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452 lines
14 KiB
C
452 lines
14 KiB
C
/*
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* Copyright (c) 2016, Alliance for Open Media. All rights reserved
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*
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* This source code is subject to the terms of the BSD 2 Clause License and
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* the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
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* was not distributed with this source code in the LICENSE file, you can
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* obtain it at www.aomedia.org/license/software. If the Alliance for Open
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* Media Patent License 1.0 was not distributed with this source code in the
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* PATENTS file, you can obtain it at www.aomedia.org/license/patent.
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*/
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#ifndef AOM_AV1_ENCODER_BLOCK_H_
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#define AOM_AV1_ENCODER_BLOCK_H_
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#include "av1/common/entropymv.h"
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#include "av1/common/entropy.h"
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#include "av1/common/mvref_common.h"
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#include "av1/encoder/hash.h"
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#if CONFIG_DIST_8X8
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#include "aom/aomcx.h"
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#endif
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#ifdef __cplusplus
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extern "C" {
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#endif
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typedef struct {
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unsigned int sse;
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int sum;
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unsigned int var;
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} DIFF;
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typedef struct macroblock_plane {
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DECLARE_ALIGNED(16, int16_t, src_diff[MAX_SB_SQUARE]);
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tran_low_t *qcoeff;
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tran_low_t *coeff;
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uint16_t *eobs;
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uint8_t *txb_entropy_ctx;
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struct buf_2d src;
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// Quantizer setings
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// These are used/accessed only in the quantization process
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// RDO does not / must not depend on any of these values
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// All values below share the coefficient scale/shift used in TX
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const int16_t *quant_fp_QTX;
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const int16_t *round_fp_QTX;
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const int16_t *quant_QTX;
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const int16_t *quant_shift_QTX;
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const int16_t *zbin_QTX;
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const int16_t *round_QTX;
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const int16_t *dequant_QTX;
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} MACROBLOCK_PLANE;
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typedef struct {
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int txb_skip_cost[TXB_SKIP_CONTEXTS][2];
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int base_eob_cost[SIG_COEF_CONTEXTS_EOB][3];
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int base_cost[SIG_COEF_CONTEXTS][4];
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int eob_extra_cost[EOB_COEF_CONTEXTS][2];
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int dc_sign_cost[DC_SIGN_CONTEXTS][2];
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int lps_cost[LEVEL_CONTEXTS][COEFF_BASE_RANGE + 1];
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} LV_MAP_COEFF_COST;
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typedef struct {
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int eob_cost[2][11];
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} LV_MAP_EOB_COST;
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typedef struct {
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tran_low_t tcoeff[MAX_MB_PLANE][MAX_SB_SQUARE];
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uint16_t eobs[MAX_MB_PLANE][MAX_SB_SQUARE / (TX_SIZE_W_MIN * TX_SIZE_H_MIN)];
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uint8_t txb_skip_ctx[MAX_MB_PLANE]
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[MAX_SB_SQUARE / (TX_SIZE_W_MIN * TX_SIZE_H_MIN)];
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int dc_sign_ctx[MAX_MB_PLANE]
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[MAX_SB_SQUARE / (TX_SIZE_W_MIN * TX_SIZE_H_MIN)];
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} CB_COEFF_BUFFER;
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typedef struct {
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int16_t mode_context[MODE_CTX_REF_FRAMES];
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// TODO(angiebird): Reduce the buffer size according to sb_type
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tran_low_t *tcoeff[MAX_MB_PLANE];
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uint16_t *eobs[MAX_MB_PLANE];
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uint8_t *txb_skip_ctx[MAX_MB_PLANE];
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int *dc_sign_ctx[MAX_MB_PLANE];
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uint8_t ref_mv_count[MODE_CTX_REF_FRAMES];
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CANDIDATE_MV ref_mv_stack[MODE_CTX_REF_FRAMES][MAX_REF_MV_STACK_SIZE];
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int_mv global_mvs[REF_FRAMES];
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int16_t compound_mode_context[MODE_CTX_REF_FRAMES];
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} MB_MODE_INFO_EXT;
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typedef struct {
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int col_min;
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int col_max;
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int row_min;
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int row_max;
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} MvLimits;
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typedef struct {
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uint8_t best_palette_color_map[MAX_PALETTE_SQUARE];
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int kmeans_data_buf[2 * MAX_PALETTE_SQUARE];
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} PALETTE_BUFFER;
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typedef struct {
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TX_SIZE tx_size;
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TX_SIZE inter_tx_size[INTER_TX_SIZE_BUF_LEN];
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uint8_t blk_skip[MAX_MIB_SIZE * MAX_MIB_SIZE];
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TX_TYPE txk_type[TXK_TYPE_BUF_LEN];
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RD_STATS rd_stats;
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uint32_t hash_value;
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} MB_RD_INFO;
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#define RD_RECORD_BUFFER_LEN 8
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typedef struct {
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MB_RD_INFO tx_rd_info[RD_RECORD_BUFFER_LEN]; // Circular buffer.
