401 lines
11 KiB
C
401 lines
11 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* Copyright 2020-2021 NXP
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*/
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#include <linux/init.h>
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#include <linux/interconnect.h>
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#include <linux/ioctl.h>
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#include <linux/list.h>
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#include <linux/kernel.h>
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#include <linux/module.h>
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#include "vpu.h"
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#include "vpu_core.h"
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#include "vpu_rpc.h"
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#include "vpu_mbox.h"
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#include "vpu_defs.h"
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#include "vpu_cmds.h"
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#include "vpu_msgs.h"
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#include "vpu_v4l2.h"
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#define VPU_PKT_HEADER_LENGTH 3
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struct vpu_msg_handler {
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u32 id;
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void (*done)(struct vpu_inst *inst, struct vpu_rpc_event *pkt);
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};
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static void vpu_session_handle_start_done(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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vpu_trace(inst->dev, "[%d]\n", inst->id);
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}
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static void vpu_session_handle_mem_request(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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struct vpu_pkt_mem_req_data req_data = { 0 };
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vpu_iface_unpack_msg_data(inst->core, pkt, (void *)&req_data);
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vpu_trace(inst->dev, "[%d] %d:%d %d:%d %d:%d\n",
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inst->id,
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req_data.enc_frame_size,
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req_data.enc_frame_num,
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req_data.ref_frame_size,
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req_data.ref_frame_num,
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req_data.act_buf_size,
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req_data.act_buf_num);
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vpu_inst_lock(inst);
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call_void_vop(inst, mem_request,
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req_data.enc_frame_size,
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req_data.enc_frame_num,
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req_data.ref_frame_size,
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req_data.ref_frame_num,
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req_data.act_buf_size,
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req_data.act_buf_num);
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vpu_inst_unlock(inst);
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}
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static void vpu_session_handle_stop_done(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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vpu_trace(inst->dev, "[%d]\n", inst->id);
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call_void_vop(inst, stop_done);
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}
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static void vpu_session_handle_seq_hdr(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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struct vpu_dec_codec_info info;
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const struct vpu_core_resources *res;
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memset(&info, 0, sizeof(info));
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res = vpu_get_resource(inst);
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info.stride = res ? res->stride : 1;
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vpu_iface_unpack_msg_data(inst->core, pkt, (void *)&info);
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call_void_vop(inst, event_notify, VPU_MSG_ID_SEQ_HDR_FOUND, &info);
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}
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static void vpu_session_handle_resolution_change(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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call_void_vop(inst, event_notify, VPU_MSG_ID_RES_CHANGE, NULL);
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}
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static void vpu_session_handle_enc_frame_done(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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struct vpu_enc_pic_info info = { 0 };
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vpu_iface_unpack_msg_data(inst->core, pkt, (void *)&info);
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dev_dbg(inst->dev, "[%d] frame id = %d, wptr = 0x%x, size = %d\n",
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inst->id, info.frame_id, info.wptr, info.frame_size);
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call_void_vop(inst, get_one_frame, &info);
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}
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static void vpu_session_handle_frame_request(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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struct vpu_fs_info fs = { 0 };
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vpu_iface_unpack_msg_data(inst->core, pkt, &fs);
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call_void_vop(inst, event_notify, VPU_MSG_ID_FRAME_REQ, &fs);
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}
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static void vpu_session_handle_frame_release(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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if (inst->core->type == VPU_CORE_TYPE_ENC) {
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struct vpu_frame_info info;
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memset(&info, 0, sizeof(info));
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vpu_iface_unpack_msg_data(inst->core, pkt, (void *)&info.sequence);
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dev_dbg(inst->dev, "[%d] %d\n", inst->id, info.sequence);
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info.type = inst->out_format.type;
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call_void_vop(inst, buf_done, &info);
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} else if (inst->core->type == VPU_CORE_TYPE_DEC) {
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struct vpu_fs_info fs = { 0 };
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vpu_iface_unpack_msg_data(inst->core, pkt, &fs);
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call_void_vop(inst, event_notify, VPU_MSG_ID_FRAME_RELEASE, &fs);
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}
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}
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static void vpu_session_handle_input_done(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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dev_dbg(inst->dev, "[%d]\n", inst->id);
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call_void_vop(inst, input_done);
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}
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static void vpu_session_handle_pic_decoded(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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struct vpu_dec_pic_info info = { 0 };
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vpu_iface_unpack_msg_data(inst->core, pkt, (void *)&info);
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call_void_vop(inst, get_one_frame, &info);
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}
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static void vpu_session_handle_pic_done(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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struct vpu_dec_pic_info info = { 0 };
