sender $ source $ predecessor_timestamp $ syntax $ display_format) in
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let cmdname = "dry-run" in
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let doc = "Subcommand: run a smart-contract with the given storage and input." in
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(Term.ret term , Term.info ~doc cmdname)
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let run_function =
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let f source_file entry_point parameter amount sender source syntax display_format =
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let f source_file entry_point parameter amount sender source predecessor_timestamp syntax display_format =
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toplevel ~display_format @@
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let%bind v_syntax = Helpers.syntax_to_variant (Syntax_name syntax) (Some source_file) in
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let%bind simplified_prg = Compile.Of_source.compile source_file (Syntax_name syntax) in
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@ -278,32 +286,32 @@ let run_function =
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let%bind compiled_applied = Compile.Of_typed.compile_expression typed_app in
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let%bind michelson = Compile.Of_mini_c.aggregate_and_compile_expression mini_c_prg compiled_applied in
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let%bind options = Run.make_dry_run_options {amount ; sender ; source } in
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let%bind options = Run.make_dry_run_options {predecessor_timestamp ; amount ; sender ; source } in
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let%bind michelson_output = Run.run ~options michelson.expr michelson.expr_ty in
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let%bind simplified_output = Uncompile.uncompile_typed_program_entry_function_result typed_prg entry_point michelson_output in
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ok @@ Format.asprintf "%a\n" Ast_simplified.PP.expression simplified_output
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in
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let term =
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Term.(const f $ source_file 0 $ entry_point 1 $ expression "PARAMETER" 2 $ amount $ sender $ source $ syntax $ display_format) in
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Term.(const f $ source_file 0 $ entry_point 1 $ expression "PARAMETER" 2 $ amount $ sender $ source $ predecessor_timestamp $ syntax $ display_format) in
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let cmdname = "run-function" in
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let doc = "Subcommand: run a function with the given parameter." in
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(Term.ret term , Term.info ~doc cmdname)
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let evaluate_value =
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let f source_file entry_point amount sender source syntax display_format =
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let f source_file entry_point amount sender source predecessor_timestamp syntax display_format =
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toplevel ~display_format @@
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let%bind simplified = Compile.Of_source.compile source_file (Syntax_name syntax) in
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let%bind typed_prg,_ = Compile.Of_simplified.compile simplified in
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let%bind mini_c = Compile.Of_typed.compile typed_prg in
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let%bind (exp,_) = Mini_c.get_entry mini_c entry_point in
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let%bind compiled = Compile.Of_mini_c.aggregate_and_compile_expression mini_c exp in
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let%bind options = Run.make_dry_run_options {amount ; sender ; source } in
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let%bind options = Run.make_dry_run_options {predecessor_timestamp ; amount ; sender ; source } in
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let%bind michelson_output = Run.run ~options compiled.expr compiled.expr_ty in
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let%bind simplified_output = Uncompile.uncompile_typed_program_entry_expression_result typed_prg entry_point michelson_output in
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ok @@ Format.asprintf "%a\n" Ast_simplified.PP.expression simplified_output
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in
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let term =
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Term.(const f $ source_file 0 $ entry_point 1 $ amount $ sender $ source $ syntax $ display_format) in
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Term.(const f $ source_file 0 $ entry_point 1 $ amount $ sender $ source $ predecessor_timestamp $ syntax $ display_format) in
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let cmdname = "evaluate-value" in
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let doc = "Subcommand: evaluate a given definition." in
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(Term.ret term , Term.info ~doc cmdname)
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@ -16,6 +16,7 @@ type run_failwith_res =
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type dry_run_options =
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{ amount : string ;
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predecessor_timestamp : string option ;
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sender : string option ;
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source : string option }
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@ -44,7 +45,14 @@ let make_dry_run_options (opts : dry_run_options) : options result =
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(simple_error "invalid source address")
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(Contract.of_b58check source) in
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ok (Some source) in
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ok @@ make_options ~amount ?source:sender ?payer:source ()
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let%bind predecessor_timestamp =
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match opts.predecessor_timestamp with
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| None -> ok None
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| Some st ->
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match Memory_proto_alpha.Protocol.Alpha_context.Timestamp.of_notation st with
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| Some t -> ok (Some t)
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| None -> simple_fail "bad timestamp notation" in
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ok @@ make_options ?predecessor_timestamp:predecessor_timestamp ~amount ?source:sender ?payer:source ()
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let ex_value_ty_to_michelson (v : ex_typed_value) : Michelson.t result =
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let (Ex_typed_value (value , ty)) = v in
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@ -43,26 +43,22 @@ let storage st = e_timestamp (Int64.to_int @@ to_sec st)
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let early_call () =
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let%bind program,_ = get_program () in
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let%bind now = mk_time "2000-01-01T00:10:10Z" in
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let%bind predecessor_timestamp = mk_time "2000-01-01T00:10:10Z" in
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let%bind lock_time = mk_time "2000-01-01T10:10:10Z" in
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let init_storage = storage lock_time in
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let options =
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let tezos_context = { Proto_alpha_utils.Memory_proto_alpha.dummy_environment.tezos_context with
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predecessor_timestamp = now ; } in
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Proto_alpha_utils.Memory_proto_alpha.make_options ~tezos_context () in
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Proto_alpha_utils.Memory_proto_alpha.make_options ~predecessor_timestamp () in
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let exp_failwith = "Contract is still time locked" in
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expect_string_failwith ~options program "main"
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(e_pair (call empty_message) init_storage) exp_failwith
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let call_on_time () =
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let%bind program,_ = get_program () in
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let%bind now = mk_time "2000-01-01T10:10:10Z" in
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let%bind predecessor_timestamp = mk_time "2000-01-01T10:10:10Z" in
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let%bind lock_time = mk_time "2000-01-01T00:10:10Z" in
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let init_storage = storage lock_time in
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let options =
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let tezos_context = { Proto_alpha_utils.Memory_proto_alpha.dummy_environment.tezos_context with
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predecessor_timestamp = now ; } in
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Proto_alpha_utils.Memory_proto_alpha.make_options ~tezos_context () in
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Proto_alpha_utils.Memory_proto_alpha.make_options ~predecessor_timestamp () in
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expect_eq ~options program "main"
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(e_pair (call empty_message) init_storage) (e_pair empty_op_list init_storage)
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@ -1066,13 +1066,16 @@ type options = {
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let make_options
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?(tezos_context = dummy_environment.tezos_context)
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?(predecessor_timestamp = dummy_environment.tezos_context.predecessor_timestamp)
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?(source = (List.nth dummy_environment.identities 0).implicit_contract)
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?(self = (List.nth dummy_environment.identities 0).implicit_contract)
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?(payer = (List.nth dummy_environment.identities 1).implicit_contract)
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?(amount = Alpha_context.Tez.one)
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?(chain_id = Environment.Chain_id.zero)
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()
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= {
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=
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let tezos_context = { tezos_context with predecessor_timestamp } in
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{
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tezos_context ;
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source ;
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self ;
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