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Jean-Marc Valin35a1f882008-03-26 10:34:23 +11001/* (C) 2007-2008 Jean-Marc Valin, CSIRO
Jean-Marc Valin41af4212007-11-30 18:35:37 +11002*/
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 Valin3ca9b1d2008-02-27 23:50:31 +110036#include "mathops.h"
Jean-Marc Valin29ccab82007-12-06 15:39:38 +110037#include "cwrs.h"
Jean-Marc Valin9cace642007-12-06 17:44:09 +110038#include "vq.h"
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +110039#include "arch.h"
Jean-Marc Valinb60340f2008-02-26 15:41:51 +110040#include "os_support.h"
Jean-Marc Valin41af4212007-11-30 18:35:37 +110041
Jean-Marc Valin35a1f882008-03-26 10:34:23 +110042/** Takes the pitch vector and the decoded residual vector, computes the gain
43 that will give ||p+g*y||=1 and mixes the residual with the pitch. */
Jean-Marc Valin5de868c2008-03-25 22:38:58 +110044static void mix_pitch_and_residual(int * restrict iy, celt_norm_t * restrict X, int N, int K, const celt_norm_t * restrict P)
Jean-Marc Valind4018c32008-02-27 10:09:48 +110045{
46 int i;
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110047 celt_word32_t Ryp, Ryy, Rpp;
Jean-Marc Valina847b772008-02-27 17:46:49 +110048 celt_word32_t g;
Jean-Marc Valin31b79d12008-03-12 17:17:23 +110049 VARDECL(celt_norm_t, y);
Jean-Marc Valind9de5932008-03-05 08:11:57 +110050#ifdef FIXED_POINT
51 int yshift;
52#endif
Jean-Marc Valin8600f692008-02-29 15:14:12 +110053 SAVE_STACK;
Jean-Marc Valind17edd32008-02-27 16:52:30 +110054#ifdef FIXED_POINT
Jean-Marc Valin98c86c72008-03-27 08:40:45 +110055 yshift = 13-celt_ilog2(K);
Jean-Marc Valind17edd32008-02-27 16:52:30 +110056#endif
57 ALLOC(y, N, celt_norm_t);
Jean-Marc Valind4018c32008-02-27 10:09:48 +110058
59 /*for (i=0;i<N;i++)
60 printf ("%d ", iy[i]);*/
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110061 Rpp = 0;
Jean-Marc Valind4018c32008-02-27 10:09:48 +110062 for (i=0;i<N;i++)
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110063 Rpp = MAC16_16(Rpp,P[i],P[i]);
Jean-Marc Valind4018c32008-02-27 10:09:48 +110064
Jean-Marc Valind4018c32008-02-27 10:09:48 +110065 for (i=0;i<N;i++)
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +110066 y[i] = SHL16(iy[i],yshift);
Jean-Marc Valin95088d42008-03-26 17:57:49 +110067
Jean-Marc Valind4018c32008-02-27 10:09:48 +110068 Ryp = 0;
Jean-Marc Valinb50c5412008-02-27 17:05:43 +110069 Ryy = 0;
Jean-Marc Valindf7ab432008-03-26 18:03:22 +110070 /* If this doesn't generate a dual MAC (on supported archs), fire the compiler guy */
Jean-Marc Valind4018c32008-02-27 10:09:48 +110071 for (i=0;i<N;i++)
Jean-Marc Valindf7ab432008-03-26 18:03:22 +110072 {
73 Ryp = MAC16_16(Ryp, y[i], P[i]);
74 Ryy = MAC16_16(Ryy, y[i], y[i]);
75 }
76
Jean-Marc Valin1ca07222008-02-27 17:23:04 +110077 /* g = (sqrt(Ryp^2 + Ryy - Rpp*Ryy)-Ryp)/Ryy */
Jean-Marc Valin9d5b4a62008-03-13 11:36:45 +110078 g = MULT16_32_Q15(
Jean-Marc Valinf5b05872008-03-21 10:46:17 +110079 celt_sqrt(MULT16_16(ROUND16(Ryp,14),ROUND16(Ryp,14)) + Ryy -
80 MULT16_16(ROUND16(Ryy,14),ROUND16(Rpp,14)))
81 - ROUND16(Ryp,14),
Jean-Marc Valin9d5b4a62008-03-13 11:36:45 +110082 celt_rcp(SHR32(Ryy,9)));
Jean-Marc Valind4018c32008-02-27 10:09:48 +110083
84 for (i=0;i<N;i++)
Jean-Marc Valinf5b05872008-03-21 10:46:17 +110085 X[i] = P[i] + ROUND16(MULT16_16(y[i], g),11);
Jean-Marc Valin8600f692008-02-29 15:14:12 +110086 RESTORE_STACK;
Jean-Marc Valind4018c32008-02-27 10:09:48 +110087}
88
Jean-Marc Valin41af4212007-11-30 18:35:37 +110089
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +110090void alg_quant(celt_norm_t *X, celt_mask_t *W, int N, int K, const celt_norm_t *P, ec_enc *enc)
Jean-Marc Valin41af4212007-11-30 18:35:37 +110091{
Jean-Marc Valin44c63352008-03-25 21:28:40 +110092 VARDECL(celt_norm_t, y);
93 VARDECL(int, iy);
Jean-Marc Valin49134382008-03-25 16:07:05 +110094 VARDECL(int, signx);
Jean-Marc Valin44c63352008-03-25 21:28:40 +110095 int i, j, is;
96 celt_word16_t s;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +110097 int pulsesLeft;
Jean-Marc Valin44c63352008-03-25 21:28:40 +110098 celt_word32_t sum;
