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//
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// MYDigest.m
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// MYCrypto
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//
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// Created by Jens Alfke on 1/4/08.
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// Copyright 2008 Jens Alfke. All rights reserved.
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//
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#import "MYDigest.h"
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#import <CommonCrypto/CommonDigest.h>
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#import "MYCrypto_Private.h"
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#if MYCRYPTO_USE_IPHONE_API
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enum {
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CSSM_ALGID_SHA1 = 8,
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CSSM_ALGID_SHA256 = 0x80000000 + 14
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};
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#endif
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@implementation MYDigest
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+ (uint32_t) algorithm {
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AssertAbstractMethod();
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}
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+ (size_t) length {
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AssertAbstractMethod();
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}
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+ (void) computeDigest: (void*)dstDigest ofBytes: (const void*)bytes length: (size_t)length {
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AssertAbstractMethod();
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}
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- (id) initWithRawDigest: (const void*)rawDigest length: (size_t)length {
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Assert([self class] != [MYDigest class], @"MYDigest is an abstract class");
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Assert(rawDigest!=NULL);
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AssertEq(length,[[self class] length]);
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self = [super init];
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if (self) {
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_rawDigest = malloc(length);
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Assert(_rawDigest);
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memcpy(_rawDigest,rawDigest,length);
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}
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return self;
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}
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- (void) dealloc
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{
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if(_rawDigest) free(_rawDigest);
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[super dealloc];
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}
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- (void) finalize
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{
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if(_rawDigest) free(_rawDigest);
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[super finalize];
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}
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- (id) copyWithZone: (NSZone*)zone
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{
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return [self retain];
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}
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- (id)initWithCoder:(NSCoder *)decoder
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{
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NSUInteger length;
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const void *bytes = [decoder decodeBytesForKey: @"digest" returnedLength: &length];
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return [self initWithRawDigest: bytes length: length];
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}
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- (void)encodeWithCoder:(NSCoder *)coder
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{
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[coder encodeBytes: self.bytes length: self.length forKey: @"digest"];
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}
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+ (MYDigest*) digestFromDigestData: (NSData*)digestData {
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return [[[self alloc] initWithRawDigest: digestData.bytes length: digestData.length] autorelease];
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}
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+ (MYDigest*) digestFromHexString: (NSString*)hexString
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{
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const char *cStr = [hexString UTF8String];
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const size_t length = [self length];
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if( !cStr || strlen(cStr)!=2*length )
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return nil;
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uint8_t digest[length];
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for( size_t i=0; i<length; i++ ) {
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if( sscanf(cStr, "%2hhx", &digest[i]) != 1 )
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return nil;
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cStr += 2;
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}
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return [[[self alloc] initWithRawDigest: &digest length: length] autorelease];
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}
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+ (MYDigest*) digestOfData: (NSData*)data {
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return [self digestOfBytes: data.bytes length: data.length];
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}
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+ (MYDigest*) digestOfBytes: (const void*)bytes length: (size_t)length {
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const size_t digestLength = [self length];
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uint8_t digest[digestLength];
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[self computeDigest: digest ofBytes: bytes length: length];
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return [[[self alloc] initWithRawDigest: &digest length: digestLength] autorelease];
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}
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- (uint32_t) algorithm {
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return [[self class] algorithm];
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}
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- (size_t) length {
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return [[self class] length];
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}
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- (const void*) bytes {
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return _rawDigest;
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}
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- (BOOL) isEqual: (id)digest
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{
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return [digest isKindOfClass: [MYDigest class]]
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&& [digest algorithm] == self.algorithm
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&& memcmp(self.bytes, [digest bytes], self.length)==0;
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}
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- (NSUInteger) hash
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{
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return *(NSUInteger*)self.bytes;
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//? This makes the hashcode endian-dependent. Does that matter?
