12#ifndef AOM_AV1_COMMON_RESTORATION_H_
13#define AOM_AV1_COMMON_RESTORATION_H_
15#include "aom_ports/mem.h"
16#include "config/aom_config.h"
18#include "av1/common/blockd.h"
30#define AOM_RESTORATION_FRAME_BORDER 32
31#define CLIP(x, lo, hi) ((x) < (lo) ? (lo) : (x) > (hi) ? (hi) : (x))
32#define RINT(x) ((x) < 0 ? (int)((x)-0.5) : (int)((x) + 0.5))
34#define RESTORATION_PROC_UNIT_SIZE 64
37#define RESTORATION_UNIT_OFFSET 8
39#define SGRPROJ_BORDER_VERT 3
40#define SGRPROJ_BORDER_HORZ 3
42#define WIENER_BORDER_VERT 2
43#define WIENER_HALFWIN 3
44#define WIENER_BORDER_HORZ (WIENER_HALFWIN)
49#if SGRPROJ_BORDER_VERT >= WIENER_BORDER_VERT
50#define RESTORATION_BORDER_VERT (SGRPROJ_BORDER_VERT)
52#define RESTORATION_BORDER_VERT (WIENER_BORDER_VERT)
55#if SGRPROJ_BORDER_HORZ >= WIENER_BORDER_HORZ
56#define RESTORATION_BORDER_HORZ (SGRPROJ_BORDER_HORZ)
58#define RESTORATION_BORDER_HORZ (WIENER_BORDER_HORZ)
62#define RESTORATION_BORDER 3
66#define RESTORATION_CTX_VERT 2
70#define RESTORATION_EXTRA_HORZ 4
73#define RESTORATION_PADDING 20
74#define RESTORATION_PROC_UNIT_PELS \
75 ((RESTORATION_PROC_UNIT_SIZE + RESTORATION_BORDER_HORZ * 2 + \
76 RESTORATION_PADDING) * \
77 (RESTORATION_PROC_UNIT_SIZE + RESTORATION_BORDER_VERT * 2 + \
80#define RESTORATION_UNITSIZE_MAX 256
81#define RESTORATION_UNITPELS_HORZ_MAX \
82 (RESTORATION_UNITSIZE_MAX * 3 / 2 + 2 * RESTORATION_BORDER_HORZ + 16)
83#define RESTORATION_UNITPELS_VERT_MAX \
84 ((RESTORATION_UNITSIZE_MAX * 3 / 2 + 2 * RESTORATION_BORDER_VERT + \
85 RESTORATION_UNIT_OFFSET))
86#define RESTORATION_UNITPELS_MAX \
87 (RESTORATION_UNITPELS_HORZ_MAX * RESTORATION_UNITPELS_VERT_MAX)
92#define SGRPROJ_TMPBUF_SIZE (RESTORATION_UNITPELS_MAX * 2 * sizeof(int32_t))
94#define SGRPROJ_EXTBUF_SIZE (0)
95#define SGRPROJ_PARAMS_BITS 4
96#define SGRPROJ_PARAMS (1 << SGRPROJ_PARAMS_BITS)
99#define SGRPROJ_PRJ_BITS 7
101#define SGRPROJ_RST_BITS 4
103#define SGRPROJ_SGR_BITS 8
104#define SGRPROJ_SGR (1 << SGRPROJ_SGR_BITS)
106#define SGRPROJ_PRJ_MIN0 (-(1 << SGRPROJ_PRJ_BITS) * 3 / 4)
107#define SGRPROJ_PRJ_MAX0 (SGRPROJ_PRJ_MIN0 + (1 << SGRPROJ_PRJ_BITS) - 1)
108#define SGRPROJ_PRJ_MIN1 (-(1 << SGRPROJ_PRJ_BITS) / 4)
109#define SGRPROJ_PRJ_MAX1 (SGRPROJ_PRJ_MIN1 + (1 << SGRPROJ_PRJ_BITS) - 1)
111#define SGRPROJ_PRJ_SUBEXP_K 4
113#define SGRPROJ_BITS (SGRPROJ_PRJ_BITS * 2 + SGRPROJ_PARAMS_BITS)
116#define MAX_NELEM ((2 * MAX_RADIUS + 1) * (2 * MAX_RADIUS + 1))
117#define SGRPROJ_MTABLE_BITS 20
118#define SGRPROJ_RECIP_BITS 12
120#define WIENER_HALFWIN1 (WIENER_HALFWIN + 1)
121#define WIENER_WIN (2 * WIENER_HALFWIN + 1)
122#define WIENER_WIN2 ((WIENER_WIN) * (WIENER_WIN))
