xca/lib/asn1int.cpp
2018-03-11 10:02:14 +01:00

226 lines
3.4 KiB
C++

/* vi: set sw=4 ts=4:
*
* Copyright (C) 2001 - 2010 Christian Hohnstaedt.
*
* All rights reserved.
*/
#include "asn1int.h"
#include "func.h"
#include "exception.h"
#include <openssl/err.h>
#include <openssl/bn.h>
ASN1_INTEGER *a1int::dup(const ASN1_INTEGER *a) const
{
// this wrapper casts the const to work around the nonconst
// declared ASN1_STRING_dup (actually it is const
ASN1_INTEGER *r = ASN1_INTEGER_dup((ASN1_INTEGER *)a);
openssl_error();
if (!r)
r = ASN1_INTEGER_new();
check_oom(r);
return r;
}
a1int::a1int()
{
in = ASN1_INTEGER_new();
check_oom(in);
ASN1_INTEGER_set(in, 0);
openssl_error();
}
a1int::a1int(const ASN1_INTEGER *i)
{
in = dup(i);
}
a1int::a1int(const a1int &a)
{
in = dup(a.in);
}
a1int::a1int(const QString &hex)
{
in = ASN1_INTEGER_new();
check_oom(in);
setHex(hex);
}
a1int::a1int(long l)
{
in = ASN1_INTEGER_new();
check_oom(in);
set(l);
}
a1int::~a1int()
{
ASN1_INTEGER_free(in);
}
a1int &a1int::set(const ASN1_INTEGER *i)
{
ASN1_INTEGER_free(in);
in = dup(i);
return *this;
}
a1int &a1int::set(long l)
{
ASN1_INTEGER_set(in, l);
openssl_error();
return *this;
}
QString a1int::toQString(int dec) const
{
QString r;
if (in->length == 0) {
return r;
}
BIGNUM *bn = ASN1_INTEGER_to_BN(in, NULL);
openssl_error();
char *res = dec ? BN_bn2dec(bn) : BN_bn2hex(bn);
openssl_error();
r = res;
OPENSSL_free(res);
BN_free(bn);
return r;
}
QString a1int::toHex() const
{
return toQString(0);
}
QString a1int::toDec() const
{
return toQString(1);
}
a1int &a1int::setQString(const QString &s, int dec)
{
BIGNUM *bn = NULL;
if (s.isEmpty()) {
return *this;
}
if (dec)
BN_dec2bn(&bn, s.toLatin1());
else
BN_hex2bn(&bn, s.toLatin1());
openssl_error();
BN_to_ASN1_INTEGER(bn, in);
openssl_error();
BN_free(bn);
return *this;
}
a1int &a1int::setHex(const QString &s)
{
return setQString(s, 0);
}
a1int &a1int::setDec(const QString &s)
{
return setQString(s, 1);
}
a1int &a1int::setRaw(const unsigned char *data, unsigned len)
{
BIGNUM *bn = BN_bin2bn(data, len, NULL);
if (!bn)
openssl_error();
BN_to_ASN1_INTEGER(bn, in);
openssl_error();
BN_free(bn);
return *this;
}
ASN1_INTEGER *a1int::get() const
{
return dup(in);
}
const ASN1_INTEGER *a1int::get0() const
{
return in;
}
long a1int::getLong() const
{
long l = ASN1_INTEGER_get(in);
openssl_error();
return l;
}
a1int &a1int::operator ++ (void)
{
BIGNUM *bn = ASN1_INTEGER_to_BN(in, NULL);
openssl_error();
BN_add(bn, bn, BN_value_one());
openssl_error();
BN_to_ASN1_INTEGER(bn, in);
openssl_error();
BN_free(bn);
return *this;
}
a1int a1int::operator ++ (int)
{
a1int tmp = *this;
operator ++ ();
return tmp;
}
a1int &a1int::operator = (const a1int &a)
{
set(a.in);
return *this;
}
a1int &a1int::operator = (long i)
{
ASN1_INTEGER_set(in, i);
openssl_error();
return *this;
}
bool a1int::operator > (const a1int &a) const
{
return (ASN1_INTEGER_cmp(in, a.in) > 0);
}
bool a1int::operator < (const a1int &a) const
{
return (ASN1_INTEGER_cmp(in, a.in) < 0);
}
bool a1int::operator == (const a1int &a) const
{
return (ASN1_INTEGER_cmp(in, a.in) == 0);
}
bool a1int::operator != (const a1int &a) const
{
return (ASN1_INTEGER_cmp(in, a.in) != 0);
}
a1int::operator QString() const
{
return toHex();
}
QByteArray a1int::i2d()
{
return i2d_bytearray(I2D_VOID(i2d_ASN1_INTEGER), in);
}
int a1int::derSize() const
{
return i2d_ASN1_INTEGER(in, NULL);
}