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#ifndef SCM_NUMBERS_H |
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#define SCM_NUMBERS_H |
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#include "libguile/scmconfig.h" |
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#ifdef __cplusplus |
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extern "C++" { |
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#endif |
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#if SCM_ENABLE_MINI_GMP |
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#ifdef BUILDING_LIBGUILE |
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#include "libguile/mini-gmp.h" |
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#endif |
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#else |
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#include <gmp.h> |
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#endif |
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#ifdef __cplusplus |
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} |
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#endif |
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#include "libguile/error.h" |
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#include "libguile/gc.h" |
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#include "libguile/print.h" |
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typedef long scm_t_inum; |
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#define SCM_I_FIXNUM_BIT (SCM_LONG_BIT - 2) |
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#define SCM_MOST_NEGATIVE_FIXNUM (-1L << (SCM_I_FIXNUM_BIT - 1)) |
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#define SCM_MOST_POSITIVE_FIXNUM (- (SCM_MOST_NEGATIVE_FIXNUM + 1)) |
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#if (-1 >> 2 == -1) && (-4 >> 2 == -1) && (-5 >> 2 == -2) && (-8 >> 2 == -2) |
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# define SCM_SRS(x, y) ((x) >> (y)) |
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#else |
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# define SCM_SRS(x, y) \ |
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((x) < 0 \ |
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? -1 - (scm_t_signed_bits) (~(scm_t_bits)(x) >> (y)) \ |
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: ((x) >> (y))) |
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#endif |
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#ifdef __GNUC__ |
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# define SCM_I_INUM(x) (SCM_SRS ((scm_t_inum) SCM_UNPACK (x), 2)) |
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#else |
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# define SCM_I_INUM(x) \ |
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(SCM_UNPACK (x) > SCM_T_SIGNED_BITS_MAX \ |
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? -1 - (scm_t_inum) (~SCM_UNPACK (x) >> 2) \ |
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: (scm_t_inum) (SCM_UNPACK (x) >> 2)) |
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#endif |
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#define SCM_I_INUMP(x) (2 & SCM_UNPACK (x)) |
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#define SCM_I_NINUMP(x) (!SCM_I_INUMP (x)) |
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#define SCM_I_MAKINUM(x) \ |
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(SCM_PACK ((((scm_t_bits) (x)) << 2) + scm_tc2_int)) |
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#define SCM_POSFIXABLE(n) ((n) <= SCM_MOST_POSITIVE_FIXNUM) |
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#define SCM_NEGFIXABLE(n) ((n) >= SCM_MOST_NEGATIVE_FIXNUM) |
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#define SCM_FIXABLE(n) (SCM_POSFIXABLE (n) && SCM_NEGFIXABLE (n)) |
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#define SCM_INUM0 (SCM_I_MAKINUM (0)) |
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#define SCM_INUM1 (SCM_I_MAKINUM (1)) |
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#ifndef GO32 |
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# include <float.h> |
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# ifdef __MINGW32__ |
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# define copysign _copysign |
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# define finite _finite |
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# endif |
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#endif |
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#ifdef DBL_MAX_10_EXP |
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# define SCM_MAXEXP DBL_MAX_10_EXP |
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#else |
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# define SCM_MAXEXP 308 |
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#endif |
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#ifdef FLT_MAX |
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# define SCM_FLTMAX FLT_MAX |
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#else |
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# define SCM_FLTMAX 1e+23 |
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#endif |
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#define SCM_INTBUFLEN (5 + SCM_CHAR_BIT*sizeof(intmax_t)) |
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#define scm_tc16_big (scm_tc7_number + 1 * 256L) |
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#define scm_tc16_real (scm_tc7_number + 2 * 256L) |
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#define scm_tc16_complex (scm_tc7_number + 3 * 256L) |
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#define scm_tc16_fraction (scm_tc7_number + 4 * 256L) |
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#define SCM_INEXACTP(x) \ |
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(!SCM_IMP (x) && (0xfeff & SCM_CELL_TYPE (x)) == scm_tc16_real) |
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#define SCM_REALP(x) (SCM_HAS_TYP16 (x, scm_tc16_real)) |
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#define SCM_COMPLEXP(x) (SCM_HAS_TYP16 (x, scm_tc16_complex)) |
