xca/lib/pki_evp.cpp
Christian Hohnstaedt 838fb6924d add information to requests, wether they are already signed or not
- look for a certificate with the public key of the request
   to decide whether it is already handled or not.
2009-11-29 12:28:31 +01:00

848 lines
19 KiB
C++

/* vi: set sw=4 ts=4:
*
* Copyright (C) 2001 - 2009 Christian Hohnstaedt.
*
* All rights reserved.
*/
#include "pki_evp.h"
#include "pass_info.h"
#include "func.h"
#include "db.h"
#include <openssl/rand.h>
#include <openssl/evp.h>
#include <openssl/pem.h>
#include <qprogressdialog.h>
#include <qapplication.h>
#include <qdir.h>
#include <widgets/MainWindow.h>
char pki_evp::passwd[MAX_PASS_LENGTH]={0,};
char pki_evp::oldpasswd[MAX_PASS_LENGTH]={0,};
QString pki_evp::passHash = QString();
QPixmap *pki_evp::icon[2]= { NULL, NULL };
EC_builtin_curve *pki_evp::curves = NULL;
size_t pki_evp::num_curves = 0;
unsigned char *pki_evp::curve_flags = NULL;
void pki_evp::erasePasswd()
{
memset(passwd, 0, MAX_PASS_LENGTH);
}
void pki_evp::eraseOldPasswd()
{
memset(oldpasswd, 0, MAX_PASS_LENGTH);
}
void pki_evp::setPasswd(const char *pass)
{
strncpy(passwd, pass, MAX_PASS_LENGTH);
passwd[MAX_PASS_LENGTH-1] = '\0';
}
void pki_evp::setOldPasswd(const char *pass)
{
strncpy(oldpasswd, pass, MAX_PASS_LENGTH);
oldpasswd[MAX_PASS_LENGTH-1] = '\0';
}
void pki_evp::init(int type)
{
key->type = type;
class_name = "pki_evp";
encKey = NULL;
encKey_len = 0;
ownPass = ptCommon;
dataVersion=2;
pkiType=asym_key;
cols=5;
}
static void incProgress(int, int, void *progress)
{
int i = ((QProgressBar *)progress)->value();
((QProgressBar *)progress)->setValue(++i);
}
QString pki_evp::removeTypeFromIntName(QString n)
{
if (n.right(1) != ")" ) return n;
n.truncate(n.length() - 6);
return n;
}
void pki_evp::setOwnPass(enum passType x)
{
EVP_PKEY *pk=NULL, *pk_back = key;
int oldOwnPass = ownPass;
if (ownPass == x || isPubKey())
return;
try {
pk = decryptKey();
if (pk == NULL)
return;
key = pk;
ownPass = x;
encryptKey();
}
catch (errorEx &err) {
if (pk)
EVP_PKEY_free(pk);
key = pk_back;
ownPass = oldOwnPass;
throw(err);
}
EVP_PKEY_free(pk_back);
}
void pki_evp::generate(int bits, int type, QProgressBar *progress, int curve_nid)
{
RSA *rsakey;
DSA *dsakey;
EC_KEY *eckey;
progress->setMinimum(0);
progress->setMaximum(100);
progress->setValue(50);
switch (type) {
case EVP_PKEY_RSA:
rsakey = RSA_generate_key(bits, 0x10001, &incProgress,progress);
if (rsakey)
EVP_PKEY_set1_RSA(key, rsakey);
break;
case EVP_PKEY_DSA:
progress->setMaximum(500);
dsakey = DSA_generate_parameters(bits, NULL, 0, NULL, NULL,
&incProgress, progress);
DSA_generate_key(dsakey);
if (dsakey)
EVP_PKEY_set1_DSA(key, dsakey);
break;
case EVP_PKEY_EC:
EC_GROUP *group = EC_GROUP_new_by_curve_name(curve_nid);
if (!group)
break;
eckey = EC_KEY_new();
if (eckey == NULL) {
EC_GROUP_free(group);
break;
}
EC_GROUP_set_asn1_flag(group, 1);
if (EC_KEY_set_group(eckey, group)) {
if (EC_KEY_generate_key(eckey)) {
EVP_PKEY_set1_EC_KEY(key, eckey);