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +110099 celt_word32_t xy, yy, yp;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100100 celt_word16_t Rpp;
Jean-Marc Valinf9584772008-03-27 12:22:44 +1100101 int N_1; /* Inverse of N, in Q14 format (even for float) */
Jean-Marc Valinf675adc2008-02-28 12:15:17 +1100102#ifdef FIXED_POINT
Jean-Marc Valind748cd52008-03-01 07:27:03 +1100103 int yshift;
104#endif
105 SAVE_STACK;
106
107#ifdef FIXED_POINT
Jean-Marc Valin98c86c72008-03-27 08:40:45 +1100108 yshift = 13-celt_ilog2(K);
Jean-Marc Valinf675adc2008-02-28 12:15:17 +1100109#endif
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100110
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100111 ALLOC(y, N, celt_norm_t);
112 ALLOC(iy, N, int);
Jean-Marc Valin49134382008-03-25 16:07:05 +1100113 ALLOC(signx, N, int);
Jean-Marc Valin124d1cd2008-03-28 00:33:04 +1100114 N_1 = 512/N;
Jean-Marc Valin3d152a52008-04-15 07:46:48 +1000115
116 sum = 0;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100117 for (j=0;j<N;j++)
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100118 {
Jean-Marc Valin49134382008-03-25 16:07:05 +1100119 if (X[j]>0)
120 signx[j]=1;
121 else
122 signx[j]=-1;
Jean-Marc Valin3d152a52008-04-15 07:46:48 +1000123 iy[j] = 0;
124 y[j] = 0;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100125 sum = MAC16_16(sum, P[j],P[j]);
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100126 }
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100127 Rpp = ROUND16(sum, NORM_SHIFT);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100128
Jean-Marc Valin4ff068e2008-03-15 23:34:39 +1100129 celt_assert2(Rpp<=NORM_SCALING, "Rpp should never have a norm greater than unity");
Jean-Marc Valinb60340f2008-02-26 15:41:51 +1100130
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100131 xy = yy = yp = 0;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100132
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100133 pulsesLeft = K;
134 while (pulsesLeft > 0)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100135 {
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100136 int pulsesAtOnce=1;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100137 int sign;
138 celt_word32_t Rxy, Ryy, Ryp;
139 celt_word32_t g;
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100140 celt_word32_t best_num;
141 celt_word16_t best_den;
142 int best_id;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100143
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100144 /* Decide on how many pulses to find at once */
Jean-Marc Valin124d1cd2008-03-28 00:33:04 +1100145 pulsesAtOnce = (pulsesLeft*N_1)>>9; /* pulsesLeft/N */
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100146 if (pulsesAtOnce<1)
147 pulsesAtOnce = 1;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100148
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100149 /* This should ensure that anything we can process will have a better score */
150 best_num = -SHR32(VERY_LARGE32,4);
151 best_den = 0;
152 best_id = 0;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100153 /* Choose between fast and accurate strategy depending on where we are in the search */
154 if (pulsesLeft>1)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100155 {
Jean-Marc Valinfed97d52008-03-26 21:31:56 +1100156 /* OPT: This loop is very CPU-intensive */
157 j=0;
158 do {
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100159 celt_word32_t num;
160 celt_word16_t den;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100161 /* Select sign based on X[j] alone */
162 sign = signx[j];
163 s = SHL16(sign*pulsesAtOnce, yshift);
164 /* Temporary sums of the new pulse(s) */
165 Rxy = xy + MULT16_16(s,X[j]);
166 Ryy = yy + 2*MULT16_16(s,y[j]) + MULT16_16(s,s);
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100167
168 /* Approximate score: we maximise Rxy/sqrt(Ryy) */
169 num = MULT16_16(ROUND16(Rxy,14),ABS16(ROUND16(Rxy,14)));
170 den = ROUND16(Ryy,14);
171 /* The idea is to check for num/den >= best_num/best_den, but that way