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#define SCM_REAL_VALUE(x) (((scm_t_double *) SCM2PTR (x))->real) |
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#define SCM_COMPLEX_REAL(x) (((scm_t_complex *) SCM2PTR (x))->real) |
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#define SCM_COMPLEX_IMAG(x) (((scm_t_complex *) SCM2PTR (x))->imag) |
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#define SCM_BIGP(x) (SCM_HAS_TYP16 (x, scm_tc16_big)) |
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#define SCM_NUMBERP(x) (SCM_I_INUMP(x) || SCM_NUMP(x)) |
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#define SCM_NUMP(x) (SCM_HAS_TYP7 (x, scm_tc7_number)) |
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#define SCM_FRACTIONP(x) (SCM_HAS_TYP16 (x, scm_tc16_fraction)) |
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#define SCM_FRACTION_NUMERATOR(x) (SCM_CELL_OBJECT_1 (x)) |
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#define SCM_FRACTION_DENOMINATOR(x) (SCM_CELL_OBJECT_2 (x)) |
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typedef struct scm_t_double |
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{ |
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SCM type; |
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#if SCM_SIZEOF_UINTPTR_T != 8 |
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SCM pad; |
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#endif |
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double real; |
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} scm_t_double; |
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typedef struct scm_t_complex |
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{ |
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SCM type; |
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#if SCM_SIZEOF_UINTPTR_T != 8 |
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SCM pad; |
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#endif |
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double real; |
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double imag; |
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} scm_t_complex; |
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SCM_API SCM scm_exact_p (SCM x); |
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SCM_API int scm_is_exact (SCM x); |
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SCM_API SCM scm_odd_p (SCM n); |
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SCM_API SCM scm_even_p (SCM n); |
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SCM_API SCM scm_finite_p (SCM x); |
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SCM_API SCM scm_inf_p (SCM x); |
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SCM_API SCM scm_nan_p (SCM x); |
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SCM_API SCM scm_inf (void); |
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SCM_API SCM scm_nan (void); |
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SCM_API SCM scm_abs (SCM x); |
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SCM_API SCM scm_quotient (SCM x, SCM y); |
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SCM_API SCM scm_remainder (SCM x, SCM y); |
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SCM_API SCM scm_modulo (SCM x, SCM y); |
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SCM_API void scm_euclidean_divide (SCM x, SCM y, SCM *q, SCM *r); |
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SCM_API SCM scm_euclidean_quotient (SCM x, SCM y); |
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SCM_API SCM scm_euclidean_remainder (SCM x, SCM y); |
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SCM_API void scm_floor_divide (SCM x, SCM y, SCM *q, SCM *r); |
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SCM_API SCM scm_floor_quotient (SCM x, SCM y); |
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SCM_API SCM scm_floor_remainder (SCM x, SCM y); |
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SCM_API void scm_ceiling_divide (SCM x, SCM y, SCM *q, SCM *r); |
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SCM_API SCM scm_ceiling_quotient (SCM x, SCM y); |
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SCM_API SCM scm_ceiling_remainder (SCM x, SCM y); |
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SCM_API void scm_truncate_divide (SCM x, SCM y, SCM *q, SCM *r); |
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SCM_API SCM scm_truncate_quotient (SCM x, SCM y); |
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SCM_API SCM scm_truncate_remainder (SCM x, SCM y); |
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SCM_API void scm_centered_divide (SCM x, SCM y, SCM *q, SCM *r); |
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SCM_API SCM scm_centered_quotient (SCM x, SCM y); |
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SCM_API SCM scm_centered_remainder (SCM x, SCM y); |
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SCM_API void scm_round_divide (SCM x, SCM y, SCM *q, SCM *r); |
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SCM_API SCM scm_round_quotient (SCM x, SCM y); |
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SCM_API SCM scm_round_remainder (SCM x, SCM y); |
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SCM_API SCM scm_gcd (SCM x, SCM y); |
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SCM_API SCM scm_lcm (SCM n1, SCM n2); |
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SCM_API SCM scm_logand (SCM n1, SCM n2); |
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SCM_API SCM scm_logior (SCM n1, SCM n2); |
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SCM_API SCM scm_logxor (SCM n1, SCM n2); |
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SCM_API SCM scm_logtest (SCM n1, SCM n2); |
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SCM_API SCM scm_logbit_p (SCM n1, SCM n2); |
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SCM_API SCM scm_lognot (SCM n); |
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SCM_API SCM scm_modulo_expt (SCM n, SCM k, SCM m); |
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SCM_API SCM scm_integer_expt (SCM z1, SCM z2); |
