317 lines
10 KiB
C
317 lines
10 KiB
C
#ifndef _FLISP_H_
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#define _FLISP_H_
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typedef uptrint_t value_t;
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typedef int_t fixnum_t;
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#ifdef BITS64
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#define T_FIXNUM T_INT64
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#else
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#define T_FIXNUM T_INT32
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#endif
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typedef struct {
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value_t car;
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value_t cdr;
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} cons_t;
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typedef struct _symbol_t {
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uptrint_t flags;
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value_t binding; // global value binding
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struct _fltype_t *type;
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uint32_t hash;
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void *dlcache; // dlsym address
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// below fields are private
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struct _symbol_t *left;
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struct _symbol_t *right;
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union {
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char name[1];
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void *_pad; // ensure field aligned to pointer size
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};
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} symbol_t;
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#define TAG_NUM 0x0
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#define TAG_CPRIM 0x1
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#define TAG_FUNCTION 0x2
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#define TAG_VECTOR 0x3
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#define TAG_NUM1 0x4
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#define TAG_CVALUE 0x5
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#define TAG_SYM 0x6
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#define TAG_CONS 0x7
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#define UNBOUND ((value_t)0x1) // an invalid value
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#define TAG_FWD UNBOUND
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#define tag(x) ((x)&0x7)
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#define ptr(x) ((void*)((x)&(~(value_t)0x7)))
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#define tagptr(p,t) (((value_t)(p)) | (t))
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#define fixnum(x) ((value_t)(((fixnum_t)(x))<<2))
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#define numval(x) (((fixnum_t)(x))>>2)
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#ifdef BITS64
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#define fits_fixnum(x) (((x)>>61) == 0 || (~((x)>>61)) == 0)
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#else
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#define fits_fixnum(x) (((x)>>29) == 0 || (~((x)>>29)) == 0)
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#endif
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#define fits_bits(x,b) (((x)>>(b-1)) == 0 || (~((x)>>(b-1))) == 0)
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#define uintval(x) (((unsigned int)(x))>>3)
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#define builtin(n) tagptr((((int)n)<<3), TAG_FUNCTION)
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#define iscons(x) (tag(x) == TAG_CONS)
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#define issymbol(x) (tag(x) == TAG_SYM)
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#define isfixnum(x) (((x)&3) == TAG_NUM)
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#define bothfixnums(x,y) ((((x)|(y))&3) == TAG_NUM)
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#define isbuiltin(x) ((tag(x) == TAG_FUNCTION) && uintval(x) <= OP_ASET)
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#define isvector(x) (tag(x) == TAG_VECTOR)
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#define iscvalue(x) (tag(x) == TAG_CVALUE)
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#define iscprim(x) (tag(x) == TAG_CPRIM)
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#define selfevaluating(x) (tag(x)<6)
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// comparable with ==
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#define eq_comparable(a,b) (!(((a)|(b))&1))
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#define eq_comparablep(a) (!((a)&1))
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// doesn't lead to other values
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#define leafp(a) (((a)&3) != 3)
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#define isforwarded(v) (((value_t*)ptr(v))[0] == TAG_FWD)
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#define forwardloc(v) (((value_t*)ptr(v))[1])
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#define forward(v,to) do { (((value_t*)ptr(v))[0] = TAG_FWD); \
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(((value_t*)ptr(v))[1] = to); } while (0)
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#define vector_size(v) (((size_t*)ptr(v))[0]>>2)
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#define vector_setsize(v,n) (((size_t*)ptr(v))[0] = ((n)<<2))
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#define vector_elt(v,i) (((value_t*)ptr(v))[1+(i)])
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#define vector_grow_amt(x) ((x)<8 ? 4 : 6*((x)>>3))
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// functions ending in _ are unsafe, faster versions
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#define car_(v) (((cons_t*)ptr(v))->car)
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#define cdr_(v) (((cons_t*)ptr(v))->cdr)
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#define car(v) (tocons((v),"car")->car)
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#define cdr(v) (tocons((v),"cdr")->cdr)
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#define fn_bcode(f) (((value_t*)ptr(f))[0])
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#define fn_vals(f) (((value_t*)ptr(f))[1])
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#define fn_env(f) (((value_t*)ptr(f))[2])
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#define fn_name(f) (((value_t*)ptr(f))[3])
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#define set(s, v) (((symbol_t*)ptr(s))->binding = (v))
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#define setc(s, v) do { ((symbol_t*)ptr(s))->flags |= 1; \
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((symbol_t*)ptr(s))->binding = (v); } while (0)
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#define isconstant(s) ((s)->flags&0x1)
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#define iskeyword(s) ((s)->flags&0x2)
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#define symbol_value(s) (((symbol_t*)ptr(s))->binding)
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#define ismanaged(v) ((((unsigned char*)ptr(v)) >= fromspace) && \
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(((unsigned char*)ptr(v)) < fromspace+heapsize))
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#define isgensym(x) (issymbol(x) && ismanaged(x))
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#define isfunction(x) (tag(x) == TAG_FUNCTION && (x) > (N_BUILTINS<<3))
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#define isclosure(x) isfunction(x)
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#define iscbuiltin(x) (iscvalue(x) && (cv_class((cvalue_t*)ptr(x))==builtintype))
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void fl_gc_handle(value_t *pv);
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void fl_free_gc_handles(uint32_t n);
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#include "opcodes.h"
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// utility for iterating over all arguments in a builtin
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// i=index, i0=start index, arg = var for each arg, args = arg array
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// assumes "nargs" is the argument count
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#define FOR_ARGS(i, i0, arg, args) \
