PolarSSL v1.3.9
test_suite_base64.c
Go to the documentation of this file.
1#if !defined(POLARSSL_CONFIG_FILE)
2#include <polarssl/config.h>
3#else
4#include POLARSSL_CONFIG_FILE
5#endif
6
7#ifdef POLARSSL_BASE64_C
8
9#include <polarssl/base64.h>
10#endif /* POLARSSL_BASE64_C */
11
12
13#if defined(POLARSSL_MEMORY_BUFFER_ALLOC_C)
14#include "polarssl/memory.h"
15#endif
16
17#if defined(POLARSSL_PLATFORM_C)
18#include "polarssl/platform.h"
19#else
20#define polarssl_malloc malloc
21#define polarssl_free free
22#endif
23
24#ifdef _MSC_VER
25#include <basetsd.h>
26typedef UINT32 uint32_t;
27#else
28#include <inttypes.h>
29#endif
30
31#include <assert.h>
32#include <stdlib.h>
33#include <string.h>
34
35/*
36 * 32-bit integer manipulation macros (big endian)
37 */
38#ifndef GET_UINT32_BE
39#define GET_UINT32_BE(n,b,i) \
40{ \
41 (n) = ( (uint32_t) (b)[(i) ] << 24 ) \
42 | ( (uint32_t) (b)[(i) + 1] << 16 ) \
43 | ( (uint32_t) (b)[(i) + 2] << 8 ) \
44 | ( (uint32_t) (b)[(i) + 3] ); \
45}
46#endif
47
48#ifndef PUT_UINT32_BE
49#define PUT_UINT32_BE(n,b,i) \
50{ \
51 (b)[(i) ] = (unsigned char) ( (n) >> 24 ); \
52 (b)[(i) + 1] = (unsigned char) ( (n) >> 16 ); \
53 (b)[(i) + 2] = (unsigned char) ( (n) >> 8 ); \
54 (b)[(i) + 3] = (unsigned char) ( (n) ); \
55}
56#endif
57
58static int unhexify(unsigned char *obuf, const char *ibuf)
59{
60 unsigned char c, c2;
61 int len = strlen(ibuf) / 2;
62 assert(!(strlen(ibuf) %1)); // must be even number of bytes
63
64 while (*ibuf != 0)
65 {
66 c = *ibuf++;
67 if( c >= '0' && c <= '9' )
68 c -= '0';
69 else if( c >= 'a' && c <= 'f' )
70 c -= 'a' - 10;
71 else if( c >= 'A' && c <= 'F' )
72 c -= 'A' - 10;
73 else
74 assert( 0 );
75
76 c2 = *ibuf++;
77 if( c2 >= '0' && c2 <= '9' )
78 c2 -= '0';
79 else if( c2 >= 'a' && c2 <= 'f' )
80 c2 -= 'a' - 10;
81 else if( c2 >= 'A' && c2 <= 'F' )
82 c2 -= 'A' - 10;
83 else
84 assert( 0 );
85
86 *obuf++ = ( c << 4 ) | c2;
87 }
88
89 return len;
90}
91
92static void hexify(unsigned char *obuf, const unsigned char *ibuf, int len)
93{
94 unsigned char l, h;
95
96 while (len != 0)
97 {
98 h = (*ibuf) / 16;
99 l = (*ibuf) % 16;
100
101 if( h < 10 )
102 *obuf++ = '0' + h;
103 else
104 *obuf++ = 'a' + h - 10;
105
106 if( l < 10 )
107 *obuf++ = '0' + l;
108 else
109 *obuf++ = 'a' + l - 10;
110
111 ++ibuf;
112 len--;
113 }
114}
115
123static unsigned char *zero_alloc( size_t len )
124{
125 void *p;
126 size_t actual_len = len != 0 ? len : 1;
127
128 p = polarssl_malloc( actual_len );
129 assert( p != NULL );
130
131 memset( p, 0x00, actual_len );
132
133 return( p );
134}
135
146static unsigned char *unhexify_alloc( const char *ibuf, size_t *olen )
147{
148 unsigned char *obuf;
149
150 *olen = strlen(ibuf) / 2;
151
152 if( *olen == 0 )
153 return( zero_alloc( *olen ) );
154
155 obuf = polarssl_malloc( *olen );
156 assert( obuf != NULL );
157
158 (void) unhexify( obuf, ibuf );
159
160 return( obuf );
161}
162
172static int rnd_std_rand( void *rng_state, unsigned char *output, size_t len )
173{
174#if !defined(__OpenBSD__)
175 size_t i;
176
177 if( rng_state != NULL )
178 rng_state = NULL;
179
180 for( i = 0; i < len; ++i )
181 output[i] = rand();
182#else
183 if( rng_state != NULL )
184 rng_state = NULL;
185
186 arc4random_buf( output, len );
187#endif /* !OpenBSD */
188
189 return( 0 );
190}
191
197static int rnd_zero_rand( void *rng_state, unsigned char *output, size_t len )
