blob: 39df168202928d1a2d66776abbb556936e3a16ad [file] [log] [blame]
Randall Spangler108d9912014-12-02 15:55:56 -08001/* Copyright (c) 2014 The Chromium OS Authors. All rights reserved.
2 * Use of this source code is governed by a BSD-style license that can be
3 * found in the LICENSE file.
4 *
5 * Tests for firmware 2common.c
6 */
7
8#include "2sysincludes.h"
9#include "2common.h"
10#include "2rsa.h"
11#include "vb2_common.h"
12#include "host_fw_preamble2.h"
13#include "host_key2.h"
14#include "host_keyblock2.h"
15#include "host_signature2.h"
16
17#include "test_common.h"
18
19static const uint8_t test_data[] = "This is some test data to sign.";
20static const uint8_t test_data2[] = "Some more test data";
21static const uint8_t test_data3[] = "Even more test data";
22
23/*
24 * Test struct packing for vboot_struct.h structs which are passed between
25 * firmware and OS, or passed between different phases of firmware.
26 */
27static void test_struct_packing(void)
28{
29 /* Test new struct sizes */
30 TEST_EQ(EXPECTED_GUID_SIZE,
31 sizeof(struct vb2_guid),
32 "sizeof(vb2_guid)");
33 TEST_EQ(EXPECTED_VB2_STRUCT_COMMON_SIZE,
34 sizeof(struct vb2_struct_common),
35 "sizeof(vb2_struct_common)");
36 TEST_EQ(EXPECTED_VB2_PACKED_KEY2_SIZE,
37 sizeof(struct vb2_packed_key2),
38 "sizeof(vb2_packed_key2)");
39 TEST_EQ(EXPECTED_VB2_SIGNATURE2_SIZE,
40 sizeof(struct vb2_signature2),
41 "sizeof(vb2_signature2)");
42 TEST_EQ(EXPECTED_VB2_KEYBLOCK2_SIZE,
43 sizeof(struct vb2_keyblock2),
44 "sizeof(vb2_keyblock2)");
45 TEST_EQ(EXPECTED_VB2_FW_PREAMBLE2_SIZE,
46 sizeof(struct vb2_fw_preamble2),
47 "sizeof(vb2_fw_preamble2)");
48}
49
50/**
51 * Common header functions
52 */
53static void test_common_header_functions(void)
54{
55 uint8_t cbuf[sizeof(struct vb2_struct_common) + 128];
56 uint8_t cbufgood[sizeof(cbuf)];
57 struct vb2_struct_common *c = (struct vb2_struct_common *)cbuf;
58 struct vb2_struct_common *c2;
59 const char test_desc[32] = "test desc";
60 uint32_t desc_end, m;
61
62 c->total_size = sizeof(cbuf);
63 c->fixed_size = sizeof(*c);
64 c->desc_size = sizeof(test_desc);
65 memcpy(cbuf + c->fixed_size, test_desc, sizeof(test_desc));
66 desc_end = c->fixed_size + c->desc_size;
67
68 c2 = (struct vb2_struct_common *)(cbuf + desc_end);
69 c2->total_size = c->total_size - desc_end;
70 c2->fixed_size = sizeof(*c2);
71 c2->desc_size = 0;
72
73 /* Description helper */
74 TEST_EQ(0, strcmp(vb2_common_desc(c), test_desc), "vb2_common_desc()");
75 TEST_EQ(0, strcmp(vb2_common_desc(c2), ""), "vb2_common_desc() empty");
76
77 TEST_SUCC(vb2_verify_common_header(cbuf, sizeof(cbuf)),
78 "vb2_verify_common_header() good");
79 memcpy(cbufgood, cbuf, sizeof(cbufgood));
80
81 memcpy(cbuf, cbufgood, sizeof(cbuf));
82 c->total_size += 4;
83 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
84 VB2_ERROR_COMMON_TOTAL_SIZE,
85 "vb2_verify_common_header() total size");
86
