| /* |
| * Copyright (c) 2021, Alliance for Open Media. All rights reserved |
| * |
| * This source code is subject to the terms of the BSD 3-Clause Clear License |
| * and the Alliance for Open Media Patent License 1.0. If the BSD 3-Clause Clear |
| * License was not distributed with this source code in the LICENSE file, you |
| * can obtain it at aomedia.org/license/software-license/bsd-3-c-c/. If the |
| * Alliance for Open Media Patent License 1.0 was not distributed with this |
| * source code in the PATENTS file, you can obtain it at |
| * aomedia.org/license/patent-license/. |
| */ |
| |
| #ifndef AOM_AV1_COMMON_QUANT_COMMON_H_ |
| #define AOM_AV1_COMMON_QUANT_COMMON_H_ |
| |
| #include <stdbool.h> |
| #include "aom/aom_codec.h" |
| #include "av1/common/seg_common.h" |
| #include "av1/common/enums.h" |
| #include "av1/common/entropy.h" |
| |
| #ifdef __cplusplus |
| extern "C" { |
| #endif |
| |
| #if CONFIG_DQ |
| #define TCQ_HDR_FLAG 1 // Enable through header flag(s) |
| #define DQENABLE 0 // Determine whether to use DQ by dq_enable() |
| #define NEWQINDEX 1 // QP shift |
| #define QINDEX_INCR 2 // tunable QP index increment |
| #define NEWHR 1 // 1:parity is determined by (base + LR) |
| #else |
| #define TCQ_HDR_FLAG 0 |
| #define DQENABLE 0 // Determine whether to use DQ by dq_enable() |
| #define NEWQINDEX 0 // QP shift |
| #define NEWHR 0 |
| #endif |
| #define TCQ_MAX_STATES 8 |
| |
| #define PHTHRESH 4 |
| #define MINQ 0 |
| #define QINDEX_BITS 9 |
| #define QINDEX_BITS_UNEXT 8 |
| #define MAXQ_8_BITS 255 |
| #define MAXQ_OFFSET 24 |
| #define MAXQ (255 + 4 * MAXQ_OFFSET) |
| #define MAXQ_10_BITS (255 + 2 * MAXQ_OFFSET) |
| #define QINDEX_RANGE (MAXQ - MINQ + 1) |
| #define QINDEX_RANGE_8_BITS (MAXQ_8_BITS - MINQ + 1) |
| #define QINDEX_RANGE_10_BITS (MAXQ_10_BITS - MINQ + 1) |
| |
| // Total number of QM sets stored |
| #define QM_LEVEL_BITS 4 |
| #define NUM_QM_LEVELS (1 << QM_LEVEL_BITS) |
| /* Range of QMS is between first and last value, with offset applied to inter |
| * blocks*/ |
| #define DEFAULT_QM_Y 10 |
| #define DEFAULT_QM_U 11 |
| #define DEFAULT_QM_V 12 |
| #define DEFAULT_QM_FIRST 5 |
| #define DEFAULT_QM_LAST 9 |
| |
| struct AV1Common; |
| struct CommonQuantParams; |
| struct macroblockd; |
| |
| #if CONFIG_DQ |
| // TCQ modes: 4/8 state, frame adaptivity |
| enum { |
| TCQ_DISABLE = 0, |
| TCQ_4ST = 1, |
| TCQ_8ST = 2, |
| TCQ_4ST_FR = 3, |
| TCQ_8ST_FR = 4 |
| }; |
| |
| static INLINE bool tcq_quant(const int state) { |
| // 8-states: A0: state 0/1/4/5, A1: state 2/3/6/7 |
| // 4-states: A0: state 0/1, A1: state 2/3 |
| return state & 2; |
| } |
| |
| #define DQMIN 0 |
| #define DQMAX 1024 |
| static INLINE bool dq_enable(int enable_tcq, TX_SIZE tx_size, int plane) { |
| int dq_en = enable_tcq != 0; |
| #if DQENABLE |
| int width = get_txb_wide(tx_size); |
| int height = get_txb_high(tx_size); |
| dq_en &= ((width * height <= DQMAX) && |
