chiark / gitweb /
Fix a few minor warnings.
[catacomb-python] / ec.c
1 /* -*-c-*-
2  *
3  * Elliptic curves
4  *
5  * (c) 2004 Straylight/Edgeware
6  */
7
8 /*----- Licensing notice --------------------------------------------------*
9  *
10  * This file is part of the Python interface to Catacomb.
11  *
12  * Catacomb/Python is free software; you can redistribute it and/or modify
13  * it under the terms of the GNU General Public License as published by
14  * the Free Software Foundation; either version 2 of the License, or
15  * (at your option) any later version.
16  *
17  * Catacomb/Python is distributed in the hope that it will be useful,
18  * but WITHOUT ANY WARRANTY; without even the implied warranty of
19  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
20  * GNU General Public License for more details.
21  *
22  * You should have received a copy of the GNU General Public License
23  * along with Catacomb/Python; if not, write to the Free Software Foundation,
24  * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
25  */
26
27 /*----- Header files ------------------------------------------------------*/
28
29 #include "catacomb-python.h"
30
31 /*----- Utility functions -------------------------------------------------*/
32
33 PyTypeObject *ecpt_pytype;
34 PyTypeObject *ecptcurve_pytype;
35 PyTypeObject *eccurve_pytype;
36 PyTypeObject *ecprimecurve_pytype;
37 PyTypeObject *ecprimeprojcurve_pytype;
38 PyTypeObject *ecbincurve_pytype;
39 PyTypeObject *ecbinprojcurve_pytype;
40 PyTypeObject *ecinfo_pytype;
41
42 ec_curve *eccurve_copy(ec_curve *c)
43 {
44   field *f;
45   mp *a, *b;
46
47   if ((f = field_copy(c->f)) == 0)
48     return (0);
49   a = F_OUT(f, MP_NEW, c->a);
50   b = F_OUT(f, MP_NEW, c->b);
51   if (strcmp(EC_NAME(c), "prime") == 0)
52     c = ec_prime(f, a, b);
53   else if (strcmp(EC_NAME(c), "primeproj") == 0)
54     c = ec_primeproj(f, a, b);
55   else if (strcmp(EC_NAME(c), "bin") == 0)
56     c = ec_bin(f, a, b);
57   else if (strcmp(EC_NAME(c), "binproj") == 0)
58     c = ec_binproj(f, a, b);
59   else
60     c = 0;
61   MP_DROP(a);
62   MP_DROP(b);
63   if (!c) F_DESTROY(f);
64   return (c);
65 }
66
67 static PyObject *ecpt_dopywrap(PyObject *cobj, ec_curve *c, ec *p)
68 {
69   ecpt_pyobj *z = PyObject_New(ecpt_pyobj, (PyTypeObject *)cobj);
70   z->p = *p;
71   z->c = c;
72   Py_INCREF(cobj);
73   return ((PyObject *)z);
74 }
75
76 PyObject *ecpt_pywrap(PyObject *cobj, ec *p)
77   { return (ecpt_dopywrap(cobj, ECCURVE_C(cobj), p)); }
78
79 PyObject *ecpt_pywrapout(void *cobj, ec *p)
80 {
81   ec_curve *c;
82
83   if (!PyType_IsSubtype(cobj, ecptcurve_pytype))
84     c = 0;
85   else {
86     c = ECCURVE_C(cobj);
87     EC_IN(ECCURVE_C(cobj), p, p);
88   }
89   return (ecpt_dopywrap(cobj, c, p));
90 }
91
92 int toecpt(ec_curve *c, ec *d, PyObject *p)
93 {
94   if (ECPTCURVE_PYCHECK(p)) {
95     if (ECPT_C(p) != c && !ec_samep(ECPT_C(p), c))
96       return (-1);
97     EC_COPY(d, ECPT_P(p));
98   } else if (ECPT_PYCHECK(p))
99     EC_IN(c, d, ECPT_P(p));
100   else
101     return (-1);
102   return (0);
103 }
104
105 int getecpt(ec_curve *c, ec *d, PyObject *p)
106 {
107   if (toecpt(c, d, p)) {
108     PyErr_Format(PyExc_TypeError, "can't convert %.100s to ecpt",
109                  p->ob_type->tp_name);
110     return (-1);
111   }
112   return (0);
113 }
114
115 void getecptout(ec *d, PyObject *p)
116 {
117   if (ECPTCURVE_PYCHECK(p))
118     EC_OUT(ECPT_C(p), d, ECPT_P(p));
119   else {
120     assert(ECPT_PYCHECK(p));
121     EC_COPY(d, ECPT_P(p));
122   }
123 }
124
125 int convecpt(PyObject *o, void *p)
126 {
127   if (!ECPT_PYCHECK(o))
128     TYERR("want elliptic curve point");
129   getecptout(p, o);
130   return (1);
131 end:
132   return (0);
133 }
134
135 /*----- Curve points ------------------------------------------------------*/
136
137 static int ecbinop(PyObject *x, PyObject *y,
138                    ec_curve **c, PyObject **cobj, ec *xx, ec *yy)
139 {
140   if (ECPTCURVE_PYCHECK(x)) *cobj = ECPT_COBJ(x);
141   else if (ECPTCURVE_PYCHECK(y)) *cobj = ECPT_COBJ(y);
142   else return (-1);
143   *c = ECCURVE_C(*cobj);
144   if (toecpt(*c, xx, x) || toecpt(*c, yy, y)) return (-1);
145   return (0);
146 }
147
148 #define BINOP(name)                                                     \
149   static PyObject *ecpt_py##name(PyObject *x, PyObject *y) {            \
150     ec xx = EC_INIT, yy = EC_INIT, zz = EC_INIT;                        \
151     PyObject *cobj;                                                     \
152     ec_curve *c;                                                        \
153     if (ecbinop(x, y, &c, &cobj, &xx, &yy)) RETURN_NOTIMPL;             \
154     c->ops->name(c, &zz, &xx, &yy);                                     \
155     EC_DESTROY(&xx); EC_DESTROY(&yy);                                   \
156     return (ecpt_pywrap(ECPT_COBJ(x), &zz));                            \
157   }
158 BINOP(add)
159 BINOP(sub)
160 #undef BINOP
161
162 #define UNOP(name)                                                      \
163   static PyObject *ecpt_py##name(PyObject *x) {                         \
164     ec zz = EC_INIT;                                                    \
165     ec_curve *c = ECPT_C(x);                                            \
166     c->ops->name(c, &zz, ECPT_P(x));                                    \
167     return (ecpt_pywrap(ECPT_COBJ(x), &zz));                            \
168   }
169 UNOP(neg)
170 #undef UNOP
171
172 static PyObject *ecpt_pyid(PyObject *x) { RETURN_OBJ(x); }
173
174 static int ecpt_pynonzerop(PyObject *x) { return (!EC_ATINF(ECPT_P(x))); }
175
176 static void ecpt_pydealloc(PyObject *x)
177 {
178   EC_DESTROY(ECPT_P(x));
179   Py_DECREF(ECPT_COBJ(x));
180   FREEOBJ(x);
181 }
182
183 static PyObject *ecpt_pymul(PyObject *x, PyObject *y)
184 {
185   mp *xx;
186   ec zz = EC_INIT;
187
188   if (ECPT_PYCHECK(x)) { PyObject *t; t = x; x = y; y = t; }
189   if (!ECPT_PYCHECK(y) || (xx = tomp(x)) == 0) RETURN_NOTIMPL;
190   ec_imul(ECPT_C(y), &zz, ECPT_P(y), xx);
191   return (ecpt_pywrap(ECPT_COBJ(y), &zz));
192 }
193
194 static long ecpt_pyhash(PyObject *me)
195 {
196   long i;
197   ec p = EC_INIT;
198
199   EC_OUT(ECPT_C(me), &p, ECPT_P(me));
200   i = 0xe0fdd039; /* random perturbance */
201   if (p.x) i ^= mp_tolong(p.x);
202   if (p.y) i ^= mp_tolong(p.y);
203   if (i == -1) i = -2;
204   EC_DESTROY(&p);
205   return (i);
206 }
207
208 static PyObject *ecpt_pyrichcompare(PyObject *x, PyObject *y, int op)
209 {
210   ec_curve *c;
211   PyObject *cobj;
212   ec p = EC_INIT, q = EC_INIT;
213   int b;
214   PyObject *rc = 0;
215
216   if (ecbinop(x, y, &c, &cobj, &p, &q)) RETURN_NOTIMPL;
217   EC_OUT(c, &p, &p);
218   EC_OUT(c, &q, &q);
219   switch (op) {
220     case Py_EQ: b = EC_EQ(&p, &q); break;
221     case Py_NE: b = !EC_EQ(&p, &q); break;
