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cristy3ed852e2009-09-05 21:47:34 +00001/*
2%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3% %
4% %
5% CCCC IIIII PPPP H H EEEEE RRRR %
6% C I P P H H E R R %
7% C I PPPP HHHHH EEE RRRR %
8% C I P H H E R R %
9% CCCC IIIII P H H EEEEE R R %
10% %
11% %
12% MagickCore Cipher Methods %
13% %
14% Software Design %
15% John Cristy %
16% March 2003 %
17% %
18% %
cristy16af1cb2009-12-11 21:38:29 +000019% Copyright 1999-2010 ImageMagick Studio LLC, a non-profit organization %
cristy3ed852e2009-09-05 21:47:34 +000020% dedicated to making software imaging solutions freely available. %
21% %
22% You may not use this file except in compliance with the License. You may %
23% obtain a copy of the License at %
24% %
25% http://www.imagemagick.org/script/license.php %
26% %
27% Unless required by applicable law or agreed to in writing, software %
28% distributed under the License is distributed on an "AS IS" BASIS, %
29% WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. %
30% See the License for the specific language governing permissions and %
31% limitations under the License. %
32% %
33%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
34%
35%
36*/
37
38/*
39 Include declarations.
40*/
41#include "magick/studio.h"
42#include "magick/cache.h"
43#include "magick/cipher.h"
44#include "magick/exception.h"
45#include "magick/exception-private.h"
46#include "magick/hashmap.h"
47#include "magick/image.h"
48#include "magick/image-private.h"
49#include "magick/list.h"
50#include "magick/memory_.h"
51#include "magick/monitor.h"
52#include "magick/monitor-private.h"
53#include "magick/property.h"
54#include "magick/quantum-private.h"
55#include "magick/registry.h"
56#include "magick/semaphore.h"
57#include "magick/signature-private.h"
58#include "magick/splay-tree.h"
59#include "magick/statistic.h"
60#include "magick/string_.h"
61
62#if defined(MAGICKCORE_CIPHER_SUPPORT)
63/*
64 Define declarations.
65*/
66#define AESBlocksize 16
67
68/*
69 Typedef declarations.
70*/
71typedef struct _AESInfo
72{
73 StringInfo
74 *key;
75
76 unsigned int
77 blocksize,
78 *encipher_key,
79 *decipher_key;
80
cristybb503372010-05-27 20:51:26 +000081 ssize_t
cristy3ed852e2009-09-05 21:47:34 +000082 rounds,
83 timestamp;
84
cristybb503372010-05-27 20:51:26 +000085 size_t
cristy3ed852e2009-09-05 21:47:34 +000086 signature;
87} AESInfo;
88
89/*
90 Global declarations.
91*/
92static unsigned char
93 InverseLog[256] =
94 {
95 1, 3, 5, 15, 17, 51, 85, 255, 26, 46, 114, 150, 161, 248,
96 19, 53, 95, 225, 56, 72, 216, 115, 149, 164, 247, 2, 6, 10,
97 30, 34, 102, 170, 229, 52, 92, 228, 55, 89, 235, 38, 106, 190,
98 217, 112, 144, 171, 230, 49, 83, 245, 4, 12, 20, 60, 68, 204,
99 79, 209, 104, 184, 211, 110, 178, 205, 76, 212, 103, 169, 224, 59,
100 77, 215, 98, 166, 241, 8, 24, 40, 120, 136, 131, 158, 185, 208,
101 107, 189, 220, 127, 129, 152, 179, 206, 73, 219, 118, 154, 181, 196,
102 87, 249, 16, 48, 80, 240, 11, 29, 39, 105, 187, 214, 97, 163,
103 254, 25, 43, 125, 135, 146, 173, 236, 47, 113, 147, 174, 233, 32,
104 96, 160, 251, 22, 58, 78, 210, 109, 183, 194, 93, 231, 50, 86,
105 250, 21, 63, 65, 195, 94, 226, 61, 71, 201, 64, 192, 91, 237,
106 44, 116, 156, 191, 218, 117, 159, 186, 213, 100, 172, 239, 42, 126,
107 130, 157, 188, 223, 122, 142, 137, 128, 155, 182, 193, 88, 232, 35,
108 101, 175, 234, 37, 111, 177, 200, 67, 197, 84, 252, 31, 33, 99,
109 165, 244, 7, 9, 27, 45, 119, 153, 176, 203, 70, 202, 69, 207,
110 74, 222, 121, 139, 134, 145, 168, 227, 62, 66, 198, 81, 243, 14,
111 18, 54, 90, 238, 41, 123, 141, 140, 143, 138, 133, 148, 167, 242,
112 13, 23, 57, 75, 221, 124, 132, 151, 162, 253, 28, 36, 108, 180,
113 199, 82, 246, 1
114 },
115 Log[256] =
116 {
117 0, 0, 25, 1, 50, 2, 26, 198, 75, 199, 27, 104, 51, 238,
118 223, 3, 100, 4, 224, 14, 52, 141, 129, 239, 76, 113, 8, 200,
119 248, 105, 28, 193, 125, 194, 29, 181, 249, 185, 39, 106, 77, 228,
120 166, 114, 154, 201, 9, 120, 101, 47, 138, 5, 33, 15, 225, 36,
121 18, 240, 130, 69, 53, 147, 218, 142, 150, 143, 219, 189, 54, 208,
122 206, 148, 19, 92, 210, 241, 64, 70, 131, 56, 102, 221, 253, 48,
123 191, 6, 139, 98, 179, 37, 226, 152, 34, 136, 145, 16, 126, 110,
124 72, 195, 163, 182, 30, 66, 58, 107, 40, 84, 250, 133, 61, 186,
125 43, 121, 10, 21, 155, 159, 94, 202, 78, 212, 172, 229, 243, 115,
126 167, 87, 175, 88, 168, 80, 244, 234, 214, 116, 79, 174, 233, 213,
127 231, 230, 173, 232, 44, 215, 117, 122, 235, 22, 11, 245, 89, 203,
128 95, 176, 156, 169, 81, 160, 127, 12, 246, 111, 23, 196, 73, 236,
129 216, 67, 31, 45, 164, 118, 123, 183, 204, 187, 62, 90, 251, 96,
130 177, 134, 59, 82, 161, 108, 170, 85, 41, 157, 151, 178, 135, 144,
131 97, 190, 220, 252, 188, 149, 207, 205, 55, 63, 91, 209, 83, 57,