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SCM_API SCM scm_ash (SCM n, SCM count); |
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SCM_API SCM scm_round_ash (SCM n, SCM count); |
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SCM_API SCM scm_bit_extract (SCM n, SCM start, SCM end); |
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SCM_API SCM scm_logcount (SCM n); |
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SCM_API SCM scm_integer_length (SCM n); |
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SCM_INTERNAL SCM scm_i_euclidean_divide (SCM x, SCM y); |
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SCM_INTERNAL SCM scm_i_floor_divide (SCM x, SCM y); |
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SCM_INTERNAL SCM scm_i_ceiling_divide (SCM x, SCM y); |
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SCM_INTERNAL SCM scm_i_truncate_divide (SCM x, SCM y); |
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SCM_INTERNAL SCM scm_i_centered_divide (SCM x, SCM y); |
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SCM_INTERNAL SCM scm_i_round_divide (SCM x, SCM y); |
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SCM_INTERNAL SCM scm_i_gcd (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_lcm (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_logand (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_logior (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_logxor (SCM x, SCM y, SCM rest); |
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SCM_API size_t scm_iint2str (intmax_t num, int rad, char *p); |
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SCM_API size_t scm_iuint2str (uintmax_t num, int rad, char *p); |
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SCM_API SCM scm_number_to_string (SCM x, SCM radix); |
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SCM_API int scm_print_real (SCM sexp, SCM port, scm_print_state *pstate); |
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SCM_API int scm_print_complex (SCM sexp, SCM port, scm_print_state *pstate); |
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SCM_API int scm_bigprint (SCM exp, SCM port, scm_print_state *pstate); |
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SCM_API SCM scm_c_locale_stringn_to_number (const char *mem, size_t len, |
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unsigned int radix); |
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SCM_INTERNAL SCM scm_i_string_to_number (SCM str, unsigned int radix); |
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SCM_API SCM scm_string_to_number (SCM str, SCM radix); |
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SCM_API SCM scm_bigequal (SCM x, SCM y); |
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SCM_API SCM scm_real_equalp (SCM x, SCM y); |
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SCM_API SCM scm_complex_equalp (SCM x, SCM y); |
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SCM_INTERNAL int scm_i_heap_numbers_equal_p (SCM x, SCM y); |
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SCM_API SCM scm_number_p (SCM x); |
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SCM_API SCM scm_complex_p (SCM x); |
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SCM_API SCM scm_real_p (SCM x); |
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SCM_API SCM scm_rational_p (SCM z); |
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SCM_API SCM scm_integer_p (SCM x); |
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SCM_API SCM scm_exact_integer_p (SCM x); |
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SCM_API SCM scm_inexact_p (SCM x); |
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SCM_API int scm_is_inexact (SCM x); |
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SCM_API SCM scm_num_eq_p (SCM x, SCM y); |
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SCM_API SCM scm_less_p (SCM x, SCM y); |
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SCM_API SCM scm_gr_p (SCM x, SCM y); |
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SCM_API SCM scm_leq_p (SCM x, SCM y); |
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SCM_API SCM scm_geq_p (SCM x, SCM y); |
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SCM_API SCM scm_zero_p (SCM z); |
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SCM_API SCM scm_positive_p (SCM x); |
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SCM_API SCM scm_negative_p (SCM x); |
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SCM_API SCM scm_max (SCM x, SCM y); |
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SCM_API SCM scm_min (SCM x, SCM y); |
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SCM_API SCM scm_sum (SCM x, SCM y); |
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SCM_API SCM scm_oneplus (SCM x); |
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SCM_API SCM scm_difference (SCM x, SCM y); |
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SCM_API SCM scm_oneminus (SCM x); |
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SCM_API SCM scm_product (SCM x, SCM y); |
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SCM_API SCM scm_divide (SCM x, SCM y); |
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SCM_API SCM scm_floor (SCM x); |
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SCM_API SCM scm_ceiling (SCM x); |
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SCM_API double scm_c_truncate (double x); |
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SCM_API double scm_c_round (double x); |
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SCM_API SCM scm_truncate_number (SCM x); |
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SCM_API SCM scm_round_number (SCM x); |
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SCM_API SCM scm_expt (SCM z1, SCM z2); |
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SCM_API SCM scm_sin (SCM z); |
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SCM_API SCM scm_cos (SCM z); |
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SCM_API SCM scm_tan (SCM z); |
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SCM_API SCM scm_sinh (SCM z); |
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SCM_API SCM scm_cosh (SCM z); |
