This commit adds the logic for segmentation map initialization and disable temporal update of segmentation map when error-resilient mode is on. It fixes the enc/dec mistmates (release build) and assertions(debug) when both aq-mode and error-resilient are on. Change-Id: Id2155e8b28962cf1f64494f4df0c8d79499b6890
		
			
				
	
	
		
			207 lines
		
	
	
		
			6.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			207 lines
		
	
	
		
			6.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 *  Copyright (c) 2013 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 <math.h>
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#include "vpx_ports/mem.h"
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#include "vp10/encoder/aq_variance.h"
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#include "vp10/common/seg_common.h"
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#include "vp10/encoder/ratectrl.h"
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#include "vp10/encoder/rd.h"
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#include "vp10/encoder/segmentation.h"
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#include "vpx_ports/system_state.h"
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#define ENERGY_MIN (-4)
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#define ENERGY_MAX (1)
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#define ENERGY_SPAN (ENERGY_MAX - ENERGY_MIN +  1)
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#define ENERGY_IN_BOUNDS(energy)\
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  assert((energy) >= ENERGY_MIN && (energy) <= ENERGY_MAX)
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static const double rate_ratio[MAX_SEGMENTS] =
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  {2.5, 2.0, 1.5, 1.0, 0.75, 1.0, 1.0, 1.0};
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static const int segment_id[ENERGY_SPAN] = {0, 1, 1, 2, 3, 4};
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#define SEGMENT_ID(i) segment_id[(i) - ENERGY_MIN]
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DECLARE_ALIGNED(16, static const uint8_t, vp10_64_zeros[64]) = {0};
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#if CONFIG_VP9_HIGHBITDEPTH
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DECLARE_ALIGNED(16, static const uint16_t, vp10_highbd_64_zeros[64]) = {0};
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#endif
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unsigned int vp10_vaq_segment_id(int energy) {
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  ENERGY_IN_BOUNDS(energy);
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  return SEGMENT_ID(energy);
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}
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void vp10_vaq_frame_setup(VP10_COMP *cpi) {
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  VP10_COMMON *cm = &cpi->common;
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  struct segmentation *seg = &cm->seg;
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  int i;
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  if (frame_is_intra_only(cm) || cm->error_resilient_mode ||
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      cpi->refresh_alt_ref_frame ||
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      (cpi->refresh_golden_frame && !cpi->rc.is_src_frame_alt_ref)) {
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    vp10_enable_segmentation(seg);
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    vp10_clearall_segfeatures(seg);
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    seg->abs_delta = SEGMENT_DELTADATA;
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    vpx_clear_system_state();
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    for (i = 0; i < MAX_SEGMENTS; ++i) {
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      int qindex_delta =
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          vp10_compute_qdelta_by_rate(&cpi->rc, cm->frame_type, cm->base_qindex,
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                                     rate_ratio[i], cm->bit_depth);
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      // We don't allow qindex 0 in a segment if the base value is not 0.
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      // Q index 0 (lossless) implies 4x4 encoding only and in AQ mode a segment
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      // Q delta is sometimes applied without going back around the rd loop.
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      // This could lead to an illegal combination of partition size and q.
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      if ((cm->base_qindex != 0) && ((cm->base_qindex + qindex_delta) == 0)) {
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        qindex_delta = -cm->base_qindex + 1;
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      }
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      // No need to enable SEG_LVL_ALT_Q for this segment.
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      if (rate_ratio[i] == 1.0) {
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        continue;
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      }
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      vp10_set_segdata(seg, i, SEG_LVL_ALT_Q, qindex_delta);
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      vp10_enable_segfeature(seg, i, SEG_LVL_ALT_Q);
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    }
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  }
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}
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/* TODO(agrange, paulwilkins): The block_variance calls the unoptimized versions
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 * of variance() and highbd_8_variance(). It should not.
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 */
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static void aq_variance(const uint8_t *a, int  a_stride,
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                        const uint8_t *b, int  b_stride,
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                        int  w, int  h, unsigned int *sse, int *sum) {
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  int i, j;
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  *sum = 0;
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  *sse = 0;
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  for (i = 0; i < h; i++) {
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    for (j = 0; j < w; j++) {
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      const int diff = a[j] - b[j];
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      *sum += diff;
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      *sse += diff * diff;
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    }
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    a += a_stride;
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    b += b_stride;
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  }
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}
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#if CONFIG_VP9_HIGHBITDEPTH
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static void aq_highbd_variance64(const uint8_t *a8, int  a_stride,
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                                 const uint8_t *b8, int  b_stride,
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                                 int w, int h, uint64_t *sse, uint64_t *sum) {
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  int i, j;
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  uint16_t *a = CONVERT_TO_SHORTPTR(a8);