132 132, 60, 65, 162, 109, 71, 20, 42, 158, 93, 86, 242, 211, 171,
133 68, 17, 146, 217, 35, 32, 46, 137, 180, 124, 184, 38, 119, 153,
134 227, 165, 103, 74, 237, 222, 197, 49, 254, 24, 13, 99, 140, 128,
135 192, 247, 112, 7,
136 },
137 SBox[256] =
138 {
139 99, 124, 119, 123, 242, 107, 111, 197, 48, 1, 103, 43, 254, 215,
140 171, 118, 202, 130, 201, 125, 250, 89, 71, 240, 173, 212, 162, 175,
141 156, 164, 114, 192, 183, 253, 147, 38, 54, 63, 247, 204, 52, 165,
142 229, 241, 113, 216, 49, 21, 4, 199, 35, 195, 24, 150, 5, 154,
143 7, 18, 128, 226, 235, 39, 178, 117, 9, 131, 44, 26, 27, 110,
144 90, 160, 82, 59, 214, 179, 41, 227, 47, 132, 83, 209, 0, 237,
145 32, 252, 177, 91, 106, 203, 190, 57, 74, 76, 88, 207, 208, 239,
146 170, 251, 67, 77, 51, 133, 69, 249, 2, 127, 80, 60, 159, 168,
147 81, 163, 64, 143, 146, 157, 56, 245, 188, 182, 218, 33, 16, 255,
148 243, 210, 205, 12, 19, 236, 95, 151, 68, 23, 196, 167, 126, 61,
149 100, 93, 25, 115, 96, 129, 79, 220, 34, 42, 144, 136, 70, 238,
150 184, 20, 222, 94, 11, 219, 224, 50, 58, 10, 73, 6, 36, 92,
151 194, 211, 172, 98, 145, 149, 228, 121, 231, 200, 55, 109, 141, 213,
152 78, 169, 108, 86, 244, 234, 101, 122, 174, 8, 186, 120, 37, 46,
153 28, 166, 180, 198, 232, 221, 116, 31, 75, 189, 139, 138, 112, 62,
154 181, 102, 72, 3, 246, 14, 97, 53, 87, 185, 134, 193, 29, 158,
155 225, 248, 152, 17, 105, 217, 142, 148, 155, 30, 135, 233, 206, 85,
156 40, 223, 140, 161, 137, 13, 191, 230, 66, 104, 65, 153, 45, 15,
157 176, 84, 187, 22
158 };
159
160/*
161 Forward declarations.
162*/
163static AESInfo
164 *DestroyAESInfo(AESInfo *);
165
166static void
167 EncipherAESBlock(AESInfo *,const unsigned char *,unsigned char *),
168 SetAESKey(AESInfo *,const StringInfo *);
169
170/*
171%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
172% %
173% %
174% %
175% A c q u i r e A E S I n f o %
176% %
177% %
178% %
179%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
180%
181% AcquireAESInfo() allocate the AESInfo structure.
182%
183% The format of the AcquireAESInfo method is:
184%
185% AESInfo *AcquireAESInfo(void)
186%
187*/
188static AESInfo *AcquireAESInfo(void)
189{
190 AESInfo
191 *aes_info;
192
cristy90823212009-12-12 20:48:33 +0000193 aes_info=(AESInfo *) AcquireAlignedMemory(1,sizeof(*aes_info));
cristy3ed852e2009-09-05 21:47:34 +0000194 if (aes_info == (AESInfo *) NULL)
195 ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
196 (void) ResetMagickMemory(aes_info,0,sizeof(*aes_info));
197 aes_info->blocksize=AESBlocksize;
198 aes_info->key=AcquireStringInfo(32);
199 aes_info->encipher_key=(unsigned int *) AcquireQuantumMemory(60UL,sizeof(
200 *aes_info->encipher_key));
201 aes_info->decipher_key=(unsigned int *) AcquireQuantumMemory(60UL,sizeof(
202 *aes_info->decipher_key));
203 if ((aes_info->key == (StringInfo *) NULL) ||
204 (aes_info->encipher_key == (unsigned int *) NULL) ||
205 (aes_info->decipher_key == (unsigned int *) NULL))
206 ThrowFatalException(ResourceLimitFatalError,"MemoryAllocationFailed");
cristybb503372010-05-27 20:51:26 +0000207 aes_info->timestamp=(ssize_t) time(0);
cristy3ed852e2009-09-05 21:47:34 +0000208 aes_info->signature=MagickSignature;
209 return(aes_info);
210}
211
212/*
213%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
214% %
215% %
216% %
217% D e s t r o y A E S I n f o %
218% %
219% %
220% %
221%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
222%
223% DestroyAESInfo() zeros memory associated with the AESInfo structure.
224%
225% The format of the DestroyAESInfo method is:
226%
227% AESInfo *DestroyAESInfo(AESInfo *aes_info)
228%
229% A description of each parameter follows:
230%
231% o aes_info: the cipher context.
232%
233*/
234static AESInfo *DestroyAESInfo(AESInfo *aes_info)
235{
236 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
237 assert(aes_info != (AESInfo *) NULL);
238 assert(aes_info->signature == MagickSignature);
239 if (aes_info->decipher_key != (unsigned int *) NULL)
240 aes_info->decipher_key=(unsigned int *) RelinquishMagickMemory(
241 aes_info->decipher_key);
242 if (aes_info->encipher_key != (unsigned int *) NULL)
243 aes_info->encipher_key=(unsigned int *) RelinquishMagickMemory(
244 aes_info->encipher_key);
245 if (aes_info->key != (StringInfo *) NULL)
246 aes_info->key=DestroyStringInfo(aes_info->key);
247 aes_info->signature=(~MagickSignature);
248 aes_info=(AESInfo *) RelinquishMagickMemory(aes_info);
249 return(aes_info);
250}
251
252/*
253%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
254% %
255% %
256% %
257% E n c i p h e r A E S B l o c k %
258% %
259% %
260% %
261%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
262%
263% EncipherAESBlock() enciphers a single block of plaintext to produce a block
264% of ciphertext.
