On 8/31/2026 2:56 PM, Krzysztof Kozlowski wrote:
> On 27/08/2026 18:07, Linlin Zhang wrote:
>> From: linlzhan <[email protected]>
>>
>> In a Qualcomm GVM environment the ICE hardware is controlled by the
>
> What is GVM?
>
GVM means Guest Virtual Machine. This is designed for the virtualization
platform.
>> host, GVM has no direct access to it. So, key operation in GVM is
>> done through SCM calls rather than direct register access. In this
>> way the access to ICE registers are offloaded to Trust Zone.
>>
>> Add QCOM_CRYPTO_VIRT, which implements struct virtblk_crypto_variant_ops
>> for the virtio_blk_crypto_ext dispatch layer. It maps keyslot
>> program/evict to qcom_scm_ice_set_key() and
>> qcom_scm_ice_invalidate_key(), and software-secret derivation to
>> qcom_scm_derive_sw_secret().
>>
>> Signed-off-by: linlzhan <[email protected]>
>> ---
>> drivers/soc/qcom/Kconfig | 12 +++++
>> drivers/soc/qcom/Makefile | 1 +
>> drivers/soc/qcom/crypto_virt.c | 89 ++++++++++++++++++++++++++++++++++
>> 3 files changed, 102 insertions(+)
>> create mode 100644 drivers/soc/qcom/crypto_virt.c
>>
>> diff --git a/drivers/soc/qcom/Kconfig b/drivers/soc/qcom/Kconfig
>> index 2b524154d9fb..6c632d114d45 100644
>> --- a/drivers/soc/qcom/Kconfig
>> +++ b/drivers/soc/qcom/Kconfig
>> @@ -298,6 +298,18 @@ config QCOM_INLINE_CRYPTO_ENGINE
>> tristate
>> select QCOM_SCM
>>
>> +config QCOM_CRYPTO_VIRT
>> + tristate "Qualcomm Technologies, Inc. Crypto Virt driver"
>> + depends on VIRTBLK_CRYPTO_VIRTUALIZATION
>> + depends on QCOM_SCM
>> + default VIRTBLK_CRYPTO_VIRTUALIZATION if ARCH_QCOM
>> + help
>> + GVM-side hardware-wrapped-key SCM operations exposed to
>> + virtio_blk's inline crypto layer: per-slot key programming and
>> + eviction, and key derive/generate/prepare/import.
>> + Say Y here to compile the driver as a part of kernel or M to compile
>> + as a module.
>> +
>> config QCOM_KRYO_L2_ACCESSORS
>> bool
>> depends on ARM64
>> diff --git a/drivers/soc/qcom/Makefile b/drivers/soc/qcom/Makefile
>> index 798643be3590..6d4b7546d1fb 100644
>> --- a/drivers/soc/qcom/Makefile
>> +++ b/drivers/soc/qcom/Makefile
>> @@ -39,5 +39,6 @@ obj-$(CONFIG_QCOM_KRYO_L2_ACCESSORS) +=
>> kryo-l2-accessors.o
>> obj-$(CONFIG_QCOM_ICC_BWMON) += icc-bwmon.o
>> qcom_ice-objs += ice.o
>> obj-$(CONFIG_QCOM_INLINE_CRYPTO_ENGINE) += qcom_ice.o
>> +obj-$(CONFIG_QCOM_CRYPTO_VIRT) += crypto_virt.o
>> obj-$(CONFIG_QCOM_PBS) += qcom-pbs.o
>> obj-$(CONFIG_QCOM_UBWC_CONFIG) += ubwc_config.o
>> diff --git a/drivers/soc/qcom/crypto_virt.c b/drivers/soc/qcom/crypto_virt.c
>> new file mode 100644
>> index 000000000000..4ee2a36af6c1
>> --- /dev/null
>> +++ b/drivers/soc/qcom/crypto_virt.c
>> @@ -0,0 +1,89 @@
>> +// SPDX-License-Identifier: GPL-2.0-only
>> +
>> +#include <linux/module.h>
>> +#include <linux/types.h>
>> +#include <linux/blk-crypto.h>
>> +#include <linux/virtio_blk_crypto_ext.h>
