blob: 5595d881ad441f73fc78b68904136821ac79c2bb [file] [log] [blame]
Jean-Marc Valin41af4212007-11-30 18:35:37 +11001/* (C) 2007 Jean-Marc Valin, CSIRO
2*/
3/*
4 Redistribution and use in source and binary forms, with or without
5 modification, are permitted provided that the following conditions
6 are met:
7
8 - Redistributions of source code must retain the above copyright
9 notice, this list of conditions and the following disclaimer.
10
11 - Redistributions in binary form must reproduce the above copyright
12 notice, this list of conditions and the following disclaimer in the
13 documentation and/or other materials provided with the distribution.
14
15 - Neither the name of the Xiph.org Foundation nor the names of its
16 contributors may be used to endorse or promote products derived from
17 this software without specific prior written permission.
18
19 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
20 ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
21 LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
22 A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR
23 CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
24 EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
25 PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
26 PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
27 LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
28 NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
29 SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30*/
31
Jean-Marc Valin02fa9132008-02-20 12:09:29 +110032#ifdef HAVE_CONFIG_H
33#include "config.h"
34#endif
35
Jean-Marc Valin41af4212007-11-30 18:35:37 +110036#include <math.h>
37#include <stdlib.h>
Jean-Marc Valin3ca9b1d2008-02-27 23:50:31 +110038#include "mathops.h"
Jean-Marc Valin29ccab82007-12-06 15:39:38 +110039#include "cwrs.h"
Jean-Marc Valin9cace642007-12-06 17:44:09 +110040#include "vq.h"
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +110041#include "arch.h"
Jean-Marc Valinb60340f2008-02-26 15:41:51 +110042#include "os_support.h"
Jean-Marc Valin41af4212007-11-30 18:35:37 +110043
Jean-Marc Valin883bd8e2008-02-15 00:34:01 +110044/* Enable this or define your own implementation if you want to speed up the
45 VQ search (used in inner loop only) */
46#if 0
47#include <xmmintrin.h>
48static inline float approx_sqrt(float x)
49{
50 _mm_store_ss(&x, _mm_sqrt_ss(_mm_set_ss(x)));
51 return x;
52}
53static inline float approx_inv(float x)
54{
55 _mm_store_ss(&x, _mm_rcp_ss(_mm_set_ss(x)));
56 return x;
57}
58#else
59#define approx_sqrt(x) (sqrt(x))
60#define approx_inv(x) (1.f/(x))
61#endif
62
Jean-Marc Valind4018c32008-02-27 10:09:48 +110063/** Takes the pitch vector and the decoded residual vector (non-compressed),
64 applies the compression in the pitch direction, computes the gain that will
65 give ||p+g*y||=1 and mixes the residual with the pitch. */
Jean-Marc Valind17edd32008-02-27 16:52:30 +110066static void mix_pitch_and_residual(int *iy, celt_norm_t *X, int N, int K, celt_norm_t *P, celt_word16_t alpha)
Jean-Marc Valind4018c32008-02-27 10:09:48 +110067{
68 int i;
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110069 celt_word32_t Ryp, Ryy, Rpp;
Jean-Marc Valina847b772008-02-27 17:46:49 +110070 celt_word32_t g;
Jean-Marc Valind17edd32008-02-27 16:52:30 +110071 VARDECL(celt_norm_t *y);
Jean-Marc Valind17edd32008-02-27 16:52:30 +110072#ifdef FIXED_POINT
Jean-Marc Valin1ca07222008-02-27 17:23:04 +110073 int yshift = 14-EC_ILOG(K);
Jean-Marc Valind17edd32008-02-27 16:52:30 +110074#endif
75 ALLOC(y, N, celt_norm_t);
Jean-Marc Valind4018c32008-02-27 10:09:48 +110076
77 /*for (i=0;i<N;i++)
78 printf ("%d ", iy[i]);*/
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110079 Rpp = 0;
Jean-Marc Valind4018c32008-02-27 10:09:48 +110080 for (i=0;i<N;i++)
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110081 Rpp = MAC16_16(Rpp,P[i],P[i]);
Jean-Marc Valind4018c32008-02-27 10:09:48 +110082
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110083 Ryp = 0;
Jean-Marc Valind4018c32008-02-27 10:09:48 +110084 for (i=0;i<N;i++)