222     default: TYERR("elliptic curve points are unordered");
223   }
224   rc = getbool(b);
225 end:
226   EC_DESTROY(&p);
227   EC_DESTROY(&q);
228   return (rc);
229 }
230
231 static PyObject *epmeth_oncurvep(PyObject *me, PyObject *arg)
232 {
233   if (!PyArg_ParseTuple(arg, ":oncurvep")) return (0);
234   return (getbool(EC_ATINF(ECPT_P(me)) ||
235                   !EC_CHECK(ECPT_C(me), ECPT_P(me))));
236 }
237
238 static PyObject *epmeth_dbl(PyObject *me, PyObject *arg)
239 {
240   ec p = EC_INIT;
241   if (!PyArg_ParseTuple(arg, ":dbl")) return (0);
242   EC_DBL(ECPT_C(me), &p, ECPT_P(me));
243   return (ecpt_pywrap(ECPT_COBJ(me), &p));
244 }
245
246 static PyObject *epmeth_tobuf(PyObject *me, PyObject *arg)
247 {
248   buf b;
249   ec p = EC_INIT;
250   PyObject *rc;
251   size_t n;
252
253   if (!PyArg_ParseTuple(arg, ":tobuf")) return (0);
254   getecptout(&p, me);
255   if (EC_ATINF(&p))
256     n = 2;
257   else
258     n = mp_octets(p.x) + mp_octets(p.y) + 4;
259   rc = bytestring_pywrap(0, n);
260   buf_init(&b, PyString_AS_STRING(rc), n);
261   buf_putec(&b, &p);
262   assert(BOK(&b));
263   _PyString_Resize(&rc, BLEN(&b));
264   EC_DESTROY(&p);
265   return (rc);
266 }
267
268 static PyObject *epmeth_toraw(PyObject *me, PyObject *arg)
269 {
270   buf b;
271   PyObject *rc;
272   char *p;
273   ec_curve *c = ECPT_C(me);
274   ec pp = EC_INIT;
275   int len;
276
277   if (!PyArg_ParseTuple(arg, ":toraw")) return (0);
278   len = c->f->noctets * 2 + 1;
279   rc = bytestring_pywrap(0, len);
280   p = PyString_AS_STRING(rc);
281   buf_init(&b, p, len);
282   EC_OUT(c, &pp, ECPT_P(me));
283   ec_putraw(c, &b, &pp);
284   EC_DESTROY(&pp);
285   _PyString_Resize(&rc, BLEN(&b));
286   return (rc);
287 }
288
289 static PyObject *epget_curve(PyObject *me, void *hunoz)
290   { RETURN_OBJ(ECPT_COBJ(me)); }
291
292 static PyObject *epncget_ix(PyObject *me, void *hunoz)
293 {
294   ec p = EC_INIT;
295   PyObject *rc;
296   if (EC_ATINF(ECPT_P(me))) RETURN_NONE;
297   getecptout(&p, me);
298   rc = mp_pywrap(MP_COPY(p.x));
299   EC_DESTROY(&p);
300   return (rc);
301 }
302
303 static PyObject *epncget_iy(PyObject *me, void *hunoz)
304 {
305   ec p = EC_INIT;
306   PyObject *rc;
307   if (EC_ATINF(ECPT_P(me))) RETURN_NONE;
308   getecptout(&p, me);
309   rc = mp_pywrap(MP_COPY(p.y));
310   EC_DESTROY(&p);
311   return (rc);
312 }
313
314 static PyObject *epncget_point(PyObject *me, void *hunoz)
315   { RETURN_ME; }
316
317 static PyObject *epget_point(PyObject *me, void *hunoz)
318 {
319   ec p = EC_INIT;
320   getecptout(&p, me);
321   return (ecpt_pywrapout(ecpt_pytype, &p));
322 }
323
324 static PyObject *epget_x(PyObject *me, void *hunoz)
325 {
326   ec_curve *c = ECPT_C(me);
327   ec *pp = ECPT_P(me);
328   PyObject *fobj = ECPT_FOBJ(me);
329   ec p = EC_INIT;
330   PyObject *rc;
331
332   if (EC_ATINF(pp)) RETURN_NONE;
333   EC_OUT(c, &p, pp);
334   rc = fe_pywrap(fobj, F_IN(c->f, MP_NEW, p.x));
335   EC_DESTROY(&p);
336   return (rc);
337 }
338
339 static PyObject *epget_y(PyObject *me, void *hunoz)
340 {
341   ec_curve *c = ECPT_C(me);
342   ec *pp = ECPT_P(me);
343   PyObject *fobj = ECPT_FOBJ(me);
344   ec p = EC_INIT;
345   PyObject *rc;
346
347   if (EC_ATINF(pp)) RETURN_NONE;
348   EC_OUT(c, &p, pp);
349   rc = fe_pywrap(fobj, F_IN(c->f, MP_NEW, p.y));
350   EC_DESTROY(&p);
351   return (rc);
352 }
353
354 static PyObject *epget__x(PyObject *me, void *hunoz)
355 {
356   if (EC_ATINF(ECPT_P(me))) RETURN_NONE;
357   return (fe_pywrap(ECPT_FOBJ(me), MP_COPY(ECPT_P(me)->x)));
358 }
359
360 static PyObject *epget__y(PyObject *me, void *hunoz)
361 {
362   if (EC_ATINF(ECPT_P(me))) RETURN_NONE;
363   return (fe_pywrap(ECPT_FOBJ(me), MP_COPY(ECPT_P(me)->y)));
364 }
365
366 static PyObject *epget__z(PyObject *me, void *hunoz)
367 {
368   if (EC_ATINF(ECPT_P(me)) || !ECPT_P(me)->z) RETURN_NONE;
369   return (fe_pywrap(ECPT_FOBJ(me), MP_COPY(ECPT_P(me)->z)));
370 }
371
372 static mp *coord_in(field *f, PyObject *x)
373 {
374   mp *xx;
375   if (FE_PYCHECK(x) && FE_F(x) == f)
376     return (MP_COPY(FE_X(x)));
377   else if ((xx = getmp(x)) == 0)
378     return (0);
379   else
380     return (F_IN(f, xx, xx));
381 }
382
383 static int ecptxl_3(ec_curve *c, ec *p,
384                     PyObject *x, PyObject *y, PyObject *z)
385 {
386   int rc = -1;
387
388   if (!x || !y || !z) TYERR("missing argument");
389   if (!c) VALERR("internal form with no curve!");
390   if ((p->x == coord_in(c->f, x)) == 0 ||
391       (p->y == coord_in(c->f, y)) == 0 ||
392       (z != Py_None && (p->z = coord_in(c->f, z))) == 0)
393     goto end;
394   if (!p->z) p->z = MP_COPY(c->f->one); /* just in case */
395   rc = 0;
396 end:
397   return (rc);
398 }
399
400 static int ecptxl_2(ec_curve *c, ec *p, PyObject *x, PyObject *y)
401 {
402   int rc = -1;
403
404   if (!x || !y) TYERR("missing argument");
405   if ((p->x = getmp(x)) == 0 ||
406       (p->y = getmp(y)) == 0)
407     goto end;
408   if (c) EC_IN(c, p, p);
409   rc = 0;
410 end:
411   return (rc);
412 }
413
414 static int ecptxl_1(ec_curve *c, ec *p, PyObject *x)
415 {
416   int rc = -1;
417   PyObject *y = 0, *z = 0, *t = 0;
418   mp *xx = 0;
419   const void *q;
420   int n;
421   qd_parse qd;
422
423   Py_XINCREF(x);
424   if (!x || x == Py_None)
425     /*cool*/;
426   else if (ECPT_PYCHECK(x)) {
427     getecptout(p, x);
428     goto fix;
429   } else if (PyString_Check(x)) {
430     if (PyObject_AsReadBuffer(x, &q, 0))
431       goto end;
432     qd.p = q;
433     qd.e = 0;
434     if (!ec_ptparse(&qd, p))
435       SYNERR(qd.e);
436     goto fix;
437   } else if (c && (xx = tomp(x)) != 0) {
438     xx = F_IN(c->f, xx, xx);
439     if (!EC_FIND(c, p, xx)) VALERR("not on the curve");
440   } else if (PySequence_Check(x)) {
441     t = x; x = 0;
442     n = PySequence_Size(t);
443     if (n != 2 && (n != 3 || !c))
444       TYERR("want sequence of two or three items");
445     if ((x = PySequence_GetItem(t, 0)) == 0 ||
446         (y = PySequence_GetItem(t, 1)) == 0 ||
447         (n == 3 && (z = PySequence_GetItem(t, 2)) == 0))
448       goto end;
449     rc = (n == 2) ? ecptxl_2(c, p, x, y) : ecptxl_3(c, p, x, y, z);
450   } else
451     TYERR("can't convert to curve point");
452   goto ok;
453
454 fix:
455   if (c) EC_IN(c, p, p);
456 ok:
457   rc = 0;
458 end:
459   Py_XDECREF(x); Py_XDECREF(y); Py_XDECREF(z); Py_XDECREF(t);
460   mp_drop(xx);
461   return (rc);
462 }
463
464 static int ecptxl(ec_curve *c, ec *p, PyObject *x, PyObject *y, PyObject *z)
465 {
466   if (z)
467     return (ecptxl_3(c, p, x, y, z));
468   else if (y)
469     return (ecptxl_2(c, p, x, y));
470   else
471     return (ecptxl_1(c, p, x));
472 }
473
474 static PyObject *ecptnc_pynew(PyTypeObject *ty, PyObject *arg, PyObject *kw)
475 {
476   PyObject *x = 0, *y = 0, *z = 0;
477   ec p = EC_INIT;
478   char *kwlist[] = { "x", "y", 0 };
479