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for(i=i0; ((size_t)i)<nargs && ((arg=args[i]) || 1); i++)
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#define N_BUILTINS ((int)N_OPCODES)
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extern value_t FL_NIL, FL_T, FL_F, FL_EOF;
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/* read, eval, print main entry points */
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value_t read_sexpr(value_t f);
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void print(ios_t *f, value_t v);
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value_t toplevel_eval(value_t expr);
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value_t apply(value_t f, value_t l);
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value_t applyn(uint32_t n, value_t f, ...);
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value_t load_file(char *fname);
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extern value_t printprettysym, printreadablysym, printwidthsym;
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/* object model manipulation */
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value_t fl_cons(value_t a, value_t b);
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value_t list2(value_t a, value_t b);
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value_t listn(size_t n, ...);
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value_t symbol(char *str);
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char *symbol_name(value_t v);
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int fl_is_keyword_name(char *str, size_t len);
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value_t alloc_vector(size_t n, int init);
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size_t llength(value_t v);
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value_t compare(value_t a, value_t b); // -1, 0, or 1
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value_t equal(value_t a, value_t b); // T or nil
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int equal_lispvalue(value_t a, value_t b);
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uptrint_t hash_lispvalue(value_t a);
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int isnumtok_base(char *tok, value_t *pval, int base);
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/* safe casts */
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cons_t *tocons(value_t v, char *fname);
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symbol_t *tosymbol(value_t v, char *fname);
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fixnum_t tofixnum(value_t v, char *fname);
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char *tostring(value_t v, char *fname);
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/* error handling */
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void lerrorf(value_t e, char *format, ...) __attribute__ ((__noreturn__));
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void lerror(value_t e, const char *msg) __attribute__ ((__noreturn__));
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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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lerrorf(ArgError,"%s: too %s arguments", fname, nargs<c ? "few":"many");
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}
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typedef struct {
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void (*print)(value_t self, ios_t *f);
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void (*relocate)(value_t oldv, value_t newv);
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void (*finalize)(value_t self);
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void (*print_traverse)(value_t self);
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} cvtable_t;
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/* functions needed to implement the value interface (cvtable_t) */
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value_t relocate_lispvalue(value_t v);
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void print_traverse(value_t v);
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void fl_print_chr(char c, ios_t *f);
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void fl_print_str(char *s, ios_t *f);
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void fl_print_child(ios_t *f, value_t v);
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typedef int (*cvinitfunc_t)(struct _fltype_t*, value_t, void*);
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typedef struct _fltype_t {
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value_t type;
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numerictype_t numtype;
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size_t size;
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size_t elsz;
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cvtable_t *vtable;
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struct _fltype_t *eltype; // for arrays
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struct _fltype_t *artype; // (array this)
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int marked;
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cvinitfunc_t init;
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} fltype_t;
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typedef struct {
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fltype_t *type;
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void *data;
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size_t len; // length of *data in bytes
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union {
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value_t parent; // optional
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char _space[1]; // variable size
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};
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} cvalue_t;
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#define CVALUE_NWORDS 4
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typedef struct {
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fltype_t *type;
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char _space[1];
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} cprim_t;
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typedef struct {
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value_t bcode;
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value_t vals;
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value_t env;
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value_t name;
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} function_t;
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#define CPRIM_NWORDS 2
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#define MAX_INL_SIZE 384
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#define CV_OWNED_BIT 0x1
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#define CV_PARENT_BIT 0x2
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#define owned(cv) ((uptrint_t)(cv)->type & CV_OWNED_BIT)
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#define hasparent(cv) ((uptrint_t)(cv)->type & CV_PARENT_BIT)
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#define isinlined(cv) ((cv)->data == &(cv)->_space[0])
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#define cv_class(cv) ((fltype_t*)(((uptrint_t)(cv)->type)&~3))
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#define cv_len(cv) ((cv)->len)
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#define cv_type(cv) (cv_class(cv)->type)
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#define cv_data(cv) ((cv)->data)
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#define cv_isstr(cv) (cv_class(cv)->eltype == bytetype)
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#define cv_isPOD(cv) (cv_class(cv)->init != NULL)
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#define cvalue_data(v) cv_data((cvalue_t*)ptr(v))
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#define cvalue_len(v) cv_len((cvalue_t*)ptr(v))
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#define value2c(type, v) ((type)cv_data((cvalue_t*)ptr(v)))
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#define valid_numtype(v) ((v) < N_NUMTYPES)
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#define cp_class(cp) ((cp)->type)
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#define cp_type(cp) (cp_class(cp)->type)
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#define cp_numtype(cp) (cp_class(cp)->numtype)
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#define cp_data(cp) (&(cp)->_space[0])
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// WARNING: multiple evaluation!
