1 /*
2  *  Copyright (c) 2015 The WebM project authors. All Rights Reserved.
3  *
4  *  Use of this source code is governed by a BSD-style license
5  *  that can be found in the LICENSE file in the root of the source
6  *  tree. An additional intellectual property rights grant can be found
7  *  in the file PATENTS.  All contributing project authors may
8  *  be found in the AUTHORS file in the root of the source tree.
9  */
10 
11 #include <emmintrin.h>
12 
13 #include "vpx_dsp/vpx_dsp_common.h"
14 #include "vpx_mem/vpx_mem.h"
15 #include "vpx_ports/mem.h"
16 
17 #if CONFIG_VP9_HIGHBITDEPTH
vpx_highbd_quantize_b_sse2(const tran_low_t * coeff_ptr,intptr_t count,int skip_block,const int16_t * zbin_ptr,const int16_t * round_ptr,const int16_t * quant_ptr,const int16_t * quant_shift_ptr,tran_low_t * qcoeff_ptr,tran_low_t * dqcoeff_ptr,const int16_t * dequant_ptr,uint16_t * eob_ptr,const int16_t * scan,const int16_t * iscan)18 void vpx_highbd_quantize_b_sse2(const tran_low_t *coeff_ptr, intptr_t count,
19                                 int skip_block, const int16_t *zbin_ptr,
20                                 const int16_t *round_ptr,
21                                 const int16_t *quant_ptr,
22                                 const int16_t *quant_shift_ptr,
23                                 tran_low_t *qcoeff_ptr, tran_low_t *dqcoeff_ptr,
24                                 const int16_t *dequant_ptr, uint16_t *eob_ptr,
25                                 const int16_t *scan, const int16_t *iscan) {
26   int i, j, non_zero_regs = (int)count / 4, eob_i = -1;
27   __m128i zbins[2];
28   __m128i nzbins[2];
29 
30   zbins[0] = _mm_set_epi32((int)zbin_ptr[1], (int)zbin_ptr[1], (int)zbin_ptr[1],
31                            (int)zbin_ptr[0]);
32   zbins[1] = _mm_set1_epi32((int)zbin_ptr[1]);
33 
34   nzbins[0] = _mm_setzero_si128();
35   nzbins[1] = _mm_setzero_si128();
36   nzbins[0] = _mm_sub_epi32(nzbins[0], zbins[0]);
37   nzbins[1] = _mm_sub_epi32(nzbins[1], zbins[1]);
38 
39   (void)scan;
40 
41   memset(qcoeff_ptr, 0, count * sizeof(*qcoeff_ptr));
42   memset(dqcoeff_ptr, 0, count * sizeof(*dqcoeff_ptr));
43 
44   if (!skip_block) {
45     // Pre-scan pass
46     for (i = ((int)count / 4) - 1; i >= 0; i--) {
47       __m128i coeffs, cmp1, cmp2;
48       int test;
49       coeffs = _mm_load_si128((const __m128i *)(coeff_ptr + i * 4));
50       cmp1 = _mm_cmplt_epi32(coeffs, zbins[i != 0]);
51       cmp2 = _mm_cmpgt_epi32(coeffs, nzbins[i != 0]);
52       cmp1 = _mm_and_si128(cmp1, cmp2);
53       test = _mm_movemask_epi8(cmp1);
54       if (test == 0xffff)
55         non_zero_regs--;
56       else
57         break;
58     }
59 
60     // Quantization pass:
61     for (i = 0; i < non_zero_regs; i++) {
62       __m128i coeffs, coeffs_sign, tmp1, tmp2;
63       int test;
64       int abs_coeff[4];
65       int coeff_sign[4];
66 
67       coeffs = _mm_load_si128((const __m128i *)(coeff_ptr + i * 4));
68       coeffs_sign = _mm_srai_epi32(coeffs, 31);
69       coeffs = _mm_sub_epi32(_mm_xor_si128(coeffs, coeffs_sign), coeffs_sign);
70       tmp1 = _mm_cmpgt_epi32(coeffs, zbins[i != 0]);
71       tmp2 = _mm_cmpeq_epi32(coeffs, zbins[i != 0]);
72       tmp1 = _mm_or_si128(tmp1, tmp2);
73       test = _mm_movemask_epi8(tmp1);
74       _mm_storeu_si128((__m128i *)abs_coeff, coeffs);
75       _mm_storeu_si128((__m128i *)coeff_sign, coeffs_sign);
76 
77       for (j = 0; j < 4; j++) {
78         if (test & (1 << (4 * j))) {
79           int k = 4 * i + j;
80           const int64_t tmp3 = abs_coeff[j] + round_ptr[k != 0];