123#define WIENER_TMPBUF_SIZE (0)
124#define WIENER_EXTBUF_SIZE (0)
128#define WIENER_WIN_CHROMA (WIENER_WIN - 2)
129#define WIENER_WIN_REDUCED (WIENER_WIN - 2)
130#define WIENER_WIN2_CHROMA ((WIENER_WIN_CHROMA) * (WIENER_WIN_CHROMA))
131#define WIENER_STATS_DOWNSAMPLE_FACTOR 4
133#define WIENER_FILT_PREC_BITS 7
134#define WIENER_FILT_STEP (1 << WIENER_FILT_PREC_BITS)
137#define WIENER_FILT_TAP0_MIDV (3)
138#define WIENER_FILT_TAP1_MIDV (-7)
139#define WIENER_FILT_TAP2_MIDV (15)
140#define WIENER_FILT_TAP3_MIDV \
141 (WIENER_FILT_STEP - 2 * (WIENER_FILT_TAP0_MIDV + WIENER_FILT_TAP1_MIDV + \
142 WIENER_FILT_TAP2_MIDV))
144#define WIENER_FILT_TAP0_BITS 4
145#define WIENER_FILT_TAP1_BITS 5
146#define WIENER_FILT_TAP2_BITS 6
148#define WIENER_FILT_BITS \
149 ((WIENER_FILT_TAP0_BITS + WIENER_FILT_TAP1_BITS + WIENER_FILT_TAP2_BITS) * 2)
151#define WIENER_FILT_TAP0_MINV \
152 (WIENER_FILT_TAP0_MIDV - (1 << WIENER_FILT_TAP0_BITS) / 2)
153#define WIENER_FILT_TAP1_MINV \
154 (WIENER_FILT_TAP1_MIDV - (1 << WIENER_FILT_TAP1_BITS) / 2)
155#define WIENER_FILT_TAP2_MINV \
156 (WIENER_FILT_TAP2_MIDV - (1 << WIENER_FILT_TAP2_BITS) / 2)
158#define WIENER_FILT_TAP0_MAXV \
159 (WIENER_FILT_TAP0_MIDV - 1 + (1 << WIENER_FILT_TAP0_BITS) / 2)
160#define WIENER_FILT_TAP1_MAXV \
161 (WIENER_FILT_TAP1_MIDV - 1 + (1 << WIENER_FILT_TAP1_BITS) / 2)
162#define WIENER_FILT_TAP2_MAXV \
163 (WIENER_FILT_TAP2_MIDV - 1 + (1 << WIENER_FILT_TAP2_BITS) / 2)
165#define WIENER_FILT_TAP0_SUBEXP_K 1
166#define WIENER_FILT_TAP1_SUBEXP_K 2
167#define WIENER_FILT_TAP2_SUBEXP_K 3
170#define RESTORATION_TMPBUF_SIZE (SGRPROJ_TMPBUF_SIZE)
173#define RESTORATION_EXTBUF_SIZE (WIENER_EXTBUF_SIZE)
176#if SUBPEL_TAPS != WIENER_WIN + 1
177#error "Wiener filter currently only works if SUBPEL_TAPS == WIENER_WIN + 1"
179#if WIENER_FILT_PREC_BITS != 7
180#error "Wiener filter currently only works if WIENER_FILT_PREC_BITS == 7"
211#define RESTORATION_LINEBUFFER_WIDTH \
212 (RESTORATION_UNITSIZE_MAX * 3 / 2 + 2 * RESTORATION_EXTRA_HORZ)
217 uint16_t tmp_save_above[RESTORATION_BORDER][RESTORATION_LINEBUFFER_WIDTH];
218 uint16_t tmp_save_below[RESTORATION_BORDER][RESTORATION_LINEBUFFER_WIDTH];
219} RestorationLineBuffers;
297static inline void set_default_sgrproj(
SgrprojInfo *sgrproj_info) {
298 sgrproj_info->
xqd[0] = (SGRPROJ_PRJ_MIN0 + SGRPROJ_PRJ_MAX0) / 2;
299 sgrproj_info->
xqd[1] = (SGRPROJ_PRJ_MIN1 + SGRPROJ_PRJ_MAX1) / 2;
302static inline void set_default_wiener(
WienerInfo *wiener_info) {
303 wiener_info->
vfilter[0] = wiener_info->
hfilter[0] = WIENER_FILT_TAP0_MIDV;
304 wiener_info->
vfilter[1] = wiener_info->