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110085 Ryp = MAC16_16(Ryp,SHL16(iy[i],yshift),P[i]);
Jean-Marc Valind4018c32008-02-27 10:09:48 +110086
Jean-Marc Valind17edd32008-02-27 16:52:30 +110087 /* Remove part of the pitch component to compute the real residual from
88 the encoded (int) one */
Jean-Marc Valind4018c32008-02-27 10:09:48 +110089 for (i=0;i<N;i++)
Jean-Marc Valind17edd32008-02-27 16:52:30 +110090 y[i] = SUB16(SHL16(iy[i],yshift),
Jean-Marc Valina02ca1e2008-02-28 11:33:22 +110091 MULT16_16_Q15(alpha,MULT16_16_Q14(ROUND(Ryp,14),P[i])));
Jean-Marc Valind4018c32008-02-27 10:09:48 +110092
93 /* Recompute after the projection (I think it's right) */
94 Ryp = 0;
95 for (i=0;i<N;i++)
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110096 Ryp = MAC16_16(Ryp,y[i],P[i]);
Jean-Marc Valind4018c32008-02-27 10:09:48 +110097
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110098 Ryy = 0;
Jean-Marc Valind4018c32008-02-27 10:09:48 +110099 for (i=0;i<N;i++)
Jean-Marc Valinb50c5412008-02-27 17:05:43 +1100100 Ryy = MAC16_16(Ryy, y[i],y[i]);
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100101
Jean-Marc Valin1ca07222008-02-27 17:23:04 +1100102 /* g = (sqrt(Ryp^2 + Ryy - Rpp*Ryy)-Ryp)/Ryy */
Jean-Marc Valina02ca1e2008-02-28 11:33:22 +1100103 g = DIV32(SHL32(celt_sqrt(MULT16_16(ROUND(Ryp,14),ROUND(Ryp,14)) + Ryy - MULT16_16(ROUND(Ryy,14),ROUND(Rpp,14))) - ROUND(Ryp,14),14),ROUND(Ryy,14));
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100104
105 for (i=0;i<N;i++)
Jean-Marc Valina847b772008-02-27 17:46:49 +1100106 X[i] = P[i] + MULT16_32_Q14(y[i], g);
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100107}
108
Jean-Marc Valin879fbfd2008-02-20 17:17:13 +1100109/** All the info necessary to keep track of a hypothesis during the search */
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100110struct NBest {
111 float score;
112 float gain;
113 int sign;
114 int pos;
115 int orig;
116 float xy;
117 float yy;
118 float yp;
119};
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100120
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100121void alg_quant(celt_norm_t *X, celt_mask_t *W, int N, int K, celt_norm_t *P, celt_word16_t alpha, ec_enc *enc)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100122{
Jean-Marc Valin4a897682007-12-12 00:45:15 +1100123 int L = 3;
Jean-Marc Valin2fa8aff2008-02-26 11:38:00 +1100124 VARDECL(float *x);
125 VARDECL(float *p);
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100126 VARDECL(float *_y);
127 VARDECL(float *_ny);
128 VARDECL(int *_iy);
129 VARDECL(int *_iny);
130 VARDECL(float **y);
131 VARDECL(float **ny);
132 VARDECL(int **iy);
133 VARDECL(int **iny);
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100134 int i, j, k, m;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100135 int pulsesLeft;
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100136 VARDECL(float *xy);
137 VARDECL(float *yy);
138 VARDECL(float *yp);
139 VARDECL(struct NBest *_nbest);
140 VARDECL(struct NBest **nbest);
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100141 float Rpp=0, Rxp=0;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100142 int maxL = 1;
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100143 float _alpha = Q15_ONE_1*alpha;
144
Jean-Marc Valin2fa8aff2008-02-26 11:38:00 +1100145 ALLOC(x, N, float);
146 ALLOC(p, N, float);
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100147 ALLOC(_y, L*N, float);
148 ALLOC(_ny, L*N, float);
149 ALLOC(_iy, L*N, int);
150 ALLOC(_iny, L*N, int);
151 ALLOC(y, L*N, float*);
152 ALLOC(ny, L*N, float*);
153 ALLOC(iy, L*N, int*);
154 ALLOC(iny, L*N, int*);
155
156 ALLOC(xy, L, float);
157 ALLOC(yy, L, float);
158 ALLOC(yp, L, float);
159 ALLOC(_nbest, L, struct NBest);
160 ALLOC(nbest, L, struct NBest *);
161
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100162 for (j=0;j<N;j++)
163 {
Jean-Marc Valin2fa8aff2008-02-26 11:38:00 +1100164 x[j] = X[j]*NORM_SCALING_1;
165 p[j] = P[j]*NORM_SCALING_1;
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100166 }
167
Jean-Marc Valinfe419832008-02-12 15:05:01 +1100168 for (m=0;m<L;m++)
