Add support for returning multiple variables but generate C errors, as we keep returning variables for void functions
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@ -84,6 +84,8 @@ let rec pp_asnprevarlist node_name fmt : t_varlist -> unit = function
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let reset_expressions_counter = ref 0;;
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let reset_expressions_counter = ref 0;;
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let outputs = ref [];;
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let pp_expression node_name =
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let pp_expression node_name =
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let rec pp_expression_aux fmt expression =
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let rec pp_expression_aux fmt expression =
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let rec pp_expression_list fmt exprs =
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let rec pp_expression_list fmt exprs =
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@ -189,8 +191,13 @@ let pp_expression node_name =
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let rec pp_equations node_name fmt: t_eqlist -> unit = function
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let rec pp_equations node_name fmt: t_eqlist -> unit = function
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| [] -> ()
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| [] -> ()
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| ((l_types, vars), (EApp (r_types, node, exprs))) :: eqs when l_types <> [] -> Format.fprintf fmt "%a" (pp_equations node_name) ((([], []), (EApp (r_types, node, exprs))) :: eqs)
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| (([], []), (ETuple ([], []))) :: eqs -> Format.fprintf fmt "%a" (pp_equations node_name) eqs
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| (([], []), (ETuple ([], []))) :: eqs -> Format.fprintf fmt "%a" (pp_equations node_name) eqs
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| ((l_type :: l_types, var :: vars), (ETuple (r_type :: r_types, expr :: exprs))) :: eqs -> Format.fprintf fmt "%a" (pp_equations node_name) ((([l_type], [var]), expr) :: ((l_types, vars), (ETuple (r_types, exprs))) :: eqs)
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| ((l_type :: l_types, var :: vars), (ETuple (r_type :: r_types, expr :: exprs))) :: eqs -> Format.fprintf fmt "%a" (pp_equations node_name) ((([l_type], [var]), expr) :: ((l_types, vars), (ETuple (r_types, exprs))) :: eqs)
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| (([], []), expr) :: eqs ->
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Format.fprintf fmt "\t%a;\n%a"
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(pp_expression node_name) expr
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(pp_equations node_name) eqs
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| (patt, expr) :: eqs ->
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| (patt, expr) :: eqs ->
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Format.fprintf fmt "\t%a = %a;\n%a"
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Format.fprintf fmt "\t%a = %a;\n%a"
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(pp_varlist Base) patt
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(pp_varlist Base) patt
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@ -212,19 +219,19 @@ let pp_node fmt node =
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reset_expressions_counter := 0;
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reset_expressions_counter := 0;
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let _ = (pp_equations node.n_name) Format.str_formatter node.n_equations in
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let _ = (pp_equations node.n_name) Format.str_formatter node.n_equations in
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reset_expressions_counter := 0;
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reset_expressions_counter := 0;
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Format.fprintf fmt "bool init_%s = true;\n\n%a\n\n%a\n\n%a\n\n%s\n\n%a %s(%a)\n{\n\t%a\n\n\t%a\n\n%a\n\tinit_%s = false;\n\n%a\n\n%a\n\n%a\n\n\treturn %a;\n}\n"
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(* could remove the `return` for functions other than the `main` one *)
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Format.fprintf fmt "bool init_%s = true;\n\n%a\n\n%a\n\n%a\n\n%s\n\n%s %s(%a)\n{\n\t%a\n\n%a\n\n\tinit_%s = false;\n\n%a\n\n%a\n\n%a\n\n\treturn %a;\n}\n"
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node.n_name
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node.n_name
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(* could avoid declaring unused variables *)
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(* could avoid declaring unused variables *)
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(pp_prevarlist node.n_name) node.n_inputs
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(pp_prevarlist node.n_name) node.n_inputs
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(pp_prevarlist node.n_name) node.n_local_vars
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(pp_prevarlist node.n_name) node.n_local_vars
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(pp_prevarlist node.n_name) node.n_outputs
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(pp_prevarlist node.n_name) node.n_outputs
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(pp_resvars !reset_expressions_counter)
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(pp_resvars !reset_expressions_counter)
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pp_retvarlist node.n_outputs
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(if node.n_name = "main" then "int" else "void")
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node.n_name
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node.n_name
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(* could avoid newlines if they aren't used to seperate statements *)
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(* could avoid newlines if they aren't used to seperate statements *)
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(pp_varlist Arg) node.n_inputs
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(pp_varlist Arg) node.n_inputs
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(pp_varlist Dec) node.n_local_vars
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(pp_varlist Dec) node.n_local_vars
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(pp_varlist Dec) node.n_outputs
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(pp_equations node.n_name) node.n_equations
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(pp_equations node.n_name) node.n_equations
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node.n_name
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node.n_name
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(pp_asnprevarlist node.n_name) node.n_inputs
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(pp_asnprevarlist node.n_name) node.n_inputs
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@ -238,9 +245,24 @@ let rec pp_nodes fmt nodes =
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| node :: nodes ->
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| node :: nodes ->
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Format.fprintf fmt "%a\n%a" pp_node node pp_nodes nodes
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Format.fprintf fmt "%a\n%a" pp_node node pp_nodes nodes
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let rec load_outputs_from_vars n_outputs =
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match n_outputs with
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| [] -> ()
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| BVar n_output :: n_outputs
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| IVar n_output :: n_outputs
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| RVar n_output :: n_outputs ->
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(if (not (List.mem n_output !outputs)) then outputs := n_output :: !outputs;); load_outputs_from_vars n_outputs
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let rec load_outputs_from_nodes nodes =
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match nodes with
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| [] -> ()
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| node :: nodes ->
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(load_outputs_from_vars (snd node.n_outputs)); load_outputs_from_nodes nodes
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let ast_to_c fmt prog =
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let ast_to_c fmt prog =
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load_outputs_from_nodes prog;
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Format.fprintf fmt
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Format.fprintf fmt
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(* could verify that uses, possibly indirectly (cf `->` implementation), a boolean in the ast before including `<stdbool.h>` *)
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(* could verify that uses, possibly indirectly (cf `->` implementation), a boolean in the ast before including `<stdbool.h>` *)
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"#include <stdbool.h>\n\n%a"
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"#include <stdbool.h>\n\n%s\n\n%a"
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pp_nodes prog
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("float " ^ (String.concat ", " !outputs) ^ ";") pp_nodes prog
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