81           const int64_t tmp4 = ((tmp3 * quant_ptr[k != 0]) >> 16) + tmp3;
82           const uint32_t abs_qcoeff =
83               (uint32_t)((tmp4 * quant_shift_ptr[k != 0]) >> 16);
84           qcoeff_ptr[k] = (int)(abs_qcoeff ^ coeff_sign[j]) - coeff_sign[j];
85           dqcoeff_ptr[k] = qcoeff_ptr[k] * dequant_ptr[k != 0];
86           if (abs_qcoeff) eob_i = iscan[k] > eob_i ? iscan[k] : eob_i;
87         }
88       }
89     }
90   }
91   *eob_ptr = eob_i + 1;
92 }
93 
vpx_highbd_quantize_b_32x32_sse2(const tran_low_t * coeff_ptr,intptr_t n_coeffs,int skip_block,const int16_t * zbin_ptr,const int16_t * round_ptr,const int16_t * quant_ptr,const int16_t * quant_shift_ptr,tran_low_t * qcoeff_ptr,tran_low_t * dqcoeff_ptr,const int16_t * dequant_ptr,uint16_t * eob_ptr,const int16_t * scan,const int16_t * iscan)94 void vpx_highbd_quantize_b_32x32_sse2(
95     const tran_low_t *coeff_ptr, intptr_t n_coeffs, int skip_block,
96     const int16_t *zbin_ptr, const int16_t *round_ptr, const int16_t *quant_ptr,
97     const int16_t *quant_shift_ptr, tran_low_t *qcoeff_ptr,
98     tran_low_t *dqcoeff_ptr, const int16_t *dequant_ptr, uint16_t *eob_ptr,
99     const int16_t *scan, const int16_t *iscan) {
100   __m128i zbins[2];
101   __m128i nzbins[2];
102   int idx = 0;
103   int idx_arr[1024];
104   int i, eob = -1;
105   const int zbin0_tmp = ROUND_POWER_OF_TWO(zbin_ptr[0], 1);
106   const int zbin1_tmp = ROUND_POWER_OF_TWO(zbin_ptr[1], 1);
107   (void)scan;
108   zbins[0] = _mm_set_epi32(zbin1_tmp, zbin1_tmp, zbin1_tmp, zbin0_tmp);
109   zbins[1] = _mm_set1_epi32(zbin1_tmp);
110 
111   nzbins[0] = _mm_setzero_si128();
112   nzbins[1] = _mm_setzero_si128();
113   nzbins[0] = _mm_sub_epi32(nzbins[0], zbins[0]);
114   nzbins[1] = _mm_sub_epi32(nzbins[1], zbins[1]);
115 
116   memset(qcoeff_ptr, 0, n_coeffs * sizeof(*qcoeff_ptr));
117   memset(dqcoeff_ptr, 0, n_coeffs * sizeof(*dqcoeff_ptr));
118 
119   if (!skip_block) {
120     // Pre-scan pass
121     for (i = 0; i < n_coeffs / 4; i++) {
122       __m128i coeffs, cmp1, cmp2;
123       int test;
124       coeffs = _mm_load_si128((const __m128i *)(coeff_ptr + i * 4));
125       cmp1 = _mm_cmplt_epi32(coeffs, zbins[i != 0]);
126       cmp2 = _mm_cmpgt_epi32(coeffs, nzbins[i != 0]);
127       cmp1 = _mm_and_si128(cmp1, cmp2);
128       test = _mm_movemask_epi8(cmp1);
129       if (!(test & 0xf)) idx_arr[idx++] = i * 4;
130       if (!(test & 0xf0)) idx_arr[idx++] = i * 4 + 1;
131       if (!(test & 0xf00)) idx_arr[idx++] = i * 4 + 2;
132       if (!(test & 0xf000)) idx_arr[idx++] = i * 4 + 3;
133     }
134 
135     // Quantization pass: only process the coefficients selected in
136     // pre-scan pass. Note: idx can be zero.
137     for (i = 0; i < idx; i++) {
138       const int rc = idx_arr[i];
139       const int coeff = coeff_ptr[rc];
140       const int coeff_sign = (coeff >> 31);
141       const int abs_coeff = (coeff ^ coeff_sign) - coeff_sign;
142       const int64_t tmp1 =
143           abs_coeff + ROUND_POWER_OF_TWO(round_ptr[rc != 0], 1);
144       const int64_t tmp2 = ((tmp1 * quant_ptr[rc != 0]) >> 16) + tmp1;
145       const uint32_t abs_qcoeff =
146           (uint32_t)((tmp2 * quant_shift_ptr[rc != 0]) >> 15);
147       qcoeff_ptr[rc] = (int)(abs_qcoeff ^ coeff_sign) - coeff_sign;
148       dqcoeff_ptr[rc] = qcoeff_ptr[rc] * dequant_ptr[rc != 0] / 2;
149       if (abs_qcoeff) eob = iscan[idx_arr[i]] > eob ? iscan[idx_arr[i]] : eob;
150     }
151   }
152   *eob_ptr = eob + 1;
153 }
154 #endif
155