cpython/Objects/complexobject.c

521 lines
11 KiB
C
Raw Normal View History

1996-01-11 20:47:05 -04:00
/* Complex object implementation */
/* Borrows heavily from floatobject.c */
/* Submitted by Jim Hugunin */
1996-01-11 20:47:05 -04:00
#ifndef WITHOUT_COMPLEX
1997-05-02 00:12:38 -03:00
#include "Python.h"
1996-01-11 20:47:05 -04:00
/* elementary operations on complex numbers */
1996-07-20 23:31:35 -03:00
static Py_complex c_1 = {1., 0.};
1996-01-11 20:47:05 -04:00
2000-07-09 01:36:04 -03:00
Py_complex c_sum(Py_complex a, Py_complex b)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex r;
1996-01-11 20:47:05 -04:00
r.real = a.real + b.real;
r.imag = a.imag + b.imag;
return r;
}
2000-07-09 01:36:04 -03:00
Py_complex c_diff(Py_complex a, Py_complex b)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex r;
1996-01-11 20:47:05 -04:00
r.real = a.real - b.real;
r.imag = a.imag - b.imag;
return r;
}
2000-07-09 01:36:04 -03:00
Py_complex c_neg(Py_complex a)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex r;
1996-01-11 20:47:05 -04:00
r.real = -a.real;
r.imag = -a.imag;
return r;
}
2000-07-09 01:36:04 -03:00
Py_complex c_prod(Py_complex a, Py_complex b)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex r;
1996-01-11 20:47:05 -04:00
r.real = a.real*b.real - a.imag*b.imag;
r.imag = a.real*b.imag + a.imag*b.real;
return r;
}
2000-07-09 01:36:04 -03:00
Py_complex c_quot(Py_complex a, Py_complex b)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex r;
1996-01-11 20:47:05 -04:00
double d = b.real*b.real + b.imag*b.imag;
if (d == 0.)
errno = EDOM;
1996-01-11 20:47:05 -04:00
r.real = (a.real*b.real + a.imag*b.imag)/d;
r.imag = (a.imag*b.real - a.real*b.imag)/d;
return r;
}
2000-07-09 01:36:04 -03:00
Py_complex c_pow(Py_complex a, Py_complex b)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex r;
1996-01-11 20:47:05 -04:00
double vabs,len,at,phase;
if (b.real == 0. && b.imag == 0.) {
r.real = 1.;
r.imag = 0.;
}
else if (a.real == 0. && a.imag == 0.) {
if (b.imag != 0. || b.real < 0.)
errno = ERANGE;
1996-01-11 20:47:05 -04:00
r.real = 0.;
r.imag = 0.;
}
else {
vabs = hypot(a.real,a.imag);
len = pow(vabs,b.real);
at = atan2(a.imag, a.real);
phase = at*b.real;
if (b.imag != 0.0) {
len /= exp(at*b.imag);
phase += b.imag*log(vabs);
}
r.real = len*cos(phase);
r.imag = len*sin(phase);
}
return r;
}
2000-07-09 01:36:04 -03:00
static Py_complex c_powu(Py_complex x, long n)
1996-01-11 20:47:05 -04:00
{
Py_complex r, p;
1996-01-11 20:47:05 -04:00
long mask = 1;
r = c_1;
p = x;
1996-01-11 20:47:05 -04:00
while (mask > 0 && n >= mask) {
if (n & mask)
r = c_prod(r,p);
mask <<= 1;
p = c_prod(p,p);
}
return r;
}
2000-07-09 01:36:04 -03:00
static Py_complex c_powi(Py_complex x, long n)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex cn;
1996-01-11 20:47:05 -04:00
if (n > 100 || n < -100) {
cn.real = (double) n;
cn.imag = 0.;
return c_pow(x,cn);
}
else if (n > 0)
return c_powu(x,n);
else
return c_quot(c_1,c_powu(x,-n));
}
PyObject *
2000-07-09 01:36:04 -03:00
PyComplex_FromCComplex(Py_complex cval)
1996-01-11 20:47:05 -04:00
{
register PyComplexObject *op;
/* PyObject_New is inlined */
op = (PyComplexObject *) PyObject_MALLOC(sizeof(PyComplexObject));
1996-01-11 20:47:05 -04:00
if (op == NULL)
1997-05-02 00:12:38 -03:00
return PyErr_NoMemory();
PyObject_INIT(op, &PyComplex_Type);
