bb7703ed82c7a099f675be35b62a3a7c4547ae9c
[catacomb-python] / catacomb / __init__.py
1 ### -*-python-*-
2 ###
3 ### Setup for Catacomb/Python bindings
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 from __future__ import with_statement
27
28 from binascii import hexlify as _hexify, unhexlify as _unhexify
29 from contextlib import contextmanager as _ctxmgr
30 import DLFCN as _dlfcn
31 import os as _os
32 from struct import pack as _pack
33 import sys as _sys
34 import types as _types
35
36 ###--------------------------------------------------------------------------
37 ### Import the main C extension module.
38
39 try:
40 _dlflags = _odlflags = _sys.getdlopenflags()
41 except AttributeError:
42 _dlflags = _odlflags = -1
43
44 ## Set the `deep binding' flag. Python has its own different MD5
45 ## implementation, and some distributions export `md5_init' and friends so
46 ## they override our versions, which doesn't end well. Figure out how to
47 ## turn this flag on so we don't have the problem.
48 if _dlflags >= 0:
49 try: _dlflags |= _dlfcn.RTLD_DEEPBIND
50 except AttributeError:
51 try: _dlflags |= _os.RTLD_DEEPBIND
52 except AttributeError:
53 if _os.uname()[0] == 'Linux': _dlflags |= 8 # magic knowledge
54 else: pass # can't do this.
55 _sys.setdlopenflags(_dlflags)
56
57 import _base
58
59 if _odlflags >= 0:
60 _sys.setdlopenflags(_odlflags)
61
62 del _dlflags, _odlflags
63
64 ###--------------------------------------------------------------------------
65 ### Basic stuff.
66
67 ## For the benefit of the default keyreporter, we need the program name.
68 _base._ego(_sys.argv[0])
69
70 ## How to fix a name back into the right identifier. Alas, the rules are not
71 ## consistent.
72 def _fixname(name):
73
74 ## Hyphens consistently become underscores.
75 name = name.replace('-', '_')
76
77 ## But slashes might become underscores or just vanish.
78 if name.startswith('salsa20'): name = name.translate(None, '/')
79 else: name = name.replace('/', '_')
80
81 ## Done.
82 return name
83
84 ## Initialize the module. Drag in the static methods of the various
85 ## classes; create names for the various known crypto algorithms.
86 def _init():
87 d = globals()
88 b = _base.__dict__;
89 for i in b:
90 if i[0] != '_':
91 d[i] = b[i];
92 for i in ['ByteString',
93 'MP', 'GF', 'Field',
94 'ECPt', 'ECPtCurve', 'ECCurve', 'ECInfo',
95 'DHInfo', 'BinDHInfo', 'RSAPriv', 'BBSPriv',
96 'PrimeFilter', 'RabinMiller',
97 'Group', 'GE',
98 'KeySZ', 'KeyData']:
99 c = d[i]
100 pre = '_' + i + '_'
101 plen = len(pre)
102 for j in b:
103 if j[:plen] == pre:
104 setattr(c, j[plen:], classmethod(b[j]))
105 for i in [gcciphers, gchashes, gcmacs, gcprps]:
106 for c in i.itervalues():
107 d[_fixname(c.name)] = c
108 for c in gccrands.itervalues():
109 d[_fixname(c.name + 'rand')] = c
110 _init()
111
112 ## A handy function for our work: add the methods of a named class to an
113 ## existing class. This is how we write the Python-implemented parts of our
114 ## mostly-C types.
115 def _augment(c, cc):
116 for i in cc.__dict__:
117 a = cc.__dict__[i]
118 if type(a) is _types.MethodType:
119 a = a.im_func
120 elif type(a) not in (_types.FunctionType, staticmethod, classmethod):
121 continue
122 setattr(c, i, a)
123
124 ## Parsing functions tend to return the object parsed and the remainder of
125 ## the input. This checks that the remainder is input and, if so, returns
126 ## just the object.
127 def _checkend(r):
128 x, rest = r
129 if rest != '':
130 raise SyntaxError, 'junk at end of string'
131 return x
132
133 ## Some pretty-printing utilities.
134 PRINT_SECRETS = False
135 def _clsname(me): return type(me).__name__
136 def _repr_secret(thing, secretp = True):
137 if not secretp or PRINT_SECRETS: return repr(thing)
138 else: return '#<SECRET>'
139 def _pp_str(me, pp, cyclep): pp.text(cyclep and '...' or str(me))
140 def _pp_secret(pp, thing, secretp = True):
141 if not secretp or PRINT_SECRETS: pp.pretty(thing)
142 else: pp.text('#<SECRET>')
143 def _pp_bgroup(pp, text):
144 ind = len(text)
145 pp.begin_group(ind, text)
146 return ind
147 def _pp_bgroup_tyname(pp, obj, open = '('):
148 return _pp_bgroup(pp, _clsname(obj) + open)
149 def _pp_kv(pp, k, v, secretp = False):
150 ind = _pp_bgroup(pp, k + ' = ')
151 _pp_secret(pp, v, secretp)
152 pp.end_group(ind, '')
153 def _pp_commas(pp, printfn, items):
154 firstp = True
155 for i in items:
156 if firstp: firstp = False
157 else: pp.text(','); pp.breakable()
158 printfn(i)
159 def _pp_dict(pp, items):
160 def p((k, v)):
161 pp.begin_group(0)
162 pp.pretty(k)
163 pp.text(':')
164 pp.begin_group(2)
165 pp.breakable()
166 pp.pretty(v)
167 pp.end_group(2)
168 pp.end_group(0)
169 _pp_commas(pp, p, items)
170
171 ###--------------------------------------------------------------------------
172 ### Bytestrings.
173
174 class _tmp:
175 def fromhex(x):
176 return ByteString(_unhexify(x))
177 fromhex = staticmethod(fromhex)
178 def __hex__(me):
179 return _hexify(me)
180 def __repr__(me):
181 return 'bytes(%r)' % hex(me)
182 _augment(ByteString, _tmp)
183 ByteString.__hash__ = str.__hash__
184 bytes = ByteString.fromhex
185
186 ###--------------------------------------------------------------------------
187 ### Hashing.