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int index_start;
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int num;
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CRC32C crc_calculator; // Hash function.
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} MB_RD_RECORD;
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typedef struct {
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int64_t dist;
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int64_t sse;
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int rate;
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uint16_t eob;
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TX_TYPE tx_type;
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uint16_t entropy_context;
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uint8_t txb_entropy_ctx;
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uint8_t valid;
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uint8_t fast; // This is not being used now.
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} TXB_RD_INFO;
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#define TX_SIZE_RD_RECORD_BUFFER_LEN 256
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typedef struct {
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uint32_t hash_vals[TX_SIZE_RD_RECORD_BUFFER_LEN];
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TXB_RD_INFO tx_rd_info[TX_SIZE_RD_RECORD_BUFFER_LEN];
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int index_start;
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int num;
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} TXB_RD_RECORD;
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typedef struct tx_size_rd_info_node {
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TXB_RD_INFO *rd_info_array; // Points to array of size TX_TYPES.
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struct tx_size_rd_info_node *children[4];
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} TXB_RD_INFO_NODE;
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// Region size for mode decision sampling in the first pass of partition
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// search(two_pass_partition_search speed feature), in units of mi size(4).
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// Used by the mode_pruning_based_on_two_pass_partition_search speed feature.
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#define FIRST_PARTITION_PASS_SAMPLE_REGION 8
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#define FIRST_PARTITION_PASS_SAMPLE_REGION_LOG2 3
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#define FIRST_PARTITION_PASS_STATS_TABLES \
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(MAX_MIB_SIZE >> FIRST_PARTITION_PASS_SAMPLE_REGION_LOG2) * \
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(MAX_MIB_SIZE >> FIRST_PARTITION_PASS_SAMPLE_REGION_LOG2)
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#define FIRST_PARTITION_PASS_STATS_STRIDE \
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(MAX_MIB_SIZE_LOG2 - FIRST_PARTITION_PASS_SAMPLE_REGION_LOG2)
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static INLINE int av1_first_partition_pass_stats_index(int mi_row, int mi_col) {
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const int row =
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(mi_row & MAX_MIB_MASK) >> FIRST_PARTITION_PASS_SAMPLE_REGION_LOG2;
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const int col =
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(mi_col & MAX_MIB_MASK) >> FIRST_PARTITION_PASS_SAMPLE_REGION_LOG2;
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return (row << FIRST_PARTITION_PASS_STATS_STRIDE) + col;
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}
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typedef struct {
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uint8_t ref0_counts[REF_FRAMES]; // Counters for ref_frame[0].
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uint8_t ref1_counts[REF_FRAMES]; // Counters for ref_frame[1].
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int sample_counts; // Number of samples collected.
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} FIRST_PARTITION_PASS_STATS;
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#define MAX_INTERP_FILTER_STATS 64
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typedef struct {
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InterpFilters filters;
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int_mv mv[2];
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int8_t ref_frames[2];
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COMPOUND_TYPE comp_type;
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} INTERPOLATION_FILTER_STATS;
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typedef struct macroblock MACROBLOCK;
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struct macroblock {
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struct macroblock_plane plane[MAX_MB_PLANE];
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// Determine if one would go with reduced complexity transform block
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// search model to select prediction modes, or full complexity model
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// to select transform kernel.
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int rd_model;
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// Indicate if the encoder is running in the first pass partition search.
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// In that case, apply certain speed features therein to reduce the overhead
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// cost in the first pass search.