172 we can do it without any division */
Jean-Marc Valinfed97d52008-03-26 21:31:56 +1100173 /* OPT: Make sure to use a conditional move here */
Jean-Marc Valin233e3172008-03-26 15:46:51 +1100174 if (MULT16_32_Q15(best_den, num) > MULT16_32_Q15(den, best_num))
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100175 {
176 best_den = den;
177 best_num = num;
178 best_id = j;
179 }
Jean-Marc Valinfed97d52008-03-26 21:31:56 +1100180 } while (++j<N); /* Promises we loop at least once */
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100181 } else {
182 for (j=0;j<N;j++)
183 {
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100184 celt_word32_t num;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100185 /* Select sign based on X[j] alone */
186 sign = signx[j];
187 s = SHL16(sign*pulsesAtOnce, yshift);
188 /* Temporary sums of the new pulse(s) */
189 Rxy = xy + MULT16_16(s,X[j]);
190 Ryy = yy + 2*MULT16_16(s,y[j]) + MULT16_16(s,s);
191 Ryp = yp + MULT16_16(s, P[j]);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100192
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100193 /* Compute the gain such that ||p + g*y|| = 1 */
194 g = MULT16_32_Q15(
195 celt_sqrt(MULT16_16(ROUND16(Ryp,14),ROUND16(Ryp,14)) + Ryy -
196 MULT16_16(ROUND16(Ryy,14),Rpp))
197 - ROUND16(Ryp,14),
198 celt_rcp(SHR32(Ryy,12)));
199 /* Knowing that gain, what's the error: (x-g*y)^2
200 (result is negated and we discard x^2 because it's constant) */
201 /* score = 2.f*g*Rxy - 1.f*g*g*Ryy*NORM_SCALING_1;*/
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100202 num = 2*MULT16_32_Q14(ROUND16(Rxy,14),g)
203 - MULT16_32_Q14(EXTRACT16(MULT16_32_Q14(ROUND16(Ryy,14),g)),g);
204 if (num >= best_num)
205 {
206 best_num = num;
207 best_id = j;
208 }
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100209 }
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100210 }
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100211
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100212 j = best_id;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100213 is = signx[j]*pulsesAtOnce;
214 s = SHL16(is, yshift);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100215
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100216 /* Updating the sums of the new pulse(s) */
217 xy = xy + MULT16_16(s,X[j]);
218 yy = yy + 2*MULT16_16(s,y[j]) + MULT16_16(s,s);
219 yp = yp + MULT16_16(s, P[j]);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100220
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100221 /* Only now that we've made the final choice, update y/iy */
222 y[j] += s;
223 iy[j] += is;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100224 pulsesLeft -= pulsesAtOnce;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100225 }
226
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100227 encode_pulses(iy, N, K, enc);
Jean-Marc Valin5fa59952008-02-14 13:50:44 +1100228
Jean-Marc Valina4833ff2008-01-10 15:34:00 +1100229 /* Recompute the gain in one pass to reduce the encoder-decoder mismatch
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100230 due to the recursive computation used in quantisation. */
231 mix_pitch_and_residual(iy, X, N, K, P);
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100232 RESTORE_STACK;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100233}
234
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100235
Jean-Marc Valin879fbfd2008-02-20 17:17:13 +1100236/** Decode pulse vector and combine the result with the pitch vector to produce
237 the final normalised signal in the current band. */
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100238void alg_unquant(celt_norm_t *X, int N, int K, celt_norm_t *P, ec_dec *dec)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100239{
Jean-Marc Valin31b79d12008-03-12 17:17:23 +1100240 VARDECL(int, iy);
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100241 SAVE_STACK;
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100242 ALLOC(iy, N, int);