188
189 class _tmp:
190 def check(me, h):
191 hh = me.done()
192 return ctstreq(h, hh)
193 _augment(GHash, _tmp)
194 _augment(Poly1305Hash, _tmp)
195
196 class _HashBase (object):
197 ## The standard hash methods. Assume that `hash' is defined and returns
198 ## the receiver.
199 def hashu8(me, n): return me.hash(_pack('B', n))
200 def hashu16l(me, n): return me.hash(_pack('<H', n))
201 def hashu16b(me, n): return me.hash(_pack('>H', n))
202 hashu16 = hashu16b
203 def hashu32l(me, n): return me.hash(_pack('<L', n))
204 def hashu32b(me, n): return me.hash(_pack('>L', n))
205 hashu32 = hashu32b
206 def hashu64l(me, n): return me.hash(_pack('<Q', n))
207 def hashu64b(me, n): return me.hash(_pack('>Q', n))
208 hashu64 = hashu64b
209 def hashbuf8(me, s): return me.hashu8(len(s)).hash(s)
210 def hashbuf16l(me, s): return me.hashu16l(len(s)).hash(s)
211 def hashbuf16b(me, s): return me.hashu16b(len(s)).hash(s)
212 hashbuf16 = hashbuf16b
213 def hashbuf32l(me, s): return me.hashu32l(len(s)).hash(s)
214 def hashbuf32b(me, s): return me.hashu32b(len(s)).hash(s)
215 hashbuf32 = hashbuf32b
216 def hashbuf64l(me, s): return me.hashu64l(len(s)).hash(s)
217 def hashbuf64b(me, s): return me.hashu64b(len(s)).hash(s)
218 hashbuf64 = hashbuf64b
219 def hashstrz(me, s): return me.hash(s).hashu8(0)
220
221 class _ShakeBase (_HashBase):
222
223 ## Python gets really confused if I try to augment `__new__' on native
224 ## classes, so wrap and delegate. Sorry.
225 def __init__(me, perso = '', *args, **kw):
226 super(_ShakeBase, me).__init__(*args, **kw)
227 me._h = me._SHAKE(perso = perso, func = me._FUNC)
228
229 ## Delegate methods...
230 def copy(me): new = me.__class__(); new._copy(me)
231 def _copy(me, other): me._h = other._h
232 def hash(me, m): me._h.hash(m); return me
233 def xof(me): me._h.xof(); return me
234 def get(me, n): return me._h.get(n)
235 def mask(me, m): return me._h.mask(m)
236 def done(me, n): return me._h.done(n)
237 def check(me, h): return ctstreq(h, me.done(len(h)))
238 @property
239 def state(me): return me._h.state
240 @property
241 def buffered(me): return me._h.buffered
242 @property
243 def rate(me): return me._h.rate
244
245 class _tmp:
246 def check(me, h):
247 return ctstreq(h, me.done(len(h)))
248 def leftenc(me, n):
249 nn = MP(n).storeb()
250 return me.hashu8(len(nn)).hash(nn)
251 def rightenc(me, n):
252 nn = MP(n).storeb()
253 return me.hash(nn).hashu8(len(nn))
254 def stringenc(me, str):
255 return me.leftenc(8*len(str)).hash(str)
256 def bytepad_before(me):
257 return me.leftenc(me.rate)
258 def bytepad_after(me):
259 if me.buffered: me.hash(me._Z[:me.rate - me.buffered])
260 return me
261 @_ctxmgr
262 def bytepad(me):
263 me.bytepad_before()
264 yield me
265 me.bytepad_after()
266 _augment(Shake, _tmp)
267 _augment(_ShakeBase, _tmp)
268 Shake._Z = _ShakeBase._Z = ByteString.zero(200)
269
270 class KMAC (_ShakeBase):
271 _FUNC = 'KMAC'
272 def __init__(me, k, *arg, **kw):
273 super(KMAC, me).__init__(*arg, **kw)
274 with me.bytepad(): me.stringenc(k)
275 def done(me, n = -1):
276 if n < 0: n = me._TAGSZ
277 me.rightenc(8*n)
278 return super(KMAC, me).done(n)
279 def xof(me):
280 me.rightenc(0)
281 return super(KMAC, me).xof()
282
283 class KMAC128 (KMAC): _SHAKE = Shake128; _TAGSZ = 16
284 class KMAC256 (KMAC): _SHAKE = Shake256; _TAGSZ = 32
285
286 ###--------------------------------------------------------------------------
287 ### NaCl `secretbox'.
288
289 def secret_box(k, n, m):
290 E = xsalsa20(k).setiv(n)
291 r = E.enczero(poly1305.keysz.default)
292 s = E.enczero(poly1305.masksz)
293 y = E.encrypt(m)
294 t = poly1305(r)(s).hash(y).done()
295 return t + y
296
297 def secret_unbox(k, n, c):
298 E = xsalsa20(k).setiv(n)
299 r = E.enczero(poly1305.keysz.default)
300 s = E.enczero(poly1305.masksz)
301 y = c[poly1305.tagsz:]
302 if not poly1305(r)(s).hash(y).check(c[0:poly1305.tagsz]):
303 raise ValueError, 'decryption failed'
304 return E.decrypt(c[poly1305.tagsz:])
305
306 ###--------------------------------------------------------------------------
307 ### Multiprecision integers and binary polynomials.
308
309 def _split_rat(x):
310 if isinstance(x, BaseRat): return x._n, x._d
311 else: return x, 1
312 class BaseRat (object):
313 """Base class implementing fields of fractions over Euclidean domains."""
