265 lines
6.9 KiB
C
265 lines
6.9 KiB
C
// SPDX-License-Identifier: MIT
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/*
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* Copyright 2023, Intel Corporation.
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*/
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#include <drm/drm_print.h>
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#include <drm/intel/i915_hdcp_interface.h>
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#include <linux/delay.h>
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#include "abi/gsc_command_header_abi.h"
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#include "intel_hdcp_gsc.h"
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#include "intel_hdcp_gsc_message.h"
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#include "xe_bo.h"
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#include "xe_device.h"
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#include "xe_device_types.h"
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#include "xe_force_wake.h"
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#include "xe_gsc_proxy.h"
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#include "xe_gsc_submit.h"
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#include "xe_map.h"
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#include "xe_pm.h"
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#include "xe_uc_fw.h"
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#define HECI_MEADDRESS_HDCP 18
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struct intel_hdcp_gsc_message {
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struct xe_bo *hdcp_bo;
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u64 hdcp_cmd_in;
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u64 hdcp_cmd_out;
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};
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#define HDCP_GSC_HEADER_SIZE sizeof(struct intel_gsc_mtl_header)
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bool intel_hdcp_gsc_cs_required(struct intel_display *display)
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{
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return DISPLAY_VER(display) >= 14;
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}
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bool intel_hdcp_gsc_check_status(struct intel_display *display)
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{
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struct xe_device *xe = to_xe_device(display->drm);
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struct xe_tile *tile = xe_device_get_root_tile(xe);
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struct xe_gt *gt = tile->media_gt;
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struct xe_gsc *gsc = >->uc.gsc;
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bool ret = true;
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unsigned int fw_ref;
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if (!gsc || !xe_uc_fw_is_enabled(&gsc->fw)) {
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drm_dbg_kms(&xe->drm,
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"GSC Components not ready for HDCP2.x\n");
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return false;
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}
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xe_pm_runtime_get(xe);
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fw_ref = xe_force_wake_get(gt_to_fw(gt), XE_FW_GSC);
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if (!fw_ref) {
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drm_dbg_kms(&xe->drm,
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"failed to get forcewake to check proxy status\n");
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ret = false;
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goto out;
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}
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if (!xe_gsc_proxy_init_done(gsc))
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ret = false;
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xe_force_wake_put(gt_to_fw(gt), fw_ref);
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out:
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xe_pm_runtime_put(xe);
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return ret;
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}
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/*This function helps allocate memory for the command that we will send to gsc cs */
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static int intel_hdcp_gsc_initialize_message(struct intel_display *display,
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struct intel_hdcp_gsc_message *hdcp_message)
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{
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struct xe_device *xe = to_xe_device(display->drm);
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struct xe_bo *bo = NULL;
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u64 cmd_in, cmd_out;
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int ret = 0;
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/* allocate object of two page for HDCP command memory and store it */
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bo = xe_bo_create_pin_map(xe, xe_device_get_root_tile(xe), NULL, PAGE_SIZE * 2,
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ttm_bo_type_kernel,
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XE_BO_FLAG_SYSTEM |
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XE_BO_FLAG_GGTT);
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if (IS_ERR(bo)) {
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drm_err(display->drm, "Failed to allocate bo for HDCP streaming command!\n");
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ret = PTR_ERR(bo);
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goto out;
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}
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cmd_in = xe_bo_ggtt_addr(bo);
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cmd_out = cmd_in + PAGE_SIZE;
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xe_map_memset(xe, &bo->vmap, 0, 0, bo->size);
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hdcp_message->hdcp_bo = bo;
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hdcp_message->hdcp_cmd_in = cmd_in;
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hdcp_message->hdcp_cmd_out = cmd_out;
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out:
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return ret;
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}
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static int intel_hdcp_gsc_hdcp2_init(struct intel_display *display)
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{
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struct intel_hdcp_gsc_message *hdcp_message;
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int ret;
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hdcp_message = kzalloc(sizeof(*hdcp_message), GFP_KERNEL);
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if (!hdcp_message)
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return -ENOMEM;
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/*
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* NOTE: No need to lock the comp mutex here as it is already
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* going to be taken before this function called
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*/
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ret = intel_hdcp_gsc_initialize_message(display, hdcp_message);
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if (ret) {
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drm_err(display->drm, "Could not initialize hdcp_message\n");
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kfree(hdcp_message);
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return ret;
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}
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display->hdcp.hdcp_message = hdcp_message;
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return ret;
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}
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static const struct i915_hdcp_ops gsc_hdcp_ops = {
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.initiate_hdcp2_session = intel_hdcp_gsc_initiate_session,
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.verify_receiver_cert_prepare_km =
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intel_hdcp_gsc_verify_receiver_cert_prepare_km,
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.verify_hprime = intel_hdcp_gsc_verify_hprime,
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.store_pairing_info = intel_hdcp_gsc_store_pairing_info,