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100169 nbest[m] = &_nbest[m];
170
171 for (m=0;m<L;m++)
Jean-Marc Valinfe419832008-02-12 15:05:01 +1100172 {
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100173 ny[m] = &_ny[m*N];
174 iny[m] = &_iny[m*N];
175 y[m] = &_y[m*N];
176 iy[m] = &_iy[m*N];
Jean-Marc Valinfe419832008-02-12 15:05:01 +1100177 }
178
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100179 for (j=0;j<N;j++)
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100180 {
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100181 Rpp += p[j]*p[j];
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100182 Rxp += x[j]*p[j];
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100183 }
Jean-Marc Valinb60340f2008-02-26 15:41:51 +1100184 if (Rpp>1)
185 celt_fatal("Rpp > 1");
186
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100187 /* We only need to initialise the zero because the first iteration only uses that */
188 for (i=0;i<N;i++)
189 y[0][i] = 0;
190 for (i=0;i<N;i++)
191 iy[0][i] = 0;
192 xy[0] = yy[0] = yp[0] = 0;
193
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100194 pulsesLeft = K;
195 while (pulsesLeft > 0)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100196 {
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100197 int pulsesAtOnce=1;
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100198 int Lupdate = L;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100199 int L2 = L;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100200
201 /* Decide on complexity strategy */
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100202 pulsesAtOnce = pulsesLeft/N;
203 if (pulsesAtOnce<1)
204 pulsesAtOnce = 1;
205 if (pulsesLeft-pulsesAtOnce > 3 || N > 30)
206 Lupdate = 1;
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100207 /*printf ("%d %d %d/%d %d\n", Lupdate, pulsesAtOnce, pulsesLeft, K, N);*/
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100208 L2 = Lupdate;
209 if (L2>maxL)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100210 {
211 L2 = maxL;
212 maxL *= N;
213 }
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100214
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100215 for (m=0;m<Lupdate;m++)
Jean-Marc Valin883bd8e2008-02-15 00:34:01 +1100216 nbest[m]->score = -1e10f;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100217
218 for (m=0;m<L2;m++)
219 {
220 for (j=0;j<N;j++)
221 {
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100222 int sign;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100223 /*if (x[j]>0) sign=1; else sign=-1;*/
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100224 for (sign=-1;sign<=1;sign+=2)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100225 {
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100226 /*fprintf (stderr, "%d/%d %d/%d %d/%d\n", i, K, m, L2, j, N);*/
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100227 float tmp_xy, tmp_yy, tmp_yp;
228 float score;
229 float g;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100230 float s = sign*pulsesAtOnce;
Jean-Marc Valinfe419832008-02-12 15:05:01 +1100231
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100232 /* All pulses at one location must have the same sign. */
233 if (iy[m][j]*sign < 0)
234 continue;
235
Jean-Marc Valina073c7b2008-02-14 16:58:04 +1100236 /* Updating the sums of the new pulse(s) */
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100237 tmp_xy = xy[m] + s*x[j] - _alpha*s*p[j]*Rxp;
238 tmp_yy = yy[m] + 2.f*s*y[m][j] + s*s +s*s*_alpha*_alpha*p[j]*p[j]*Rpp - 2.f*_alpha*s*p[j]*yp[m] - 2.f*s*s*_alpha*p[j]*p[j];
239 tmp_yp = yp[m] + s*p[j] *(1.f-_alpha*Rpp);
Jean-Marc Valina073c7b2008-02-14 16:58:04 +1100240
241 /* Compute the gain such that ||p + g*y|| = 1 */
Jean-Marc Valin883bd8e2008-02-15 00:34:01 +1100242 g = (approx_sqrt(tmp_yp*tmp_yp + tmp_yy - tmp_yy*Rpp) - tmp_yp)*approx_inv(tmp_yy);
Jean-Marc Valina073c7b2008-02-14 16:58:04 +1100243 /* Knowing that gain, what the error: (x-g*y)^2
244 (result is negated and we discard x^2 because it's constant) */
Jean-Marc Valin883bd8e2008-02-15 00:34:01 +1100245 score = 2.f*g*tmp_xy - g*g*tmp_yy;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100246
