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https://github.com/nyanmisaka/mpp.git
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1. Add rc model in when force skip frm 2. Fix ref frm error when force pskip 3. Disable pskip when cfg force idr 4. Support pskip frm as ref frm 5. Support force skip frm as is_ref or non_ref Change-Id: Ib138ab75a9df2c4521cb376e3a3d7fd30565ecd9 Signed-off-by: Yanjun Liao <yanjun.liao@rock-chips.com>
188 lines
8.3 KiB
C
188 lines
8.3 KiB
C
/*
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* Copyright 2015 Rockchip Electronics Co. LTD
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef __MPP_META_H__
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#define __MPP_META_H__
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#include <stdint.h>
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#include "rk_type.h"
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#define FOURCC_META(a, b, c, d) ((RK_U32)(a) << 24 | \
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((RK_U32)(b) << 16) | \
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((RK_U32)(c) << 8) | \
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((RK_U32)(d) << 0))
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/*
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* Mpp Metadata definition
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*
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* Metadata is for information transmision in mpp.
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* Mpp task will contain two meta data:
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*
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* 1. Data flow metadata
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* This metadata contains information of input / output data flow. For example
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* A. decoder input side task the input packet must be defined and output frame
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* may not be defined. Then decoder will try malloc or use committed buffer to
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* complete decoding.
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* B. decoder output side task
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*
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*
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* 2. Flow control metadata
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*
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*/
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typedef enum MppMetaKey_e {
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/* data flow key */
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KEY_INPUT_FRAME = FOURCC_META('i', 'f', 'r', 'm'),
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KEY_INPUT_PACKET = FOURCC_META('i', 'p', 'k', 't'),
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KEY_OUTPUT_FRAME = FOURCC_META('o', 'f', 'r', 'm'),
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KEY_OUTPUT_PACKET = FOURCC_META('o', 'p', 'k', 't'),
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/* output motion information for motion detection */
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KEY_MOTION_INFO = FOURCC_META('m', 'v', 'i', 'f'),
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KEY_HDR_INFO = FOURCC_META('h', 'd', 'r', ' '),
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KEY_HDR_META_OFFSET = FOURCC_META('h', 'd', 'r', 'o'),
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KEY_HDR_META_SIZE = FOURCC_META('h', 'd', 'r', 'l'),
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/* flow control key */
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KEY_INPUT_BLOCK = FOURCC_META('i', 'b', 'l', 'k'),
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KEY_OUTPUT_BLOCK = FOURCC_META('o', 'b', 'l', 'k'),
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KEY_INPUT_IDR_REQ = FOURCC_META('i', 'i', 'd', 'r'), /* input idr frame request flag */
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KEY_OUTPUT_INTRA = FOURCC_META('o', 'i', 'd', 'r'), /* output intra frame indicator */
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/* mpp_frame / mpp_packet meta data info key */
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KEY_TEMPORAL_ID = FOURCC_META('t', 'l', 'i', 'd'),
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KEY_LONG_REF_IDX = FOURCC_META('l', 't', 'i', 'd'),
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KEY_ENC_AVERAGE_QP = FOURCC_META('a', 'v', 'g', 'q'),
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KEY_ENC_START_QP = FOURCC_META('s', 't', 'r', 'q'),
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KEY_ENC_BPS_RT = FOURCC_META('r', 't', 'b', 'r'), /* realtime bps */
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KEY_ROI_DATA = FOURCC_META('r', 'o', 'i', ' '),
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KEY_OSD_DATA = FOURCC_META('o', 's', 'd', ' '),
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KEY_OSD_DATA2 = FOURCC_META('o', 's', 'd', '2'),
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KEY_USER_DATA = FOURCC_META('u', 's', 'r', 'd'),
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KEY_USER_DATAS = FOURCC_META('u', 'r', 'd', 's'),
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/* num of inter different size predicted block */
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KEY_LVL64_INTER_NUM = FOURCC_META('l', '6', '4', 'p'),
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KEY_LVL32_INTER_NUM = FOURCC_META('l', '3', '2', 'p'),
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KEY_LVL16_INTER_NUM = FOURCC_META('l', '1', '6', 'p'),
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KEY_LVL8_INTER_NUM = FOURCC_META('l', '8', 'p', ' '),
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/* num of intra different size predicted block */
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KEY_LVL32_INTRA_NUM = FOURCC_META('l', '3', '2', 'i'),
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KEY_LVL16_INTRA_NUM = FOURCC_META('l', '1', '6', 'i'),
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KEY_LVL8_INTRA_NUM = FOURCC_META('l', '8', 'i', ' '),
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KEY_LVL4_INTRA_NUM = FOURCC_META('l', '4', 'i', ' '),
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/* output P skip frame indicator */
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KEY_OUTPUT_PSKIP = FOURCC_META('o', 'p', 's', 'p'),
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/*
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* Input P-skip frame request
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* KEY_INPUT_PSKIP: The skip frame will be referenced in the next frame.
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* KEY_INPUT_PSKIP_NON_REF: The skip frame will not be referenced as a frame.
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*/
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KEY_INPUT_PSKIP = FOURCC_META('i', 'p', 's', 'p'),
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KEY_INPUT_PSKIP_NON_REF = FOURCC_META('i', 'p', 'n', 'r'),
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KEY_ENC_SSE = FOURCC_META('e', 's', 's', 'e'),
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/*
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* For vepu580 roi buffer config mode
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* The encoder roi structure is so complex that we should provide a buffer
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* tunnel for externl user to config encoder hardware by direct sending
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* roi data buffer.