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SCM_API SCM scm_tanh (SCM z); |
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SCM_API SCM scm_asin (SCM z); |
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SCM_API SCM scm_acos (SCM z); |
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SCM_API SCM scm_atan (SCM x, SCM y); |
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SCM_API SCM scm_sys_asinh (SCM z); |
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SCM_API SCM scm_sys_acosh (SCM z); |
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SCM_API SCM scm_sys_atanh (SCM z); |
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SCM_API SCM scm_make_rectangular (SCM z1, SCM z2); |
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SCM_API SCM scm_make_polar (SCM z1, SCM z2); |
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SCM_API SCM scm_real_part (SCM z); |
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SCM_API SCM scm_imag_part (SCM z); |
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SCM_API SCM scm_magnitude (SCM z); |
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SCM_API SCM scm_angle (SCM z); |
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SCM_API SCM scm_exact_to_inexact (SCM z); |
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SCM_API SCM scm_inexact_to_exact (SCM z); |
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SCM_API SCM scm_trunc (SCM x); |
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SCM_API SCM scm_log (SCM z); |
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SCM_API SCM scm_log10 (SCM z); |
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SCM_API SCM scm_exp (SCM z); |
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SCM_API SCM scm_sqrt (SCM z); |
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SCM_API void scm_exact_integer_sqrt (SCM k, SCM *s, SCM *r); |
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SCM_INTERNAL SCM scm_i_min (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_max (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_sum (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_difference (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_product (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_divide (SCM x, SCM y, SCM rest); |
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SCM_INTERNAL SCM scm_i_exact_integer_sqrt (SCM k); |
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SCM_API SCM scm_rationalize (SCM x, SCM err); |
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SCM_API SCM scm_numerator (SCM z); |
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SCM_API SCM scm_denominator (SCM z); |
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SCM_INTERNAL double scm_i_fraction2double (SCM z); |
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SCM_INTERNAL SCM scm_i_fraction_equalp (SCM x, SCM y); |
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SCM_INTERNAL int scm_i_print_fraction (SCM sexp, SCM port, scm_print_state *pstate); |
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SCM_INTERNAL void scm_i_print_double (double val, SCM port); |
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SCM_INTERNAL void scm_i_print_complex (double real, double imag, SCM port); |
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SCM_API int scm_is_integer (SCM val); |
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SCM_API int scm_is_exact_integer (SCM val); |
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SCM_API int scm_is_signed_integer (SCM val, |
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intmax_t min, intmax_t max); |
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SCM_API int scm_is_unsigned_integer (SCM val, |
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uintmax_t min, uintmax_t max); |
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SCM_API SCM scm_from_signed_integer (intmax_t val); |
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SCM_API SCM scm_from_unsigned_integer (uintmax_t val); |
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SCM_API intmax_t scm_to_signed_integer (SCM val, |
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intmax_t min, |
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intmax_t max); |
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SCM_API uintmax_t scm_to_unsigned_integer (SCM val, |
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uintmax_t min, |
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uintmax_t max); |
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SCM_API int8_t scm_to_int8 (SCM x); |
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SCM_API SCM scm_from_int8 (int8_t x); |
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SCM_API uint8_t scm_to_uint8 (SCM x); |
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SCM_API SCM scm_from_uint8 (uint8_t x); |
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SCM_API int16_t scm_to_int16 (SCM x); |
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SCM_API SCM scm_from_int16 (int16_t x); |
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SCM_API uint16_t scm_to_uint16 (SCM x); |
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SCM_API SCM scm_from_uint16 (uint16_t x); |
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SCM_API int32_t scm_to_int32 (SCM x); |
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SCM_API SCM scm_from_int32 (int32_t x); |
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SCM_API uint32_t scm_to_uint32 (SCM x); |
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SCM_API SCM scm_from_uint32 (uint32_t x); |
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SCM_API scm_t_wchar scm_to_wchar (SCM x); |
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SCM_API SCM scm_from_wchar (scm_t_wchar x); |
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SCM_API int64_t scm_to_int64 (SCM x); |
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SCM_API SCM scm_from_int64 (int64_t x); |
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SCM_API uint64_t scm_to_uint64 (SCM x); |
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SCM_API SCM scm_from_uint64 (uint64_t x); |