87 memcpy(cbuf, cbufgood, sizeof(cbuf));
88 c->fixed_size = c->total_size + 4;
89 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
90 VB2_ERROR_COMMON_FIXED_SIZE,
91 "vb2_verify_common_header() fixed size");
92
93 memcpy(cbuf, cbufgood, sizeof(cbuf));
94 c->desc_size = c->total_size - c->fixed_size + 4;
95 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
96 VB2_ERROR_COMMON_DESC_SIZE,
97 "vb2_verify_common_header() desc size");
98
99 memcpy(cbuf, cbufgood, sizeof(cbuf));
100 c->total_size--;
101 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
102 VB2_ERROR_COMMON_TOTAL_UNALIGNED,
103 "vb2_verify_common_header() total unaligned");
104
105 memcpy(cbuf, cbufgood, sizeof(cbuf));
106 c->fixed_size++;
107 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
108 VB2_ERROR_COMMON_FIXED_UNALIGNED,
109 "vb2_verify_common_header() fixed unaligned");
110
111 memcpy(cbuf, cbufgood, sizeof(cbuf));
112 c->desc_size--;
113 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
114 VB2_ERROR_COMMON_DESC_UNALIGNED,
115 "vb2_verify_common_header() desc unaligned");
116
117 memcpy(cbuf, cbufgood, sizeof(cbuf));
118 c->desc_size = -4;
119 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
120 VB2_ERROR_COMMON_DESC_WRAPS,
121 "vb2_verify_common_header() desc wraps");
122
123 memcpy(cbuf, cbufgood, sizeof(cbuf));
124 cbuf[desc_end - 1] = 1;
125 TEST_EQ(vb2_verify_common_header(cbuf, sizeof(cbuf)),
126 VB2_ERROR_COMMON_DESC_TERMINATOR,
127 "vb2_verify_common_header() desc not terminated");
128
129 /* Member checking function */
130 memcpy(cbuf, cbufgood, sizeof(cbuf));
131 m = 0;
132 TEST_SUCC(vb2_verify_common_member(cbuf, &m, c->total_size - 8, 4),
133 "vb2_verify_common_member()");
134 TEST_EQ(m, c->total_size - 4, " new minimum");
135
136 m = desc_end;
137 TEST_SUCC(vb2_verify_common_member(cbuf, &m, desc_end, 4),
138 "vb2_verify_common_member() good offset");
139 TEST_EQ(m, desc_end + 4, " new minimum");
140
141 m = 0;
142 TEST_EQ(vb2_verify_common_member(cbuf, &m, c->total_size - 8, -4),
143 VB2_ERROR_COMMON_MEMBER_WRAPS,
144 "vb2_verify_common_member() wraps");
145
146 m = 0;
147 TEST_EQ(vb2_verify_common_member(cbuf, &m, c->total_size - 7, 4),
148 VB2_ERROR_COMMON_MEMBER_UNALIGNED,
149 "vb2_verify_common_member() offset unaligned");
150
151 m = 0;
152 TEST_EQ(vb2_verify_common_member(cbuf, &m, c->total_size - 8, 5),
153 VB2_ERROR_COMMON_MEMBER_UNALIGNED,
154 "vb2_verify_common_member() size unaligned");
155
156 m = 0;
157 TEST_EQ(vb2_verify_common_member(cbuf, &m, desc_end - 4, 4),
158 VB2_ERROR_COMMON_MEMBER_OVERLAP,
159 "vb2_verify_common_member() overlap");
160
161 m = desc_end + 4;
162 TEST_EQ(vb2_verify_common_member(cbuf, &m, desc_end, 4),
163 VB2_ERROR_COMMON_MEMBER_OVERLAP,
164 "vb2_verify_common_member() overlap 2");
165
166 m = 0;
167 TEST_EQ(vb2_verify_common_member(cbuf, &m, c->total_size - 4, 8),
168 VB2_ERROR_COMMON_MEMBER_SIZE,
169 "vb2_verify_common_member() size");
