1cabdff1aSopenharmony_ci/*
2cabdff1aSopenharmony_ci * FFT/IFFT transforms
3cabdff1aSopenharmony_ci * AltiVec-enabled
4cabdff1aSopenharmony_ci * Copyright (c) 2009 Loren Merritt
5cabdff1aSopenharmony_ci *
6cabdff1aSopenharmony_ci * This file is part of FFmpeg.
7cabdff1aSopenharmony_ci *
8cabdff1aSopenharmony_ci * FFmpeg is free software; you can redistribute it and/or
9cabdff1aSopenharmony_ci * modify it under the terms of the GNU Lesser General Public
10cabdff1aSopenharmony_ci * License as published by the Free Software Foundation; either
11cabdff1aSopenharmony_ci * version 2.1 of the License, or (at your option) any later version.
12cabdff1aSopenharmony_ci *
13cabdff1aSopenharmony_ci * FFmpeg is distributed in the hope that it will be useful,
14cabdff1aSopenharmony_ci * but WITHOUT ANY WARRANTY; without even the implied warranty of
15cabdff1aSopenharmony_ci * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
16cabdff1aSopenharmony_ci * Lesser General Public License for more details.
17cabdff1aSopenharmony_ci *
18cabdff1aSopenharmony_ci * You should have received a copy of the GNU Lesser General Public
19cabdff1aSopenharmony_ci * License along with FFmpeg; if not, write to the Free Software
20cabdff1aSopenharmony_ci * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
21cabdff1aSopenharmony_ci */
22cabdff1aSopenharmony_ci
23cabdff1aSopenharmony_ci#include "config.h"
24cabdff1aSopenharmony_ci#include "libavutil/attributes.h"
25cabdff1aSopenharmony_ci#include "libavutil/cpu.h"
26cabdff1aSopenharmony_ci#include "libavutil/ppc/cpu.h"
27cabdff1aSopenharmony_ci#include "libavutil/ppc/util_altivec.h"
28cabdff1aSopenharmony_ci#include "libavcodec/fft.h"
29cabdff1aSopenharmony_ci
30cabdff1aSopenharmony_ci/**
31cabdff1aSopenharmony_ci * Do a complex FFT with the parameters defined in ff_fft_init().
32cabdff1aSopenharmony_ci * The input data must be permuted before with s->revtab table.
33cabdff1aSopenharmony_ci * No 1.0 / sqrt(n) normalization is done.
34cabdff1aSopenharmony_ci * AltiVec-enabled:
35cabdff1aSopenharmony_ci * This code assumes that the 'z' pointer is 16 bytes-aligned.
36cabdff1aSopenharmony_ci * It also assumes all FFTComplex are 8 bytes-aligned pairs of floats.
37cabdff1aSopenharmony_ci */
38cabdff1aSopenharmony_ci
39cabdff1aSopenharmony_ci#if HAVE_VSX
40cabdff1aSopenharmony_ci#include "fft_vsx.h"
41cabdff1aSopenharmony_ci#else
42cabdff1aSopenharmony_civoid ff_fft_calc_altivec(FFTContext *s, FFTComplex *z);
43cabdff1aSopenharmony_civoid ff_fft_calc_interleave_altivec(FFTContext *s, FFTComplex *z);
44cabdff1aSopenharmony_ci#endif
45cabdff1aSopenharmony_ci
46cabdff1aSopenharmony_ci#if HAVE_GNU_AS && HAVE_ALTIVEC && (HAVE_BIGENDIAN || HAVE_VSX)
47cabdff1aSopenharmony_cistatic void imdct_half_altivec(FFTContext *s, FFTSample *output, const FFTSample *input)
48cabdff1aSopenharmony_ci{
49cabdff1aSopenharmony_ci    int j, k;
50cabdff1aSopenharmony_ci    int n = 1 << s->mdct_bits;
51cabdff1aSopenharmony_ci    int n4 = n >> 2;
52cabdff1aSopenharmony_ci    int n8 = n >> 3;
53cabdff1aSopenharmony_ci    int n32 = n >> 5;
54cabdff1aSopenharmony_ci    const uint16_t *revtabj = s->revtab;
55cabdff1aSopenharmony_ci    const uint16_t *revtabk = s->revtab+n4;