314 def __new__(cls, a, b):
315 a, b = cls.RING(a), cls.RING(b)
316 q, r = divmod(a, b)
317 if r == 0: return q
318 g = b.gcd(r)
319 me = super(BaseRat, cls).__new__(cls)
320 me._n = a//g
321 me._d = b//g
322 return me
323 @property
324 def numer(me): return me._n
325 @property
326 def denom(me): return me._d
327 def __str__(me): return '%s/%s' % (me._n, me._d)
328 def __repr__(me): return '%s(%s, %s)' % (_clsname(me), me._n, me._d)
329 _repr_pretty_ = _pp_str
330
331 def __add__(me, you):
332 n, d = _split_rat(you)
333 return type(me)(me._n*d + n*me._d, d*me._d)
334 __radd__ = __add__
335 def __sub__(me, you):
336 n, d = _split_rat(you)
337 return type(me)(me._n*d - n*me._d, d*me._d)
338 def __rsub__(me, you):
339 n, d = _split_rat(you)
340 return type(me)(n*me._d - me._n*d, d*me._d)
341 def __mul__(me, you):
342 n, d = _split_rat(you)
343 return type(me)(me._n*n, me._d*d)
344 def __div__(me, you):
345 n, d = _split_rat(you)
346 return type(me)(me._n*d, me._d*n)
347 def __rdiv__(me, you):
348 n, d = _split_rat(you)
349 return type(me)(me._d*n, me._n*d)
350 def __cmp__(me, you):
351 n, d = _split_rat(you)
352 return type(me)(me._n*d, n*me._d)
353 def __rcmp__(me, you):
354 n, d = _split_rat(you)
355 return cmp(n*me._d, me._n*d)
356
357 class IntRat (BaseRat):
358 RING = MP
359
360 class GFRat (BaseRat):
361 RING = GF
362
363 class _tmp:
364 def negp(x): return x < 0
365 def posp(x): return x > 0
366 def zerop(x): return x == 0
367 def oddp(x): return x.testbit(0)
368 def evenp(x): return not x.testbit(0)
369 def mont(x): return MPMont(x)
370 def barrett(x): return MPBarrett(x)
371 def reduce(x): return MPReduce(x)
372 def __div__(me, you): return IntRat(me, you)
373 def __rdiv__(me, you): return IntRat(you, me)
374 _repr_pretty_ = _pp_str
375 _augment(MP, _tmp)
376
377 class _tmp:
378 def zerop(x): return x == 0
379 def reduce(x): return GFReduce(x)
380 def trace(x, y): return x.reduce().trace(y)
381 def halftrace(x, y): return x.reduce().halftrace(y)
382 def modsqrt(x, y): return x.reduce().sqrt(y)
383 def quadsolve(x, y): return x.reduce().quadsolve(y)
384 def __div__(me, you): return GFRat(me, you)
385 def __rdiv__(me, you): return GFRat(you, me)
386 _repr_pretty_ = _pp_str
387 _augment(GF, _tmp)
388
389 class _tmp:
390 def product(*arg):
391 'product(ITERABLE) or product(I, ...) -> PRODUCT'
392 return MPMul(*arg).done()
393 product = staticmethod(product)
394 _augment(MPMul, _tmp)
395
396 ###--------------------------------------------------------------------------
397 ### Abstract fields.
398
399 class _tmp:
400 def fromstring(str): return _checkend(Field.parse(str))
401 fromstring = staticmethod(fromstring)
402 _augment(Field, _tmp)
403
404 class _tmp:
405 def __repr__(me): return '%s(%sL)' % (_clsname(me), me.p)
406 def __hash__(me): return 0x114401de ^ hash(me.p)
407 def _repr_pretty_(me, pp, cyclep):
408 ind = _pp_bgroup_tyname(pp, me)
409 if cyclep: pp.text('...')
410 else: pp.pretty(me.p)
411 pp.end_group(ind, ')')
412 def ec(me, a, b): return ECPrimeProjCurve(me, a, b)
413 _augment(PrimeField, _tmp)
414
415 class _tmp:
416 def __repr__(me): return '%s(%#xL)' % (_clsname(me), me.p)
417 def ec(me, a, b): return ECBinProjCurve(me, a, b)
418 def _repr_pretty_(me, pp, cyclep):
419 ind = _pp_bgroup_tyname(pp, me)
420 if cyclep: pp.text('...')
421 else: pp.text('%#x' % me.p)
422 pp.end_group(ind, ')')
423 _augment(BinField, _tmp)
424
425 class _tmp:
426 def __hash__(me): return 0x23e4701c ^ hash(me.p)
427 _augment(BinPolyField, _tmp)
428
429 class _tmp:
430 def __hash__(me):
431 h = 0x9a7d6240
432 h ^= hash(me.p)
433 h ^= 2*hash(me.beta) & 0xffffffff
434 return h
435 _augment(BinNormField, _tmp)
436
437 class _tmp:
438 def __str__(me): return str(me.value)
439 def __repr__(me): return '%s(%s)' % (repr(me.field), repr(me.value))
440 _repr_pretty_ = _pp_str
441 _augment(FE, _tmp)
442
443 ###--------------------------------------------------------------------------
444 ### Elliptic curves.
445
446 class _tmp:
447 def __repr__(me):
448 return '%s(%r, %s, %s)' % (_clsname(me), me.field, me.a, me.b)
449 def _repr_pretty_(me, pp, cyclep):
450 ind = _pp_bgroup_tyname(pp, me)
451 if cyclep:
452 pp.text('...')
453 else:
454 pp.pretty(me.field); pp.text(','); pp.breakable()
455 pp.pretty(me.a); pp.text(','); pp.breakable()
456 pp.pretty(me.b)
457 pp.end_group(ind, ')')
458 def frombuf(me, s):
459 return ecpt.frombuf(me, s)
460 def fromraw(me, s):
461 return ecpt.fromraw(me, s)
462 def pt(me, *args):
463 return me(*args)
464 _augment(ECCurve, _tmp)
465
466 class _tmp:
467 def __hash__(me):
468 h = 0x6751d341
469 h ^= hash(me.field)
470 h ^= 2*hash(me.a) ^ 0xffffffff
471 h ^= 5*hash(me.b) ^ 0xffffffff
472 return h
473 _augment(ECPrimeCurve, _tmp)
474
475 class _tmp:
476 def __hash__(me):
477 h = 0x2ac203c5
478 h ^= hash(me.field)
479 h ^= 2*hash(me.a) ^ 0xffffffff
480 h ^= 5*hash(me.b) ^ 0xffffffff
481 return h
482 _augment(ECBinCurve, _tmp)
483
484 class _tmp:
485 def __repr__(me):
486 if not me: return '%s()' % _clsname(me)
487 return '%s(%s, %s)' % (_clsname(me), me.ix, me.iy)
488 def __str__(me):
489 if not me: return 'inf'
490 return '(%s, %s)' % (me.ix, me.iy)
491 def _repr_pretty_(me, pp, cyclep):
492 if cyclep:
493 pp.text('...')
