Properly(?) implemented remainder and divmod (Tim Hochberg)
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@ -364,7 +364,7 @@ complex_div(v, w)
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c_error = 0;
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quot = c_quot(v->cval,w->cval);
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if (c_error == 1) {
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err_setstr(ZeroDivisionError, "float division");
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err_setstr(ZeroDivisionError, "complex division");
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return NULL;
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}
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return newcomplexobject(quot);
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@ -375,14 +375,43 @@ complex_remainder(v, w)
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complexobject *v;
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complexobject *w;
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{
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err_setstr(TypeError,
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"remainder and divmod not implemented for complex numbers");
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Py_complex div, mod;
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div = c_quot(v->cval,w->cval); /* The raw divisor value. */
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if (c_error == 1) {
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err_setstr(ZeroDivisionError, "complex remainder");
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return NULL;
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}
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div.real = floor(div.real); /* Use the floor of the real part. */
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div.imag = 0.0;
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mod = c_diff(v->cval, c_prod(w->cval, div));
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#define complex_divmod complex_remainder
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return newcomplexobject(mod);
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}
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static object *
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complex_divmod(v, w)
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complexobject *v;
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complexobject *w;
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{
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Py_complex div, mod;
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PyObject *d, *m, *z;
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div = c_quot(v->cval,w->cval); /* The raw divisor value. */
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if (c_error == 1) {
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err_setstr(ZeroDivisionError, "complex divmod()");
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return NULL;
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}
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div.real = floor(div.real); /* Use the floor of the real part. */
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div.imag = 0.0;
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mod = c_diff(v->cval, c_prod(w->cval, div));
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d = newcomplexobject(div);
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m = newcomplexobject(mod);
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z = mkvalue("(OO)", d, m);
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Py_XDECREF(d);
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Py_XDECREF(m);
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return z;
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}
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static object *
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complex_pow(v, w, z)
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complexobject *v;
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