480   if (!PyArg_ParseTupleAndKeywords(arg, kw, "|OO:new", kwlist, &x, &y) ||
481       ecptxl(0, &p, x, y, z))
482     goto end;
483   return (ecpt_pywrapout(ty, &p));
484 end:
485   EC_DESTROY(&p);
486   return (0);
487 }
488
489 static PyObject *ecpt_pyint(PyObject *me)
490 {
491   ec p = EC_INIT;
492   long l;
493   PyObject *rc = 0;
494   if (EC_ATINF(ECPT_P(me))) VALERR("point at infinity");
495   getecptout(&p, me);
496   if (mp_tolong_checked(p.x, &l)) goto end;
497   rc = PyInt_FromLong(l);
498 end:
499   EC_DESTROY(&p);
500   return (rc);
501 }
502
503 static PyObject *ecpt_pylong(PyObject *me)
504 {
505   ec p = EC_INIT;
506   PyObject *rc = 0;
507   if (EC_ATINF(ECPT_P(me))) VALERR("point at infinity");
508   getecptout(&p, me);
509   rc = mp_topylong(p.x);
510 end:
511   EC_DESTROY(&p);
512   return (rc);
513 }
514
515 static PyObject *ecpt_pynew(PyTypeObject *ty, PyObject *arg, PyObject *kw)
516 {
517   PyObject *x = 0, *y = 0, *z = 0;
518   ec p = EC_INIT;
519   char *kwlist[] = { "x", "y", "z", 0 };
520
521   if (!PyArg_ParseTupleAndKeywords(arg, kw, "|OOO:new", kwlist,
522                                    &x, &y, &z) ||
523       ecptxl(ECCURVE_C(ty), &p, x, y, z))
524     goto end;
525   return (ecpt_pywrap((PyObject *)ty, &p));
526 end:
527   EC_DESTROY(&p);
528   return (0);
529 }
530
531 static PyGetSetDef ecptnc_pygetset[] = {
532 #define GETSETNAME(op, name) epnc##op##_##name
533   GET   (ix,            "P.ix -> integer x coordinate of P")
534   GET   (iy,            "P.iy -> integer y coordinate of P")
535   GET   (point,         "P.point -> standalone curve point (no-op)")
536 #undef GETSETNAME
537   { 0 }
538 };
539
540 static PyMethodDef ecptnc_pymethods[] = {
541 #define METHNAME(func) epmeth_##func
542   METH  (tobuf,         "X.tobuf() -> BIN")
543 #undef METHNAME
544   { 0 }
545 };
546
547 static PyNumberMethods ecpt_pynumber = {
548   0,                                    /* @nb_add@ */
549   0,                                    /* @nb_subtract@ */
550   0,                                    /* @nb_multiply@ */
551   0,                                    /* @nb_divide@ */
552   0,                                    /* @nb_remainder@ */
553   0,                                    /* @nb_divmod@ */
554   0,                                    /* @nb_power@ */
555   0,                                    /* @nb_negative@ */
556   0,                                    /* @nb_positive@ */
557   0,                                    /* @nb_absolute@ */
558   ecpt_pynonzerop,                      /* @nb_nonzero@ */
559   0,                                    /* @nb_invert@ */
560   0,                                    /* @nb_lshift@ */
561   0,                                    /* @nb_rshift@ */
562   0,                                    /* @nb_and@ */
563   0,                                    /* @nb_xor@ */
564   0,                                    /* @nb_or@ */
565   0,                                    /* @nb_coerce@ */
566   ecpt_pyint,                           /* @nb_int@ */
567   ecpt_pylong,                          /* @nb_long@ */
568   0,                                    /* @nb_float@ */
569   0,                                    /* @nb_oct@ */
570   0,                                    /* @nb_hex@ */
571
572   0,                                    /* @nb_inplace_add@ */
573   0,                                    /* @nb_inplace_subtract@ */
574   0,                                    /* @nb_inplace_multiply@ */
575   0,                                    /* @nb_inplace_divide@ */
576   0,                                    /* @nb_inplace_remainder@ */
577   0,                                    /* @nb_inplace_power@ */
578   0,                                    /* @nb_inplace_lshift@ */
579   0,                                    /* @nb_inplace_rshift@ */
580   0,                                    /* @nb_inplace_and@ */
581   0,                                    /* @nb_inplace_xor@ */
582   0,                                    /* @nb_inplace_or@ */
583
584   0,                                    /* @nb_floor_divide@ */
585   0,                                    /* @nb_true_divide@ */
586   0,                                    /* @nb_inplace_floor_divide@ */
587   0,                                    /* @nb_inplace_true_divide@ */
588 };
589
590 static PyTypeObject ecpt_pytype_skel = {
591   PyObject_HEAD_INIT(0) 0,              /* Header */
592   "catacomb.ECPt",                      /* @tp_name@ */
593   sizeof(ecpt_pyobj),                   /* @tp_basicsize@ */
594   0,                                    /* @tp_itemsize@ */
595
596   ecpt_pydealloc,                       /* @tp_dealloc@ */
597   0,                                    /* @tp_print@ */
598   0,                                    /* @tp_getattr@ */
599   0,                                    /* @tp_setattr@ */
600   0,                                    /* @tp_compare@ */
601   0,                                    /* @tp_repr@ */
602   &ecpt_pynumber,                       /* @tp_as_number@ */
603   0,                                    /* @tp_as_sequence@ */
604   0,                                    /* @tp_as_mapping@ */
605   ecpt_pyhash,                          /* @tp_hash@ */
606   0,                                    /* @tp_call@ */
607   0,                                    /* @tp_str@ */
608   0,                                    /* @tp_getattro@ */
609   0,                                    /* @tp_setattro@ */
610   0,                                    /* @tp_as_buffer@ */
611   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
612     Py_TPFLAGS_CHECKTYPES |
613     Py_TPFLAGS_BASETYPE,
614
615   /* @tp_doc@ */
616 "Elliptic curve points, not associated with any curve.",
617
618   0,                                    /* @tp_traverse@ */
619   0,                                    /* @tp_clear@ */
620   ecpt_pyrichcompare,                   /* @tp_richcompare@ */
621   0,                                    /* @tp_weaklistoffset@ */
622   0,                                    /* @tp_iter@ */
623   0,                                    /* @tp_iternext@ */
624   ecptnc_pymethods,                     /* @tp_methods@ */
625   0,                                    /* @tp_members@ */
626   ecptnc_pygetset,                      /* @tp_getset@ */
627   0,                                    /* @tp_base@ */
628   0,                                    /* @tp_dict@ */
629   0,                                    /* @tp_descr_get@ */
630   0,                                    /* @tp_descr_set@ */
631   0,                                    /* @tp_dictoffset@ */
632   0,                                    /* @tp_init@ */
633   PyType_GenericAlloc,                  /* @tp_alloc@ */
634   ecptnc_pynew,                         /* @tp_new@ */
635   0,                                    /* @tp_free@ */