494 elif not me:
495 pp.text('inf')
496 else:
497 ind = _pp_bgroup(pp, '(')
498 pp.pretty(me.ix); pp.text(','); pp.breakable()
499 pp.pretty(me.iy)
500 pp.end_group(ind, ')')
501 _augment(ECPt, _tmp)
502
503 class _tmp:
504 def __repr__(me):
505 return '%s(curve = %r, G = %r, r = %s, h = %s)' % \
506 (_clsname(me), me.curve, me.G, me.r, me.h)
507 def _repr_pretty_(me, pp, cyclep):
508 ind = _pp_bgroup_tyname(pp, me)
509 if cyclep:
510 pp.text('...')
511 else:
512 _pp_kv(pp, 'curve', me.curve); pp.text(','); pp.breakable()
513 _pp_kv(pp, 'G', me.G); pp.text(','); pp.breakable()
514 _pp_kv(pp, 'r', me.r); pp.text(','); pp.breakable()
515 _pp_kv(pp, 'h', me.h)
516 pp.end_group(ind, ')')
517 def __hash__(me):
518 h = 0x9bedb8de
519 h ^= hash(me.curve)
520 h ^= 2*hash(me.G) & 0xffffffff
521 return h
522 def group(me):
523 return ECGroup(me)
524 _augment(ECInfo, _tmp)
525
526 class _tmp:
527 def __repr__(me):
528 if not me: return '%r()' % (me.curve)
529 return '%r(%s, %s)' % (me.curve, me.x, me.y)
530 def __str__(me):
531 if not me: return 'inf'
532 return '(%s, %s)' % (me.x, me.y)
533 def _repr_pretty_(me, pp, cyclep):
534 if cyclep:
535 pp.text('...')
536 elif not me:
537 pp.text('inf')
538 else:
539 ind = _pp_bgroup(pp, '(')
540 pp.pretty(me.x); pp.text(','); pp.breakable()
541 pp.pretty(me.y)
542 pp.end_group(ind, ')')
543 _augment(ECPtCurve, _tmp)
544
545 ###--------------------------------------------------------------------------
546 ### Key sizes.
547
548 class _tmp:
549 def __repr__(me): return '%s(%d)' % (_clsname(me), me.default)
550 def check(me, sz): return True
551 def best(me, sz): return sz
552 def pad(me, sz): return sz
553 _augment(KeySZAny, _tmp)
554
555 class _tmp:
556 def __repr__(me):
557 return '%s(%d, %d, %d, %d)' % \
558 (_clsname(me), me.default, me.min, me.max, me.mod)
559 def _repr_pretty_(me, pp, cyclep):
560 ind = _pp_bgroup_tyname(pp, me)
561 if cyclep:
562 pp.text('...')
563 else:
564 pp.pretty(me.default); pp.text(','); pp.breakable()
565 pp.pretty(me.min); pp.text(','); pp.breakable()
566 pp.pretty(me.max); pp.text(','); pp.breakable()
567 pp.pretty(me.mod)
568 pp.end_group(ind, ')')
569 def check(me, sz): return me.min <= sz <= me.max and sz%me.mod == 0
570 def best(me, sz):
571 if sz < me.min: raise ValueError, 'key too small'
572 elif sz > me.max: return me.max
573 else: return sz - sz%me.mod
574 def pad(me, sz):
575 if sz > me.max: raise ValueError, 'key too large'
576 elif sz < me.min: return me.min
577 else: sz += me.mod; return sz - sz%me.mod
578 _augment(KeySZRange, _tmp)
579
580 class _tmp:
581 def __repr__(me): return '%s(%d, %s)' % (_clsname(me), me.default, me.set)
582 def _repr_pretty_(me, pp, cyclep):
583 ind = _pp_bgroup_tyname(pp, me)
584 if cyclep:
585 pp.text('...')
586 else:
587 pp.pretty(me.default); pp.text(','); pp.breakable()
588 ind1 = _pp_bgroup(pp, '{')
589 _pp_commas(pp, pp.pretty, me.set)
590 pp.end_group(ind1, '}')
591 pp.end_group(ind, ')')
592 def check(me, sz): return sz in me.set
593 def best(me, sz):
594 found = -1
595 for i in me.set:
596 if found < i <= sz: found = i
597 if found < 0: raise ValueError, 'key too small'
598 return found
599 def pad(me, sz):
600 found = -1
601 for i in me.set:
602 if sz <= i and (found == -1 or i < found): found = i
603 if found < 0: raise ValueError, 'key too large'
604 return found
605 _augment(KeySZSet, _tmp)
606
607 ###--------------------------------------------------------------------------
608 ### Key data objects.
609
610 class _tmp:
611 def __repr__(me): return '%s(%r)' % (_clsname(me), me.name)
612 _augment(KeyFile, _tmp)
613
614 class _tmp:
615 def __repr__(me): return '%s(%r)' % (_clsname(me), me.fulltag)
616 _augment(Key, _tmp)
617
618 class _tmp:
619 def __repr__(me):
620 return '%s({%s})' % (_clsname(me),
621 ', '.join(['%r: %r' % kv for kv in me.iteritems()]))
622 def _repr_pretty_(me, pp, cyclep):
623 ind = _pp_bgroup_tyname(pp, me)
624 if cyclep: pp.text('...')
625 else: _pp_dict(pp, me.iteritems())
626 pp.end_group(ind, ')')
627 _augment(KeyAttributes, _tmp)
628
629 class _tmp:
630 def __repr__(me):
631 return '%s(%s, %r)' % (_clsname(me),
632 _repr_secret(me._guts(),
633 not (me.flags & KF_NONSECRET)),
634 me.writeflags(me.flags))
635 def _repr_pretty_(me, pp, cyclep):
636 ind = _pp_bgroup_tyname(pp, me)
637 if cyclep:
638 pp.text('...')