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int cb_partition_scan;
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FIRST_PARTITION_PASS_STATS
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first_partition_pass_stats[FIRST_PARTITION_PASS_STATS_TABLES];
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// [comp_idx][saved stat_idx]
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INTERPOLATION_FILTER_STATS interp_filter_stats[2][MAX_INTERP_FILTER_STATS];
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int interp_filter_stats_idx[2];
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// Activate constrained coding block partition search range.
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int use_cb_search_range;
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// Inter macroblock RD search info.
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MB_RD_RECORD mb_rd_record;
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// Inter transform block RD search info. for square TX sizes.
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TXB_RD_RECORD txb_rd_record_8X8[(MAX_MIB_SIZE >> 1) * (MAX_MIB_SIZE >> 1)];
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TXB_RD_RECORD txb_rd_record_16X16[(MAX_MIB_SIZE >> 2) * (MAX_MIB_SIZE >> 2)];
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TXB_RD_RECORD txb_rd_record_32X32[(MAX_MIB_SIZE >> 3) * (MAX_MIB_SIZE >> 3)];
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TXB_RD_RECORD txb_rd_record_64X64[(MAX_MIB_SIZE >> 4) * (MAX_MIB_SIZE >> 4)];
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// Intra transform block RD search info. for square TX sizes.
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TXB_RD_RECORD txb_rd_record_intra;
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MACROBLOCKD e_mbd;
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MB_MODE_INFO_EXT *mbmi_ext;
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int skip_block;
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int qindex;
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// The equivalent error at the current rdmult of one whole bit (not one
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// bitcost unit).
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int errorperbit;
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// The equivalend SAD error of one (whole) bit at the current quantizer
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// for large blocks.
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int sadperbit16;
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// The equivalend SAD error of one (whole) bit at the current quantizer
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// for sub-8x8 blocks.
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int sadperbit4;
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int rdmult;
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int mb_energy;
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int sb_energy_level;
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int *m_search_count_ptr;
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int *ex_search_count_ptr;
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unsigned int txb_split_count;
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// These are set to their default values at the beginning, and then adjusted
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// further in the encoding process.
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BLOCK_SIZE min_partition_size;
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BLOCK_SIZE max_partition_size;
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unsigned int max_mv_context[REF_FRAMES];
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unsigned int source_variance;
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unsigned int pred_sse[REF_FRAMES];
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int pred_mv_sad[REF_FRAMES];
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int *nmvjointcost;
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int nmv_vec_cost[MV_JOINTS];
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int *nmvcost[2];
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int *nmvcost_hp[2];
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int **mv_cost_stack;
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int **mvcost;
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int32_t *wsrc_buf;
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int32_t *mask_buf;
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uint8_t *above_pred_buf;
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uint8_t *left_pred_buf;
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PALETTE_BUFFER *palette_buffer;
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CONV_BUF_TYPE *tmp_conv_dst;
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uint8_t *tmp_obmc_bufs[2];
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// buffer for hash value calculation of a block
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// used only in av1_get_block_hash_value()
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// [first hash/second hash]
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// [two buffers used ping-pong]
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uint32_t *hash_value_buffer[2][2];
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CRC_CALCULATOR crc_calculator1;
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CRC_CALCULATOR crc_calculator2;
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int g_crc_initialized;
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// These define limits to motion vector components to prevent them
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// from extending outside the UMV borders
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MvLimits mv_limits;
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uint8_t blk_skip[MAX_MIB_SIZE * MAX_MIB_SIZE];
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int skip;
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int skip_chroma_rd;
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int skip_cost[SKIP_CONTEXTS][2];
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int skip_mode; // 0: off; 1: on
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int skip_mode_cost[SKIP_CONTEXTS][2];
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int compound_idx;
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LV_MAP_COEFF_COST coeff_costs[TX_SIZES][PLANE_TYPES];
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LV_MAP_EOB_COST eob_costs[7][2];
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uint16_t cb_offset;
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// mode costs
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int intra_inter_cost[INTRA_INTER_CONTEXTS][2];
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int mbmode_cost[BLOCK_SIZE_GROUPS][INTRA_MODES];
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int newmv_mode_cost[NEWMV_MODE_CONTEXTS][2];
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int zeromv_mode_cost[GLOBALMV_MODE_CONTEXTS][2];
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int refmv_mode_cost[REFMV_MODE_CONTEXTS][2];
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int drl_mode_cost0[DRL_MODE_CONTEXTS][2];
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int comp_inter_cost[COMP_INTER_CONTEXTS][2];
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int single_ref_cost[REF_CONTEXTS][SINGLE_REFS - 1][2];
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int comp_ref_type_cost[COMP_REF_TYPE_CONTEXTS]
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[CDF_SIZE(COMP_REFERENCE_TYPES)];
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int uni_comp_ref_cost[UNI_COMP_REF_CONTEXTS][UNIDIR_COMP_REFS - 1]
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[CDF_SIZE(2)];
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// Cost for signaling ref_frame[0] (LAST_FRAME, LAST2_FRAME, LAST3_FRAME or
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// GOLDEN_FRAME) in bidir-comp mode.