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* This way can reduce the config parsing and roi buffer data generating
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* overhead in mpp.
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*/
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KEY_ROI_DATA2 = FOURCC_META('r', 'o', 'i', '2'),
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/*
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* qpmap for rv1109/1126 encoder qpmap config
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* Input data is a MppBuffer which contains an array of 16bit Vepu541RoiCfg.
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* And each 16bit represents a 16x16 block qp info.
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*
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* H.264 - 16x16 block qp is arranged in raster order:
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* each value is a 16bit data
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* 00 01 02 03 04 05 06 07 -> 00 01 02 03 04 05 06 07
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* 10 11 12 13 14 15 16 17 10 11 12 13 14 15 16 17
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* 20 21 22 23 24 25 26 27 20 21 22 23 24 25 26 27
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* 30 31 32 33 34 35 36 37 30 31 32 33 34 35 36 37
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*
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* H.265 - 16x16 block qp is reorder to 64x64/32x32 ctu order then 64x64 / 32x32 ctu raster order
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* 64x64 ctu
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* 00 01 02 03 04 05 06 07 -> 00 01 02 03 10 11 12 13 20 21 22 23 30 31 32 33 04 05 06 07 14 15 16 17 24 25 26 27 34 35 36 37
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* 10 11 12 13 14 15 16 17
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* 20 21 22 23 24 25 26 27
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* 30 31 32 33 34 35 36 37
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* 32x32 ctu
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* 00 01 02 03 04 05 06 07 -> 00 01 10 11 02 03 12 13 04 05 14 15 06 07 16 17
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* 10 11 12 13 14 15 16 17 20 21 30 31 22 23 32 33 24 25 34 35 26 27 36 37
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* 20 21 22 23 24 25 26 27
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* 30 31 32 33 34 35 36 37
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*/
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KEY_QPMAP0 = FOURCC_META('e', 'q', 'm', '0'),
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/* input motion list for smart p rate control */
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KEY_MV_LIST = FOURCC_META('m', 'v', 'l', 't'),
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/* frame long-term reference frame operation */
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KEY_ENC_MARK_LTR = FOURCC_META('m', 'l', 't', 'r'),
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KEY_ENC_USE_LTR = FOURCC_META('u', 'l', 't', 'r'),
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/* MLVEC specified encoder feature */
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KEY_ENC_FRAME_QP = FOURCC_META('f', 'r', 'm', 'q'),
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KEY_ENC_BASE_LAYER_PID = FOURCC_META('b', 'p', 'i', 'd'),
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/* Thumbnail info for decoder output frame */
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KEY_DEC_TBN_EN = FOURCC_META('t', 'b', 'e', 'n'),
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KEY_DEC_TBN_Y_OFFSET = FOURCC_META('t', 'b', 'y', 'o'),
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KEY_DEC_TBN_UV_OFFSET = FOURCC_META('t', 'b', 'c', 'o'),
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} MppMetaKey;
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#define mpp_meta_get(meta) mpp_meta_get_with_tag(meta, MODULE_TAG, __FUNCTION__)
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#include "mpp_frame.h"
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#include "mpp_packet.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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MPP_RET mpp_meta_get_with_tag(MppMeta *meta, const char *tag, const char *caller);
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MPP_RET mpp_meta_put(MppMeta meta);
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RK_S32 mpp_meta_size(MppMeta meta);
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MPP_RET mpp_meta_set_s32(MppMeta meta, MppMetaKey key, RK_S32 val);
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MPP_RET mpp_meta_set_s64(MppMeta meta, MppMetaKey key, RK_S64 val);
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MPP_RET mpp_meta_set_ptr(MppMeta meta, MppMetaKey key, void *val);
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MPP_RET mpp_meta_get_s32(MppMeta meta, MppMetaKey key, RK_S32 *val);
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MPP_RET mpp_meta_get_s64(MppMeta meta, MppMetaKey key, RK_S64 *val);
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MPP_RET mpp_meta_get_ptr(MppMeta meta, MppMetaKey key, void **val);
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MPP_RET mpp_meta_set_frame (MppMeta meta, MppMetaKey key, MppFrame frame);
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MPP_RET mpp_meta_set_packet(MppMeta meta, MppMetaKey key, MppPacket packet);
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MPP_RET mpp_meta_set_buffer(MppMeta meta, MppMetaKey key, MppBuffer buffer);
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MPP_RET mpp_meta_get_frame (MppMeta meta, MppMetaKey key, MppFrame *frame);
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MPP_RET mpp_meta_get_packet(MppMeta meta, MppMetaKey key, MppPacket *packet);
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MPP_RET mpp_meta_get_buffer(MppMeta meta, MppMetaKey key, MppBuffer *buffer);
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MPP_RET mpp_meta_get_s32_d(MppMeta meta, MppMetaKey key, RK_S32 *val, RK_S32 def);
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MPP_RET mpp_meta_get_s64_d(MppMeta meta, MppMetaKey key, RK_S64 *val, RK_S64 def);
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MPP_RET mpp_meta_get_ptr_d(MppMeta meta, MppMetaKey key, void **val, void *def);
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MPP_RET mpp_meta_get_frame_d(MppMeta meta, MppMetaKey key, MppFrame *frame, MppFrame def);
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MPP_RET mpp_meta_get_packet_d(MppMeta meta, MppMetaKey key, MppPacket *packet, MppPacket def);
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MPP_RET mpp_meta_get_buffer_d(MppMeta meta, MppMetaKey key, MppBuffer *buffer, MppBuffer def);
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#ifdef __cplusplus
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}
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#endif
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#endif /*__MPP_META_H__*/
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