/src/aom/av1/common/cfl.h
Line | Count | Source |
1 | | /* |
2 | | * Copyright (c) 2016, Alliance for Open Media. All rights reserved. |
3 | | * |
4 | | * This source code is subject to the terms of the BSD 2 Clause License and |
5 | | * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License |
6 | | * was not distributed with this source code in the LICENSE file, you can |
7 | | * obtain it at www.aomedia.org/license/software. If the Alliance for Open |
8 | | * Media Patent License 1.0 was not distributed with this source code in the |
9 | | * PATENTS file, you can obtain it at www.aomedia.org/license/patent. |
10 | | */ |
11 | | |
12 | | #ifndef AOM_AV1_COMMON_CFL_H_ |
13 | | #define AOM_AV1_COMMON_CFL_H_ |
14 | | |
15 | | #include "av1/common/av1_common_int.h" |
16 | | #include "av1/common/blockd.h" |
17 | | |
18 | | // Can we use CfL for the current block? |
19 | 5.19M | static inline CFL_ALLOWED_TYPE is_cfl_allowed(const MACROBLOCKD *xd) { |
20 | 5.19M | const MB_MODE_INFO *mbmi = xd->mi[0]; |
21 | 5.19M | const BLOCK_SIZE bsize = mbmi->bsize; |
22 | 5.19M | assert(bsize < BLOCK_SIZES_ALL); |
23 | 5.19M | if (xd->lossless[mbmi->segment_id]) { |
24 | | // In lossless, CfL is available when the partition size is equal to the |
25 | | // transform size. |
26 | 447k | const int ssx = xd->plane[AOM_PLANE_U].subsampling_x; |
27 | 447k | const int ssy = xd->plane[AOM_PLANE_U].subsampling_y; |
28 | 447k | const int plane_bsize = get_plane_block_size(bsize, ssx, ssy); |
29 | 447k | return (CFL_ALLOWED_TYPE)(plane_bsize == BLOCK_4X4); |
30 | 447k | } |
31 | | // Spec: CfL is available to luma partitions lesser than or equal to 32x32 |
32 | 4.75M | return (CFL_ALLOWED_TYPE)(block_size_wide[bsize] <= 32 && |
33 | 4.52M | block_size_high[bsize] <= 32); |
34 | 5.19M | } Unexecuted instantiation: decodeframe.c:is_cfl_allowed decodemv.c:is_cfl_allowed Line | Count | Source | 19 | 5.19M | static inline CFL_ALLOWED_TYPE is_cfl_allowed(const MACROBLOCKD *xd) { | 20 | 5.19M | const MB_MODE_INFO *mbmi = xd->mi[0]; | 21 | 5.19M | const BLOCK_SIZE bsize = mbmi->bsize; | 22 | 5.19M | assert(bsize < BLOCK_SIZES_ALL); | 23 | 5.19M | if (xd->lossless[mbmi->segment_id]) { | 24 | | // In lossless, CfL is available when the partition size is equal to the | 25 | | // transform size. | 26 | 447k | const int ssx = xd->plane[AOM_PLANE_U].subsampling_x; | 27 | 447k | const int ssy = xd->plane[AOM_PLANE_U].subsampling_y; | 28 | 447k | const int plane_bsize = get_plane_block_size(bsize, ssx, ssy); | 29 | 447k | return (CFL_ALLOWED_TYPE)(plane_bsize == BLOCK_4X4); | 30 | 447k | } | 31 | | // Spec: CfL is available to luma partitions lesser than or equal to 32x32 | 32 | 4.75M | return (CFL_ALLOWED_TYPE)(block_size_wide[bsize] <= 32 && | 33 | 4.52M | block_size_high[bsize] <= 32); | 34 | 5.19M | } |
Unexecuted instantiation: av1_cx_iface.c:is_cfl_allowed Unexecuted instantiation: allintra_vis.c:is_cfl_allowed Unexecuted instantiation: bitstream.c:is_cfl_allowed Unexecuted instantiation: encodeframe.c:is_cfl_allowed Unexecuted instantiation: encodeframe_utils.c:is_cfl_allowed Unexecuted instantiation: encodemb.c:is_cfl_allowed Unexecuted instantiation: encoder.c:is_cfl_allowed Unexecuted instantiation: encoder_utils.c:is_cfl_allowed Unexecuted instantiation: encodetxb.c:is_cfl_allowed Unexecuted instantiation: ethread.c:is_cfl_allowed Unexecuted instantiation: firstpass.c:is_cfl_allowed Unexecuted instantiation: global_motion_facade.c:is_cfl_allowed Unexecuted instantiation: mcomp.c:is_cfl_allowed Unexecuted instantiation: palette.c:is_cfl_allowed Unexecuted instantiation: partition_search.c:is_cfl_allowed Unexecuted instantiation: partition_strategy.c:is_cfl_allowed Unexecuted instantiation: rd.c:is_cfl_allowed Unexecuted instantiation: rdopt.c:is_cfl_allowed Unexecuted instantiation: nonrd_pickmode.c:is_cfl_allowed Unexecuted instantiation: nonrd_opt.c:is_cfl_allowed Unexecuted instantiation: speed_features.c:is_cfl_allowed Unexecuted instantiation: superres_scale.c:is_cfl_allowed Unexecuted instantiation: svc_layercontext.c:is_cfl_allowed Unexecuted instantiation: temporal_filter.c:is_cfl_allowed Unexecuted instantiation: tokenize.c:is_cfl_allowed Unexecuted instantiation: tpl_model.c:is_cfl_allowed Unexecuted instantiation: tx_search.c:is_cfl_allowed Unexecuted instantiation: intra_mode_search.c:is_cfl_allowed Unexecuted instantiation: var_based_part.c:is_cfl_allowed Unexecuted instantiation: cfl.c:is_cfl_allowed Unexecuted instantiation: reconintra.c:is_cfl_allowed Unexecuted instantiation: compound_type.c:is_cfl_allowed Unexecuted instantiation: encode_strategy.c:is_cfl_allowed Unexecuted instantiation: interp_search.c:is_cfl_allowed Unexecuted instantiation: motion_search_facade.c:is_cfl_allowed |
35 | | |
36 | | // Do we need to save the luma pixels from the current block, |
37 | | // for a possible future CfL prediction? |
38 | | static inline CFL_ALLOWED_TYPE store_cfl_required(const AV1_COMMON *cm, |
39 | 14.7M | const MACROBLOCKD *xd) { |
40 | 14.7M | const MB_MODE_INFO *mbmi = xd->mi[0]; |
41 | | |
42 | 14.7M | if (cm->seq_params->monochrome) return CFL_DISALLOWED; |
43 | | |
44 | 13.3M | if (!xd->is_chroma_ref) { |
45 | | // For non-chroma-reference blocks, we should always store the luma pixels, |
46 | | // in case the corresponding chroma-reference block uses CfL. |
47 | | // Note that this can only happen for block sizes which are <8 on |
48 | | // their shortest side, as otherwise they would be chroma reference |
49 | | // blocks. |
50 | 599k | return CFL_ALLOWED; |
51 | 599k | } |
52 | | |
53 | | // If this block has chroma information, we know whether we're |
54 | | // actually going to perform a CfL prediction |
55 | 12.7M | return (CFL_ALLOWED_TYPE)(!is_inter_block(mbmi) && |
56 | 12.5M | mbmi->uv_mode == UV_CFL_PRED); |
57 | 13.3M | } decodeframe.c:store_cfl_required Line | Count | Source | 39 | 8.99M | const MACROBLOCKD *xd) { | 40 | 8.99M | const MB_MODE_INFO *mbmi = xd->mi[0]; | 41 | | | 42 | 8.99M | if (cm->seq_params->monochrome) return CFL_DISALLOWED; | 43 | | | 44 | 7.79M | if (!xd->is_chroma_ref) { | 45 | | // For non-chroma-reference blocks, we should always store the luma pixels, | 46 | | // in case the corresponding chroma-reference block uses CfL. | 47 | | // Note that this can only happen for block sizes which are <8 on | 48 | | // their shortest side, as otherwise they would be chroma reference | 49 | | // blocks. | 50 | 282k | return CFL_ALLOWED; | 51 | 282k | } | 52 | | | 53 | | // If this block has chroma information, we know whether we're | 54 | | // actually going to perform a CfL prediction | 55 | 7.51M | return (CFL_ALLOWED_TYPE)(!is_inter_block(mbmi) && | 56 | 7.39M | mbmi->uv_mode == UV_CFL_PRED); | 57 | 7.79M | } |
