460 строки
13 KiB
C
460 строки
13 KiB
C
/*
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* Copyright (c) 2010 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 <limits.h>
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#include <stdio.h>
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#include "vp9/common/vp9_onyxc_int.h"
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#if CONFIG_VP9_POSTPROC
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#include "vp9/common/vp9_postproc.h"
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#endif
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#include "vp9/decoder/vp9_onyxd.h"
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#include "vp9/decoder/vp9_onyxd_int.h"
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#include "vpx_mem/vpx_mem.h"
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#include "vp9/common/vp9_alloccommon.h"
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#include "vp9/common/vp9_loopfilter.h"
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#include "vp9/common/vp9_quant_common.h"
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#include "vpx_scale/vpx_scale.h"
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#include "vp9/common/vp9_systemdependent.h"
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#include "vpx_ports/vpx_timer.h"
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#include "vp9/decoder/vp9_decodeframe.h"
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#include "vp9/decoder/vp9_detokenize.h"
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#include "./vpx_scale_rtcd.h"
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#define WRITE_RECON_BUFFER 0
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#if WRITE_RECON_BUFFER == 1
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static void recon_write_yuv_frame(const char *name,
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const YV12_BUFFER_CONFIG *s,
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int w, int _h) {
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FILE *yuv_file = fopen(name, "ab");
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const uint8_t *src = s->y_buffer;
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int h = _h;
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do {
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fwrite(src, w, 1, yuv_file);
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src += s->y_stride;
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} while (--h);
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src = s->u_buffer;
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h = (_h + 1) >> 1;
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w = (w + 1) >> 1;
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do {
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fwrite(src, w, 1, yuv_file);
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src += s->uv_stride;
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} while (--h);
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src = s->v_buffer;
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h = (_h + 1) >> 1;
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do {
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fwrite(src, w, 1, yuv_file);
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src += s->uv_stride;
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} while (--h);
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fclose(yuv_file);
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}
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#endif
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#if WRITE_RECON_BUFFER == 2
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void write_dx_frame_to_file(YV12_BUFFER_CONFIG *frame, int this_frame) {
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// write the frame
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FILE *yframe;
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int i;
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char filename[255];
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snprintf(filename, sizeof(filename)-1, "dx\\y%04d.raw", this_frame);
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yframe = fopen(filename, "wb");
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for (i = 0; i < frame->y_height; i++)
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fwrite(frame->y_buffer + i * frame->y_stride,
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frame->y_width, 1, yframe);
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fclose(yframe);
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snprintf(filename, sizeof(filename)-1, "dx\\u%04d.raw", this_frame);
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yframe = fopen(filename, "wb");
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for (i = 0; i < frame->uv_height; i++)
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fwrite(frame->u_buffer + i * frame->uv_stride,
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frame->uv_width, 1, yframe);
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fclose(yframe);
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snprintf(filename, sizeof(filename)-1, "dx\\v%04d.raw", this_frame);
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yframe = fopen(filename, "wb");
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for (i = 0; i < frame->uv_height; i++)
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fwrite(frame->v_buffer + i * frame->uv_stride,
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frame->uv_width, 1, yframe);
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fclose(yframe);
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}
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#endif
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void vp9_initialize_dec() {
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static int init_done = 0;
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if (!init_done) {
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vp9_initialize_common();
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vp9_init_quant_tables();
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init_done = 1;
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}
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}
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static void init_macroblockd(VP9D_COMP *const pbi) {
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MACROBLOCKD *xd = &pbi->mb;
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struct macroblockd_plane *const pd = xd->plane;
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int i;
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for (i = 0; i < MAX_MB_PLANE; ++i) {
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pd[i].dqcoeff = pbi->dqcoeff[i];
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pd[i].eobs = pbi->eobs[i];
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}
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}
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VP9D_PTR vp9_create_decompressor(VP9D_CONFIG *oxcf) {
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VP9D_COMP *const pbi = vpx_memalign(32, sizeof(VP9D_COMP));
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VP9_COMMON *const cm = pbi ? &pbi->common : NULL;
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if (!cm)
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return NULL;
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vp9_zero(*pbi);
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if (setjmp(cm->error.jmp)) {
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cm->error.setjmp = 0;
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vp9_remove_decompressor(pbi);
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return NULL;
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}
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cm->error.setjmp = 1;
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vp9_initialize_dec();
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vp9_create_common(cm);
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pbi->oxcf = *oxcf;
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pbi->ready_for_new_data = 1;
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cm->current_video_frame = 0;
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// vp9_init_dequantizer() is first called here. Add check in
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// frame_init_dequantizer() to avoid unnecessary calling of
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// vp9_init_dequantizer() for every frame.