hfilter[1] = WIENER_FILT_TAP1_MIDV;
305 wiener_info->
vfilter[2] = wiener_info->
hfilter[2] = WIENER_FILT_TAP2_MIDV;
306 wiener_info->
vfilter[WIENER_HALFWIN] = wiener_info->
hfilter[WIENER_HALFWIN] =
308 (WIENER_FILT_TAP2_MIDV + WIENER_FILT_TAP1_MIDV + WIENER_FILT_TAP0_MIDV);
309 wiener_info->
vfilter[4] = wiener_info->
hfilter[4] = WIENER_FILT_TAP2_MIDV;
310 wiener_info->
vfilter[5] = wiener_info->
hfilter[5] = WIENER_FILT_TAP1_MIDV;
311 wiener_info->
vfilter[6] = wiener_info->
hfilter[6] = WIENER_FILT_TAP0_MIDV;
315 int h_start, h_end, v_start, v_end;
316} RestorationTileLimits;
318typedef void (*rest_unit_visitor_t)(
const RestorationTileLimits *limits,
319 int rest_unit_idx,
void *priv,
321 RestorationLineBuffers *rlbs,
322 struct aom_internal_error_info *error_info);
324typedef struct FilterFrameCtxt {
327 int plane_w, plane_h;
328 int highbd, bit_depth;
329 uint8_t *data8, *dst8;
330 int data_stride, dst_stride;
333typedef struct AV1LrStruct {
334 rest_unit_visitor_t on_rest_unit;
335 FilterFrameCtxt ctxt[MAX_MB_PLANE];
340extern const sgr_params_type av1_sgr_params[SGRPROJ_PARAMS];
341extern int sgrproj_mtable[SGRPROJ_PARAMS][2];
342extern const int32_t av1_x_by_xplus1[256];
343extern const int32_t av1_one_by_x[MAX_NELEM];
349void av1_extend_frame(uint8_t *data,
int width,
int height,
int stride,
350 int border_horz,
int border_vert,
int highbd);
351void av1_decode_xq(
const int *xqd,
int *xq,
const sgr_params_type *params);
391 int plane_w,
int plane_h,
int ss_x,
int ss_y,
int highbd,
int bit_depth,
392 uint8_t *data8,
int stride, uint8_t *dst8,
int dst_stride, int32_t *tmpbuf,
393 int optimized_lr,
struct aom_internal_error_info *error_info);
413void av1_loop_restoration_precal(
void);
417typedef void (*sync_read_fn_t)(
void *
const lr_sync,
int r,
int c,
int plane);
419typedef void (*sync_write_fn_t)(
void *
const lr_sync,
int r,
int c,
420 const int sb_cols,
int plane);
430int av1_loop_restoration_corners_in_sb(
const struct AV1Common *cm,
int plane,
431 int mi_row,
int mi_col, BLOCK_SIZE bsize,
432 int *rcol0,
int *rcol1,
int *rrow0,
438void av1_loop_restoration_filter_frame_init(AV1LrStruct *lr_ctxt,
441 int optimized_lr,
int num_planes);
442void av1_loop_restoration_copy_planes(AV1LrStruct *loop_rest_ctxt,
444void av1_foreach_rest_unit_in_row(
445 RestorationTileLimits *limits,
int plane_w,
446 rest_unit_visitor_t on_rest_unit,
int row_number,
int unit_size,
447 int hnum_rest_units,
int vnum_rest_units,
int plane,
void *priv,
448 int32_t *tmpbuf, RestorationLineBuffers *rlbs, sync_read_fn_t on_sync_read,
449 sync_write_fn_t on_sync_write,
struct AV1LrSyncData *