56cabdff1aSopenharmony_ci    const vec_f *tcos = (const vec_f*)(s->tcos+n8);
57cabdff1aSopenharmony_ci    const vec_f *tsin = (const vec_f*)(s->tsin+n8);
58cabdff1aSopenharmony_ci    const vec_f *pin = (const vec_f*)(input+n4);
59cabdff1aSopenharmony_ci    vec_f *pout = (vec_f*)(output+n4);
60cabdff1aSopenharmony_ci
61cabdff1aSopenharmony_ci    /* pre rotation */
62cabdff1aSopenharmony_ci    k = n32-1;
63cabdff1aSopenharmony_ci    do {
64cabdff1aSopenharmony_ci        vec_f cos,sin,cos0,sin0,cos1,sin1,re,im,r0,i0,r1,i1,a,b,c,d;
65cabdff1aSopenharmony_ci#define CMULA(p,o0,o1,o2,o3)\
66cabdff1aSopenharmony_ci        a = pin[ k*2+p];                       /* { z[k].re,    z[k].im,    z[k+1].re,  z[k+1].im  } */\
67cabdff1aSopenharmony_ci        b = pin[-k*2-p-1];                     /* { z[-k-2].re, z[-k-2].im, z[-k-1].re, z[-k-1].im } */\
68cabdff1aSopenharmony_ci        re = vec_perm(a, b, vcprm(0,2,s0,s2)); /* { z[k].re,    z[k+1].re,  z[-k-2].re, z[-k-1].re } */\
69cabdff1aSopenharmony_ci        im = vec_perm(a, b, vcprm(s3,s1,3,1)); /* { z[-k-1].im, z[-k-2].im, z[k+1].im,  z[k].im    } */\
70cabdff1aSopenharmony_ci        cos = vec_perm(cos0, cos1, vcprm(o0,o1,s##o2,s##o3)); /* { cos[k], cos[k+1], cos[-k-2], cos[-k-1] } */\
71cabdff1aSopenharmony_ci        sin = vec_perm(sin0, sin1, vcprm(o0,o1,s##o2,s##o3));\
72cabdff1aSopenharmony_ci        r##p = im*cos - re*sin;\
73cabdff1aSopenharmony_ci        i##p = re*cos + im*sin;
74cabdff1aSopenharmony_ci#define STORE2(v,dst)\
75cabdff1aSopenharmony_ci        j = dst;\
76cabdff1aSopenharmony_ci        vec_ste(v, 0, output+j*2);\
77cabdff1aSopenharmony_ci        vec_ste(v, 4, output+j*2);
78cabdff1aSopenharmony_ci#define STORE8(p)\
79cabdff1aSopenharmony_ci        a = vec_perm(r##p, i##p, vcprm(0,s0,0,s0));\
80cabdff1aSopenharmony_ci        b = vec_perm(r##p, i##p, vcprm(1,s1,1,s1));\
81cabdff1aSopenharmony_ci        c = vec_perm(r##p, i##p, vcprm(2,s2,2,s2));\
82cabdff1aSopenharmony_ci        d = vec_perm(r##p, i##p, vcprm(3,s3,3,s3));\
83cabdff1aSopenharmony_ci        STORE2(a, revtabk[ p*2-4]);\
84cabdff1aSopenharmony_ci        STORE2(b, revtabk[ p*2-3]);\
85cabdff1aSopenharmony_ci        STORE2(c, revtabj[-p*2+2]);\
86cabdff1aSopenharmony_ci        STORE2(d, revtabj[-p*2+3]);
87cabdff1aSopenharmony_ci
88cabdff1aSopenharmony_ci        cos0 = tcos[k];
89cabdff1aSopenharmony_ci        sin0 = tsin[k];
90cabdff1aSopenharmony_ci        cos1 = tcos[-k-1];
91cabdff1aSopenharmony_ci        sin1 = tsin[-k-1];
92cabdff1aSopenharmony_ci        CMULA(0, 0,1,2,3);
93cabdff1aSopenharmony_ci        CMULA(1, 2,3,0,1);
94cabdff1aSopenharmony_ci        STORE8(0);
95cabdff1aSopenharmony_ci        STORE8(1);
96cabdff1aSopenharmony_ci        revtabj += 4;
97cabdff1aSopenharmony_ci        revtabk -= 4;
98cabdff1aSopenharmony_ci        k--;
99cabdff1aSopenharmony_ci    } while(k >= 0);
100cabdff1aSopenharmony_ci
101cabdff1aSopenharmony_ci#if HAVE_VSX
102cabdff1aSopenharmony_ci    ff_fft_calc_vsx(s, (FFTComplex*)output);
103cabdff1aSopenharmony_ci#else
104cabdff1aSopenharmony_ci    ff_fft_calc_altivec(s, (FFTComplex*)output);
105cabdff1aSopenharmony_ci#endif
106cabdff1aSopenharmony_ci
107cabdff1aSopenharmony_ci    /* post rotation + reordering */
108cabdff1aSopenharmony_ci    j = -n32;