265%
266% The format of the EncipherAESBlock method is:
267%
268% void EncipherAES(AESInfo *aes_info,const unsigned char *plaintext,
269% unsigned char *ciphertext)
270%
271% A description of each parameter follows:
272%
273% o aes_info: the cipher context.
274%
275% o plaintext: the plain text.
276%
277% o ciphertext: the cipher text.
278%
279*/
280
281static inline void AddRoundKey(const unsigned int *ciphertext,
282 const unsigned int *key,unsigned int *plaintext)
283{
cristybb503372010-05-27 20:51:26 +0000284 register ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000285 i;
286
287 /*
288 Xor corresponding text input and round key input bytes.
289 */
290 for (i=0; i < 4; i++)
291 plaintext[i]=key[i] ^ ciphertext[i];
292}
293
294static inline unsigned char ByteMultiply(const unsigned char alpha,
295 const unsigned char beta)
296{
297 /*
298 Byte multiply two elements of GF(2^m) (mix columns and inverse mix columns).
299 */
300 if ((alpha == 0) || (beta == 0))
301 return(0);
302 return(InverseLog[(Log[alpha]+Log[beta]) % 0xff]);
303}
304
305static inline unsigned int ByteSubTransform(unsigned int x,
306 unsigned char *s_box)
307{
308 unsigned int
309 key;
310
311 /*
312 Non-linear layer resists differential and linear cryptoanalysis attacks.
313 */
314 key=(s_box[x & 0xff]) | (s_box[(x >> 8) & 0xff] << 8) |
315 (s_box[(x >> 16) & 0xff] << 16) | (s_box[(x >> 24) & 0xff] << 24);
316 return(key);
317}
318
319static void FinalizeRoundKey(const unsigned int *ciphertext,
320 const unsigned int *key,unsigned char *plaintext)
321{
322 register unsigned char
323 *p;
324
325 register unsigned int
326 i,
327 j;
328
329 unsigned int
330 value;
331
332 /*
333 The round key is XORed with the result of the mix-column transformation.
334 */
335 p=plaintext;
336 for (i=0; i < 4; i++)
337 {
338 value=ciphertext[i] ^ key[i];
339 for (j=0; j < 4; j++)
340 *p++=(value >> (8*j)) & 0xff;
341 }
342 /*
343 Reset registers.
344 */
345 value=0;
346}
347
348static void InitializeRoundKey(const unsigned char *ciphertext,
349 const unsigned int *key,unsigned int *plaintext)
350{
351 register const unsigned char
352 *p;
353
354 register unsigned int
355 i,
356 j;
357
358 unsigned int
359 value;
360
361 p=ciphertext;
362 for (i=0; i < 4; i++)
363 {
364 value=0;
365 for (j=0; j < 4; j++)
366 value|=(*p++ << (8*j));
367 plaintext[i]=key[i] ^ value;
368 }
369 /*
370 Reset registers.
371 */
372 value=0;
373}
374
375static inline unsigned int RotateLeft(const unsigned int x)
376{
377 return(((x << 8) | ((x >> 24) & 0xff)));
378}
379
380static void EncipherAESBlock(AESInfo *aes_info,const unsigned char *plaintext,
381 unsigned char *ciphertext)
382{
cristybb503372010-05-27 20:51:26 +0000383 register ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000384 i,
385 j;
386
387 static int
388 map[4][4] =
389 {
390 { 0, 1, 2, 3 },
391 { 1, 2, 3, 0 },
392 { 2, 3, 0, 1 },
393 { 3, 0, 1, 2 }
394 };
395
396 static unsigned int
397 D[] =
398 {
399 0xa56363c6U, 0x847c7cf8U, 0x997777eeU, 0x8d7b7bf6U, 0x0df2f2ffU,
400 0xbd6b6bd6U, 0xb16f6fdeU, 0x54c5c591U, 0x50303060U, 0x03010102U,
401 0xa96767ceU, 0x7d2b2b56U, 0x19fefee7U, 0x62d7d7b5U, 0xe6abab4dU,
402 0x9a7676ecU, 0x45caca8fU, 0x9d82821fU, 0x40c9c989U, 0x877d7dfaU,
403 0x15fafaefU, 0xeb5959b2U, 0xc947478eU, 0x0bf0f0fbU, 0xecadad41U,
404 0x67d4d4b3U, 0xfda2a25fU, 0xeaafaf45U, 0xbf9c9c23U, 0xf7a4a453U,
405 0x967272e4U, 0x5bc0c09bU, 0xc2b7b775U, 0x1cfdfde1U, 0xae93933dU,
406 0x6a26264cU, 0x5a36366cU, 0x413f3f7eU, 0x02f7f7f5U, 0x4fcccc83U,
407 0x5c343468U, 0xf4a5a551U, 0x34e5e5d1U, 0x08f1f1f9U, 0x937171e2U,
408 0x73d8d8abU, 0x53313162U, 0x3f15152aU, 0x0c040408U, 0x52c7c795U,
409 0x65232346U, 0x5ec3c39dU, 0x28181830U, 0xa1969637U, 0x0f05050aU,
410 0xb59a9a2fU, 0x0907070eU, 0x36121224U, 0x9b80801bU, 0x3de2e2dfU,
411 0x26ebebcdU, 0x6927274eU, 0xcdb2b27fU, 0x9f7575eaU, 0x1b090912U,
412 0x9e83831dU, 0x742c2c58U, 0x2e1a1a34U, 0x2d1b1b36U, 0xb26e6edcU,