198{
199 if( rng_state != NULL )
200 rng_state = NULL;
201
202 memset( output, 0, len );
203
204 return( 0 );
205}
206
207typedef struct
208{
209 unsigned char *buf;
210 size_t length;
212
224static int rnd_buffer_rand( void *rng_state, unsigned char *output, size_t len )
225{
226 rnd_buf_info *info = (rnd_buf_info *) rng_state;
227 size_t use_len;
228
229 if( rng_state == NULL )
230 return( rnd_std_rand( NULL, output, len ) );
231
232 use_len = len;
233 if( len > info->length )
234 use_len = info->length;
235
236 if( use_len )
237 {
238 memcpy( output, info->buf, use_len );
239 info->buf += use_len;
240 info->length -= use_len;
241 }
242
243 if( len - use_len > 0 )
244 return( rnd_std_rand( NULL, output + use_len, len - use_len ) );
245
246 return( 0 );
247}
248
256typedef struct
257{
258 uint32_t key[16];
259 uint32_t v0, v1;
261
270static int rnd_pseudo_rand( void *rng_state, unsigned char *output, size_t len )
271{
272 rnd_pseudo_info *info = (rnd_pseudo_info *) rng_state;
273 uint32_t i, *k, sum, delta=0x9E3779B9;
274 unsigned char result[4], *out = output;
275
276 if( rng_state == NULL )
277 return( rnd_std_rand( NULL, output, len ) );
278
279 k = info->key;
280
281 while( len > 0 )
282 {
283 size_t use_len = ( len > 4 ) ? 4 : len;
284 sum = 0;
285
286 for( i = 0; i < 32; i++ )
287 {
288 info->v0 += (((info->v1 << 4) ^ (info->v1 >> 5)) + info->v1) ^ (sum + k[sum & 3]);
289 sum += delta;
290 info->v1 += (((info->v0 << 4) ^ (info->v0 >> 5)) + info->v0) ^ (sum + k[(sum>>11) & 3]);
291 }
292
293 PUT_UINT32_BE( info->v0, result, 0 );
294 memcpy( out, result, use_len );
295 len -= use_len;
296 out += 4;
297 }
298
299 return( 0 );
300}
301
302
303#include <stdio.h>
304#include <string.h>
305
306#if defined(POLARSSL_PLATFORM_C)
307#include "polarssl/platform.h"
308#else
309#define polarssl_printf printf
310#define polarssl_malloc malloc
311#define polarssl_free free
312#endif
313
314static int test_errors = 0;
315
316#ifdef POLARSSL_BASE64_C
317
318#define TEST_SUITE_ACTIVE
319
320static int test_assert( int correct, const char *test )
321{
322 if( correct )
323 return( 0 );
324
325 test_errors++;
326 if( test_errors == 1 )
327 printf( "FAILED\n" );
328 printf( " %s\n", test );
329
330 return( 1 );
331}
332
333#define TEST_ASSERT( TEST ) \
334 do { test_assert( (TEST) ? 1 : 0, #TEST ); \
335 if( test_errors) goto exit; \
336 } while (0)
337
338int verify_string( char **str )
339{
340 if( (*str)[0] != '"' ||
341 (*str)[strlen( *str ) - 1] != '"' )
342 {
343 printf( "Expected string (with \"\") for parameter and got: %s\n", *str );
344 return( -1 );
345 }
346
347 (*str)++;
348 (*str)[strlen( *str ) - 1] = '\0';
349
350 return( 0 );
351}
352
353int verify_int( char *str, int *value )
354{
355 size_t i;
356 int minus = 0;
357 int digits = 1;
358 int hex = 0;
359
360 for( i = 0; i < strlen( str ); i++ )
361 {
362 if( i == 0 && str[i] == '-' )
363 {
364 minus = 1;
365 continue;
366 }
367
368 if( ( ( minus && i == 2 ) || ( !minus && i == 1 ) ) &&
369 str[i - 1] == '0' && str[i] == 'x' )
370 {
371 hex = 1;
372 continue;
373 }
374
375 if( ! ( ( str[i] >= '0' && str[i] <= '9' ) ||
376 ( hex && ( ( str[i] >= 'a' && str[i] <= 'f' ) ||
377 ( str[i] >= 'A' && str[i] <= 'F' ) ) ) ) )
378 {
379 digits = 0;
380 break;
381 }
382 }
383
384 if( digits )
385 {
386 if( hex )
387 *value = strtol( str, NULL, 16 );
