1*514c37e3STomas Winkler // SPDX-License-Identifier: GPL-2.0 264e9bbddSRamalingam C /* 364e9bbddSRamalingam C * Copyright © 2019 Intel Corporation 464e9bbddSRamalingam C * 564e9bbddSRamalingam C * Mei_hdcp.c: HDCP client driver for mei bus 664e9bbddSRamalingam C * 764e9bbddSRamalingam C * Author: 864e9bbddSRamalingam C * Ramalingam C <ramalingam.c@intel.com> 964e9bbddSRamalingam C */ 1064e9bbddSRamalingam C 1164e9bbddSRamalingam C /** 1264e9bbddSRamalingam C * DOC: MEI_HDCP Client Driver 1364e9bbddSRamalingam C * 1464e9bbddSRamalingam C * This is a client driver to the mei_bus to make the HDCP2.2 services of 1564e9bbddSRamalingam C * ME FW available for the interested consumers like I915. 1664e9bbddSRamalingam C * 1764e9bbddSRamalingam C * This module will act as a translation layer between HDCP protocol 1864e9bbddSRamalingam C * implementor(I915) and ME FW by translating HDCP2.2 authentication 1964e9bbddSRamalingam C * messages to ME FW command payloads and vice versa. 2064e9bbddSRamalingam C */ 2164e9bbddSRamalingam C 2264e9bbddSRamalingam C #include <linux/module.h> 2364e9bbddSRamalingam C #include <linux/slab.h> 2464e9bbddSRamalingam C #include <linux/uuid.h> 2564e9bbddSRamalingam C #include <linux/mei_cl_bus.h> 26fa301ad9SRamalingam C #include <linux/component.h> 27a37fb1e4SRamalingam C #include <drm/drm_connector.h> 28a37fb1e4SRamalingam C #include <drm/i915_component.h> 29a37fb1e4SRamalingam C #include <drm/i915_mei_hdcp_interface.h> 30a37fb1e4SRamalingam C 31a37fb1e4SRamalingam C #include "mei_hdcp.h" 32a37fb1e4SRamalingam C 33a37fb1e4SRamalingam C static inline u8 mei_get_ddi_index(enum port port) 34a37fb1e4SRamalingam C { 35a37fb1e4SRamalingam C switch (port) { 36a37fb1e4SRamalingam C case PORT_A: 37a37fb1e4SRamalingam C return MEI_DDI_A; 38a37fb1e4SRamalingam C case PORT_B ... PORT_F: 39a37fb1e4SRamalingam C return (u8)port; 40a37fb1e4SRamalingam C default: 41a37fb1e4SRamalingam C return MEI_DDI_INVALID_PORT; 42a37fb1e4SRamalingam C } 43a37fb1e4SRamalingam C } 44a37fb1e4SRamalingam C 45a37fb1e4SRamalingam C /** 46a37fb1e4SRamalingam C * mei_hdcp_initiate_session() - Initiate a Wired HDCP2.2 Tx Session in ME FW 47a37fb1e4SRamalingam C * @dev: device corresponding to the mei_cl_device 48a37fb1e4SRamalingam C * @data: Intel HW specific hdcp data 49a37fb1e4SRamalingam C * @ake_data: AKE_Init msg output. 50a37fb1e4SRamalingam C * 51a37fb1e4SRamalingam C * Return: 0 on Success, <0 on Failure. 52a37fb1e4SRamalingam C */ 53a37fb1e4SRamalingam C static int 54a37fb1e4SRamalingam C mei_hdcp_initiate_session(struct device *dev, struct hdcp_port_data *data, 55a37fb1e4SRamalingam C struct hdcp2_ake_init *ake_data) 56a37fb1e4SRamalingam C { 57a37fb1e4SRamalingam C struct wired_cmd_initiate_hdcp2_session_in session_init_in = { { 0 } }; 58a37fb1e4SRamalingam C struct wired_cmd_initiate_hdcp2_session_out 59a37fb1e4SRamalingam C session_init_out = { { 0 } }; 60a37fb1e4SRamalingam C struct mei_cl_device *cldev; 61a37fb1e4SRamalingam C ssize_t byte; 62a37fb1e4SRamalingam C 63a37fb1e4SRamalingam C if (!dev || !data || !ake_data) 64a37fb1e4SRamalingam C return -EINVAL; 65a37fb1e4SRamalingam C 66a37fb1e4SRamalingam C cldev = to_mei_cl_device(dev); 67a37fb1e4SRamalingam C 68a37fb1e4SRamalingam C session_init_in.header.api_version = HDCP_API_VERSION; 69a37fb1e4SRamalingam C session_init_in.header.command_id = WIRED_INITIATE_HDCP2_SESSION; 70a37fb1e4SRamalingam C session_init_in.header.status = ME_HDCP_STATUS_SUCCESS; 71a37fb1e4SRamalingam C session_init_in.header.buffer_len = 72a37fb1e4SRamalingam C WIRED_CMD_BUF_LEN_INITIATE_HDCP2_SESSION_IN; 73a37fb1e4SRamalingam C 74a37fb1e4SRamalingam C session_init_in.port.integrated_port_type = data->port_type; 75a37fb1e4SRamalingam C session_init_in.port.physical_port = mei_get_ddi_index(data->port); 76a37fb1e4SRamalingam C session_init_in.protocol = data->protocol; 77a37fb1e4SRamalingam C 78a37fb1e4SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&session_init_in, 79a37fb1e4SRamalingam C sizeof(session_init_in)); 80a37fb1e4SRamalingam C if (byte < 0) { 81a37fb1e4SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 82a37fb1e4SRamalingam C return byte; 83a37fb1e4SRamalingam C } 84a37fb1e4SRamalingam C 85a37fb1e4SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&session_init_out, 86a37fb1e4SRamalingam C sizeof(session_init_out)); 87a37fb1e4SRamalingam C if (byte < 0) { 88a37fb1e4SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 89a37fb1e4SRamalingam C return byte; 90a37fb1e4SRamalingam C } 91a37fb1e4SRamalingam C 92a37fb1e4SRamalingam C if (session_init_out.header.status != ME_HDCP_STATUS_SUCCESS) { 93a37fb1e4SRamalingam C dev_dbg(dev, "ME cmd 0x%08X Failed. Status: 0x%X\n", 94a37fb1e4SRamalingam C WIRED_INITIATE_HDCP2_SESSION, 95a37fb1e4SRamalingam C session_init_out.header.status); 96a37fb1e4SRamalingam C return -EIO; 97a37fb1e4SRamalingam C } 98a37fb1e4SRamalingam C 99a37fb1e4SRamalingam C ake_data->msg_id = HDCP_2_2_AKE_INIT; 100a37fb1e4SRamalingam C ake_data->tx_caps = session_init_out.tx_caps; 101a37fb1e4SRamalingam C memcpy(ake_data->r_tx, session_init_out.r_tx, HDCP_2_2_RTX_LEN); 102a37fb1e4SRamalingam C 103a37fb1e4SRamalingam C return 0; 104a37fb1e4SRamalingam C } 105a37fb1e4SRamalingam C 10639b71c2bSRamalingam C /** 10739b71c2bSRamalingam C * mei_hdcp_verify_receiver_cert_prepare_km() - Verify the Receiver Certificate 10839b71c2bSRamalingam C * AKE_Send_Cert and prepare AKE_Stored_Km/AKE_No_Stored_Km 10939b71c2bSRamalingam C * @dev: device corresponding to the mei_cl_device 11039b71c2bSRamalingam C * @data: Intel HW specific hdcp data 