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authorzhenwei pi <pizhenwei@bytedance.com>2022-06-11 14:42:43 +0800
committerMichael S. Tsirkin <mst@redhat.com>2022-06-16 12:54:58 -0400
commit0e660a6f90abf8b517d7317595bcc8e8da31f2a1 (patch)
tree48533af85d2d31a460626355df0ca272a4800c8e /hw/virtio
parent23b5f0ff6d923d3bca11cf44eed3daf7a0a836a8 (diff)
crypto: Introduce RSA algorithm
There are two parts in this patch: 1, support akcipher service by cryptodev-builtin driver 2, virtio-crypto driver supports akcipher service In principle, we should separate this into two patches, to avoid compiling error, merge them into one. Then virtio-crypto gets request from guest side, and forwards the request to builtin driver to handle it. Test with a guest linux: 1, The self-test framework of crypto layer works fine in guest kernel 2, Test with Linux guest(with asym support), the following script test(note that pkey_XXX is supported only in a newer version of keyutils): - both public key & private key - create/close session - encrypt/decrypt/sign/verify basic driver operation - also test with kernel crypto layer(pkey add/query) All the cases work fine. Run script in guest: rm -rf *.der *.pem *.pfx modprobe pkcs8_key_parser # if CONFIG_PKCS8_PRIVATE_KEY_PARSER=m rm -rf /tmp/data dd if=/dev/random of=/tmp/data count=1 bs=20 openssl req -nodes -x509 -newkey rsa:2048 -keyout key.pem -out cert.pem -subj "/C=CN/ST=BJ/L=HD/O=qemu/OU=dev/CN=qemu/emailAddress=qemu@qemu.org" openssl pkcs8 -in key.pem -topk8 -nocrypt -outform DER -out key.der openssl x509 -in cert.pem -inform PEM -outform DER -out cert.der PRIV_KEY_ID=`cat key.der | keyctl padd asymmetric test_priv_key @s` echo "priv key id = "$PRIV_KEY_ID PUB_KEY_ID=`cat cert.der | keyctl padd asymmetric test_pub_key @s` echo "pub key id = "$PUB_KEY_ID keyctl pkey_query $PRIV_KEY_ID 0 keyctl pkey_query $PUB_KEY_ID 0 echo "Enc with priv key..." keyctl pkey_encrypt $PRIV_KEY_ID 0 /tmp/data enc=pkcs1 >/tmp/enc.priv echo "Dec with pub key..." keyctl pkey_decrypt $PRIV_KEY_ID 0 /tmp/enc.priv enc=pkcs1 >/tmp/dec cmp /tmp/data /tmp/dec echo "Sign with priv key..." keyctl pkey_sign $PRIV_KEY_ID 0 /tmp/data enc=pkcs1 hash=sha1 > /tmp/sig echo "Verify with pub key..." keyctl pkey_verify $PRIV_KEY_ID 0 /tmp/data /tmp/sig enc=pkcs1 hash=sha1 echo "Enc with pub key..." keyctl pkey_encrypt $PUB_KEY_ID 0 /tmp/data enc=pkcs1 >/tmp/enc.pub echo "Dec with priv key..." keyctl pkey_decrypt $PRIV_KEY_ID 0 /tmp/enc.pub enc=pkcs1 >/tmp/dec cmp /tmp/data /tmp/dec echo "Verify with pub key..." keyctl pkey_verify $PUB_KEY_ID 0 /tmp/data /tmp/sig enc=pkcs1 hash=sha1 Reviewed-by: Gonglei <arei.gonglei@huawei.com> Signed-off-by: lei he <helei.sig11@bytedance.com Signed-off-by: zhenwei pi <pizhenwei@bytedance.com> Message-Id: <20220611064243.24535-2-pizhenwei@bytedance.com> Reviewed-by: Michael S. Tsirkin <mst@redhat.com> Signed-off-by: Michael S. Tsirkin <mst@redhat.com>