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#define cptr(v) \
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(iscprim(v) ? cp_data((cprim_t*)ptr(v)) : cv_data((cvalue_t*)ptr(v)))
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/* C type names corresponding to cvalues type names */
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typedef unsigned long ulong;
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typedef unsigned int uint;
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typedef unsigned char uchar;
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typedef char char_t;
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typedef long long_t;
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typedef unsigned long ulong_t;
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typedef double double_t;
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typedef float float_t;
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typedef value_t (*builtin_t)(value_t*, uint32_t);
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extern value_t QUOTE;
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extern value_t int8sym, uint8sym, int16sym, uint16sym, int32sym, uint32sym;
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extern value_t int64sym, uint64sym;
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extern value_t longsym, ulongsym, bytesym, wcharsym;
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extern value_t structsym, arraysym, enumsym, cfunctionsym, voidsym, pointersym;
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extern value_t stringtypesym, wcstringtypesym, emptystringsym;
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extern value_t unionsym, floatsym, doublesym;
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extern fltype_t *bytetype, *wchartype;
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extern fltype_t *stringtype, *wcstringtype;
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extern fltype_t *builtintype;
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value_t cvalue(fltype_t *type, size_t sz);
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void add_finalizer(cvalue_t *cv);
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void cv_autorelease(cvalue_t *cv);
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void cv_pin(cvalue_t *cv);
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size_t ctype_sizeof(value_t type, int *palign);
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value_t cvalue_copy(value_t v);
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value_t cvalue_from_data(fltype_t *type, void *data, size_t sz);
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value_t cvalue_from_ref(fltype_t *type, void *ptr, size_t sz, value_t parent);
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value_t cbuiltin(char *name, builtin_t f);
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size_t cvalue_arraylen(value_t v);
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value_t size_wrap(size_t sz);
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size_t toulong(value_t n, char *fname);
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value_t cvalue_string(size_t sz);
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value_t cvalue_static_cstring(const char *str);
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value_t string_from_cstr(char *str);
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value_t string_from_cstrn(char *str, size_t n);
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int fl_isstring(value_t v);
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int fl_isnumber(value_t v);
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int fl_isiostream(value_t v);
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value_t cvalue_compare(value_t a, value_t b);
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int numeric_compare(value_t a, value_t b, int eq, int eqnans, char *fname);
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void to_sized_ptr(value_t v, char *fname, char **pdata, size_t *psz);
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fltype_t *get_type(value_t t);
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fltype_t *get_array_type(value_t eltype);
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fltype_t *define_opaque_type(value_t sym, size_t sz, cvtable_t *vtab,
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cvinitfunc_t init);
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value_t mk_double(double_t n);
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value_t mk_float(float_t n);
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value_t mk_uint32(uint32_t n);
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value_t mk_uint64(uint64_t n);
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value_t mk_wchar(int32_t n);
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value_t return_from_uint64(uint64_t Uaccum);
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value_t return_from_int64(int64_t Saccum);
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typedef struct {
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char *name;
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builtin_t fptr;
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} builtinspec_t;
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void assign_global_builtins(builtinspec_t *b);
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/* builtins */
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value_t fl_hash(value_t *args, u_int32_t nargs);
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value_t cvalue_byte(value_t *args, uint32_t nargs);
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value_t cvalue_wchar(value_t *args, uint32_t nargs);
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#endif
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