const lr_sync,
450 struct aom_internal_error_info *error_info);
452void av1_get_upsampled_plane_size(
const struct AV1Common *cm,
int is_uv,
453 int *plane_w,
int *plane_h);
454int av1_lr_count_units(
int unit_size,
int plane_size);
455void av1_lr_sync_read_dummy(
void *
const lr_sync,
int r,
int c,
int plane);
456void av1_lr_sync_write_dummy(
void *
const lr_sync,
int r,
int c,
457 const int sb_cols,
int plane);
RestorationType
This enumeration defines various restoration types supported.
Definition enums.h:609
void av1_loop_restoration_filter_frame(YV12_BUFFER_CONFIG *frame, struct AV1Common *cm, int optimized_lr, void *lr_ctxt)
Function for applying loop restoration filter to a frame.
void av1_loop_restoration_filter_unit(const RestorationTileLimits *limits, const RestorationUnitInfo *rui, const RestorationStripeBoundaries *rsb, RestorationLineBuffers *rlbs, int plane_w, int plane_h, int ss_x, int ss_y, int highbd, int bit_depth, uint8_t *data8, int stride, uint8_t *dst8, int dst_stride, int32_t *tmpbuf, int optimized_lr, struct aom_internal_error_info *error_info)
Function for applying loop restoration filter to a single unit.
Top level common structure used by both encoder and decoder.
Definition av1_common_int.h:757
Parameters related to Restoration Info.
Definition restoration.h:246
RestorationStripeBoundaries boundaries
Definition restoration.h:285
RestorationUnitInfo * unit_info
Definition restoration.h:280
int horz_units
Definition restoration.h:274
RestorationType frame_restoration_type
Definition restoration.h:250
int vert_units
Definition restoration.h:269
int num_rest_units
Definition restoration.h:264
int optimized_lr
Definition restoration.h:292
int restoration_unit_size
Definition restoration.h:255
Parameters related to Restoration Stripe boundaries.
Definition restoration.h:223
int stripe_boundary_stride
Definition restoration.h:237
int stripe_boundary_size
Definition restoration.h:242
uint8_t * stripe_boundary_above
Definition restoration.h:227
uint8_t * stripe_boundary_below
Definition restoration.h:232
Parameters related to Restoration Unit Info.
Definition restoration.h:190
WienerInfo wiener_info
Definition restoration.h:199
RestorationType restoration_type
Definition restoration.h:194
SgrprojInfo sgrproj_info
Definition restoration.h:204
Parameters related to Sgrproj Filter.
Definition blockd.h:507
int xqd[2]
Definition blockd.h:516
Parameters related to Wiener Filter.
Definition blockd.h:494
InterpKernel hfilter
Definition blockd.h:503
InterpKernel vfilter
Definition blockd.h:498
YV12 frame buffer data structure.
Definition yv12config.h:46