EC_GROUP_free(group);
break;
}
}
EC_KEY_free(eckey);
EC_GROUP_free(group);
break;
}
openssl_error();
encryptKey();
}
pki_evp::pki_evp(const pki_evp *pk)
:pki_key(pk)
{
init(pk->key->type);
openssl_error();
ownPass = pk->ownPass;
encKey_len = pk->encKey_len;
if (encKey_len) {
encKey = (unsigned char *)OPENSSL_malloc(encKey_len);
check_oom(encKey);
memcpy(encKey, pk->encKey, encKey_len);
}
}
pki_evp::pki_evp(const QString name, int type )
:pki_key(name)
{
init(type);
openssl_error();
}
pki_evp::pki_evp(EVP_PKEY *pkey)
:pki_key()
{
init();
if (key) {
EVP_PKEY_free(key);
}
key = pkey;
}
static bool EVP_PKEY_isPrivKey(EVP_PKEY *key)
{
switch (EVP_PKEY_type(key->type)) {
case EVP_PKEY_RSA:
return key->pkey.rsa->d ? true: false;
case EVP_PKEY_DSA:
return key->pkey.dsa->priv_key ? true: false;
case EVP_PKEY_EC:
return EC_KEY_get0_private_key(key->pkey.ec) ? true: false;
}
return false;
}
QList<int> pki_evp::possibleHashNids()
{
QList<int> nids;
switch (EVP_PKEY_type(key->type)) {
case EVP_PKEY_RSA:
nids << NID_md5 << NID_sha1 << NID_sha256 << NID_sha384 <<
NID_sha512 << NID_ripemd160;
break;
case EVP_PKEY_DSA:
case EVP_PKEY_EC:
nids << NID_sha1;
}
return nids;
};
void pki_evp::fromPEM_BIO(BIO *bio, QString name)
{
EVP_PKEY *pkey;
int pos;
pass_info p(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the password to decrypt the private key."));
pos = BIO_tell(bio);
pkey = PEM_read_bio_PrivateKey(bio, NULL, MainWindow::passRead, &p);
if (!pkey){
ign_openssl_error();
pos = BIO_seek(bio, pos);
pkey = PEM_read_bio_PUBKEY(bio, NULL, MainWindow::passRead, &p);
}
if (pkey){
if (key)
EVP_PKEY_free(key);
key = pkey;
if (EVP_PKEY_isPrivKey(key))
bogusEncryptKey();
setIntName(rmslashdot(name));
}
openssl_error(name);
}
static void search_ec_oid(EC_KEY *ec)
{
const EC_GROUP *ec_group = EC_KEY_get0_group(ec);
EC_GROUP *builtin;
if (!ec_group)
return;
if (EC_GROUP_get_curve_name(ec_group))
return;
/* There is an EC_GROUP with a missing OID
* because of explicit parameters */
for (size_t i=0; i<pki_evp::num_curves; i++) {
int nid = pki_evp::curves[i].nid;
builtin = EC_GROUP_new_by_curve_name(nid);
if (EC_GROUP_cmp(builtin, ec_group, NULL) == 0) {
EC_GROUP_set_curve_name((EC_GROUP *)ec_group, nid);
EC_GROUP_set_asn1_flag((EC_GROUP *)ec_group, 1);
EC_GROUP_free(builtin);
break;
} else {
EC_GROUP_free(builtin);
}
}
}
void pki_evp::fload(const QString fname)
{
pass_info p(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the password to decrypt the private key.") +
"\n'" + fname + "'");
pem_password_cb *cb = MainWindow::passRead;
FILE *fp = fopen(QString2filename(fname), "r");
EVP_PKEY *pkey;
ign_openssl_error();
if (!fp) {
fopen_error(fname);
return;
}
pkey = PEM_read_PrivateKey(fp, NULL, cb, &p);
if (!pkey) {
if (ERR_get_error() == 0x06065064) {
fclose(fp);
ign_openssl_error();
throw errorEx(tr("Failed to decrypt the key (bad password) ") +
fname, class_name);
}
}
if (!pkey) {
ign_openssl_error();
rewind(fp);
pkey = d2i_PrivateKey_fp(fp, NULL);
}
if (!pkey) {