decodemv.c:store_cfl_required Line | Count | Source | 39 | 5.72M | const MACROBLOCKD *xd) { | 40 | 5.72M | const MB_MODE_INFO *mbmi = xd->mi[0]; | 41 | | | 42 | 5.72M | if (cm->seq_params->monochrome) return CFL_DISALLOWED; | 43 | | | 44 | 5.56M | if (!xd->is_chroma_ref) { | 45 | | // For non-chroma-reference blocks, we should always store the luma pixels, | 46 | | // in case the corresponding chroma-reference block uses CfL. | 47 | | // Note that this can only happen for block sizes which are <8 on | 48 | | // their shortest side, as otherwise they would be chroma reference | 49 | | // blocks. | 50 | 317k | return CFL_ALLOWED; | 51 | 317k | } | 52 | | | 53 | | // If this block has chroma information, we know whether we're | 54 | | // actually going to perform a CfL prediction | 55 | 5.24M | return (CFL_ALLOWED_TYPE)(!is_inter_block(mbmi) && | 56 | 5.19M | mbmi->uv_mode == UV_CFL_PRED); | 57 | 5.56M | } |
Unexecuted instantiation: av1_cx_iface.c:store_cfl_required Unexecuted instantiation: allintra_vis.c:store_cfl_required Unexecuted instantiation: bitstream.c:store_cfl_required Unexecuted instantiation: encodeframe.c:store_cfl_required Unexecuted instantiation: encodeframe_utils.c:store_cfl_required Unexecuted instantiation: encodemb.c:store_cfl_required Unexecuted instantiation: encoder.c:store_cfl_required Unexecuted instantiation: encoder_utils.c:store_cfl_required Unexecuted instantiation: encodetxb.c:store_cfl_required Unexecuted instantiation: ethread.c:store_cfl_required Unexecuted instantiation: firstpass.c:store_cfl_required Unexecuted instantiation: global_motion_facade.c:store_cfl_required Unexecuted instantiation: mcomp.c:store_cfl_required Unexecuted instantiation: palette.c:store_cfl_required Unexecuted instantiation: partition_search.c:store_cfl_required Unexecuted instantiation: partition_strategy.c:store_cfl_required Unexecuted instantiation: rd.c:store_cfl_required Unexecuted instantiation: rdopt.c:store_cfl_required Unexecuted instantiation: nonrd_pickmode.c:store_cfl_required Unexecuted instantiation: nonrd_opt.c:store_cfl_required Unexecuted instantiation: speed_features.c:store_cfl_required Unexecuted instantiation: superres_scale.c:store_cfl_required Unexecuted instantiation: svc_layercontext.c:store_cfl_required Unexecuted instantiation: temporal_filter.c:store_cfl_required Unexecuted instantiation: tokenize.c:store_cfl_required Unexecuted instantiation: tpl_model.c:store_cfl_required Unexecuted instantiation: tx_search.c:store_cfl_required Unexecuted instantiation: intra_mode_search.c:store_cfl_required Unexecuted instantiation: var_based_part.c:store_cfl_required Unexecuted instantiation: cfl.c:store_cfl_required Unexecuted instantiation: reconintra.c:store_cfl_required Unexecuted instantiation: compound_type.c:store_cfl_required Unexecuted instantiation: encode_strategy.c:store_cfl_required Unexecuted instantiation: interp_search.c:store_cfl_required Unexecuted instantiation: motion_search_facade.c:store_cfl_required |
58 | | |
59 | 223M | static inline int get_scaled_luma_q0(int alpha_q3, int16_t pred_buf_q3) { |
60 | 223M | int scaled_luma_q6 = alpha_q3 * pred_buf_q3; |
61 | 223M | return ROUND_POWER_OF_TWO_SIGNED(scaled_luma_q6, 6); |
62 | 223M | } Unexecuted instantiation: decodeframe.c:get_scaled_luma_q0 Unexecuted instantiation: decodemv.c:get_scaled_luma_q0 Unexecuted instantiation: av1_cx_iface.c:get_scaled_luma_q0 Unexecuted instantiation: allintra_vis.c:get_scaled_luma_q0 Unexecuted instantiation: bitstream.c:get_scaled_luma_q0 Unexecuted instantiation: encodeframe.c:get_scaled_luma_q0 Unexecuted instantiation: encodeframe_utils.c:get_scaled_luma_q0 Unexecuted instantiation: encodemb.c:get_scaled_luma_q0 Unexecuted instantiation: encoder.c:get_scaled_luma_q0 Unexecuted instantiation: encoder_utils.c:get_scaled_luma_q0 Unexecuted instantiation: encodetxb.c:get_scaled_luma_q0 Unexecuted instantiation: ethread.c:get_scaled_luma_q0 Unexecuted instantiation: firstpass.c:get_scaled_luma_q0 Unexecuted instantiation: global_motion_facade.c:get_scaled_luma_q0 Unexecuted instantiation: mcomp.c:get_scaled_luma_q0 Unexecuted instantiation: palette.c:get_scaled_luma_q0 Unexecuted instantiation: partition_search.c:get_scaled_luma_q0 Unexecuted instantiation: partition_strategy.c:get_scaled_luma_q0 Unexecuted instantiation: rd.c:get_scaled_luma_q0 Unexecuted instantiation: rdopt.c:get_scaled_luma_q0 Unexecuted instantiation: nonrd_pickmode.c:get_scaled_luma_q0 Unexecuted instantiation: nonrd_opt.c:get_scaled_luma_q0 Unexecuted instantiation: speed_features.c:get_scaled_luma_q0 Unexecuted instantiation: superres_scale.c:get_scaled_luma_q0 Unexecuted instantiation: svc_layercontext.c:get_scaled_luma_q0 Unexecuted instantiation: temporal_filter.c:get_scaled_luma_q0 Unexecuted instantiation: tokenize.c:get_scaled_luma_q0 Unexecuted instantiation: tpl_model.c:get_scaled_luma_q0 Unexecuted instantiation: tx_search.c:get_scaled_luma_q0 Unexecuted instantiation: intra_mode_search.c:get_scaled_luma_q0 Unexecuted instantiation: var_based_part.c:get_scaled_luma_q0 Line | Count | Source | 59 | 223M | static inline int get_scaled_luma_q0(int alpha_q3, int16_t pred_buf_q3) { | 60 | 223M | int scaled_luma_q6 = alpha_q3 * pred_buf_q3; | 61 | 223M | return ROUND_POWER_OF_TWO_SIGNED(scaled_luma_q6, 6); | 62 | 223M | } |
Unexecuted instantiation: reconintra.c:get_scaled_luma_q0 Unexecuted instantiation: compound_type.c:get_scaled_luma_q0 Unexecuted instantiation: encode_strategy.c:get_scaled_luma_q0 Unexecuted instantiation: interp_search.c:get_scaled_luma_q0 Unexecuted instantiation: motion_search_facade.c:get_scaled_luma_q0 |
63 | | |
64 | 2.01M | static inline CFL_PRED_TYPE get_cfl_pred_type(int plane) { |
65 | 2.01M | assert(plane > 0); |
66 | 2.01M | return (CFL_PRED_TYPE)(plane - 1); |
67 | 2.01M | } Unexecuted instantiation: decodeframe.c:get_cfl_pred_type Unexecuted instantiation: decodemv.c:get_cfl_pred_type Unexecuted instantiation: av1_cx_iface.c:get_cfl_pred_type Unexecuted instantiation: allintra_vis.c:get_cfl_pred_type Unexecuted instantiation: bitstream.c:get_cfl_pred_type Unexecuted instantiation: encodeframe.c:get_cfl_pred_type Unexecuted instantiation: encodeframe_utils.c:get_cfl_pred_type Unexecuted instantiation: encodemb.c:get_cfl_pred_type Unexecuted instantiation: encoder.c:get_cfl_pred_type Unexecuted instantiation: encoder_utils.c:get_cfl_pred_type Unexecuted instantiation: encodetxb.c:get_cfl_pred_type Unexecuted instantiation: ethread.c:get_cfl_pred_type Unexecuted instantiation: firstpass.c:get_cfl_pred_type Unexecuted instantiation: global_motion_facade.c:get_cfl_pred_type Unexecuted instantiation: mcomp.c:get_cfl_pred_type Unexecuted instantiation: palette.c:get_cfl_pred_type Unexecuted instantiation: partition_search.c:get_cfl_pred_type Unexecuted instantiation: partition_strategy.c:get_cfl_pred_type Unexecuted instantiation: rd.c:get_cfl_pred_type Unexecuted instantiation: rdopt.c:get_cfl_pred_type Unexecuted instantiation: nonrd_pickmode.c:get_cfl_pred_type Unexecuted instantiation: nonrd_opt.c:get_cfl_pred_type Unexecuted instantiation: speed_features.c:get_cfl_pred_type Unexecuted instantiation: superres_scale.c:get_cfl_pred_type Unexecuted instantiation: svc_layercontext.c:get_cfl_pred_type Unexecuted instantiation: temporal_filter.c:get_cfl_pred_type Unexecuted instantiation: tokenize.c:get_cfl_pred_type Unexecuted instantiation: tpl_model.c:get_cfl_pred_type Unexecuted instantiation: tx_search.c:get_cfl_pred_type Unexecuted instantiation: intra_mode_search.c:get_cfl_pred_type Unexecuted instantiation: var_based_part.c:get_cfl_pred_type Unexecuted instantiation: cfl.c:get_cfl_pred_type reconintra.c:get_cfl_pred_type Line | Count | Source | 64 | 2.01M | static inline CFL_PRED_TYPE get_cfl_pred_type(int plane) { | 65 | | assert(plane > 0); | 66 | 2.01M | return (CFL_PRED_TYPE)(plane - 1); | 67 | 2.01M | } |