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  uint16_t *b = CONVERT_TO_SHORTPTR(b8);
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  *sum = 0;
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  *sse = 0;
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  for (i = 0; i < h; i++) {
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    for (j = 0; j < w; j++) {
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      const int diff = a[j] - b[j];
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      *sum += diff;
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      *sse += diff * diff;
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    }
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    a += a_stride;
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    b += b_stride;
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  }
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}
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static void aq_highbd_8_variance(const uint8_t *a8, int  a_stride,
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                                 const uint8_t *b8, int  b_stride,
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                                 int w, int h, unsigned int *sse, int *sum) {
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  uint64_t sse_long = 0;
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  uint64_t sum_long = 0;
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  aq_highbd_variance64(a8, a_stride, b8, b_stride, w, h, &sse_long, &sum_long);
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  *sse = (unsigned int)sse_long;
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  *sum = (int)sum_long;
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}
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#endif  // CONFIG_VP9_HIGHBITDEPTH
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static unsigned int block_variance(VP10_COMP *cpi, MACROBLOCK *x,
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                                   BLOCK_SIZE bs) {
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  MACROBLOCKD *xd = &x->e_mbd;
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  unsigned int var, sse;
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  int right_overflow = (xd->mb_to_right_edge < 0) ?
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      ((-xd->mb_to_right_edge) >> 3) : 0;
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  int bottom_overflow = (xd->mb_to_bottom_edge < 0) ?
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      ((-xd->mb_to_bottom_edge) >> 3) : 0;
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  if (right_overflow || bottom_overflow) {
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    const int bw = 8 * num_8x8_blocks_wide_lookup[bs] - right_overflow;
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    const int bh = 8 * num_8x8_blocks_high_lookup[bs] - bottom_overflow;
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    int avg;
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#if CONFIG_VP9_HIGHBITDEPTH
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    if (xd->cur_buf->flags & YV12_FLAG_HIGHBITDEPTH) {
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      aq_highbd_8_variance(x->plane[0].src.buf, x->plane[0].src.stride,
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                           CONVERT_TO_BYTEPTR(vp10_highbd_64_zeros), 0, bw, bh,
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                           &sse, &avg);
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      sse >>= 2 * (xd->bd - 8);
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      avg >>= (xd->bd - 8);
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    } else {
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      aq_variance(x->plane[0].src.buf, x->plane[0].src.stride,
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                  vp10_64_zeros, 0, bw, bh, &sse, &avg);
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    }
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#else
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    aq_variance(x->plane[0].src.buf, x->plane[0].src.stride,
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                vp10_64_zeros, 0, bw, bh, &sse, &avg);
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#endif  // CONFIG_VP9_HIGHBITDEPTH
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    var = sse - (((int64_t)avg * avg) / (bw * bh));
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    return (256 * var) / (bw * bh);
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  } else {
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#if CONFIG_VP9_HIGHBITDEPTH
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    if (xd->cur_buf->flags & YV12_FLAG_HIGHBITDEPTH) {
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      var = cpi->fn_ptr[bs].vf(x->plane[0].src.buf,
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                               x->plane[0].src.stride,
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                               CONVERT_TO_BYTEPTR(vp10_highbd_64_zeros),
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                               0, &sse);
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    } else {
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      var = cpi->fn_ptr[bs].vf(x->plane[0].src.buf,
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                               x->plane[0].src.stride,
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                               vp10_64_zeros, 0, &sse);
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    }
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#else
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    var = cpi->fn_ptr[bs].vf(x->plane[0].src.buf,
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                             x->plane[0].src.stride,
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                             vp10_64_zeros, 0, &sse);
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#endif  // CONFIG_VP9_HIGHBITDEPTH
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    return (256 * var) >> num_pels_log2_lookup[bs];
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  }
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}
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double vp10_log_block_var(VP10_COMP *cpi, MACROBLOCK *x, BLOCK_SIZE bs) {
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  unsigned int var = block_variance(cpi, x, bs);
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  vpx_clear_system_state();
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  return log(var + 1.0);
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}
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#define DEFAULT_E_MIDPOINT 10.0
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int vp10_block_energy(VP10_COMP *cpi, MACROBLOCK *x, BLOCK_SIZE bs) {
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  double energy;
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  double energy_midpoint;
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  vpx_clear_system_state();
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  energy_midpoint =
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    (cpi->oxcf.pass == 2) ? cpi->twopass.mb_av_energy : DEFAULT_E_MIDPOINT;
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  energy = vp10_log_block_var(cpi, x, bs) - energy_midpoint;
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  return clamp((int)round(energy), ENERGY_MIN, ENERGY_MAX);
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}
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