636   0                                     /* @tp_is_gc@ */
637 };
638
639 static PyGetSetDef ecpt_pygetset[] = {
640 #define GETSETNAME(op, name) ep##op##_##name
641   GET   (curve,         "P.curve -> elliptic curve containing P")
642   GET   (point,         "P.point -> standalone curve point")
643   GET   (x,             "P.x -> Cartesian x coordinate of P")
644   GET   (y,             "P.y -> Cartesian y coordinate of P")
645   GET   (_x,            "P._x -> internal x coordinate of P")
646   GET   (_y,            "P._y -> internal y coordinate of P")
647   GET   (_z,            "P._z -> internal z coordinate of P, or None")
648 #undef GETSETNAME
649   { 0 }
650 };
651
652 static PyMethodDef ecpt_pymethods[] = {
653 #define METHNAME(func) epmeth_##func
654   METH  (toraw,         "X.toraw() -> BIN")
655   METH  (dbl,           "X.dbl() -> X + X")
656   METH  (oncurvep,      "X.oncurvep() -> BOOL")
657 #undef METHNAME
658   { 0 }
659 };
660
661 static PyNumberMethods ecptcurve_pynumber = {
662   ecpt_pyadd,                           /* @nb_add@ */
663   ecpt_pysub,                           /* @nb_subtract@ */
664   ecpt_pymul,                           /* @nb_multiply@ */
665   0,                                    /* @nb_divide@ */
666   0,                                    /* @nb_remainder@ */
667   0,                                    /* @nb_divmod@ */
668   0,                                    /* @nb_power@ */
669   ecpt_pyneg,                           /* @nb_negative@ */
670   ecpt_pyid,                            /* @nb_positive@ */
671   0,                                    /* @nb_absolute@ */
672   0,                                    /* @nb_nonzero@ */
673   0,                                    /* @nb_invert@ */
674   0,                                    /* @nb_lshift@ */
675   0,                                    /* @nb_rshift@ */
676   0,                                    /* @nb_and@ */
677   0,                                    /* @nb_xor@ */
678   0,                                    /* @nb_or@ */
679   0,                                    /* @nb_coerce@ */
680   0,                                    /* @nb_int@ */
681   0,                                    /* @nb_long@ */
682   0,                                    /* @nb_float@ */
683   0,                                    /* @nb_oct@ */
684   0,                                    /* @nb_hex@ */
685
686   0,                                    /* @nb_inplace_add@ */
687   0,                                    /* @nb_inplace_subtract@ */
688   0,                                    /* @nb_inplace_multiply@ */
689   0,                                    /* @nb_inplace_divide@ */
690   0,                                    /* @nb_inplace_remainder@ */
691   0,                                    /* @nb_inplace_power@ */
692   0,                                    /* @nb_inplace_lshift@ */
693   0,                                    /* @nb_inplace_rshift@ */
694   0,                                    /* @nb_inplace_and@ */
695   0,                                    /* @nb_inplace_xor@ */
696   0,                                    /* @nb_inplace_or@ */
697
698   0,                                    /* @nb_floor_divide@ */
699   0,                                    /* @nb_true_divide@ */
700   0,                                    /* @nb_inplace_floor_divide@ */
701   0,                                    /* @nb_inplace_true_divide@ */
702 };
703
704 static PyTypeObject ecptcurve_pytype_skel = {
705   PyObject_HEAD_INIT(0) 0,              /* Header */
706   "catacomb.ECPtCurve",                 /* @tp_name@ */
707   sizeof(ecpt_pyobj),                   /* @tp_basicsize@ */
708   0,                                    /* @tp_itemsize@ */
709
710   ecpt_pydealloc,                       /* @tp_dealloc@ */
711   0,                                    /* @tp_print@ */
712   0,                                    /* @tp_getattr@ */
713   0,                                    /* @tp_setattr@ */
714   0,                                    /* @tp_compare@ */
715   0,                                    /* @tp_repr@ */
716   &ecptcurve_pynumber,                  /* @tp_as_number@ */
717   0,                                    /* @tp_as_sequence@ */
718   0,                                    /* @tp_as_mapping@ */
719   0,                                    /* @tp_hash@ */
720   0,                                    /* @tp_call@ */
721   0,                                    /* @tp_str@ */
722   0,                                    /* @tp_getattro@ */
723   0,                                    /* @tp_setattro@ */
724   0,                                    /* @tp_as_buffer@ */
725   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
726     Py_TPFLAGS_CHECKTYPES |
727     Py_TPFLAGS_BASETYPE,
728
729   /* @tp_doc@ */
730 "Elliptic curve points; abstract base class for points on given curves.",
731
732   0,                                    /* @tp_traverse@ */
733   0,                                    /* @tp_clear@ */
734   0,                                    /* @tp_richcompare@ */
735   0,                                    /* @tp_weaklistoffset@ */
736   0,                                    /* @tp_iter@ */
737   0,                                    /* @tp_iternext@ */
738   ecpt_pymethods,                       /* @tp_methods@ */
739   0,                                    /* @tp_members@ */
740   ecpt_pygetset,                        /* @tp_getset@ */
741   0,                                    /* @tp_base@ */
742   0,                                    /* @tp_dict@ */
743   0,                                    /* @tp_descr_get@ */
744   0,                                    /* @tp_descr_set@ */
745   0,                                    /* @tp_dictoffset@ */
746   0,                                    /* @tp_init@ */
747   PyType_GenericAlloc,                  /* @tp_alloc@ */
748   abstract_pynew,                       /* @tp_new@ */
749   0,                                    /* @tp_free@ */
750   0                                     /* @tp_is_gc@ */
751 };
752
753 /*----- Elliptic curves themselves ----------------------------------------*/
754
755 static PyObject *eccurve_pyrichcompare(PyObject *x, PyObject *y, int op)
756 {
757   int b = ec_samep(ECCURVE_C(x), ECCURVE_C(y));
758   switch (op) {
759     case Py_EQ: break;
760     case Py_NE: b = !b;
761     default: TYERR("can't order elliptic curves");
762   }
763   return (getbool(b));
764 end:
765   return (0);
766 }
767
768 static PyObject *ecmmul_id(PyObject *me)
769   { ec p = EC_INIT; return (ecpt_pywrap(me, &p)); }
770
771 static int ecmmul_fill(void *pp, PyObject *me, PyObject *x, PyObject *m)
772 {
773   ec_mulfactor *f = pp;
774
775   EC_CREATE(&f->base);
776   if (getecpt(ECCURVE_C(me), &f->base, x) ||