Unexecuted instantiation: compound_type.c:get_cfl_pred_type Unexecuted instantiation: encode_strategy.c:get_cfl_pred_type Unexecuted instantiation: interp_search.c:get_cfl_pred_type Unexecuted instantiation: motion_search_facade.c:get_cfl_pred_type |
68 | | |
69 | 121k | static inline void clear_cfl_dc_pred_cache_flags(CFL_CTX *cfl) { |
70 | 121k | cfl->use_dc_pred_cache = false; |
71 | 121k | cfl->dc_pred_is_cached[CFL_PRED_U] = false; |
72 | 121k | cfl->dc_pred_is_cached[CFL_PRED_V] = false; |
73 | 121k | } Unexecuted instantiation: decodeframe.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: decodemv.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: av1_cx_iface.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: allintra_vis.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: bitstream.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encodeframe.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encodeframe_utils.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encodemb.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encoder.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encoder_utils.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encodetxb.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: ethread.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: firstpass.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: global_motion_facade.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: mcomp.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: palette.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: partition_search.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: partition_strategy.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: rd.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: rdopt.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: nonrd_pickmode.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: nonrd_opt.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: speed_features.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: superres_scale.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: svc_layercontext.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: temporal_filter.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: tokenize.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: tpl_model.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: tx_search.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: intra_mode_search.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: var_based_part.c:clear_cfl_dc_pred_cache_flags cfl.c:clear_cfl_dc_pred_cache_flags Line | Count | Source | 69 | 121k | static inline void clear_cfl_dc_pred_cache_flags(CFL_CTX *cfl) { | 70 | 121k | cfl->use_dc_pred_cache = false; | 71 | 121k | cfl->dc_pred_is_cached[CFL_PRED_U] = false; | 72 | | cfl->dc_pred_is_cached[CFL_PRED_V] = false; | 73 | 121k | } |
Unexecuted instantiation: reconintra.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: compound_type.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: encode_strategy.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: interp_search.c:clear_cfl_dc_pred_cache_flags Unexecuted instantiation: motion_search_facade.c:clear_cfl_dc_pred_cache_flags |
74 | | |
75 | | void av1_cfl_predict_block(MACROBLOCKD *const xd, uint8_t *dst, int dst_stride, |
76 | | TX_SIZE tx_size, int plane); |
77 | | |
78 | | void cfl_store_block(MACROBLOCKD *const xd, BLOCK_SIZE bsize, TX_SIZE tx_size); |
79 | | |
80 | | void cfl_store_tx(MACROBLOCKD *const xd, int row, int col, TX_SIZE tx_size, |
81 | | BLOCK_SIZE bsize); |
82 | | |
83 | | void cfl_store_dc_pred(MACROBLOCKD *const xd, const uint8_t *input, |
84 | | CFL_PRED_TYPE pred_plane, int width); |
85 | | |
86 | | void cfl_load_dc_pred(MACROBLOCKD *const xd, uint8_t *dst, int dst_stride, |
87 | | TX_SIZE tx_size, CFL_PRED_TYPE pred_plane); |
88 | | |
89 | | // Allows the CFL_SUBSAMPLE function to switch types depending on the bitdepth. |
90 | | #define CFL_lbd_TYPE uint8_t *cfl_type |
91 | | #define CFL_hbd_TYPE uint16_t *cfl_type |
92 | | |
93 | | // Declare a size-specific wrapper for the size-generic function. The compiler |
94 | | // will inline the size generic function in here, the advantage is that the size |
95 | | // will be constant allowing for loop unrolling and other constant propagated |
96 | | // goodness. |
97 | | #define CFL_SUBSAMPLE(arch, sub, bd, width, height) \ |
98 | | void cfl_subsample_##bd##_##sub##_##width##x##height##_##arch( \ |
99 | | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3); \ |
100 | | void cfl_subsample_##bd##_##sub##_##width##x##height##_##arch( \ |
101 | 1.41M | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ |
102 | 1.41M | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ |
103 | 1.41M | output_q3, width, height); \ |
104 | 1.41M | } cfl_subsample_lbd_420_4x4_c Line | Count | Source | 101 | 45.3k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 45.3k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 45.3k | output_q3, width, height); \ | 104 | 45.3k | } |
cfl_subsample_lbd_420_8x8_c Line | Count | Source | 101 | 33.0k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 33.0k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 33.0k | output_q3, width, height); \ | 104 | 33.0k | } |
cfl_subsample_lbd_420_16x16_c Line | Count | Source | 101 | 12.7k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 12.7k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 12.7k | output_q3, width, height); \ | 104 | 12.7k | } |
cfl_subsample_lbd_420_32x32_c Line | Count | Source | 101 | 3.15k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 3.15k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 3.15k | output_q3, width, height); \ | 104 | 3.15k | } |