ign_openssl_error();
rewind(fp);
pkey = PEM_read_PUBKEY(fp, NULL, cb, &p);
}
if (!pkey) {
ign_openssl_error();
rewind(fp);
pkey = d2i_PUBKEY_fp(fp, NULL);
}
fclose(fp);
if (pkey){
if (pkey->type == EVP_PKEY_EC)
search_ec_oid(pkey->pkey.ec);
if (key)
EVP_PKEY_free(key);
key = pkey;
if (EVP_PKEY_isPrivKey(key))
bogusEncryptKey();
setIntName(rmslashdot(fname));
}
openssl_error(fname);
}
void pki_evp::fromData(const unsigned char *p, db_header_t *head )
{
const unsigned char *p1;
int version, type, size;
p1 = p;
size = head->len - sizeof(db_header_t);
version = head->version;
if (key)
EVP_PKEY_free(key);
key = NULL;
type = db::intFromData(&p1);
ownPass = db::intFromData(&p1);
if (version < 2) {
D2I_CLASHT(d2i_PublicKey, type, &key, &p1, size - (2*sizeof(int)));
} else {
d2i_PUBKEY(&key, &p1, size - (2*sizeof(int)));
}
openssl_error();
encKey_len = size - (p1-p);
if (encKey_len) {
encKey = (unsigned char *)OPENSSL_malloc(encKey_len);
check_oom(encKey);
memcpy(encKey, p1 ,encKey_len);
}
}
EVP_PKEY *pki_evp::decryptKey() const
{
unsigned char *p;
const unsigned char *p1;
int outl, decsize;
unsigned char iv[EVP_MAX_IV_LENGTH];
unsigned char ckey[EVP_MAX_KEY_LENGTH];
EVP_PKEY *tmpkey;
EVP_CIPHER_CTX ctx;
const EVP_CIPHER *cipher = EVP_des_ede3_cbc();
char ownPassBuf[MAX_PASS_LENGTH] = "";
if (isPubKey()) {
unsigned char *q;
outl = i2d_PUBKEY(key, NULL);
p = q = (unsigned char *)OPENSSL_malloc(outl);
check_oom(q);
i2d_PUBKEY(key, &p);
p = q;
tmpkey = d2i_PUBKEY(NULL, (const unsigned char**)&p, outl);
OPENSSL_free(q);
return tmpkey;
}
/* This key has its own password */
if (ownPass == ptPrivate) {
int ret;
pass_info pi(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the password to decrypt the private key: '") +
getIntName() + "'");
ret = MainWindow::passRead(ownPassBuf, MAX_PASS_LENGTH, 0, &pi);
if (ret < 0)
throw errorEx(tr("Password input aborted"), class_name);
} else if (ownPass == ptBogus) { // BOGUS pass
ownPassBuf[0] = '\0';
} else {
memcpy(ownPassBuf, passwd, MAX_PASS_LENGTH);
//printf("Orig password: '%s' len:%d\n", passwd, strlen(passwd));
while (md5passwd(ownPassBuf) != passHash &&
sha512passwd(ownPassBuf, passHash) != passHash)
{
int ret;
//printf("Passhash= '%s', new hash= '%s', passwd= '%s'\n",
//CCHAR(passHash), CCHAR(md5passwd(ownPassBuf)), ownPassBuf);
pass_info p(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the database password for decrypting the key"));
ret = MainWindow::passRead(ownPassBuf, MAX_PASS_LENGTH, 0, &p);
if (ret < 0)
throw errorEx(tr("Password input aborted"), class_name);
}
}
//printf("Using decrypt Pass: %s\n", ownPassBuf);
p = (unsigned char *)OPENSSL_malloc(encKey_len);
check_oom(p);
openssl_error();
p1 = p;
memset(iv, 0, EVP_MAX_IV_LENGTH);
memcpy(iv, encKey, 8); /* recover the iv */
/* generate the key */
EVP_BytesToKey(cipher, EVP_sha1(), iv, (unsigned char *)ownPassBuf,
strlen(ownPassBuf), 1, ckey,NULL);
/* we use sha1 as message digest,
* because an md5 version of the password is
* stored in the database...