170
171 /* Subobject checking */
172 m = 0;
173 TEST_SUCC(vb2_verify_common_subobject(cbuf, &m, desc_end),
174 "vb2_verify_common_subobject() good offset");
175 TEST_EQ(m, sizeof(cbuf), " new minimum");
176
177 m = desc_end + 4;
178 TEST_EQ(vb2_verify_common_subobject(cbuf, &m, desc_end),
179 VB2_ERROR_COMMON_MEMBER_OVERLAP,
180 "vb2_verify_common_subobject() overlap");
181
182 m = 0;
183 c2->total_size += 4;
184 TEST_EQ(vb2_verify_common_subobject(cbuf, &m, desc_end),
185 VB2_ERROR_COMMON_TOTAL_SIZE,
186 "vb2_verify_common_subobject() size");
187}
188
189/**
190 * Signature size
191 */
192static void test_sig_size(void)
193{
194 TEST_EQ(vb2_sig_size(VB2_SIG_INVALID, VB2_HASH_SHA256), 0,
195 "vb2_sig_size() sig invalid");
196
197 TEST_EQ(vb2_sig_size(VB2_SIG_RSA2048, VB2_HASH_INVALID), 0,
198 "vb2_sig_size() hash invalid");
199
200 TEST_EQ(vb2_sig_size(VB2_SIG_RSA2048, VB2_HASH_SHA256), 2048 / 8,
201 "vb2_sig_size() RSA2048");
202 TEST_EQ(vb2_sig_size(VB2_SIG_RSA4096, VB2_HASH_SHA256), 4096 / 8,
203 "vb2_sig_size() RSA4096");
204 TEST_EQ(vb2_sig_size(VB2_SIG_RSA8192, VB2_HASH_SHA512), 8192 / 8,
205 "vb2_sig_size() RSA8192");
206
207 TEST_EQ(vb2_sig_size(VB2_SIG_NONE, VB2_HASH_SHA1),
208 VB2_SHA1_DIGEST_SIZE, "vb2_sig_size() SHA1");
209 TEST_EQ(vb2_sig_size(VB2_SIG_NONE, VB2_HASH_SHA256),
210 VB2_SHA256_DIGEST_SIZE, "vb2_sig_size() SHA256");
211 TEST_EQ(vb2_sig_size(VB2_SIG_NONE, VB2_HASH_SHA512),
212 VB2_SHA512_DIGEST_SIZE, "vb2_sig_size() SHA512");
213}
214
215/**
216 * Verify data on bare hash
217 */
218static void test_verify_hash(void)
219{
220 struct vb2_signature2 *sig;
221 const struct vb2_private_key *prik;
222 struct vb2_public_key pubk;
223 uint8_t workbuf[VB2_VERIFY_DATA_WORKBUF_BYTES];
224 struct vb2_workbuf wb;
225
226 vb2_workbuf_init(&wb, workbuf, sizeof(workbuf));
227
228 TEST_SUCC(vb2_private_key_hash(&prik, VB2_HASH_SHA256),
229 "create private hash key");
230 TEST_SUCC(vb2_public_key_hash(&pubk, VB2_HASH_SHA256),
231 "create hash key");
232
233 /* Create the signature */
234 TEST_SUCC(vb2_sign_data(&sig, test_data, sizeof(test_data),
235 prik, NULL),
236 "create hash sig");
237
238 TEST_SUCC(vb2_verify_data2(test_data, sizeof(test_data),
239 sig, &pubk, &wb),
240 "vb2_verify_data2() hash ok");
241
242 *((uint8_t *)sig + sig->sig_offset) ^= 0xab;
243 TEST_EQ(vb2_verify_data2(test_data, sizeof(test_data), sig, &pubk, &wb),
244 VB2_ERROR_VDATA_VERIFY_DIGEST, "vb2_verify_data2() hash bad");
245
246 free(sig);
247}
248
249/**
250 * Verify keyblock
251 */
252static void test_verify_keyblock(void)
253{
254 const char desc[16] = "test keyblock";
255 const struct vb2_private_key *prik[2];
256 struct vb2_public_key pubk, pubk2, pubk3;
257 struct vb2_signature2 *sig;
258 struct vb2_keyblock2 *kbuf;
259 uint32_t buf_size;
260 uint8_t *buf, *buf2;
261
262 uint8_t workbuf[VB2_KEY_BLOCK_VERIFY_WORKBUF_BYTES];
263 struct vb2_workbuf wb;
264