cfl_subsample_lbd_420_4x8_c Line | Count | Source | 101 | 15.7k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 15.7k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 15.7k | output_q3, width, height); \ | 104 | 15.7k | } |
cfl_subsample_lbd_420_8x4_c Line | Count | Source | 101 | 31.6k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 31.6k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 31.6k | output_q3, width, height); \ | 104 | 31.6k | } |
cfl_subsample_lbd_420_8x16_c Line | Count | Source | 101 | 8.76k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 8.76k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 8.76k | output_q3, width, height); \ | 104 | 8.76k | } |
cfl_subsample_lbd_420_16x8_c Line | Count | Source | 101 | 12.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 12.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 12.1k | output_q3, width, height); \ | 104 | 12.1k | } |
cfl_subsample_lbd_420_16x32_c Line | Count | Source | 101 | 6.91k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 6.91k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 6.91k | output_q3, width, height); \ | 104 | 6.91k | } |
cfl_subsample_lbd_420_32x16_c Line | Count | Source | 101 | 2.05k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 2.05k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 2.05k | output_q3, width, height); \ | 104 | 2.05k | } |
cfl_subsample_lbd_420_4x16_c Line | Count | Source | 101 | 96.4k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 96.4k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 96.4k | output_q3, width, height); \ | 104 | 96.4k | } |
cfl_subsample_lbd_420_16x4_c Line | Count | Source | 101 | 23.7k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 23.7k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 23.7k | output_q3, width, height); \ | 104 | 23.7k | } |
cfl_subsample_lbd_420_8x32_c Line | Count | Source | 101 | 2.48k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 2.48k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 2.48k | output_q3, width, height); \ | 104 | 2.48k | } |
cfl_subsample_lbd_420_32x8_c Line | Count | Source | 101 | 3.43k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 3.43k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 3.43k | output_q3, width, height); \ | 104 | 3.43k | } |
cfl_subsample_lbd_422_4x4_c Line | Count | Source | 101 | 735 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 735 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 735 | output_q3, width, height); \ | 104 | 735 | } |
cfl_subsample_lbd_422_8x8_c Line | Count | Source | 101 | 148 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 148 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 148 | output_q3, width, height); \ | 104 | 148 | } |
cfl_subsample_lbd_422_16x16_c Line | Count | Source | 101 | 123 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 123 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 123 | output_q3, width, height); \ | 104 | 123 | } |
cfl_subsample_lbd_422_32x32_c Line | Count | Source | 101 | 52 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 52 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 52 | output_q3, width, height); \ | 104 | 52 | } |
Unexecuted instantiation: cfl_subsample_lbd_422_4x8_c cfl_subsample_lbd_422_8x4_c Line | Count | Source | 101 | 28 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 28 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 28 | output_q3, width, height); \ | 104 | 28 | } |
Unexecuted instantiation: cfl_subsample_lbd_422_8x16_c cfl_subsample_lbd_422_16x8_c Line | Count | Source | 101 | 127 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 127 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 127 | output_q3, width, height); \ | 104 | 127 | } |
Unexecuted instantiation: cfl_subsample_lbd_422_16x32_c cfl_subsample_lbd_422_32x16_c Line | Count | Source | 101 | 42 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 42 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 42 | output_q3, width, height); \ | 104 | 42 | } |
Unexecuted instantiation: cfl_subsample_lbd_422_4x16_c cfl_subsample_lbd_422_16x4_c Line | Count | Source | 101 | 116 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 116 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 116 | output_q3, width, height); \ | 104 | 116 | } |
Unexecuted instantiation: cfl_subsample_lbd_422_8x32_c cfl_subsample_lbd_422_32x8_c Line | Count | Source | 101 | 611 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 611 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 611 | output_q3, width, height); \ | 104 | 611 | } |
cfl_subsample_lbd_444_4x4_c Line | Count | Source | 101 | 142k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 142k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 142k | output_q3, width, height); \ | 104 | 142k | } |
cfl_subsample_lbd_444_8x8_c Line | Count | Source | 101 | 76.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 76.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 76.1k | output_q3, width, height); \ | 104 | 76.1k | } |
cfl_subsample_lbd_444_16x16_c Line | Count | Source | 101 | 25.9k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 25.9k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 25.9k | output_q3, width, height); \ | 104 | 25.9k | } |
cfl_subsample_lbd_444_32x32_c Line | Count | Source | 101 | 9.02k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 9.02k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 9.02k | output_q3, width, height); \ | 104 | 9.02k | } |
cfl_subsample_lbd_444_4x8_c Line | Count | Source | 101 | 19.8k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 19.8k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 19.8k | output_q3, width, height); \ | 104 | 19.8k | } |
cfl_subsample_lbd_444_8x4_c Line | Count | Source | 101 | 25.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 25.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 25.1k | output_q3, width, height); \ | 104 | 25.1k | } |
cfl_subsample_lbd_444_8x16_c Line | Count | Source | 101 | 21.6k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 21.6k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 21.6k | output_q3, width, height); \ | 104 | 21.6k | } |
cfl_subsample_lbd_444_16x8_c Line | Count | Source | 101 | 28.9k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 28.9k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 28.9k | output_q3, width, height); \ | 104 | 28.9k | } |
cfl_subsample_lbd_444_16x32_c Line | Count | Source | 101 | 7.21k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 7.21k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 7.21k | output_q3, width, height); \ | 104 | 7.21k | } |
cfl_subsample_lbd_444_32x16_c Line | Count | Source | 101 | 6.60k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 6.60k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 6.60k | output_q3, width, height); \ | 104 | 6.60k | } |