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#if defined BUILDING_LIBGUILE && SCM_ENABLE_MINI_GMP |
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SCM_INTERNAL void scm_to_mpz (SCM x, mpz_t rop); |
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SCM_INTERNAL SCM scm_from_mpz (mpz_t rop); |
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#elif !SCM_ENABLE_MINI_GMP |
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SCM_API void scm_to_mpz (SCM x, mpz_t rop); |
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SCM_API SCM scm_from_mpz (mpz_t rop); |
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#endif |
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#if SCM_SIZEOF_CHAR == 1 |
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#define scm_to_schar scm_to_int8 |
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#define scm_from_schar scm_from_int8 |
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#define scm_to_uchar scm_to_uint8 |
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#define scm_from_uchar scm_from_uint8 |
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#if CHAR_MIN == 0 |
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#define scm_to_char scm_to_uint8 |
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#define scm_from_char scm_from_uint8 |
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#else |
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#define scm_to_char scm_to_int8 |
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#define scm_from_char scm_from_int8 |
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#endif |
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#else |
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#error sizeof(char) is not 1. |
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#endif |
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#if SCM_SIZEOF_SHORT == 1 |
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#define scm_to_short scm_to_int8 |
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#define scm_from_short scm_from_int8 |
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#define scm_to_ushort scm_to_uint8 |
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#define scm_from_ushort scm_from_uint8 |
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#else |
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#if SCM_SIZEOF_SHORT == 2 |
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#define scm_to_short scm_to_int16 |
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#define scm_from_short scm_from_int16 |
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#define scm_to_ushort scm_to_uint16 |
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#define scm_from_ushort scm_from_uint16 |
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#else |
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#if SCM_SIZEOF_SHORT == 4 |
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#define scm_to_short scm_to_int32 |
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#define scm_from_short scm_from_int32 |
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#define scm_to_ushort scm_to_uint32 |
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#define scm_from_ushort scm_from_uint32 |
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#else |
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#error sizeof(short) is not 1, 2, or 4. |
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#endif |
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#endif |
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#endif |
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#if SCM_SIZEOF_INT == 4 |
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#define scm_to_int scm_to_int32 |
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#define scm_from_int scm_from_int32 |
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#define scm_to_uint scm_to_uint32 |
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#define scm_from_uint scm_from_uint32 |
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#else |
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#if SCM_SIZEOF_INT == 8 |
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#define scm_to_int scm_to_int64 |
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#define scm_from_int scm_from_int64 |
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#define scm_to_uint scm_to_uint64 |
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#define scm_from_uint scm_from_uint64 |
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#else |
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#error sizeof(int) is not 4 or 8. |
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#endif |
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#endif |
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#if SCM_SIZEOF_LONG == 4 |
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#define scm_to_long scm_to_int32 |
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#define scm_from_long scm_from_int32 |
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#define scm_to_ulong scm_to_uint32 |
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#define scm_from_ulong scm_from_uint32 |
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#else |
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#if SCM_SIZEOF_LONG == 8 |
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#define scm_to_long scm_to_int64 |
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#define scm_from_long scm_from_int64 |
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#define scm_to_ulong scm_to_uint64 |
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#define scm_from_ulong scm_from_uint64 |
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#else |
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#error sizeof(long) is not 4 or 8. |
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#endif |
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#endif |
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#if SCM_SIZEOF_INTMAX == 4 |
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#define scm_to_intmax scm_to_int32 |