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}
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- (NSComparisonResult) compare: (MYDigest*)other
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{
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size_t size=self.length, otherSize=other.length;
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NSComparisonResult cmp = memcmp(self.bytes, other.bytes, MIN(size,otherSize));
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return cmp ? cmp : ((int)size - (int)otherSize);
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}
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- (NSData*) asData
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{
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return [NSData dataWithBytes: self.bytes length: self.length];
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}
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- (NSString*) description
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{
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return [NSString stringWithFormat: @"%@[%@]", [self class], [self abbreviatedHexString]];
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}
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- (NSString*) hexString
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{
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const uint8_t *bytes = self.bytes;
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size_t length = self.length;
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char out[2*length+1];
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char *dst = &out[0];
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for( size_t i=0; i<length; i+=1 )
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dst += sprintf(dst,"%02X", bytes[i]);
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return [[[NSString alloc] initWithBytes: out length: 2*length encoding: NSASCIIStringEncoding]
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autorelease];
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}
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- (NSString*) abbreviatedHexString
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{
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const uint8_t *bytes = self.bytes;
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return [NSString stringWithFormat: @"%02hhX%02hhX%02hhX%02hhX...",
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bytes[0],bytes[1],bytes[2],bytes[3]];
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}
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@end
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@implementation MYSHA1Digest
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+ (void) computeDigest: (void*)dstDigest ofBytes: (const void*)bytes length: (size_t)length {
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NSParameterAssert(bytes!=NULL);
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NSParameterAssert(length>0);
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CC_SHA1(bytes,length, dstDigest);
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}
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+ (uint32_t) algorithm {return CSSM_ALGID_SHA1;}
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+ (size_t) length {return sizeof(RawSHA1Digest);}
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- (MYSHA1Digest*) initWithRawSHA1Digest: (const RawSHA1Digest*)rawDigest {
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return [super initWithRawDigest: rawDigest length: sizeof(*rawDigest)];
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}
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+ (MYSHA1Digest*) digestFromRawSHA1Digest: (const RawSHA1Digest*)rawDigest {
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return [[[self alloc] initWithRawSHA1Digest: rawDigest] autorelease];
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}
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- (const RawSHA1Digest*) rawSHA1Digest {
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return self.bytes;
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}
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@end
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@implementation MYSHA256Digest
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+ (void) computeDigest: (void*)dstDigest ofBytes: (const void*)bytes length: (size_t)length {
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NSParameterAssert(bytes!=NULL);
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NSParameterAssert(length>0);
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CC_SHA256(bytes,length, dstDigest);
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}
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+ (uint32_t) algorithm {return CSSM_ALGID_SHA256;}
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+ (size_t) length {return sizeof(RawSHA256Digest);}
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- (MYSHA256Digest*) initWithRawSHA256Digest: (const RawSHA256Digest*)rawDigest {
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return [super initWithRawDigest: rawDigest length: sizeof(*rawDigest)];
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}
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+ (MYSHA256Digest*) digestFromRawSHA256Digest: (const RawSHA256Digest*)rawDigest {
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return [[[self alloc] initWithRawSHA256Digest: rawDigest] autorelease];
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}
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- (const RawSHA256Digest*) rawSHA256Digest {
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return self.bytes;
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}
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@end
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@implementation NSData (MYDigest)
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- (MYSHA1Digest*) my_SHA1Digest
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{
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return (MYSHA1Digest*) [MYSHA1Digest digestOfData: self];
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}
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- (MYSHA256Digest*) my_SHA256Digest
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{
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return (MYSHA256Digest*) [MYSHA256Digest digestOfData: self];
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}
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@end
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#import "Test.h"
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static void testDigestOf( NSData *src, NSString *expectedSHA1Hex, NSString *expectedSHA256Hex )
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{
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MYSHA1Digest *d1 = [src my_SHA1Digest];
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NSString *hex = d1.hexString;
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Log(@"Digesting %u bytes to %@",src.length,hex);
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if( expectedSHA1Hex )
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CAssertEqual(hex,expectedSHA1Hex);
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MYSHA1Digest *d2 = (MYSHA1Digest*) [MYSHA1Digest digestFromHexString: hex];
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CAssertEqual(d1,d2);
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CAssertEqual(d2.hexString,hex);
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MYSHA256Digest *d256 = [src my_SHA256Digest];
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hex = d256.hexString;
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Log(@"Digesting %u bytes to %@",src.length,hex);
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if( expectedSHA256Hex )
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CAssertEqual(hex,expectedSHA256Hex);
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MYSHA256Digest *d256_2 = (MYSHA256Digest*) [MYSHA256Digest digestFromHexString: hex];
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CAssertEqual(d256,d256_2);
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CAssertEqual(d256_2.hexString,hex);
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}
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TestCase(MYDigest) {
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testDigestOf([@"Pack my box with five dozen liquor jugs, you ugly potatoe pie!"
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dataUsingEncoding: NSUTF8StringEncoding],
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@"4F254781ED6C0103BE056DD8418EFBAC0C2EBE3C",
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@"08AA4BCDDF7654D7AB5CDD25395A4DD8F3BEB5C79FE567D10C1A21B9134F48FD");
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testDigestOf([NSData dataWithContentsOfFile: @"/Library/Desktop Pictures/Nature/Zen Garden.jpg"],
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@"62A17839B3B86D3543EB2E34D2718A0FE044FA31",
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@"FBD25FA6CEE794049973DE3BDF752345617FCA81018C8FC65350BCDD901142DB");
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}
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/*
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Copyright (c) 2009, Jens Alfke <jens@mooseyard.com>. All rights reserved.
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Redistribution and use in source and binary forms, with or without modification, are permitted
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provided that the following conditions are met:
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* Redistributions of source code must retain the above copyright notice, this list of conditions
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and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright notice, this list of conditions
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and the following disclaimer in the documentation and/or other materials provided with the
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distribution.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
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IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
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FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRI-
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BUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
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THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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