cfl_subsample_lbd_444_4x16_c Line | Count | Source | 101 | 26.3k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 26.3k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 26.3k | output_q3, width, height); \ | 104 | 26.3k | } |
cfl_subsample_lbd_444_16x4_c Line | Count | Source | 101 | 27.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 27.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 27.1k | output_q3, width, height); \ | 104 | 27.1k | } |
cfl_subsample_lbd_444_8x32_c Line | Count | Source | 101 | 29.8k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 29.8k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 29.8k | output_q3, width, height); \ | 104 | 29.8k | } |
cfl_subsample_lbd_444_32x8_c Line | Count | Source | 101 | 10.4k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 10.4k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 10.4k | output_q3, width, height); \ | 104 | 10.4k | } |
cfl_subsample_hbd_420_4x4_c Line | Count | Source | 101 | 49.8k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 49.8k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 49.8k | output_q3, width, height); \ | 104 | 49.8k | } |
cfl_subsample_hbd_420_8x8_c Line | Count | Source | 101 | 38.3k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 38.3k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 38.3k | output_q3, width, height); \ | 104 | 38.3k | } |
cfl_subsample_hbd_420_16x16_c Line | Count | Source | 101 | 10.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 10.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 10.1k | output_q3, width, height); \ | 104 | 10.1k | } |
cfl_subsample_hbd_420_32x32_c Line | Count | Source | 101 | 2.91k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 2.91k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 2.91k | output_q3, width, height); \ | 104 | 2.91k | } |
cfl_subsample_hbd_420_4x8_c Line | Count | Source | 101 | 17.0k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 17.0k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 17.0k | output_q3, width, height); \ | 104 | 17.0k | } |
cfl_subsample_hbd_420_8x4_c Line | Count | Source | 101 | 26.9k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 26.9k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 26.9k | output_q3, width, height); \ | 104 | 26.9k | } |
cfl_subsample_hbd_420_8x16_c Line | Count | Source | 101 | 8.03k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 8.03k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 8.03k | output_q3, width, height); \ | 104 | 8.03k | } |
cfl_subsample_hbd_420_16x8_c Line | Count | Source | 101 | 9.72k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 9.72k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 9.72k | output_q3, width, height); \ | 104 | 9.72k | } |
cfl_subsample_hbd_420_16x32_c Line | Count | Source | 101 | 6.29k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 6.29k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 6.29k | output_q3, width, height); \ | 104 | 6.29k | } |
cfl_subsample_hbd_420_32x16_c Line | Count | Source | 101 | 2.03k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 2.03k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 2.03k | output_q3, width, height); \ | 104 | 2.03k | } |
cfl_subsample_hbd_420_4x16_c Line | Count | Source | 101 | 79.6k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 79.6k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 79.6k | output_q3, width, height); \ | 104 | 79.6k | } |
cfl_subsample_hbd_420_16x4_c Line | Count | Source | 101 | 24.4k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 24.4k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 24.4k | output_q3, width, height); \ | 104 | 24.4k | } |
cfl_subsample_hbd_420_8x32_c Line | Count | Source | 101 | 3.09k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 3.09k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 3.09k | output_q3, width, height); \ | 104 | 3.09k | } |
cfl_subsample_hbd_420_32x8_c Line | Count | Source | 101 | 2.81k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 2.81k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 2.81k | output_q3, width, height); \ | 104 | 2.81k | } |
cfl_subsample_hbd_422_4x4_c Line | Count | Source | 101 | 574 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 574 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 574 | output_q3, width, height); \ | 104 | 574 | } |
cfl_subsample_hbd_422_8x8_c Line | Count | Source | 101 | 251 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 251 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 251 | output_q3, width, height); \ | 104 | 251 | } |
cfl_subsample_hbd_422_16x16_c Line | Count | Source | 101 | 727 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 727 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 727 | output_q3, width, height); \ | 104 | 727 | } |
cfl_subsample_hbd_422_32x32_c Line | Count | Source | 101 | 28 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 28 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 28 | output_q3, width, height); \ | 104 | 28 | } |
Unexecuted instantiation: cfl_subsample_hbd_422_4x8_c cfl_subsample_hbd_422_8x4_c Line | Count | Source | 101 | 38 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 38 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 38 | output_q3, width, height); \ | 104 | 38 | } |
Unexecuted instantiation: cfl_subsample_hbd_422_8x16_c cfl_subsample_hbd_422_16x8_c Line | Count | Source | 101 | 38 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 38 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 38 | output_q3, width, height); \ | 104 | 38 | } |
Unexecuted instantiation: cfl_subsample_hbd_422_16x32_c cfl_subsample_hbd_422_32x16_c Line | Count | Source | 101 | 646 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 646 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 646 | output_q3, width, height); \ | 104 | 646 | } |
Unexecuted instantiation: cfl_subsample_hbd_422_4x16_c cfl_subsample_hbd_422_16x4_c Line | Count | Source | 101 | 43 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 43 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 43 | output_q3, width, height); \ | 104 | 43 | } |
Unexecuted instantiation: cfl_subsample_hbd_422_8x32_c cfl_subsample_hbd_422_32x8_c Line | Count | Source | 101 | 39 | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 39 | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 39 | output_q3, width, height); \ | 104 | 39 | } |
cfl_subsample_hbd_444_4x4_c Line | Count | Source | 101 | 76.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 76.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 76.1k | output_q3, width, height); \ | 104 | 76.1k | } |