| (width * height >= DQMIN)); // try other constraints? |
| #else |
| (void)tx_size; |
| (void)plane; |
| #endif |
| return dq_en; |
| } |
| |
| int tcq_parity(int absLevel, int limits); |
| int tcq_init_state(int tcq_mode); |
| int tcq_next_state(const int curState, const int absLevel, const int limits); |
| #endif |
| |
| int32_t av1_dc_quant_QTX(int qindex, int delta, int base_dc_delta_q, |
| aom_bit_depth_t bit_depth); |
| int32_t av1_ac_quant_QTX(int qindex, int delta, aom_bit_depth_t bit_depth); |
| |
| #if CONFIG_DQ |
| static INLINE int32_t av1_dc_quant_QTX_tcq(int qindex, int delta, |
| int base_dc_delta_q, |
| aom_bit_depth_t bit_depth, |
| int use_tcq_offset) { |
| if (use_tcq_offset && qindex != 0) { |
| #if NEWQINDEX |
| qindex += QINDEX_INCR; |
| #endif |
| } |
| return av1_dc_quant_QTX(qindex, delta, base_dc_delta_q, bit_depth); |
| } |
| |
| static INLINE int32_t av1_ac_quant_QTX_tcq(int qindex, int delta, |
| aom_bit_depth_t bit_depth, |
| int use_tcq_offset) { |
| if (use_tcq_offset && qindex != 0) { |
| #if NEWQINDEX |
| qindex += QINDEX_INCR; |
| #endif |
| } |
| return av1_ac_quant_QTX(qindex, delta, bit_depth); |
| } |
| #endif |
| |
| int av1_get_qindex(const struct segmentation *seg, int segment_id, |
| int base_qindex, aom_bit_depth_t bit_depth); |
| |
| // Returns true if we are using quantization matrix. |
| bool av1_use_qmatrix(const struct CommonQuantParams *quant_params, |
| const struct macroblockd *xd, int segment_id); |
| |
| // Reduce the large number of quantizers to a smaller number of levels for which |
| // different matrices may be defined |
| static INLINE int aom_get_qmlevel(int qindex, int first, int last, |
| aom_bit_depth_t bit_depth) { |
| return first + (qindex * (last + 1 - first)) / |
| (bit_depth == AOM_BITS_8 ? QINDEX_RANGE_8_BITS |
| : bit_depth == AOM_BITS_10 ? QINDEX_RANGE_10_BITS |
| : QINDEX_RANGE); |
| } |
| |
| // Initialize all global quant/dequant matrices. |
| void av1_qm_init(struct CommonQuantParams *quant_params, int num_planes); |
| |
| // Get global dequant matrix. |
| const qm_val_t *av1_iqmatrix(const struct CommonQuantParams *quant_params, |
| int qmlevel, int plane, TX_SIZE tx_size); |
| // Get global quant matrix. |
| const qm_val_t *av1_qmatrix(const struct CommonQuantParams *quant_params, |
| int qmlevel, int plane, TX_SIZE tx_size); |
| |
| // Get either local / global dequant matrix as appropriate. |
| const qm_val_t *av1_get_iqmatrix(const struct CommonQuantParams *quant_params, |
| const struct macroblockd *xd, int plane, |
| TX_SIZE tx_size, TX_TYPE tx_type); |
| // Get either local / global quant matrix as appropriate. |
| const qm_val_t *av1_get_qmatrix(const struct CommonQuantParams *quant_params, |
| const struct macroblockd *xd, int plane, |
| TX_SIZE tx_size, TX_TYPE tx_type); |
| |
| #ifdef __cplusplus |
| } // extern "C" |
| #endif |
| |
| #endif // AOM_AV1_COMMON_QUANT_COMMON_H_ |