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.initiate_locality_check = intel_hdcp_gsc_initiate_locality_check,
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.verify_lprime = intel_hdcp_gsc_verify_lprime,
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.get_session_key = intel_hdcp_gsc_get_session_key,
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.repeater_check_flow_prepare_ack =
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intel_hdcp_gsc_repeater_check_flow_prepare_ack,
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.verify_mprime = intel_hdcp_gsc_verify_mprime,
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.enable_hdcp_authentication = intel_hdcp_gsc_enable_authentication,
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.close_hdcp_session = intel_hdcp_gsc_close_session,
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};
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int intel_hdcp_gsc_init(struct intel_display *display)
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{
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struct i915_hdcp_arbiter *data;
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int ret;
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data = kzalloc(sizeof(*data), GFP_KERNEL);
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if (!data)
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return -ENOMEM;
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mutex_lock(&display->hdcp.hdcp_mutex);
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display->hdcp.arbiter = data;
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display->hdcp.arbiter->hdcp_dev = display->drm->dev;
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display->hdcp.arbiter->ops = &gsc_hdcp_ops;
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ret = intel_hdcp_gsc_hdcp2_init(display);
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if (ret)
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kfree(data);
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mutex_unlock(&display->hdcp.hdcp_mutex);
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return ret;
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}
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void intel_hdcp_gsc_fini(struct intel_display *display)
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{
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struct intel_hdcp_gsc_message *hdcp_message =
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display->hdcp.hdcp_message;
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struct i915_hdcp_arbiter *arb = display->hdcp.arbiter;
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if (hdcp_message) {
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xe_bo_unpin_map_no_vm(hdcp_message->hdcp_bo);
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kfree(hdcp_message);
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display->hdcp.hdcp_message = NULL;
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}
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kfree(arb);
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display->hdcp.arbiter = NULL;
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}
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static int xe_gsc_send_sync(struct xe_device *xe,
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struct intel_hdcp_gsc_message *hdcp_message,
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u32 msg_size_in, u32 msg_size_out,
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u32 addr_out_off)
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{
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struct xe_gt *gt = hdcp_message->hdcp_bo->tile->media_gt;
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struct iosys_map *map = &hdcp_message->hdcp_bo->vmap;
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struct xe_gsc *gsc = >->uc.gsc;
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int ret;
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ret = xe_gsc_pkt_submit_kernel(gsc, hdcp_message->hdcp_cmd_in, msg_size_in,
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hdcp_message->hdcp_cmd_out, msg_size_out);
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if (ret) {
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drm_err(&xe->drm, "failed to send gsc HDCP msg (%d)\n", ret);
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return ret;
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}
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if (xe_gsc_check_and_update_pending(xe, map, 0, map, addr_out_off))
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return -EAGAIN;
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ret = xe_gsc_read_out_header(xe, map, addr_out_off,
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sizeof(struct hdcp_cmd_header), NULL);
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return ret;
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}
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ssize_t intel_hdcp_gsc_msg_send(struct xe_device *xe, u8 *msg_in,
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size_t msg_in_len, u8 *msg_out,
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size_t msg_out_len)
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{
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const size_t max_msg_size = PAGE_SIZE - HDCP_GSC_HEADER_SIZE;
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struct intel_hdcp_gsc_message *hdcp_message;
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u64 host_session_id;
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u32 msg_size_in, msg_size_out;
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u32 addr_out_off, addr_in_wr_off = 0;
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int ret, tries = 0;
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if (msg_in_len > max_msg_size || msg_out_len > max_msg_size) {
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ret = -ENOSPC;
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goto out;
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}
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msg_size_in = msg_in_len + HDCP_GSC_HEADER_SIZE;
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msg_size_out = msg_out_len + HDCP_GSC_HEADER_SIZE;
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hdcp_message = xe->display.hdcp.hdcp_message;
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addr_out_off = PAGE_SIZE;
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host_session_id = xe_gsc_create_host_session_id();
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xe_pm_runtime_get_noresume(xe);
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addr_in_wr_off = xe_gsc_emit_header(xe, &hdcp_message->hdcp_bo->vmap,
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addr_in_wr_off, HECI_MEADDRESS_HDCP,
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host_session_id, msg_in_len);
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xe_map_memcpy_to(xe, &hdcp_message->hdcp_bo->vmap, addr_in_wr_off,
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msg_in, msg_in_len);
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/*
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* Keep sending request in case the pending bit is set no need to add
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* message handle as we are using same address hence loc. of header is
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* same and it will contain the message handle. we will send the message
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* 20 times each message 50 ms apart
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*/
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do {
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ret = xe_gsc_send_sync(xe, hdcp_message, msg_size_in, msg_size_out,
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addr_out_off);
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/* Only try again if gsc says so */
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if (ret != -EAGAIN)
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break;
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msleep(50);
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} while (++tries < 20);
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if (ret)
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goto out;
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xe_map_memcpy_from(xe, msg_out, &hdcp_message->hdcp_bo->vmap,
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addr_out_off + HDCP_GSC_HEADER_SIZE,
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msg_out_len);
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out:
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xe_pm_runtime_put(xe);
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return ret;
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}
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