413 0xee5a5ab4U, 0xfba0a05bU, 0xf65252a4U, 0x4d3b3b76U, 0x61d6d6b7U,
414 0xceb3b37dU, 0x7b292952U, 0x3ee3e3ddU, 0x712f2f5eU, 0x97848413U,
415 0xf55353a6U, 0x68d1d1b9U, 0x00000000U, 0x2cededc1U, 0x60202040U,
416 0x1ffcfce3U, 0xc8b1b179U, 0xed5b5bb6U, 0xbe6a6ad4U, 0x46cbcb8dU,
417 0xd9bebe67U, 0x4b393972U, 0xde4a4a94U, 0xd44c4c98U, 0xe85858b0U,
418 0x4acfcf85U, 0x6bd0d0bbU, 0x2aefefc5U, 0xe5aaaa4fU, 0x16fbfbedU,
419 0xc5434386U, 0xd74d4d9aU, 0x55333366U, 0x94858511U, 0xcf45458aU,
420 0x10f9f9e9U, 0x06020204U, 0x817f7ffeU, 0xf05050a0U, 0x443c3c78U,
421 0xba9f9f25U, 0xe3a8a84bU, 0xf35151a2U, 0xfea3a35dU, 0xc0404080U,
422 0x8a8f8f05U, 0xad92923fU, 0xbc9d9d21U, 0x48383870U, 0x04f5f5f1U,
423 0xdfbcbc63U, 0xc1b6b677U, 0x75dadaafU, 0x63212142U, 0x30101020U,
424 0x1affffe5U, 0x0ef3f3fdU, 0x6dd2d2bfU, 0x4ccdcd81U, 0x140c0c18U,
425 0x35131326U, 0x2fececc3U, 0xe15f5fbeU, 0xa2979735U, 0xcc444488U,
426 0x3917172eU, 0x57c4c493U, 0xf2a7a755U, 0x827e7efcU, 0x473d3d7aU,
427 0xac6464c8U, 0xe75d5dbaU, 0x2b191932U, 0x957373e6U, 0xa06060c0U,
428 0x98818119U, 0xd14f4f9eU, 0x7fdcdca3U, 0x66222244U, 0x7e2a2a54U,
429 0xab90903bU, 0x8388880bU, 0xca46468cU, 0x29eeeec7U, 0xd3b8b86bU,
430 0x3c141428U, 0x79dedea7U, 0xe25e5ebcU, 0x1d0b0b16U, 0x76dbdbadU,
431 0x3be0e0dbU, 0x56323264U, 0x4e3a3a74U, 0x1e0a0a14U, 0xdb494992U,
432 0x0a06060cU, 0x6c242448U, 0xe45c5cb8U, 0x5dc2c29fU, 0x6ed3d3bdU,
433 0xefacac43U, 0xa66262c4U, 0xa8919139U, 0xa4959531U, 0x37e4e4d3U,
434 0x8b7979f2U, 0x32e7e7d5U, 0x43c8c88bU, 0x5937376eU, 0xb76d6ddaU,
435 0x8c8d8d01U, 0x64d5d5b1U, 0xd24e4e9cU, 0xe0a9a949U, 0xb46c6cd8U,
436 0xfa5656acU, 0x07f4f4f3U, 0x25eaeacfU, 0xaf6565caU, 0x8e7a7af4U,
437 0xe9aeae47U, 0x18080810U, 0xd5baba6fU, 0x887878f0U, 0x6f25254aU,
438 0x722e2e5cU, 0x241c1c38U, 0xf1a6a657U, 0xc7b4b473U, 0x51c6c697U,
439 0x23e8e8cbU, 0x7cdddda1U, 0x9c7474e8U, 0x211f1f3eU, 0xdd4b4b96U,
440 0xdcbdbd61U, 0x868b8b0dU, 0x858a8a0fU, 0x907070e0U, 0x423e3e7cU,
441 0xc4b5b571U, 0xaa6666ccU, 0xd8484890U, 0x05030306U, 0x01f6f6f7U,
442 0x120e0e1cU, 0xa36161c2U, 0x5f35356aU, 0xf95757aeU, 0xd0b9b969U,
443 0x91868617U, 0x58c1c199U, 0x271d1d3aU, 0xb99e9e27U, 0x38e1e1d9U,
444 0x13f8f8ebU, 0xb398982bU, 0x33111122U, 0xbb6969d2U, 0x70d9d9a9U,
445 0x898e8e07U, 0xa7949433U, 0xb69b9b2dU, 0x221e1e3cU, 0x92878715U,
446 0x20e9e9c9U, 0x49cece87U, 0xff5555aaU, 0x78282850U, 0x7adfdfa5U,
447 0x8f8c8c03U, 0xf8a1a159U, 0x80898909U, 0x170d0d1aU, 0xdabfbf65U,
448 0x31e6e6d7U, 0xc6424284U, 0xb86868d0U, 0xc3414182U, 0xb0999929U,
449 0x772d2d5aU, 0x110f0f1eU, 0xcbb0b07bU, 0xfc5454a8U, 0xd6bbbb6dU,
450 0x3a16162cU
451 };
452
453 unsigned int
454 alpha,
455 key[4],
456 text[4];
457
458 /*
459 Encipher one block.
460 */
461 (void) memset(text,0,sizeof(text));
462 InitializeRoundKey(plaintext,aes_info->encipher_key,text);
463 for (i=1; i < aes_info->rounds; i++)
464 {
465 /*
466 Linear mixing step: cause diffusion of the bits over multiple rounds.
467 */
468 for (j=0; j < 4; j++)
469 key[j]=D[text[j] & 0xff] ^
470 RotateLeft(D[(text[map[1][j]] >> 8) & 0xff] ^
471 RotateLeft(D[(text[map[2][j]] >> 16) & 0xff] ^
472 RotateLeft(D[(text[map[3][j]] >> 24) & 0xff])));
473 AddRoundKey(key,aes_info->encipher_key+4*i,text);
474 }
475 for (i=0; i < 4; i++)
476 {
477 alpha=(text[i] & 0x000000ff) | ((text[map[1][i]]) & 0x0000ff00) |
478 ((text[map[2][i]]) & 0x00ff0000) | ((text[map[3][i]]) & 0xff000000);
479 key[i]=ByteSubTransform(alpha,SBox);
480 }
481 FinalizeRoundKey(key,aes_info->encipher_key+4*aes_info->rounds,ciphertext);
482 /*
483 Reset registers.
484 */
485 alpha=0;
486 (void) ResetMagickMemory(key,0,sizeof(key));
487 (void) ResetMagickMemory(text,0,sizeof(text));
488}
489
490/*
491%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
492% %
493% %
494% %
495% P a s s k e y D e c i p h e r I m a g e %
496% %
497% %
498% %
499%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
500%
501% PasskeyDecipherImage() converts cipher pixels to plain pixels.
