445 lines
13 KiB
C
445 lines
13 KiB
C
// SPDX-License-Identifier: MIT
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/*
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* Copyright(c) 2023 Intel Corporation.
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*/
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#include "gem/i915_gem_internal.h"
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#include "gt/intel_context.h"
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#include "gt/uc/intel_gsc_fw.h"
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#include "gt/uc/intel_gsc_uc_heci_cmd_submit.h"
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#include "i915_drv.h"
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#include "intel_pxp.h"
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#include "intel_pxp_cmd_interface_42.h"
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#include "intel_pxp_cmd_interface_43.h"
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#include "intel_pxp_gsccs.h"
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#include "intel_pxp_types.h"
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static bool
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is_fw_err_platform_config(u32 type)
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{
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switch (type) {
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case PXP_STATUS_ERROR_API_VERSION:
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case PXP_STATUS_PLATFCONFIG_KF1_NOVERIF:
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case PXP_STATUS_PLATFCONFIG_KF1_BAD:
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return true;
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default:
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break;
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}
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return false;
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}
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static const char *
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fw_err_to_string(u32 type)
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{
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switch (type) {
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case PXP_STATUS_ERROR_API_VERSION:
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return "ERR_API_VERSION";
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case PXP_STATUS_NOT_READY:
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return "ERR_NOT_READY";
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case PXP_STATUS_PLATFCONFIG_KF1_NOVERIF:
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case PXP_STATUS_PLATFCONFIG_KF1_BAD:
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return "ERR_PLATFORM_CONFIG";
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default:
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break;
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}
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return NULL;
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}
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static int
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gsccs_send_message(struct intel_pxp *pxp,
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void *msg_in, size_t msg_in_size,
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void *msg_out, size_t msg_out_size_max,
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size_t *msg_out_len,
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u64 *gsc_msg_handle_retry)
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{
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struct intel_gt *gt = pxp->ctrl_gt;
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struct drm_i915_private *i915 = gt->i915;
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struct gsccs_session_resources *exec_res = &pxp->gsccs_res;
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struct intel_gsc_mtl_header *header = exec_res->pkt_vaddr;
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struct intel_gsc_heci_non_priv_pkt pkt;
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size_t max_msg_size;
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u32 reply_size;
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int ret;
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if (!exec_res->ce)
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return -ENODEV;
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max_msg_size = PXP43_MAX_HECI_INOUT_SIZE - sizeof(*header);
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if (msg_in_size > max_msg_size || msg_out_size_max > max_msg_size)
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return -ENOSPC;
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if (!exec_res->pkt_vma || !exec_res->bb_vma)
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return -ENOENT;
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GEM_BUG_ON(exec_res->pkt_vma->size < (2 * PXP43_MAX_HECI_INOUT_SIZE));
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mutex_lock(&pxp->tee_mutex);
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memset(header, 0, sizeof(*header));
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intel_gsc_uc_heci_cmd_emit_mtl_header(header, HECI_MEADDRESS_PXP,
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msg_in_size + sizeof(*header),
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exec_res->host_session_handle);
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/* check if this is a host-session-handle cleanup call (empty packet) */
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if (!msg_in && !msg_out)
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header->flags |= GSC_INFLAG_MSG_CLEANUP;
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/* copy caller provided gsc message handle if this is polling for a prior msg completion */
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header->gsc_message_handle = *gsc_msg_handle_retry;
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/* NOTE: zero size packets are used for session-cleanups */
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if (msg_in && msg_in_size)
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memcpy(exec_res->pkt_vaddr + sizeof(*header), msg_in, msg_in_size);
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pkt.addr_in = i915_vma_offset(exec_res->pkt_vma);
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pkt.size_in = header->message_size;
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pkt.addr_out = pkt.addr_in + PXP43_MAX_HECI_INOUT_SIZE;
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pkt.size_out = msg_out_size_max + sizeof(*header);
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pkt.heci_pkt_vma = exec_res->pkt_vma;
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pkt.bb_vma = exec_res->bb_vma;
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/*
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* Before submitting, let's clear-out the validity marker on the reply offset.
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* We use offset PXP43_MAX_HECI_INOUT_SIZE for reply location so point header there.
