246 строки
7.2 KiB
C
246 строки
7.2 KiB
C
/*
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* Copyright (c) 2011 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include <assert.h>
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#include <stdlib.h>
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#include "./vpx_config.h"
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#include "vp9/common/vp9_common.h"
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#include "vp9/encoder/vp9_encoder.h"
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#include "vp9/encoder/vp9_extend.h"
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#include "vp9/encoder/vp9_lookahead.h"
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/* Return the buffer at the given absolute index and increment the index */
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static struct lookahead_entry *pop(struct lookahead_ctx *ctx,
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unsigned int *idx) {
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unsigned int index = *idx;
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struct lookahead_entry *buf = ctx->buf + index;
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assert(index < ctx->max_sz);
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if (++index >= ctx->max_sz)
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index -= ctx->max_sz;
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*idx = index;
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return buf;
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}
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void vp9_lookahead_destroy(struct lookahead_ctx *ctx) {
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if (ctx) {
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if (ctx->buf) {
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unsigned int i;
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for (i = 0; i < ctx->max_sz; i++)
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vpx_free_frame_buffer(&ctx->buf[i].img);
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free(ctx->buf);
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}
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free(ctx);
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}
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}
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struct lookahead_ctx *vp9_lookahead_init(unsigned int width,
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unsigned int height,
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unsigned int subsampling_x,
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unsigned int subsampling_y,
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#if CONFIG_VP9_HIGHBITDEPTH
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int use_highbitdepth,
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#endif
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unsigned int depth) {
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struct lookahead_ctx *ctx = NULL;
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// Clamp the lookahead queue depth
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depth = clamp(depth, 1, MAX_LAG_BUFFERS);
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// Allocate memory to keep previous source frames available.
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depth += MAX_PRE_FRAMES;
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// Allocate the lookahead structures
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ctx = calloc(1, sizeof(*ctx));
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if (ctx) {
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const int legacy_byte_alignment = 0;
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unsigned int i;
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ctx->max_sz = depth;
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ctx->buf = calloc(depth, sizeof(*ctx->buf));
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if (!ctx->buf)
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goto bail;
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for (i = 0; i < depth; i++)
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if (vpx_alloc_frame_buffer(&ctx->buf[i].img,
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width, height, subsampling_x, subsampling_y,
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#if CONFIG_VP9_HIGHBITDEPTH
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use_highbitdepth,
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#endif
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VP9_ENC_BORDER_IN_PIXELS,
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legacy_byte_alignment))
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goto bail;
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}
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return ctx;
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bail:
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vp9_lookahead_destroy(ctx);
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return NULL;
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}
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#define USE_PARTIAL_COPY 0
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int vp9_lookahead_push(struct lookahead_ctx *ctx, YV12_BUFFER_CONFIG *src,
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int64_t ts_start, int64_t ts_end,
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#if CONFIG_VP9_HIGHBITDEPTH
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int use_highbitdepth,
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#endif
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unsigned int flags) {
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struct lookahead_entry *buf;
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#if USE_PARTIAL_COPY
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int row, col, active_end;
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int mb_rows = (src->y_height + 15) >> 4;
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int mb_cols = (src->y_width + 15) >> 4;
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#endif
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int width = src->y_crop_width;
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int height = src->y_crop_height;
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int uv_width = src->uv_crop_width;
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int uv_height = src->uv_crop_height;
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int subsampling_x = src->subsampling_x;
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int subsampling_y = src->subsampling_y;
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int larger_dimensions, new_dimensions;
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if (ctx->sz + 1 + MAX_PRE_FRAMES > ctx->max_sz)
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return 1;
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ctx->sz++;
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buf = pop(ctx, &ctx->write_idx);
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new_dimensions = width != buf->img.y_crop_width ||
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height != buf->img.y_crop_height ||
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uv_width != buf->img.uv_crop_width ||
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uv_height != buf->img.uv_crop_height;
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larger_dimensions = width > buf->img.y_width ||
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height > buf->img.y_height ||
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uv_width > buf->img.uv_width ||
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uv_height > buf->img.uv_height;
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assert(!larger_dimensions || new_dimensions);
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#if USE_PARTIAL_COPY
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// TODO(jkoleszar): This is disabled for now, as
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// vp9_copy_and_extend_frame_with_rect is not subsampling/alpha aware.