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100247 if (score>nbest[Lupdate-1]->score)
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100248 {
Jean-Marc Valin472a5f02008-02-19 13:12:32 +1100249 int k;
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100250 int id = Lupdate-1;
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100251 struct NBest *tmp_best;
252
253 /* Save some pointers that would be deleted and use them for the current entry*/
254 tmp_best = nbest[Lupdate-1];
255 while (id > 0 && score > nbest[id-1]->score)
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100256 id--;
257
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100258 for (k=Lupdate-1;k>id;k--)
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100259 nbest[k] = nbest[k-1];
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100260
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100261 nbest[id] = tmp_best;
262 nbest[id]->score = score;
263 nbest[id]->pos = j;
264 nbest[id]->orig = m;
265 nbest[id]->sign = sign;
266 nbest[id]->gain = g;
267 nbest[id]->xy = tmp_xy;
268 nbest[id]->yy = tmp_yy;
269 nbest[id]->yp = tmp_yp;
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100270 }
Jean-Marc Valin636f5c82008-02-12 17:40:27 +1100271 }
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100272 }
Jean-Marc Valin636f5c82008-02-12 17:40:27 +1100273
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100274 }
Jean-Marc Valinb60340f2008-02-26 15:41:51 +1100275
276 if (!(nbest[0]->score > -1e10f))
277 celt_fatal("Could not find any match in VQ codebook. Something got corrupted somewhere.");
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100278 /* Only now that we've made the final choice, update ny/iny and others */
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100279 for (k=0;k<Lupdate;k++)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100280 {
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100281 int n;
282 int is;
283 float s;
284 is = nbest[k]->sign*pulsesAtOnce;
285 s = is;
286 for (n=0;n<N;n++)
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100287 ny[k][n] = y[nbest[k]->orig][n] - _alpha*s*p[nbest[k]->pos]*p[n];
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100288 ny[k][nbest[k]->pos] += s;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100289
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100290 for (n=0;n<N;n++)
291 iny[k][n] = iy[nbest[k]->orig][n];
292 iny[k][nbest[k]->pos] += is;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100293
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100294 xy[k] = nbest[k]->xy;
295 yy[k] = nbest[k]->yy;
296 yp[k] = nbest[k]->yp;
297 }
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100298 /* Swap ny/iny with y/iy */
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100299 for (k=0;k<Lupdate;k++)
300 {
Jean-Marc Valinfe419832008-02-12 15:05:01 +1100301 float *tmp_ny;
302 int *tmp_iny;
303
Jean-Marc Valinfe419832008-02-12 15:05:01 +1100304 tmp_ny = ny[k];
305 ny[k] = y[k];
306 y[k] = tmp_ny;
307 tmp_iny = iny[k];
308 iny[k] = iy[k];
309 iy[k] = tmp_iny;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100310 }
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100311 pulsesLeft -= pulsesAtOnce;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100312 }
313
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100314#if 0
Jean-Marc Valinac1e03d2008-02-12 23:00:18 +1100315 if (0) {
316 float err=0;
317 for (i=0;i<N;i++)
Jean-Marc Valin3b277dc2008-02-14 16:46:50 +1100318 err += (x[i]-nbest[0]->gain*y[0][i])*(x[i]-nbest[0]->gain*y[0][i]);
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100319 /*if (N<=10)
320 printf ("%f %d %d\n", err, K, N);*/
Jean-Marc Valinac1e03d2008-02-12 23:00:18 +1100321 }
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100322 /* Sanity checks, don't bother */
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100323 if (0) {
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100324 for (i=0;i<N;i++)
325 x[i] = p[i]+nbest[0]->gain*y[0][i];