639 else:
640 _pp_secret(pp, me._guts(), not (me.flags & KF_NONSECRET))
641 pp.text(','); pp.breakable()
642 pp.pretty(me.writeflags(me.flags))
643 pp.end_group(ind, ')')
644 _augment(KeyData, _tmp)
645
646 class _tmp:
647 def _guts(me): return me.bin
648 _augment(KeyDataBinary, _tmp)
649
650 class _tmp:
651 def _guts(me): return me.ct
652 _augment(KeyDataEncrypted, _tmp)
653
654 class _tmp:
655 def _guts(me): return me.mp
656 _augment(KeyDataMP, _tmp)
657
658 class _tmp:
659 def _guts(me): return me.str
660 _augment(KeyDataString, _tmp)
661
662 class _tmp:
663 def _guts(me): return me.ecpt
664 _augment(KeyDataECPt, _tmp)
665
666 class _tmp:
667 def __repr__(me):
668 return '%s({%s})' % (_clsname(me),
669 ', '.join(['%r: %r' % kv for kv in me.iteritems()]))
670 def _repr_pretty_(me, pp, cyclep):
671 ind = _pp_bgroup_tyname(pp, me, '({ ')
672 if cyclep: pp.text('...')
673 else: _pp_dict(pp, me.iteritems())
674 pp.end_group(ind, ' })')
675 _augment(KeyDataStructured, _tmp)
676
677 ###--------------------------------------------------------------------------
678 ### Abstract groups.
679
680 class _tmp:
681 def __repr__(me):
682 return '%s(p = %s, r = %s, g = %s)' % (_clsname(me), me.p, me.r, me.g)
683 def _repr_pretty_(me, pp, cyclep):
684 ind = _pp_bgroup_tyname(pp, me)
685 if cyclep:
686 pp.text('...')
687 else:
688 _pp_kv(pp, 'p', me.p); pp.text(','); pp.breakable()
689 _pp_kv(pp, 'r', me.r); pp.text(','); pp.breakable()
690 _pp_kv(pp, 'g', me.g)
691 pp.end_group(ind, ')')
692 _augment(FGInfo, _tmp)
693
694 class _tmp:
695 def group(me): return PrimeGroup(me)
696 _augment(DHInfo, _tmp)
697
698 class _tmp:
699 def group(me): return BinGroup(me)
700 _augment(BinDHInfo, _tmp)
701
702 class _tmp:
703 def __repr__(me):
704 return '%s(%r)' % (_clsname(me), me.info)
705 def _repr_pretty_(me, pp, cyclep):
706 ind = _pp_bgroup_tyname(pp, me)
707 if cyclep: pp.text('...')
708 else: pp.pretty(me.info)
709 pp.end_group(ind, ')')
710 _augment(Group, _tmp)
711
712 class _tmp:
713 def __hash__(me):
714 info = me.info
715 h = 0xbce3cfe6
716 h ^= hash(info.p)
717 h ^= 2*hash(info.r) & 0xffffffff
718 h ^= 5*hash(info.g) & 0xffffffff
719 return h
720 def _get_geval(me, x): return MP(x)
721 _augment(PrimeGroup, _tmp)
722
723 class _tmp:
724 def __hash__(me):
725 info = me.info
726 h = 0x80695949
727 h ^= hash(info.p)
728 h ^= 2*hash(info.r) & 0xffffffff
729 h ^= 5*hash(info.g) & 0xffffffff
730 return h
731 def _get_geval(me, x): return GF(x)
732 _augment(BinGroup, _tmp)
733
734 class _tmp:
735 def __hash__(me): return 0x0ec23dab ^ hash(me.info)
736 def _get_geval(me, x): return x.toec()
737 _augment(ECGroup, _tmp)
738
739 class _tmp:
740 def __repr__(me):
741 return '%r(%r)' % (me.group, str(me))
742 def _repr_pretty_(me, pp, cyclep):
743 pp.pretty(type(me)._get_geval(me))
744 _augment(GE, _tmp)
745
746 ###--------------------------------------------------------------------------
747 ### RSA encoding techniques.
748
749 class PKCS1Crypt (object):
750 def __init__(me, ep = '', rng = rand):
751 me.ep = ep
752 me.rng = rng
753 def encode(me, msg, nbits):
754 return _base._p1crypt_encode(msg, nbits, me.ep, me.rng)
755 def decode(me, ct, nbits):
756 return _base._p1crypt_decode(ct, nbits, me.ep, me.rng)
757
758 class PKCS1Sig (object):
759 def __init__(me, ep = '', rng = rand):
760 me.ep = ep
761 me.rng = rng
762 def encode(me, msg, nbits):
763 return _base._p1sig_encode(msg, nbits, me.ep, me.rng)
764 def decode(me, msg, sig, nbits):
765 return _base._p1sig_decode(msg, sig, nbits, me.ep, me.rng)
766
767 class OAEP (object):
768 def __init__(me, mgf = sha_mgf, hash = sha, ep = '', rng = rand):
769 me.mgf = mgf
770 me.hash = hash
771 me.ep = ep
772 me.rng = rng
773 def encode(me, msg, nbits):
774 return _base._oaep_encode(msg, nbits, me.mgf, me.hash, me.ep, me.rng)
775 def decode(me, ct, nbits):
776 return _base._oaep_decode(ct, nbits, me.mgf, me.hash, me.ep, me.rng)
777
778 class PSS (object):
779 def __init__(me, mgf = sha_mgf, hash = sha, saltsz = None, rng = rand):
780 me.mgf = mgf
781 me.hash = hash
782 if saltsz is None:
783 saltsz = hash.hashsz
784 me.saltsz = saltsz
785 me.rng = rng
786 def encode(me, msg, nbits):
787 return _base._pss_encode(msg, nbits, me.mgf, me.hash, me.saltsz, me.rng)
788 def decode(me, msg, sig, nbits):
789 return _base._pss_decode(msg, sig, nbits,
790 me.mgf, me.hash, me.saltsz, me.rng)
791
792 class _tmp:
793 def encrypt(me, msg, enc):
794 return me.pubop(enc.encode(msg, me.n.nbits))
795 def verify(me, msg, sig, enc):
796 if msg is None: return enc.decode(msg, me.pubop(sig), me.n.nbits)
797 try:
798 x = enc.decode(msg, me.pubop(sig), me.n.nbits)
799 return x is None or x == msg
800 except ValueError:
801 return False
802 def __repr__(me):
803 return '%s(n = %r, e = %r)' % (_clsname(me), me.n, me.e)
804 def _repr_pretty_(me, pp, cyclep):
805 ind = _pp_bgroup_tyname(pp, me)
806 if cyclep:
807 pp.text('...')