*/
EVP_CIPHER_CTX_init(&ctx);
EVP_DecryptInit(&ctx, cipher, ckey, iv);
EVP_DecryptUpdate(&ctx, p , &outl, encKey +8, encKey_len -8);
decsize = outl;
EVP_DecryptFinal(&ctx, p + decsize , &outl);
decsize += outl;
//printf("Decrypt decsize=%d, encKey_len=%d\n", decsize, encKey_len);
openssl_error();
tmpkey = D2I_CLASHT(d2i_PrivateKey, key->type, NULL, &p1, decsize);
openssl_error();
OPENSSL_free(p);
EVP_CIPHER_CTX_cleanup(&ctx);
openssl_error();
return tmpkey;
}
unsigned char *pki_evp::toData(int *size)
{
unsigned char *p, *p1;
int pubsize;
pubsize = i2d_PUBKEY(key, NULL);
*size = pubsize + encKey_len + (2*sizeof(int));
p1 = p = (unsigned char *)OPENSSL_malloc(*size);
check_oom(p);
openssl_error();
db::intToData(&p1, key->type);
db::intToData(&p1, ownPass);
i2d_PUBKEY(key, &p1);
openssl_error();
if (encKey_len) {
memcpy(p1, encKey, encKey_len);
}
// printf("To data: pubsize=%d, encKey_len: %d, *size=%d\n",
//pubsize, encKey_len, *size);
return p;
}
EVP_PKEY *pki_evp::priv2pub(EVP_PKEY* key)
{
int keylen;
unsigned char *p, *p1;
EVP_PKEY *pubkey;
keylen = i2d_PUBKEY(key, NULL);
p1 = p = (unsigned char *)OPENSSL_malloc(keylen);
check_oom(p);
/* convert rsa/dsa/ec to Pubkey */
keylen = i2d_PUBKEY(key, &p);
openssl_error();
p = p1;
pubkey = d2i_PUBKEY(NULL, (const unsigned char**)&p, keylen);
OPENSSL_free(p1);
openssl_error();
return pubkey;
}
void pki_evp::encryptKey(const char *password)
{
int outl, keylen;
EVP_PKEY *pkey1 = NULL;
EVP_CIPHER_CTX ctx;
const EVP_CIPHER *cipher = EVP_des_ede3_cbc();
unsigned char iv[EVP_MAX_IV_LENGTH], *punenc, *punenc1;
unsigned char ckey[EVP_MAX_KEY_LENGTH];
char ownPassBuf[MAX_PASS_LENGTH];
/* This key has its own, private password */
if (ownPass == ptPrivate) {
int ret;
pass_info p(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the password to protect the private key: '") +
getIntName() + "'");
ret = MainWindow::passWrite(ownPassBuf, MAX_PASS_LENGTH, 0, &p);
if (ret < 0)
throw errorEx("Password input aborted", class_name);
} else if (ownPass == ptBogus) { // BOGUS password
ownPassBuf[0] = '\0';
} else {
if (password) {
/* use the password parameter if this is a common password */
strncpy(ownPassBuf, password, MAX_PASS_LENGTH);
} else {
int ret = 0;
memcpy(ownPassBuf, passwd, MAX_PASS_LENGTH);
pass_info p(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the database password for encrypting the key"));
while (md5passwd(ownPassBuf) != passHash &&
sha512passwd(ownPassBuf, passHash) != passHash )
{
ret = MainWindow::passRead(ownPassBuf, MAX_PASS_LENGTH, 0,&p);
if (ret < 0)
throw errorEx("Password input aborted", class_name);
}
}
}
/* Prepare Encryption */
memset(iv, 0, EVP_MAX_IV_LENGTH);
RAND_pseudo_bytes(iv,8); /* Generate a salt */
EVP_BytesToKey(cipher, EVP_sha1(), iv, (unsigned char *)ownPassBuf,
strlen(ownPassBuf), 1, ckey, NULL);
EVP_CIPHER_CTX_init (&ctx);
openssl_error();
if (encKey)
OPENSSL_free(encKey);
encKey_len = 0;
/* reserve space for unencrypted and encrypted key */
keylen = i2d_PrivateKey(key, NULL);
encKey = (unsigned char *)OPENSSL_malloc(keylen + EVP_MAX_KEY_LENGTH + 8);
check_oom(encKey);
punenc1 = punenc = (unsigned char *)OPENSSL_malloc(keylen);
check_oom(punenc);
keylen = i2d_PrivateKey(key, &punenc1);