11139b71c2bSRamalingam C * @rx_cert: AKE_Send_Cert for verification 11239b71c2bSRamalingam C * @km_stored: Pairing status flag output 11339b71c2bSRamalingam C * @ek_pub_km: AKE_Stored_Km/AKE_No_Stored_Km output msg 11439b71c2bSRamalingam C * @msg_sz : size of AKE_XXXXX_Km output msg 11539b71c2bSRamalingam C * 11639b71c2bSRamalingam C * Return: 0 on Success, <0 on Failure 11739b71c2bSRamalingam C */ 11839b71c2bSRamalingam C static int 11939b71c2bSRamalingam C mei_hdcp_verify_receiver_cert_prepare_km(struct device *dev, 12039b71c2bSRamalingam C struct hdcp_port_data *data, 12139b71c2bSRamalingam C struct hdcp2_ake_send_cert *rx_cert, 12239b71c2bSRamalingam C bool *km_stored, 12339b71c2bSRamalingam C struct hdcp2_ake_no_stored_km 12439b71c2bSRamalingam C *ek_pub_km, 12539b71c2bSRamalingam C size_t *msg_sz) 12639b71c2bSRamalingam C { 12739b71c2bSRamalingam C struct wired_cmd_verify_receiver_cert_in verify_rxcert_in = { { 0 } }; 12839b71c2bSRamalingam C struct wired_cmd_verify_receiver_cert_out verify_rxcert_out = { { 0 } }; 12939b71c2bSRamalingam C struct mei_cl_device *cldev; 13039b71c2bSRamalingam C ssize_t byte; 13139b71c2bSRamalingam C 13239b71c2bSRamalingam C if (!dev || !data || !rx_cert || !km_stored || !ek_pub_km || !msg_sz) 13339b71c2bSRamalingam C return -EINVAL; 13439b71c2bSRamalingam C 13539b71c2bSRamalingam C cldev = to_mei_cl_device(dev); 13639b71c2bSRamalingam C 13739b71c2bSRamalingam C verify_rxcert_in.header.api_version = HDCP_API_VERSION; 13839b71c2bSRamalingam C verify_rxcert_in.header.command_id = WIRED_VERIFY_RECEIVER_CERT; 13939b71c2bSRamalingam C verify_rxcert_in.header.status = ME_HDCP_STATUS_SUCCESS; 14039b71c2bSRamalingam C verify_rxcert_in.header.buffer_len = 14139b71c2bSRamalingam C WIRED_CMD_BUF_LEN_VERIFY_RECEIVER_CERT_IN; 14239b71c2bSRamalingam C 14339b71c2bSRamalingam C verify_rxcert_in.port.integrated_port_type = data->port_type; 14439b71c2bSRamalingam C verify_rxcert_in.port.physical_port = mei_get_ddi_index(data->port); 14539b71c2bSRamalingam C 14639b71c2bSRamalingam C verify_rxcert_in.cert_rx = rx_cert->cert_rx; 14739b71c2bSRamalingam C memcpy(verify_rxcert_in.r_rx, &rx_cert->r_rx, HDCP_2_2_RRX_LEN); 14839b71c2bSRamalingam C memcpy(verify_rxcert_in.rx_caps, rx_cert->rx_caps, HDCP_2_2_RXCAPS_LEN); 14939b71c2bSRamalingam C 15039b71c2bSRamalingam C byte = mei_cldev_send(cldev, (u8 *)&verify_rxcert_in, 15139b71c2bSRamalingam C sizeof(verify_rxcert_in)); 15239b71c2bSRamalingam C if (byte < 0) { 15339b71c2bSRamalingam C dev_dbg(dev, "mei_cldev_send failed: %zd\n", byte); 15439b71c2bSRamalingam C return byte; 15539b71c2bSRamalingam C } 15639b71c2bSRamalingam C 15739b71c2bSRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&verify_rxcert_out, 15839b71c2bSRamalingam C sizeof(verify_rxcert_out)); 15939b71c2bSRamalingam C if (byte < 0) { 16039b71c2bSRamalingam C dev_dbg(dev, "mei_cldev_recv failed: %zd\n", byte); 16139b71c2bSRamalingam C return byte; 16239b71c2bSRamalingam C } 16339b71c2bSRamalingam C 16439b71c2bSRamalingam C if (verify_rxcert_out.header.status != ME_HDCP_STATUS_SUCCESS) { 16539b71c2bSRamalingam C dev_dbg(dev, "ME cmd 0x%08X Failed. Status: 0x%X\n", 16639b71c2bSRamalingam C WIRED_VERIFY_RECEIVER_CERT, 16739b71c2bSRamalingam C verify_rxcert_out.header.status); 16839b71c2bSRamalingam C return -EIO; 16939b71c2bSRamalingam C } 17039b71c2bSRamalingam C 17139b71c2bSRamalingam C *km_stored = !!verify_rxcert_out.km_stored; 17239b71c2bSRamalingam C if (verify_rxcert_out.km_stored) { 17339b71c2bSRamalingam C ek_pub_km->msg_id = HDCP_2_2_AKE_STORED_KM; 17439b71c2bSRamalingam C *msg_sz = sizeof(struct hdcp2_ake_stored_km); 17539b71c2bSRamalingam C } else { 17639b71c2bSRamalingam C ek_pub_km->msg_id = HDCP_2_2_AKE_NO_STORED_KM; 17739b71c2bSRamalingam C *msg_sz = sizeof(struct hdcp2_ake_no_stored_km); 17839b71c2bSRamalingam C } 17939b71c2bSRamalingam C 18039b71c2bSRamalingam C memcpy(ek_pub_km->e_kpub_km, &verify_rxcert_out.ekm_buff, 18139b71c2bSRamalingam C sizeof(verify_rxcert_out.ekm_buff)); 18239b71c2bSRamalingam C 18339b71c2bSRamalingam C return 0; 18439b71c2bSRamalingam C } 18539b71c2bSRamalingam C 186a7dcbed2SRamalingam C /** 187a7dcbed2SRamalingam C * mei_hdcp_verify_hprime() - Verify AKE_Send_H_prime at ME FW. 188a7dcbed2SRamalingam C * @dev: device corresponding to the mei_cl_device 189a7dcbed2SRamalingam C * @data: Intel HW specific hdcp data 190a7dcbed2SRamalingam C * @rx_hprime: AKE_Send_H_prime msg for ME FW verification 191a7dcbed2SRamalingam C * 192a7dcbed2SRamalingam C * Return: 0 on Success, <0 on Failure 193a7dcbed2SRamalingam C */ 194a7dcbed2SRamalingam C static int 195a7dcbed2SRamalingam C mei_hdcp_verify_hprime(struct device *dev, struct hdcp_port_data *data, 196a7dcbed2SRamalingam C struct hdcp2_ake_send_hprime *rx_hprime) 197a7dcbed2SRamalingam C { 198a7dcbed2SRamalingam C struct wired_cmd_ake_send_hprime_in send_hprime_in = { { 0 } }; 199a7dcbed2SRamalingam C struct wired_cmd_ake_send_hprime_out send_hprime_out = { { 0 } }; 200a7dcbed2SRamalingam C struct mei_cl_device *cldev; 201a7dcbed2SRamalingam C ssize_t byte; 202a7dcbed2SRamalingam C 203a7dcbed2SRamalingam C if (!dev || !data || !rx_hprime) 204a7dcbed2SRamalingam C return -EINVAL; 205a7dcbed2SRamalingam C 206a7dcbed2SRamalingam C cldev = to_mei_cl_device(dev); 207a7dcbed2SRamalingam C 208a7dcbed2SRamalingam C send_hprime_in.header.api_version = HDCP_API_VERSION; 209a7dcbed2SRamalingam C send_hprime_in.header.command_id = WIRED_AKE_SEND_HPRIME; 210a7dcbed2SRamalingam C send_hprime_in.header.status = ME_HDCP_STATUS_SUCCESS; 211a7dcbed2SRamalingam C send_hprime_in.header.buffer_len = WIRED_CMD_BUF_LEN_AKE_SEND_HPRIME_IN; 212a7dcbed2SRamalingam C 213a7dcbed2SRamalingam C send_hprime_in.port.integrated_port_type = data->port_type; 214a7dcbed2SRamalingam C send_hprime_in.port.physical_port = mei_get_ddi_index(data->port); 215a7dcbed2SRamalingam C 216a7dcbed2SRamalingam C memcpy(send_hprime_in.h_prime, rx_hprime->h_prime, 217a7dcbed2SRamalingam C HDCP_2_2_H_PRIME_LEN); 218a7dcbed2SRamalingam C 219a7dcbed2SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&send_hprime_in, 220a7dcbed2SRamalingam C sizeof(send_hprime_in)); 221a7dcbed2SRamalingam C if (byte < 0) { 222a7dcbed2SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 223a7dcbed2SRamalingam C return byte; 224a7dcbed2SRamalingam C } 225a7dcbed2SRamalingam C 226a7dcbed2SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&send_hprime_out, 227a7dcbed2SRamalingam C sizeof(send_hprime_out)); 228a7dcbed2SRamalingam C if (byte < 0) { 229a7dcbed2SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 230a7dcbed2SRamalingam C return byte; 231a7dcbed2SRamalingam C } 232a7dcbed2SRamalingam C 233a7dcbed2SRamalingam C if (send_hprime_out.header.status != ME_HDCP_STATUS_SUCCESS) { 234a7dcbed2SRamalingam C dev_dbg(dev, "ME cmd 0x%08X Failed. Status: 0x%X\n", 235a7dcbed2SRamalingam C WIRED_AKE_SEND_HPRIME, send_hprime_out.header.status); 236a7dcbed2SRamalingam C return -EIO; 237a7dcbed2SRamalingam C } 238a7dcbed2SRamalingam C 239a7dcbed2SRamalingam C return 0; 240a7dcbed2SRamalingam C } 241a7dcbed2SRamalingam C 2426a1a00a3SRamalingam C /** 2436a1a00a3SRamalingam C * mei_hdcp_store_pairing_info() - Store pairing info received at ME FW 2446a1a00a3SRamalingam C * @dev: device corresponding to the mei_cl_device 2456a1a00a3SRamalingam C * @data: Intel HW specific hdcp data 2466a1a00a3SRamalingam C * @pairing_info: AKE_Send_Pairing_Info msg input to ME FW 2476a1a00a3SRamalingam C * 2486a1a00a3SRamalingam C * Return: 0 on Success, <0 on Failure 2496a1a00a3SRamalingam C */ 2506a1a00a3SRamalingam C static int 2516a1a00a3SRamalingam C mei_hdcp_store_pairing_info(struct device *dev, struct hdcp_port_data *data, 2526a1a00a3SRamalingam C struct hdcp2_ake_send_pairing_info *pairing_info) 2536a1a00a3SRamalingam C { 2546a1a00a3SRamalingam C struct wired_cmd_ake_send_pairing_info_in pairing_info_in = { { 0 } }; 2556a1a00a3SRamalingam C struct wired_cmd_ake_send_pairing_info_out pairing_info_out = { { 0 } }; 2566a1a00a3SRamalingam C struct mei_cl_device *cldev; 2576a1a00a3SRamalingam C ssize_t byte; 2586a1a00a3SRamalingam C 2596a1a00a3SRamalingam C if (!dev || !data || !pairing_info) 2606a1a00a3SRamalingam C return -EINVAL; 2616a1a00a3SRamalingam C 2626a1a00a3SRamalingam C cldev = to_mei_cl_device(dev); 2636a1a00a3SRamalingam C 2646a1a00a3SRamalingam C pairing_info_in.header.api_version = HDCP_API_VERSION; 2656a1a00a3SRamalingam C pairing_info_in.header.command_id = WIRED_AKE_SEND_PAIRING_INFO; 2666a1a00a3SRamalingam C pairing_info_in.header.status = ME_HDCP_STATUS_SUCCESS; 2676a1a00a3SRamalingam C pairing_info_in.header.buffer_len = 2686a1a00a3SRamalingam C WIRED_CMD_BUF_LEN_SEND_PAIRING_INFO_IN; 2696a1a00a3SRamalingam C 2706a1a00a3SRamalingam C pairing_info_in.port.integrated_port_type = data->port_type; 2716a1a00a3SRamalingam C pairing_info_in.port.physical_port = mei_get_ddi_index(data->port); 2726a1a00a3SRamalingam C 2736a1a00a3SRamalingam C memcpy(pairing_info_in.e_kh_km, pairing_info->e_kh_km, 2746a1a00a3SRamalingam C HDCP_2_2_E_KH_KM_LEN); 2756a1a00a3SRamalingam C 2766a1a00a3SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&pairing_info_in, 2776a1a00a3SRamalingam C sizeof(pairing_info_in)); 2786a1a00a3SRamalingam C if (byte < 0) { 2796a1a00a3SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 2806a1a00a3SRamalingam C return byte; 2816a1a00a3SRamalingam C } 2826a1a00a3SRamalingam C 2836a1a00a3SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&pairing_info_out, 2846a1a00a3SRamalingam C sizeof(pairing_info_out)); 2856a1a00a3SRamalingam C if (byte < 0) { 2866a1a00a3SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 2876a1a00a3SRamalingam C return byte; 2886a1a00a3SRamalingam C } 2896a1a00a3SRamalingam C 2906a1a00a3SRamalingam C if (pairing_info_out.header.status != ME_HDCP_STATUS_SUCCESS) { 2916a1a00a3SRamalingam C dev_dbg(dev, "ME cmd 0x%08X failed. Status: 0x%X\n", 2926a1a00a3SRamalingam C WIRED_AKE_SEND_PAIRING_INFO, 2936a1a00a3SRamalingam C pairing_info_out.header.status); 2946a1a00a3SRamalingam C return -EIO; 2956a1a00a3SRamalingam C } 2966a1a00a3SRamalingam C 2976a1a00a3SRamalingam C return 0; 2986a1a00a3SRamalingam C } 2996a1a00a3SRamalingam C 300682932f3SRamalingam C /** 301682932f3SRamalingam C * mei_hdcp_initiate_locality_check() - Prepare LC_Init 302682932f3SRamalingam C * @dev: device corresponding to the mei_cl_device 303682932f3SRamalingam C * @data: Intel HW specific hdcp data 304682932f3SRamalingam C * @lc_init_data: LC_Init msg output 305682932f3SRamalingam C * 306682932f3SRamalingam C * Return: 0 on Success, <0 on Failure 307682932f3SRamalingam C */ 308682932f3SRamalingam C static int 309682932f3SRamalingam C mei_hdcp_initiate_locality_check(struct device *dev, 310682932f3SRamalingam C struct hdcp_port_data *data, 311682932f3SRamalingam C struct hdcp2_lc_init *lc_init_data) 312682932f3SRamalingam C { 313682932f3SRamalingam C struct wired_cmd_init_locality_check_in lc_init_in = { { 0 } }; 314682932f3SRamalingam C struct wired_cmd_init_locality_check_out lc_init_out = { { 0 } }; 315682932f3SRamalingam C struct mei_cl_device *cldev; 316682932f3SRamalingam C ssize_t byte; 317682932f3SRamalingam C 318682932f3SRamalingam C