Diffstat (limited to 'hw/virtio')
-rw-r--r--hw/virtio/virtio-crypto.c323
1 files changed, 257 insertions, 66 deletions
diff --git a/hw/virtio/virtio-crypto.c b/hw/virtio/virtio-crypto.c
index c3829e7498..c1243c3f93 100644
--- a/hw/virtio/virtio-crypto.c
+++ b/hw/virtio/virtio-crypto.c
@@ -83,7 +83,8 @@ virtio_crypto_create_sym_session(VirtIOCrypto *vcrypto,
struct iovec *iov, unsigned int out_num)
{
VirtIODevice *vdev = VIRTIO_DEVICE(vcrypto);
- CryptoDevBackendSymSessionInfo info;
+ CryptoDevBackendSessionInfo info;
+ CryptoDevBackendSymSessionInfo *sym_info;
int64_t session_id;
int queue_index;
uint32_t op_type;
@@ -92,11 +93,13 @@ virtio_crypto_create_sym_session(VirtIOCrypto *vcrypto,
memset(&info, 0, sizeof(info));
op_type = ldl_le_p(&sess_req->op_type);
- info.op_type = op_type;
info.op_code = opcode;
+ sym_info = &info.u.sym_sess_info;
+ sym_info->op_type = op_type;
+
if (op_type == VIRTIO_CRYPTO_SYM_OP_CIPHER) {
- ret = virtio_crypto_cipher_session_helper(vdev, &info,
+ ret = virtio_crypto_cipher_session_helper(vdev, sym_info,
&sess_req->u.cipher.para,
&iov, &out_num);
if (ret < 0) {
@@ -105,47 +108,47 @@ virtio_crypto_create_sym_session(VirtIOCrypto *vcrypto,
} else if (op_type == VIRTIO_CRYPTO_SYM_OP_ALGORITHM_CHAINING) {
size_t s;
/* cipher part */
- ret = virtio_crypto_cipher_session_helper(vdev, &info,
+ ret = virtio_crypto_cipher_session_helper(vdev, sym_info,
&sess_req->u.chain.para.cipher_param,
&iov, &out_num);
if (ret < 0) {
goto err;
}
/* hash part */
- info.alg_chain_order = ldl_le_p(
+ sym_info->alg_chain_order = ldl_le_p(
&sess_req->u.chain.para.alg_chain_order);
- info.add_len = ldl_le_p(&sess_req->u.chain.para.aad_len);
- info.hash_mode = ldl_le_p(&sess_req->u.chain.para.hash_mode);
- if (info.hash_mode == VIRTIO_CRYPTO_SYM_HASH_MODE_AUTH) {
- info.hash_alg = ldl_le_p(&sess_req->u.chain.para.u.mac_param.algo);
- info.auth_key_len = ldl_le_p(
+ sym_info->add_len = ldl_le_p(&sess_req->u.chain.para.aad_len);
+ sym_info->hash_mode = ldl_le_p(&sess_req->u.chain.para.hash_mode);
+ if (sym_info->hash_mode == VIRTIO_CRYPTO_SYM_HASH_MODE_AUTH) {
+ sym_info->hash_alg =
+ ldl_le_p(&sess_req->u.chain.para.u.mac_param.algo);
+ sym_info->auth_key_len = ldl_le_p(
&sess_req->u.chain.para.u.mac_param.auth_key_len);
- info.hash_result_len = ldl_le_p(
+ sym_info->hash_result_len = ldl_le_p(
&sess_req->u.chain.para.u.mac_param.hash_result_len);
- if (info.auth_key_len > vcrypto->conf.max_auth_key_len) {
+ if (sym_info->auth_key_len > vcrypto->conf.max_auth_key_len) {
error_report("virtio-crypto length of auth key is too big: %u",
- info.auth_key_len);
+ sym_info->auth_key_len);
ret = -VIRTIO_CRYPTO_ERR;
goto err;
}
/* get auth key */
- if (info.auth_key_len > 0) {
- DPRINTF("auth_keylen=%" PRIu32 "\n", info.auth_key_len);
