mirror of
https://github.com/FFmpeg/FFmpeg.git
synced 2024-12-12 19:18:44 +02:00
442 lines
11 KiB
NASM
442 lines
11 KiB
NASM
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;******************************************************************************
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;* VVC Adaptive Loop Filter SIMD optimizations
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;*
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;* Copyright (c) 2023-2024 Nuo Mi <nuomi2021@gmail.com>
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;* Copyright (c) 2023-2024 Wu Jianhua <toqsxw@outlook.com>
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;*
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;* This file is part of FFmpeg.
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;*
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;* FFmpeg is free software; you can redistribute it and/or
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;* modify it under the terms of the GNU Lesser General Public
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;* License as published by the Free Software Foundation; either
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;* version 2.1 of the License, or (at your option) any later version.
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;*
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;* FFmpeg is distributed in the hope that it will be useful,
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;* but WITHOUT ANY WARRANTY; without even the implied warranty of
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;* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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;* Lesser General Public License for more details.
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;*
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;* You should have received a copy of the GNU Lesser General Public
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;* License along with FFmpeg; if not, write to the Free Software
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;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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;******************************************************************************
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%include "libavutil/x86/x86util.asm"
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SECTION_RODATA
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%macro PARAM_SHUFFE 1
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%assign i (%1 * 2)
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%assign j ((i + 1) << 8) + (i)
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param_shuffe_ %+ %1:
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%rep 2
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times 4 dw j
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times 4 dw (j + 0x0808)
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%endrep
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%endmacro
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PARAM_SHUFFE 0
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PARAM_SHUFFE 1
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PARAM_SHUFFE 2
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PARAM_SHUFFE 3
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dd448: times 8 dd 512 - 64
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dw64: times 8 dd 64
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SECTION .text
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%define ALF_NUM_COEFF_LUMA 12
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%define ALF_NUM_COEFF_CHROMA 6
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%define ALF_NUM_COEFF_CC 7
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;%1-%3 out
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;%4 clip or filter
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%macro LOAD_LUMA_PARAMS_W16 4
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lea offsetq, [3 * xq] ;xq * ALF_NUM_COEFF_LUMA / ALF_BLOCK_SIZE
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movu m%1, [%4q + 2 * offsetq + 0 * 32] ; 2 * for sizeof(int16_t)
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movu m%2, [%4q + 2 * offsetq + 1 * 32]
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movu m%3, [%4q + 2 * offsetq + 2 * 32]
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%endmacro
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%macro LOAD_LUMA_PARAMS_W16 6
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LOAD_LUMA_PARAMS_W16 %1, %2, %3, %4
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;m%1 = 03 02 01 00
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;m%2 = 07 06 05 04
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;m%3 = 11 10 09 08
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vshufpd m%5, m%1, m%2, 0011b ;06 02 05 01
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vshufpd m%6, m%3, m%5, 1001b ;06 10 01 09
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vshufpd m%1, m%1, m%6, 1100b ;06 03 09 00
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vshufpd m%2, m%2, m%6, 0110b ;10 07 01 04
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vshufpd m%3, m%3, m%5, 0110b ;02 11 05 08
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vpermpd m%1, m%1, 01111000b ;09 06 03 00
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vshufpd m%2, m%2, m%2, 1001b ;10 07 04 01
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vpermpd m%3, m%3, 10000111b ;11 08 05 02
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%endmacro
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; %1-%3 out
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; %4 clip or filter
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; %5-%6 tmp
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%macro LOAD_LUMA_PARAMS 6
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LOAD_LUMA_PARAMS_W16 %1, %2, %3, %4, %5, %6
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%endmacro
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%macro LOAD_CHROMA_PARAMS 4
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; LOAD_CHROMA_PARAMS_W %+ WIDTH %1, %2, %3, %4
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movq xm%1, [%3q]
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movd xm%2, [%3q + 8]
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vpbroadcastq m%1, xm%1
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vpbroadcastq m%2, xm%2
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%endmacro
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%macro LOAD_PARAMS 0
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%if LUMA
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LOAD_LUMA_PARAMS 3, 4, 5, filter, 6, 7
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LOAD_LUMA_PARAMS 6, 7, 8, clip, 9, 10
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%else
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LOAD_CHROMA_PARAMS 3, 4, filter, 5
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LOAD_CHROMA_PARAMS 6, 7, clip, 8
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%endif
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%endmacro
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; FILTER(param_idx)
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; input: m2, m9, m10
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; output: m0, m1
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; tmp: m11-m13
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%macro FILTER 1
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%assign i (%1 % 4)
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%assign j (%1 / 4 + 3)
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%assign k (%1 / 4 + 6)
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%define filters m %+ j
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%define clips m %+ k
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pshufb m12, clips, [param_shuffe_ %+ i] ;clip
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pxor m11, m11
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psubw m11, m12 ;-clip
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vpsubw m9, m2
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CLIPW m9, m11, m12
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vpsubw m10, m2
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CLIPW m10, m11, m12
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vpunpckhwd m13, m9, m10
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vpunpcklwd m9, m9, m10
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pshufb m12, filters, [param_shuffe_ %+ i] ;filter
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vpunpcklwd m10, m12, m12
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vpunpckhwd m12, m12, m12
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vpmaddwd m9, m10
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vpmaddwd m12, m13
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paddd m0, m9
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paddd m1, m12