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vp9_init_dequantizer(cm);
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vp9_loop_filter_init(cm);
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cm->error.setjmp = 0;
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pbi->decoded_key_frame = 0;
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init_macroblockd(pbi);
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vp9_worker_init(&pbi->lf_worker);
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return pbi;
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}
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void vp9_remove_decompressor(VP9D_PTR ptr) {
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int i;
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VP9D_COMP *const pbi = (VP9D_COMP *)ptr;
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if (!pbi)
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return;
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vp9_remove_common(&pbi->common);
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vp9_worker_end(&pbi->lf_worker);
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vpx_free(pbi->lf_worker.data1);
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for (i = 0; i < pbi->num_tile_workers; ++i) {
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VP9Worker *const worker = &pbi->tile_workers[i];
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vp9_worker_end(worker);
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vpx_free(worker->data1);
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vpx_free(worker->data2);
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}
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vpx_free(pbi->tile_workers);
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vpx_free(pbi->mi_streams);
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vpx_free(pbi->above_context[0]);
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vpx_free(pbi->above_seg_context);
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vpx_free(pbi);
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}
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static int equal_dimensions(YV12_BUFFER_CONFIG *a, YV12_BUFFER_CONFIG *b) {
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return a->y_height == b->y_height && a->y_width == b->y_width &&
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a->uv_height == b->uv_height && a->uv_width == b->uv_width;
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}
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vpx_codec_err_t vp9_copy_reference_dec(VP9D_PTR ptr,
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VP9_REFFRAME ref_frame_flag,
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YV12_BUFFER_CONFIG *sd) {
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VP9D_COMP *pbi = (VP9D_COMP *) ptr;
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VP9_COMMON *cm = &pbi->common;
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/* TODO(jkoleszar): The decoder doesn't have any real knowledge of what the
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* encoder is using the frame buffers for. This is just a stub to keep the
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* vpxenc --test-decode functionality working, and will be replaced in a
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* later commit that adds VP9-specific controls for this functionality.
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*/
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if (ref_frame_flag == VP9_LAST_FLAG) {
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YV12_BUFFER_CONFIG *cfg = &cm->yv12_fb[cm->ref_frame_map[0]];
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if (!equal_dimensions(cfg, sd))
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vpx_internal_error(&cm->error, VPX_CODEC_ERROR,
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"Incorrect buffer dimensions");
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else
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vp8_yv12_copy_frame(cfg, sd);
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} else {
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vpx_internal_error(&cm->error, VPX_CODEC_ERROR,
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"Invalid reference frame");
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}
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return cm->error.error_code;
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}
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vpx_codec_err_t vp9_set_reference_dec(VP9D_PTR ptr, VP9_REFFRAME ref_frame_flag,
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YV12_BUFFER_CONFIG *sd) {
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VP9D_COMP *pbi = (VP9D_COMP *) ptr;
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VP9_COMMON *cm = &pbi->common;
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int *ref_fb_ptr = NULL;
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/* TODO(jkoleszar): The decoder doesn't have any real knowledge of what the
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* encoder is using the frame buffers for. This is just a stub to keep the
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* vpxenc --test-decode functionality working, and will be replaced in a
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* later commit that adds VP9-specific controls for this functionality.