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100326 float E=1e-15;
327 int ABS = 0;
328 for (i=0;i<N;i++)
329 ABS += abs(iy[0][i]);
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100330 /*if (K != ABS)
331 printf ("%d %d\n", K, ABS);*/
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100332 for (i=0;i<N;i++)
333 E += x[i]*x[i];
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100334 /*printf ("%f\n", E);*/
Jean-Marc Valin1e7087e2007-12-04 13:05:43 +1100335 E = 1/sqrt(E);
336 for (i=0;i<N;i++)
337 x[i] *= E;
338 }
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100339#endif
Jean-Marc Valin5fa59952008-02-14 13:50:44 +1100340
341 encode_pulses(iy[0], N, K, enc);
342
Jean-Marc Valina4833ff2008-01-10 15:34:00 +1100343 /* Recompute the gain in one pass to reduce the encoder-decoder mismatch
Jean-Marc Valin636f5c82008-02-12 17:40:27 +1100344 due to the recursive computation used in quantisation.
345 Not quite sure whether we need that or not */
Jean-Marc Valind17edd32008-02-27 16:52:30 +1100346 mix_pitch_and_residual(iy[0], X, N, K, P, alpha);
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100347}
348
Jean-Marc Valin879fbfd2008-02-20 17:17:13 +1100349/** Decode pulse vector and combine the result with the pitch vector to produce
350 the final normalised signal in the current band. */
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100351void alg_unquant(celt_norm_t *X, int N, int K, celt_norm_t *P, celt_word16_t alpha, ec_dec *dec)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100352{
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100353 VARDECL(int *iy);
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100354 ALLOC(iy, N, int);
Jean-Marc Valin5fa59952008-02-14 13:50:44 +1100355 decode_pulses(iy, N, K, dec);
Jean-Marc Valind17edd32008-02-27 16:52:30 +1100356 mix_pitch_and_residual(iy, X, N, K, P, alpha);
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100357}
358
359
360static const float pg[11] = {1.f, .75f, .65f, 0.6f, 0.6f, .6f, .55f, .55f, .5f, .5f, .5f};
361
Jean-Marc Valin5f09ea52008-02-26 16:43:04 +1100362void intra_prediction(celt_norm_t *x, celt_mask_t *W, int N, int K, celt_norm_t *Y, celt_norm_t *P, int B, int N0, ec_enc *enc)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100363{
364 int i,j;
365 int best=0;
Jean-Marc Valin50d11162007-12-03 14:34:52 +1100366 float best_score=0;
367 float s = 1;
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100368 int sign;
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100369 float E;
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100370 float pred_gain;
Jean-Marc Valin8f0f4b92008-02-11 13:52:44 +1100371 int max_pos = N0-N/B;
372 if (max_pos > 32)
373 max_pos = 32;
374
375 for (i=0;i<max_pos*B;i+=B)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100376 {
377 int j;
378 float xy=0, yy=0;
379 float score;
380 for (j=0;j<N;j++)
381 {
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100382 xy += 1.f*x[j]*Y[i+N-j-1];
383 yy += 1.f*Y[i+N-j-1]*Y[i+N-j-1];
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100384 }
Jean-Marc Valin50d11162007-12-03 14:34:52 +1100385 score = xy*xy/(.001+yy);
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100386 if (score > best_score)
387 {
388 best_score = score;
389 best = i;
Jean-Marc Valin50d11162007-12-03 14:34:52 +1100390 if (xy>0)
391 s = 1;
392 else
393 s = -1;
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100394 }
395 }
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100396 if (s<0)
397 sign = 1;
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100398 else
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100399 sign = 0;
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100400 /*printf ("%d %d ", sign, best);*/
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100401 ec_enc_uint(enc,sign,2);
Jean-Marc Valin8f0f4b92008-02-11 13:52:44 +1100402 ec_enc_uint(enc,best/B,max_pos);
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100403 /*printf ("%d %f\n", best, best_score);*/
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100404