808 else:
809 _pp_kv(pp, 'n', me.n); pp.text(','); pp.breakable()
810 _pp_kv(pp, 'e', me.e)
811 pp.end_group(ind, ')')
812 _augment(RSAPub, _tmp)
813
814 class _tmp:
815 def decrypt(me, ct, enc): return enc.decode(me.privop(ct), me.n.nbits)
816 def sign(me, msg, enc): return me.privop(enc.encode(msg, me.n.nbits))
817 def __repr__(me):
818 return '%s(n = %r, e = %r, d = %s, ' \
819 'p = %s, q = %s, dp = %s, dq = %s, q_inv = %s)' % \
820 (_clsname(me), me.n, me.e,
821 _repr_secret(me.d), _repr_secret(me.p), _repr_secret(me.q),
822 _repr_secret(me.dp), _repr_secret(me.dq), _repr_secret(me.q_inv))
823 def _repr_pretty_(me, pp, cyclep):
824 ind = _pp_bgroup_tyname(pp, me)
825 if cyclep:
826 pp.text('...')
827 else:
828 _pp_kv(pp, 'n', me.n); pp.text(','); pp.breakable()
829 _pp_kv(pp, 'e', me.e); pp.text(','); pp.breakable()
830 _pp_kv(pp, 'd', me.d, secretp = True); pp.text(','); pp.breakable()
831 _pp_kv(pp, 'p', me.p, secretp = True); pp.text(','); pp.breakable()
832 _pp_kv(pp, 'q', me.q, secretp = True); pp.text(','); pp.breakable()
833 _pp_kv(pp, 'dp', me.dp, secretp = True); pp.text(','); pp.breakable()
834 _pp_kv(pp, 'dq', me.dq, secretp = True); pp.text(','); pp.breakable()
835 _pp_kv(pp, 'q_inv', me.q_inv, secretp = True)
836 pp.end_group(ind, ')')
837 _augment(RSAPriv, _tmp)
838
839 ###--------------------------------------------------------------------------
840 ### DSA and related schemes.
841
842 class _tmp:
843 def __repr__(me): return '%s(G = %r, p = %r, hash = %r)' % \
844 (_clsname(me), me.G, me.p, me.hash)
845 def _repr_pretty_(me, pp, cyclep):
846 ind = _pp_bgroup_tyname(pp, me)
847 if cyclep:
848 pp.text('...')
849 else:
850 _pp_kv(pp, 'G', me.G); pp.text(','); pp.breakable()
851 _pp_kv(pp, 'p', me.p); pp.text(','); pp.breakable()
852 _pp_kv(pp, 'hash', me.hash)
853 pp.end_group(ind, ')')
854 _augment(DSAPub, _tmp)
855 _augment(KCDSAPub, _tmp)
856
857 class _tmp:
858 def __repr__(me): return '%s(G = %r, u = %s, p = %r, hash = %r)' % \
859 (_clsname(me), me.G, _repr_secret(me.u), me.p, me.hash)
860 def _repr_pretty_(me, pp, cyclep):
861 ind = _pp_bgroup_tyname(pp, me)
862 if cyclep:
863 pp.text('...')
864 else:
865 _pp_kv(pp, 'G', me.G); pp.text(','); pp.breakable()
866 _pp_kv(pp, 'u', me.u, True); pp.text(','); pp.breakable()
867 _pp_kv(pp, 'p', me.p); pp.text(','); pp.breakable()
868 _pp_kv(pp, 'hash', me.hash)
869 pp.end_group(ind, ')')
870 _augment(DSAPriv, _tmp)
871 _augment(KCDSAPriv, _tmp)
872
873 ###--------------------------------------------------------------------------
874 ### Bernstein's elliptic curve crypto and related schemes.
875
876 X25519_BASE = MP(9).storel(32)
877 X448_BASE = MP(5).storel(56)
878
879 Z128 = ByteString.zero(16)
880
881 class _BasePub (object):
882 def __init__(me, pub, *args, **kw):
883 if not me._PUBSZ.check(len(pub)): raise ValueError, 'bad public key'
884 super(_BasePub, me).__init__(*args, **kw)
885 me.pub = pub
886 def __repr__(me): return '%s(pub = %r)' % (_clsname(me), me.pub)
887 def _pp(me, pp): _pp_kv(pp, 'pub', me.pub)
888 def _repr_pretty_(me, pp, cyclep):
889 ind = _pp_bgroup_tyname(pp, me)
890 if cyclep: pp.text('...')