1996-01-11 20:47:05 -04:00
op->cval = cval;
1997-05-02 00:12:38 -03:00
return (PyObject *) op;
1996-01-11 20:47:05 -04:00
}
PyObject *
2000-07-09 01:36:04 -03:00
PyComplex_FromDoubles(double real, double imag)
{
Py_complex c;
c.real = real;
c.imag = imag;
return PyComplex_FromCComplex(c);
1996-01-11 20:47:05 -04:00
}
double
2000-07-09 01:36:04 -03:00
PyComplex_RealAsDouble(PyObject *op)
{
if (PyComplex_Check(op)) {
return ((PyComplexObject *)op)->cval.real;
2000-07-09 01:36:04 -03:00
}
else {
return PyFloat_AsDouble(op);
}
1996-01-11 20:47:05 -04:00
}
double
2000-07-09 01:36:04 -03:00
PyComplex_ImagAsDouble(PyObject *op)
{
if (PyComplex_Check(op)) {
return ((PyComplexObject *)op)->cval.imag;
2000-07-09 01:36:04 -03:00
}
else {
return 0.0;
}
1996-01-11 20:47:05 -04:00
}
1996-07-20 23:31:35 -03:00
Py_complex
2000-07-09 01:36:04 -03:00
PyComplex_AsCComplex(PyObject *op)
{
1996-07-20 23:31:35 -03:00
Py_complex cv;
1996-01-11 21:21:14 -04:00
if (PyComplex_Check(op)) {
return ((PyComplexObject *)op)->cval;
2000-07-09 01:36:04 -03:00
}
else {
1996-01-11 21:21:14 -04:00
cv.real = PyFloat_AsDouble(op);
cv.imag = 0.;
return cv;
}
}
1996-01-11 20:47:05 -04:00
static void
2000-07-09 01:36:04 -03:00
complex_dealloc(PyObject *op)
1996-01-11 20:47:05 -04:00
{
PyObject_DEL(op);
1996-01-11 20:47:05 -04:00
}
1996-05-24 17:45:01 -03:00
static void
2000-07-09 01:36:04 -03:00
complex_buf_repr(char *buf, PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
if (v->cval.real == 0.)
sprintf(buf, "%.12gj", v->cval.imag);
1996-01-11 20:47:05 -04:00
else
sprintf(buf, "(%.12g%+.12gj)", v->cval.real, v->cval.imag);
1996-01-11 20:47:05 -04:00
}
static int
2000-07-09 01:36:04 -03:00
complex_print(PyComplexObject *v, FILE *fp, int flags)
/* flags -- not used but required by interface */
1996-01-11 20:47:05 -04:00
{
char buf[100];
complex_buf_repr(buf, v);
fputs(buf, fp);
return 0;
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_repr(PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
char buf[100];
complex_buf_repr(buf, v);
1997-05-02 00:12:38 -03:00
return PyString_FromString(buf);
1996-01-11 20:47:05 -04:00
}
static int
2000-07-09 01:36:04 -03:00
complex_compare(PyComplexObject *v, PyComplexObject *w)
1996-01-11 20:47:05 -04:00
{
2000-07-09 01:36:04 -03:00
/* Note: "greater" and "smaller" have no meaning for complex numbers,
but Python requires that they be defined nevertheless. */
Py_complex i, j;
i = v->cval;
j = w->cval;
1996-01-11 20:47:05 -04:00
if (i.real == j.real && i.imag == j.imag)
2000-07-09 01:36:04 -03:00
return 0;
1996-01-11 20:47:05 -04:00
else if (i.real != j.real)
2000-07-09 01:36:04 -03:00
return (i.real < j.real) ? -1 : 1;
1996-01-11 20:47:05 -04:00
else
2000-07-09 01:36:04 -03:00
return (i.imag < j.imag) ? -1 : 1;
1996-01-11 20:47:05 -04:00
}
static long
2000-07-09 01:36:04 -03:00
complex_hash(PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
long hashreal, hashimag, combined;
hashreal = _Py_HashDouble(v->cval.real);
if (hashreal == -1)
return -1;
hashimag = _Py_HashDouble(v->cval.imag);
if (hashimag == -1)
return -1;
/* Note: if the imaginary part is 0, hashimag is 0 now,
* so the following returns hashreal unchanged. This is
* important because numbers of different types that
* compare equal must have the same hash value, so that
* hash(x + 0*j) must equal hash(x).