777       (f->exp = getmp(m)) == 0)
778     return (-1);
779   return (0);
780 }
781
782 static PyObject *ecmmul_exp(PyObject *me, void *pp, int n)
783 {
784   ec p = EC_INIT;
785   ec_immul(ECCURVE_C(me), &p, pp, n);
786   return (ecpt_pywrap(me, &p));
787 }
788
789 static void ecmmul_drop(void *pp)
790 {
791   ec_mulfactor *f = pp;
792   EC_DESTROY(&f->base);
793   MP_DROP(f->exp);
794 }
795
796 static PyObject *ecmeth_mmul(PyObject *me, PyObject *arg)
797 {
798   return (mexp_common(me, arg, sizeof(ec_mulfactor),
799                       ecmmul_id, ecmmul_fill, ecmmul_exp, ecmmul_drop));
800 }
801
802 static PyObject *meth__ECPtCurve_fromraw(PyObject *me, PyObject *arg)
803 {
804   char *p;
805   int len;
806   buf b;
807   PyObject *rc = 0;
808   ec_curve *cc;
809   ec pp = EC_INIT;
810
811   if (!PyArg_ParseTuple(arg, "Os#:fromraw", &me, &p, &len))
812     return (0);
813   buf_init(&b, p, len);
814   cc = ECCURVE_C(me);
815   if (ec_getraw(cc, &b, &pp))
816     SYNERR("bad point");
817   EC_IN(cc, &pp, &pp);
818   rc = Py_BuildValue("(NN)", ecpt_pywrap(me, &pp), bytestring_pywrapbuf(&b));
819 end:
820   return (rc);
821 }
822
823 static PyObject *meth__ECPt_frombuf(PyObject *me, PyObject *arg)
824 {
825   buf b;
826   char *p;
827   int sz;
828   PyObject *rc = 0;
829   ec pp = EC_INIT;
830
831   if (!PyArg_ParseTuple(arg, "Os#:frombuf", &me, &p, &sz)) goto end;
832   buf_init(&b, p, sz);
833   if (buf_getec(&b, &pp)) VALERR("malformed data");
834   rc = Py_BuildValue("(NN)", ecpt_pywrapout(me, &pp),
835                      bytestring_pywrapbuf(&b));
836 end:
837   return (rc);
838 }
839
840 static PyObject *meth__ECPt_parse(PyObject *me, PyObject *arg)
841 {
842   char *p;
843   qd_parse qd;
844   PyObject *rc = 0;
845   ec pp = EC_INIT;
846
847   if (!PyArg_ParseTuple(arg, "Os:parse", &me, &p)) goto end;
848   qd.p = p;
849   qd.e = 0;
850   if (!ec_ptparse(&qd, &pp)) SYNERR(qd.e);
851   rc = Py_BuildValue("(Ns)", ecpt_pywrapout(me, &pp), qd.p);
852 end:
853   return (rc);
854 }
855
856 static void eccurve_pydealloc(PyObject *me)
857 {
858   ec_destroycurve(ECCURVE_C(me));
859   Py_DECREF(ECCURVE_FOBJ(me));
860   PyType_Type.tp_dealloc(me);
861 }
862
863 static PyObject *ecmeth_find(PyObject *me, PyObject *arg)
864 {
865   PyObject *x;
866   mp *xx = 0;
867   ec p = EC_INIT;
868   PyObject *rc = 0;
869
870   if (!PyArg_ParseTuple(arg, "O:find", &x)) goto end;
871   if (FIELD_PYCHECK(x) && FE_F(x) == ECCURVE_C(me)->f)
872     xx = MP_COPY(FE_X(x));
873   else if ((xx = getmp(x)) == 0)
874     goto end;
875   else
876     xx = F_IN(ECCURVE_C(me)->f, xx, xx);
877   if (EC_FIND(ECCURVE_C(me), &p, xx) == 0)
878     VALERR("not on the curve");
879   rc = ecpt_pywrap(me, &p);
880 end:
881   if (xx) MP_DROP(xx);
882   return (rc);
883 }
884
885 static PyObject *ecmeth_rand(PyObject *me, PyObject *arg, PyObject *kw)
886 {
887   char *kwlist[] = { "rng", 0 };
888   grand *r = &rand_global;
889   ec p = EC_INIT;
890
891   if (!PyArg_ParseTupleAndKeywords(arg, kw, "|O&:rand", kwlist,
892                                    convgrand, &r))
893     return (0);
894   ec_rand(ECCURVE_C(me), &p, r);
895   EC_IN(ECCURVE_C(me), &p, &p);
896   return (ecpt_pywrap(me, &p));
897 }
898
899 static PyObject *eccurve_dopywrap(PyTypeObject *ty,
900                                   PyObject *fobj, ec_curve *c)
901 {
902   eccurve_pyobj *cobj = newtype(ty, 0, c->ops->name);
903   cobj->c = c;
904   cobj->fobj = fobj;
905   cobj->ty.ht_type.tp_basicsize = sizeof(ecpt_pyobj);
906   cobj->ty.ht_type.tp_base = ecptcurve_pytype;
907   Py_INCREF(ecptcurve_pytype);
908   cobj->ty.ht_type.tp_flags = (Py_TPFLAGS_DEFAULT |
909                                Py_TPFLAGS_BASETYPE |
910                                Py_TPFLAGS_CHECKTYPES |
911                                Py_TPFLAGS_HEAPTYPE);
912   cobj->ty.ht_type.tp_alloc = PyType_GenericAlloc;
913   cobj->ty.ht_type.tp_free = 0;
914   cobj->ty.ht_type.tp_new = ecpt_pynew;
915   PyType_Ready(&cobj->ty.ht_type);
916   return ((PyObject *)cobj);
917 }
918
919 PyObject *eccurve_pywrap(PyObject *fobj, ec_curve *c)
920 {
921   PyTypeObject *ty;
922
923   if (!fobj)
924     fobj = field_pywrap(c->f);
925   else
926     Py_INCREF(fobj);
927   assert(FIELD_F(fobj) == c->f);
928   if (strcmp(EC_NAME(c), "prime") == 0)
929     ty = ecprimecurve_pytype;
930   else if (strcmp(EC_NAME(c), "primeproj") == 0)
931     ty = ecprimeprojcurve_pytype;
932   else if (strcmp(EC_NAME(c), "bin") == 0)
933     ty = ecbincurve_pytype;
934   else if (strcmp(EC_NAME(c), "binproj") == 0)
935     ty = ecbinprojcurve_pytype;
936   else
937     abort();
938   return (eccurve_dopywrap(ty, fobj, c));
939 }
940
941 static PyObject *eccurve_pynew(PyTypeObject *ty,
942                                ec_curve *(*make)(field *, mp *, mp *),
943                                PyObject *arg, PyObject *kw)
944 {
945   PyObject *fobj;
946   PyObject *cobj = 0;
947   char *kwlist[] = { "field", "a", "b", 0 };
948   mp *aa = 0, *bb = 0;
949
950   if (!PyArg_ParseTupleAndKeywords(arg, kw, "O!O&O&", kwlist,
951                                    field_pytype, &fobj,
952                                    convmp, &aa, convmp, &bb))
953     goto end;
954   Py_INCREF(fobj);
955   cobj = eccurve_dopywrap(ty, fobj, make(FIELD_F(fobj), aa, bb));
956 end:
957   if (aa) MP_DROP(aa);
958   if (bb) MP_DROP(bb);
959   return (cobj);
960 }
961
962 static PyObject *meth__ECCurve_parse(PyObject *me, PyObject *arg)
963 {
964   char *p;
965   qd_parse qd;
966   ec_curve *c;
967   PyObject *rc = 0;
968
969   if (!PyArg_ParseTuple(arg, "Os:parse", &me, &p))
970     goto end;
971   qd.p = p;
972   qd.e = 0;
973   if ((c = ec_curveparse(&qd)) == 0)
974     SYNERR(qd.e);
975   rc = eccurve_pywrap(0, c);
976 end:
977   return (rc);
978 }
979
980 static PyObject *ecget_name(PyObject *me, void *hunoz)
981   { return (PyString_FromString(EC_NAME(ECCURVE_C(me)))); }
982
983 static PyObject *ecget_a(PyObject *me, void *hunoz)
984   { return (fe_pywrap(ECCURVE_FOBJ(me), MP_COPY(ECCURVE_C(me)->a))); }
985
986 static PyObject *ecget_b(PyObject *me, void *hunoz)
987   { return (fe_pywrap(ECCURVE_FOBJ(me), MP_COPY(ECCURVE_C(me)->b))); }
988
989 static PyObject *ecget_field(PyObject *me, void *hunoz)
990   { RETURN_OBJ(ECCURVE_FOBJ(me)); }
991
992 static PyObject *ecget_inf(PyObject *me, void *hunoz)
993   { ec inf = EC_INIT; return (ecpt_pywrap(me, &inf)); }
994
995 static PyGetSetDef eccurve_pygetset[] = {
996 #define GETSETNAME(op, name) ec##op##_##name
997   GET   (name,          "E.name -> name of this kind of curve")
998   GET   (a,             "E.a -> first parameter of curve")
999   GET   (b,             "E.b -> second parameter of curve")
1000   GET   (field,         "E.field -> finite field containing this curve")
1001   GET   (inf,           "E.inf -> point at infinity of this curve")
1002 #undef GETSETNAME
1003   { 0 }
1004 };