- info.auth_key = g_malloc(info.auth_key_len);
- s = iov_to_buf(iov, out_num, 0, info.auth_key,
- info.auth_key_len);
- if (unlikely(s != info.auth_key_len)) {
+ if (sym_info->auth_key_len > 0) {
+ sym_info->auth_key = g_malloc(sym_info->auth_key_len);
+ s = iov_to_buf(iov, out_num, 0, sym_info->auth_key,
+ sym_info->auth_key_len);
+ if (unlikely(s != sym_info->auth_key_len)) {
virtio_error(vdev,
"virtio-crypto authenticated key incorrect");
ret = -EFAULT;
goto err;
}
- iov_discard_front(&iov, &out_num, info.auth_key_len);
+ iov_discard_front(&iov, &out_num, sym_info->auth_key_len);
}
- } else if (info.hash_mode == VIRTIO_CRYPTO_SYM_HASH_MODE_PLAIN) {
- info.hash_alg = ldl_le_p(
+ } else if (sym_info->hash_mode == VIRTIO_CRYPTO_SYM_HASH_MODE_PLAIN) {
+ sym_info->hash_alg = ldl_le_p(
&sess_req->u.chain.para.u.hash_param.algo);
- info.hash_result_len = ldl_le_p(
+ sym_info->hash_result_len = ldl_le_p(
&sess_req->u.chain.para.u.hash_param.hash_result_len);
} else {
/* VIRTIO_CRYPTO_SYM_HASH_MODE_NESTED */
@@ -161,13 +164,10 @@ virtio_crypto_create_sym_session(VirtIOCrypto *vcrypto,
}
queue_index = virtio_crypto_vq2q(queue_id);
- session_id = cryptodev_backend_sym_create_session(
+ session_id = cryptodev_backend_create_session(
vcrypto->cryptodev,
&info, queue_index, &local_err);
if (session_id >= 0) {
- DPRINTF("create session_id=%" PRIu64 " successfully\n",
- session_id);
-
ret = session_id;
} else {
if (local_err) {
@@ -177,11 +177,78 @@ virtio_crypto_create_sym_session(VirtIOCrypto *vcrypto,
}
err:
- g_free(info.cipher_key);
- g_free(info.auth_key);
+ g_free(sym_info->cipher_key);
+ g_free(sym_info->auth_key);
return ret;
}
+static int64_t
+virtio_crypto_create_asym_session(VirtIOCrypto *vcrypto,
+ struct virtio_crypto_akcipher_create_session_req *sess_req,
+ uint32_t queue_id, uint32_t opcode,
+ struct iovec *iov, unsigned int out_num)
+{
+ VirtIODevice *vdev = VIRTIO_DEVICE(vcrypto);
+ CryptoDevBackendSessionInfo info = {0};
+ CryptoDevBackendAsymSessionInfo *asym_info;
+ int64_t session_id;
+ int queue_index;
+ uint32_t algo, keytype, keylen;
+ g_autofree uint8_t *key = NULL;
+ Error *local_err = NULL;
+
+ algo = ldl_le_p(&sess_req->para.algo);
+ keytype = ldl_le_p(&sess_req->para.keytype);
+ keylen = ldl_le_p(&sess_req->para.keylen);
+
+ if ((keytype != VIRTIO_CRYPTO_AKCIPHER_KEY_TYPE_PUBLIC)
+ && (keytype != VIRTIO_CRYPTO_AKCIPHER_KEY_TYPE_PRIVATE)) {
+ error_report("unsupported asym keytype: %d", keytype);
+ return -VIRTIO_CRYPTO_NOTSUPP;
+ }
+
+ if (keylen) {
+ key = g_malloc(keylen);
+ if (iov_to_buf(iov, out_num, 0, key, keylen) != keylen) {
+ virtio_error(vdev, "virtio-crypto asym key incorrect");
+ return -EFAULT;
+ }
+ iov_discard_front(&iov, &out_num, keylen);
+ }
+
+ info.op_code = opcode;
+ asym_info = &info.u.asym_sess_info;
+ asym_info->algo = algo;
