xref: /aosp_15_r20/external/flac/src/libFLAC/fixed_intrin_sse2.c (revision 600f14f40d737144c998e2ec7a483122d3776fbc)
1*600f14f4SXin Li /* libFLAC - Free Lossless Audio Codec library
2*600f14f4SXin Li  * Copyright (C) 2000-2009  Josh Coalson
3*600f14f4SXin Li  * Copyright (C) 2011-2023  Xiph.Org Foundation
4*600f14f4SXin Li  *
5*600f14f4SXin Li  * Redistribution and use in source and binary forms, with or without
6*600f14f4SXin Li  * modification, are permitted provided that the following conditions
7*600f14f4SXin Li  * are met:
8*600f14f4SXin Li  *
9*600f14f4SXin Li  * - Redistributions of source code must retain the above copyright
10*600f14f4SXin Li  * notice, this list of conditions and the following disclaimer.
11*600f14f4SXin Li  *
12*600f14f4SXin Li  * - Redistributions in binary form must reproduce the above copyright
13*600f14f4SXin Li  * notice, this list of conditions and the following disclaimer in the
14*600f14f4SXin Li  * documentation and/or other materials provided with the distribution.
15*600f14f4SXin Li  *
16*600f14f4SXin Li  * - Neither the name of the Xiph.org Foundation nor the names of its
17*600f14f4SXin Li  * contributors may be used to endorse or promote products derived from
18*600f14f4SXin Li  * this software without specific prior written permission.
19*600f14f4SXin Li  *
20*600f14f4SXin Li  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
21*600f14f4SXin Li  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
22*600f14f4SXin Li  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
23*600f14f4SXin Li  * A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR
24*600f14f4SXin Li  * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
25*600f14f4SXin Li  * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
26*600f14f4SXin Li  * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
27*600f14f4SXin Li  * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
28*600f14f4SXin Li  * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
29*600f14f4SXin Li  * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
30*600f14f4SXin Li  * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31*600f14f4SXin Li  */
32*600f14f4SXin Li 
33*600f14f4SXin Li #ifdef HAVE_CONFIG_H
34*600f14f4SXin Li #  include <config.h>
35*600f14f4SXin Li #endif
36*600f14f4SXin Li 
37*600f14f4SXin Li #include "private/cpu.h"
38*600f14f4SXin Li 
39*600f14f4SXin Li #ifndef FLAC__INTEGER_ONLY_LIBRARY
40*600f14f4SXin Li #ifndef FLAC__NO_ASM
41*600f14f4SXin Li #if (defined FLAC__CPU_IA32 || defined FLAC__CPU_X86_64) && defined FLAC__HAS_X86INTRIN
42*600f14f4SXin Li #include "private/fixed.h"
43*600f14f4SXin Li #ifdef FLAC__SSE2_SUPPORTED
44*600f14f4SXin Li 
45*600f14f4SXin Li #include <emmintrin.h> /* SSE2 */
46*600f14f4SXin Li #include <math.h>
47*600f14f4SXin Li #include "private/macros.h"
48*600f14f4SXin Li #include "share/compat.h"
49*600f14f4SXin Li #include "FLAC/assert.h"
50*600f14f4SXin Li 
51*600f14f4SXin Li #ifdef FLAC__CPU_IA32
52*600f14f4SXin Li #define m128i_to_i64(dest, src) _mm_storel_epi64((__m128i*)&dest, src)
53*600f14f4SXin Li #else
54*600f14f4SXin Li #define m128i_to_i64(dest, src) dest = _mm_cvtsi128_si64(src)