388 else
389 *value = strtol( str, NULL, 10 );
390
391 return( 0 );
392 }
393
394 if( strcmp( str, "POLARSSL_ERR_BASE64_BUFFER_TOO_SMALL" ) == 0 )
395 {
397 return( 0 );
398 }
399 if( strcmp( str, "POLARSSL_ERR_BASE64_INVALID_CHARACTER" ) == 0 )
400 {
402 return( 0 );
403 }
404
405
406 printf( "Expected integer for parameter and got: %s\n", str );
407 return( -1 );
408}
409
410void test_suite_base64_encode( char *src_string, char *dst_string, int dst_buf_size,
411 int result )
412{
413 unsigned char src_str[1000];
414 unsigned char dst_str[1000];
415 size_t len = dst_buf_size;
416
417 memset(src_str, 0x00, 1000);
418 memset(dst_str, 0x00, 1000);
419
420 strncpy( (char *) src_str, src_string, sizeof(src_str) - 1 );
421 TEST_ASSERT( base64_encode( dst_str, &len, src_str, strlen( (char *) src_str ) ) == result );
422 if( result == 0 )
423 {
424 TEST_ASSERT( strcmp( (char *) dst_str, dst_string ) == 0 );
425 }
426
427exit:
428 return;
429}
430
431void test_suite_base64_decode( char *src_string, char *dst_string, int result )
432{
433 unsigned char src_str[1000];
434 unsigned char dst_str[1000];
435 size_t len = 1000;
436 int res;
437
438 memset(src_str, 0x00, 1000);
439 memset(dst_str, 0x00, 1000);
440
441 strncpy( (char *) src_str, src_string, sizeof(src_str) - 1 );
442 res = base64_decode( dst_str, &len, src_str, strlen( (char *) src_str ) );
443 TEST_ASSERT( res == result );
444 if( result == 0 )
445 {
446 TEST_ASSERT( strcmp( (char *) dst_str, dst_string ) == 0 );
447 }
448
449exit:
450 return;
451}
452
453void test_suite_base64_encode_hex( char *src_hex, char *dst, int dst_buf_size,
454 int result )
455{
456 unsigned char *src = NULL, *res = NULL;
457 size_t len = dst_buf_size, src_len;
458
459 src = unhexify_alloc( src_hex, &src_len );
460 res = zero_alloc( dst_buf_size );
461
462 TEST_ASSERT( base64_encode( res, &len, src, src_len ) == result );
463 if( result == 0 )
464 {
465 TEST_ASSERT( len == strlen( dst ) );
466 TEST_ASSERT( memcmp( dst, res, len ) == 0 );
467 }
468
469exit:
470 polarssl_free( src );
471 polarssl_free( res );
472}
473
474void test_suite_base64_decode_hex( char *src, char *dst_hex, int dst_buf_size,
475 int result )
476{
477 unsigned char *dst = NULL, *res = NULL;
478 size_t len = dst_buf_size, dst_len;
479
480 dst = unhexify_alloc( dst_hex, &dst_len );
481 res = zero_alloc( dst_buf_size );
482
483 TEST_ASSERT( base64_decode( res, &len, (unsigned char *) src,
484 strlen( src ) ) == result );
485 if( result == 0 )
486 {
487 TEST_ASSERT( len == dst_len );
488 TEST_ASSERT( memcmp( dst, res, len ) == 0 );
489 }
490
491exit:
492 polarssl_free( dst );
493 polarssl_free( res );
494}
495
496void test_suite_base64_decode_hex_src( char *src_hex, char *dst_ref, int result )
497{
498 unsigned char dst[1000] = { 0 };
499 unsigned char *src;
500 size_t src_len, len;
501
502 src = unhexify_alloc( src_hex, &src_len );
503
504 len = sizeof( dst );
505 TEST_ASSERT( base64_decode( dst, &len, src, src_len ) == result );
506 if( result == 0 )
507 {
508 TEST_ASSERT( len == strlen( dst_ref ) );
509 TEST_ASSERT( memcmp( dst, dst_ref, len ) == 0 );
510 }
511
512exit:
513 polarssl_free( src );
514}
515
516#ifdef POLARSSL_SELF_TEST
517void test_suite_base64_selftest()
518{
519 TEST_ASSERT( base64_self_test( 0 ) == 0 );
520
521exit:
522 return;
523}
524#endif /* POLARSSL_SELF_TEST */
525
526