>> +#include <linux/firmware/qcom/qcom_scm.h>
>> +
>> +static int crypto_virt_program_key(const struct blk_crypto_key *key,
>> + unsigned int slot)
>> +{
>> + u32 dus_512_units;
>> + int ret;
>> +
>> + if (!key || !key->size) {
>> + pr_err("%s: invalid key\n", __func__);
>> + return -EINVAL;
>> + }
>> +
>> + /* Only AES-256-XTS has been tested so far. */
>> + if (key->crypto_cfg.crypto_mode !=
>> + BLK_ENCRYPTION_MODE_AES_256_XTS) {
>> + pr_err_ratelimited("Unsupported crypto mode: %d\n",
>> + key->crypto_cfg.crypto_mode);
>> + return -EINVAL;
>> + }
>> +
>> + /* qcom_scm_ice_set_key()'s data_unit_size is expressed in 512-byte
>> units */
>> + dus_512_units = key->crypto_cfg.data_unit_size / 512;
>> +
>> + ret = qcom_scm_ice_set_key(slot, key->bytes, key->size,
>> + QCOM_SCM_ICE_CIPHER_AES_256_XTS, dus_512_units);
>> + if (ret)
>> + pr_err("%s: slot=%u ret=%d\n", __func__, slot, ret);
>> +
>> + return ret;
>> +}
>> +
>> +static int crypto_virt_invalidate_key(unsigned int slot)
>> +{
>> + int ret;
>> +
>> + ret = qcom_scm_ice_invalidate_key(slot);
>> + if (ret)
>> + pr_err("%s: slot=%u ret=%d\n", __func__, slot, ret);
>> +
>> + return ret;
>> +}
>> +
>> +static int crypto_virt_derive_sw_secret_key(const u8 *eph_key, size_t
>> eph_key_size,
>> + u8
>> sw_secret[BLK_CRYPTO_SW_SECRET_SIZE])
>> +{
>> + int ret;
>> +
>> + ret = qcom_scm_derive_sw_secret(eph_key, eph_key_size,
>> + sw_secret, BLK_CRYPTO_SW_SECRET_SIZE);
>> + if (ret == -EIO || ret == -EINVAL)
>> + ret = -EBADMSG; /* probably invalid key */
>> +
>> + if (ret)
>> + pr_err("%s: ret=%d\n", __func__, ret);
>> +
>> + return ret;
>> +}
>> +
>> +static struct virtblk_crypto_variant_ops virtblk_crypto_qcom_vops = {
>
> Why is a crypto-handling code in drivers/soc/?
>
This driver is a Qualcomm vendor-specific driver, plays the similar role in the
guest, like the ice driver in the host. so I place it in drivers/soc/.
>> + .owner = THIS_MODULE,
>> + .program_key = crypto_virt_program_key,
>> + .evict_key = crypto_virt_invalidate_key,
>> + .derive_sw_secret_key = crypto_virt_derive_sw_secret_key,
>> +};
>> +
>> +static int __init crypto_virt_init(void)
>> +{
>> + virtblk_set_crypto_ops(&virtblk_crypto_qcom_vops);
>> + return 0;
>> +}
>> +module_init(crypto_virt_init);
>> +
>> +#if IS_MODULE(CONFIG_QCOM_CRYPTO_VIRT)
>> +static void __exit crypto_virt_exit(void)
>> +{
>> + virtblk_set_crypto_ops(NULL);
>> +}
>> +module_exit(crypto_virt_exit);
>> +#endif
>
> How do you instantiate this driver exactly?
>
This driver is not instantiated per device. It acts as a provider of
Qualcomm vendor-specific inline crypto operations, which is based on
qcom_scm driver, and registers a global virtblk_crypto_ops instance
during module initialization. So that, each blk_crypto_ll_ops from
virtio block driver in common kernel can be sent via qcom_smc driver.
> Best regards,
> Krzysztof