265 TEST_SUCC(vb2_public_key_hash(&pubk, VB2_HASH_SHA256),
266 "create hash key 1");
267 TEST_SUCC(vb2_public_key_hash(&pubk2, VB2_HASH_SHA512),
268 "create hash key 2");
269 TEST_SUCC(vb2_public_key_hash(&pubk3, VB2_HASH_SHA1),
270 "create hash key 3");
271
272 TEST_SUCC(vb2_private_key_hash(prik + 0, VB2_HASH_SHA256),
273 "create private key 1");
274 TEST_SUCC(vb2_private_key_hash(prik + 1, VB2_HASH_SHA512),
275 "create private key 2");
276
277 /* Create the test keyblock */
278 TEST_SUCC(vb2_keyblock_create(&kbuf, &pubk3, prik, 2, 0x4321, desc),
279 "create keyblock");
280
281 buf = (uint8_t *)kbuf;
282 buf_size = kbuf->c.total_size;
283
284 /* Make a copy of the buffer, so we can mangle it for tests */
285 buf2 = malloc(buf_size);
286 memcpy(buf2, buf, buf_size);
287
288 vb2_workbuf_init(&wb, workbuf, sizeof(workbuf));
289 kbuf = (struct vb2_keyblock2 *)buf;
290
291 TEST_SUCC(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
292 "vb2_verify_keyblock2()");
293
294 memcpy(buf, buf2, buf_size);
295 TEST_SUCC(vb2_verify_keyblock2(kbuf, buf_size, &pubk2, &wb),
296 "vb2_verify_keyblock2() key 2");
297
298 memcpy(buf, buf2, buf_size);
299 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk3, &wb),
300 VB2_ERROR_KEYBLOCK_SIG_GUID,
301 "vb2_verify_keyblock2() key not present");
302
303 memcpy(buf, buf2, buf_size);
304 kbuf->c.magic = VB2_MAGIC_PACKED_KEY2;
305 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
306 VB2_ERROR_KEYBLOCK_MAGIC,
307 "vb2_verify_keyblock2() magic");
308
309 memcpy(buf, buf2, buf_size);
310 kbuf->c.fixed_size++;
311 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
312 VB2_ERROR_COMMON_FIXED_UNALIGNED,
313 "vb2_verify_keyblock2() header");
314
315 memcpy(buf, buf2, buf_size);
316 kbuf->c.struct_version_major++;
317 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
318 VB2_ERROR_KEYBLOCK_HEADER_VERSION,
319 "vb2_verify_keyblock2() major version");
320
321 memcpy(buf, buf2, buf_size);
322 kbuf->c.struct_version_minor++;
323 /* That changes the signature, so resign the keyblock */
324 vb2_sign_data(&sig, buf, kbuf->sig_offset, prik[0], NULL);
325 memcpy(buf + kbuf->sig_offset, sig, sig->c.total_size);
326 free(sig);
327 TEST_SUCC(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
328 "vb2_verify_keyblock2() minor version");
329
330 memcpy(buf, buf2, buf_size);
331 kbuf->c.fixed_size -= 4;
332 kbuf->c.desc_size += 4;
333 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
334 VB2_ERROR_KEYBLOCK_SIZE,
335 "vb2_verify_keyblock2() header size");
336
337 memcpy(buf, buf2, buf_size);
338 kbuf->key_offset = kbuf->c.total_size - 4;
339 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
340 VB2_ERROR_COMMON_MEMBER_SIZE,
341 "vb2_verify_keyblock2() data key outside");
342
343 memcpy(buf, buf2, buf_size);
344 sig = (struct vb2_signature2 *)(buf + kbuf->sig_offset);
345 sig->data_size--;
346 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