527#endif /* POLARSSL_BASE64_C */
528
529
530int dep_check( char *str )
531{
532 if( str == NULL )
533 return( 1 );
534
535 if( strcmp( str, "POLARSSL_SELF_TEST" ) == 0 )
536 {
537#if defined(POLARSSL_SELF_TEST)
538 return( 0 );
539#else
540 return( 1 );
541#endif
542 }
543
544
545 return( 1 );
546}
547
548int dispatch_test(int cnt, char *params[50])
549{
550 int ret;
551 ((void) cnt);
552 ((void) params);
553
554#if defined(TEST_SUITE_ACTIVE)
555 if( strcmp( params[0], "base64_encode" ) == 0 )
556 {
557
558 char *param1 = params[1];
559 char *param2 = params[2];
560 int param3;
561 int param4;
562
563 if( cnt != 5 )
564 {
565 fprintf( stderr, "\nIncorrect argument count (%d != %d)\n", cnt, 5 );
566 return( 2 );
567 }
568
569 if( verify_string( &param1 ) != 0 ) return( 2 );
570 if( verify_string( &param2 ) != 0 ) return( 2 );
571 if( verify_int( params[3], &param3 ) != 0 ) return( 2 );
572 if( verify_int( params[4], &param4 ) != 0 ) return( 2 );
573
574 test_suite_base64_encode( param1, param2, param3, param4 );
575 return ( 0 );
576
577 return ( 3 );
578 }
579 else
580 if( strcmp( params[0], "base64_decode" ) == 0 )
581 {
582
583 char *param1 = params[1];
584 char *param2 = params[2];
585 int param3;
586
587 if( cnt != 4 )
588 {
589 fprintf( stderr, "\nIncorrect argument count (%d != %d)\n", cnt, 4 );
590 return( 2 );
591 }
592
593 if( verify_string( &param1 ) != 0 ) return( 2 );
594 if( verify_string( &param2 ) != 0 ) return( 2 );
595 if( verify_int( params[3], &param3 ) != 0 ) return( 2 );
596
597 test_suite_base64_decode( param1, param2, param3 );
598 return ( 0 );
599
600 return ( 3 );
601 }
602 else
603 if( strcmp( params[0], "base64_encode_hex" ) == 0 )
604 {
605
606 char *param1 = params[1];
607 char *param2 = params[2];
608 int param3;
609 int param4;
610
611 if( cnt != 5 )
612 {
613 fprintf( stderr, "\nIncorrect argument count (%d != %d)\n", cnt, 5 );
614 return( 2 );
615 }
616
617 if( verify_string( &param1 ) != 0 ) return( 2 );
618 if( verify_string( &param2 ) != 0 ) return( 2 );
619 if( verify_int( params[3], &param3 ) != 0 ) return( 2 );
620 if( verify_int( params[4], &param4 ) != 0 ) return( 2 );
621
622 test_suite_base64_encode_hex( param1, param2, param3, param4 );
623 return ( 0 );
624
625 return ( 3 );
626 }
627 else
628 if( strcmp( params[0], "base64_decode_hex" ) == 0 )
629 {
630
631 char *param1 = params[1];
632 char *param2 = params[2];
633 int param3;
634 int param4;
635
636 if( cnt != 5 )
637 {
638 fprintf( stderr, "\nIncorrect argument count (%d != %d)\n", cnt, 5 );
639 return( 2 );
640 }
641
642 if( verify_string( &param1 ) != 0 ) return( 2 );
643 if( verify_string( &param2 ) != 0 ) return( 2 );
644 if( verify_int( params[3], &param3 ) != 0 ) return( 2 );
645 if( verify_int( params[4], &param4 ) != 0 ) return( 2 );
646
647 test_suite_base64_decode_hex( param1, param2, param3, param4 );
648 return ( 0 );
649
650 return ( 3 );
651 }
652 else
653 if( strcmp( params[0], "base64_decode_hex_src" ) == 0 )
654 {
655
656 char *param1 = params[1];
657 char *param2 = params[2];
658 int param3;
659
660 if( cnt != 4 )
661 {
662 fprintf( stderr, "\nIncorrect argument count (%d != %d)\n", cnt, 4 );
663 return( 2 );
664 }
665
666 if( verify_string( &param1 ) != 0 ) return( 2 );
667 if( verify_string( &param2 ) != 0 ) return( 2 );
668 if( verify_int( params[3], &param3 ) != 0 ) return( 2 );
669