Jean-Marc Valin5fa59952008-02-14 13:50:44 +1100243 decode_pulses(iy, N, K, dec);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100244 mix_pitch_and_residual(iy, X, N, K, P);
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100245 RESTORE_STACK;
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100246}
247
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100248#ifdef FIXED_POINT
249static const celt_word16_t pg[11] = {32767, 24576, 21299, 19661, 19661, 19661, 18022, 18022, 16384, 16384, 16384};
250#else
Jean-Marc Valin3e650972008-03-07 17:38:58 +1100251static const celt_word16_t pg[11] = {1.f, .75f, .65f, 0.6f, 0.6f, .6f, .55f, .55f, .5f, .5f, .5f};
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100252#endif
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100253
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100254#define MAX_INTRA 32
255#define LOG_MAX_INTRA 5
256
Jean-Marc Valin5de868c2008-03-25 22:38:58 +1100257void intra_prediction(celt_norm_t *x, celt_mask_t *W, int N, int K, celt_norm_t *Y, celt_norm_t * restrict P, int B, int N0, ec_enc *enc)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100258{
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000259 int i,j,c;
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100260 int best=0;
Jean-Marc Valin89c5fd12008-03-26 12:16:00 +1100261 celt_word32_t best_num=-SHR32(VERY_LARGE32,4);
262 celt_word16_t best_den=0;
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100263 celt_word16_t s = 1;
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100264 int sign;
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100265 celt_word32_t E;
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100266 celt_word16_t pred_gain;
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100267 int max_pos = N0-N;
Jean-Marc Valin3956de92008-04-12 06:55:39 +1000268 VARDECL(celt_norm_t, Xr);
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000269 SAVE_STACK;
270
271 ALLOC(Xr, B*N, celt_norm_t);
272
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100273 if (max_pos > MAX_INTRA)
274 max_pos = MAX_INTRA;
Jean-Marc Valin8f0f4b92008-02-11 13:52:44 +1100275
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000276 /* Reverse the samples of x without reversing the channels */
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000277 for (c=0;c<B;c++)
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000278 for (j=0;j<N;j++)
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000279 Xr[B*N-B*j-B+c] = x[B*j+c];
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000280
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000281 for (i=0;i<max_pos;i++)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100282 {
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100283 celt_word32_t xy=0, yy=0;
Jean-Marc Valin89c5fd12008-03-26 12:16:00 +1100284 celt_word32_t num;
285 celt_word16_t den;
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000286 const celt_word16_t * restrict xp = Xr;
287 const celt_word16_t * restrict yp = Y+B*i;
Jean-Marc Valinfed97d52008-03-26 21:31:56 +1100288 /* OPT: If this doesn't generate a double-MAC (on supported architectures),
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100289 complain to your compilor vendor */
Jean-Marc Valinfed97d52008-03-26 21:31:56 +1100290 j=0;
291 do {
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000292 xy = MAC16_16(xy, *xp, *yp);
293 yy = MAC16_16(yy, *yp, *yp);
294 xp++;
295 yp++;
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100296 } while (++j<B*N); /* Promises we loop at least once */
Jean-Marc Valin89c5fd12008-03-26 12:16:00 +1100297 /* Using xy^2/yy as the score but without having to do the division */
298 num = MULT16_16(ROUND16(xy,14),ROUND16(xy,14));
299 den = ROUND16(yy,14);
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100300 /* If you're really desperate for speed, just use xy as the score */
Jean-Marc Valinfed97d52008-03-26 21:31:56 +1100301 /* OPT: Make sure to use a conditional move here */
Jean-Marc Valin89c5fd12008-03-26 12:16:00 +1100302 if (MULT16_32_Q15(best_den, num) > MULT16_32_Q15(den, best_num))