+ asym_info->keytype = keytype;
+ asym_info->keylen = keylen;
+ asym_info->key = key;
+ switch (asym_info->algo) {
+ case VIRTIO_CRYPTO_AKCIPHER_RSA:
+ asym_info->u.rsa.padding_algo =
+ ldl_le_p(&sess_req->para.u.rsa.padding_algo);
+ asym_info->u.rsa.hash_algo =
+ ldl_le_p(&sess_req->para.u.rsa.hash_algo);
+ break;
+
+ /* TODO DSA&ECDSA handling */
+
+ default:
+ return -VIRTIO_CRYPTO_ERR;
+ }
+
+ queue_index = virtio_crypto_vq2q(queue_id);
+ session_id = cryptodev_backend_create_session(vcrypto->cryptodev, &info,
+ queue_index, &local_err);
+ if (session_id < 0) {
+ if (local_err) {
+ error_report_err(local_err);
+ }
+ return -VIRTIO_CRYPTO_ERR;
+ }
+
+ return session_id;
+}
+
static uint8_t
virtio_crypto_handle_close_session(VirtIOCrypto *vcrypto,
struct virtio_crypto_destroy_session_req *close_sess_req,
@@ -195,7 +262,7 @@ virtio_crypto_handle_close_session(VirtIOCrypto *vcrypto,
session_id = ldq_le_p(&close_sess_req->session_id);
DPRINTF("close session, id=%" PRIu64 "\n", session_id);
- ret = cryptodev_backend_sym_close_session(
+ ret = cryptodev_backend_close_session(
vcrypto->cryptodev, session_id, queue_id, &local_err);
if (ret == 0) {
status = VIRTIO_CRYPTO_OK;
@@ -260,13 +327,22 @@ static void virtio_crypto_handle_ctrl(VirtIODevice *vdev, VirtQueue *vq)
opcode = ldl_le_p(&ctrl.header.opcode);
queue_id = ldl_le_p(&ctrl.header.queue_id);
+ memset(&input, 0, sizeof(input));
switch (opcode) {
case VIRTIO_CRYPTO_CIPHER_CREATE_SESSION:
- memset(&input, 0, sizeof(input));
session_id = virtio_crypto_create_sym_session(vcrypto,
&ctrl.u.sym_create_session,
queue_id, opcode,
out_iov, out_num);
+ goto check_session;
+
+ case VIRTIO_CRYPTO_AKCIPHER_CREATE_SESSION:
+ session_id = virtio_crypto_create_asym_session(vcrypto,
+ &ctrl.u.akcipher_create_session,
+ queue_id, opcode,
+ out_iov, out_num);
+
+check_session:
/* Serious errors, need to reset virtio crypto device */
if (session_id == -EFAULT) {
virtqueue_detach_element(vq, elem, 0);
@@ -290,10 +366,12 @@ static void virtio_crypto_handle_ctrl(VirtIODevice *vdev, VirtQueue *vq)
virtqueue_push(vq, elem, sizeof(input));
virtio_notify(vdev, vq);
break;
+
case VIRTIO_CRYPTO_CIPHER_DESTROY_SESSION:
case VIRTIO_CRYPTO_HASH_DESTROY_SESSION:
case VIRTIO_CRYPTO_MAC_DESTROY_SESSION:
case VIRTIO_CRYPTO_AEAD_DESTROY_SESSION:
+ case VIRTIO_CRYPTO_AKCIPHER_DESTROY_SESSION:
status = virtio_crypto_handle_close_session(vcrypto,
&ctrl.u.destroy_session, queue_id);
/* The status only occupy one byte, we can directly use it */
@@ -311,7 +389,6 @@ static void virtio_crypto_handle_ctrl(VirtIODevice *vdev, VirtQueue *vq)
case VIRTIO_CRYPTO_AEAD_CREATE_SESSION:
default:
error_report("virtio-crypto unsupported ctrl opcode: %d", opcode);
- memset(&input, 0, sizeof(input));
stl_le_p(&input.status, VIRTIO_CRYPTO_NOTSUPP);
s = iov_from_buf(in_iov, in_num, 0, &input, sizeof(input));