670 test_suite_base64_decode_hex_src( param1, param2, param3 );
671 return ( 0 );
672
673 return ( 3 );
674 }
675 else
676 if( strcmp( params[0], "base64_selftest" ) == 0 )
677 {
678 #ifdef POLARSSL_SELF_TEST
679
680
681 if( cnt != 1 )
682 {
683 fprintf( stderr, "\nIncorrect argument count (%d != %d)\n", cnt, 1 );
684 return( 2 );
685 }
686
687
688 test_suite_base64_selftest( );
689 return ( 0 );
690 #endif /* POLARSSL_SELF_TEST */
691
692 return ( 3 );
693 }
694 else
695
696 {
697 fprintf( stdout, "FAILED\nSkipping unknown test function '%s'\n", params[0] );
698 fflush( stdout );
699 return( 1 );
700 }
701#else
702 return( 3 );
703#endif
704 return( ret );
705}
706
707int get_line( FILE *f, char *buf, size_t len )
708{
709 char *ret;
710
711 ret = fgets( buf, len, f );
712 if( ret == NULL )
713 return( -1 );
714
715 if( strlen( buf ) && buf[strlen(buf) - 1] == '\n' )
716 buf[strlen(buf) - 1] = '\0';
717 if( strlen( buf ) && buf[strlen(buf) - 1] == '\r' )
718 buf[strlen(buf) - 1] = '\0';
719
720 return( 0 );
721}
722
723int parse_arguments( char *buf, size_t len, char *params[50] )
724{
725 int cnt = 0, i;
726 char *cur = buf;
727 char *p = buf, *q;
728
729 params[cnt++] = cur;
730
731 while( *p != '\0' && p < buf + len )
732 {
733 if( *p == '\\' )
734 {
735 p++;
736 p++;
737 continue;
738 }
739 if( *p == ':' )
740 {
741 if( p + 1 < buf + len )
742 {
743 cur = p + 1;
744 params[cnt++] = cur;
745 }
746 *p = '\0';
747 }
748
749 p++;
750 }
751
752 // Replace newlines, question marks and colons in strings
753 for( i = 0; i < cnt; i++ )
754 {
755 p = params[i];
756 q = params[i];
757
758 while( *p != '\0' )
759 {
760 if( *p == '\\' && *(p + 1) == 'n' )
761 {
762 p += 2;
763 *(q++) = '\n';
764 }
765 else if( *p == '\\' && *(p + 1) == ':' )
766 {
767 p += 2;
768 *(q++) = ':';
769 }
770 else if( *p == '\\' && *(p + 1) == '?' )
771 {
772 p += 2;
773 *(q++) = '?';
774 }
775 else
776 *(q++) = *(p++);
777 }
778 *q = '\0';
779 }
780
781 return( cnt );
782}
783
784int main()
785{
786 int ret, i, cnt, total_errors = 0, total_tests = 0, total_skipped = 0;
787 const char *filename = "/builddir/build/BUILD/polarssl-1.3.9/tests/suites/test_suite_base64.data";
788 FILE *file;
789 char buf[5000];
790 char *params[50];
791
792#if defined(POLARSSL_MEMORY_BUFFER_ALLOC_C)
793 unsigned char alloc_buf[1000000];
794 memory_buffer_alloc_init( alloc_buf, sizeof(alloc_buf) );
795#endif
796
797 file = fopen( filename, "r" );
798 if( file == NULL )
799 {
800 fprintf( stderr, "Failed to open\n" );
801 return( 1 );
802 }
803
804 while( !feof( file ) )
805 {
806 int skip = 0;
807
808 if( ( ret = get_line( file, buf, sizeof(buf) ) ) != 0 )
809 break;
810 fprintf( stdout, "%s%.66s", test_errors ? "\n" : "", buf );
811 fprintf( stdout, " " );
812 for( i = strlen( buf ) + 1; i < 67; i++ )
813 fprintf( stdout, "." );
814 fprintf( stdout, " " );
815 fflush( stdout );
816
817 total_tests++;
818
819 if( ( ret = get_line( file, buf, sizeof(buf) ) ) != 0 )
820 break;
821 cnt = parse_arguments( buf, strlen(buf), params );
822
823 if( strcmp( params[0], "depends_on" ) == 0 )
824 {
825 for( i = 1; i < cnt; i++ )
826 if( dep_check( params[i] ) != 0 )
827 skip = 1;
828
829 if( ( ret = get_line( file, buf, sizeof(buf) ) ) != 0 )
830 break;
831 cnt = parse_arguments( buf, strlen(buf), params );
832 }
833
834 if( skip == 0 )
835 {
836 test_errors = 0;
837 ret = dispatch_test( cnt, params );