347 VB2_ERROR_KEYBLOCK_SIGNED_SIZE,
348 "vb2_verify_keyblock2() signed wrong size");
349
350 memcpy(buf, buf2, buf_size);
351 sig = (struct vb2_signature2 *)(buf + kbuf->sig_offset);
352 sig->c.total_size = kbuf->c.total_size - 4;
353 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
354 VB2_ERROR_COMMON_TOTAL_SIZE,
355 "vb2_verify_keyblock2() key outside keyblock");
356
357 memcpy(buf, buf2, buf_size);
358 sig = (struct vb2_signature2 *)(buf + kbuf->sig_offset);
359 sig->c.struct_version_major++;
360 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
361 VB2_ERROR_SIG_VERSION,
362 "vb2_verify_keyblock2() corrupt key");
363
364 memcpy(buf, buf2, buf_size);
365 kbuf->c.struct_version_minor++;
366 TEST_EQ(vb2_verify_keyblock2(kbuf, buf_size, &pubk, &wb),
367 VB2_ERROR_VDATA_VERIFY_DIGEST,
368 "vb2_verify_keyblock2() corrupt");
369
370 free(buf);
371 free(buf2);
372}
373
374/**
375 * Verify firmware preamble
376 */
377static void test_verify_fw_preamble(void)
378{
379 const char desc[16] = "test preamble";
380 const struct vb2_private_key *prikhash;
381 struct vb2_signature2 *hashes[3];
382 struct vb2_public_key pubk;
383 struct vb2_signature2 *sig;
384 struct vb2_fw_preamble2 *pre;
385 uint32_t buf_size;
386 uint8_t *buf, *buf2;
387
388 uint8_t workbuf[VB2_VERIFY_FIRMWARE_PREAMBLE_WORKBUF_BYTES];
389 struct vb2_workbuf wb;
390
391 /*
392 * Preambles will usually be signed with a real key not a bare hash,
393 * but the call to vb2_verify_data2() inside the preamble check is the
394 * same (and its functionality is verified separately), and using a
395 * bare hash here saves us from needing to have a private key to do
396 * this test.
397 */
398 TEST_SUCC(vb2_public_key_hash(&pubk, VB2_HASH_SHA256),
399 "create hash key");
400 TEST_SUCC(vb2_private_key_hash(&prikhash, VB2_HASH_SHA256),
401 "Create private hash key");
402
403 /* Create some signatures */
404 TEST_SUCC(vb2_sign_data(hashes + 0, test_data, sizeof(test_data),
405 prikhash, "Hash 1"),
406 "Hash 1");
407 TEST_SUCC(vb2_sign_data(hashes + 1, test_data2, sizeof(test_data2),
408 prikhash, "Hash 2"),
409 "Hash 2");
410 TEST_SUCC(vb2_sign_data(hashes + 2, test_data3, sizeof(test_data3),
411 prikhash, "Hash 3"),
412 "Hash 3");
413
414 /* Test good preamble */
415 TEST_SUCC(vb2_fw_preamble_create(&pre, prikhash,
416 (const struct vb2_signature2 **)hashes,
417 3, 0x1234, 0x5678, desc),
418 "Create preamble good");
419
420 buf = (uint8_t *)pre;
421 buf_size = pre->c.total_size;
422
423 /* Make a copy of the buffer, so we can mangle it for tests */
424 buf2 = malloc(buf_size);
425 memcpy(buf2, buf, buf_size);
426
427 vb2_workbuf_init(&wb, workbuf, sizeof(workbuf));
428 pre = (struct vb2_fw_preamble2 *)buf;
429
430 TEST_SUCC(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
431 "vb2_verify_fw_preamble2()");
432
433 memcpy(buf, buf2, buf_size);
434 pre->c.magic = VB2_MAGIC_PACKED_KEY2;