if (unlikely(s != sizeof(input))) {
@@ -339,28 +416,39 @@ static void virtio_crypto_init_request(VirtIOCrypto *vcrypto, VirtQueue *vq,
req->in_num = 0;
req->in_len = 0;
req->flags = CRYPTODEV_BACKEND_ALG__MAX;
- req->u.sym_op_info = NULL;
+ memset(&req->op_info, 0x00, sizeof(req->op_info));
}
static void virtio_crypto_free_request(VirtIOCryptoReq *req)
{
- if (req) {
- if (req->flags == CRYPTODEV_BACKEND_ALG_SYM) {
- size_t max_len;
- CryptoDevBackendSymOpInfo *op_info = req->u.sym_op_info;
-
- max_len = op_info->iv_len +
- op_info->aad_len +
- op_info->src_len +
- op_info->dst_len +
- op_info->digest_result_len;
-
- /* Zeroize and free request data structure */
- memset(op_info, 0, sizeof(*op_info) + max_len);
+ if (!req) {
+ return;
+ }
+
+ if (req->flags == CRYPTODEV_BACKEND_ALG_SYM) {
+ size_t max_len;
+ CryptoDevBackendSymOpInfo *op_info = req->op_info.u.sym_op_info;
+
+ max_len = op_info->iv_len +
+ op_info->aad_len +
+ op_info->src_len +
+ op_info->dst_len +
+ op_info->digest_result_len;
+
+ /* Zeroize and free request data structure */
+ memset(op_info, 0, sizeof(*op_info) + max_len);
+ g_free(op_info);
+ } else if (req->flags == CRYPTODEV_BACKEND_ALG_ASYM) {
+ CryptoDevBackendAsymOpInfo *op_info = req->op_info.u.asym_op_info;
+ if (op_info) {
+ g_free(op_info->src);
+ g_free(op_info->dst);
+ memset(op_info, 0, sizeof(*op_info));
g_free(op_info);
}
- g_free(req);
}
+
+ g_free(req);
}
static void
@@ -397,6 +485,35 @@ virtio_crypto_sym_input_data_helper(VirtIODevice *vdev,
}
}
+static void
+virtio_crypto_akcipher_input_data_helper(VirtIODevice *vdev,
+ VirtIOCryptoReq *req, int32_t status,
+ CryptoDevBackendAsymOpInfo *asym_op_info)
+{
+ size_t s, len;
+
+ if (status != VIRTIO_CRYPTO_OK) {
+ return;
+ }
+
+ len = asym_op_info->dst_len;
+ if (!len) {
+ return;
+ }
+
+ s = iov_from_buf(req->in_iov, req->in_num, 0, asym_op_info->dst, len);
+ if (s != len) {
+ virtio_error(vdev, "virtio-crypto asym dest data incorrect");
+ return;
+ }
+
+ iov_discard_front(&req->in_iov, &req->in_num, len);
+
+ /* For akcipher, dst_len may be changed after operation */
+ req->in_len = sizeof(struct virtio_crypto_inhdr) + asym_op_info->dst_len;
+}
+
+
static void virtio_crypto_req_complete(VirtIOCryptoReq *req, uint8_t status)
{
VirtIOCrypto *vcrypto = req->vcrypto;
@@ -404,7 +521,10 @@ static void virtio_crypto_req_complete(VirtIOCryptoReq *req, uint8_t status)
if (req->flags == CRYPTODEV_BACKEND_ALG_SYM) {
virtio_crypto_sym_input_data_helper(vdev, req, status,
- req->u.sym_op_info);
+ req->op_info.u.sym_op_info);
+ } else if (req->flags == CRYPTODEV_BACKEND_ALG_ASYM) {
+ virtio_crypto_akcipher_input_data_helper(vdev, req, status,
+ req->op_info.u.asym_op_info);
}
stb_p(&req->in->status, status);
virtqueue_push(req->vq, &req->elem, req->in_len);
@@ -543,42 +663,101 @@ err:
static int