1005
1006 static PyMethodDef eccurve_pymethods[] = {
1007 #define METHNAME(name) ecmeth_##name
1008   METH  (mmul,          "\
1009 E.mmul([(P0, N0), (P1, N1), ...]) = N0 P0 + N1 P1 + ...")
1010   METH  (find,          "E.find(X) -> P")
1011   KWMETH(rand,          "E.rand(rng = rand) ->P")
1012 #undef METHNAME
1013   { 0 }
1014 };
1015
1016 static PyTypeObject eccurve_pytype_skel = {
1017   PyObject_HEAD_INIT(0) 0,              /* Header */
1018   "catacomb.ECCurve",                   /* @tp_name@ */
1019   sizeof(eccurve_pyobj),                /* @tp_basicsize@ */
1020   0,                                    /* @tp_itemsize@ */
1021
1022   eccurve_pydealloc,                    /* @tp_dealloc@ */
1023   0,                                    /* @tp_print@ */
1024   0,                                    /* @tp_getattr@ */
1025   0,                                    /* @tp_setattr@ */
1026   0,                                    /* @tp_compare@ */
1027   0,                                    /* @tp_repr@ */
1028   0,                                    /* @tp_as_number@ */
1029   0,                                    /* @tp_as_sequence@ */
1030   0,                                    /* @tp_as_mapping@ */
1031   0,                                    /* @tp_hash@ */
1032   0,                                    /* @tp_call@ */
1033   0,                                    /* @tp_str@ */
1034   0,                                    /* @tp_getattro@ */
1035   0,                                    /* @tp_setattro@ */
1036   0,                                    /* @tp_as_buffer@ */
1037   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
1038     Py_TPFLAGS_BASETYPE,
1039
1040   /* @tp_doc@ */
1041   "An elliptic curve.  Abstract class.",
1042
1043   0,                                    /* @tp_traverse@ */
1044   0,                                    /* @tp_clear@ */
1045   eccurve_pyrichcompare,                /* @tp_richcompare@ */
1046   0,                                    /* @tp_weaklistoffset@ */
1047   0,                                    /* @tp_iter@ */
1048   0,                                    /* @tp_iternext@ */
1049   eccurve_pymethods,                    /* @tp_methods@ */
1050   0,                                    /* @tp_members@ */
1051   eccurve_pygetset,                     /* @tp_getset@ */
1052   0,                                    /* @tp_base@ */
1053   0,                                    /* @tp_dict@ */
1054   0,                                    /* @tp_descr_get@ */
1055   0,                                    /* @tp_descr_set@ */
1056   0,                                    /* @tp_dictoffset@ */
1057   0,                                    /* @tp_init@ */
1058   PyType_GenericAlloc,                  /* @tp_alloc@ */
1059   abstract_pynew,                       /* @tp_new@ */
1060   0,                                    /* @tp_free@ */
1061   0                                     /* @tp_is_gc@ */
1062 };
1063
1064 static PyObject *ecprimecurve_pynew(PyTypeObject *ty,
1065                                     PyObject *arg, PyObject *kw)
1066 {
1067   return (eccurve_pynew(ty, ec_prime, arg, kw));
1068 }
1069
1070 static PyTypeObject ecprimecurve_pytype_skel = {
1071   PyObject_HEAD_INIT(0) 0,              /* Header */
1072   "catacomb.ECPrimeCurve",              /* @tp_name@ */
1073   sizeof(eccurve_pyobj),                /* @tp_basicsize@ */
1074   0,                                    /* @tp_itemsize@ */
1075
1076   eccurve_pydealloc,                    /* @tp_dealloc@ */
1077   0,                                    /* @tp_print@ */
1078   0,                                    /* @tp_getattr@ */
1079   0,                                    /* @tp_setattr@ */
1080   0,                                    /* @tp_compare@ */
1081   0,                                    /* @tp_repr@ */
1082   0,                                    /* @tp_as_number@ */
1083   0,                                    /* @tp_as_sequence@ */
1084   0,                                    /* @tp_as_mapping@ */
1085   0,                                    /* @tp_hash@ */
1086   0,                                    /* @tp_call@ */
1087   0,                                    /* @tp_str@ */
1088   0,                                    /* @tp_getattro@ */
1089   0,                                    /* @tp_setattro@ */
1090   0,                                    /* @tp_as_buffer@ */
1091   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
1092     Py_TPFLAGS_BASETYPE,
1093
1094   /* @tp_doc@ */
1095   "An elliptic curve over a prime field.  Use ecprimeprojcurve.",
1096
1097   0,                                    /* @tp_traverse@ */
1098   0,                                    /* @tp_clear@ */
1099   eccurve_pyrichcompare,                /* @tp_richcompare@ */
1100   0,                                    /* @tp_weaklistoffset@ */
1101   0,                                    /* @tp_iter@ */
1102   0,                                    /* @tp_iternext@ */
1103   0,                                    /* @tp_methods@ */
1104   0,                                    /* @tp_members@ */
1105   0,                                    /* @tp_getset@ */
1106   0,                                    /* @tp_base@ */
1107   0,                                    /* @tp_dict@ */
1108   0,                                    /* @tp_descr_get@ */
1109   0,                                    /* @tp_descr_set@ */
1110   0,                                    /* @tp_dictoffset@ */
1111   0,                                    /* @tp_init@ */
1112   PyType_GenericAlloc,                  /* @tp_alloc@ */
1113   ecprimecurve_pynew,                   /* @tp_new@ */
1114   0,                                    /* @tp_free@ */
1115   0                                     /* @tp_is_gc@ */
1116 };
1117
1118 static PyObject *ecprimeprojcurve_pynew(PyTypeObject *ty,
1119                                         PyObject *arg, PyObject *kw)
1120 {
1121   return (eccurve_pynew(ty, ec_primeproj, arg, kw));
1122 }
1123
1124 static PyTypeObject ecprimeprojcurve_pytype_skel = {
1125   PyObject_HEAD_INIT(0) 0,              /* Header */
1126   "catacomb.ECPrimeProjCurve",          /* @tp_name@ */
1127   sizeof(eccurve_pyobj),                /* @tp_basicsize@ */
1128   0,                                    /* @tp_itemsize@ */
1129
1130   eccurve_pydealloc,                    /* @tp_dealloc@ */
1131   0,                                    /* @tp_print@ */
1132   0,                                    /* @tp_getattr@ */
1133   0,                                    /* @tp_setattr@ */
1134   0,                                    /* @tp_compare@ */
1135   0,                                    /* @tp_repr@ */
1136   0,                                    /* @tp_as_number@ */
1137   0,                                    /* @tp_as_sequence@ */
1138   0,                                    /* @tp_as_mapping@ */
1139   0,                                    /* @tp_hash@ */
1140   0,                                    /* @tp_call@ */
1141   0,                                    /* @tp_str@ */
1142   0,                                    /* @tp_getattro@ */
1143   0,                                    /* @tp_setattro@ */
1144   0,                                    /* @tp_as_buffer@ */
1145   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
1146     Py_TPFLAGS_BASETYPE,
1147
1148   /* @tp_doc@ */
1149   "An elliptic curve over a prime field, using projective coordinates.",
1150
1151   0,                                    /* @tp_traverse@ */
1152   0,                                    /* @tp_clear@ */
1153   eccurve_pyrichcompare,                /* @tp_richcompare@ */
1154   0,                                    /* @tp_weaklistoffset@ */
1155   0,                                    /* @tp_iter@ */
1156   0,                                    /* @tp_iternext@ */
1157   0,                                    /* @tp_methods@ */