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%endmacro
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; FILTER(param_idx, bottom, top, byte_offset)
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; input: param_idx, bottom, top, byte_offset
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; output: m0, m1
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; temp: m9, m10
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%macro FILTER 4
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LOAD_PIXELS m10, [%2 + %4]
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LOAD_PIXELS m9, [%3 - %4]
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FILTER %1
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%endmacro
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; GET_SRCS(line)
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; brief: get source lines
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; input: src, src_stride, vb_pos
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; output: s1...s6
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%macro GET_SRCS 1
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lea s1q, [srcq + src_strideq]
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lea s3q, [s1q + src_strideq]
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%if LUMA
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lea s5q, [s3q + src_strideq]
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%endif
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neg src_strideq
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lea s2q, [srcq + src_strideq]
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lea s4q, [s2q + src_strideq]
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%if LUMA
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lea s6q, [s4q + src_strideq]
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%endif
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neg src_strideq
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%if LUMA
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cmp vb_posq, 0
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je %%vb_bottom
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cmp vb_posq, 4
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jne %%vb_end
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%else
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cmp vb_posq, 2
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jne %%vb_end
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cmp %1, 2
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jge %%vb_bottom
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%endif
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%%vb_above:
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; above
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; p1 = (y + i == vb_pos - 1) ? p0 : p1;
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; p2 = (y + i == vb_pos - 1) ? p0 : p2;
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; p3 = (y + i >= vb_pos - 2) ? p1 : p3;
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; p4 = (y + i >= vb_pos - 2) ? p2 : p4;
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; p5 = (y + i >= vb_pos - 3) ? p3 : p5;
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; p6 = (y + i >= vb_pos - 3) ? p4 : p6;
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dec vb_posq
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cmp vb_posq, %1
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cmove s1q, srcq
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cmove s2q, srcq
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dec vb_posq
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cmp vb_posq, %1
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cmovbe s3q, s1q
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cmovbe s4q, s2q
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dec vb_posq
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%if LUMA
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cmp vb_posq, %1
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cmovbe s5q, s3q
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cmovbe s6q, s4q
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%endif
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add vb_posq, 3
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jmp %%vb_end
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%%vb_bottom:
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; bottom
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; p1 = (y + i == vb_pos ) ? p0 : p1;
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; p2 = (y + i == vb_pos ) ? p0 : p2;
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; p3 = (y + i <= vb_pos + 1) ? p1 : p3;
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; p4 = (y + i <= vb_pos + 1) ? p2 : p4;
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; p5 = (y + i <= vb_pos + 2) ? p3 : p5;
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; p6 = (y + i <= vb_pos + 2) ? p4 : p6;
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cmp vb_posq, %1
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cmove s1q, srcq
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cmove s2q, srcq
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inc vb_posq
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cmp vb_posq, %1
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cmovae s3q, s1q
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cmovae s4q, s2q
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inc vb_posq
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%if LUMA
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cmp vb_posq, %1
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cmovae s5q, s3q
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cmovae s6q, s4q
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%endif
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sub vb_posq, 2
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%%vb_end:
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%endmacro
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; SHIFT_VB(line)
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; brief: shift filter result
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; input: m0, m1, vb_pos
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; output: m0
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; temp: m9
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%macro SHIFT_VB 1
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%define SHIFT 7
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%if LUMA
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cmp %1, 3
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je %%near_above
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cmp %1, 0
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je %%near_below
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jmp %%no_vb
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%%near_above:
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cmp vb_posq, 4
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je %%near_vb
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jmp %%no_vb
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%%near_below:
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cmp vb_posq, 0
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je %%near_vb
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%else
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cmp %1, 0
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je %%no_vb
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cmp %1, 3
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je %%no_vb
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cmp vb_posq, 2
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je %%near_vb
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%endif
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%%no_vb:
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vpsrad m0, SHIFT
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vpsrad m1, SHIFT
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jmp %%shift_end
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%%near_vb:
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vpbroadcastd m9, [dd448]
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paddd m0, m9
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paddd m1, m9
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vpsrad m0, SHIFT + 3
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vpsrad m1, SHIFT + 3
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%%shift_end:
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vpackssdw m0, m0, m1
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%endmacro
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; FILTER_VB(line)
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; brief: filter pixels for luma and chroma
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; input: line
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; output: m0, m1
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; temp: s0q...s1q