virtio_crypto_handle_sym_req(VirtIOCrypto *vcrypto,
struct virtio_crypto_sym_data_req *req,
- CryptoDevBackendSymOpInfo **sym_op_info,
+ CryptoDevBackendOpInfo *op_info,
struct iovec *iov, unsigned int out_num)
{
VirtIODevice *vdev = VIRTIO_DEVICE(vcrypto);
+ CryptoDevBackendSymOpInfo *sym_op_info;
uint32_t op_type;
- CryptoDevBackendSymOpInfo *op_info;
op_type = ldl_le_p(&req->op_type);
-
if (op_type == VIRTIO_CRYPTO_SYM_OP_CIPHER) {
- op_info = virtio_crypto_sym_op_helper(vdev, &req->u.cipher.para,
+ sym_op_info = virtio_crypto_sym_op_helper(vdev, &req->u.cipher.para,
NULL, iov, out_num);
- if (!op_info) {
+ if (!sym_op_info) {
return -EFAULT;
}
- op_info->op_type = op_type;
} else if (op_type == VIRTIO_CRYPTO_SYM_OP_ALGORITHM_CHAINING) {
- op_info = virtio_crypto_sym_op_helper(vdev, NULL,
+ sym_op_info = virtio_crypto_sym_op_helper(vdev, NULL,
&req->u.chain.para,
iov, out_num);
- if (!op_info) {
+ if (!sym_op_info) {
return -EFAULT;
}
- op_info->op_type = op_type;
} else {
/* VIRTIO_CRYPTO_SYM_OP_NONE */
error_report("virtio-crypto unsupported cipher type");
return -VIRTIO_CRYPTO_NOTSUPP;
}
- *sym_op_info = op_info;
+ sym_op_info->op_type = op_type;
+ op_info->u.sym_op_info = sym_op_info;
return 0;
}
static int
+virtio_crypto_handle_asym_req(VirtIOCrypto *vcrypto,
+ struct virtio_crypto_akcipher_data_req *req,
+ CryptoDevBackendOpInfo *op_info,
+ struct iovec *iov, unsigned int out_num)
+{
+ VirtIODevice *vdev = VIRTIO_DEVICE(vcrypto);
+ CryptoDevBackendAsymOpInfo *asym_op_info;
+ uint32_t src_len;
+ uint32_t dst_len;
+ uint32_t len;
+ uint8_t *src = NULL;
+ uint8_t *dst = NULL;
+
+ asym_op_info = g_malloc0(sizeof(CryptoDevBackendAsymOpInfo));
+ src_len = ldl_le_p(&req->para.src_data_len);
+ dst_len = ldl_le_p(&req->para.dst_data_len);
+
+ if (src_len > 0) {
+ src = g_malloc0(src_len);
+ len = iov_to_buf(iov, out_num, 0, src, src_len);
+ if (unlikely(len != src_len)) {
+ virtio_error(vdev, "virtio-crypto asym src data incorrect"
+ "expected %u, actual %u", src_len, len);
+ goto err;
+ }
+
+ iov_discard_front(&iov, &out_num, src_len);
+ }
+
+ if (dst_len > 0) {
+ dst = g_malloc0(dst_len);
+
+ if (op_info->op_code == VIRTIO_CRYPTO_AKCIPHER_VERIFY) {
+ len = iov_to_buf(iov, out_num, 0, dst, dst_len);
+ if (unlikely(len != dst_len)) {
+ virtio_error(vdev, "virtio-crypto asym dst data incorrect"
+ "expected %u, actual %u", dst_len, len);
+ goto err;
+ }
+
+ iov_discard_front(&iov, &out_num, dst_len);
+ }
+ }
+
+ asym_op_info->src_len = src_len;
+ asym_op_info->dst_len = dst_len;
+ asym_op_info->src = src;
+ asym_op_info->dst = dst;
+ op_info->u.asym_op_info = asym_op_info;
+
+ return 0;
+
+ err:
+ g_free(asym_op_info);
+ g_free(src);
+ g_free(dst);
+
+ return -EFAULT;
+}
+
+static int
virtio_crypto_handle_request(VirtIOCryptoReq *request)
{
VirtIOCrypto *vcrypto = request->vcrypto;