502%
503% The format of the PasskeyDecipherImage method is:
504%
505% MagickBooleanType PasskeyDecipherImage(Image *image,
506% const StringInfo *passkey,ExceptionInfo *exception)
507% MagickBooleanType DecipherImage(Image *image,const char *passphrase,
508% ExceptionInfo *exception)
509%
510% A description of each parameter follows:
511%
512% o image: the image.
513%
514% o passphrase: decipher cipher pixels with this passphrase.
515%
516% o passkey: decrypt cipher pixels with this passkey.
517%
518% o exception: return any errors or warnings in this structure.
519%
520*/
521
522static inline size_t MagickMin(const size_t x,const size_t y)
523{
524 if (x < y)
525 return(x);
526 return(y);
527}
528
529MagickExport MagickBooleanType DecipherImage(Image *image,
530 const char *passphrase,ExceptionInfo *exception)
531{
532 MagickBooleanType
533 status;
534
535 StringInfo
536 *passkey;
537
538 if (passphrase == (const char *) NULL)
539 return(MagickTrue);
540 passkey=StringToStringInfo(passphrase);
541 if (passkey == (StringInfo *) NULL)
542 return(MagickFalse);
543 status=PasskeyDecipherImage(image,passkey,exception);
544 passkey=DestroyStringInfo(passkey);
545 return(status);
546}
547
548MagickExport MagickBooleanType PasskeyDecipherImage(Image *image,
549 const StringInfo *passkey,ExceptionInfo *exception)
550{
551#define DecipherImageTag "Decipher/Image "
552
553 AESInfo
554 *aes_info;
555
cristyc4c8d132010-01-07 01:58:38 +0000556 CacheView
557 *image_view;
558
cristy3ed852e2009-09-05 21:47:34 +0000559 const unsigned char
560 *digest;
561
562 IndexPacket
563 *indexes;
564
cristybb503372010-05-27 20:51:26 +0000565 ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000566 y;
567
568 MagickBooleanType
569 proceed;
570
571 QuantumInfo
572 *quantum_info;
573
574 QuantumType
575 quantum_type;
576
577 SignatureInfo
578 *signature_info;
579
580 register unsigned char
581 *p;
582
583 size_t
584 length;
585
586 StringInfo
587 *key,
588 *nonce;
589
590 unsigned char
591 input_block[AESBlocksize],
592 output_block[AESBlocksize],
593 *pixels;
594
cristy3ed852e2009-09-05 21:47:34 +0000595 /*
596 Generate decipher key and nonce.
597 */
598 assert(image != (Image *) NULL);
599 assert(image->signature == MagickSignature);
600 if (image->debug != MagickFalse)
601 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
602 assert(exception != (ExceptionInfo *) NULL);
603 assert(exception->signature == MagickSignature);
604 if (passkey == (const StringInfo *) NULL)
605 return(MagickTrue);
606 quantum_info=AcquireQuantumInfo((const ImageInfo *) NULL,image);
607 if (quantum_info == (QuantumInfo *) NULL)
608 ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
609 image->filename);
610 aes_info=AcquireAESInfo();
611 key=CloneStringInfo(passkey);
612 if (key == (StringInfo *) NULL)
613 {
614 aes_info=DestroyAESInfo(aes_info);
615 quantum_info=DestroyQuantumInfo(quantum_info);
616 ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
617 image->filename);
618 }
619 nonce=SplitStringInfo(key,GetStringInfoLength(key)/2);
620 if (nonce == (StringInfo *) NULL)
621 {
622 key=DestroyStringInfo(key);
623 aes_info=DestroyAESInfo(aes_info);
624 quantum_info=DestroyQuantumInfo(quantum_info);
625 ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
626 image->filename);
627 }
628 SetAESKey(aes_info,key);
629 key=DestroyStringInfo(key);
630 signature_info=AcquireSignatureInfo();
631 UpdateSignature(signature_info,nonce);
632 SetStringInfoLength(nonce,sizeof(quantum_info->extent));
633 SetStringInfoDatum(nonce,(const unsigned char *) &quantum_info->extent);
634 UpdateSignature(signature_info,nonce);
635 FinalizeSignature(signature_info);
636 (void) ResetMagickMemory(input_block,0,sizeof(input_block));
637 digest=GetStringInfoDatum(GetSignatureDigest(signature_info));
638 (void) CopyMagickMemory(input_block,digest,MagickMin(AESBlocksize,
639 GetSignatureDigestsize(signature_info))*sizeof(*input_block));
640 nonce=DestroyStringInfo(nonce);
641 signature_info=DestroySignatureInfo(signature_info);
642 /*
643 Convert cipher pixels to plain pixels.
644 */
645 quantum_type=GetQuantumType(image,exception);
646 pixels=GetQuantumPixels(quantum_info);
647 image_view=AcquireCacheView(image);
cristybb503372010-05-27 20:51:26 +0000648 for (y=0; y < (ssize_t) image->rows; y++)
cristy3ed852e2009-09-05 21:47:34 +0000649 {
cristybb503372010-05-27 20:51:26 +0000650 register ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000651 x;
652
653 register PixelPacket
cristyc47d1f82009-11-26 01:44:43 +0000654 *restrict q;
cristy3ed852e2009-09-05 21:47:34 +0000655
656 q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,exception);
657 if (q == (PixelPacket *) NULL)
658 break;
659 indexes=GetCacheViewAuthenticIndexQueue(image_view);
660 length=ExportQuantumPixels(image,image_view,quantum_info,quantum_type,
661 pixels,exception);
662 p=pixels;
cristybb503372010-05-27 20:51:26 +0000663 for (x=0; x < (ssize_t) length; x++)
cristy3ed852e2009-09-05 21:47:34 +0000664 {
665 (void) CopyMagickMemory(output_block,input_block,AESBlocksize*
666 sizeof(*output_block));
667 EncipherAESBlock(aes_info,output_block,output_block);
668 (void) CopyMagickMemory(input_block,input_block+1,(AESBlocksize-1)*
669 sizeof(*input_block));
670 input_block[AESBlocksize-1]=(*p);
671 *p++^=(*output_block);
672 }
673 (void) ImportQuantumPixels(image,image_view,quantum_info,quantum_type,
674 pixels,exception);
675 if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
676 break;
cristybb503372010-05-27 20:51:26 +0000677 proceed=SetImageProgress(image,DecipherImageTag,(MagickOffsetType) y,
678 image->rows);
cristy3ed852e2009-09-05 21:47:34 +0000679 if (proceed == MagickFalse)
680 break;
681 }
682 image_view=DestroyCacheView(image_view);
683 (void) DeleteImageProperty(image,"cipher:type");
684 (void) DeleteImageProperty(image,"cipher:mode");
685 (void) DeleteImageProperty(image,"cipher:nonce");
686 image->taint=MagickFalse;