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%macro FILTER_VB 1
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vpbroadcastd m0, [dw64]
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vpbroadcastd m1, [dw64]
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GET_SRCS %1
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%if LUMA
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FILTER 0, s5q, s6q, 0 * ps
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FILTER 1, s3q, s4q, 1 * ps
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FILTER 2, s3q, s4q, 0 * ps
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FILTER 3, s3q, s4q, -1 * ps
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FILTER 4, s1q, s2q, 2 * ps
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FILTER 5, s1q, s2q, 1 * ps
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FILTER 6, s1q, s2q, 0 * ps
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FILTER 7, s1q, s2q, -1 * ps
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FILTER 8, s1q, s2q, -2 * ps
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FILTER 9, srcq, srcq, 3 * ps
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FILTER 10, srcq, srcq, 2 * ps
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FILTER 11, srcq, srcq, 1 * ps
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%else
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FILTER 0, s3q, s4q, 0 * ps
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FILTER 1, s1q, s2q, 1 * ps
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FILTER 2, s1q, s2q, 0 * ps
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FILTER 3, s1q, s2q, -1 * ps
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FILTER 4, srcq, srcq, 2 * ps
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FILTER 5, srcq, srcq, 1 * ps
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%endif
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SHIFT_VB %1
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%endmacro
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; LOAD_PIXELS(dest, src)
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%macro LOAD_PIXELS 2
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%if ps == 2
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movu %1, %2
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%else
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vpmovzxbw %1, %2
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%endif
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%endmacro
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; STORE_PIXELS(dst, src)
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%macro STORE_PIXELS 2
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%if ps == 2
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movu %1, m%2
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%else
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vpackuswb m%2, m%2
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vpermq m%2, m%2, 0x8
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movu %1, xm%2
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%endif
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%endmacro
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%macro FILTER_16x4 0
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%if LUMA
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push clipq
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push strideq
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%define s1q clipq
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%define s2q strideq
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%else
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%define s1q s5q
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%define s2q s6q
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%endif
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%define s3q pixel_maxq
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%define s4q offsetq
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push xq
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xor xq, xq
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%%filter_16x4_loop:
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LOAD_PIXELS m2, [srcq] ;p0
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FILTER_VB xq
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paddw m0, m2
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; clip to pixel
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CLIPW m0, m14, m15
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STORE_PIXELS [dstq], 0
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lea srcq, [srcq + src_strideq]
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lea dstq, [dstq + dst_strideq]
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inc xq
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cmp xq, 4
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jl %%filter_16x4_loop
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mov xq, src_strideq
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neg xq
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lea srcq, [srcq + xq * 4]
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mov xq, dst_strideq
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neg xq
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lea dstq, [dstq + xq * 4]
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pop xq
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%if LUMA
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pop strideq
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pop clipq
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%endif
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%endmacro
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; FILTER(bpc, luma/chroma)
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%macro ALF_FILTER 2
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%xdefine BPC %1
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%ifidn %2, luma
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%xdefine LUMA 1
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%else
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%xdefine LUMA 0
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%endif
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; ******************************
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; void vvc_alf_filter_%2_%1bpc_avx2(uint8_t *dst, ptrdiff_t dst_stride,
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; const uint8_t *src, ptrdiff_t src_stride, const ptrdiff_t width, cosnt ptr_diff_t height,
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; const int16_t *filter, const int16_t *clip, ptrdiff_t stride, ptrdiff_t vb_pos, ptrdiff_t pixel_max);
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; ******************************
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cglobal vvc_alf_filter_%2_%1bpc, 11, 15, 16, 0-0x28, dst, dst_stride, src, src_stride, width, height, filter, clip, stride, vb_pos, pixel_max, \
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offset, x, s5, s6
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%define ps (%1 / 8) ; pixel size
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movd xm15, pixel_maxd
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vpbroadcastw m15, xm15
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pxor m14, m14
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.loop:
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push srcq
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push dstq
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xor xd, xd
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.loop_w:
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LOAD_PARAMS
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FILTER_16x4
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add srcq, 16 * ps
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add dstq, 16 * ps
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add xd, 16
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cmp xd, widthd
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jl .loop_w
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pop dstq
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pop srcq
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lea srcq, [srcq + 4 * src_strideq]
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lea dstq, [dstq + 4 * dst_strideq]
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lea filterq, [filterq + 2 * strideq]
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lea clipq, [clipq + 2 * strideq]
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sub vb_posq, 4
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sub heightq, 4
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jg .loop
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|
RET
|
||
|
%endmacro
|
||
|
|
||
|
; FILTER(bpc)
|
||
|
%macro ALF_FILTER 1
|
||
|
ALF_FILTER %1, luma
|
||
|
ALF_FILTER %1, chroma
|
||
|
%endmacro
|
||
|
|
||
|
%if ARCH_X86_64
|
||
|
%if HAVE_AVX2_EXTERNAL
|
||
|
INIT_YMM avx2
|
||
|
ALF_FILTER 16
|
||
|
ALF_FILTER 8
|
||
|
%endif
|
||
|
%endif
|