*/
combined = hashreal + 1000003 * hashimag;
if (combined == -1)
combined = -2;
return combined;
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_add(PyComplexObject *v, PyComplexObject *w)
1996-01-11 20:47:05 -04:00
{
Py_complex result;
PyFPE_START_PROTECT("complex_add", return 0)
result = c_sum(v->cval,w->cval);
1997-03-14 00:32:50 -04:00
PyFPE_END_PROTECT(result)
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(result);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_sub(PyComplexObject *v, PyComplexObject *w)
1996-01-11 20:47:05 -04:00
{
Py_complex result;
PyFPE_START_PROTECT("complex_sub", return 0)
result = c_diff(v->cval,w->cval);
1997-03-14 00:32:50 -04:00
PyFPE_END_PROTECT(result)
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(result);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_mul(PyComplexObject *v, PyComplexObject *w)
1996-01-11 20:47:05 -04:00
{
Py_complex result;
PyFPE_START_PROTECT("complex_mul", return 0)
result = c_prod(v->cval,w->cval);
1997-03-14 00:32:50 -04:00
PyFPE_END_PROTECT(result)
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(result);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_div(PyComplexObject *v, PyComplexObject *w)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex quot;
PyFPE_START_PROTECT("complex_div", return 0)
errno = 0;
1996-01-11 20:47:05 -04:00
quot = c_quot(v->cval,w->cval);
1997-03-14 00:32:50 -04:00
PyFPE_END_PROTECT(quot)
if (errno == EDOM) {
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_ZeroDivisionError, "complex division");
1996-01-11 20:47:05 -04:00
return NULL;
}
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(quot);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_remainder(PyComplexObject *v, PyComplexObject *w)
{
Py_complex div, mod;
errno = 0;
div = c_quot(v->cval,w->cval); /* The raw divisor value. */
if (errno == EDOM) {
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_ZeroDivisionError, "complex remainder");
return NULL;
}
div.real = floor(div.real); /* Use the floor of the real part. */
div.imag = 0.0;
mod = c_diff(v->cval, c_prod(w->cval, div));
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(mod);
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_divmod(PyComplexObject *v, PyComplexObject *w)
{
Py_complex div, mod;
PyObject *d, *m, *z;
errno = 0;
div = c_quot(v->cval,w->cval); /* The raw divisor value. */
if (errno == EDOM) {
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_ZeroDivisionError, "complex divmod()");
return NULL;
}
div.real = floor(div.real); /* Use the floor of the real part. */
div.imag = 0.0;
mod = c_diff(v->cval, c_prod(w->cval, div));
1997-05-02 00:12:38 -03:00
d = PyComplex_FromCComplex(div);
m = PyComplex_FromCComplex(mod);
z = Py_BuildValue("(OO)", d, m);
Py_XDECREF(d);
Py_XDECREF(m);
return z;
}
1996-01-11 20:47:05 -04:00
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_pow(PyComplexObject *v, PyObject *w, PyComplexObject *z)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex p;
Py_complex exponent;
1996-01-11 20:47:05 -04:00
long int_exponent;
1997-05-02 00:12:38 -03:00
if ((PyObject *)z!=Py_None) {
PyErr_SetString(PyExc_ValueError, "complex modulo");
1996-01-11 20:47:05 -04:00
return NULL;
}
PyFPE_START_PROTECT("complex_pow", return 0)
errno = 0;
1997-05-02 00:12:38 -03:00
exponent = ((PyComplexObject*)w)->cval;
1996-01-11 20:47:05 -04:00
int_exponent = (long)exponent.real;
if (exponent.imag == 0. && exponent.real == int_exponent)
p = c_powi(v->cval,int_exponent);
else
p = c_pow(v->cval,exponent);
1997-03-14 00:32:50 -04:00
PyFPE_END_PROTECT(p)
if (errno == ERANGE) {
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_ValueError,
"0.0 to a negative or complex power");
1996-01-11 20:47:05 -04:00
return NULL;
}
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(p);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_neg(PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex neg;
1996-01-11 20:47:05 -04:00
neg.real = -v->cval.real;
neg.imag = -v->cval.imag;
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(neg);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_pos(PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
1997-05-02 00:12:38 -03:00
Py_INCREF(v);
return (PyObject *)v;
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_abs(PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
double result;
PyFPE_START_PROTECT("complex_abs", return 0)