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100303 {
Jean-Marc Valin89c5fd12008-03-26 12:16:00 +1100304 best_num = num;
305 best_den = den;
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100306 best = i;
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100307 /* Store xy as the sign. We'll normalise it to +/- 1 later. */
308 s = ROUND16(xy,14);
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100309 }
310 }
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100311 if (s<0)
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100312 {
313 s = -1;
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100314 sign = 1;
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100315 } else {
316 s = 1;
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100317 sign = 0;
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100318 }
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100319 /*printf ("%d %d ", sign, best);*/
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100320 ec_enc_bits(enc,sign,1);
321 if (max_pos == MAX_INTRA)
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000322 ec_enc_bits(enc,best,LOG_MAX_INTRA);
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100323 else
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000324 ec_enc_uint(enc,best,max_pos);
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100325
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100326 /*printf ("%d %f\n", best, best_score);*/
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100327
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100328 if (K>10)
329 pred_gain = pg[10];
330 else
331 pred_gain = pg[K];
Jean-Marc Valin03892c12008-03-07 17:25:47 +1100332 E = EPSILON;
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000333 for (c=0;c<B;c++)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100334 {
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000335 for (j=0;j<N;j++)
336 {
Jean-Marc Valinc8e3b672008-04-10 12:21:26 +1000337 P[B*j+c] = s*Y[B*best+B*(N-j-1)+c];
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000338 E = MAC16_16(E, P[j],P[j]);
339 }
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100340 }
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100341 /*pred_gain = pred_gain/sqrt(E);*/
Jean-Marc Valin23e82b22008-03-24 08:15:40 +1100342 pred_gain = MULT16_16_Q15(pred_gain,celt_rcp(SHL32(celt_sqrt(E),9)));
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100343 for (j=0;j<B*N;j++)
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100344 P[j] = PSHR32(MULT16_16(pred_gain, P[j]),8);
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100345 if (K>0)
346 {
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100347 for (j=0;j<B*N;j++)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100348 x[j] -= P[j];
349 } else {
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100350 for (j=0;j<B*N;j++)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100351 x[j] = P[j];
352 }
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100353 /*printf ("quant ");*/
354 /*for (j=0;j<N;j++) printf ("%f ", P[j]);*/
Jean-Marc Valin6d3289c2008-04-10 14:43:59 +1000355 RESTORE_STACK;
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100356}
Jean-Marc Valinfc08d0a2007-12-07 13:26:15 +1100357
Jean-Marc Valin5de868c2008-03-25 22:38:58 +1100358void intra_unquant(celt_norm_t *x, int N, int K, celt_norm_t *Y, celt_norm_t * restrict P, int B, int N0, ec_dec *dec)
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100359{
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000360 int j, c;
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100361 int sign;
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100362 celt_word16_t s;
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100363 int best;
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100364 celt_word32_t E;
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100365 celt_word16_t pred_gain;
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100366 int max_pos = N0-N;