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*/
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header = exec_res->pkt_vaddr + PXP43_MAX_HECI_INOUT_SIZE;
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header->validity_marker = 0;
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ret = intel_gsc_uc_heci_cmd_submit_nonpriv(>->uc.gsc,
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exec_res->ce, &pkt, exec_res->bb_vaddr,
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GSC_REPLY_LATENCY_MS);
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if (ret) {
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drm_err(&i915->drm, "failed to send gsc PXP msg (%d)\n", ret);
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goto unlock;
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}
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/* Response validity marker, status and busyness */
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if (header->validity_marker != GSC_HECI_VALIDITY_MARKER) {
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drm_err(&i915->drm, "gsc PXP reply with invalid validity marker\n");
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ret = -EINVAL;
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goto unlock;
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}
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if (header->status != 0) {
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drm_dbg(&i915->drm, "gsc PXP reply status has error = 0x%08x\n",
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header->status);
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ret = -EINVAL;
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goto unlock;
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}
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if (header->flags & GSC_OUTFLAG_MSG_PENDING) {
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drm_dbg(&i915->drm, "gsc PXP reply is busy\n");
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/*
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* When the GSC firmware replies with pending bit, it means that the requested
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* operation has begun but the completion is pending and the caller needs
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* to re-request with the gsc_message_handle that was returned by the firmware.
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* until the pending bit is turned off.
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*/
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*gsc_msg_handle_retry = header->gsc_message_handle;
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ret = -EAGAIN;
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goto unlock;
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}
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reply_size = header->message_size - sizeof(*header);
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if (reply_size > msg_out_size_max) {
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drm_warn(&i915->drm, "caller with insufficient PXP reply size %u (%zu)\n",
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reply_size, msg_out_size_max);
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reply_size = msg_out_size_max;
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}
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if (msg_out)
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memcpy(msg_out, exec_res->pkt_vaddr + PXP43_MAX_HECI_INOUT_SIZE + sizeof(*header),
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reply_size);
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if (msg_out_len)
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*msg_out_len = reply_size;
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unlock:
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mutex_unlock(&pxp->tee_mutex);
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return ret;
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}
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static int
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gsccs_send_message_retry_complete(struct intel_pxp *pxp,
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void *msg_in, size_t msg_in_size,
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void *msg_out, size_t msg_out_size_max,
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size_t *msg_out_len)
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{
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u64 gsc_session_retry = 0;
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int ret, tries = 0;
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/*
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* Keep sending request if GSC firmware was busy. Based on fw specs +
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* sw overhead (and testing) we expect a worst case pending-bit delay of
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* GSC_PENDING_RETRY_MAXCOUNT x GSC_PENDING_RETRY_PAUSE_MS millisecs.
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*/
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do {
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ret = gsccs_send_message(pxp, msg_in, msg_in_size, msg_out, msg_out_size_max,
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msg_out_len, &gsc_session_retry);
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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(GSC_PENDING_RETRY_PAUSE_MS);
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} while (++tries < GSC_PENDING_RETRY_MAXCOUNT);
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return ret;
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}
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bool intel_pxp_gsccs_is_ready_for_sessions(struct intel_pxp *pxp)
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{
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/*
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* GSC-fw loading, HuC-fw loading, HuC-fw authentication and
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* GSC-proxy init flow (requiring an mei component driver)
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* must all occur first before we can start requesting for PXP
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* sessions. Checking for completion on HuC authentication and
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* gsc-proxy init flow (the last set of dependencies that
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* are out of order) will suffice.