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struct vpu_frame_info frame;
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memset(&frame, 0, sizeof(frame));
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vpu_iface_unpack_msg_data(inst->core, pkt, (void *)&info);
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if (inst->core->type == VPU_CORE_TYPE_DEC)
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frame.type = inst->cap_format.type;
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frame.id = info.id;
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frame.luma = info.luma;
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frame.skipped = info.skipped;
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frame.timestamp = info.timestamp;
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call_void_vop(inst, buf_done, &frame);
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}
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static void vpu_session_handle_eos(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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call_void_vop(inst, event_notify, VPU_MSG_ID_PIC_EOS, NULL);
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}
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static void vpu_session_handle_error(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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char *str = (char *)pkt->data;
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if (strlen(str))
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dev_err(inst->dev, "instance %d firmware error : %s\n", inst->id, str);
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else
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dev_err(inst->dev, "instance %d is unsupported stream\n", inst->id);
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call_void_vop(inst, event_notify, VPU_MSG_ID_UNSUPPORTED, NULL);
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vpu_v4l2_set_error(inst);
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}
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static void vpu_session_handle_firmware_xcpt(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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char *str = (char *)pkt->data;
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dev_err(inst->dev, "%s firmware xcpt: %s\n",
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vpu_core_type_desc(inst->core->type), str);
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call_void_vop(inst, event_notify, VPU_MSG_ID_FIRMWARE_XCPT, NULL);
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set_bit(inst->id, &inst->core->hang_mask);
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vpu_v4l2_set_error(inst);
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}
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static void vpu_session_handle_pic_skipped(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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vpu_inst_lock(inst);
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vpu_skip_frame(inst, 1);
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vpu_inst_unlock(inst);
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}
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static struct vpu_msg_handler handlers[] = {
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{VPU_MSG_ID_START_DONE, vpu_session_handle_start_done},
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{VPU_MSG_ID_STOP_DONE, vpu_session_handle_stop_done},
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{VPU_MSG_ID_MEM_REQUEST, vpu_session_handle_mem_request},
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{VPU_MSG_ID_SEQ_HDR_FOUND, vpu_session_handle_seq_hdr},
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{VPU_MSG_ID_RES_CHANGE, vpu_session_handle_resolution_change},
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{VPU_MSG_ID_FRAME_INPUT_DONE, vpu_session_handle_input_done},
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{VPU_MSG_ID_FRAME_REQ, vpu_session_handle_frame_request},
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{VPU_MSG_ID_FRAME_RELEASE, vpu_session_handle_frame_release},
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{VPU_MSG_ID_ENC_DONE, vpu_session_handle_enc_frame_done},
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{VPU_MSG_ID_PIC_DECODED, vpu_session_handle_pic_decoded},
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{VPU_MSG_ID_DEC_DONE, vpu_session_handle_pic_done},
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{VPU_MSG_ID_PIC_EOS, vpu_session_handle_eos},
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{VPU_MSG_ID_UNSUPPORTED, vpu_session_handle_error},
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{VPU_MSG_ID_FIRMWARE_XCPT, vpu_session_handle_firmware_xcpt},
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{VPU_MSG_ID_PIC_SKIPPED, vpu_session_handle_pic_skipped},
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};
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static int vpu_session_handle_msg(struct vpu_inst *inst, struct vpu_rpc_event *msg)
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{
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int ret;
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u32 msg_id;
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struct vpu_msg_handler *handler = NULL;
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unsigned int i;
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ret = vpu_iface_convert_msg_id(inst->core, msg->hdr.id);
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if (ret < 0)
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return -EINVAL;
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msg_id = ret;
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dev_dbg(inst->dev, "[%d] receive event(%s)\n", inst->id, vpu_id_name(msg_id));
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for (i = 0; i < ARRAY_SIZE(handlers); i++) {
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if (handlers[i].id == msg_id) {
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handler = &handlers[i];
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break;
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}
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}
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if (handler && handler->done)
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handler->done(inst, msg);
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vpu_response_cmd(inst, msg_id, 1);
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return 0;
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}
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static bool vpu_inst_receive_msg(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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unsigned long bytes = sizeof(struct vpu_rpc_event_header);
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u32 ret;
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memset(pkt, 0, sizeof(*pkt));
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if (kfifo_len(&inst->msg_fifo) < bytes)
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return false;
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ret = kfifo_out(&inst->msg_fifo, pkt, bytes);
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if (ret != bytes)
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return false;
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if (pkt->hdr.num > 0) {
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bytes = pkt->hdr.num * sizeof(u32);
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ret = kfifo_out(&inst->msg_fifo, pkt->data, bytes);
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if (ret != bytes)
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return false;
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}
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return true;
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}
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void vpu_inst_run_work(struct work_struct *work)
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{
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struct vpu_inst *inst = container_of(work, struct vpu_inst, msg_work);
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struct vpu_rpc_event pkt;
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while (vpu_inst_receive_msg(inst, &pkt))
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vpu_session_handle_msg(inst, &pkt);
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}
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static void vpu_inst_handle_msg(struct vpu_inst *inst, struct vpu_rpc_event *pkt)
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{
