2009-03-08 03:28:14 +02:00
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/*
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* Copyright (c) 2009 Baptiste Coudurier <baptiste.coudurier@gmail.com>
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*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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2012-06-24 21:26:31 +03:00
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#include "config.h"
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#if HAVE_UNISTD_H
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2009-03-08 03:28:14 +02:00
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#include <unistd.h>
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2012-06-24 21:26:31 +03:00
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#endif
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2014-08-02 04:08:29 +03:00
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#if HAVE_IO_H
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#include <io.h>
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#endif
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2018-04-03 11:44:25 +02:00
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#if HAVE_BCRYPT
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2012-10-11 14:30:23 +03:00
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#include <windows.h>
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2018-04-03 11:44:25 +02:00
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#include <bcrypt.h>
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2012-10-11 14:30:23 +03:00
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#endif
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2009-03-08 03:28:14 +02:00
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#include <fcntl.h>
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2011-07-17 16:17:10 +03:00
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#include <math.h>
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#include <time.h>
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2012-06-11 12:47:59 +03:00
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#include <string.h>
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2012-09-08 15:31:33 +03:00
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#include "avassert.h"
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2022-08-27 23:33:06 +02:00
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#include "file_open.h"
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2013-08-06 21:19:25 +03:00
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#include "internal.h"
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2012-06-11 12:47:59 +03:00
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#include "intreadwrite.h"
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2009-03-08 03:28:14 +02:00
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#include "timer.h"
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#include "random_seed.h"
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2012-06-11 12:47:59 +03:00
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#include "sha.h"
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#ifndef TEST
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#define TEST 0
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#endif
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2009-03-08 03:28:14 +02:00
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2023-07-05 00:46:32 +02:00
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static int read_random(uint8_t *dst, size_t len, const char *file)
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2010-06-30 13:38:04 +03:00
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{
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2012-06-24 21:26:31 +03:00
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#if HAVE_UNISTD_H
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2023-07-05 00:37:04 +02:00
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FILE *fp = avpriv_fopen_utf8(file, "r");
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size_t err;
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2010-06-30 13:38:04 +03:00
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2023-07-05 00:37:04 +02:00
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if (!fp)
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return AVERROR_UNKNOWN;
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2023-07-05 00:46:32 +02:00
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err = fread(dst, 1, len, fp);
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2023-07-05 00:37:04 +02:00
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fclose(fp);
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2010-06-30 13:38:04 +03:00
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2023-07-05 00:46:32 +02:00
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if (err != len)
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2023-07-05 00:37:04 +02:00
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return AVERROR_UNKNOWN;
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return 0;
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2012-06-24 21:26:31 +03:00
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#else
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2023-07-05 00:37:04 +02:00
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return AVERROR(ENOSYS);
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2012-06-24 21:26:31 +03:00
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#endif
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2010-06-30 13:38:04 +03:00
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}
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2010-07-08 02:47:48 +03:00
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static uint32_t get_generic_seed(void)
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{
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2016-12-21 04:11:44 +02:00
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uint64_t tmp[120/8];
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2012-06-11 12:47:59 +03:00
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struct AVSHA *sha = (void*)tmp;
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2011-12-03 21:25:57 +03:00
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clock_t last_t = 0;
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2016-12-22 04:59:03 +02:00
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clock_t last_td = 0;
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2016-12-29 01:34:57 +02:00
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clock_t init_t = 0;
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2012-06-11 12:47:59 +03:00
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static uint64_t i = 0;
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2012-06-11 12:47:59 +03:00
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static uint32_t buffer[512] = { 0 };
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2012-10-11 19:27:06 +03:00
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unsigned char digest[20];
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2012-06-11 12:47:59 +03:00
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uint64_t last_i = i;
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2010-07-08 02:47:48 +03:00
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2012-09-08 15:31:33 +03:00
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av_assert0(sizeof(tmp) >= av_sha_size);