result = hypot(v->cval.real,v->cval.imag);
1997-03-14 00:32:50 -04:00
PyFPE_END_PROTECT(result)
1997-05-02 00:12:38 -03:00
return PyFloat_FromDouble(result);
1996-01-11 20:47:05 -04:00
}
static int
2000-07-09 01:36:04 -03:00
complex_nonzero(PyComplexObject *v)
1996-01-11 20:47:05 -04:00
{
return v->cval.real != 0.0 || v->cval.imag != 0.0;
1996-01-11 20:47:05 -04:00
}
static int
2000-07-09 01:36:04 -03:00
complex_coerce(PyObject **pv, PyObject **pw)
1996-01-11 20:47:05 -04:00
{
1996-07-20 23:31:35 -03:00
Py_complex cval;
1996-01-11 20:47:05 -04:00
cval.imag = 0.;
1997-05-02 00:12:38 -03:00
if (PyInt_Check(*pw)) {
cval.real = (double)PyInt_AsLong(*pw);
*pw = PyComplex_FromCComplex(cval);
Py_INCREF(*pv);
1996-01-11 20:47:05 -04:00
return 0;
}
1997-05-02 00:12:38 -03:00
else if (PyLong_Check(*pw)) {
cval.real = PyLong_AsDouble(*pw);
*pw = PyComplex_FromCComplex(cval);
Py_INCREF(*pv);
1996-01-11 20:47:05 -04:00
return 0;
}
1997-05-02 00:12:38 -03:00
else if (PyFloat_Check(*pw)) {
cval.real = PyFloat_AsDouble(*pw);
*pw = PyComplex_FromCComplex(cval);
Py_INCREF(*pv);
1996-01-11 20:47:05 -04:00
return 0;
}
return 1; /* Can't do it */
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_int(PyObject *v)
1996-01-11 20:47:05 -04:00
{
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_TypeError,
"can't convert complex to int; use e.g. int(abs(z))");
return NULL;
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_long(PyObject *v)
1996-01-11 20:47:05 -04:00
{
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_TypeError,
"can't convert complex to long; use e.g. long(abs(z))");
return NULL;
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_float(PyObject *v)
1996-01-11 20:47:05 -04:00
{
1997-05-02 00:12:38 -03:00
PyErr_SetString(PyExc_TypeError,
"can't convert complex to float; use e.g. abs(z)");
return NULL;
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_conjugate(PyObject *self, PyObject *args)
1996-01-11 20:47:05 -04:00
{
Py_complex c;
if (!PyArg_ParseTuple(args, ":conjugate"))
return NULL;
1997-05-02 00:12:38 -03:00
c = ((PyComplexObject *)self)->cval;
1996-01-11 20:47:05 -04:00
c.imag = -c.imag;
1997-05-02 00:12:38 -03:00
return PyComplex_FromCComplex(c);
1996-01-11 20:47:05 -04:00
}
static PyMethodDef complex_methods[] = {
{"conjugate", complex_conjugate, 1},
1996-01-11 20:47:05 -04:00
{NULL, NULL} /* sentinel */
};
1997-05-02 00:12:38 -03:00
static PyObject *
2000-07-09 01:36:04 -03:00
complex_getattr(PyComplexObject *self, char *name)
1996-01-11 20:47:05 -04:00
{
if (strcmp(name, "real") == 0)
1997-05-02 00:12:38 -03:00
return (PyObject *)PyFloat_FromDouble(self->cval.real);
1996-01-11 20:47:05 -04:00
else if (strcmp(name, "imag") == 0)
1997-05-02 00:12:38 -03:00
return (PyObject *)PyFloat_FromDouble(self->cval.imag);
else if (strcmp(name, "__members__") == 0)
1997-05-02 00:12:38 -03:00
return Py_BuildValue("[ss]", "imag", "real");
return Py_FindMethod(complex_methods, (PyObject *)self, name);
1996-01-11 20:47:05 -04:00
}
1997-05-02 00:12:38 -03:00
static PyNumberMethods complex_as_number = {
1996-01-11 20:47:05 -04:00
(binaryfunc)complex_add, /*nb_add*/
(binaryfunc)complex_sub, /*nb_subtract*/
(binaryfunc)complex_mul, /*nb_multiply*/
(binaryfunc)complex_div, /*nb_divide*/
(binaryfunc)complex_remainder, /*nb_remainder*/
(binaryfunc)complex_divmod, /*nb_divmod*/
1996-01-11 20:47:05 -04:00
(ternaryfunc)complex_pow, /*nb_power*/
(unaryfunc)complex_neg, /*nb_negative*/
(unaryfunc)complex_pos, /*nb_positive*/
(unaryfunc)complex_abs, /*nb_absolute*/
(inquiry)complex_nonzero, /*nb_nonzero*/
0, /*nb_invert*/
0, /*nb_lshift*/
0, /*nb_rshift*/
0, /*nb_and*/
0, /*nb_xor*/
0, /*nb_or*/
(coercion)complex_coerce, /*nb_coerce*/
(unaryfunc)complex_int, /*nb_int*/
(unaryfunc)complex_long, /*nb_long*/
(unaryfunc)complex_float, /*nb_float*/
0, /*nb_oct*/
0, /*nb_hex*/
};
1997-05-02 00:12:38 -03:00
PyTypeObject PyComplex_Type = {
PyObject_HEAD_INIT(&PyType_Type)
1996-01-11 20:47:05 -04:00
0,
"complex",
1997-05-02 00:12:38 -03:00
sizeof(PyComplexObject),
1996-01-11 20:47:05 -04:00
0,
(destructor)complex_dealloc, /*tp_dealloc*/
(printfunc)complex_print, /*tp_print*/
(getattrfunc)complex_getattr, /*tp_getattr*/
0, /*tp_setattr*/
(cmpfunc)complex_compare, /*tp_compare*/
(reprfunc)complex_repr, /*tp_repr*/
&complex_as_number, /*tp_as_number*/
0, /*tp_as_sequence*/
0, /*tp_as_mapping*/
(hashfunc)complex_hash, /*tp_hash*/
};
#endif