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100367 if (max_pos > MAX_INTRA)
368 max_pos = MAX_INTRA;
Jean-Marc Valin8f0f4b92008-02-11 13:52:44 +1100369
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100370 sign = ec_dec_bits(dec, 1);
Jean-Marc Valin0aa39032007-12-07 15:09:58 +1100371 if (sign == 0)
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100372 s = 1;
373 else
374 s = -1;
375
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100376 if (max_pos == MAX_INTRA)
Jean-Marc Valin15588ad2008-04-10 09:00:12 +1000377 best = B*ec_dec_bits(dec, LOG_MAX_INTRA);
Jean-Marc Valin208ae6e2008-03-25 15:25:08 +1100378 else
Jean-Marc Valin15588ad2008-04-10 09:00:12 +1000379 best = B*ec_dec_uint(dec, max_pos);
Jean-Marc Valina85657b2008-02-20 11:59:30 +1100380 /*printf ("%d %d ", sign, best);*/
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100381
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100382 if (K>10)
383 pred_gain = pg[10];
384 else
385 pred_gain = pg[K];
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100386 E = EPSILON;
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000387 for (c=0;c<B;c++)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100388 {
Jean-Marc Valin381b29c2008-04-10 11:00:51 +1000389 for (j=0;j<N;j++)
390 {
391 P[B*j+c] = s*Y[best+B*(N-j-1)+c];
392 E = MAC16_16(E, P[j],P[j]);
393 }
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100394 }
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100395 /*pred_gain = pred_gain/sqrt(E);*/
Jean-Marc Valin23e82b22008-03-24 08:15:40 +1100396 pred_gain = MULT16_16_Q15(pred_gain,celt_rcp(SHL32(celt_sqrt(E),9)));
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100397 for (j=0;j<B*N;j++)
Jean-Marc Valin9455d1b2008-03-07 17:17:37 +1100398 P[j] = PSHR32(MULT16_16(pred_gain, P[j]),8);
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100399 if (K==0)
400 {
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100401 for (j=0;j<B*N;j++)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100402 x[j] = P[j];
Jean-Marc Valin6e9058a2007-12-07 14:59:06 +1100403 }
404}
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100405
Jean-Marc Valin5de868c2008-03-25 22:38:58 +1100406void intra_fold(celt_norm_t *x, int N, celt_norm_t *Y, celt_norm_t * restrict P, int B, int N0, int Nmax)
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100407{
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100408 int i, j;
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100409 celt_word32_t E;
Jean-Marc Valinec9b6df2008-03-07 17:05:47 +1100410 celt_word16_t g;
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100411
Jean-Marc Valinec9b6df2008-03-07 17:05:47 +1100412 E = EPSILON;
Jean-Marc Valina536f772008-03-22 09:01:50 +1100413 if (N0 >= (Nmax>>1))
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100414 {
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100415 for (i=0;i<B;i++)
416 {
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100417 for (j=0;j<N;j++)
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100418 {
419 P[j*B+i] = Y[(Nmax-N0-j-1)*B+i];
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100420 E += P[j*B+i]*P[j*B+i];
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100421 }
422 }
423 } else {
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100424 for (j=0;j<B*N;j++)
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100425 {
426 P[j] = Y[j];
Jean-Marc Valin877b1972008-02-29 16:40:39 +1100427 E = MAC16_16(E, P[j],P[j]);
Jean-Marc Valin0df0eb42008-02-13 16:00:10 +1100428 }
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100429 }
Jean-Marc Valin23e82b22008-03-24 08:15:40 +1100430 g = celt_rcp(SHL32(celt_sqrt(E),9));
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100431 for (j=0;j<B*N;j++)
Jean-Marc Valinec9b6df2008-03-07 17:05:47 +1100432 P[j] = PSHR32(MULT16_16(g, P[j]),8);
Jean-Marc Valine28f25f2008-03-27 14:18:28 +1100433 for (j=0;j<B*N;j++)
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100434 x[j] = P[j];
435}
436