1158   0,                                    /* @tp_members@ */
1159   0,                                    /* @tp_getset@ */
1160   0,                                    /* @tp_base@ */
1161   0,                                    /* @tp_dict@ */
1162   0,                                    /* @tp_descr_get@ */
1163   0,                                    /* @tp_descr_set@ */
1164   0,                                    /* @tp_dictoffset@ */
1165   0,                                    /* @tp_init@ */
1166   PyType_GenericAlloc,                  /* @tp_alloc@ */
1167   ecprimeprojcurve_pynew,               /* @tp_new@ */
1168   0,                                    /* @tp_free@ */
1169   0                                     /* @tp_is_gc@ */
1170 };
1171
1172 static PyObject *ecbincurve_pynew(PyTypeObject *ty,
1173                                   PyObject *arg, PyObject *kw)
1174 {
1175   return (eccurve_pynew(ty, ec_bin, arg, kw));
1176 }
1177
1178 static PyTypeObject ecbincurve_pytype_skel = {
1179   PyObject_HEAD_INIT(0) 0,              /* Header */
1180   "catacomb.ECBinCurve",                /* @tp_name@ */
1181   sizeof(eccurve_pyobj),                /* @tp_basicsize@ */
1182   0,                                    /* @tp_itemsize@ */
1183
1184   eccurve_pydealloc,                    /* @tp_dealloc@ */
1185   0,                                    /* @tp_print@ */
1186   0,                                    /* @tp_getattr@ */
1187   0,                                    /* @tp_setattr@ */
1188   0,                                    /* @tp_compare@ */
1189   0,                                    /* @tp_repr@ */
1190   0,                                    /* @tp_as_number@ */
1191   0,                                    /* @tp_as_sequence@ */
1192   0,                                    /* @tp_as_mapping@ */
1193   0,                                    /* @tp_hash@ */
1194   0,                                    /* @tp_call@ */
1195   0,                                    /* @tp_str@ */
1196   0,                                    /* @tp_getattro@ */
1197   0,                                    /* @tp_setattro@ */
1198   0,                                    /* @tp_as_buffer@ */
1199   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
1200     Py_TPFLAGS_BASETYPE,
1201
1202   /* @tp_doc@ */
1203   "An elliptic curve over a binary field.  Use ecbinprojcurve.",
1204
1205   0,                                    /* @tp_traverse@ */
1206   0,                                    /* @tp_clear@ */
1207   eccurve_pyrichcompare,                /* @tp_richcompare@ */
1208   0,                                    /* @tp_weaklistoffset@ */
1209   0,                                    /* @tp_iter@ */
1210   0,                                    /* @tp_iternext@ */
1211   0,                                    /* @tp_methods@ */
1212   0,                                    /* @tp_members@ */
1213   0,                                    /* @tp_getset@ */
1214   0,                                    /* @tp_base@ */
1215   0,                                    /* @tp_dict@ */
1216   0,                                    /* @tp_descr_get@ */
1217   0,                                    /* @tp_descr_set@ */
1218   0,                                    /* @tp_dictoffset@ */
1219   0,                                    /* @tp_init@ */
1220   PyType_GenericAlloc,                  /* @tp_alloc@ */
1221   ecbincurve_pynew,                     /* @tp_new@ */
1222   0,                                    /* @tp_free@ */
1223   0                                     /* @tp_is_gc@ */
1224 };
1225
1226 static PyObject *ecbinprojcurve_pynew(PyTypeObject *ty,
1227                                       PyObject *arg, PyObject *kw)
1228 {
1229   return (eccurve_pynew(ty, ec_binproj, arg, kw));
1230 }
1231
1232 static PyTypeObject ecbinprojcurve_pytype_skel = {
1233   PyObject_HEAD_INIT(0) 0,              /* Header */
1234   "catacomb.ECBinProjCurve",            /* @tp_name@ */
1235   sizeof(eccurve_pyobj),                /* @tp_basicsize@ */
1236   0,                                    /* @tp_itemsize@ */
1237
1238   eccurve_pydealloc,                    /* @tp_dealloc@ */
1239   0,                                    /* @tp_print@ */
1240   0,                                    /* @tp_getattr@ */
1241   0,                                    /* @tp_setattr@ */
1242   0,                                    /* @tp_compare@ */
1243   0,                                    /* @tp_repr@ */
1244   0,                                    /* @tp_as_number@ */
1245   0,                                    /* @tp_as_sequence@ */
1246   0,                                    /* @tp_as_mapping@ */
1247   0,                                    /* @tp_hash@ */
1248   0,                                    /* @tp_call@ */
1249   0,                                    /* @tp_str@ */
1250   0,                                    /* @tp_getattro@ */
1251   0,                                    /* @tp_setattro@ */
1252   0,                                    /* @tp_as_buffer@ */
1253   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
1254     Py_TPFLAGS_BASETYPE,
1255
1256   /* @tp_doc@ */
1257   "An elliptic curve over a binary field, using projective coordinates.",
1258
1259   0,                                    /* @tp_traverse@ */
1260   0,                                    /* @tp_clear@ */
1261   eccurve_pyrichcompare,                /* @tp_richcompare@ */
1262   0,                                    /* @tp_weaklistoffset@ */
1263   0,                                    /* @tp_iter@ */
1264   0,                                    /* @tp_iternext@ */
1265   0,                                    /* @tp_methods@ */
1266   0,                                    /* @tp_members@ */
1267   0,                                    /* @tp_getset@ */
1268   0,                                    /* @tp_base@ */
1269   0,                                    /* @tp_dict@ */
1270   0,                                    /* @tp_descr_get@ */
1271   0,                                    /* @tp_descr_set@ */
1272   0,                                    /* @tp_dictoffset@ */
1273   0,                                    /* @tp_init@ */
1274   PyType_GenericAlloc,                  /* @tp_alloc@ */
1275   ecbinprojcurve_pynew,                 /* @tp_new@ */
1276   0,                                    /* @tp_free@ */
1277   0                                     /* @tp_is_gc@ */
1278 };
1279
1280 /*----- Curve info --------------------------------------------------------*/
1281
1282 static int ncurves = -1;
1283
1284 void ecinfo_copy(ec_info *eic, const ec_info *ei)
1285 {
1286   eic->c = eccurve_copy(ei->c);
1287   EC_CREATE(&eic->g);
1288   EC_COPY(&eic->g, &ei->g);
1289   eic->r = MP_COPY(ei->r);
1290   eic->h = MP_COPY(ei->h);
1291 }
1292
1293 PyObject *ecinfo_pywrap(ec_info *ei)
1294 {
1295   ecinfo_pyobj *o;
1296
1297   o = PyObject_NEW(ecinfo_pyobj, ecinfo_pytype);
1298   o->ei = *ei;
1299   o->cobj = eccurve_pywrap(0, o->ei.c);
1300   Py_INCREF(o->cobj);
1301   return ((PyObject *)o);
1302 }
1303
1304 static void ecinfo_pydealloc(PyObject *me)
1305 {
1306   ec_info *ei = ECINFO_EI(me);
1307   EC_DESTROY(&ei->g);
1308   MP_DROP(ei->r);
1309   MP_DROP(ei->h);
1310   Py_DECREF(ECINFO_COBJ(me));
1311   FREEOBJ(me);
1312 }
1313
1314 static PyObject *ecinfo_pynew(PyTypeObject *ty, PyObject *arg, PyObject *kw)
1315 {
1316   ec_info ei = { 0 };
1317   PyObject *e, *g;
1318   char *kwlist[] = { "curve", "G", "r", "h", 0 };
1319   ecinfo_pyobj *rc = 0;
1320
1321   if (!PyArg_ParseTupleAndKeywords(arg, kw, "O!O!O&O&:new", kwlist,
1322                                    eccurve_pytype, &e, ecpt_pytype, &g,
1323                                    convmp, &ei.r, convmp, &ei.h))
1324     goto end;
1325   if (ECPT_C(g) != ECCURVE_C(e) && !ec_samep(ECPT_C(g), ECCURVE_C(e)))