@@ -595,8 +774,7 @@ virtio_crypto_handle_request(VirtIOCryptoReq *request)
unsigned out_num;
uint32_t opcode;
uint8_t status = VIRTIO_CRYPTO_ERR;
- uint64_t session_id;
- CryptoDevBackendSymOpInfo *sym_op_info = NULL;
+ CryptoDevBackendOpInfo *op_info = &request->op_info;
Error *local_err = NULL;
if (elem->out_num < 1 || elem->in_num < 1) {
@@ -639,15 +817,28 @@ virtio_crypto_handle_request(VirtIOCryptoReq *request)
request->in_iov = in_iov;
opcode = ldl_le_p(&req.header.opcode);
- session_id = ldq_le_p(&req.header.session_id);
+ op_info->session_id = ldq_le_p(&req.header.session_id);
+ op_info->op_code = opcode;
switch (opcode) {
case VIRTIO_CRYPTO_CIPHER_ENCRYPT:
case VIRTIO_CRYPTO_CIPHER_DECRYPT:
+ op_info->algtype = request->flags = CRYPTODEV_BACKEND_ALG_SYM;
ret = virtio_crypto_handle_sym_req(vcrypto,
- &req.u.sym_req,
- &sym_op_info,
+ &req.u.sym_req, op_info,
+ out_iov, out_num);
+ goto check_result;
+
+ case VIRTIO_CRYPTO_AKCIPHER_ENCRYPT:
+ case VIRTIO_CRYPTO_AKCIPHER_DECRYPT:
+ case VIRTIO_CRYPTO_AKCIPHER_SIGN:
+ case VIRTIO_CRYPTO_AKCIPHER_VERIFY:
+ op_info->algtype = request->flags = CRYPTODEV_BACKEND_ALG_ASYM;
+ ret = virtio_crypto_handle_asym_req(vcrypto,
+ &req.u.akcipher_req, op_info,
out_iov, out_num);
+
+check_result:
/* Serious errors, need to reset virtio crypto device */
if (ret == -EFAULT) {
return -1;
@@ -655,11 +846,8 @@ virtio_crypto_handle_request(VirtIOCryptoReq *request)
virtio_crypto_req_complete(request, VIRTIO_CRYPTO_NOTSUPP);
virtio_crypto_free_request(request);
} else {
- sym_op_info->session_id = session_id;
/* Set request's parameter */
- request->flags = CRYPTODEV_BACKEND_ALG_SYM;
- request->u.sym_op_info = sym_op_info;
ret = cryptodev_backend_crypto_operation(vcrypto->cryptodev,
request, queue_index, &local_err);
if (ret < 0) {
@@ -674,6 +862,7 @@ virtio_crypto_handle_request(VirtIOCryptoReq *request)
virtio_crypto_free_request(request);
}
break;
+
case VIRTIO_CRYPTO_HASH:
case VIRTIO_CRYPTO_MAC:
case VIRTIO_CRYPTO_AEAD_ENCRYPT:
@@ -779,6 +968,7 @@ static void virtio_crypto_init_config(VirtIODevice *vdev)
vcrypto->conf.mac_algo_l = vcrypto->conf.cryptodev->conf.mac_algo_l;
vcrypto->conf.mac_algo_h = vcrypto->conf.cryptodev->conf.mac_algo_h;
vcrypto->conf.aead_algo = vcrypto->conf.cryptodev->conf.aead_algo;
+ vcrypto->conf.akcipher_algo = vcrypto->conf.cryptodev->conf.akcipher_algo;
vcrypto->conf.max_cipher_key_len =
vcrypto->conf.cryptodev->conf.max_cipher_key_len;
vcrypto->conf.max_auth_key_len =
@@ -891,6 +1081,7 @@ static void virtio_crypto_get_config(VirtIODevice *vdev, uint8_t *config)
stl_le_p(&crypto_cfg.max_cipher_key_len, c->conf.max_cipher_key_len);
stl_le_p(&crypto_cfg.max_auth_key_len, c->conf.max_auth_key_len);
stq_le_p(&crypto_cfg.max_size, c->conf.max_size);
+ stl_le_p(&crypto_cfg.akcipher_algo, c->conf.akcipher_algo);
memcpy(config, &crypto_cfg, c->config_size);
}