File: | out/../deps/openssl/openssl/crypto/idea/i_ofb64.c |
Warning: | line 71, column 9 Although the value stored to 'v0' is used in the enclosing expression, the value is never actually read from 'v0' |
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1 | /* |
2 | * Copyright 1995-2021 The OpenSSL Project Authors. All Rights Reserved. |
3 | * |
4 | * Licensed under the Apache License 2.0 (the "License"). You may not use |
5 | * this file except in compliance with the License. You can obtain a copy |
6 | * in the file LICENSE in the source distribution or at |
7 | * https://www.openssl.org/source/license.html |
8 | */ |
9 | |
10 | /* |
11 | * IDEA low level APIs are deprecated for public use, but still ok for internal |
12 | * use where we're using them to implement the higher level EVP interface, as is |
13 | * the case here. |
14 | */ |
15 | #include "internal/deprecated.h" |
16 | |
17 | #include <openssl/idea.h> |
18 | #include "idea_local.h" |
19 | |
20 | /* |
21 | * The input and output encrypted as though 64bit ofb mode is being used. |
22 | * The extra state information to record how much of the 64bit block we have |
23 | * used is contained in *num; |
24 | */ |
25 | void IDEA_ofb64_encrypt(const unsigned char *in, unsigned char *out, |
26 | long length, IDEA_KEY_SCHEDULE *schedule, |
27 | unsigned char *ivec, int *num) |
28 | { |
29 | register unsigned long v0, v1, t; |
30 | register int n = *num; |
31 | register long l = length; |
32 | unsigned char d[8]; |
33 | register char *dp; |
34 | unsigned long ti[2]; |
35 | unsigned char *iv; |
36 | int save = 0; |
37 | |
38 | if (n < 0) { |
39 | *num = -1; |
40 | return; |
41 | } |
42 | |
43 | iv = (unsigned char *)ivec; |
44 | n2l(iv, v0)(v0 =((unsigned long)(*((iv)++)))<<24L, v0|=((unsigned long )(*((iv)++)))<<16L, v0|=((unsigned long)(*((iv)++)))<< 8L, v0|=((unsigned long)(*((iv)++)))); |
45 | n2l(iv, v1)(v1 =((unsigned long)(*((iv)++)))<<24L, v1|=((unsigned long )(*((iv)++)))<<16L, v1|=((unsigned long)(*((iv)++)))<< 8L, v1|=((unsigned long)(*((iv)++)))); |
46 | ti[0] = v0; |
47 | ti[1] = v1; |
48 | dp = (char *)d; |
49 | l2n(v0, dp)(*((dp)++)=(unsigned char)(((v0)>>24L)&0xff), *((dp )++)=(unsigned char)(((v0)>>16L)&0xff), *((dp)++)=( unsigned char)(((v0)>> 8L)&0xff), *((dp)++)=(unsigned char)(((v0) )&0xff)); |
50 | l2n(v1, dp)(*((dp)++)=(unsigned char)(((v1)>>24L)&0xff), *((dp )++)=(unsigned char)(((v1)>>16L)&0xff), *((dp)++)=( unsigned char)(((v1)>> 8L)&0xff), *((dp)++)=(unsigned char)(((v1) )&0xff)); |
51 | while (l--) { |
52 | if (n == 0) { |
53 | IDEA_encrypt((unsigned long *)ti, schedule); |
54 | dp = (char *)d; |
55 | t = ti[0]; |
56 | l2n(t, dp)(*((dp)++)=(unsigned char)(((t)>>24L)&0xff), *((dp) ++)=(unsigned char)(((t)>>16L)&0xff), *((dp)++)=(unsigned char)(((t)>> 8L)&0xff), *((dp)++)=(unsigned char)( ((t) )&0xff)); |
57 | t = ti[1]; |
58 | l2n(t, dp)(*((dp)++)=(unsigned char)(((t)>>24L)&0xff), *((dp) ++)=(unsigned char)(((t)>>16L)&0xff), *((dp)++)=(unsigned char)(((t)>> 8L)&0xff), *((dp)++)=(unsigned char)( ((t) )&0xff)); |
59 | save++; |
60 | } |
61 | *(out++) = *(in++) ^ d[n]; |
62 | n = (n + 1) & 0x07; |
63 | } |
64 | if (save) { |
65 | v0 = ti[0]; |
66 | v1 = ti[1]; |
67 | iv = (unsigned char *)ivec; |
68 | l2n(v0, iv)(*((iv)++)=(unsigned char)(((v0)>>24L)&0xff), *((iv )++)=(unsigned char)(((v0)>>16L)&0xff), *((iv)++)=( unsigned char)(((v0)>> 8L)&0xff), *((iv)++)=(unsigned char)(((v0) )&0xff)); |
69 | l2n(v1, iv)(*((iv)++)=(unsigned char)(((v1)>>24L)&0xff), *((iv )++)=(unsigned char)(((v1)>>16L)&0xff), *((iv)++)=( unsigned char)(((v1)>> 8L)&0xff), *((iv)++)=(unsigned char)(((v1) )&0xff)); |
70 | } |
71 | t = v0 = v1 = ti[0] = ti[1] = 0; |
Although the value stored to 'v0' is used in the enclosing expression, the value is never actually read from 'v0' | |
72 | *num = n; |
73 | } |