55*600f14f4SXin Li #endif
56*600f14f4SXin Li 
57*600f14f4SXin Li #ifdef local_abs
58*600f14f4SXin Li #undef local_abs
59*600f14f4SXin Li #endif
60*600f14f4SXin Li #define local_abs(x) ((uint32_t)((x)<0? -(x) : (x)))
61*600f14f4SXin Li 
62*600f14f4SXin Li FLAC__SSE_TARGET("sse2")
FLAC__fixed_compute_best_predictor_intrin_sse2(const FLAC__int32 data[],uint32_t data_len,float residual_bits_per_sample[FLAC__MAX_FIXED_ORDER+1])63*600f14f4SXin Li uint32_t FLAC__fixed_compute_best_predictor_intrin_sse2(const FLAC__int32 data[], uint32_t data_len, float residual_bits_per_sample[FLAC__MAX_FIXED_ORDER + 1])
64*600f14f4SXin Li {
65*600f14f4SXin Li 	FLAC__uint32 total_error_0, total_error_1, total_error_2, total_error_3, total_error_4;
66*600f14f4SXin Li 	FLAC__int32 i, data_len_int;
67*600f14f4SXin Li 	uint32_t order;
68*600f14f4SXin Li 	__m128i total_err0, total_err1, total_err2, total_err3, total_err4;
69*600f14f4SXin Li 	__m128i prev_err0,  prev_err1,  prev_err2,  prev_err3;
70*600f14f4SXin Li 	__m128i tempA, tempB, bitmask;
71*600f14f4SXin Li 	FLAC__int32 data_scalar[4];
72*600f14f4SXin Li 	FLAC__int32 prev_err0_scalar[4];
73*600f14f4SXin Li 	FLAC__int32 prev_err1_scalar[4];
74*600f14f4SXin Li 	FLAC__int32 prev_err2_scalar[4];
75*600f14f4SXin Li 	FLAC__int32 prev_err3_scalar[4];
76*600f14f4SXin Li 	total_err0 = _mm_setzero_si128();
77*600f14f4SXin Li 	total_err1 = _mm_setzero_si128();
78*600f14f4SXin Li 	total_err2 = _mm_setzero_si128();
79*600f14f4SXin Li 	total_err3 = _mm_setzero_si128();
80*600f14f4SXin Li 	total_err4 = _mm_setzero_si128();
81*600f14f4SXin Li 	data_len_int = data_len;
82*600f14f4SXin Li 
83*600f14f4SXin Li 	for(i = 0; i < 4; i++){
84*600f14f4SXin Li 		prev_err0_scalar[i] = data[-1+i*(data_len_int/4)];
85*600f14f4SXin Li 		prev_err1_scalar[i] = data[-1+i*(data_len_int/4)] - data[-2+i*(data_len_int/4)];
86*600f14f4SXin Li 		prev_err2_scalar[i] = prev_err1_scalar[i] - (data[-2+i*(data_len_int/4)] - data[-3+i*(data_len_int/4)]);
87*600f14f4SXin Li 		prev_err3_scalar[i] = prev_err2_scalar[i] - (data[-2+i*(data_len_int/4)] - 2*data[-3+i*(data_len_int/4)] + data[-4+i*(data_len_int/4)]);
88*600f14f4SXin Li 	}
89*600f14f4SXin Li 	prev_err0 = _mm_loadu_si128((const __m128i*)prev_err0_scalar);
90*600f14f4SXin Li 	prev_err1 = _mm_loadu_si128((const __m128i*)prev_err1_scalar);
91*600f14f4SXin Li 	prev_err2 = _mm_loadu_si128((const __m128i*)prev_err2_scalar);
92*600f14f4SXin Li 	prev_err3 = _mm_loadu_si128((const __m128i*)prev_err3_scalar);
93*600f14f4SXin Li 	for(i = 0; i < data_len_int / 4; i++){
94*600f14f4SXin Li 		data_scalar[0] = data[i];
95*600f14f4SXin Li 		data_scalar[1] = data[i+data_len/4];
96*600f14f4SXin Li 		data_scalar[2] = data[i+2*(data_len/4)];
97*600f14f4SXin Li 		data_scalar[3] = data[i+3*(data_len/4)];
98*600f14f4SXin Li 		tempA = _mm_loadu_si128((const __m128i*)data_scalar);
99*600f14f4SXin Li 		/* Next three intrinsics calculate tempB as abs of tempA */
100*600f14f4SXin Li 		bitmask = _mm_srai_epi32(tempA, 31);
101*600f14f4SXin Li 		tempB   = _mm_xor_si128(tempA, bitmask);
102*600f14f4SXin Li 		tempB   = _mm_sub_epi32(tempB, bitmask);