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#define scm_from_intmax scm_from_int32 |
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#define scm_to_uintmax scm_to_uint32 |
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#define scm_from_uintmax scm_from_uint32 |
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#else |
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#if SCM_SIZEOF_INTMAX == 8 |
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#define scm_to_intmax scm_to_int64 |
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#define scm_from_intmax scm_from_int64 |
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#define scm_to_uintmax scm_to_uint64 |
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#define scm_from_uintmax scm_from_uint64 |
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#else |
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#error sizeof(intmax_t) is not 4 or 8. |
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#endif |
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#endif |
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#if SCM_SIZEOF_LONG_LONG == 0 |
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#else |
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#if SCM_SIZEOF_LONG_LONG == 8 |
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#define scm_to_long_long scm_to_int64 |
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#define scm_from_long_long scm_from_int64 |
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#define scm_to_ulong_long scm_to_uint64 |
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#define scm_from_ulong_long scm_from_uint64 |
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#else |
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#error sizeof(long long) is not 8. |
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#endif |
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#endif |
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#if SCM_SIZEOF_SIZE_T == 4 |
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#define scm_to_ssize_t scm_to_int32 |
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#define scm_from_ssize_t scm_from_int32 |
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#define scm_to_size_t scm_to_uint32 |
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#define scm_from_size_t scm_from_uint32 |
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#else |
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#if SCM_SIZEOF_SIZE_T == 8 |
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#define scm_to_ssize_t scm_to_int64 |
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#define scm_from_ssize_t scm_from_int64 |
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#define scm_to_size_t scm_to_uint64 |
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#define scm_from_size_t scm_from_uint64 |
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#else |
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#error sizeof(size_t) is not 4 or 8. |
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#endif |
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#endif |
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#if SCM_SIZEOF_SCM_T_PTRDIFF == 4 |
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#define scm_to_ptrdiff_t scm_to_int32 |
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#define scm_from_ptrdiff_t scm_from_int32 |
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#else |
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#if SCM_SIZEOF_SCM_T_PTRDIFF == 8 |
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#define scm_to_ptrdiff_t scm_to_int64 |
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#define scm_from_ptrdiff_t scm_from_int64 |
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#else |
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#error sizeof(ptrdiff_t) is not 4 or 8. |
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#endif |
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#endif |
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#if SCM_SIZEOF_INTPTR_T == 0 |
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#define scm_to_intptr_t scm_to_ssize_t |
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#define scm_from_intptr_t scm_from_ssize_t |
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#elif SCM_SIZEOF_INTPTR_T == 4 |
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#define scm_to_intptr_t scm_to_int32 |
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#define scm_from_intptr_t scm_from_int32 |
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#elif SCM_SIZEOF_INTPTR_T == 8 |
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#define scm_to_intptr_t scm_to_int64 |
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#define scm_from_intptr_t scm_from_int64 |
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#else |
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#error sizeof(intptr_t) is not 4 or 8. |
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#endif |
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#if SCM_SIZEOF_UINTPTR_T == 0 |
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#define scm_to_uintptr_t scm_to_size_t |
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#define scm_from_uintptr_t scm_from_size_t |
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#elif SCM_SIZEOF_UINTPTR_T == 4 |
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#define scm_to_uintptr_t scm_to_uint32 |
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#define scm_from_uintptr_t scm_from_uint32 |
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#elif SCM_SIZEOF_UINTPTR_T == 8 |
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#define scm_to_uintptr_t scm_to_uint64 |
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#define scm_from_uintptr_t scm_from_uint64 |
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#else |
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#error sizeof(uintptr_t) is not 4 or 8. |
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#endif |
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SCM_API int scm_is_real (SCM val); |
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SCM_API int scm_is_rational (SCM val); |