cfl_subsample_hbd_444_8x8_c Line | Count | Source | 101 | 87.8k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 87.8k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 87.8k | output_q3, width, height); \ | 104 | 87.8k | } |
cfl_subsample_hbd_444_16x16_c Line | Count | Source | 101 | 23.7k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 23.7k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 23.7k | output_q3, width, height); \ | 104 | 23.7k | } |
cfl_subsample_hbd_444_32x32_c Line | Count | Source | 101 | 9.57k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 9.57k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 9.57k | output_q3, width, height); \ | 104 | 9.57k | } |
cfl_subsample_hbd_444_4x8_c Line | Count | Source | 101 | 19.2k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 19.2k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 19.2k | output_q3, width, height); \ | 104 | 19.2k | } |
cfl_subsample_hbd_444_8x4_c Line | Count | Source | 101 | 25.5k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 25.5k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 25.5k | output_q3, width, height); \ | 104 | 25.5k | } |
cfl_subsample_hbd_444_8x16_c Line | Count | Source | 101 | 20.6k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 20.6k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 20.6k | output_q3, width, height); \ | 104 | 20.6k | } |
cfl_subsample_hbd_444_16x8_c Line | Count | Source | 101 | 29.4k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 29.4k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 29.4k | output_q3, width, height); \ | 104 | 29.4k | } |
cfl_subsample_hbd_444_16x32_c Line | Count | Source | 101 | 9.65k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 9.65k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 9.65k | output_q3, width, height); \ | 104 | 9.65k | } |
cfl_subsample_hbd_444_32x16_c Line | Count | Source | 101 | 6.39k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 6.39k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 6.39k | output_q3, width, height); \ | 104 | 6.39k | } |
cfl_subsample_hbd_444_4x16_c Line | Count | Source | 101 | 15.5k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 15.5k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 15.5k | output_q3, width, height); \ | 104 | 15.5k | } |
cfl_subsample_hbd_444_16x4_c Line | Count | Source | 101 | 22.5k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 22.5k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 22.5k | output_q3, width, height); \ | 104 | 22.5k | } |
cfl_subsample_hbd_444_8x32_c Line | Count | Source | 101 | 15.1k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 15.1k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 15.1k | output_q3, width, height); \ | 104 | 15.1k | } |
cfl_subsample_hbd_444_32x8_c Line | Count | Source | 101 | 11.3k | const CFL_##bd##_TYPE, int input_stride, uint16_t *output_q3) { \ | 102 | 11.3k | cfl_luma_subsampling_##sub##_##bd##_##arch(cfl_type, input_stride, \ | 103 | 11.3k | output_q3, width, height); \ | 104 | 11.3k | } |
|
105 | | |
106 | | // Declare size-specific wrappers for all valid CfL sizes. |
107 | | #define CFL_SUBSAMPLE_FUNCTIONS(arch, sub, bd) \ |
108 | | CFL_SUBSAMPLE(arch, sub, bd, 4, 4) \ |
109 | | CFL_SUBSAMPLE(arch, sub, bd, 8, 8) \ |
110 | | CFL_SUBSAMPLE(arch, sub, bd, 16, 16) \ |
111 | | CFL_SUBSAMPLE(arch, sub, bd, 32, 32) \ |
112 | | CFL_SUBSAMPLE(arch, sub, bd, 4, 8) \ |
113 | | CFL_SUBSAMPLE(arch, sub, bd, 8, 4) \ |
114 | | CFL_SUBSAMPLE(arch, sub, bd, 8, 16) \ |
115 | | CFL_SUBSAMPLE(arch, sub, bd, 16, 8) \ |
116 | | CFL_SUBSAMPLE(arch, sub, bd, 16, 32) \ |
117 | | CFL_SUBSAMPLE(arch, sub, bd, 32, 16) \ |
118 | | CFL_SUBSAMPLE(arch, sub, bd, 4, 16) \ |
119 | | CFL_SUBSAMPLE(arch, sub, bd, 16, 4) \ |
120 | | CFL_SUBSAMPLE(arch, sub, bd, 8, 32) \ |
121 | | CFL_SUBSAMPLE(arch, sub, bd, 32, 8) \ |
122 | | cfl_subsample_##bd##_fn cfl_get_luma_subsampling_##sub##_##bd##_##arch( \ |
123 | 1.41M | TX_SIZE tx_size) { \ |
124 | 1.41M | CFL_SUBSAMPLE_FUNCTION_ARRAY(arch, sub, bd) \ |
125 | 1.41M | return subfn_##sub[tx_size]; \ |
126 | 1.41M | } |
127 | | |
128 | | // Declare an architecture-specific array of function pointers for size-specific |
129 | | // wrappers. |
130 | | #define CFL_SUBSAMPLE_FUNCTION_ARRAY(arch, sub, bd) \ |
131 | 1.41M | static const cfl_subsample_##bd##_fn subfn_##sub[TX_SIZES_ALL] = { \ |
132 | 1.41M | cfl_subsample_##bd##_##sub##_4x4_##arch, /* 4x4 */ \ |
133 | 1.41M | cfl_subsample_##bd##_##sub##_8x8_##arch, /* 8x8 */ \ |
134 | 1.41M | cfl_subsample_##bd##_##sub##_16x16_##arch, /* 16x16 */ \ |
135 | 1.41M | cfl_subsample_##bd##_##sub##_32x32_##arch, /* 32x32 */ \ |
136 | 1.41M | NULL, /* 64x64 (invalid CFL size) */ \ |
137 | 1.41M | cfl_subsample_##bd##_##sub##_4x8_##arch, /* 4x8 */ \ |
138 | 1.41M | cfl_subsample_##bd##_##sub##_8x4_##arch, /* 8x4 */ \ |
139 | 1.41M | cfl_subsample_##bd##_##sub##_8x16_##arch, /* 8x16 */ \ |
140 | 1.41M | cfl_subsample_##bd##_##sub##_16x8_##arch, /* 16x8 */ \ |
141 | 1.41M | cfl_subsample_##bd##_##sub##_16x32_##arch, /* 16x32 */ \ |
142 | 1.41M | cfl_subsample_##bd##_##sub##_32x16_##arch, /* 32x16 */ \ |
143 | 1.41M | NULL, /* 32x64 (invalid CFL size) */ \ |
144 | 1.41M | NULL, /* 64x32 (invalid CFL size) */ \ |
145 | 1.41M | cfl_subsample_##bd##_##sub##_4x16_##arch, /* 4x16 */ \ |
146 | 1.41M | cfl_subsample_##bd##_##sub##_16x4_##arch, /* 16x4 */ \ |
147 | 1.41M | cfl_subsample_##bd##_##sub##_8x32_##arch, /* 8x32 */ \ |
148 | 1.41M | cfl_subsample_##bd##_##sub##_32x8_##arch, /* 32x8 */ \ |
149 | 1.41M | NULL, /* 16x64 (invalid CFL size) */ \ |
150 | 1.41M | NULL, /* 64x16 (invalid CFL size) */ \ |
151 | 1.41M | }; |
152 | | |
153 | | // The RTCD script does not support passing in an array, so we wrap it in this |
154 | | // function. |
155 | | #if CONFIG_AV1_HIGHBITDEPTH |
156 | | #define CFL_GET_SUBSAMPLE_FUNCTION(arch) \ |
157 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 420, lbd) \ |
158 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 422, lbd) \ |
159 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 444, lbd) \ |
160 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 420, hbd) \ |
161 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 422, hbd) \ |
162 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 444, hbd) |
163 | | #else |
164 | | #define CFL_GET_SUBSAMPLE_FUNCTION(arch) \ |
165 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 420, lbd) \ |
166 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 422, lbd) \ |
167 | | CFL_SUBSAMPLE_FUNCTIONS(arch, 444, lbd) |
168 | | #endif |
169 | | |
170 | | // Declare a size-specific wrapper for the size-generic function. The compiler |
171 | | // will inline the size generic function in here, the advantage is that the size |
172 | | // will be constant allowing for loop unrolling and other constant propagated |
173 | | // goodness. |