891 else: me._pp(pp)
892 pp.end_group(ind, ')')
893
894 class _BasePriv (object):
895 def __init__(me, priv, pub = None, *args, **kw):
896 if not me._KEYSZ.check(len(priv)): raise ValueError, 'bad private key'
897 if pub is None: pub = me._pubkey(priv)
898 super(_BasePriv, me).__init__(pub = pub, *args, **kw)
899 me.priv = priv
900 @classmethod
901 def generate(cls, rng = rand):
902 return cls(rng.block(cls._KEYSZ.default))
903 def __repr__(me):
904 return '%s(priv = %d, pub = %r)' % \
905 (_clsname(me), _repr_secret(me.priv), me.pub)
906 def _pp(me, pp):
907 _pp_kv(pp, 'priv', me.priv, secretp = True); pp.text(','); pp.breakable()
908 super(_BasePriv, me)._pp(pp)
909
910 class _XDHPub (_BasePub): pass
911
912 class _XDHPriv (_BasePriv):
913 def _pubkey(me, priv): return me._op(priv, me._BASE)
914 def agree(me, you): return me._op(me.priv, you.pub)
915 def boxkey(me, recip): return me._hashkey(me.agree(recip))
916 def box(me, recip, n, m): return secret_box(me.boxkey(recip), n, m)
917 def unbox(me, recip, n, c): return secret_unbox(me.boxkey(recip), n, c)
918
919 class X25519Pub (_XDHPub):
920 _PUBSZ = KeySZSet(X25519_PUBSZ)
921 _BASE = X25519_BASE
922
923 class X25519Priv (_XDHPriv, X25519Pub):
924 _KEYSZ = KeySZSet(X25519_KEYSZ)
925 def _op(me, k, X): return x25519(k, X)
926 def _hashkey(me, z): return hsalsa20_prf(z, Z128)
927
928 class X448Pub (_XDHPub):
929 _PUBSZ = KeySZSet(X448_PUBSZ)
930 _BASE = X448_BASE
931
932 class X448Priv (_XDHPriv, X448Pub):
933 _KEYSZ = KeySZSet(X448_KEYSZ)
934 def _op(me, k, X): return x448(k, X)
935 def _hashkey(me, z): return Shake256().hash(z).done(salsa20.keysz.default)
936
937 class _EdDSAPub (_BasePub):
938 def beginhash(me): return me._HASH()
939 def endhash(me, h): return h.done()
940
941 class _EdDSAPriv (_BasePriv, _EdDSAPub):
942 pass
943
944 class Ed25519Pub (_EdDSAPub):
945 _PUBSZ = KeySZSet(ED25519_PUBSZ)
946 _HASH = sha512
947 def verify(me, msg, sig, **kw):
948 return ed25519_verify(me.pub, msg, sig, **kw)
949
950 class Ed25519Priv (_EdDSAPriv, Ed25519Pub):
951 _KEYSZ = KeySZAny(ED25519_KEYSZ)
952 def _pubkey(me, priv): return ed25519_pubkey(priv)
953 def sign(me, msg, **kw):
954 return ed25519_sign(me.priv, msg, pub = me.pub, **kw)
955
956 class Ed448Pub (_EdDSAPub):
957 _PUBSZ = KeySZSet(ED448_PUBSZ)
958 _HASH = shake256
959 def verify(me, msg, sig, **kw):
960 return ed448_verify(me.pub, msg, sig, **kw)
961
962 class Ed448Priv (_EdDSAPriv, Ed448Pub):
963 _KEYSZ = KeySZAny(ED448_KEYSZ)
964 def _pubkey(me, priv): return ed448_pubkey(priv)
965 def sign(me, msg, **kw):
966 return ed448_sign(me.priv, msg, pub = me.pub, **kw)
967
968 ###--------------------------------------------------------------------------
969 ### Built-in named curves and prime groups.
970
971 class _groupmap (object):
972 def __init__(me, map, nth):
973 me.map = map
974 me.nth = nth
975 me._n = max(map.values()) + 1
976 me.i = me._n*[None]
977 def __repr__(me):
978 return '{%s}' % ', '.join(['%r: %r' % kv for kv in me.iteritems()])
979 def _repr_pretty_(me, pp, cyclep):
980 ind = _pp_bgroup(pp, '{ ')
981 if cyclep: pp.text('...')
982 else: _pp_dict(pp, me.iteritems())
983 pp.end_group(ind, ' }')
984 def __len__(me):
985 return me._n
986 def __contains__(me, k):
987 return k in me.map
988 def __getitem__(me, k):
989 i = me.map[k]
990 if me.i[i] is None:
991 me.i[i] = me.nth(i)
992 return me.i[i]
993 def __setitem__(me, k, v):
994 raise TypeError, "immutable object"
995 def __iter__(me):
996 return iter(me.map)
997 def iterkeys(me):
998 return iter(me.map)
999 def itervalues(me):
1000 for k in me:
1001 yield me[k]
1002 def iteritems(me):
1003 for k in me:
1004 yield k, me[k]
1005 def keys(me):
1006 return [k for k in me]
1007 def values(me):
1008 return [me[k] for k in me]
1009 def items(me):
1010 return [(k, me[k]) for k in me]
1011 eccurves = _groupmap(_base._eccurves, ECInfo._curven)
1012 primegroups = _groupmap(_base._pgroups, DHInfo._groupn)
1013 bingroups = _groupmap(_base._bingroups, BinDHInfo._groupn)
1014
1015 ###--------------------------------------------------------------------------
1016 ### Prime number generation.