openssl_error();
memcpy(encKey, iv, 8); /* store the iv */
/*
* Now DER version of privkey is in punenc
* and privkey is still in key
*/
/* do the encryption */
/* store key right after the iv */
EVP_EncryptInit( &ctx, cipher, ckey, iv);
EVP_EncryptUpdate(&ctx, encKey + 8, &outl, punenc, keylen);
encKey_len = outl;
EVP_EncryptFinal(&ctx, encKey + encKey_len + 8, &outl);
encKey_len += outl + 8;
/* Cleanup */
EVP_CIPHER_CTX_cleanup(&ctx);
/* wipe out the memory */
memset(punenc, 0, keylen);
OPENSSL_free(punenc);
openssl_error();
pkey1 = priv2pub(key);
check_oom(pkey1);
EVP_PKEY_free(key);
key = pkey1;
openssl_error();
//CRYPTO_mem_ctrl(CRYPTO_MEM_CHECK_OFF);
//printf("Encrypt: encKey_len=%d\n", encKey_len);
return;
}
void pki_evp::set_evp_key(EVP_PKEY *pkey)
{
if (key)
free(key);
key = pkey;
}
void pki_evp::bogusEncryptKey()
{
ownPass = ptBogus;
encryptKey();
}
pki_evp::~pki_evp()
{
if (encKey)
OPENSSL_free(encKey);
}
void pki_evp::writePKCS8(const QString fname, const EVP_CIPHER *enc,
pem_password_cb *cb, bool pem)
{
EVP_PKEY *pkey;
pass_info p(XCA_TITLE, qApp->translate("MainWindow",
"Please enter the password protecting the PKCS#8 key"));
FILE *fp = fopen(QString2filename(fname), "w");
if (fp != NULL) {
if (key) {
pkey = decryptKey();
if (pkey) {
if (pem)
PEM_write_PKCS8PrivateKey(fp, pkey, enc, NULL, 0, cb, &p);
else
i2d_PKCS8PrivateKey_fp(fp, pkey, enc, NULL, 0, cb, &p);
EVP_PKEY_free(pkey);
}
}
fclose(fp);
openssl_error();
} else
fopen_error(fname);
}
static int mycb(char *buf, int size, int, void *)
{
strncpy(buf, pki_evp::passwd, size);
return strlen(pki_evp::passwd);
}
void pki_evp::writeDefault(const QString fname)
{
writeKey(fname + QDir::separator() + getIntName() + ".pem",
EVP_des_ede3_cbc(), mycb, true);
}
void pki_evp::writeKey(const QString fname, const EVP_CIPHER *enc,
pem_password_cb *cb, bool pem)
{
EVP_PKEY *pkey;
pass_info p(XCA_TITLE, qApp->translate("MainWindow", "Please enter the export password for the private key"));
if (isPubKey()) {
writePublic(fname, pem);
return;
}
FILE *fp = fopen(QString2filename(fname), "w");
if (!fp) {
fopen_error(fname);
return;
}
if (key){
pkey = decryptKey();
if (pkey) {
if (pem) {
PEM_write_PrivateKey(fp, pkey, enc, NULL, 0, cb, &p);
} else {
i2d_PrivateKey_fp(fp, pkey);
}
EVP_PKEY_free(pkey);
}
openssl_error();
}
fclose(fp);
}
QString pki_evp::length()
{
if (key->type == EVP_PKEY_DSA && key->pkey.dsa->p == NULL) {
return QString("???");
}
return QString("%1 bit").arg(EVP_PKEY_bits(key));
}
bool pki_evp::isPubKey() const
{
if (encKey_len == 0 || encKey == NULL) {
return true;
}
return false;
}
int pki_evp::verify()
{
bool veri = false;
return true;
if (key->type == EVP_PKEY_RSA && isPrivKey()) {
if (RSA_check_key(key->pkey.rsa) == 1)
veri = true;
}
if (isPrivKey())
veri = true;
openssl_error();
return veri;
}
const EVP_MD *pki_evp::getDefaultMD()
{
const EVP_MD *md;
switch (key->type) {
case EVP_PKEY_RSA: md = EVP_sha1(); break;
case EVP_PKEY_DSA: md = EVP_dss1(); break;
case EVP_PKEY_EC: md = EVP_ecdsa(); break;
default: md = NULL; break;
}
return md;
}
QVariant pki_evp::column_data(int col)
{
QStringList sl;
sl << tr("Common") << tr("Private") << tr("Bogus");
switch (col) {
case 0:
return QVariant(getIntName());