109cabdff1aSopenharmony_ci    k = n32-1;
110cabdff1aSopenharmony_ci    do {
111cabdff1aSopenharmony_ci        vec_f cos,sin,re,im,a,b,c,d;
112cabdff1aSopenharmony_ci#define CMULB(d0,d1,o)\
113cabdff1aSopenharmony_ci        re = pout[o*2];\
114cabdff1aSopenharmony_ci        im = pout[o*2+1];\
115cabdff1aSopenharmony_ci        cos = tcos[o];\
116cabdff1aSopenharmony_ci        sin = tsin[o];\
117cabdff1aSopenharmony_ci        d0 = im*sin - re*cos;\
118cabdff1aSopenharmony_ci        d1 = re*sin + im*cos;
119cabdff1aSopenharmony_ci
120cabdff1aSopenharmony_ci        CMULB(a,b,j);
121cabdff1aSopenharmony_ci        CMULB(c,d,k);
122cabdff1aSopenharmony_ci        pout[2*j]   = vec_perm(a, d, vcprm(0,s3,1,s2));
123cabdff1aSopenharmony_ci        pout[2*j+1] = vec_perm(a, d, vcprm(2,s1,3,s0));
124cabdff1aSopenharmony_ci        pout[2*k]   = vec_perm(c, b, vcprm(0,s3,1,s2));
125cabdff1aSopenharmony_ci        pout[2*k+1] = vec_perm(c, b, vcprm(2,s1,3,s0));
126cabdff1aSopenharmony_ci        j++;
127cabdff1aSopenharmony_ci        k--;
128cabdff1aSopenharmony_ci    } while(k >= 0);
129cabdff1aSopenharmony_ci}
130cabdff1aSopenharmony_ci
131cabdff1aSopenharmony_cistatic void imdct_calc_altivec(FFTContext *s, FFTSample *output, const FFTSample *input)
132cabdff1aSopenharmony_ci{
133cabdff1aSopenharmony_ci    int k;
134cabdff1aSopenharmony_ci    int n = 1 << s->mdct_bits;
135cabdff1aSopenharmony_ci    int n4 = n >> 2;
136cabdff1aSopenharmony_ci    int n16 = n >> 4;
137cabdff1aSopenharmony_ci    vec_u32 sign = {1U<<31,1U<<31,1U<<31,1U<<31};
138cabdff1aSopenharmony_ci    vec_u32 *p0 = (vec_u32*)(output+n4);
139cabdff1aSopenharmony_ci    vec_u32 *p1 = (vec_u32*)(output+n4*3);
140cabdff1aSopenharmony_ci
141cabdff1aSopenharmony_ci    imdct_half_altivec(s, output + n4, input);
142cabdff1aSopenharmony_ci
143cabdff1aSopenharmony_ci    for (k = 0; k < n16; k++) {
144cabdff1aSopenharmony_ci        vec_u32 a = p0[k] ^ sign;
145cabdff1aSopenharmony_ci        vec_u32 b = p1[-k-1];
146cabdff1aSopenharmony_ci        p0[-k-1] = vec_perm(a, a, vcprm(3,2,1,0));
147cabdff1aSopenharmony_ci        p1[k]    = vec_perm(b, b, vcprm(3,2,1,0));
148cabdff1aSopenharmony_ci    }
149cabdff1aSopenharmony_ci}
150cabdff1aSopenharmony_ci#endif /* HAVE_GNU_AS && HAVE_ALTIVEC && (HAVE_BIGENDIAN || HAVE_VSX) */
151cabdff1aSopenharmony_ci
152cabdff1aSopenharmony_ciav_cold void ff_fft_init_ppc(FFTContext *s)
153cabdff1aSopenharmony_ci{
154cabdff1aSopenharmony_ci#if HAVE_GNU_AS && HAVE_ALTIVEC && (HAVE_BIGENDIAN || HAVE_VSX)
155cabdff1aSopenharmony_ci    if (!PPC_ALTIVEC(av_get_cpu_flags()))
156cabdff1aSopenharmony_ci        return;
157cabdff1aSopenharmony_ci
158cabdff1aSopenharmony_ci#if HAVE_VSX
159cabdff1aSopenharmony_ci    s->fft_calc = ff_fft_calc_interleave_vsx;
160cabdff1aSopenharmony_ci#else
161cabdff1aSopenharmony_ci    s->fft_calc   = ff_fft_calc_interleave_altivec;
162cabdff1aSopenharmony_ci#endif
163cabdff1aSopenharmony_ci    if (s->mdct_bits >= 5) {
164cabdff1aSopenharmony_ci        s->imdct_calc = imdct_calc_altivec;
165cabdff1aSopenharmony_ci        s->imdct_half = imdct_half_altivec;
166cabdff1aSopenharmony_ci    }
167cabdff1aSopenharmony_ci#endif /* HAVE_GNU_AS && HAVE_ALTIVEC && HAVE_BIGENDIAN */
168cabdff1aSopenharmony_ci}
169