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unsigned long bytes;
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u32 id = pkt->hdr.id;
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int ret;
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if (!inst->workqueue)
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return;
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bytes = sizeof(pkt->hdr) + pkt->hdr.num * sizeof(u32);
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ret = kfifo_in(&inst->msg_fifo, pkt, bytes);
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if (ret != bytes)
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dev_err(inst->dev, "[%d:%d]overflow: %d\n", inst->core->id, inst->id, id);
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queue_work(inst->workqueue, &inst->msg_work);
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}
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static int vpu_handle_msg(struct vpu_core *core)
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{
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struct vpu_rpc_event pkt;
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struct vpu_inst *inst;
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int ret;
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memset(&pkt, 0, sizeof(pkt));
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while (!vpu_iface_receive_msg(core, &pkt)) {
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dev_dbg(core->dev, "event index = %d, id = %d, num = %d\n",
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pkt.hdr.index, pkt.hdr.id, pkt.hdr.num);
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ret = vpu_iface_convert_msg_id(core, pkt.hdr.id);
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if (ret < 0)
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continue;
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inst = vpu_core_find_instance(core, pkt.hdr.index);
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if (inst) {
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vpu_response_cmd(inst, ret, 0);
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mutex_lock(&core->cmd_lock);
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vpu_inst_record_flow(inst, ret);
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mutex_unlock(&core->cmd_lock);
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vpu_inst_handle_msg(inst, &pkt);
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vpu_inst_put(inst);
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}
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memset(&pkt, 0, sizeof(pkt));
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}
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return 0;
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}
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static int vpu_isr_thread(struct vpu_core *core, u32 irq_code)
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{
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dev_dbg(core->dev, "irq code = 0x%x\n", irq_code);
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switch (irq_code) {
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case VPU_IRQ_CODE_SYNC:
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vpu_mbox_send_msg(core, PRC_BUF_OFFSET, core->rpc.phys - core->fw.phys);
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vpu_mbox_send_msg(core, BOOT_ADDRESS, core->fw.phys);
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vpu_mbox_send_msg(core, INIT_DONE, 2);
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break;
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case VPU_IRQ_CODE_BOOT_DONE:
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break;
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case VPU_IRQ_CODE_SNAPSHOT_DONE:
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break;
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default:
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vpu_handle_msg(core);
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break;
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}
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return 0;
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}
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static void vpu_core_run_msg_work(struct vpu_core *core)
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{
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const unsigned int SIZE = sizeof(u32);
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while (kfifo_len(&core->msg_fifo) >= SIZE) {
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u32 data = 0;
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if (kfifo_out(&core->msg_fifo, &data, SIZE) == SIZE)
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vpu_isr_thread(core, data);
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}
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}
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void vpu_msg_run_work(struct work_struct *work)
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{
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struct vpu_core *core = container_of(work, struct vpu_core, msg_work);
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unsigned long delay = msecs_to_jiffies(10);
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vpu_core_run_msg_work(core);
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queue_delayed_work(core->workqueue, &core->msg_delayed_work, delay);
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}
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void vpu_msg_delayed_work(struct work_struct *work)
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{
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struct vpu_core *core;
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struct delayed_work *dwork;
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unsigned long bytes = sizeof(u32);
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u32 i;
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if (!work)
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return;
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dwork = to_delayed_work(work);
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core = container_of(dwork, struct vpu_core, msg_delayed_work);
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if (kfifo_len(&core->msg_fifo) >= bytes)
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vpu_core_run_msg_work(core);
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bytes = sizeof(struct vpu_rpc_event_header);
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for (i = 0; i < core->supported_instance_count; i++) {
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struct vpu_inst *inst = vpu_core_find_instance(core, i);
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if (!inst)
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continue;
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if (inst->workqueue && kfifo_len(&inst->msg_fifo) >= bytes)
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queue_work(inst->workqueue, &inst->msg_work);
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vpu_inst_put(inst);
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}
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}
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int vpu_isr(struct vpu_core *core, u32 irq)
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{
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switch (irq) {
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case VPU_IRQ_CODE_SYNC:
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break;
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case VPU_IRQ_CODE_BOOT_DONE:
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complete(&core->cmp);
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break;
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case VPU_IRQ_CODE_SNAPSHOT_DONE:
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complete(&core->cmp);
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break;
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default:
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break;
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}
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if (kfifo_in(&core->msg_fifo, &irq, sizeof(irq)) != sizeof(irq))
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dev_err(core->dev, "[%d]overflow: %d\n", core->id, irq);
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queue_work(core->workqueue, &core->msg_work);
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return 0;
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}
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