103*600f14f4SXin Li 		total_err0 = _mm_add_epi32(total_err0,tempB);
104*600f14f4SXin Li 		tempB = _mm_sub_epi32(tempA,prev_err0);
105*600f14f4SXin Li 		prev_err0 = tempA;
106*600f14f4SXin Li 		/* Next three intrinsics calculate tempA as abs of tempB */
107*600f14f4SXin Li 		bitmask = _mm_srai_epi32(tempB, 31);
108*600f14f4SXin Li 		tempA   = _mm_xor_si128(tempB, bitmask);
109*600f14f4SXin Li 		tempA   = _mm_sub_epi32(tempA, bitmask);
110*600f14f4SXin Li 		total_err1 = _mm_add_epi32(total_err1,tempA);
111*600f14f4SXin Li 		tempA = _mm_sub_epi32(tempB,prev_err1);
112*600f14f4SXin Li 		prev_err1 = tempB;
113*600f14f4SXin Li 		/* Next three intrinsics calculate tempB as abs of tempA */
114*600f14f4SXin Li 		bitmask = _mm_srai_epi32(tempA, 31);
115*600f14f4SXin Li 		tempB   = _mm_xor_si128(tempA, bitmask);
116*600f14f4SXin Li 		tempB   = _mm_sub_epi32(tempB, bitmask);
117*600f14f4SXin Li 		total_err2 = _mm_add_epi32(total_err2,tempB);
118*600f14f4SXin Li 		tempB = _mm_sub_epi32(tempA,prev_err2);
119*600f14f4SXin Li 		prev_err2 = tempA;
120*600f14f4SXin Li 		/* Next three intrinsics calculate tempA as abs of tempB */
121*600f14f4SXin Li 		bitmask = _mm_srai_epi32(tempB, 31);
122*600f14f4SXin Li 		tempA   = _mm_xor_si128(tempB, bitmask);
123*600f14f4SXin Li 		tempA   = _mm_sub_epi32(tempA, bitmask);
124*600f14f4SXin Li 		total_err3 = _mm_add_epi32(total_err3,tempA);
125*600f14f4SXin Li 		tempA = _mm_sub_epi32(tempB,prev_err3);
126*600f14f4SXin Li 		prev_err3 = tempB;
127*600f14f4SXin Li 		/* Next three intrinsics calculate tempB as abs of tempA */
128*600f14f4SXin Li 		bitmask = _mm_srai_epi32(tempA, 31);
129*600f14f4SXin Li 		tempB   = _mm_xor_si128(tempA, bitmask);
130*600f14f4SXin Li 		tempB   = _mm_sub_epi32(tempB, bitmask);
131*600f14f4SXin Li 		total_err4 = _mm_add_epi32(total_err4,tempB);
132*600f14f4SXin Li 	}
133*600f14f4SXin Li 	_mm_storeu_si128((__m128i*)data_scalar,total_err0);
134*600f14f4SXin Li 	total_error_0 = data_scalar[0] + data_scalar[1] + data_scalar[2] + data_scalar[3];
135*600f14f4SXin Li 	_mm_storeu_si128((__m128i*)data_scalar,total_err1);
136*600f14f4SXin Li 	total_error_1 = data_scalar[0] + data_scalar[1] + data_scalar[2] + data_scalar[3];
137*600f14f4SXin Li 	_mm_storeu_si128((__m128i*)data_scalar,total_err2);
138*600f14f4SXin Li 	total_error_2 = data_scalar[0] + data_scalar[1] + data_scalar[2] + data_scalar[3];
139*600f14f4SXin Li 	_mm_storeu_si128((__m128i*)data_scalar,total_err3);
140*600f14f4SXin Li 	total_error_3 = data_scalar[0] + data_scalar[1] + data_scalar[2] + data_scalar[3];
141*600f14f4SXin Li 	_mm_storeu_si128((__m128i*)data_scalar,total_err4);
142*600f14f4SXin Li 	total_error_4 = data_scalar[0] + data_scalar[1] + data_scalar[2] + data_scalar[3];
143*600f14f4SXin Li 
144*600f14f4SXin Li 	/* Now the remainder of samples needs to be processed */
145*600f14f4SXin Li 	i *= 4;
146*600f14f4SXin Li 	if(data_len % 4 > 0){
147*600f14f4SXin Li 		FLAC__int32 last_error_0 = data[i-1];
148*600f14f4SXin Li 		FLAC__int32 last_error_1 = data[i-1] - data[i-2];
149*600f14f4SXin Li 		FLAC__int32 last_error_2 = last_error_1 - (data[i-2] - data[i-3]);
150*600f14f4SXin Li 		FLAC__int32 last_error_3 = last_error_2 - (data[i-2] - 2*data[i-3] + data[i-4]);