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*/
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if (intel_huc_is_authenticated(&pxp->ctrl_gt->uc.huc, INTEL_HUC_AUTH_BY_GSC) &&
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intel_gsc_uc_fw_proxy_init_done(&pxp->ctrl_gt->uc.gsc))
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return true;
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return false;
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}
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int intel_pxp_gsccs_create_session(struct intel_pxp *pxp,
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int arb_session_id)
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{
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struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
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struct pxp43_create_arb_in msg_in = {0};
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struct pxp43_create_arb_out msg_out = {0};
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int ret;
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msg_in.header.api_version = PXP_APIVER(4, 3);
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msg_in.header.command_id = PXP43_CMDID_INIT_SESSION;
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msg_in.header.stream_id = (FIELD_PREP(PXP43_INIT_SESSION_APPID, arb_session_id) |
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FIELD_PREP(PXP43_INIT_SESSION_VALID, 1) |
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FIELD_PREP(PXP43_INIT_SESSION_APPTYPE, 0));
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msg_in.header.buffer_len = sizeof(msg_in) - sizeof(msg_in.header);
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msg_in.protection_mode = PXP43_INIT_SESSION_PROTECTION_ARB;
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ret = gsccs_send_message_retry_complete(pxp,
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&msg_in, sizeof(msg_in),
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&msg_out, sizeof(msg_out), NULL);
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if (ret) {
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drm_err(&i915->drm, "Failed to init session %d, ret=[%d]\n", arb_session_id, ret);
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} else if (msg_out.header.status != 0) {
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if (is_fw_err_platform_config(msg_out.header.status)) {
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drm_info_once(&i915->drm,
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"PXP init-session-%d failed due to BIOS/SOC:0x%08x:%s\n",
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arb_session_id, msg_out.header.status,
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fw_err_to_string(msg_out.header.status));
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} else {
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drm_dbg(&i915->drm, "PXP init-session-%d failed 0x%08x:%st:\n",
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arb_session_id, msg_out.header.status,
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fw_err_to_string(msg_out.header.status));
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drm_dbg(&i915->drm, " cmd-detail: ID=[0x%08x],API-Ver-[0x%08x]\n",
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msg_in.header.command_id, msg_in.header.api_version);
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}
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}
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return ret;
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}
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void intel_pxp_gsccs_end_arb_fw_session(struct intel_pxp *pxp, u32 session_id)
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{
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struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
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struct pxp42_inv_stream_key_in msg_in = {0};
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struct pxp42_inv_stream_key_out msg_out = {0};
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int ret = 0;
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/*
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* Stream key invalidation reuses the same version 4.2 input/output
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* command format but firmware requires 4.3 API interaction
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*/
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msg_in.header.api_version = PXP_APIVER(4, 3);
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msg_in.header.command_id = PXP42_CMDID_INVALIDATE_STREAM_KEY;
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msg_in.header.buffer_len = sizeof(msg_in) - sizeof(msg_in.header);
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msg_in.header.stream_id = FIELD_PREP(PXP_CMDHDR_EXTDATA_SESSION_VALID, 1);
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msg_in.header.stream_id |= FIELD_PREP(PXP_CMDHDR_EXTDATA_APP_TYPE, 0);
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msg_in.header.stream_id |= FIELD_PREP(PXP_CMDHDR_EXTDATA_SESSION_ID, session_id);
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ret = gsccs_send_message_retry_complete(pxp,
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&msg_in, sizeof(msg_in),
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&msg_out, sizeof(msg_out), NULL);
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if (ret) {
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drm_err(&i915->drm, "Failed to inv-stream-key-%u, ret=[%d]\n",
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session_id, ret);
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} else if (msg_out.header.status != 0) {
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if (is_fw_err_platform_config(msg_out.header.status)) {
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drm_info_once(&i915->drm,
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"PXP inv-stream-key-%u failed due to BIOS/SOC :0x%08x:%s\n",
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session_id, msg_out.header.status,
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fw_err_to_string(msg_out.header.status));
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} else {
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drm_dbg(&i915->drm, "PXP inv-stream-key-%u failed 0x%08x:%s:\n",
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session_id, msg_out.header.status,
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fw_err_to_string(msg_out.header.status));
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drm_dbg(&i915->drm, " cmd-detail: ID=[0x%08x],API-Ver-[0x%08x]\n",
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msg_in.header.command_id, msg_in.header.api_version);
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}
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}
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}
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static void
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gsccs_cleanup_fw_host_session_handle(struct intel_pxp *pxp)
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{
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struct drm_i915_private *i915 = pxp->ctrl_gt->i915;
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int ret;
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ret = gsccs_send_message_retry_complete(pxp, NULL, 0, NULL, 0, NULL);
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if (ret)
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drm_dbg(&i915->drm, "Failed to send gsccs msg host-session-cleanup: ret=[%d]\n",
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ret);
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}
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static void
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gsccs_destroy_execution_resource(struct intel_pxp *pxp)
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{
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struct gsccs_session_resources *exec_res = &pxp->gsccs_res;
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if (exec_res->host_session_handle)
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gsccs_cleanup_fw_host_session_handle(pxp);
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if (exec_res->ce)
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intel_context_put(exec_res->ce);
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if (exec_res->bb_vma)
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i915_vma_unpin_and_release(&exec_res->bb_vma, I915_VMA_RELEASE_MAP);
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if (exec_res->pkt_vma)
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i915_vma_unpin_and_release(&exec_res->pkt_vma, I915_VMA_RELEASE_MAP);
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memset(exec_res, 0, sizeof(*exec_res));