1017
1018 class PrimeGenEventHandler (object):
1019 def pg_begin(me, ev):
1020 return me.pg_try(ev)
1021 def pg_done(me, ev):
1022 return PGEN_DONE
1023 def pg_abort(me, ev):
1024 return PGEN_TRY
1025 def pg_fail(me, ev):
1026 return PGEN_TRY
1027 def pg_pass(me, ev):
1028 return PGEN_TRY
1029
1030 class SophieGermainStepJump (object):
1031 def pg_begin(me, ev):
1032 me.lf = PrimeFilter(ev.x)
1033 me.hf = me.lf.muladd(2, 1)
1034 return me.cont(ev)
1035 def pg_try(me, ev):
1036 me.step()
1037 return me.cont(ev)
1038 def cont(me, ev):
1039 while me.lf.status == PGEN_FAIL or me.hf.status == PGEN_FAIL:
1040 me.step()
1041 if me.lf.status == PGEN_ABORT or me.hf.status == PGEN_ABORT:
1042 return PGEN_ABORT
1043 ev.x = me.lf.x
1044 if me.lf.status == PGEN_DONE and me.hf.status == PGEN_DONE:
1045 return PGEN_DONE
1046 return PGEN_TRY
1047 def pg_done(me, ev):
1048 del me.lf
1049 del me.hf
1050
1051 class SophieGermainStepper (SophieGermainStepJump):
1052 def __init__(me, step):
1053 me.lstep = step;
1054 me.hstep = 2 * step
1055 def step(me):
1056 me.lf.step(me.lstep)
1057 me.hf.step(me.hstep)
1058
1059 class SophieGermainJumper (SophieGermainStepJump):
1060 def __init__(me, jump):
1061 me.ljump = PrimeFilter(jump);
1062 me.hjump = me.ljump.muladd(2, 0)
1063 def step(me):
1064 me.lf.jump(me.ljump)
1065 me.hf.jump(me.hjump)
1066 def pg_done(me, ev):
1067 del me.ljump
1068 del me.hjump
1069 SophieGermainStepJump.pg_done(me, ev)
1070
1071 class SophieGermainTester (object):
1072 def __init__(me):
1073 pass
1074 def pg_begin(me, ev):
1075 me.lr = RabinMiller(ev.x)
1076 me.hr = RabinMiller(2 * ev.x + 1)
1077 def pg_try(me, ev):
1078 lst = me.lr.test(ev.rng.range(me.lr.x))
1079 if lst != PGEN_PASS and lst != PGEN_DONE:
1080 return lst
1081 rst = me.hr.test(ev.rng.range(me.hr.x))
1082 if rst != PGEN_PASS and rst != PGEN_DONE:
1083 return rst
1084 if lst == PGEN_DONE and rst == PGEN_DONE:
1085 return PGEN_DONE
1086 return PGEN_PASS
1087 def pg_done(me, ev):
1088 del me.lr
1089 del me.hr
1090
1091 class PrimitiveStepper (PrimeGenEventHandler):
1092 def __init__(me):
1093 pass
1094 def pg_try(me, ev):
1095 ev.x = me.i.next()
1096 return PGEN_TRY
1097 def pg_begin(me, ev):
1098 me.i = iter(smallprimes)
1099 return me.pg_try(ev)
1100
1101 class PrimitiveTester (PrimeGenEventHandler):
1102 def __init__(me, mod, hh = [], exp = None):
1103 me.mod = MPMont(mod)
1104 me.exp = exp
1105 me.hh = hh
1106 def pg_try(me, ev):
1107 x = ev.x
1108 if me.exp is not None:
1109 x = me.mod.exp(x, me.exp)
1110 if x == 1: return PGEN_FAIL
1111 for h in me.hh:
1112 if me.mod.exp(x, h) == 1: return PGEN_FAIL
1113 ev.x = x
1114 return PGEN_DONE
1115
1116 class SimulStepper (PrimeGenEventHandler):
1117 def __init__(me, mul = 2, add = 1, step = 2):
1118 me.step = step
1119 me.mul = mul
1120 me.add = add
1121 def _stepfn(me, step):
1122 if step <= 0:
1123 raise ValueError, 'step must be positive'
1124 if step <= MPW_MAX:
1125 return lambda f: f.step(step)
1126 j = PrimeFilter(step)
1127 return lambda f: f.jump(j)
1128 def pg_begin(me, ev):
1129 x = ev.x
1130 me.lf = PrimeFilter(x)
1131 me.hf = PrimeFilter(x * me.mul + me.add)
1132 me.lstep = me._stepfn(me.step)
1133 me.hstep = me._stepfn(me.step * me.mul)
1134 SimulStepper._cont(me, ev)
1135 def pg_try(me, ev):
1136 me._step()
1137 me._cont(ev)
1138 def _step(me):
1139 me.lstep(me.lf)
1140 me.hstep(me.hf)
1141 def _cont(me, ev):
1142 while me.lf.status == PGEN_FAIL or me.hf.status == PGEN_FAIL:
1143 me._step()
1144 if me.lf.status == PGEN_ABORT or me.hf.status == PGEN_ABORT:
1145 return PGEN_ABORT
1146 ev.x = me.lf.x
1147 if me.lf.status == PGEN_DONE and me.hf.status == PGEN_DONE:
1148 return PGEN_DONE
1149 return PGEN_TRY
1150 def pg_done(me, ev):
1151 del me.lf
1152 del me.hf
1153 del me.lstep
1154 del me.hstep
1155
1156 class SimulTester (PrimeGenEventHandler):
1157 def __init__(me, mul = 2, add = 1):
1158 me.mul = mul
1159 me.add = add
1160 def pg_begin(me, ev):
1161 x = ev.x
1162 me.lr = RabinMiller(x)
1163 me.hr = RabinMiller(x * me.mul + me.add)
1164 def pg_try(me, ev):
1165 lst = me.lr.test(ev.rng.range(me.lr.x))
1166 if lst != PGEN_PASS and lst != PGEN_DONE:
1167 return lst
1168 rst = me.hr.test(ev.rng.range(me.hr.x))
1169 if rst != PGEN_PASS and rst != PGEN_DONE:
1170 return rst
1171 if lst == PGEN_DONE and rst == PGEN_DONE:
1172 return PGEN_DONE
1173 return PGEN_PASS
1174 def pg_done(me, ev):
1175 del me.lr
1176 del me.hr
1177
1178 def sgprime(start, step = 2, name = 'p', event = pgen_nullev, nsteps = 0):
1179 start = MP(start)
1180 return pgen(start, name, SimulStepper(step = step), SimulTester(), event,
1181 nsteps, RabinMiller.iters(start.nbits))
1182
1183 def findprimitive(mod, hh = [], exp = None, name = 'g', event = pgen_nullev):
1184 return pgen(0, name, PrimitiveStepper(), PrimitiveTester(mod, hh, exp),
1185 event, 0, 1)
1186
1187 def kcdsaprime(pbits, qbits, rng = rand,
1188 event = pgen_nullev, name = 'p', nsteps = 0):
1189 hbits = pbits - qbits
1190 h = pgen(rng.mp(hbits, 1), name + ' [h]',
1191 PrimeGenStepper(2), PrimeGenTester(),
1192 event, nsteps, RabinMiller.iters(hbits))
1193 q = pgen(rng.mp(qbits, 1), name, SimulStepper(2 * h, 1, 2),
1194 SimulTester(2 * h, 1), event, nsteps, RabinMiller.iters(qbits))
1195 p = 2 * q * h + 1
1196 return p, q, h
1197
1198 #----- That's all, folks ----------------------------------------------------