151*600f14f4SXin Li 		FLAC__int32 error, save;
152*600f14f4SXin Li 		for(; i < data_len_int; i++) {
153*600f14f4SXin Li 			error  = data[i]     ; total_error_0 += local_abs(error);                      save = error;
154*600f14f4SXin Li 			error -= last_error_0; total_error_1 += local_abs(error); last_error_0 = save; save = error;
155*600f14f4SXin Li 			error -= last_error_1; total_error_2 += local_abs(error); last_error_1 = save; save = error;
156*600f14f4SXin Li 			error -= last_error_2; total_error_3 += local_abs(error); last_error_2 = save; save = error;
157*600f14f4SXin Li 			error -= last_error_3; total_error_4 += local_abs(error); last_error_3 = save;
158*600f14f4SXin Li 		}
159*600f14f4SXin Li 	}
160*600f14f4SXin Li 
161*600f14f4SXin Li 	/* prefer lower order */
162*600f14f4SXin Li 	if(total_error_0 <= flac_min(flac_min(flac_min(total_error_1, total_error_2), total_error_3), total_error_4))
163*600f14f4SXin Li 		order = 0;
164*600f14f4SXin Li 	else if(total_error_1 <= flac_min(flac_min(total_error_2, total_error_3), total_error_4))
165*600f14f4SXin Li 		order = 1;
166*600f14f4SXin Li 	else if(total_error_2 <= flac_min(total_error_3, total_error_4))
167*600f14f4SXin Li 		order = 2;
168*600f14f4SXin Li 	else if(total_error_3 <= total_error_4)
169*600f14f4SXin Li 		order = 3;
170*600f14f4SXin Li 	else
171*600f14f4SXin Li 		order = 4;
172*600f14f4SXin Li 
173*600f14f4SXin Li 	/* Estimate the expected number of bits per residual signal sample. */
174*600f14f4SXin Li 	/* 'total_error*' is linearly related to the variance of the residual */
175*600f14f4SXin Li 	/* signal, so we use it directly to compute E(|x|) */
176*600f14f4SXin Li 	FLAC__ASSERT(data_len > 0 || total_error_0 == 0);
177*600f14f4SXin Li 	FLAC__ASSERT(data_len > 0 || total_error_1 == 0);
178*600f14f4SXin Li 	FLAC__ASSERT(data_len > 0 || total_error_2 == 0);
179*600f14f4SXin Li 	FLAC__ASSERT(data_len > 0 || total_error_3 == 0);
180*600f14f4SXin Li 	FLAC__ASSERT(data_len > 0 || total_error_4 == 0);
181*600f14f4SXin Li 
182*600f14f4SXin Li 	residual_bits_per_sample[0] = (float)((total_error_0 > 0) ? log(M_LN2 * (double)total_error_0 / (double)data_len) / M_LN2 : 0.0);
183*600f14f4SXin Li 	residual_bits_per_sample[1] = (float)((total_error_1 > 0) ? log(M_LN2 * (double)total_error_1 / (double)data_len) / M_LN2 : 0.0);
184*600f14f4SXin Li 	residual_bits_per_sample[2] = (float)((total_error_2 > 0) ? log(M_LN2 * (double)total_error_2 / (double)data_len) / M_LN2 : 0.0);
185*600f14f4SXin Li 	residual_bits_per_sample[3] = (float)((total_error_3 > 0) ? log(M_LN2 * (double)total_error_3 / (double)data_len) / M_LN2 : 0.0);
186*600f14f4SXin Li 	residual_bits_per_sample[4] = (float)((total_error_4 > 0) ? log(M_LN2 * (double)total_error_4 / (double)data_len) / M_LN2 : 0.0);
187*600f14f4SXin Li 
188*600f14f4SXin Li 	return order;
189*600f14f4SXin Li }
190*600f14f4SXin Li 
191*600f14f4SXin Li #endif /* FLAC__SSE2_SUPPORTED */
192*600f14f4SXin Li #endif /* (FLAC__CPU_IA32 || FLAC__CPU_X86_64) && FLAC__HAS_X86INTRIN */
193*600f14f4SXin Li #endif /* FLAC__NO_ASM */
194*600f14f4SXin Li #endif /* FLAC__INTEGER_ONLY_LIBRARY */
195