/* * $Id: p_header,v 1.4 2000/11/27 01:57:01 keiko Exp $ */ #include #include "ruby.h" #include "libtinyf2c.h" #include "narray.h" #define DFLT_SIZE 32 extern char *dcl_obj2ccharary(VALUE, int, int); extern integer *dcl_obj2cintegerary(VALUE); extern real *dcl_obj2crealary(VALUE); extern complex *dcl_obj2ccomplexary(VALUE); extern logical *dcl_obj2clogicalary(VALUE); extern VALUE dcl_ccharary2obj(char *, int, int); extern VALUE dcl_cintegerary2obj(integer *, int, int, int *); extern VALUE dcl_crealary2obj(real *, int, int, int *); extern VALUE dcl_ccomplexary2obj(complex *, int, char *); extern VALUE dcl_clogicalary2obj(logical *, int, int, int *); extern void dcl_freeccharary(char *); extern void dcl_freecintegerary(integer *); extern void dcl_freecrealary(real *); extern void dcl_freeccomplexary(complex *); extern void dcl_freeclogicalary(logical *); /* for functions which return doublereal */ /* fnclib */ extern doublereal rd2r_(real *); extern doublereal rr2d_(real *); extern doublereal rexp_(real *, integer *, integer *); extern doublereal rfpi_(void); extern doublereal rmod_(real *, real *); /* gnmlib */ extern doublereal rgnlt_(real *); extern doublereal rgnle_(real *); extern doublereal rgngt_(real *); extern doublereal rgnge_(real *); /* rfalib */ extern doublereal rmax_(real *, integer *, integer *); extern doublereal rmin_(real *, integer *, integer *); extern doublereal rsum_(real *, integer *, integer *); extern doublereal rave_(real *, integer *, integer *); extern doublereal rvar_(real *, integer *, integer *); extern doublereal rstd_(real *, integer *, integer *); extern doublereal rrms_(real *, integer *, integer *); extern doublereal ramp_(real *, integer *, integer *); /* rfblib */ extern doublereal rprd_(real *, real *, integer *, integer *, integer *); extern doublereal rcov_(real *, real *, integer *, integer *, integer *); extern doublereal rcor_(real *, real *, integer *, integer *, integer *); extern VALUE mDCL; static VALUE dcl_vrintr(obj, rx, n, jx) VALUE obj, rx, n, jx; { real *io_rx; integer i_n; integer i_jx; if (TYPE(rx) == T_FLOAT) { rx = rb_Array(rx); } /* if ((TYPE(rx) != T_ARRAY) && (rb_obj_is_kind_of(rx, cNArray) != Qtrue)) { rb_raise(rb_eTypeError, "invalid type"); } -- no check since obj2c*ary will do that */ if ((TYPE(n) != T_BIGNUM) || (TYPE(n) != T_FIXNUM)) { n = rb_funcall(n, rb_intern("to_i"), 0); } if ((TYPE(jx) != T_BIGNUM) || (TYPE(jx) != T_FIXNUM)) { jx = rb_funcall(jx, rb_intern("to_i"), 0); } i_n = NUM2INT(n); i_jx = NUM2INT(jx); io_rx = dcl_obj2crealary(rx); vrintr_(io_rx, &i_n, &i_jx); {int array_shape[1] = {i_jx*(i_n-1)+1}; rx = dcl_crealary2obj(io_rx, i_jx*(i_n-1)+1, 1, array_shape); } dcl_freecrealary(io_rx); return rx; } static VALUE dcl_vcintr(obj, cx, n, jx) VALUE obj, cx, n, jx; { complex *io_cx; integer i_n; integer i_jx; /* checktype: not implemented for cx (ComplexInputOutputArrayVariable) */ if ((TYPE(n) != T_BIGNUM) || (TYPE(n) != T_FIXNUM)) { n = rb_funcall(n, rb_intern("to_i"), 0); } if ((TYPE(jx) != T_BIGNUM) || (TYPE(jx) != T_FIXNUM)) { jx = rb_funcall(jx, rb_intern("to_i"), 0); } i_n = NUM2INT(n); i_jx = NUM2INT(jx); /* initialization: not implemented for cx (ComplexInputOutputArrayVariable) */ vcintr_(io_cx, &i_n, &i_jx); /* getresult: not implemented for cx (ComplexInputOutputArrayVariable) */ return cx; } void init_math2_intrlib(mDCL) VALUE mDCL; { rb_define_module_function(mDCL, "vrintr", dcl_vrintr, 3); rb_define_module_function(mDCL, "vcintr", dcl_vcintr, 3); }