case 1:
return QVariant(getTypeString());
case 2:
return QVariant(length());
case 3:
return QVariant(getUcount());
case 4:
if (isPubKey())
return QVariant(tr("No password"));
if (ownPass<0 || ownPass>2)
return QVariant("Holla die Waldfee");
return QVariant(sl[ownPass]);
}
return QVariant();
}
QVariant pki_evp::getIcon(int column)
{
if (column != 0)
return QVariant();
int pixnum= isPubKey() ? 1 : 0;
return QVariant(*icon[pixnum]);
}
QString pki_evp::md5passwd(const char *pass)
{
EVP_MD_CTX mdctx;
QString str;
int n;
int j;
unsigned char m[EVP_MAX_MD_SIZE];
EVP_DigestInit(&mdctx, EVP_md5());
EVP_DigestUpdate(&mdctx, pass, strlen(pass));
EVP_DigestFinal(&mdctx, m, (unsigned*)&n);
for (j=0; j<n; j++) {
char zs[4];
sprintf(zs, "%02X%c",m[j], (j+1 == n) ?'\0':':');
str += zs;
}
return str;
}
QString pki_evp::sha512passwd(QString pass, QString salt)
{
EVP_MD_CTX mdctx;
QString str;
int n;
int j;
unsigned char m[EVP_MAX_MD_SIZE];
if (salt.length() <5)
abort();
str = salt.left(5);
pass = str + pass;
EVP_DigestInit(&mdctx, EVP_sha512());
EVP_DigestUpdate(&mdctx, CCHAR(pass), pass.size());
EVP_DigestFinal(&mdctx, m, (unsigned*)&n);
for (j=0; j<n; j++) {
char zs[4];
sprintf(zs, "%02X",m[j]);
str += zs;
}
return str;
}
void pki_evp::veryOldFromData(unsigned char *p, int size )
{
unsigned char *sik, *pdec, *pdec1, *sik1;
int outl, decsize;
unsigned char iv[EVP_MAX_IV_LENGTH];
unsigned char ckey[EVP_MAX_KEY_LENGTH];
memset(iv, 0, EVP_MAX_IV_LENGTH);
RSA *rsakey;
EVP_CIPHER_CTX ctx;
const EVP_CIPHER *cipher = EVP_des_ede3_cbc();
sik = (unsigned char *)OPENSSL_malloc(size);
check_oom(sik);
openssl_error();
pdec = (unsigned char *)OPENSSL_malloc(size);
if (pdec == NULL ) {
OPENSSL_free(sik);
check_oom(pdec);
}
pdec1=pdec;
sik1=sik;
memcpy(iv, p, 8); /* recover the iv */
/* generate the key */
EVP_BytesToKey(cipher, EVP_sha1(), iv, (unsigned char *)oldpasswd,
strlen(oldpasswd), 1, ckey,NULL);
/* we use sha1 as message digest,
* because an md5 version of the password is
* stored in the database...
*/
EVP_CIPHER_CTX_init (&ctx);
EVP_DecryptInit( &ctx, cipher, ckey, iv);
EVP_DecryptUpdate( &ctx, pdec , &outl, p + 8, size -8 );
decsize = outl;
EVP_DecryptFinal( &ctx, pdec + decsize , &outl );
decsize += outl;
openssl_error();
memcpy(sik, pdec, decsize);
if (key->type == EVP_PKEY_RSA) {
rsakey=d2i_RSAPrivateKey(NULL,(const unsigned char **)&pdec, decsize);
if (ign_openssl_error()) {
rsakey=D2I_CLASH(d2i_RSA_PUBKEY, NULL, &sik, decsize);
}
openssl_error();
if (rsakey) EVP_PKEY_assign_RSA(key, rsakey);
}
OPENSSL_free(sik1);
OPENSSL_free(pdec1);
EVP_CIPHER_CTX_cleanup(&ctx);
openssl_error();
encryptKey();
}
void pki_evp::oldFromData(unsigned char *p, int size )
{
const unsigned char *p1;
int version, type;
p1 = (const unsigned char*)p;
version = intFromData(&p1);
if (version != 1) { // backward compatibility
veryOldFromData(p, size);
return;
}
if (key)
EVP_PKEY_free(key);
key = NULL;
type = intFromData(&p1);
ownPass = intFromData(&p1);
D2I_CLASHT(d2i_PublicKey, type, &key, &p1, size - (2*sizeof(int)));
openssl_error();
encKey_len = size - (p1-p);
if (encKey_len) {
encKey = (unsigned char *)OPENSSL_malloc(encKey_len);
check_oom(encKey);
memcpy(encKey, p1 ,encKey_len);
}
}