Evaluation is now performed properly, mimicking Common Lisp, and basic defun and defmacro definitions are provided (automatically executed on startup)
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		@@ -19,6 +19,7 @@ type lisp_val =
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  that it receives all of its arguments completely unevaluated
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  in a compiled lisp this would probably make more of a difference *)
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  | LMacro of string * environment * lisp_val * lisp_val
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  | LUnnamedMacro of environment * lisp_val * lisp_val
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  | LQuoted of lisp_val
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and environment = (string, lisp_val) Hashtbl.t list
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@@ -59,7 +60,9 @@ let rec dbg_print_one v =
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    (dbg_print_one args)
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  | LFunction (name, _, args, _) -> pf "<function: '%s' lambda-list: %s>" 
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    name (dbg_print_one args)
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  | LMacro (name, _, args, _) -> pf "<function '%s' lambda-list: %s>"
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  | LUnnamedMacro (_, args, _) -> pf "<unnamed macro, lambda-list: %s>"
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    (dbg_print_one args)
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  | LMacro (name, _, args, _) -> pf "<macro '%s' lambda-list: %s>"
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    name (dbg_print_one args)
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  | LQuoted v -> pf "<quote: %s>" (dbg_print_one v)
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  (*| _ -> "<Something else>"*)
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										54
									
								
								lib/eval.ml
									
									
									
									
									
								
							
							
						
						
									
										54
									
								
								lib/eval.ml
									
									
									
									
									
								
							@@ -8,12 +8,6 @@ let add_builtin s f =
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  env_set_global default_env s (LBuiltinFunction (s, f))
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let add_special s f =
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  env_set_global default_env s (LBuiltinSpecial (s, f))
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let () = add_builtin "+" iadd
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let () = add_builtin "-" isub
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let () = add_builtin "car" car
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let () = add_builtin "cdr" cdr
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let () = add_builtin "bind-symbol" bind_symbol 
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let () = add_special "lambda" lambda
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let make_env () = [Hashtbl.copy (List.hd default_env)]
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@@ -52,12 +46,16 @@ and eval_body env body =
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and err s = raise (Invalid_argument s)
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and bind_args env = function
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  | LNil -> (function
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      | LNil -> () | _ -> err "bind_args")
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      | LNil -> ()
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      | _ -> err "cannot bind arguments")
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  | LSymbol s ->
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    (function
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      | v -> env_set_local env s v; ())
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  | LCons (LSymbol hl, tl) -> (function
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      | LCons (ha, ta) -> 
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        env_set_local env hl ha;
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        bind_args env tl ta;
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      | _ -> err "bind_args")
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      | _ -> err "cannot bind arguments")
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  | _ -> fun _ -> err "bind_args"
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and eval_apply args = function
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@@ -66,6 +64,7 @@ and eval_apply args = function
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    let lexical_env = env_new_lexical e in
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    bind_args lexical_env l args;
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    eval_body lexical_env b
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  | LUnnamedMacro (e, l, b)
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  | LMacro (_, e, l, b) ->
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    let lexical_env = env_new_lexical e in
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    bind_args lexical_env l args;
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@@ -86,10 +85,45 @@ and eval_call env func args =
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  | LFunction _ -> eval_apply (eval_list env args) func
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  (* Macros are the same, they just return code that *will* be evaluated
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  in the calling environment *)
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  | LMacro _ -> eval_apply args func
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  | LUnnamedMacro _
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  | LMacro _ -> eval_one env (eval_apply args func)
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  | v -> raise (Invalid_argument 
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        (Printf.sprintf "eval_apply: cannot call non-function object %s" (dbg_print_one v)));;
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                  (Printf.sprintf "eval_apply: cannot call non-function object %s" (dbg_print_one v)))
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and (* This only creates a *local* binding, contained to the body given. *)
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  bind_local env =
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  function
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  | LCons (LSymbol s, LCons (v, body)) ->
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    let e = env_new_lexical env in
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    env_set_local e s v;
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    eval_body e body
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  | _ -> invalid_arg "invalid argument to bind-local"
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let eval_all env vs =
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  let ev v = eval_one env v in
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  List.map ev vs
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let () = add_builtin "+" iadd
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let () = add_builtin "-" isub
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let () = add_builtin "car" car
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let () = add_builtin "cdr" cdr
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let () = add_builtin "cons" cons
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let () = add_builtin "bind-symbol" bind_symbol 
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let () = add_builtin "list" lisp_list
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let () = add_special "lambda" lambda
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let () = add_special "lambda-macro" lambda_macro
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let () = add_special "let-one" bind_local
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let () = add_special "quote" (fun _ -> function
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    | LCons (x, LNil) -> x
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                         | _ -> invalid_arg "hmm")
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(* I know this looks insane. please trust me. *)
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let _ = eval_all default_env (Read.parse_str "
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(bind-symbol 'defun
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  (lambda-macro (name lm . body)
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    (list 'bind-symbol (list 'quote name) (cons 'lambda (cons lm body)))))
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(bind-symbol 'defmacro
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  (lambda-macro (name lm . body)
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    (list 'bind-symbol (list 'quote name) (cons 'lambda-macro (cons lm body)))))")
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@@ -44,6 +44,13 @@ let cdr _ vs =
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  | LCons (LCons (_, b), LNil) -> b
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  | _ -> raise (Invalid_argument "cdr: invalid argument")
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let cons _ vs =
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  match vs with
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  | LCons (a, LCons (b, LNil)) -> LCons (a, b)
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  | _ -> invalid_arg "invalid args to cons!"
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let lisp_list _ vs = vs
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(* This is the special built-in function that allows us to create
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a new function.
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@@ -57,16 +64,23 @@ let bind_symbol env =
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  (* Special case for setting a function to a symbol, if the function
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     is a lambda then we turn it into a real "function" by giving it this
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     new name *)
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  | LCons (LQuoted (LSymbol s), LCons (LLambda (e, l, b), LNil))
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  | LCons (LSymbol s, LCons (LLambda (e, l, b), LNil)) ->
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    let f = LFunction (s, e, l, b) in
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    env_set_global env s f;
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    f
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  | LCons (LQuoted (LSymbol s), LCons (v, LNil))
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  | LCons (LSymbol s, LCons (v, LNil)) ->
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    env_set_global env s v;
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    v
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  | _ -> raise (Invalid_argument "invalid args to set!")
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let lambda env = function
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  | LCons (l, body) ->
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    LLambda (env, l, body)
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  | _ -> raise (Invalid_argument "invalid args to lambda!")
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let lambda_macro env = function
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  | LCons (l, body) -> LUnnamedMacro (env, l, body)
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  | _ -> invalid_arg "invalid args to lambda-macro"
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