adding top-level-value and set-top-level-value!, using them instead of
set and eval where appropriate adding separate integer? and integer-valued? predicates
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@ -129,6 +129,24 @@ static value_t fl_intern(value_t *args, u_int32_t nargs)
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return symbol(cvalue_data(args[0]));
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}
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static value_t fl_top_level_value(value_t *args, u_int32_t nargs)
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{
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argcount("top-level-value", nargs, 1);
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symbol_t *sym = tosymbol(args[0], "top-level-value");
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if (sym->binding == UNBOUND)
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raise(list2(UnboundError, args[0]));
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return sym->binding;
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}
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static value_t fl_set_top_level_value(value_t *args, u_int32_t nargs)
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{
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argcount("set-top-level-value!", nargs, 2);
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symbol_t *sym = tosymbol(args[0], "set-top-level-value!");
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if (sym->syntax != TAG_CONST)
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sym->binding = args[1];
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return args[1];
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}
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extern value_t LAMBDA, COMPILEDLAMBDA;
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static value_t fl_setsyntax(value_t *args, u_int32_t nargs)
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@ -202,9 +220,9 @@ static value_t fl_constantp(value_t *args, u_int32_t nargs)
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return FL_T;
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}
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static value_t fl_integerp(value_t *args, u_int32_t nargs)
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static value_t fl_integer_valuedp(value_t *args, u_int32_t nargs)
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{
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argcount("integer?", nargs, 1);
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argcount("integer-valued?", nargs, 1);
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value_t v = args[0];
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if (isfixnum(v)) {
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return FL_T;
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@ -231,6 +249,14 @@ static value_t fl_integerp(value_t *args, u_int32_t nargs)
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return FL_F;
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}
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static value_t fl_integerp(value_t *args, u_int32_t nargs)
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{
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argcount("integer?", nargs, 1);
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value_t v = args[0];
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return (isfixnum(v) ||
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(iscprim(v) && cp_numtype((cprim_t*)ptr(v)) < T_FLOAT));
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}
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static value_t fl_fixnum(value_t *args, u_int32_t nargs)
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{
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argcount("fixnum", nargs, 1);
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@ -407,13 +433,16 @@ static builtinspec_t builtin_info[] = {
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{ "symbol-syntax", fl_symbolsyntax },
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{ "environment", fl_global_env },
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{ "constant?", fl_constantp },
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{ "top-level-value", fl_top_level_value },
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{ "set-top-level-value!", fl_set_top_level_value },
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{ "raise", fl_raise },
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{ "exit", fl_exit },
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{ "intern", fl_intern },
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{ "fixnum", fl_fixnum },
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{ "truncate", fl_truncate },
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{ "integer?", fl_integerp },
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{ "integer-valued?", fl_integer_valuedp },
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{ "nconc", fl_nconc },
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{ "assq", fl_assq },
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{ "memq", fl_memq },
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@ -352,8 +352,8 @@
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(not (in-env? head env))
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(bound? head)
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(constant? head)
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(builtin? (eval head)))
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(eval head)
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(builtin? (top-level-value head)))
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(top-level-value head)
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head)))
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(let ((b (and (builtin? head)
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(builtin->instruction head))))
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@ -76,7 +76,7 @@
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(#t (rest->cps prim->cps form k argsyms))))
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(define *top-k* (gensym))
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(set *top-k* identity)
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(set-top-level-value! *top-k* identity)
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(define (cps form)
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(η-reduce
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@ -171,6 +171,7 @@ void raise(value_t e) __attribute__ ((__noreturn__));
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void type_error(char *fname, char *expected, value_t got) __attribute__ ((__noreturn__));
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void bounds_error(char *fname, value_t arr, value_t ind) __attribute__ ((__noreturn__));
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extern value_t ArgError, IOError, KeyError, MemoryError, EnumerationError;
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extern value_t UnboundError;
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static inline void argcount(char *fname, uint32_t nargs, uint32_t c)
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{
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if (__unlikely(nargs != c))
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@ -21,8 +21,6 @@
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(list 'set! form (car body))
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(list 'set! (car form) (list 'lambda (cdr form) (f-body body)))))
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(define (set s v) (eval (list 'set! s (list 'quote v))))
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(define (map f lst)
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(if (atom? lst) lst
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(cons (f (car lst)) (map f (cdr lst)))))
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@ -298,7 +296,8 @@
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(or (and (atom? x)
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(not (symbol? x)))
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(and (constant? x)
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(eq x (eval x)))))
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(symbol? x)
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(eq x (top-level-value x)))))
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(define-macro (backquote x) (bq-process x))
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@ -451,11 +450,11 @@
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(define-macro (assert expr) `(if ,expr #t (raise '(assert-failed ,expr))))
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(define (trace sym)
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(let* ((lam (eval sym))
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(let* ((lam (top-level-value sym))
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(args (cadr lam))
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(al (to-proper args)))
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(if (not (eq? (car lam) 'trace-lambda))
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(set sym
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(set-top-level-value! sym
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`(trace-lambda ,args
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(begin
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(princ "(")
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@ -469,9 +468,9 @@
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'ok)
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(define (untrace sym)
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(let ((lam (eval sym)))
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(let ((lam (top-level-value sym)))
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(if (eq? (car lam) 'trace-lambda)
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(set sym
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(set-top-level-value! sym
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(cadr (caar (last-pair (caddr lam))))))))
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(define-macro (time expr)
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@ -679,7 +678,7 @@
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(lambda (e) (begin (io.discardbuffer *input-stream*)
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(raise e))))))
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(and (not (io.eof? *input-stream*))
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(let ((V (eval (expand v))))
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(let ((V (load-process v)))
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(print V)
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(set! that V)
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#t))))
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