435 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
436 VB2_ERROR_PREAMBLE_MAGIC,
437 "vb2_verify_fw_preamble2() magic");
438
439 memcpy(buf, buf2, buf_size);
440 pre->c.fixed_size++;
441 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
442 VB2_ERROR_COMMON_FIXED_UNALIGNED,
443 "vb2_verify_fw_preamble2() header");
444
445 memcpy(buf, buf2, buf_size);
446 pre->c.struct_version_major++;
447 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
448 VB2_ERROR_PREAMBLE_HEADER_VERSION,
449 "vb2_verify_fw_preamble2() major version");
450
451 memcpy(buf, buf2, buf_size);
452 pre->c.struct_version_minor++;
453 /* That changes the signature, so resign the fw_preamble */
454 vb2_sign_data(&sig, buf, pre->sig_offset, prikhash, NULL);
455 memcpy(buf + pre->sig_offset, sig, sig->c.total_size);
456 free(sig);
457 TEST_SUCC(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
458 "vb2_verify_fw_preamble2() minor version");
459
460 memcpy(buf, buf2, buf_size);
461 pre->c.fixed_size -= 4;
462 pre->c.desc_size += 4;
463 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
464 VB2_ERROR_PREAMBLE_SIZE,
465 "vb2_verify_fw_preamble2() header size");
466
467 memcpy(buf, buf2, buf_size);
468 sig = (struct vb2_signature2 *)(buf + pre->hash_offset);
469 sig->c.total_size += pre->c.total_size;
470 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
471 VB2_ERROR_COMMON_TOTAL_SIZE,
472 "vb2_verify_fw_preamble2() hash size");
473
474 memcpy(buf, buf2, buf_size);
475 sig = (struct vb2_signature2 *)(buf + pre->hash_offset);
476 sig->sig_size /= 2;
477 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
478 VB2_ERROR_SIG_SIZE,
479 "vb2_verify_fw_preamble2() hash integrity");
480
481 memcpy(buf, buf2, buf_size);
482 pre->hash_count++;
483 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
484 VB2_ERROR_COMMON_MEMBER_OVERLAP,
485 "vb2_verify_fw_preamble2() hash count");
486
487 memcpy(buf, buf2, buf_size);
488 sig = (struct vb2_signature2 *)(buf + pre->sig_offset);
489 sig->c.total_size += 4;
490 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
491 VB2_ERROR_COMMON_TOTAL_SIZE,
492 "vb2_verify_fw_preamble2() sig inside");
493
494 memcpy(buf, buf2, buf_size);
495 sig = (struct vb2_signature2 *)(buf + pre->sig_offset);
496 buf[pre->sig_offset + sig->sig_offset]++;
497 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
498 VB2_ERROR_VDATA_VERIFY_DIGEST,
499 "vb2_verify_fw_preamble2() sig corrupt");
500
501 memcpy(buf, buf2, buf_size);
502 pre->flags++;
503 TEST_EQ(vb2_verify_fw_preamble2(pre, buf_size, &pubk, &wb),
504 VB2_ERROR_VDATA_VERIFY_DIGEST,
505 "vb2_verify_fw_preamble2() preamble corrupt");
506
507 free(buf);
508 free(buf2);
509}
510
511int main(int argc, char* argv[])
512{
513 test_struct_packing();
514 test_common_header_functions();
515 test_sig_size();
516 test_verify_hash();
517 test_verify_keyblock();
518 test_verify_fw_preamble();
519
520 return gTestSuccess ? 0 : 255;
521}