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}
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static int
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gsccs_create_buffer(struct intel_gt *gt,
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const char *bufname, size_t size,
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struct i915_vma **vma, void **map)
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{
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struct drm_i915_private *i915 = gt->i915;
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struct drm_i915_gem_object *obj;
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int err = 0;
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obj = i915_gem_object_create_internal(i915, size);
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if (IS_ERR(obj)) {
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drm_err(&i915->drm, "Failed to allocate gsccs backend %s.\n", bufname);
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err = PTR_ERR(obj);
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goto out_none;
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}
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*vma = i915_vma_instance(obj, gt->vm, NULL);
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if (IS_ERR(*vma)) {
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drm_err(&i915->drm, "Failed to vma-instance gsccs backend %s.\n", bufname);
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err = PTR_ERR(*vma);
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goto out_put;
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}
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/* return a virtual pointer */
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*map = i915_gem_object_pin_map_unlocked(obj, i915_coherent_map_type(i915, obj, true));
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if (IS_ERR(*map)) {
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drm_err(&i915->drm, "Failed to map gsccs backend %s.\n", bufname);
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err = PTR_ERR(*map);
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goto out_put;
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}
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/* all PXP sessions commands are treated as non-privileged */
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err = i915_vma_pin(*vma, 0, 0, PIN_USER);
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if (err) {
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drm_err(&i915->drm, "Failed to vma-pin gsccs backend %s.\n", bufname);
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goto out_unmap;
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}
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return 0;
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out_unmap:
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i915_gem_object_unpin_map(obj);
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out_put:
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i915_gem_object_put(obj);
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out_none:
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*vma = NULL;
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*map = NULL;
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return err;
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}
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static int
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gsccs_allocate_execution_resource(struct intel_pxp *pxp)
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{
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struct intel_gt *gt = pxp->ctrl_gt;
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struct gsccs_session_resources *exec_res = &pxp->gsccs_res;
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struct intel_engine_cs *engine = gt->engine[GSC0];
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struct intel_context *ce;
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int err = 0;
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/*
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* First, ensure the GSC engine is present.
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* NOTE: Backend would only be called with the correct gt.
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*/
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if (!engine)
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return -ENODEV;
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/*
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* Now, allocate, pin and map two objects, one for the heci message packet
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* and another for the batch buffer we submit into GSC engine (that includes the packet).
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* NOTE: GSC-CS backend is currently only supported on MTL, so we allocate shmem.
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*/
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err = gsccs_create_buffer(pxp->ctrl_gt, "Heci Packet",
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2 * PXP43_MAX_HECI_INOUT_SIZE,
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&exec_res->pkt_vma, &exec_res->pkt_vaddr);
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if (err)
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return err;
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err = gsccs_create_buffer(pxp->ctrl_gt, "Batch Buffer", PAGE_SIZE,
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&exec_res->bb_vma, &exec_res->bb_vaddr);
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if (err)
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goto free_pkt;
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/* Finally, create an intel_context to be used during the submission */
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ce = intel_context_create(engine);
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if (IS_ERR(ce)) {
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drm_err(>->i915->drm, "Failed creating gsccs backend ctx\n");
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err = PTR_ERR(ce);
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goto free_batch;
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}
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i915_vm_put(ce->vm);
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ce->vm = i915_vm_get(pxp->ctrl_gt->vm);
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exec_res->ce = ce;
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/* initialize host-session-handle (for all i915-to-gsc-firmware PXP cmds) */
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get_random_bytes(&exec_res->host_session_handle, sizeof(exec_res->host_session_handle));
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return 0;
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free_batch:
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i915_vma_unpin_and_release(&exec_res->bb_vma, I915_VMA_RELEASE_MAP);
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free_pkt:
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i915_vma_unpin_and_release(&exec_res->pkt_vma, I915_VMA_RELEASE_MAP);
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memset(exec_res, 0, sizeof(*exec_res));
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return err;
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}
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void intel_pxp_gsccs_fini(struct intel_pxp *pxp)
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{
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intel_wakeref_t wakeref;
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gsccs_destroy_execution_resource(pxp);
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with_intel_runtime_pm(&pxp->ctrl_gt->i915->runtime_pm, wakeref)
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intel_pxp_fini_hw(pxp);
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}
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int intel_pxp_gsccs_init(struct intel_pxp *pxp)
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{
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int ret;
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intel_wakeref_t wakeref;
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ret = gsccs_allocate_execution_resource(pxp);
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if (!ret) {
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with_intel_runtime_pm(&pxp->ctrl_gt->i915->runtime_pm, wakeref)
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intel_pxp_init_hw(pxp);
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}
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return ret;
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}
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