1326     TYERR("point not from this curve");
1327   ei.c = ECCURVE_C(e);
1328   EC_CREATE(&ei.g);
1329   EC_OUT(ei.c, &ei.g, ECPT_P(g));
1330   rc = (ecinfo_pyobj *)ty->tp_alloc(ty, 0);
1331   rc->ei = ei;
1332   rc->cobj = e;
1333   Py_INCREF(rc->cobj);
1334   return ((PyObject *)rc);
1335
1336 end:
1337   mp_drop(ei.r);
1338   mp_drop(ei.h);
1339   return (0);
1340 }
1341
1342 static PyObject *meth__ECInfo_parse(PyObject *me, PyObject *arg)
1343 {
1344   char *p;
1345   qd_parse qd;
1346   ec_info ei;
1347   PyObject *rc = 0;
1348
1349   if (!PyArg_ParseTuple(arg, "Os:parse", &me, &p))
1350     goto end;
1351   qd.p = p;
1352   qd.e = 0;
1353   if (ec_infoparse(&qd, &ei))
1354     SYNERR(qd.e);
1355   rc = Py_BuildValue("(Ns)", ecinfo_pywrap(&ei), qd.p);
1356 end:
1357   return (rc);
1358 }
1359
1360 static PyObject *meth__ECInfo__curven(PyObject *me, PyObject *arg)
1361 {
1362   int i;
1363   ec_info ei;
1364   PyObject *rc = 0;
1365
1366   if (!PyArg_ParseTuple(arg, "Oi:_curven", &me, &i)) goto end;
1367   if (i < 0 || i >= ncurves) VALERR("curve index out of range");
1368   ec_infofromdata(&ei, ectab[i].data);
1369   rc = ecinfo_pywrap(&ei);
1370 end:
1371   return (rc);
1372 }
1373
1374 static PyObject *ecinfo_pyrichcompare(PyObject *x, PyObject *y, int op)
1375 {
1376   int b = ec_sameinfop(ECINFO_EI(x), ECINFO_EI(y));
1377   switch (op) {
1378     case Py_EQ: break;
1379     case Py_NE: b = !b;
1380     default: TYERR("can't order elliptic curve infos");
1381   }
1382   return (getbool(b));
1383 end:
1384   return (0);
1385 }
1386
1387 static PyObject *eimeth_check(PyObject *me, PyObject *arg, PyObject *kw)
1388 {
1389   char *kwlist[] = { "rng", 0 };
1390   grand *r = &rand_global;
1391   const char *p;
1392
1393   if (!PyArg_ParseTupleAndKeywords(arg, kw, "|O&:check", kwlist,
1394                                    convgrand, &r))
1395     goto end;
1396   if ((p = ec_checkinfo(ECINFO_EI(me), r)) != 0)
1397     VALERR(p);
1398   RETURN_ME;
1399 end:
1400   return (0);
1401 }
1402
1403 static PyObject *eiget_curve(PyObject *me, void *hunoz)
1404   { RETURN_OBJ(ECINFO_COBJ(me)); }
1405
1406 static PyObject *eiget_G(PyObject *me, void *hunoz)
1407 {
1408   ec_info *ei = ECINFO_EI(me);
1409   ec p = EC_INIT;
1410   EC_IN(ei->c, &p, &ei->g);
1411   return (ecpt_pywrap(ECINFO_COBJ(me), &p));
1412 }
1413
1414 static PyObject *eiget_r(PyObject *me, void *hunoz)
1415   { return (mp_pywrap(MP_COPY(ECINFO_EI(me)->r))); }
1416
1417 static PyObject *eiget_h(PyObject *me, void *hunoz)
1418   { return (mp_pywrap(MP_COPY(ECINFO_EI(me)->h))); }
1419
1420 static PyGetSetDef ecinfo_pygetset[] = {
1421 #define GETSETNAME(op, name) ei##op##_##name
1422   GET   (curve,         "I.curve -> the elliptic curve")
1423   GET   (G,             "I.G -> generator point for the group")
1424   GET   (r,             "I.r -> order of the group (and hence of G")
1425   GET   (h,             "I.h -> cofactor of the group")
1426 #undef GETSETNAME
1427   { 0 }
1428 };
1429
1430 static PyMethodDef ecinfo_pymethods[] = {
1431 #define METHNAME(name) eimeth_##name
1432   KWMETH(check,         "I.check() -> None")
1433 #undef METHNAME
1434   { 0 }
1435 };
1436
1437 static PyTypeObject ecinfo_pytype_skel = {
1438   PyObject_HEAD_INIT(0) 0,              /* Header */
1439   "catacomb.ECInfo",                    /* @tp_name@ */
1440   sizeof(ecinfo_pyobj),                 /* @tp_basicsize@ */
1441   0,                                    /* @tp_itemsize@ */
1442
1443   ecinfo_pydealloc,                     /* @tp_dealloc@ */
1444   0,                                    /* @tp_print@ */
1445   0,                                    /* @tp_getattr@ */
1446   0,                                    /* @tp_setattr@ */
1447   0,                                    /* @tp_compare@ */
1448   0,                                    /* @tp_repr@ */
1449   0,                                    /* @tp_as_number@ */
1450   0,                                    /* @tp_as_sequence@ */
1451   0,                                    /* @tp_as_mapping@ */
1452   0,                                    /* @tp_hash@ */
1453   0,                                    /* @tp_call@ */
1454   0,                                    /* @tp_str@ */
1455   0,                                    /* @tp_getattro@ */
1456   0,                                    /* @tp_setattro@ */
1457   0,                                    /* @tp_as_buffer@ */
1458   Py_TPFLAGS_DEFAULT |                  /* @tp_flags@ */
1459     Py_TPFLAGS_BASETYPE,
1460
1461   /* @tp_doc@ */
1462   "Elliptic curve domain parameters.",
1463
1464   0,                                    /* @tp_traverse@ */
1465   0,                                    /* @tp_clear@ */
1466   ecinfo_pyrichcompare,                 /* @tp_richcompare@ */
1467   0,                                    /* @tp_weaklistoffset@ */
1468   0,                                    /* @tp_iter@ */
1469   0,                                    /* @tp_iternext@ */
1470   ecinfo_pymethods,                     /* @tp_methods@ */
1471   0,                                    /* @tp_members@ */
1472   ecinfo_pygetset,                      /* @tp_getset@ */
1473   0,                                    /* @tp_base@ */
1474   0,                                    /* @tp_dict@ */
1475   0,                                    /* @tp_descr_get@ */
1476   0,                                    /* @tp_descr_set@ */
1477   0,                                    /* @tp_dictoffset@ */
1478   0,                                    /* @tp_init@ */
1479   PyType_GenericAlloc,                  /* @tp_alloc@ */
1480   ecinfo_pynew,                         /* @tp_new@ */
1481   0,                                    /* @tp_free@ */
1482   0                                     /* @tp_is_gc@ */
1483 };
1484
1485 /*----- Setup -------------------------------------------------------------*/
1486
1487 static PyMethodDef methods[] = {
1488 #define METHNAME(func) meth_##func
1489   METH  (_ECPt_frombuf,         "frombuf(E, STR) -> (P, REST)")
1490   METH  (_ECPtCurve_fromraw,    "fromraw(E, STR) -> (P, REST)")
1491   METH  (_ECPt_parse,           "parse(E, STR) -> (P, REST)")
1492   METH  (_ECCurve_parse,        "parse(STR) -> (E, REST)")
1493   METH  (_ECInfo_parse,         "parse(STR) -> (I, REST)")
1494   METH  (_ECInfo__curven,       "_curven(N) -> I")
1495 #undef METHNAME
1496   { 0 }
1497 };
1498
1499 void ec_pyinit(void)
1500 {
1501   INITTYPE(ecpt, root);
1502   INITTYPE(ecptcurve, ecpt);
1503   INITTYPE(eccurve, type);
1504   INITTYPE(ecprimecurve, eccurve);
1505   INITTYPE(ecprimeprojcurve, ecprimecurve);
1506   INITTYPE(ecbincurve, eccurve);
1507   INITTYPE(ecbinprojcurve, ecbincurve);
1508   INITTYPE(ecinfo, root);
1509   addmethods(methods);
1510 }
1511
1512 static PyObject *namedcurves(void)
1513 {
1514   int i, j;
1515   const char *p;
1516   PyObject *d, *c;
1517
1518   d = PyDict_New();
1519   for (i = 0; ectab[i].name; i++) {
1520     p = ectab[i].name;
1521     for (j = 0; j < i; j++) {
1522       if (ectab[i].data == ectab[j].data) {
1523         c = PyDict_GetItemString(d, (/*unconst*/ char *)ectab[j].name);
1524         Py_INCREF(c);
1525         goto found;
1526       }
1527     }
1528     c = PyInt_FromLong(i);
1529   found:
1530     PyDict_SetItemString(d, (/*unconst*/ char *)p, c);
1531     Py_DECREF(c);
1532   }
1533   ncurves = i;
1534   return (d);
1535 }
1536
1537 void ec_pyinsert(PyObject *mod)
1538 {
1539   INSERT("ECPt", ecpt_pytype);
1540   INSERT("ECPtCurve", ecptcurve_pytype);
1541   INSERT("ECCurve", eccurve_pytype);
1542   INSERT("ECPrimeCurve", ecprimecurve_pytype);
1543   INSERT("ECPrimeProjCurve", ecprimeprojcurve_pytype);
1544   INSERT("ECBinCurve", ecbincurve_pytype);
1545   INSERT("ECBinProjCurve", ecbinprojcurve_pytype);
1546   INSERT("ECInfo", ecinfo_pytype);
1547   INSERT("_eccurves", namedcurves());
1548 }
1549
1550 /*----- That's all, folks -------------------------------------------------*/