misc/mei/hdcp: Prepare Session Key
Request to ME to prepare the encrypted session key. On Success, ME provides Encrypted session key. Function populates the HDCP2.2 authentication msg SKE_Send_Eks. v2: Rebased. v3: cldev is passed as first parameter [Tomas] Redundant comments and cast are removed [Tomas] v4: %zd for ssize_t [Alexander] %s/return -1/return -EIO [Alexander] Style fixed [Uma] v5: Rebased. v6: Collected the Rb-ed by. Rebasing. v7: Adjust to the new mei interface. Fix for Kdoc. v8: K-Doc addition. [Tomas] v9: renamed func as mei_hdcp_* [Tomas] Inline function is defined for DDI index [Tomas] v10: K-Doc fix. [Tomas] v11: Rebased. Signed-off-by: Ramalingam C <ramalingam.c@intel.com> Reviewed-by: Uma Shankar <uma.shankar@intel.com> Acked-by: Tomas Winkler <tomas.winkler@intel.com> Signed-off-by: Daniel Vetter <daniel.vetter@ffwll.ch> Link: https://patchwork.freedesktop.org/patch/msgid/1550772730-23280-11-git-send-email-ramalingam.c@intel.com
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@ -409,6 +409,63 @@ mei_hdcp_verify_lprime(struct device *dev, struct hdcp_port_data *data,
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return 0;
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}
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/**
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* mei_hdcp_get_session_key() - Prepare SKE_Send_Eks.
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* @dev: device corresponding to the mei_cl_device
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* @data: Intel HW specific hdcp data
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* @ske_data: SKE_Send_Eks msg output from ME FW.
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*
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* Return: 0 on Success, <0 on Failure
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*/
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static int mei_hdcp_get_session_key(struct device *dev,
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struct hdcp_port_data *data,
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struct hdcp2_ske_send_eks *ske_data)
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{
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struct wired_cmd_get_session_key_in get_skey_in = { { 0 } };
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struct wired_cmd_get_session_key_out get_skey_out = { { 0 } };
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struct mei_cl_device *cldev;
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ssize_t byte;
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if (!dev || !data || !ske_data)
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return -EINVAL;
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cldev = to_mei_cl_device(dev);
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get_skey_in.header.api_version = HDCP_API_VERSION;
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get_skey_in.header.command_id = WIRED_GET_SESSION_KEY;
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get_skey_in.header.status = ME_HDCP_STATUS_SUCCESS;
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get_skey_in.header.buffer_len = WIRED_CMD_BUF_LEN_GET_SESSION_KEY_IN;
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get_skey_in.port.integrated_port_type = data->port_type;
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get_skey_in.port.physical_port = mei_get_ddi_index(data->port);
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byte = mei_cldev_send(cldev, (u8 *)&get_skey_in, sizeof(get_skey_in));
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if (byte < 0) {
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dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte);
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return byte;
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}
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byte = mei_cldev_recv(cldev, (u8 *)&get_skey_out, sizeof(get_skey_out));
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if (byte < 0) {
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dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte);
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return byte;
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}
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if (get_skey_out.header.status != ME_HDCP_STATUS_SUCCESS) {
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dev_dbg(dev, "ME cmd 0x%08X failed. status: 0x%X\n",
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WIRED_GET_SESSION_KEY, get_skey_out.header.status);
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return -EIO;
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}
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ske_data->msg_id = HDCP_2_2_SKE_SEND_EKS;
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memcpy(ske_data->e_dkey_ks, get_skey_out.e_dkey_ks,
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HDCP_2_2_E_DKEY_KS_LEN);
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memcpy(ske_data->riv, get_skey_out.r_iv, HDCP_2_2_RIV_LEN);
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return 0;
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}
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static const __attribute__((unused))
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struct i915_hdcp_component_ops mei_hdcp_ops = {
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.owner = THIS_MODULE,
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@ -419,7 +476,7 @@ struct i915_hdcp_component_ops mei_hdcp_ops = {
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.store_pairing_info = mei_hdcp_store_pairing_info,
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.initiate_locality_check = mei_hdcp_initiate_locality_check,
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.verify_lprime = mei_hdcp_verify_lprime,
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.get_session_key = NULL,
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.get_session_key = mei_hdcp_get_session_key,
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.repeater_check_flow_prepare_ack = NULL,
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.verify_mprime = NULL,
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.enable_hdcp_authentication = NULL,
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