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2012-06-11 12:47:59 +03:00
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if(TEST){
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memset(buffer, 0, sizeof(buffer));
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last_i = i = 0;
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}else{
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#ifdef AV_READ_TIME
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buffer[13] ^= AV_READ_TIME();
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buffer[41] ^= AV_READ_TIME()>>32;
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#endif
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}
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for (;;) {
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2011-12-03 21:25:57 +03:00
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clock_t t = clock();
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2016-12-24 15:26:41 +02:00
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if (last_t + 2*last_td + (CLOCKS_PER_SEC > 1000) >= t) {
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2016-12-22 04:59:03 +02:00
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last_td = t - last_t;
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buffer[i & 511] = 1664525*buffer[i & 511] + 1013904223 + (last_td % 3294638521U);
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2012-06-11 12:47:59 +03:00
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} else {
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2016-12-22 04:59:03 +02:00
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last_td = t - last_t;
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buffer[++i & 511] += last_td % 3294638521U;
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2016-12-29 01:34:57 +02:00
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if ((t - init_t) >= CLOCKS_PER_SEC>>5)
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if (last_i && i - last_i > 4 || i - last_i > 64 || TEST && i - last_i > 8)
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break;
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2010-07-08 02:47:48 +03:00
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}
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2011-12-03 21:25:57 +03:00
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last_t = t;
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2016-12-29 01:34:57 +02:00
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if (!init_t)
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init_t = t;
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2010-07-08 02:47:48 +03:00
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}
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2015-12-09 16:18:53 +02:00
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if(TEST) {
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2012-06-11 12:47:59 +03:00
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buffer[0] = buffer[1] = 0;
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2015-12-09 16:18:53 +02:00
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} else {
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#ifdef AV_READ_TIME
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buffer[111] += AV_READ_TIME();
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#endif
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}
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2010-07-08 02:47:48 +03:00
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2012-06-11 12:47:59 +03:00
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av_sha_init(sha, 160);
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2014-01-07 00:09:14 +03:00
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av_sha_update(sha, (const uint8_t *)buffer, sizeof(buffer));
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2012-06-11 12:47:59 +03:00
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av_sha_final(sha, digest);
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2012-06-11 12:47:59 +03:00
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return AV_RB32(digest) + AV_RB32(digest + 16);
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2010-07-08 02:47:48 +03:00
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}
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2023-07-05 00:46:32 +02:00
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int av_random_bytes(uint8_t* buf, size_t len)
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2009-03-08 03:28:14 +02:00
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{
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2023-07-05 00:46:32 +02:00
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int err;
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2010-06-30 13:38:04 +03:00
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2018-04-03 11:44:25 +02:00
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#if HAVE_BCRYPT
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BCRYPT_ALG_HANDLE algo_handle;
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NTSTATUS ret = BCryptOpenAlgorithmProvider(&algo_handle, BCRYPT_RNG_ALGORITHM,
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MS_PRIMITIVE_PROVIDER, 0);
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if (BCRYPT_SUCCESS(ret)) {
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2023-07-05 00:46:32 +02:00
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NTSTATUS ret = BCryptGenRandom(algo_handle, (PUCHAR)buf, len, 0);
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2018-04-03 11:44:25 +02:00
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BCryptCloseAlgorithmProvider(algo_handle, 0);
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if (BCRYPT_SUCCESS(ret))
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2023-07-05 00:46:32 +02:00
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return 0;
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2012-10-11 14:30:23 +03:00
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}
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#endif
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2015-12-07 04:10:21 +02:00
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#if HAVE_ARC4RANDOM
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2023-07-05 00:46:32 +02:00
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arc4random_buf(buf, len);
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return 0;
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2015-12-07 04:10:21 +02:00
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#endif
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2023-07-05 00:46:32 +02:00
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err = read_random(buf, len, "/dev/urandom");
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return err;
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}
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uint32_t av_get_random_seed(void)
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{
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uint32_t seed;
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if (av_random_bytes((uint8_t *)&seed, sizeof(seed)) < 0)
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return get_generic_seed();
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return seed;
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2009-03-08 03:28:14 +02:00
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}
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