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SCM_API double scm_to_double (SCM val); |
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SCM_API SCM scm_from_double (double val); |
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SCM_API int scm_is_complex (SCM val); |
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SCM_API SCM scm_c_make_rectangular (double re, double im); |
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SCM_API SCM scm_c_make_polar (double mag, double ang); |
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SCM_API double scm_c_real_part (SCM z); |
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SCM_API double scm_c_imag_part (SCM z); |
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SCM_API double scm_c_magnitude (SCM z); |
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SCM_API double scm_c_angle (SCM z); |
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SCM_API int scm_is_number (SCM val); |
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SCM_INTERNAL void scm_init_numbers (void); |
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#define SCM_NUM2SIZE(pos, arg) (scm_to_size_t (arg)) |
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#define SCM_NUM2SIZE_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_size_t (arg)) |
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#define SCM_NUM2PTRDIFF(pos, arg) (scm_to_ssize_t (arg)) |
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#define SCM_NUM2PTRDIFF_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_ssize_t (arg)) |
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#define SCM_NUM2SHORT(pos, arg) (scm_to_short (arg)) |
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#define SCM_NUM2SHORT_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_short (arg)) |
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#define SCM_NUM2USHORT(pos, arg) (scm_to_ushort (arg)) |
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#define SCM_NUM2USHORT_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_ushort (arg)) |
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#define SCM_NUM2INT(pos, arg) (scm_to_int (arg)) |
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#define SCM_NUM2INT_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_int (arg)) |
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#define SCM_NUM2UINT(pos, arg) (scm_to_uint (arg)) |
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#define SCM_NUM2UINT_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_uint (arg)) |
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#define SCM_NUM2ULONG(pos, arg) (scm_to_ulong (arg)) |
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#define SCM_NUM2ULONG_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_ulong (arg)) |
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#define SCM_NUM2LONG(pos, arg) (scm_to_long (arg)) |
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#define SCM_NUM2LONG_DEF(pos, arg, def) \ |
|
(SCM_UNBNDP (arg) ? def : scm_to_long (arg)) |
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#define SCM_NUM2LONG_LONG(pos, arg) (scm_to_long_long (arg)) |
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#define SCM_NUM2LONG_LONG_DEF(pos, arg, def) \ |
|
(SCM_UNBNDP (arg) ? def : scm_to_long_long (arg)) |
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#define SCM_NUM2ULONG_LONG(pos, arg) (scm_to_ulong_long (arg)) |
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#define SCM_NUM2ULONG_LONG_DEF(pos, arg, def) \ |
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(SCM_UNBNDP (arg) ? def : scm_to_ulong_long (arg)) |
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#define SCM_NUM2SIZE(pos, arg) (scm_to_size_t (arg)) |
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#define SCM_NUM2FLOAT(pos, arg) ((float) scm_to_double (arg)) |
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#define SCM_NUM2DOUBLE(pos, arg) (scm_to_double (arg)) |
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#define SCM_OUT_OF_RANGE(pos, arg) \ |
|
do { scm_out_of_range_pos (FUNC_NAME, arg, scm_from_int (pos)); } while (0) |
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|
#define SCM_ASSERT_RANGE(pos, arg, f) \ |
|
do { if (SCM_UNLIKELY (!(f))) \ |
|
scm_out_of_range_pos (FUNC_NAME, arg, scm_from_int (pos)); } \ |
|
while (0) |
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|
|
#define SCM_VALIDATE_REAL(pos, z) SCM_MAKE_VALIDATE_MSG (pos, z, REALP, "real") |
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|
#define SCM_VALIDATE_NUMBER(pos, z) SCM_MAKE_VALIDATE_MSG (pos, z, NUMBERP, "number") |
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|
#define SCM_VALIDATE_USHORT_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2USHORT (pos, k); \ |
|
} while (0) |
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|
|
#define SCM_VALIDATE_SHORT_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2SHORT (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_UINT_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2UINT (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_INT_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2INT (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_ULONG_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2ULONG (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_LONG_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2LONG (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_SIZE_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2SIZE (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_FLOAT_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2FLOAT (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_DOUBLE_COPY(pos, k, cvar) \ |
|
do { \ |
|
cvar = SCM_NUM2DOUBLE (pos, k); \ |
|
} while (0) |
|
|
|
#define SCM_VALIDATE_DOUBLE_DEF_COPY(pos, k, default, cvar) \ |
|
do { \ |
|
if (SCM_UNBNDP (k)) \ |
|
{ \ |
|
k = scm_make_real (default); \ |
|
cvar = default; \ |
|
} \ |
|
else \ |
|
{ \ |
|
cvar = SCM_NUM2DOUBLE (pos, k); \ |
|
} \ |
|
} while (0) |
|
|
|
|
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|
#endif |
|
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