if (!dev || !data || !lc_init_data) 319682932f3SRamalingam C return -EINVAL; 320682932f3SRamalingam C 321682932f3SRamalingam C cldev = to_mei_cl_device(dev); 322682932f3SRamalingam C 323682932f3SRamalingam C lc_init_in.header.api_version = HDCP_API_VERSION; 324682932f3SRamalingam C lc_init_in.header.command_id = WIRED_INIT_LOCALITY_CHECK; 325682932f3SRamalingam C lc_init_in.header.status = ME_HDCP_STATUS_SUCCESS; 326682932f3SRamalingam C lc_init_in.header.buffer_len = WIRED_CMD_BUF_LEN_INIT_LOCALITY_CHECK_IN; 327682932f3SRamalingam C 328682932f3SRamalingam C lc_init_in.port.integrated_port_type = data->port_type; 329682932f3SRamalingam C lc_init_in.port.physical_port = mei_get_ddi_index(data->port); 330682932f3SRamalingam C 331682932f3SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&lc_init_in, sizeof(lc_init_in)); 332682932f3SRamalingam C if (byte < 0) { 333682932f3SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 334682932f3SRamalingam C return byte; 335682932f3SRamalingam C } 336682932f3SRamalingam C 337682932f3SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&lc_init_out, sizeof(lc_init_out)); 338682932f3SRamalingam C if (byte < 0) { 339682932f3SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 340682932f3SRamalingam C return byte; 341682932f3SRamalingam C } 342682932f3SRamalingam C 343682932f3SRamalingam C if (lc_init_out.header.status != ME_HDCP_STATUS_SUCCESS) { 344682932f3SRamalingam C dev_dbg(dev, "ME cmd 0x%08X Failed. status: 0x%X\n", 345682932f3SRamalingam C WIRED_INIT_LOCALITY_CHECK, lc_init_out.header.status); 346682932f3SRamalingam C return -EIO; 347682932f3SRamalingam C } 348682932f3SRamalingam C 349682932f3SRamalingam C lc_init_data->msg_id = HDCP_2_2_LC_INIT; 350682932f3SRamalingam C memcpy(lc_init_data->r_n, lc_init_out.r_n, HDCP_2_2_RN_LEN); 351682932f3SRamalingam C 352682932f3SRamalingam C return 0; 353682932f3SRamalingam C } 354682932f3SRamalingam C 35545479b67SRamalingam C /** 35645479b67SRamalingam C * mei_hdcp_verify_lprime() - Verify lprime. 35745479b67SRamalingam C * @dev: device corresponding to the mei_cl_device 35845479b67SRamalingam C * @data: Intel HW specific hdcp data 35945479b67SRamalingam C * @rx_lprime: LC_Send_L_prime msg for ME FW verification 36045479b67SRamalingam C * 36145479b67SRamalingam C * Return: 0 on Success, <0 on Failure 36245479b67SRamalingam C */ 36345479b67SRamalingam C static int 36445479b67SRamalingam C mei_hdcp_verify_lprime(struct device *dev, struct hdcp_port_data *data, 36545479b67SRamalingam C struct hdcp2_lc_send_lprime *rx_lprime) 36645479b67SRamalingam C { 36745479b67SRamalingam C struct wired_cmd_validate_locality_in verify_lprime_in = { { 0 } }; 36845479b67SRamalingam C struct wired_cmd_validate_locality_out verify_lprime_out = { { 0 } }; 36945479b67SRamalingam C struct mei_cl_device *cldev; 37045479b67SRamalingam C ssize_t byte; 37145479b67SRamalingam C 37245479b67SRamalingam C if (!dev || !data || !rx_lprime) 37345479b67SRamalingam C return -EINVAL; 37445479b67SRamalingam C 37545479b67SRamalingam C cldev = to_mei_cl_device(dev); 37645479b67SRamalingam C 37745479b67SRamalingam C verify_lprime_in.header.api_version = HDCP_API_VERSION; 37845479b67SRamalingam C verify_lprime_in.header.command_id = WIRED_VALIDATE_LOCALITY; 37945479b67SRamalingam C verify_lprime_in.header.status = ME_HDCP_STATUS_SUCCESS; 38045479b67SRamalingam C verify_lprime_in.header.buffer_len = 38145479b67SRamalingam C WIRED_CMD_BUF_LEN_VALIDATE_LOCALITY_IN; 38245479b67SRamalingam C 38345479b67SRamalingam C verify_lprime_in.port.integrated_port_type = data->port_type; 38445479b67SRamalingam C verify_lprime_in.port.physical_port = mei_get_ddi_index(data->port); 38545479b67SRamalingam C 38645479b67SRamalingam C memcpy(verify_lprime_in.l_prime, rx_lprime->l_prime, 38745479b67SRamalingam C HDCP_2_2_L_PRIME_LEN); 38845479b67SRamalingam C 38945479b67SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&verify_lprime_in, 39045479b67SRamalingam C sizeof(verify_lprime_in)); 39145479b67SRamalingam C if (byte < 0) { 39245479b67SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 39345479b67SRamalingam C return byte; 39445479b67SRamalingam C } 39545479b67SRamalingam C 39645479b67SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&verify_lprime_out, 39745479b67SRamalingam C sizeof(verify_lprime_out)); 39845479b67SRamalingam C if (byte < 0) { 39945479b67SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 40045479b67SRamalingam C return byte; 40145479b67SRamalingam C } 40245479b67SRamalingam C 40345479b67SRamalingam C if (verify_lprime_out.header.status != ME_HDCP_STATUS_SUCCESS) { 40445479b67SRamalingam C dev_dbg(dev, "ME cmd 0x%08X failed. status: 0x%X\n", 40545479b67SRamalingam C WIRED_VALIDATE_LOCALITY, 40645479b67SRamalingam C verify_lprime_out.header.status); 40745479b67SRamalingam C return -EIO; 40845479b67SRamalingam C } 40945479b67SRamalingam C 41045479b67SRamalingam C return 0; 41145479b67SRamalingam C } 41245479b67SRamalingam C 413b491264fSRamalingam C /** 414b491264fSRamalingam C * mei_hdcp_get_session_key() - Prepare SKE_Send_Eks. 415b491264fSRamalingam C * @dev: device corresponding to the mei_cl_device 416b491264fSRamalingam C * @data: Intel HW specific hdcp data 417b491264fSRamalingam C * @ske_data: SKE_Send_Eks msg output from ME FW. 418b491264fSRamalingam C * 419b491264fSRamalingam C * Return: 0 on Success, <0 on Failure 420b491264fSRamalingam C */ 421b491264fSRamalingam C static int mei_hdcp_get_session_key(struct device *dev, 422b491264fSRamalingam C struct hdcp_port_data *data, 423b491264fSRamalingam C struct hdcp2_ske_send_eks *ske_data) 424b491264fSRamalingam C { 425b491264fSRamalingam C struct wired_cmd_get_session_key_in get_skey_in = { { 0 } }; 426b491264fSRamalingam C struct wired_cmd_get_session_key_out get_skey_out = { { 0 } }; 427b491264fSRamalingam C struct mei_cl_device *cldev; 428b491264fSRamalingam C ssize_t byte; 429b491264fSRamalingam C 430b491264fSRamalingam C if (!dev || !data || !ske_data) 431b491264fSRamalingam C return -EINVAL; 432b491264fSRamalingam C 433b491264fSRamalingam C cldev = to_mei_cl_device(dev); 434b491264fSRamalingam C 435b491264fSRamalingam C get_skey_in.header.api_version = HDCP_API_VERSION; 436b491264fSRamalingam C get_skey_in.header.command_id = WIRED_GET_SESSION_KEY; 437b491264fSRamalingam C get_skey_in.header.status = ME_HDCP_STATUS_SUCCESS; 438b491264fSRamalingam C get_skey_in.header.buffer_len = WIRED_CMD_BUF_LEN_GET_SESSION_KEY_IN; 439b491264fSRamalingam C 440b491264fSRamalingam C get_skey_in.port.integrated_port_type = data->port_type; 441b491264fSRamalingam C get_skey_in.port.physical_port = mei_get_ddi_index(data->port); 442b491264fSRamalingam C 443b491264fSRamalingam C byte = mei_cldev_send(cldev, (u8 *)&get_skey_in, sizeof(get_skey_in)); 444b491264fSRamalingam C if (byte < 0) { 445b491264fSRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 446b491264fSRamalingam C return byte; 447b491264fSRamalingam C } 448b491264fSRamalingam C 449b491264fSRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&get_skey_out, sizeof(get_skey_out)); 450b491264fSRamalingam C 451b491264fSRamalingam C if (byte < 0) { 452b491264fSRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 453b491264fSRamalingam C return byte; 454b491264fSRamalingam C } 455b491264fSRamalingam C 456b491264fSRamalingam C if (get_skey_out.header.status != ME_HDCP_STATUS_SUCCESS) { 457b491264fSRamalingam C dev_dbg(dev, "ME cmd 0x%08X failed. status: 0x%X\n", 458b491264fSRamalingam C WIRED_GET_SESSION_KEY, get_skey_out.header.status); 459b491264fSRamalingam C return -EIO; 460b491264fSRamalingam C } 461b491264fSRamalingam C 462b491264fSRamalingam C ske_data->msg_id = HDCP_2_2_SKE_SEND_EKS; 463b491264fSRamalingam C memcpy(ske_data->e_dkey_ks, get_skey_out.e_dkey_ks, 464b491264fSRamalingam C HDCP_2_2_E_DKEY_KS_LEN); 465b491264fSRamalingam C memcpy(ske_data->riv, get_skey_out.r_iv, HDCP_2_2_RIV_LEN); 466b491264fSRamalingam C 467b491264fSRamalingam C return 0; 468b491264fSRamalingam C } 469b491264fSRamalingam C 470f46ea842SRamalingam C /** 471f46ea842SRamalingam C * mei_hdcp_repeater_check_flow_prepare_ack() - Validate the Downstream topology 472f46ea842SRamalingam C * and prepare rep_ack. 473f46ea842SRamalingam C * @dev: device corresponding to the mei_cl_device 474f46ea842SRamalingam C * @data: Intel HW specific hdcp data 475f46ea842SRamalingam C * @rep_topology: Receiver ID List to be validated 476f46ea842SRamalingam C * @rep_send_ack : repeater ack from ME FW. 477f46ea842SRamalingam C * 478f46ea842SRamalingam C * Return: 0 on Success, <0 on Failure 479f46ea842SRamalingam C */ 480f46ea842SRamalingam C static int 481f46ea842SRamalingam C mei_hdcp_repeater_check_flow_prepare_ack(struct device *dev, 482f46ea842SRamalingam C struct hdcp_port_data *data, 483f46ea842SRamalingam C struct hdcp2_rep_send_receiverid_list 484f46ea842SRamalingam C *rep_topology, 485f46ea842SRamalingam C struct hdcp2_rep_send_ack 486f46ea842SRamalingam C *rep_send_ack) 487f46ea842SRamalingam C { 488f46ea842SRamalingam C struct wired_cmd_verify_repeater_in verify_repeater_in = { { 0 } }; 489f46ea842SRamalingam C struct wired_cmd_verify_repeater_out verify_repeater_out = { { 0 } }; 490f46ea842SRamalingam C struct mei_cl_device *cldev; 491f46ea842SRamalingam C ssize_t byte; 492f46ea842SRamalingam C 493f46ea842SRamalingam C if (!dev || !rep_topology || !rep_send_ack || !data) 494f46ea842SRamalingam C return -EINVAL; 495f46ea842SRamalingam C 496f46ea842SRamalingam C cldev = to_mei_cl_device(dev); 497f46ea842SRamalingam C 498f46ea842SRamalingam C verify_repeater_in.header.api_version = HDCP_API_VERSION; 499f46ea842SRamalingam C verify_repeater_in.header.command_id = WIRED_VERIFY_REPEATER; 500f46ea842SRamalingam C verify_repeater_in.header.status = ME_HDCP_STATUS_SUCCESS; 501f46ea842SRamalingam C verify_repeater_in.header.buffer_len = 502f46ea842SRamalingam C WIRED_CMD_BUF_LEN_VERIFY_REPEATER_IN; 503f46ea842SRamalingam C 504f46ea842SRamalingam C verify_repeater_in.port.integrated_port_type = data->port_type; 505f46ea842SRamalingam C verify_repeater_in.port.physical_port = mei_get_ddi_index(data->port); 506f46ea842SRamalingam C 507f46ea842SRamalingam C memcpy(verify_repeater_in.rx_info, rep_topology->rx_info, 508f46ea842SRamalingam C HDCP_2_2_RXINFO_LEN); 509f46ea842SRamalingam C memcpy(verify_repeater_in.seq_num_v, rep_topology->seq_num_v, 510f46ea842SRamalingam C HDCP_2_2_SEQ_NUM_LEN); 511f46ea842SRamalingam C memcpy(verify_repeater_in.v_prime, rep_topology->v_prime, 512f46ea842SRamalingam C HDCP_2_2_V_PRIME_HALF_LEN); 513f46ea842SRamalingam C memcpy(verify_repeater_in.receiver_ids, rep_topology->receiver_ids, 514f46ea842SRamalingam C HDCP_2_2_RECEIVER_IDS_MAX_LEN); 515f46ea842SRamalingam C 516f46ea842SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&verify_repeater_in, 517f46ea842SRamalingam C sizeof(verify_repeater_in)); 518f46ea842SRamalingam C if (byte < 0) { 519f46ea842SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 520f46ea842SRamalingam C return byte; 521f46ea842SRamalingam C } 522f46ea842SRamalingam C 523f46ea842SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&verify_repeater_out, 524f46ea842SRamalingam C sizeof(verify_repeater_out)); 