687 /*
688 Free resources.
689 */
690 quantum_info=DestroyQuantumInfo(quantum_info);
691 aes_info=DestroyAESInfo(aes_info);
692 (void) ResetMagickMemory(input_block,0,sizeof(input_block));
693 (void) ResetMagickMemory(output_block,0,sizeof(output_block));
cristybb503372010-05-27 20:51:26 +0000694 return(y == (ssize_t) image->rows ? MagickTrue : MagickFalse);
cristy3ed852e2009-09-05 21:47:34 +0000695}
696
697/*
698%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
699% %
700% %
701% %
702% P a s s k e y E n c i p h e r I m a g e %
703% %
704% %
705% %
706%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
707%
708% PasskeyEncipherImage() converts pixels to cipher-pixels.
709%
710% The format of the PasskeyEncipherImage method is:
711%
712% MagickBooleanType PasskeyEncipherImage(Image *image,
713% const StringInfo *passkey,ExceptionInfo *exception)
714% MagickBooleanType EncipherImage(Image *image,const char *passphrase,
715% ExceptionInfo *exception)
716%
717% A description of each parameter follows:
718%
719% o image: the image.
720%
721% o passphrase: encipher pixels with this passphrase.
722%
723% o passkey: decrypt cipher pixels with this passkey.
724%
725% o exception: return any errors or warnings in this structure.
726%
727*/
728
729MagickExport MagickBooleanType EncipherImage(Image *image,
730 const char *passphrase,ExceptionInfo *exception)
731{
732 MagickBooleanType
733 status;
734
735 StringInfo
736 *passkey;
737
738 if (passphrase == (const char *) NULL)
739 return(MagickTrue);
740 passkey=StringToStringInfo(passphrase);
741 if (passkey == (StringInfo *) NULL)
742 return(MagickFalse);
743 status=PasskeyEncipherImage(image,passkey,exception);
744 passkey=DestroyStringInfo(passkey);
745 return(status);
746}
747
748MagickExport MagickBooleanType PasskeyEncipherImage(Image *image,
749 const StringInfo *passkey,ExceptionInfo *exception)
750{
751#define EncipherImageTag "Encipher/Image "
752
753 AESInfo
754 *aes_info;
755
cristyc4c8d132010-01-07 01:58:38 +0000756 CacheView
757 *image_view;
758
cristy3ed852e2009-09-05 21:47:34 +0000759 char
760 *signature;
761
762 const unsigned char
763 *digest;
764
765 IndexPacket
766 *indexes;
767
cristybb503372010-05-27 20:51:26 +0000768 ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000769 y;
770
771 MagickBooleanType
772 proceed;
773
774 QuantumInfo
775 *quantum_info;
776
777 QuantumType
778 quantum_type;
779
780 register unsigned char
781 *p;
782
783 SignatureInfo
784 *signature_info;
785
786 size_t
787 length;
788
789 StringInfo
790 *key,
791 *nonce;
792
793 unsigned char
794 input_block[AESBlocksize],
795 output_block[AESBlocksize],
796 *pixels;
797
cristy3ed852e2009-09-05 21:47:34 +0000798 /*
799 Generate encipher key and nonce.
800 */
801 assert(image != (Image *) NULL);
802 assert(image->signature == MagickSignature);
803 if (image->debug != MagickFalse)
804 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
805 assert(exception != (ExceptionInfo *) NULL);
806 assert(exception->signature == MagickSignature);
807 if (passkey == (const StringInfo *) NULL)
808 return(MagickTrue);
809 if (SetImageStorageClass(image,DirectClass) == MagickFalse)
810 return(MagickFalse);
811 quantum_info=AcquireQuantumInfo((const ImageInfo *) NULL,image);
812 if (quantum_info == (QuantumInfo *) NULL)
813 ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
814 image->filename);
815 aes_info=AcquireAESInfo();
816 key=CloneStringInfo(passkey);
817 if (key == (StringInfo *) NULL)
818 {
819 aes_info=DestroyAESInfo(aes_info);
820 quantum_info=DestroyQuantumInfo(quantum_info);
821 ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
822 image->filename);
823 }
824 nonce=SplitStringInfo(key,GetStringInfoLength(key)/2);
825 if (nonce == (StringInfo *) NULL)
826 {
827 key=DestroyStringInfo(key);
828 aes_info=DestroyAESInfo(aes_info);
829 quantum_info=DestroyQuantumInfo(quantum_info);
830 ThrowBinaryException(ResourceLimitError,"MemoryAllocationFailed",
831 image->filename);
832 }
833 SetAESKey(aes_info,key);
834 key=DestroyStringInfo(key);
835 signature_info=AcquireSignatureInfo();
836 UpdateSignature(signature_info,nonce);
837 SetStringInfoLength(nonce,sizeof(quantum_info->extent));
838 SetStringInfoDatum(nonce,(const unsigned char *) &quantum_info->extent);
839 UpdateSignature(signature_info,nonce);
840 nonce=DestroyStringInfo(nonce);
841 FinalizeSignature(signature_info);
842 (void) ResetMagickMemory(input_block,0,sizeof(input_block));
843 digest=GetStringInfoDatum(GetSignatureDigest(signature_info));
844 (void) CopyMagickMemory(input_block,digest,MagickMin(AESBlocksize,
845 GetSignatureDigestsize(signature_info))*sizeof(*input_block));
846 signature=StringInfoToHexString(GetSignatureDigest(signature_info));
847 (void) SetImageProperty(image,"cipher:type","AES");
848 (void) SetImageProperty(image,"cipher:mode","CFB");
849 (void) SetImageProperty(image,"cipher:nonce",signature);
850 signature=DestroyString(signature);
851 signature_info=DestroySignatureInfo(signature_info);