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100405 if (K>10)
406 pred_gain = pg[10];
407 else
408 pred_gain = pg[K];
409 E = 1e-10;
410 for (j=0;j<N;j++)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100411 {
Jean-Marc Valind501f612008-02-21 12:16:57 +1100412 P[j] = s*Y[best+N-j-1];
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100413 E += NORM_SCALING_1*NORM_SCALING_1*P[j]*P[j];
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100414 }
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100415 E = pred_gain/sqrt(E);
416 for (j=0;j<N;j++)
417 P[j] *= E;
418 if (K>0)
419 {
420 for (j=0;j<N;j++)
421 x[j] -= P[j];
422 } else {
423 for (j=0;j<N;j++)
424 x[j] = P[j];
425 }
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100426 /*printf ("quant ");*/
427 /*for (j=0;j<N;j++) printf ("%f ", P[j]);*/
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100428
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100429}
Jean-Marc Valinfc08d0a2007-12-07 13:26:15 +1100430
Jean-Marc Valin18ddc022008-02-22 14:24:50 +1100431void intra_unquant(celt_norm_t *x, int N, int K, celt_norm_t *Y, celt_norm_t *P, int B, int N0, ec_dec *dec)
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100432{
Jean-Marc Valin11f01722007-12-09 01:19:36 +1100433 int j;
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100434 int sign;
435 float s;
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100436 int best;
437 float E;
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100438 float pred_gain;
Jean-Marc Valin8f0f4b92008-02-11 13:52:44 +1100439 int max_pos = N0-N/B;
440 if (max_pos > 32)
441 max_pos = 32;
442
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100443 sign = ec_dec_uint(dec, 2);
444 if (sign == 0)
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100445 s = 1;
446 else
447 s = -1;
448
Jean-Marc Valin8f0f4b92008-02-11 13:52:44 +1100449 best = B*ec_dec_uint(dec, max_pos);
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100450 /*printf ("%d %d ", sign, best);*/
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100451
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100452 if (K>10)
453 pred_gain = pg[10];
454 else
455 pred_gain = pg[K];
456 E = 1e-10;
457 for (j=0;j<N;j++)
458 {
Jean-Marc Valind501f612008-02-21 12:16:57 +1100459 P[j] = s*Y[best+N-j-1];
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100460 E += NORM_SCALING_1*NORM_SCALING_1*P[j]*P[j];
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100461 }
462 E = pred_gain/sqrt(E);
463 for (j=0;j<N;j++)
464 P[j] *= E;
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100465 if (K==0)
466 {
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100467 for (j=0;j<N;j++)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100468 x[j] = P[j];
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100469 }
470}
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100471
Jean-Marc Valin18ddc022008-02-22 14:24:50 +1100472void intra_fold(celt_norm_t *x, int N, celt_norm_t *Y, celt_norm_t *P, int B, int N0, int Nmax)
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100473{
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100474 int i, j;
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100475 float E;
476
477 E = 1e-10;
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100478 if (N0 >= Nmax/2)
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100479 {
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100480 for (i=0;i<B;i++)
481 {
482 for (j=0;j<N/B;j++)
483 {
484 P[j*B+i] = Y[(Nmax-N0-j-1)*B+i];
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100485 E += NORM_SCALING_1*NORM_SCALING_1*P[j*B+i]*P[j*B+i];
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100486 }
487 }
488 } else {
489 for (j=0;j<N;j++)
490 {
491 P[j] = Y[j];
Jean-Marc Valinb4dfce42008-02-25 17:41:30 +1100492 E += NORM_SCALING_1*NORM_SCALING_1*P[j]*P[j];
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100493 }
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100494 }
495 E = 1.f/sqrt(E);
496 for (j=0;j<N;j++)
497 P[j] *= E;
498 for (j=0;j<N;j++)
499 x[j] = P[j];
500}
501