525f46ea842SRamalingam C if (byte < 0) { 526f46ea842SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 527f46ea842SRamalingam C return byte; 528f46ea842SRamalingam C } 529f46ea842SRamalingam C 530f46ea842SRamalingam C if (verify_repeater_out.header.status != ME_HDCP_STATUS_SUCCESS) { 531f46ea842SRamalingam C dev_dbg(dev, "ME cmd 0x%08X failed. status: 0x%X\n", 532f46ea842SRamalingam C WIRED_VERIFY_REPEATER, 533f46ea842SRamalingam C verify_repeater_out.header.status); 534f46ea842SRamalingam C return -EIO; 535f46ea842SRamalingam C } 536f46ea842SRamalingam C 537f46ea842SRamalingam C memcpy(rep_send_ack->v, verify_repeater_out.v, 538f46ea842SRamalingam C HDCP_2_2_V_PRIME_HALF_LEN); 539f46ea842SRamalingam C rep_send_ack->msg_id = HDCP_2_2_REP_SEND_ACK; 540f46ea842SRamalingam C 541f46ea842SRamalingam C return 0; 542f46ea842SRamalingam C } 543f46ea842SRamalingam C 5440a1af1b5SRamalingam C /** 5450a1af1b5SRamalingam C * mei_hdcp_verify_mprime() - Verify mprime. 5460a1af1b5SRamalingam C * @dev: device corresponding to the mei_cl_device 5470a1af1b5SRamalingam C * @data: Intel HW specific hdcp data 5480a1af1b5SRamalingam C * @stream_ready: RepeaterAuth_Stream_Ready msg for ME FW verification. 5490a1af1b5SRamalingam C * 5500a1af1b5SRamalingam C * Return: 0 on Success, <0 on Failure 5510a1af1b5SRamalingam C */ 5520a1af1b5SRamalingam C static int mei_hdcp_verify_mprime(struct device *dev, 5530a1af1b5SRamalingam C struct hdcp_port_data *data, 5540a1af1b5SRamalingam C struct hdcp2_rep_stream_ready *stream_ready) 5550a1af1b5SRamalingam C { 5560a1af1b5SRamalingam C struct wired_cmd_repeater_auth_stream_req_in 5570a1af1b5SRamalingam C verify_mprime_in = { { 0 } }; 5580a1af1b5SRamalingam C struct wired_cmd_repeater_auth_stream_req_out 5590a1af1b5SRamalingam C verify_mprime_out = { { 0 } }; 5600a1af1b5SRamalingam C struct mei_cl_device *cldev; 5610a1af1b5SRamalingam C ssize_t byte; 5620a1af1b5SRamalingam C 5630a1af1b5SRamalingam C if (!dev || !stream_ready || !data) 5640a1af1b5SRamalingam C return -EINVAL; 5650a1af1b5SRamalingam C 5660a1af1b5SRamalingam C cldev = to_mei_cl_device(dev); 5670a1af1b5SRamalingam C 5680a1af1b5SRamalingam C verify_mprime_in.header.api_version = HDCP_API_VERSION; 5690a1af1b5SRamalingam C verify_mprime_in.header.command_id = WIRED_REPEATER_AUTH_STREAM_REQ; 5700a1af1b5SRamalingam C verify_mprime_in.header.status = ME_HDCP_STATUS_SUCCESS; 5710a1af1b5SRamalingam C verify_mprime_in.header.buffer_len = 5720a1af1b5SRamalingam C WIRED_CMD_BUF_LEN_REPEATER_AUTH_STREAM_REQ_MIN_IN; 5730a1af1b5SRamalingam C 5740a1af1b5SRamalingam C verify_mprime_in.port.integrated_port_type = data->port_type; 5750a1af1b5SRamalingam C verify_mprime_in.port.physical_port = mei_get_ddi_index(data->port); 5760a1af1b5SRamalingam C 5770a1af1b5SRamalingam C memcpy(verify_mprime_in.m_prime, stream_ready->m_prime, 5780a1af1b5SRamalingam C HDCP_2_2_MPRIME_LEN); 5790a1af1b5SRamalingam C drm_hdcp2_u32_to_seq_num(verify_mprime_in.seq_num_m, data->seq_num_m); 5800a1af1b5SRamalingam C memcpy(verify_mprime_in.streams, data->streams, 5810a1af1b5SRamalingam C (data->k * sizeof(struct hdcp2_streamid_type))); 5820a1af1b5SRamalingam C 5830a1af1b5SRamalingam C verify_mprime_in.k = cpu_to_be16(data->k); 5840a1af1b5SRamalingam C 5850a1af1b5SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&verify_mprime_in, 5860a1af1b5SRamalingam C sizeof(verify_mprime_in)); 5870a1af1b5SRamalingam C if (byte < 0) { 5880a1af1b5SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 5890a1af1b5SRamalingam C return byte; 5900a1af1b5SRamalingam C } 5910a1af1b5SRamalingam C 5920a1af1b5SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&verify_mprime_out, 5930a1af1b5SRamalingam C sizeof(verify_mprime_out)); 5940a1af1b5SRamalingam C if (byte < 0) { 5950a1af1b5SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 5960a1af1b5SRamalingam C return byte; 5970a1af1b5SRamalingam C } 5980a1af1b5SRamalingam C 5990a1af1b5SRamalingam C if (verify_mprime_out.header.status != ME_HDCP_STATUS_SUCCESS) { 6000a1af1b5SRamalingam C dev_dbg(dev, "ME cmd 0x%08X failed. status: 0x%X\n", 6010a1af1b5SRamalingam C WIRED_REPEATER_AUTH_STREAM_REQ, 6020a1af1b5SRamalingam C verify_mprime_out.header.status); 6030a1af1b5SRamalingam C return -EIO; 6040a1af1b5SRamalingam C } 6050a1af1b5SRamalingam C 6060a1af1b5SRamalingam C return 0; 6070a1af1b5SRamalingam C } 6080a1af1b5SRamalingam C 6095e234911SRamalingam C /** 6105e234911SRamalingam C * mei_hdcp_enable_authentication() - Mark a port as authenticated 6115e234911SRamalingam C * through ME FW 6125e234911SRamalingam C * @dev: device corresponding to the mei_cl_device 6135e234911SRamalingam C * @data: Intel HW specific hdcp data 6145e234911SRamalingam C * 6155e234911SRamalingam C * Return: 0 on Success, <0 on Failure 6165e234911SRamalingam C */ 6175e234911SRamalingam C static int mei_hdcp_enable_authentication(struct device *dev, 6185e234911SRamalingam C struct hdcp_port_data *data) 6195e234911SRamalingam C { 6205e234911SRamalingam C struct wired_cmd_enable_auth_in enable_auth_in = { { 0 } }; 6215e234911SRamalingam C struct wired_cmd_enable_auth_out enable_auth_out = { { 0 } }; 6225e234911SRamalingam C struct mei_cl_device *cldev; 6235e234911SRamalingam C ssize_t byte; 6245e234911SRamalingam C 6255e234911SRamalingam C if (!dev || !data) 6265e234911SRamalingam C return -EINVAL; 6275e234911SRamalingam C 6285e234911SRamalingam C cldev = to_mei_cl_device(dev); 6295e234911SRamalingam C 6305e234911SRamalingam C enable_auth_in.header.api_version = HDCP_API_VERSION; 6315e234911SRamalingam C enable_auth_in.header.command_id = WIRED_ENABLE_AUTH; 6325e234911SRamalingam C enable_auth_in.header.status = ME_HDCP_STATUS_SUCCESS; 6335e234911SRamalingam C enable_auth_in.header.buffer_len = WIRED_CMD_BUF_LEN_ENABLE_AUTH_IN; 6345e234911SRamalingam C 6355e234911SRamalingam C enable_auth_in.port.integrated_port_type = data->port_type; 6365e234911SRamalingam C enable_auth_in.port.physical_port = mei_get_ddi_index(data->port); 6375e234911SRamalingam C enable_auth_in.stream_type = data->streams[0].stream_type; 6385e234911SRamalingam C 6395e234911SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&enable_auth_in, 6405e234911SRamalingam C sizeof(enable_auth_in)); 6415e234911SRamalingam C if (byte < 0) { 6425e234911SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 6435e234911SRamalingam C return byte; 6445e234911SRamalingam C } 6455e234911SRamalingam C 6465e234911SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&enable_auth_out, 6475e234911SRamalingam C sizeof(enable_auth_out)); 6485e234911SRamalingam C if (byte < 0) { 6495e234911SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 6505e234911SRamalingam C return byte; 6515e234911SRamalingam C } 6525e234911SRamalingam C 6535e234911SRamalingam C if (enable_auth_out.header.status != ME_HDCP_STATUS_SUCCESS) { 6545e234911SRamalingam C dev_dbg(dev, "ME cmd 0x%08X failed. status: 0x%X\n", 6555e234911SRamalingam C WIRED_ENABLE_AUTH, enable_auth_out.header.status); 6565e234911SRamalingam C return -EIO; 6575e234911SRamalingam C } 6585e234911SRamalingam C 6595e234911SRamalingam C return 0; 6605e234911SRamalingam C } 6615e234911SRamalingam C 66262c2b322SRamalingam C /** 66362c2b322SRamalingam C * mei_hdcp_close_session() - Close the Wired HDCP Tx session of ME FW per port. 66462c2b322SRamalingam C * This also disables the authenticated state of the port. 66562c2b322SRamalingam C * @dev: device corresponding to the mei_cl_device 66662c2b322SRamalingam C * @data: Intel HW specific hdcp data 66762c2b322SRamalingam C * 66862c2b322SRamalingam C * Return: 0 on Success, <0 on Failure 66962c2b322SRamalingam C */ 67062c2b322SRamalingam C static int 67162c2b322SRamalingam C mei_hdcp_close_session(struct device *dev, struct hdcp_port_data *data) 67262c2b322SRamalingam C { 67362c2b322SRamalingam C struct wired_cmd_close_session_in session_close_in = { { 0 } }; 67462c2b322SRamalingam C struct wired_cmd_close_session_out session_close_out = { { 0 } }; 67562c2b322SRamalingam C struct mei_cl_device *cldev; 67662c2b322SRamalingam C ssize_t byte; 67762c2b322SRamalingam C 67862c2b322SRamalingam C if (!dev || !data) 67962c2b322SRamalingam C return -EINVAL; 68062c2b322SRamalingam C 68162c2b322SRamalingam C cldev = to_mei_cl_device(dev); 68262c2b322SRamalingam C 68362c2b322SRamalingam C session_close_in.header.api_version = HDCP_API_VERSION; 68462c2b322SRamalingam C session_close_in.header.command_id = WIRED_CLOSE_SESSION; 68562c2b322SRamalingam C session_close_in.header.status = ME_HDCP_STATUS_SUCCESS; 68662c2b322SRamalingam C session_close_in.header.buffer_len = 68762c2b322SRamalingam C WIRED_CMD_BUF_LEN_CLOSE_SESSION_IN; 68862c2b322SRamalingam C 68962c2b322SRamalingam C session_close_in.port.integrated_port_type = data->port_type; 69062c2b322SRamalingam C session_close_in.port.physical_port = mei_get_ddi_index(data->port); 69162c2b322SRamalingam C 69262c2b322SRamalingam C byte = mei_cldev_send(cldev, (u8 *)&session_close_in, 69362c2b322SRamalingam C sizeof(session_close_in)); 69462c2b322SRamalingam C if (byte < 0) { 69562c2b322SRamalingam C dev_dbg(dev, "mei_cldev_send failed. %zd\n", byte); 69662c2b322SRamalingam C return byte; 69762c2b322SRamalingam C } 69862c2b322SRamalingam C 69962c2b322SRamalingam C byte = mei_cldev_recv(cldev, (u8 *)&session_close_out, 70062c2b322SRamalingam C sizeof(session_close_out)); 70162c2b322SRamalingam C if (byte < 0) { 70262c2b322SRamalingam C dev_dbg(dev, "mei_cldev_recv failed. %zd\n", byte); 70362c2b322SRamalingam C return byte; 70462c2b322SRamalingam C } 70562c2b322SRamalingam C 70662c2b322SRamalingam C if (session_close_out.header.status != ME_HDCP_STATUS_SUCCESS) { 70762c2b322SRamalingam C dev_dbg(dev, "Session Close Failed. status: 0x%X\n", 70862c2b322SRamalingam C session_close_out.header.status); 70962c2b322SRamalingam C return -EIO; 71062c2b322SRamalingam C } 71162c2b322SRamalingam C 71262c2b322SRamalingam C return 0; 71362c2b322SRamalingam C } 71462c2b322SRamalingam C 715fa301ad9SRamalingam C static const struct i915_hdcp_component_ops mei_hdcp_ops = { 716a37fb1e4SRamalingam C .owner = THIS_MODULE, 717a37fb1e4SRamalingam C .initiate_hdcp2_session = mei_hdcp_initiate_session, 71839b71c2bSRamalingam C .verify_receiver_cert_prepare_km = 71939b71c2bSRamalingam C mei_hdcp_verify_receiver_cert_prepare_km, 720a7dcbed2SRamalingam C .verify_hprime = mei_hdcp_verify_hprime, 7216a1a00a3SRamalingam C .store_pairing_info = mei_hdcp_store_pairing_info, 722682932f3SRamalingam C .initiate_locality_check = mei_hdcp_initiate_locality_check, 72345479b67SRamalingam C .verify_lprime = mei_hdcp_verify_lprime, 724b491264fSRamalingam C .get_session_key = mei_hdcp_get_session_key, 725f46ea842SRamalingam C .repeater_check_flow_prepare_ack = 726f46ea842SRamalingam C mei_hdcp_repeater_check_flow_prepare_ack, 7270a1af1b5SRamalingam C .verify_mprime = mei_hdcp_verify_mprime, 7285e234911SRamalingam C .enable_hdcp_authentication = mei_hdcp_enable_authentication, 72962c2b322SRamalingam C .close_hdcp_session = mei_hdcp_close_session, 730a37fb1e4SRamalingam C }; 73164e9bbddSRamalingam C 732fa301ad9SRamalingam C static int mei_component_master_bind(struct device *dev) 733fa301ad9SRamalingam