Many of the fields of MpegEncContext (which is also used by decoders)
are actually only used by encoders. Therefore this commit adds
a new encoder-only structure and moves all of the encoder-only
fields to it except for those which require more explicit
synchronisation between the main slice context and the other
slice contexts. This synchronisation is currently mainly provided
by ff_update_thread_context() which simply copies most of
the main slice context over the other slice contexts. Fields
which are moved to the new MPVEncContext no longer participate
in this (which is desired, because it is horrible and for the
fields b) below wasteful) which means that some fields can only
be moved when explicit synchronisation code is added in later commits.
More explicitly, this commit moves the following fields:
a) Fields not copied by ff_update_duplicate_context():
dct_error_sum and dct_count; the former does not need synchronisation,
the latter is synchronised in merge_context_after_encode().
b) Fields which do not change after initialisation (these fields
could also be put into MPVMainEncContext at the cost of
an indirection to access them): lambda_table, adaptive_quant,
{luma,chroma}_elim_threshold, new_pic, fdsp, mpvencdsp, pdsp,
{p,b_forw,b_back,b_bidir_forw,b_bidir_back,b_direct,b_field}_mv_table,
[pb]_field_select_table, mb_{type,var,mean}, mc_mb_var, {min,max}_qcoeff,
{inter,intra}_quant_bias, ac_esc_length, the *_vlc_length fields,
the q_{intra,inter,chroma_intra}_matrix{,16}, dct_offset, mb_info,
mjpeg_ctx, rtp_mode, rtp_payload_size, encode_mb, all function
pointers, mpv_flags, quantizer_noise_shaping,
frame_reconstruction_bitfield, error_rate and intra_penalty.
c) Fields which are already (re)set explicitly: The PutBitContexts
pb, tex_pb, pb2; dquant, skipdct, encoding_error, the statistics
fields {mv,i_tex,p_tex,misc,last}_bits and i_count; last_mv_dir,
esc_pos (reset when writing the header).
d) Fields which are only used by encoders not supporting slice
threading for which synchronisation doesn't matter: esc3_level_length
and the remaining mb_info fields.
e) coded_score: This field is only really used when FF_MPV_FLAG_CBP_RD
is set (which implies trellis) and even then it is only used for
non-intra blocks. For these blocks dct_quantize_trellis_c() either
sets coded_score[n] or returns a last_non_zero value of -1
in which case coded_score will be reset in encode_mb_internal().
Therefore no old values are ever used.
The MotionEstContext has not been moved yet.
Signed-off-by: Andreas Rheinhardt <andreas.rheinhardt@outlook.com>
167 lines
5.7 KiB
C
167 lines
5.7 KiB
C
/*
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* Copyright (C) 2004-2010 Michael Niedermayer <michaelni@gmx.at>
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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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#ifndef AVCODEC_SNOW_DWT_H
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#define AVCODEC_SNOW_DWT_H
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#include <stddef.h>
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#include <stdint.h>
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#include "libavutil/attributes.h"
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typedef struct MPVEncContext MPVEncContext;
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typedef int DWTELEM;
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typedef short IDWTELEM;
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#define MAX_DECOMPOSITIONS 8
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typedef struct DWTCompose {
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IDWTELEM *b0;
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IDWTELEM *b1;
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IDWTELEM *b2;
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IDWTELEM *b3;
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int y;
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} DWTCompose;
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/** Used to minimize the amount of memory used in order to
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* optimize cache performance. **/
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typedef struct slice_buffer_s {
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IDWTELEM **line; ///< For use by idwt and predict_slices.
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IDWTELEM **data_stack; ///< Used for internal purposes.
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int data_stack_top;
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int line_count;
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int line_width;
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int data_count;
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IDWTELEM *base_buffer; ///< Buffer that this structure is caching.