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*/
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if (ref_frame_flag == VP9_LAST_FLAG) {
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ref_fb_ptr = &pbi->common.active_ref_idx[0];
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} else if (ref_frame_flag == VP9_GOLD_FLAG) {
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ref_fb_ptr = &pbi->common.active_ref_idx[1];
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} else if (ref_frame_flag == VP9_ALT_FLAG) {
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ref_fb_ptr = &pbi->common.active_ref_idx[2];
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} else {
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vpx_internal_error(&pbi->common.error, VPX_CODEC_ERROR,
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"Invalid reference frame");
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return pbi->common.error.error_code;
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}
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if (!equal_dimensions(&cm->yv12_fb[*ref_fb_ptr], sd)) {
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vpx_internal_error(&pbi->common.error, VPX_CODEC_ERROR,
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"Incorrect buffer dimensions");
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} else {
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// Find an empty frame buffer.
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const int free_fb = get_free_fb(cm);
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// Decrease fb_idx_ref_cnt since it will be increased again in
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// ref_cnt_fb() below.
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cm->fb_idx_ref_cnt[free_fb]--;
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// Manage the reference counters and copy image.
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ref_cnt_fb(cm->fb_idx_ref_cnt, ref_fb_ptr, free_fb);
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vp8_yv12_copy_frame(sd, &cm->yv12_fb[*ref_fb_ptr]);
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}
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return pbi->common.error.error_code;
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}
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int vp9_get_reference_dec(VP9D_PTR ptr, int index, YV12_BUFFER_CONFIG **fb) {
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VP9D_COMP *pbi = (VP9D_COMP *) ptr;
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VP9_COMMON *cm = &pbi->common;
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if (index < 0 || index >= NUM_REF_FRAMES)
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return -1;
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*fb = &cm->yv12_fb[cm->ref_frame_map[index]];
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return 0;
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}
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/* If any buffer updating is signaled it should be done here. */
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static void swap_frame_buffers(VP9D_COMP *pbi) {
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int ref_index = 0, mask;
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VP9_COMMON *const cm = &pbi->common;
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for (mask = pbi->refresh_frame_flags; mask; mask >>= 1) {
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if (mask & 1)
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ref_cnt_fb(cm->fb_idx_ref_cnt, &cm->ref_frame_map[ref_index],
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cm->new_fb_idx);
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++ref_index;
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}
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cm->frame_to_show = get_frame_new_buffer(cm);
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cm->fb_idx_ref_cnt[cm->new_fb_idx]--;
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// Invalidate these references until the next frame starts.
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for (ref_index = 0; ref_index < 3; ref_index++)
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cm->active_ref_idx[ref_index] = INT_MAX;
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}
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int vp9_receive_compressed_data(VP9D_PTR ptr,
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size_t size, const uint8_t **psource,
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int64_t time_stamp) {
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VP9D_COMP *pbi = (VP9D_COMP *) ptr;
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VP9_COMMON *cm = &pbi->common;
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const uint8_t *source = *psource;
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int retcode = 0;
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/*if(pbi->ready_for_new_data == 0)
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return -1;*/
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if (ptr == 0)
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return -1;
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cm->error.error_code = VPX_CODEC_OK;
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pbi->source = source;
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pbi->source_sz = size;
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if (pbi->source_sz == 0) {
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/* This is used to signal that we are missing frames.
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* We do not know if the missing frame(s) was supposed to update
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* any of the reference buffers, but we act conservative and
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* mark only the last buffer as corrupted.
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*
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* TODO(jkoleszar): Error concealment is undefined and non-normative
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* at this point, but if it becomes so, [0] may not always be the correct
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* thing to do here.
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*/
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if (cm->active_ref_idx[0] != INT_MAX)
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get_frame_ref_buffer(cm, 0)->corrupted = 1;
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}
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cm->new_fb_idx = get_free_fb(cm);
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if (setjmp(cm->error.jmp)) {
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cm->error.setjmp = 0;
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/* We do not know if the missing frame(s) was supposed to update
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* any of the reference buffers, but we act conservative and
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* mark only the last buffer as corrupted.
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*
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* TODO(jkoleszar): Error concealment is undefined and non-normative
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* at this point, but if it becomes so, [0] may not always be the correct
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* thing to do here.
