/** ** @file mruby/boxing_nan.h - nan boxing mrb_value definition ** ** See Copyright Notice in mruby.h */ #ifndef MRUBY_BOXING_NAN_H #define MRUBY_BOXING_NAN_H #ifdef MRB_USE_FLOAT32 # error ---->> MRB_NAN_BOXING and MRB_USE_FLOAT32 conflict <<---- #endif #ifdef MRB_NO_FLOAT # error ---->> MRB_NAN_BOXING and MRB_NO_FLOAT conflict <<---- #endif #define MRB_FIXNUM_MIN INT32_MIN #define MRB_FIXNUM_MAX INT32_MAX enum mrb_nanbox_tt_inline { MRB_NANBOX_TT_OBJECT = 0, MRB_NANBOX_TT_INTEGER = 1, MRB_NANBOX_TT_MISC = 2, MRB_NANBOX_TT_CPTR = 3, }; /* value representation by nan-boxing: * float : SEEEEEEE EEEEFFFF FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF * +/-inf: S1111111 11110000 00000000 00000000 00000000 00000000 00000000 00000000 * nan : 01111111 11111000 00000000 00000000 00000000 00000000 00000000 00000000 * int : 01111111 11111001 00000000 00000000 IIIIIIII IIIIIIII IIIIIIII IIIIIIII * sym : 01111111 11111110 00000000 00TTTTTT SSSSSSSS SSSSSSSS SSSSSSSS SSSSSSSS * misc : 01111111 11111110 00000000 00TTTTTT 00000000 00000000 00000000 0000MMMM * object: 01111111 11111100 PPPPPPPP PPPPPPPP PPPPPPPP PPPPPPPP PPPPPPPP PPPPPP00 * cptr : 01111111 11111111 PPPPPPPP PPPPPPPP PPPPPPPP PPPPPPPP PPPPPPPP PPPPPPPP * Stored as O = R + 0x8004000000000000, retrieved as R = O - 0x8004000000000000. * This makes pointers have all zeros in the top 32 bits. */ typedef struct mrb_value { uint64_t u; } mrb_value; static inline mrb_float mrb_nan_boxing_value_float(mrb_value v) { union { mrb_float f; uint64_t u; } x; x.u = v.u - 0x8004000000000000; return x.f; } #define SET_FLOAT_VALUE(mrb,r,f) do { \ union { \ mrb_float f; \ uint64_t u; \ } float_uint_union; \ if ((f) != (f)) { /* NaN */ \ float_uint_union.u = 0x7ff8000000000000UL; \ } \ else { \ float_uint_union.f = (f); \ } \ r.u = float_uint_union.u + 0x8004000000000000; \ } while(0) #define mrb_float_p(o) (((uint64_t)((o).u)&0xfffc000000000000) != 0) struct RInteger { MRB_OBJECT_HEADER; mrb_int i; }; #define mrb_nb_tt(o) ((enum mrb_nanbox_tt_inline)((uint32_t)((o).u>>48)&3)) MRB_INLINE enum mrb_vtype mrb_type(mrb_value o) { if (mrb_float_p(o)) return MRB_TT_FLOAT; int64_t u = o.u; switch (mrb_nb_tt(o)) { case MRB_NANBOX_TT_OBJECT: { if (u == 0) return MRB_TT_FALSE; return ((struct RBasic*)(uintptr_t)u)->tt; } case MRB_NANBOX_TT_INTEGER: return MRB_TT_INTEGER; case MRB_NANBOX_TT_MISC: return (enum mrb_vtype)((uint32_t)(o.u >> 32) & 0x1f); case MRB_NANBOX_TT_CPTR: return MRB_TT_CPTR; default: /* never happen */ return MRB_TT_FLOAT; } } #define NANBOX_SET_MISC_VALUE(r,t,i) NANBOX_SET_VALUE(r, MRB_NANBOX_TT_MISC, ((uint64_t)(t)<<32) | (i)) #define mrb_float(o) mrb_nan_boxing_value_float(o) #ifdef MRB_INT64 /* #ifdef MRB_32BIT #define mrb_fixnum(o) ((mrb_int)((intptr_t)0xffffffffffff&((o).u))|(((o).u & 0x800000000000)?0xffff000000000000:0)) #else #define mrb_fixnum(o) ((mrb_int)(int32_t)((o).u)) #endif */ #define mrb_fixnum(o) ((mrb_int)(int32_t)((o).u)) static inline mrb_int mrb_nan_boxing_value_int(mrb_value v) { uint64_t u = v.u; if (mrb_nb_tt(v)==MRB_NANBOX_TT_OBJECT) { struct RInteger *p = (struct RInteger*)(uintptr_t)u; return p->i; } return mrb_fixnum(v); } #define mrb_integer(o) mrb_nan_boxing_value_int(o) #else #define mrb_fixnum(o) ((mrb_int)(((uintptr_t)0xffffffff)&((o).u))) #define mrb_integer(o) mrb_fixnum(o) #endif #define mrb_symbol(o) ((mrb_sym)((uintptr_t)0xffffffff)&((o).u)) #define mrb_ptr(o) ((void*)(uintptr_t)(o).u) #define mrb_cptr(o) ((void*)(uintptr_t)(0xffffffffffffULL&(o).u)) #define NANBOX_SET_VALUE(o, tt, v) do { \ (o).u = ((uint64_t)(tt)<<48) | ((uint64_t)(v)); \ } while (0) #define SET_NIL_VALUE(r) ((r).u = 0) #define SET_FALSE_VALUE(r) NANBOX_SET_MISC_VALUE(r, MRB_TT_FALSE, 1) #define SET_TRUE_VALUE(r) NANBOX_SET_MISC_VALUE(r, MRB_TT_TRUE, 1) #define SET_BOOL_VALUE(r,b) NANBOX_SET_MISC_VALUE(r, (b) ? MRB_TT_TRUE : MRB_TT_FALSE, 1) #ifdef MRB_INT64 MRB_API mrb_value mrb_boxing_int_value(struct mrb_state*, mrb_int); #define SET_INT_VALUE(mrb, r, n) ((r) = mrb_boxing_int_value(mrb, n)) #else #define SET_INT_VALUE(mrb, r, n) SET_FIXNUM_VALUE(r, n) #endif #define SET_FIXNUM_VALUE(r,n) NANBOX_SET_VALUE(r, MRB_NANBOX_TT_INTEGER, (uint32_t)(n)) #define SET_SYM_VALUE(r,v) NANBOX_SET_MISC_VALUE(r, MRB_TT_SYMBOL, (uint32_t)(v)) #define SET_OBJ_VALUE(r,v) do {(r).u = (uint64_t)(uintptr_t)(v);} while (0) #define SET_CPTR_VALUE(mrb,r,v) NANBOX_SET_VALUE(r, MRB_NANBOX_TT_CPTR, (uint64_t)(uintptr_t)(v) & 0x0000ffffffffffffULL) #define SET_UNDEF_VALUE(r) NANBOX_SET_MISC_VALUE(r, MRB_TT_UNDEF, 4) #define mrb_immediate_p(o) ((mrb_float_p(o) || mrb_nb_tt(o) != MRB_NANBOX_TT_OBJECT) || (o).u == 0) #define mrb_nil_p(o) ((o).u == 0) #define mrb_false_p(o) (mrb_type(o) == MRB_TT_FALSE || (o).u == 0) #define mrb_fixnum_p(o) (!mrb_float_p(o) && mrb_nb_tt(o)==MRB_NANBOX_TT_INTEGER) #endif /* MRUBY_BOXING_NAN_H */