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* g10.c (print_hex, print_mds): Print long hash strings a lot neater.
This assumes at least an 80-character display, as there are a few other similar assumptions here and there. Users who need unformatted hashes can still use with-colons.
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@ -1,3 +1,10 @@
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2003-02-05 David Shaw <dshaw@jabberwocky.com>
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* g10.c (print_hex, print_mds): Print long hash strings a lot
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neater. This assumes at least an 80-character display, as there
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are a few other similar assumptions here and there. Users who
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need unformatted hashes can still use with-colons.
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2003-02-04 David Shaw <dshaw@jabberwocky.com>
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* armor.c (parse_hash_header, armor_filter): Accept the new SHAs
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145
g10/g10.c
145
g10/g10.c
@ -605,7 +605,6 @@ static char *build_list( const char *text, char letter,
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const char *(*mapf)(int), int (*chkf)(int) );
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static void set_cmd( enum cmd_and_opt_values *ret_cmd,
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enum cmd_and_opt_values new_cmd );
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static void print_hex( byte *p, size_t n );
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static void print_mds( const char *fname, int algo );
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static void add_notation_data( const char *string, int which );
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static void add_policy_url( const char *string, int which );
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@ -2569,40 +2568,89 @@ g10_exit( int rc )
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}
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/* Pretty-print hex hashes. This assumes at least an 80-character
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display, but there are a few other similar assumptions in the
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display code. */
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static void
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print_hex( byte *p, size_t n )
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print_hex( MD_HANDLE md, int algo, const char *fname )
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{
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int i;
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int i,n,count,indent=0;
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const byte *p;
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if( n == 16 ) {
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for(i=0; i < n ; i++, p++ ) {
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if( i )
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putchar(' ');
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if( i && !(i%8) )
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putchar(' ');
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printf("%02X", *p );
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}
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if(fname)
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indent=printf("%s: ",fname);
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if(indent>40)
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{
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printf("\n");
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indent=0;
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}
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else if( n == 20 ) {
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for(i=0; i < n ; i++, i++, p += 2 ) {
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if( i )
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putchar(' ');
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if( i == 10 )
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putchar(' ');
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printf("%02X%02X", *p, p[1] );
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if(algo==DIGEST_ALGO_RMD160)
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indent+=printf("RMD160 = ");
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else if(algo==DIGEST_ALGO_TIGER)
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indent+=printf(" TIGER = ");
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else if(algo>0)
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indent+=printf("%6s = ",digest_algo_to_string(algo));
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else
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algo=abs(algo);
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count=indent;
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p = md_read( md, algo );
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n = md_digest_length(algo);
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count+=printf("%02X",*p++);
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for(i=1;i<n;i++,p++)
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{
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if(n==16)
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{
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if(count+2>79)
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{
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printf("\n%*s",indent," ");
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count=indent;
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}
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else
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count+=printf(" ");
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if(!(i%8))
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count+=printf(" ");
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}
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}
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else {
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for(i=0; i < n ; i += 4, p += 4 ) {
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if( i )
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putchar(' ');
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if( i == 12 && n <= 24 )
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putchar(' ');
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printf("%02X%02X%02X%02X", *p, p[1], p[2], p[3] );
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else if (n==20)
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{
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if(!(i%2))
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{
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if(count+4>79)
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{
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printf("\n%*s",indent," ");
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count=indent;
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}
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else
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count+=printf(" ");
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}
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if(!(i%10))
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count+=printf(" ");
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}
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else
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{
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if(!(i%4))
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{
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if(count+8>79)
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{
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printf("\n%*s",indent," ");
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count=indent;
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}
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else
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count+=printf(" ");
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}
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}
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count+=printf("%02X",*p);
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}
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printf("\n");
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}
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static void
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@ -2636,23 +2684,18 @@ print_mds( const char *fname, int algo )
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char buf[1024];
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size_t n;
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MD_HANDLE md;
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char *pname;
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if( !fname ) {
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fp = stdin;
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#ifdef HAVE_DOSISH_SYSTEM
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setmode ( fileno(fp) , O_BINARY );
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#endif
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pname = m_strdup("[stdin]: ");
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}
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else {
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pname = m_alloc(strlen(fname)+3);
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strcpy(stpcpy(pname,fname),": ");
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fp = fopen( fname, "rb" );
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}
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if( !fp ) {
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log_error("%s%s\n", pname, strerror(errno) );
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m_free(pname);
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log_error("%s: %s\n", fname?fname:"[stdin]", strerror(errno) );
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return;
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}
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@ -2673,7 +2716,7 @@ print_mds( const char *fname, int algo )
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while( (n=fread( buf, 1, DIM(buf), fp )) )
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md_write( md, buf, n );
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if( ferror(fp) )
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log_error("%s%s\n", pname, strerror(errno) );
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log_error("%s: %s\n", fname?fname:"[stdin]", strerror(errno) );
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else {
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md_final(md);
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if ( opt.with_colons ) {
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@ -2691,30 +2734,18 @@ print_mds( const char *fname, int algo )
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}
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}
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else {
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if( algo ) {
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if( fname )
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fputs( pname, stdout );
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print_hex(md_read(md, algo), md_digest_length(algo) );
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}
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if( algo )
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print_hex(md,-algo,fname);
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else {
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printf( "%s MD5 = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_MD5), 16 );
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printf("\n%s SHA1 = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_SHA1), 20 );
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printf("\n%sRMD160 = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_RMD160), 20 );
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if( !check_digest_algo(DIGEST_ALGO_TIGER) ) {
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printf("\n%s TIGER = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_TIGER), 24 );
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}
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printf("\n%sSHA256 = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_SHA256), 32 );
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printf("\n%sSHA384 = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_SHA384), 48 );
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printf("\n%sSHA512 = ", fname?pname:"" );
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print_hex(md_read(md, DIGEST_ALGO_SHA512), 64 );
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print_hex( md, DIGEST_ALGO_MD5, fname );
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print_hex( md, DIGEST_ALGO_SHA1, fname );
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print_hex( md, DIGEST_ALGO_RMD160, fname );
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if( !check_digest_algo(DIGEST_ALGO_TIGER) )
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print_hex( md, DIGEST_ALGO_TIGER, fname );
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print_hex( md, DIGEST_ALGO_SHA256, fname );
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print_hex( md, DIGEST_ALGO_SHA384, fname );
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print_hex( md, DIGEST_ALGO_SHA512, fname );
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}
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putchar('\n');
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}
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}
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md_close(md);
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