852 /*
853 Convert plain pixels to cipher pixels.
854 */
855 quantum_type=GetQuantumType(image,exception);
856 pixels=GetQuantumPixels(quantum_info);
857 image_view=AcquireCacheView(image);
cristybb503372010-05-27 20:51:26 +0000858 for (y=0; y < (ssize_t) image->rows; y++)
cristy3ed852e2009-09-05 21:47:34 +0000859 {
cristybb503372010-05-27 20:51:26 +0000860 register ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000861 x;
862
863 register PixelPacket
cristyc47d1f82009-11-26 01:44:43 +0000864 *restrict q;
cristy3ed852e2009-09-05 21:47:34 +0000865
866 q=GetCacheViewAuthenticPixels(image_view,0,y,image->columns,1,exception);
867 if (q == (PixelPacket *) NULL)
868 break;
869 indexes=GetCacheViewAuthenticIndexQueue(image_view);
870 length=ExportQuantumPixels(image,image_view,quantum_info,quantum_type,
871 pixels,exception);
872 p=pixels;
cristybb503372010-05-27 20:51:26 +0000873 for (x=0; x < (ssize_t) length; x++)
cristy3ed852e2009-09-05 21:47:34 +0000874 {
875 (void) CopyMagickMemory(output_block,input_block,AESBlocksize*
876 sizeof(*output_block));
877 EncipherAESBlock(aes_info,output_block,output_block);
878 *p^=(*output_block);
879 (void) CopyMagickMemory(input_block,input_block+1,(AESBlocksize-1)*
880 sizeof(*input_block));
881 input_block[AESBlocksize-1]=(*p++);
882 }
883 (void) ImportQuantumPixels(image,image_view,quantum_info,quantum_type,
884 pixels,exception);
885 if (SyncCacheViewAuthenticPixels(image_view,exception) == MagickFalse)
886 break;
cristybb503372010-05-27 20:51:26 +0000887 proceed=SetImageProgress(image,EncipherImageTag,(MagickOffsetType) y,
888 image->rows);
cristy3ed852e2009-09-05 21:47:34 +0000889 if (proceed == MagickFalse)
890 break;
891 }
892 image_view=DestroyCacheView(image_view);
893 image->taint=MagickFalse;
894 /*
895 Free resources.
896 */
897 quantum_info=DestroyQuantumInfo(quantum_info);
898 aes_info=DestroyAESInfo(aes_info);
899 (void) ResetMagickMemory(input_block,0,sizeof(input_block));
900 (void) ResetMagickMemory(output_block,0,sizeof(output_block));
cristybb503372010-05-27 20:51:26 +0000901 return(y == (ssize_t) image->rows ? MagickTrue : MagickFalse);
cristy3ed852e2009-09-05 21:47:34 +0000902}
903
904/*
905%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
906% %
907% %
908% %
909% S e t A E S K e y %
910% %
911% %
912% %
913%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
914%
915% SetAESKey() sets the key for the AES cipher. The key length is specified
916% in bits. Valid values are 128, 192, or 256 requiring a key buffer length
917% in bytes of 16, 24, and 32 respectively.
918%
919% The format of the SetAESKey method is:
920%
921% SetAESKey(AESInfo *aes_info,const StringInfo *key)
922%
923% A description of each parameter follows:
924%
925% o aes_info: the cipher context.
926%
927% o key: the key.
928%
929*/
930
931static inline void InverseAddRoundKey(const unsigned int *alpha,
932 unsigned int *beta)
933{
934 register unsigned int
935 i,
936 j;
937
938 for (i=0; i < 4; i++)
939 {
940 beta[i]=0;
941 for (j=0; j < 4; j++)
942 beta[i]|=(ByteMultiply(0xe,(alpha[i] >> (8*j)) & 0xff) ^
943 ByteMultiply(0xb,(alpha[i] >> (8*((j+1) % 4))) & 0xff) ^
944 ByteMultiply(0xd,(alpha[i] >> (8*((j+2) % 4))) & 0xff) ^
945 ByteMultiply(0x9,(alpha[i] >> (8*((j+3) % 4))) & 0xff)) << (8*j);
946 }
947}
948
949static inline unsigned int XTime(unsigned char alpha)
950{
951 unsigned char
952 beta;
953
954 beta=(unsigned char) ((alpha & 0x80) != 0 ? 0x1b : 0);
955 alpha<<=1;
956 alpha^=beta;
957 return(alpha);
958}
959
960static inline unsigned int RotateRight(const unsigned int x)
961{
962 return((x >> 8) | ((x & 0xff) << 24));
963}
964
965static void SetAESKey(AESInfo *aes_info,const StringInfo *key)
966{
cristybb503372010-05-27 20:51:26 +0000967 ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000968 bytes,
969 n;
970
cristybb503372010-05-27 20:51:26 +0000971 register ssize_t
cristy3ed852e2009-09-05 21:47:34 +0000972 i;
973
974 unsigned char
975 *datum;
976
977 unsigned int
978 alpha,
979 beta;
980
981 /*
982 Determine the number of rounds based on the number of bits in key.
983 */
984 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"...");
985 assert(aes_info != (AESInfo *) NULL);
986 assert(aes_info->signature == MagickSignature);
987 assert(key != (StringInfo *) NULL);
988 n=4;
989 aes_info->rounds=10;
990 if ((8*GetStringInfoLength(key)) >= 256)
991 {
992 n=8;
993 aes_info->rounds=14;
994 }
995 else
996 if ((8*GetStringInfoLength(key)) >= 192)
997 {
998 n=6;
999 aes_info->rounds=12;
