131 lines
3.6 KiB
Matlab
131 lines
3.6 KiB
Matlab
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//
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// SUUpdater+DSA.m
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// Pixen
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//
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// Created by Andy Matuschak on 3/9/06.
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// Copyright 2006 Andy Matuschak. All rights reserved.
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//
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// Thanks to Allan Odgaard for this code!
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#import "SUUpdater.h"
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#import <stdio.h>
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#import <openssl/evp.h>
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#import <openssl/bio.h>
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#import <openssl/pem.h>
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#import <openssl/rsa.h>
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#import <openssl/sha.h>
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@implementation SUUpdater (SUDSAAdditions)
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int b64decode(unsigned char* str)
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{
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unsigned char *cur, *start;
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int d, dlast, phase;
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unsigned char c;
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static int table[256] = {
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* 00-0F */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* 10-1F */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,62,-1,-1,-1,63, /* 20-2F */
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52,53,54,55,56,57,58,59,60,61,-1,-1,-1,-1,-1,-1, /* 30-3F */
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-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,10,11,12,13,14, /* 40-4F */
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15,16,17,18,19,20,21,22,23,24,25,-1,-1,-1,-1,-1, /* 50-5F */
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-1,26,27,28,29,30,31,32,33,34,35,36,37,38,39,40, /* 60-6F */
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41,42,43,44,45,46,47,48,49,50,51,-1,-1,-1,-1,-1, /* 70-7F */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* 80-8F */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* 90-9F */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* A0-AF */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* B0-BF */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* C0-CF */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* D0-DF */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, /* E0-EF */
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-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1 /* F0-FF */
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};
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d = dlast = phase = 0;
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start = str;
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for (cur = str; *cur != '\0'; ++cur )
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{
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if(*cur == '\n' || *cur == '\r'){phase = dlast = 0; continue;}
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d = table[(int)*cur];
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if(d != -1)
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{
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switch(phase)
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{
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case 0:
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++phase;
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break;
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case 1:
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c = ((dlast << 2) | ((d & 0x30) >> 4));
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*str++ = c;
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++phase;
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break;
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case 2:
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c = (((dlast & 0xf) << 4) | ((d & 0x3c) >> 2));
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*str++ = c;
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++phase;
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break;
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case 3:
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c = (((dlast & 0x03 ) << 6) | d);
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*str++ = c;
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phase = 0;
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break;
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}
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dlast = d;
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}
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}
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*str = '\0';
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return str - start;
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}
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EVP_PKEY* load_dsa_key(char *key)
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{
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EVP_PKEY* pkey = NULL;
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BIO *bio;
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if(bio = BIO_new_mem_buf(key, strlen(key)))
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{
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DSA* dsa_key = 0;
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if(PEM_read_bio_DSA_PUBKEY(bio, &dsa_key, NULL, NULL))
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{
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if(pkey = EVP_PKEY_new())
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{
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if(EVP_PKEY_assign_DSA(pkey, dsa_key) != 1)
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{
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DSA_free(dsa_key);
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EVP_PKEY_free(pkey);
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pkey = NULL;
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}
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}
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}
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BIO_free(bio);
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}
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return pkey;
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}
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- (BOOL)validateArchiveAtPath:(NSString *)path withSignature:(NSString *)encodedSignature
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{
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EVP_PKEY* pkey;
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if(!encodedSignature || ![self infoValueForKey:SUPublicDSAKeyKey] || !(pkey = load_dsa_key((char *)[[self infoValueForKey:SUPublicDSAKeyKey] UTF8String])))
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return NO;
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// Now, the signature is in base64; we have to decode it into a binary stream.
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unsigned char *signature = (unsigned char *)[encodedSignature UTF8String];
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long length = b64decode(signature);
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NSData *pathData = [NSData dataWithContentsOfFile:path];
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if (!pathData) { return NO; }
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unsigned char md[SHA_DIGEST_LENGTH];
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SHA1([pathData bytes], [pathData length], md);
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BOOL res = false;
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EVP_MD_CTX ctx;
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if(EVP_VerifyInit(&ctx, EVP_dss1()) == 1)
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{
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EVP_VerifyUpdate(&ctx, md, SHA_DIGEST_LENGTH);
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res = EVP_VerifyFinal(&ctx, signature, length, pkey) == 1;
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}
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EVP_PKEY_free(pkey);
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return res;
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}
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@end
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