838 }
839
840 if( skip == 1 || ret == 3 )
841 {
842 total_skipped++;
843 fprintf( stdout, "----\n" );
844 fflush( stdout );
845 }
846 else if( ret == 0 && test_errors == 0 )
847 {
848 fprintf( stdout, "PASS\n" );
849 fflush( stdout );
850 }
851 else if( ret == 2 )
852 {
853 fprintf( stderr, "FAILED: FATAL PARSE ERROR\n" );
854 fclose(file);
855 exit( 2 );
856 }
857 else
858 total_errors++;
859
860 if( ( ret = get_line( file, buf, sizeof(buf) ) ) != 0 )
861 break;
862 if( strlen(buf) != 0 )
863 {
864 fprintf( stderr, "Should be empty %d\n", (int) strlen(buf) );
865 return( 1 );
866 }
867 }
868 fclose(file);
869
870 fprintf( stdout, "\n----------------------------------------------------------------------------\n\n");
871 if( total_errors == 0 )
872 fprintf( stdout, "PASSED" );
873 else
874 fprintf( stdout, "FAILED" );
875
876 fprintf( stdout, " (%d / %d tests (%d skipped))\n",
877 total_tests - total_errors, total_tests, total_skipped );
878
879#if defined(POLARSSL_MEMORY_BUFFER_ALLOC_C)
880#if defined(POLARSSL_MEMORY_DEBUG)
881 memory_buffer_alloc_status();
882#endif
884#endif
885
886 return( total_errors != 0 );
887}
888
889
RFC 1521 base64 encoding/decoding.
int base64_self_test(int verbose)
Checkup routine.
int base64_encode(unsigned char *dst, size_t *dlen, const unsigned char *src, size_t slen)
Encode a buffer into base64 format.
#define POLARSSL_ERR_BASE64_INVALID_CHARACTER
Invalid character in input.
Definition base64.h:33
#define POLARSSL_ERR_BASE64_BUFFER_TOO_SMALL
Output buffer too small.
Definition base64.h:32
int base64_decode(unsigned char *dst, size_t *dlen, const unsigned char *src, size_t slen)
Decode a base64-formatted buffer.
Configuration options (set of defines)
Memory allocation layer (Deprecated to platform layer)
void memory_buffer_alloc_free(void)
Free the mutex for thread-safety and clear remaining memory.
int memory_buffer_alloc_init(unsigned char *buf, size_t len)
Initialize use of stack-based memory allocator.
PolarSSL Platform abstraction layer.
unsigned char * buf
Info structure for the pseudo random function.
int verify_int(char *str, int *value)
static int test_assert(int correct, const char *test)
int verify_string(char **str)
#define TEST_ASSERT(TEST)
static unsigned char * unhexify_alloc(const char *ibuf, size_t *olen)
Allocate and fill a buffer from hex data.
int dep_check(char *str)
int dispatch_test(int cnt, char *params[50])
#define polarssl_malloc
static void hexify(unsigned char *obuf, const unsigned char *ibuf, int len)
int parse_arguments(char *buf, size_t len, char *params[50])
#define polarssl_free
#define PUT_UINT32_BE(n, b, i)
static int rnd_pseudo_rand(void *rng_state, unsigned char *output, size_t len)
This function returns random based on a pseudo random function.
int get_line(FILE *f, char *buf, size_t len)
static int test_errors
static int rnd_buffer_rand(void *rng_state, unsigned char *output, size_t len)
This function returns random based on a buffer it receives.
static int unhexify(unsigned char *obuf, const char *ibuf)
static unsigned char * zero_alloc(size_t len)
Allocate and zeroize a buffer.
static int rnd_std_rand(void *rng_state, unsigned char *output, size_t len)
This function just returns data from rand().
int main()
static int rnd_zero_rand(void *rng_state, unsigned char *output, size_t len)
This function only returns zeros.