174 | | #define CFL_SUB_AVG_X(arch, width, height, round_offset, num_pel_log2) \ |
175 | | void cfl_subtract_average_##width##x##height##_##arch(const uint16_t *src, \ |
176 | | int16_t *dst); \ |
177 | | void cfl_subtract_average_##width##x##height##_##arch(const uint16_t *src, \ |
178 | 1.00M | int16_t *dst) { \ |
179 | 1.00M | subtract_average_##arch(src, dst, width, height, round_offset, \ |
180 | 1.00M | num_pel_log2); \ |
181 | 1.00M | } cfl_subtract_average_4x4_c Line | Count | Source | 178 | 242k | int16_t *dst) { \ | 179 | 242k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 242k | num_pel_log2); \ | 181 | 242k | } |
cfl_subtract_average_4x8_c Line | Count | Source | 178 | 136k | int16_t *dst) { \ | 179 | 136k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 136k | num_pel_log2); \ | 181 | 136k | } |
cfl_subtract_average_4x16_c Line | Count | Source | 178 | 50.2k | int16_t *dst) { \ | 179 | 50.2k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 50.2k | num_pel_log2); \ | 181 | 50.2k | } |
cfl_subtract_average_8x4_c Line | Count | Source | 178 | 78.9k | int16_t *dst) { \ | 179 | 78.9k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 78.9k | num_pel_log2); \ | 181 | 78.9k | } |
cfl_subtract_average_8x8_c Line | Count | Source | 178 | 133k | int16_t *dst) { \ | 179 | 133k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 133k | num_pel_log2); \ | 181 | 133k | } |
cfl_subtract_average_8x16_c Line | Count | Source | 178 | 59.3k | int16_t *dst) { \ | 179 | 59.3k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 59.3k | num_pel_log2); \ | 181 | 59.3k | } |
cfl_subtract_average_8x32_c Line | Count | Source | 178 | 45.7k | int16_t *dst) { \ | 179 | 45.7k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 45.7k | num_pel_log2); \ | 181 | 45.7k | } |
cfl_subtract_average_16x4_c Line | Count | Source | 178 | 60.4k | int16_t *dst) { \ | 179 | 60.4k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 60.4k | num_pel_log2); \ | 181 | 60.4k | } |
cfl_subtract_average_16x8_c Line | Count | Source | 178 | 67.4k | int16_t *dst) { \ | 179 | 67.4k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 67.4k | num_pel_log2); \ | 181 | 67.4k | } |
cfl_subtract_average_16x16_c Line | Count | Source | 178 | 58.5k | int16_t *dst) { \ | 179 | 58.5k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 58.5k | num_pel_log2); \ | 181 | 58.5k | } |
cfl_subtract_average_16x32_c Line | Count | Source | 178 | 17.8k | int16_t *dst) { \ | 179 | 17.8k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 17.8k | num_pel_log2); \ | 181 | 17.8k | } |
cfl_subtract_average_32x8_c Line | Count | Source | 178 | 22.6k | int16_t *dst) { \ | 179 | 22.6k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 22.6k | num_pel_log2); \ | 181 | 22.6k | } |
cfl_subtract_average_32x16_c Line | Count | Source | 178 | 13.7k | int16_t *dst) { \ | 179 | 13.7k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 13.7k | num_pel_log2); \ | 181 | 13.7k | } |
cfl_subtract_average_32x32_c Line | Count | Source | 178 | 20.1k | int16_t *dst) { \ | 179 | 20.1k | subtract_average_##arch(src, dst, width, height, round_offset, \ | 180 | 20.1k | num_pel_log2); \ | 181 | 20.1k | } |
|
182 | | |
183 | | // Declare size-specific wrappers for all valid CfL sizes. |
184 | | #define CFL_SUB_AVG_FN(arch) \ |
185 | | CFL_SUB_AVG_X(arch, 4, 4, 8, 4) \ |
186 | | CFL_SUB_AVG_X(arch, 4, 8, 16, 5) \ |
187 | | CFL_SUB_AVG_X(arch, 4, 16, 32, 6) \ |
188 | | CFL_SUB_AVG_X(arch, 8, 4, 16, 5) \ |
189 | | CFL_SUB_AVG_X(arch, 8, 8, 32, 6) \ |
190 | | CFL_SUB_AVG_X(arch, 8, 16, 64, 7) \ |
191 | | CFL_SUB_AVG_X(arch, 8, 32, 128, 8) \ |
192 | | CFL_SUB_AVG_X(arch, 16, 4, 32, 6) \ |
193 | | CFL_SUB_AVG_X(arch, 16, 8, 64, 7) \ |
194 | | CFL_SUB_AVG_X(arch, 16, 16, 128, 8) \ |
195 | | CFL_SUB_AVG_X(arch, 16, 32, 256, 9) \ |
196 | | CFL_SUB_AVG_X(arch, 32, 8, 128, 8) \ |
197 | | CFL_SUB_AVG_X(arch, 32, 16, 256, 9) \ |
198 | | CFL_SUB_AVG_X(arch, 32, 32, 512, 10) \ |
199 | | cfl_subtract_average_fn cfl_get_subtract_average_fn_##arch( \ |
200 | 1.00M | TX_SIZE tx_size) { \ |
201 | 1.00M | static const cfl_subtract_average_fn sub_avg[TX_SIZES_ALL] = { \ |
202 | 1.00M | cfl_subtract_average_4x4_##arch, /* 4x4 */ \ |
203 | 1.00M | cfl_subtract_average_8x8_##arch, /* 8x8 */ \ |
204 | 1.00M | cfl_subtract_average_16x16_##arch, /* 16x16 */ \ |
205 | 1.00M | cfl_subtract_average_32x32_##arch, /* 32x32 */ \ |
206 | 1.00M | NULL, /* 64x64 (invalid CFL size) */ \ |
207 | 1.00M | cfl_subtract_average_4x8_##arch, /* 4x8 */ \ |
208 | 1.00M | cfl_subtract_average_8x4_##arch, /* 8x4 */ \ |
209 | 1.00M | cfl_subtract_average_8x16_##arch, /* 8x16 */ \ |
210 | 1.00M | cfl_subtract_average_16x8_##arch, /* 16x8 */ \ |
211 | 1.00M | cfl_subtract_average_16x32_##arch, /* 16x32 */ \ |
212 | 1.00M | cfl_subtract_average_32x16_##arch, /* 32x16 */ \ |
213 | 1.00M | NULL, /* 32x64 (invalid CFL size) */ \ |
214 | 1.00M | NULL, /* 64x32 (invalid CFL size) */ \ |
215 | 1.00M | cfl_subtract_average_4x16_##arch, /* 4x16 (invalid CFL size) */ \ |
216 | 1.00M | cfl_subtract_average_16x4_##arch, /* 16x4 (invalid CFL size) */ \ |
217 | 1.00M | cfl_subtract_average_8x32_##arch, /* 8x32 (invalid CFL size) */ \ |
218 | 1.00M | cfl_subtract_average_32x8_##arch, /* 32x8 (invalid CFL size) */ \ |
219 | 1.00M | NULL, /* 16x64 (invalid CFL size) */ \ |
220 | 1.00M | NULL, /* 64x16 (invalid CFL size) */ \ |
221 | 1.00M | }; \ |
222 | 1.00M | /* Modulo TX_SIZES_ALL to ensure that an attacker won't be able to */ \ |
223 | 1.00M | /* index the function pointer array out of bounds. */ \ |
224 | 1.00M | return sub_avg[tx_size % TX_SIZES_ALL]; \ |
225 | 1.00M | } |
226 | | |
227 | | #define CFL_PREDICT_lbd(arch, width, height) \ |
228 | | void cfl_predict_lbd_##width##x##height##_##arch( \ |
229 | | const int16_t *pred_buf_q3, uint8_t *dst, int dst_stride, int alpha_q3); \ |
230 | | void cfl_predict_lbd_##width##x##height##_##arch( \ |
231 | | const int16_t *pred_buf_q3, uint8_t *dst, int dst_stride, \ |
232 | 1.11M | int alpha_q3) { \ |
233 | 1.11M | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ |
234 | 1.11M | height); \ |
235 | 1.11M | } Line | Count | Source | 232 | 314k | int alpha_q3) { \ | 233 | 314k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 314k | height); \ | 235 | 314k | } |
Line | Count | Source | 232 | 145k | int alpha_q3) { \ | 233 | 145k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 145k | height); \ | 235 | 145k | } |
Line | Count | Source | 232 | 59.2k | int alpha_q3) { \ | 233 | 59.2k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 59.2k | height); \ | 235 | 59.2k | } |
Line | Count | Source | 232 | 83.4k | int alpha_q3) { \ | 233 | 83.4k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 83.4k | height); \ | 235 | 83.4k | } |