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*/
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if (cm->active_ref_idx[0] != INT_MAX)
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get_frame_ref_buffer(cm, 0)->corrupted = 1;
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if (cm->fb_idx_ref_cnt[cm->new_fb_idx] > 0)
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cm->fb_idx_ref_cnt[cm->new_fb_idx]--;
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return -1;
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}
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cm->error.setjmp = 1;
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retcode = vp9_decode_frame(pbi, psource);
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if (retcode < 0) {
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cm->error.error_code = VPX_CODEC_ERROR;
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cm->error.setjmp = 0;
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if (cm->fb_idx_ref_cnt[cm->new_fb_idx] > 0)
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cm->fb_idx_ref_cnt[cm->new_fb_idx]--;
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return retcode;
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}
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swap_frame_buffers(pbi);
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#if WRITE_RECON_BUFFER == 2
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if (cm->show_frame)
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write_dx_frame_to_file(cm->frame_to_show,
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cm->current_video_frame);
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else
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write_dx_frame_to_file(cm->frame_to_show,
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cm->current_video_frame + 1000);
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#endif
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if (!pbi->do_loopfilter_inline) {
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vp9_loop_filter_frame(cm, &pbi->mb, pbi->common.lf.filter_level, 0, 0);
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}
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#if WRITE_RECON_BUFFER == 2
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if (cm->show_frame)
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write_dx_frame_to_file(cm->frame_to_show,
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cm->current_video_frame + 2000);
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else
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write_dx_frame_to_file(cm->frame_to_show,
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cm->current_video_frame + 3000);
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#endif
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vp9_extend_frame_inner_borders(cm->frame_to_show,
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cm->subsampling_x,
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cm->subsampling_y);
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#if WRITE_RECON_BUFFER == 1
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if (cm->show_frame)
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recon_write_yuv_frame("recon.yuv", cm->frame_to_show,
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cm->width, cm->height);
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#endif
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vp9_clear_system_state();
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cm->last_show_frame = cm->show_frame;
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if (cm->show_frame) {
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// current mip will be the prev_mip for the next frame
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MODE_INFO *temp = cm->prev_mip;
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MODE_INFO **temp2 = cm->prev_mi_grid_base;
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cm->prev_mip = cm->mip;
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cm->mip = temp;
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cm->prev_mi_grid_base = cm->mi_grid_base;
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cm->mi_grid_base = temp2;
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// update the upper left visible macroblock ptrs
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cm->mi = cm->mip + cm->mode_info_stride + 1;
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cm->prev_mi = cm->prev_mip + cm->mode_info_stride + 1;
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cm->mi_grid_visible = cm->mi_grid_base + cm->mode_info_stride + 1;
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cm->prev_mi_grid_visible = cm->prev_mi_grid_base + cm->mode_info_stride + 1;
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pbi->mb.mi_8x8 = cm->mi_grid_visible;
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pbi->mb.mi_8x8[0] = cm->mi;
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cm->current_video_frame++;
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}
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pbi->ready_for_new_data = 0;
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pbi->last_time_stamp = time_stamp;
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pbi->source_sz = 0;
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cm->error.setjmp = 0;
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return retcode;
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}
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int vp9_get_raw_frame(VP9D_PTR ptr, YV12_BUFFER_CONFIG *sd,
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int64_t *time_stamp, int64_t *time_end_stamp,
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vp9_ppflags_t *flags) {
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int ret = -1;
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VP9D_COMP *pbi = (VP9D_COMP *) ptr;
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if (pbi->ready_for_new_data == 1)
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return ret;
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/* ie no raw frame to show!!! */
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if (pbi->common.show_frame == 0)
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return ret;
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pbi->ready_for_new_data = 1;
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*time_stamp = pbi->last_time_stamp;
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*time_end_stamp = 0;
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#if CONFIG_VP9_POSTPROC
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ret = vp9_post_proc_frame(&pbi->common, sd, flags);
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#else
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if (pbi->common.frame_to_show) {
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*sd = *pbi->common.frame_to_show;
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sd->y_width = pbi->common.width;
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sd->y_height = pbi->common.height;
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sd->uv_width = sd->y_width >> pbi->common.subsampling_x;
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sd->uv_height = sd->y_height >> pbi->common.subsampling_y;
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ret = 0;
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} else {
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ret = -1;
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}
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#endif /*!CONFIG_POSTPROC*/
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vp9_clear_system_state();
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return ret;
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}
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