C { 734fa301ad9SRamalingam C struct mei_cl_device *cldev = to_mei_cl_device(dev); 735fa301ad9SRamalingam C struct i915_hdcp_comp_master *comp_master = 736fa301ad9SRamalingam C mei_cldev_get_drvdata(cldev); 737fa301ad9SRamalingam C int ret; 738fa301ad9SRamalingam C 739fa301ad9SRamalingam C dev_dbg(dev, "%s\n", __func__); 740fa301ad9SRamalingam C comp_master->ops = &mei_hdcp_ops; 741fa301ad9SRamalingam C comp_master->mei_dev = dev; 742fa301ad9SRamalingam C ret = component_bind_all(dev, comp_master); 743fa301ad9SRamalingam C if (ret < 0) 744fa301ad9SRamalingam C return ret; 745fa301ad9SRamalingam C 746fa301ad9SRamalingam C return 0; 747fa301ad9SRamalingam C } 748fa301ad9SRamalingam C 749fa301ad9SRamalingam C static void mei_component_master_unbind(struct device *dev) 750fa301ad9SRamalingam C { 751fa301ad9SRamalingam C struct mei_cl_device *cldev = to_mei_cl_device(dev); 752fa301ad9SRamalingam C struct i915_hdcp_comp_master *comp_master = 753fa301ad9SRamalingam C mei_cldev_get_drvdata(cldev); 754fa301ad9SRamalingam C 755fa301ad9SRamalingam C dev_dbg(dev, "%s\n", __func__); 756fa301ad9SRamalingam C component_unbind_all(dev, comp_master); 757fa301ad9SRamalingam C } 758fa301ad9SRamalingam C 759fa301ad9SRamalingam C static const struct component_master_ops mei_component_master_ops = { 760fa301ad9SRamalingam C .bind = mei_component_master_bind, 761fa301ad9SRamalingam C .unbind = mei_component_master_unbind, 762fa301ad9SRamalingam C }; 763fa301ad9SRamalingam C 764fa301ad9SRamalingam C static int mei_hdcp_component_match(struct device *dev, int subcomponent, 765fa301ad9SRamalingam C void *data) 766fa301ad9SRamalingam C { 767fa301ad9SRamalingam C return !strcmp(dev->driver->name, "i915") && 768fa301ad9SRamalingam C subcomponent == I915_COMPONENT_HDCP; 769fa301ad9SRamalingam C } 770fa301ad9SRamalingam C 77164e9bbddSRamalingam C static int mei_hdcp_probe(struct mei_cl_device *cldev, 77264e9bbddSRamalingam C const struct mei_cl_device_id *id) 77364e9bbddSRamalingam C { 774fa301ad9SRamalingam C struct i915_hdcp_comp_master *comp_master; 775fa301ad9SRamalingam C struct component_match *master_match; 77664e9bbddSRamalingam C int ret; 77764e9bbddSRamalingam C 77864e9bbddSRamalingam C ret = mei_cldev_enable(cldev); 779fa301ad9SRamalingam C if (ret < 0) { 78064e9bbddSRamalingam C dev_err(&cldev->dev, "mei_cldev_enable Failed. %d\n", ret); 781fa301ad9SRamalingam C goto enable_err_exit; 782fa301ad9SRamalingam C } 78364e9bbddSRamalingam C 784fa301ad9SRamalingam C comp_master = kzalloc(sizeof(*comp_master), GFP_KERNEL); 785fa301ad9SRamalingam C if (!comp_master) { 786fa301ad9SRamalingam C ret = -ENOMEM; 787fa301ad9SRamalingam C goto err_exit; 788fa301ad9SRamalingam C } 789fa301ad9SRamalingam C 790fa301ad9SRamalingam C master_match = NULL; 791fa301ad9SRamalingam C component_match_add_typed(&cldev->dev, &master_match, 792fa301ad9SRamalingam C mei_hdcp_component_match, comp_master); 793fa301ad9SRamalingam C if (IS_ERR_OR_NULL(master_match)) { 794fa301ad9SRamalingam C ret = -ENOMEM; 795fa301ad9SRamalingam C goto err_exit; 796fa301ad9SRamalingam C } 797fa301ad9SRamalingam C 798fa301ad9SRamalingam C mei_cldev_set_drvdata(cldev, comp_master); 799fa301ad9SRamalingam C ret = component_master_add_with_match(&cldev->dev, 800fa301ad9SRamalingam C &mei_component_master_ops, 801fa301ad9SRamalingam C master_match); 802fa301ad9SRamalingam C if (ret < 0) { 803fa301ad9SRamalingam C dev_err(&cldev->dev, "Master comp add failed %d\n", ret); 804fa301ad9SRamalingam C goto err_exit; 805fa301ad9SRamalingam C } 806fa301ad9SRamalingam C 807fa301ad9SRamalingam C return 0; 808fa301ad9SRamalingam C 809fa301ad9SRamalingam C err_exit: 810fa301ad9SRamalingam C mei_cldev_set_drvdata(cldev, NULL); 811fa301ad9SRamalingam C kfree(comp_master); 812fa301ad9SRamalingam C mei_cldev_disable(cldev); 813fa301ad9SRamalingam C enable_err_exit: 81464e9bbddSRamalingam C return ret; 81564e9bbddSRamalingam C } 81664e9bbddSRamalingam C 81764e9bbddSRamalingam C static int mei_hdcp_remove(struct mei_cl_device *cldev) 81864e9bbddSRamalingam C { 819fa301ad9SRamalingam C struct i915_hdcp_comp_master *comp_master = 820fa301ad9SRamalingam C mei_cldev_get_drvdata(cldev); 821fa301ad9SRamalingam C 822fa301ad9SRamalingam C component_master_del(&cldev->dev, &mei_component_master_ops); 823fa301ad9SRamalingam C kfree(comp_master); 824fa301ad9SRamalingam C mei_cldev_set_drvdata(cldev, NULL); 825fa301ad9SRamalingam C 82664e9bbddSRamalingam C return mei_cldev_disable(cldev); 82764e9bbddSRamalingam C } 82864e9bbddSRamalingam C 82964e9bbddSRamalingam C #define MEI_UUID_HDCP GUID_INIT(0xB638AB7E, 0x94E2, 0x4EA2, 0xA5, \ 83064e9bbddSRamalingam C 0x52, 0xD1, 0xC5, 0x4B, 0x62, 0x7F, 0x04) 83164e9bbddSRamalingam C 83264e9bbddSRamalingam C static struct mei_cl_device_id mei_hdcp_tbl[] = { 83364e9bbddSRamalingam C { .uuid = MEI_UUID_HDCP, .version = MEI_CL_VERSION_ANY }, 83464e9bbddSRamalingam C { } 83564e9bbddSRamalingam C }; 83664e9bbddSRamalingam C MODULE_DEVICE_TABLE(mei, mei_hdcp_tbl); 83764e9bbddSRamalingam C 83864e9bbddSRamalingam C static struct mei_cl_driver mei_hdcp_driver = { 83964e9bbddSRamalingam C .id_table = mei_hdcp_tbl, 84064e9bbddSRamalingam C .name = KBUILD_MODNAME, 84164e9bbddSRamalingam C .probe = mei_hdcp_probe, 84264e9bbddSRamalingam C .remove = mei_hdcp_remove, 84364e9bbddSRamalingam C }; 84464e9bbddSRamalingam C 84564e9bbddSRamalingam C module_mei_cl_driver(mei_hdcp_driver); 84664e9bbddSRamalingam C 84764e9bbddSRamalingam C MODULE_AUTHOR("Intel Corporation"); 84864e9bbddSRamalingam C MODULE_LICENSE("GPL"); 84964e9bbddSRamalingam C MODULE_DESCRIPTION("MEI HDCP"); 850