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} slice_buffer;
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struct SnowDWTContext;
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typedef struct SnowDWTContext {
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void (*vertical_compose97i)(IDWTELEM *b0, IDWTELEM *b1, IDWTELEM *b2,
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IDWTELEM *b3, IDWTELEM *b4, IDWTELEM *b5,
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int width);
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void (*horizontal_compose97i)(IDWTELEM *b, IDWTELEM *temp, int width);
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void (*inner_add_yblock)(const uint8_t *obmc, const int obmc_stride,
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uint8_t **block, int b_w, int b_h, int src_x,
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int src_y, int src_stride, slice_buffer *sb,
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int add, uint8_t *dst8);
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} SnowDWTContext;
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#define DWT_97 0
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#define DWT_53 1
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#define liftS lift
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#define W_AM 3
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#define W_AO 0
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#define W_AS 1
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#undef liftS
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#define W_BM 1
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#define W_BO 8
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#define W_BS 4
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#define W_CM 1
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#define W_CO 0
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#define W_CS 0
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#define W_DM 3
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#define W_DO 4
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#define W_DS 3
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#define slice_buffer_get_line(slice_buf, line_num) \
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((slice_buf)->line[line_num] ? (slice_buf)->line[line_num] \
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: ff_slice_buffer_load_line((slice_buf), \
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(line_num)))
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/* C bits used by mmx/sse2/altivec */
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static av_always_inline void snow_interleave_line_header(int *i, int width, IDWTELEM *low, IDWTELEM *high)
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{
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*i = width - 2;
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if (width & 1) {
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low[*i + 1] = low[(*i + 1)>>1];
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(*i)--;
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}
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}
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static av_always_inline void snow_interleave_line_footer(int *i, IDWTELEM *low, const IDWTELEM *high)
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{
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for (; *i >= 0; *i -= 2) {
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low[*i + 1] = high[*i >> 1];
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low[*i] = low[*i >> 1];
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}
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}
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static av_always_inline void snow_horizontal_compose_lift_lead_out(int i, IDWTELEM *dst, const IDWTELEM *src, const IDWTELEM *ref, int width, int w, int lift_high, int mul, int add, int shift)
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{
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for (; i < w; i++)
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dst[i] = src[i] - ((mul * (ref[i] + ref[i + 1]) + add) >> shift);
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if ((width ^ lift_high) & 1)
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dst[w] = src[w] - ((mul * 2 * ref[w] + add) >> shift);
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}
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static av_always_inline void snow_horizontal_compose_liftS_lead_out(int i, IDWTELEM *dst, const IDWTELEM *src, const IDWTELEM *ref, int width, int w)
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{
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for (; i < w; i++)
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dst[i] = src[i] + ((ref[i] + ref[(i+1)]+W_BO + 4 * src[i]) >> W_BS);
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if (width & 1)
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dst[w] = src[w] + ((2 * ref[w] + W_BO + 4 * src[w]) >> W_BS);
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}
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int ff_slice_buffer_init(slice_buffer *buf, int line_count,
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int max_allocated_lines, int line_width,
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IDWTELEM *base_buffer);
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void ff_slice_buffer_release(slice_buffer *buf, int line);
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void ff_slice_buffer_flush(slice_buffer *buf);
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void ff_slice_buffer_destroy(slice_buffer *buf);
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IDWTELEM *ff_slice_buffer_load_line(slice_buffer *buf, int line);
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void ff_snow_inner_add_yblock(const uint8_t *obmc, const int obmc_stride,
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uint8_t **block, int b_w, int b_h, int src_x,
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int src_y, int src_stride, slice_buffer *sb,
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int add, uint8_t *dst8);
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int ff_w53_32_c(MPVEncContext *v, const uint8_t *pix1, const uint8_t *pix2, ptrdiff_t line_size, int h);
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int ff_w97_32_c(MPVEncContext *v, const uint8_t *pix1, const uint8_t *pix2, ptrdiff_t line_size, int h);
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void ff_spatial_dwt(int *buffer, int *temp, int width, int height, int stride,
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int type, int decomposition_count);
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void ff_spatial_idwt_buffered_init(DWTCompose *cs, slice_buffer *sb, int width,
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int height, int stride_line, int type,
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int decomposition_count);
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void ff_spatial_idwt_buffered_slice(SnowDWTContext *dsp, DWTCompose *cs,
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slice_buffer *slice_buf, IDWTELEM *temp,
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int width, int height, int stride_line,
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int type, int decomposition_count, int y);
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void ff_spatial_idwt(IDWTELEM *buffer, IDWTELEM *temp, int width, int height,
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int stride, int type, int decomposition_count);
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void ff_dwt_init(SnowDWTContext *c);
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void ff_dwt_init_x86(SnowDWTContext *c);
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#endif /* AVCODEC_DWT_H */
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