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// Only do this partial copy if the following conditions are all met:
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// 1. Lookahead queue has has size of 1.
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// 2. Active map is provided.
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// 3. This is not a key frame, golden nor altref frame.
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if (!new_dimensions && ctx->max_sz == 1 && active_map && !flags) {
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for (row = 0; row < mb_rows; ++row) {
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col = 0;
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while (1) {
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// Find the first active macroblock in this row.
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for (; col < mb_cols; ++col) {
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if (active_map[col])
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break;
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}
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// No more active macroblock in this row.
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if (col == mb_cols)
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break;
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// Find the end of active region in this row.
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active_end = col;
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for (; active_end < mb_cols; ++active_end) {
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if (!active_map[active_end])
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break;
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}
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// Only copy this active region.
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vp9_copy_and_extend_frame_with_rect(src, &buf->img,
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row << 4,
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col << 4, 16,
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(active_end - col) << 4);
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// Start again from the end of this active region.
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col = active_end;
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}
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active_map += mb_cols;
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}
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} else {
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#endif
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if (larger_dimensions) {
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YV12_BUFFER_CONFIG new_img;
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memset(&new_img, 0, sizeof(new_img));
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if (vpx_alloc_frame_buffer(&new_img,
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width, height, subsampling_x, subsampling_y,
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#if CONFIG_VP9_HIGHBITDEPTH
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use_highbitdepth,
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#endif
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VP9_ENC_BORDER_IN_PIXELS,
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0))
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return 1;
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vpx_free_frame_buffer(&buf->img);
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buf->img = new_img;
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} else if (new_dimensions) {
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buf->img.y_crop_width = src->y_crop_width;
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buf->img.y_crop_height = src->y_crop_height;
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buf->img.uv_crop_width = src->uv_crop_width;
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buf->img.uv_crop_height = src->uv_crop_height;
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buf->img.subsampling_x = src->subsampling_x;
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buf->img.subsampling_y = src->subsampling_y;
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}
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// Partial copy not implemented yet
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vp9_copy_and_extend_frame(src, &buf->img);
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#if USE_PARTIAL_COPY
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}
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#endif
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buf->ts_start = ts_start;
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buf->ts_end = ts_end;
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buf->flags = flags;
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return 0;
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}
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struct lookahead_entry *vp9_lookahead_pop(struct lookahead_ctx *ctx,
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int drain) {
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struct lookahead_entry *buf = NULL;
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if (ctx && ctx->sz && (drain || ctx->sz == ctx->max_sz - MAX_PRE_FRAMES)) {
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buf = pop(ctx, &ctx->read_idx);
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ctx->sz--;
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}
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return buf;
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}
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struct lookahead_entry *vp9_lookahead_peek(struct lookahead_ctx *ctx,
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int index) {
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struct lookahead_entry *buf = NULL;
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if (index >= 0) {
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// Forward peek
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if (index < (int)ctx->sz) {
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index += ctx->read_idx;
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if (index >= (int)ctx->max_sz)
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index -= ctx->max_sz;
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buf = ctx->buf + index;
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}
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} else if (index < 0) {
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// Backward peek
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if (-index <= MAX_PRE_FRAMES) {
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index += ctx->read_idx;
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if (index < 0)
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index += ctx->max_sz;
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buf = ctx->buf + index;
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}
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}
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return buf;
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}
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unsigned int vp9_lookahead_depth(struct lookahead_ctx *ctx) {
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return ctx->sz;
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}
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