1000 }
1001 /*
1002 Generate crypt key.
1003 */
1004 datum=GetStringInfoDatum(aes_info->key);
1005 (void) ResetMagickMemory(datum,0,GetStringInfoLength(aes_info->key));
1006 (void) CopyMagickMemory(datum,GetStringInfoDatum(key),MagickMin(
1007 GetStringInfoLength(key),GetStringInfoLength(aes_info->key)));
1008 for (i=0; i < n; i++)
1009 aes_info->encipher_key[i]=datum[4*i] | (datum[4*i+1] << 8) |
1010 (datum[4*i+2] << 16) | (datum[4*i+3] << 24);
1011 beta=1;
1012 bytes=(AESBlocksize/4)*(aes_info->rounds+1);
1013 for (i=n; i < bytes; i++)
1014 {
1015 alpha=aes_info->encipher_key[i-1];
1016 if ((i % n) == 0)
1017 {
1018 alpha=ByteSubTransform(RotateRight(alpha),SBox) ^ beta;
1019 beta=XTime((unsigned char) (beta & 0xff));
1020 }
1021 else
1022 if ((n > 6) && ((i % n) == 4))
1023 alpha=ByteSubTransform(alpha,SBox);
1024 aes_info->encipher_key[i]=aes_info->encipher_key[i-n] ^ alpha;
1025 }
1026 /*
1027 Generate deciper key (in reverse order).
1028 */
1029 for (i=0; i < 4; i++)
1030 {
1031 aes_info->decipher_key[i]=aes_info->encipher_key[i];
1032 aes_info->decipher_key[bytes-4+i]=aes_info->encipher_key[bytes-4+i];
1033 }
1034 for (i=4; i < (bytes-4); i+=4)
1035 InverseAddRoundKey(aes_info->encipher_key+i,aes_info->decipher_key+i);
1036 /*
1037 Reset registers.
1038 */
1039 datum=GetStringInfoDatum(aes_info->key);
1040 (void) ResetMagickMemory(datum,0,GetStringInfoLength(aes_info->key));
1041 alpha=0;
1042 beta=0;
1043}
1044#else
1045
1046/*
1047%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1048% %
1049% %
1050% %
1051% P a s s k e y D e c i p h e r I m a g e %
1052% %
1053% %
1054% %
1055%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1056%
1057% PasskeyDecipherImage() converts cipher pixels to plain pixels.
1058%
1059% The format of the PasskeyDecipherImage method is:
1060%
1061% MagickBooleanType PasskeyDecipherImage(Image *image,
1062% const StringInfo *passkey,ExceptionInfo *exception)
1063% MagickBooleanType DecipherImage(Image *image,const char *passphrase,
1064% ExceptionInfo *exception)
1065%
1066% A description of each parameter follows:
1067%
1068% o image: the image.
1069%
1070% o passphrase: decipher cipher pixels with this passphrase.
1071%
1072% o passkey: decrypt cipher pixels with this passkey.
1073%
1074% o exception: return any errors or warnings in this structure.
1075%
1076*/
1077
1078MagickExport MagickBooleanType DecipherImage(Image *image,
1079 const char *passphrase,ExceptionInfo *exception)
1080{
1081 assert(image != (Image *) NULL);
1082 assert(image->signature == MagickSignature);
1083 if (image->debug != MagickFalse)
1084 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1085 assert(exception != (ExceptionInfo *) NULL);
1086 assert(exception->signature == MagickSignature);
1087 (void) passphrase;
1088 ThrowBinaryException(ImageError,"CipherSupportNotEnabled",image->filename);
1089}
1090
1091MagickExport MagickBooleanType PasskeyDecipherImage(Image *image,
1092 const StringInfo *passkey,ExceptionInfo *exception)
1093{
1094 assert(image != (Image *) NULL);
1095 assert(image->signature == MagickSignature);
1096 if (image->debug != MagickFalse)
1097 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1098 assert(exception != (ExceptionInfo *) NULL);
1099 assert(exception->signature == MagickSignature);
1100 (void) passkey;
1101 ThrowBinaryException(ImageError,"CipherSupportNotEnabled",image->filename);
1102}
1103
1104/*
1105%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1106% %
1107% %
1108% %
1109% P a s s k e y E n c i p h e r I m a g e %
1110% %
1111% %
1112% %
1113%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1114%
1115% PasskeyEncipherImage() converts pixels to cipher-pixels.
1116%
1117% The format of the PasskeyEncipherImage method is:
1118%
1119% MagickBooleanType PasskeyEncipherImage(Image *image,
1120% const StringInfo *passkey,ExceptionInfo *exception)
1121% MagickBooleanType EncipherImage(Image *image,const char *passphrase,
1122% ExceptionInfo *exception)
1123%
1124% A description of each parameter follows:
1125%
1126% o passphrase: decipher cipher pixels with this passphrase.
1127%
1128% o passkey: decrypt cipher pixels with this passkey.
1129%
1130% o exception: return any errors or warnings in this structure.
1131%
1132*/
1133
1134MagickExport MagickBooleanType EncipherImage(Image *image,
1135 const char *passphrase,ExceptionInfo *exception)
1136{
1137 assert(image != (Image *) NULL);
1138 assert(image->signature == MagickSignature);
1139 if (image->debug != MagickFalse)
1140 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1141 assert(exception != (ExceptionInfo *) NULL);
1142 assert(exception->signature == MagickSignature);
1143 (void) passphrase;
1144 ThrowBinaryException(ImageError,"CipherSupportNotEnabled",image->filename);
1145}
1146
1147MagickExport MagickBooleanType PasskeyEncipherImage(Image *image,
1148 const StringInfo *passkey,ExceptionInfo *exception)
1149{
1150 assert(image != (Image *) NULL);
1151 assert(image->signature == MagickSignature);
1152 if (image->debug != MagickFalse)
1153 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
1154 assert(exception != (ExceptionInfo *) NULL);
1155 assert(exception->signature == MagickSignature);
1156 (void) passkey;
1157 ThrowBinaryException(ImageError,"CipherSupportNotEnabled",image->filename);
1158}
1159#endif