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int comp_ref_cost[REF_CONTEXTS][FWD_REFS - 1][2];
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// Cost for signaling ref_frame[1] (ALTREF_FRAME, ALTREF2_FRAME, or
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// BWDREF_FRAME) in bidir-comp mode.
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int comp_bwdref_cost[REF_CONTEXTS][BWD_REFS - 1][2];
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int inter_compound_mode_cost[INTER_MODE_CONTEXTS][INTER_COMPOUND_MODES];
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int compound_type_cost[BLOCK_SIZES_ALL][COMPOUND_TYPES - 1];
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int wedge_idx_cost[BLOCK_SIZES_ALL][16];
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int interintra_cost[BLOCK_SIZE_GROUPS][2];
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int wedge_interintra_cost[BLOCK_SIZES_ALL][2];
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int interintra_mode_cost[BLOCK_SIZE_GROUPS][INTERINTRA_MODES];
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int motion_mode_cost[BLOCK_SIZES_ALL][MOTION_MODES];
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int motion_mode_cost1[BLOCK_SIZES_ALL][2];
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int intra_uv_mode_cost[CFL_ALLOWED_TYPES][INTRA_MODES][UV_INTRA_MODES];
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int y_mode_costs[INTRA_MODES][INTRA_MODES][INTRA_MODES];
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int filter_intra_cost[BLOCK_SIZES_ALL][2];
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int filter_intra_mode_cost[FILTER_INTRA_MODES];
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int switchable_interp_costs[SWITCHABLE_FILTER_CONTEXTS][SWITCHABLE_FILTERS];
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int partition_cost[PARTITION_CONTEXTS][EXT_PARTITION_TYPES];
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int palette_y_size_cost[PALATTE_BSIZE_CTXS][PALETTE_SIZES];
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int palette_uv_size_cost[PALATTE_BSIZE_CTXS][PALETTE_SIZES];
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int palette_y_color_cost[PALETTE_SIZES][PALETTE_COLOR_INDEX_CONTEXTS]
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[PALETTE_COLORS];
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int palette_uv_color_cost[PALETTE_SIZES][PALETTE_COLOR_INDEX_CONTEXTS]
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[PALETTE_COLORS];
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int palette_y_mode_cost[PALATTE_BSIZE_CTXS][PALETTE_Y_MODE_CONTEXTS][2];
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int palette_uv_mode_cost[PALETTE_UV_MODE_CONTEXTS][2];
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// The rate associated with each alpha codeword
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int cfl_cost[CFL_JOINT_SIGNS][CFL_PRED_PLANES][CFL_ALPHABET_SIZE];
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int tx_size_cost[TX_SIZES - 1][TX_SIZE_CONTEXTS][TX_SIZES];
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int txfm_partition_cost[TXFM_PARTITION_CONTEXTS][2];
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int inter_tx_type_costs[EXT_TX_SETS_INTER][EXT_TX_SIZES][TX_TYPES];
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int intra_tx_type_costs[EXT_TX_SETS_INTRA][EXT_TX_SIZES][INTRA_MODES]
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[TX_TYPES];
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int angle_delta_cost[DIRECTIONAL_MODES][2 * MAX_ANGLE_DELTA + 1];
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int switchable_restore_cost[RESTORE_SWITCHABLE_TYPES];
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int wiener_restore_cost[2];
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int sgrproj_restore_cost[2];
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int intrabc_cost[2];
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// Used to store sub partition's choices.