Line | Count | Source | 232 | 131k | int alpha_q3) { \ | 233 | 131k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 131k | height); \ | 235 | 131k | } |
Line | Count | Source | 232 | 60.1k | int alpha_q3) { \ | 233 | 60.1k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 60.1k | height); \ | 235 | 60.1k | } |
Line | Count | Source | 232 | 60.1k | int alpha_q3) { \ | 233 | 60.1k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 60.1k | height); \ | 235 | 60.1k | } |
Line | Count | Source | 232 | 63.9k | int alpha_q3) { \ | 233 | 63.9k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 63.9k | height); \ | 235 | 63.9k | } |
Line | Count | Source | 232 | 66.6k | int alpha_q3) { \ | 233 | 66.6k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 66.6k | height); \ | 235 | 66.6k | } |
Line | Count | Source | 232 | 59.8k | int alpha_q3) { \ | 233 | 59.8k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 59.8k | height); \ | 235 | 59.8k | } |
Line | Count | Source | 232 | 15.4k | int alpha_q3) { \ | 233 | 15.4k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 15.4k | height); \ | 235 | 15.4k | } |
Line | Count | Source | 232 | 21.3k | int alpha_q3) { \ | 233 | 21.3k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 21.3k | height); \ | 235 | 21.3k | } |
Line | Count | Source | 232 | 13.7k | int alpha_q3) { \ | 233 | 13.7k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 13.7k | height); \ | 235 | 13.7k | } |
Line | Count | Source | 232 | 19.6k | int alpha_q3) { \ | 233 | 19.6k | cfl_predict_lbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, width, \ | 234 | 19.6k | height); \ | 235 | 19.6k | } |
|
236 | | |
237 | | #if CONFIG_AV1_HIGHBITDEPTH |
238 | | #define CFL_PREDICT_hbd(arch, width, height) \ |
239 | | void cfl_predict_hbd_##width##x##height##_##arch( \ |
240 | | const int16_t *pred_buf_q3, uint16_t *dst, int dst_stride, int alpha_q3, \ |
241 | | int bd); \ |
242 | | void cfl_predict_hbd_##width##x##height##_##arch( \ |
243 | | const int16_t *pred_buf_q3, uint16_t *dst, int dst_stride, int alpha_q3, \ |
244 | 900k | int bd) { \ |
245 | 900k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ |
246 | 900k | height); \ |
247 | 900k | } Line | Count | Source | 244 | 171k | int bd) { \ | 245 | 171k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 171k | height); \ | 247 | 171k | } |
Line | Count | Source | 244 | 126k | int bd) { \ | 245 | 126k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 126k | height); \ | 247 | 126k | } |
Line | Count | Source | 244 | 41.2k | int bd) { \ | 245 | 41.2k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 41.2k | height); \ | 247 | 41.2k | } |
Line | Count | Source | 244 | 74.3k | int bd) { \ | 245 | 74.3k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 74.3k | height); \ | 247 | 74.3k | } |
Line | Count | Source | 244 | 136k | int bd) { \ | 245 | 136k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 136k | height); \ | 247 | 136k | } |
Line | Count | Source | 244 | 58.4k | int bd) { \ | 245 | 58.4k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 58.4k | height); \ | 247 | 58.4k | } |
Line | Count | Source | 244 | 31.4k | int bd) { \ | 245 | 31.4k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 31.4k | height); \ | 247 | 31.4k | } |
Line | Count | Source | 244 | 56.9k | int bd) { \ | 245 | 56.9k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 56.9k | height); \ | 247 | 56.9k | } |
Line | Count | Source | 244 | 68.3k | int bd) { \ | 245 | 68.3k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 68.3k | height); \ | 247 | 68.3k | } |
Line | Count | Source | 244 | 57.2k | int bd) { \ | 245 | 57.2k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 57.2k | height); \ | 247 | 57.2k | } |
Line | Count | Source | 244 | 20.1k | int bd) { \ | 245 | 20.1k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 20.1k | height); \ | 247 | 20.1k | } |
Line | Count | Source | 244 | 23.8k | int bd) { \ | 245 | 23.8k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 23.8k | height); \ | 247 | 23.8k | } |
Line | Count | Source | 244 | 13.7k | int bd) { \ | 245 | 13.7k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 13.7k | height); \ | 247 | 13.7k | } |
Line | Count | Source | 244 | 20.6k | int bd) { \ | 245 | 20.6k | cfl_predict_hbd_##arch(pred_buf_q3, dst, dst_stride, alpha_q3, bd, width, \ | 246 | 20.6k | height); \ | 247 | 20.6k | } |
|
248 | | #endif |
249 | | |
250 | | // This wrapper exists because clang format does not like calling macros with |
251 | | // lowercase letters. |
252 | | #define CFL_PREDICT_X(arch, width, height, bd) \ |
253 | | CFL_PREDICT_##bd(arch, width, height) |
254 | | |
255 | | #define CFL_PREDICT_FN(arch, bd) \ |
256 | | CFL_PREDICT_X(arch, 4, 4, bd) \ |
257 | | CFL_PREDICT_X(arch, 4, 8, bd) \ |
258 | | CFL_PREDICT_X(arch, 4, 16, bd) \ |
259 | | CFL_PREDICT_X(arch, 8, 4, bd) \ |
260 | | CFL_PREDICT_X(arch, 8, 8, bd) \ |
261 | | CFL_PREDICT_X(arch, 8, 16, bd) \ |
262 | | CFL_PREDICT_X(arch, 8, 32, bd) \ |
263 | | CFL_PREDICT_X(arch, 16, 4, bd) \ |
264 | | CFL_PREDICT_X(arch, 16, 8, bd) \ |
265 | | CFL_PREDICT_X(arch, 16, 16, bd) \ |
266 | | CFL_PREDICT_X(arch, 16, 32, bd) \ |
267 | | CFL_PREDICT_X(arch, 32, 8, bd) \ |
268 | | CFL_PREDICT_X(arch, 32, 16, bd) \ |
269 | | CFL_PREDICT_X(arch, 32, 32, bd) \ |
270 | 2.01M | cfl_predict_##bd##_fn cfl_get_predict_##bd##_fn_##arch(TX_SIZE tx_size) { \ |
271 | 2.01M | static const cfl_predict_##bd##_fn pred[TX_SIZES_ALL] = { \ |
272 | 2.01M | cfl_predict_##bd##_4x4_##arch, /* 4x4 */ \ |
273 | 2.01M | cfl_predict_##bd##_8x8_##arch, /* 8x8 */ \ |
274 | 2.01M | cfl_predict_##bd##_16x16_##arch, /* 16x16 */ \ |
275 | 2.01M | cfl_predict_##bd##_32x32_##arch, /* 32x32 */ \ |
276 | 2.01M | NULL, /* 64x64 (invalid CFL size) */ \ |
277 | 2.01M | cfl_predict_##bd##_4x8_##arch, /* 4x8 */ \ |
278 | 2.01M | cfl_predict_##bd##_8x4_##arch, /* 8x4 */ \ |
279 | 2.01M | cfl_predict_##bd##_8x16_##arch, /* 8x16 */ \ |
280 | 2.01M | cfl_predict_##bd##_16x8_##arch, /* 16x8 */ \ |
281 | 2.01M | cfl_predict_##bd##_16x32_##arch, /* 16x32 */ \ |
282 | 2.01M | cfl_predict_##bd##_32x16_##arch, /* 32x16 */ \ |
283 | 2.01M | NULL, /* 32x64 (invalid CFL size) */ \ |
284 | 2.01M | NULL, /* 64x32 (invalid CFL size) */ \ |
285 | 2.01M | cfl_predict_##bd##_4x16_##arch, /* 4x16 */ \ |
286 | 2.01M | cfl_predict_##bd##_16x4_##arch, /* 16x4 */ \ |
287 | 2.01M | cfl_predict_##bd##_8x32_##arch, /* 8x32 */ \ |
288 | 2.01M | cfl_predict_##bd##_32x8_##arch, /* 32x8 */ \ |
289 | 2.01M | NULL, /* 16x64 (invalid CFL size) */ \ |
290 | 2.01M | NULL, /* 64x16 (invalid CFL size) */ \ |
291 | 2.01M | }; \ |
292 | 2.01M | /* Modulo TX_SIZES_ALL to ensure that an attacker won't be able to */ \ |
293 | 2.01M | /* index the function pointer array out of bounds. */ \ |
294 | 2.01M | return pred[tx_size % TX_SIZES_ALL]; \ |
295 | 2.01M | } |
296 | | |
297 | | #endif // AOM_AV1_COMMON_CFL_H_ |