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MV pred_mv[REF_FRAMES];
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// Store the best motion vector during motion search
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int_mv best_mv;
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// Store the second best motion vector during full-pixel motion search
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int_mv second_best_mv;
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// use default transform and skip transform type search for intra modes
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int use_default_intra_tx_type;
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// use default transform and skip transform type search for inter modes
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int use_default_inter_tx_type;
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#if CONFIG_DIST_8X8
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int using_dist_8x8;
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aom_tune_metric tune_metric;
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#endif // CONFIG_DIST_8X8
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int comp_idx_cost[COMP_INDEX_CONTEXTS][2];
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int comp_group_idx_cost[COMP_GROUP_IDX_CONTEXTS][2];
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// Bit flags for pruning tx type search, tx split, etc.
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int tx_search_prune[EXT_TX_SET_TYPES];
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int must_find_valid_partition;
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int tx_split_prune_flag; // Flag to skip tx split RD search.
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int recalc_luma_mc_data; // Flag to indicate recalculation of MC data during
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// interpolation filter search
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};
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static INLINE int is_rect_tx_allowed_bsize(BLOCK_SIZE bsize) {
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static const char LUT[BLOCK_SIZES_ALL] = {
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0, // BLOCK_4X4
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1, // BLOCK_4X8
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1, // BLOCK_8X4
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0, // BLOCK_8X8
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1, // BLOCK_8X16
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1, // BLOCK_16X8
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0, // BLOCK_16X16
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1, // BLOCK_16X32
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1, // BLOCK_32X16
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0, // BLOCK_32X32
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1, // BLOCK_32X64
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1, // BLOCK_64X32
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0, // BLOCK_64X64
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0, // BLOCK_64X128
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0, // BLOCK_128X64
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0, // BLOCK_128X128
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1, // BLOCK_4X16
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1, // BLOCK_16X4
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1, // BLOCK_8X32
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1, // BLOCK_32X8
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1, // BLOCK_16X64
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1, // BLOCK_64X16
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};
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return LUT[bsize];
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}
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static INLINE int is_rect_tx_allowed(const MACROBLOCKD *xd,
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const MB_MODE_INFO *mbmi) {
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return is_rect_tx_allowed_bsize(mbmi->sb_type) &&
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!xd->lossless[mbmi->segment_id];
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}
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static INLINE int tx_size_to_depth(TX_SIZE tx_size, BLOCK_SIZE bsize) {
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TX_SIZE ctx_size = max_txsize_rect_lookup[bsize];
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int depth = 0;
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while (tx_size != ctx_size) {
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depth++;
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ctx_size = sub_tx_size_map[ctx_size];
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assert(depth <= MAX_TX_DEPTH);
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}
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return depth;
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}
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static INLINE void set_blk_skip(MACROBLOCK *x, int plane, int blk_idx,
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int skip) {
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if (skip)
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x->blk_skip[blk_idx] |= 1UL << plane;
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else
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x->blk_skip[blk_idx] &= ~(1UL << plane);
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#ifndef NDEBUG
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// Set chroma planes to uninitialized states when luma is set to check if
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// it will be set later
|
|
if (plane == 0) {
|
|
x->blk_skip[blk_idx] |= 1UL << (1 + 4);
|
|
x->blk_skip[blk_idx] |= 1UL << (2 + 4);
|
|
}
|
|
|
|
// Clear the initialization checking bit
|
|
x->blk_skip[blk_idx] &= ~(1UL << (plane + 4));
|
|
#endif
|
|
}
|
|
|
|
static INLINE int is_blk_skip(MACROBLOCK *x, int plane, int blk_idx) {
|
|
#ifndef NDEBUG
|
|
// Check if this is initialized
|
|
assert(!(x->blk_skip[blk_idx] & (1UL << (plane + 4))));
|
|
|
|
// The magic number is 0x77, this is to test if there is garbage data
|
|
assert((x->blk_skip[blk_idx] & 0x88) == 0);
|
|
#endif
|
|
return (x->blk_skip[blk_idx] >> plane) & 1;
|
|
}
|
|
|
|
#ifdef __cplusplus
|
|
} // extern "C"
|
|
#endif
|
|
|
|
#endif // AOM_AV1_ENCODER_BLOCK_H_
|