blob: f236cf0f46bf0045c3408bd0019e1c67a16f0f32 [file] [log] [blame]
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 Valin164a2292009-07-22 07:48:35 -040041#include "rate.h"
Jean-Marc Valin41af4212007-11-30 18:35:37 +110042
Jean-Marc Valina7750b92009-08-29 22:52:03 +010043static void exp_rotation(celt_norm_t *X, int len, int dir, int stride, int K)
44{
45 int i, k, iter;
46 celt_word16_t c, s;
47 celt_word16_t gain, theta;
48 celt_norm_t *Xptr;
49 gain = celt_div((celt_word32_t)MULT16_16(Q15_ONE,len),(celt_word32_t)(len+2*K*((K>>1)+1)));
50 /* FIXME: Make that HALF16 instead of HALF32 */
51 theta = SUB16(Q15ONE, HALF32(MULT16_16_Q15(gain,gain)));
52 /*if (len==30)
53 {
54 for (i=0;i<len;i++)
55 X[i] = 0;
56 X[14] = 1;
57}*/
58 c = celt_cos_norm(EXTEND32(theta));
59 s = dir*celt_cos_norm(EXTEND32(SUB16(Q15ONE,theta))); /* sin(theta) */
60 if (stride == 1)
61 stride = 2;
62 iter = 1;
63 for (k=0;k<iter;k++)
64 {
65 /* We could use MULT16_16_P15 instead of MULT16_16_Q15 for more accuracy,
66 but at this point, I really don't think it's necessary */
67 Xptr = X;
68 for (i=0;i<len-stride;i++)
69 {
70 celt_norm_t x1, x2;
71 x1 = Xptr[0];
72 x2 = Xptr[stride];
73 Xptr[stride] = MULT16_16_Q15(c,x2) + MULT16_16_Q15(s,x1);
74 *Xptr++ = MULT16_16_Q15(c,x1) - MULT16_16_Q15(s,x2);
75 }
76 Xptr = &X[len-2*stride-1];
77 for (i=len-2*stride-1;i>=0;i--)
78 {
79 celt_norm_t x1, x2;
80 x1 = Xptr[0];
81 x2 = Xptr[stride];
82 Xptr[stride] = MULT16_16_Q15(c,x2) + MULT16_16_Q15(s,x1);
83 *Xptr-- = MULT16_16_Q15(c,x1) - MULT16_16_Q15(s,x2);
84 }
85 }
86 /*if (len==30)
87 {
88 for (i=0;i<len;i++)
89 printf ("%f ", X[i]);
90 printf ("\n");
91 exit(0);
92}*/
93}
94
95
Jean-Marc Valin35a1f882008-03-26 10:34:23 +110096/** Takes the pitch vector and the decoded residual vector, computes the gain
97 that will give ||p+g*y||=1 and mixes the residual with the pitch. */
Jean-Marc Valin095c1782009-09-17 22:38:34 -040098static void mix_pitch_and_residual(int * restrict iy, celt_norm_t * restrict X, int N, int K)
Jean-Marc Valind4018c32008-02-27 10:09:48 +110099{
100 int i;
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400101 celt_word32_t Ryy;
Jean-Marc Valina847b772008-02-27 17:46:49 +1100102 celt_word32_t g;
Jean-Marc Valin31b79d12008-03-12 17:17:23 +1100103 VARDECL(celt_norm_t, y);
Jean-Marc Valind9de5932008-03-05 08:11:57 +1100104#ifdef FIXED_POINT
105 int yshift;
106#endif
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100107 SAVE_STACK;
Jean-Marc Valind17edd32008-02-27 16:52:30 +1100108#ifdef FIXED_POINT
Jean-Marc Valin98c86c72008-03-27 08:40:45 +1100109 yshift = 13-celt_ilog2(K);
Jean-Marc Valind17edd32008-02-27 16:52:30 +1100110#endif
111 ALLOC(y, N, celt_norm_t);
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100112
Jean-Marc Valin6ea8bae2008-04-15 08:01:33 +1000113 i=0;
Jean-Marc Valinb50c5412008-02-27 17:05:43 +1100114 Ryy = 0;
Jean-Marc Valin6ea8bae2008-04-15 08:01:33 +1000115 do {
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400116 y[i] = SHL16(iy[i],yshift);
Jean-Marc Valindf7ab432008-03-26 18:03:22 +1100117 Ryy = MAC16_16(Ryy, y[i], y[i]);
Jean-Marc Valin6ea8bae2008-04-15 08:01:33 +1000118 } while (++i < N);
119
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400120 g = MULT16_32_Q15(celt_sqrt(Ryy), celt_rcp(SHR32(Ryy,9)));
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100121
Jean-Marc Valin6ea8bae2008-04-15 08:01:33 +1000122 i=0;
123 do
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400124 X[i] = ROUND16(MULT16_16(y[i], g),11);
Jean-Marc Valin6ea8bae2008-04-15 08:01:33 +1000125 while (++i < N);
126
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100127 RESTORE_STACK;
Jean-Marc Valind4018c32008-02-27 10:09:48 +1100128}
129
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100130
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400131void alg_quant(celt_norm_t *X, int N, int K, int spread, ec_enc *enc)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100132{
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100133 VARDECL(celt_norm_t, y);
134 VARDECL(int, iy);
Jean-Marc Valin1dab60c2008-09-16 13:29:37 -0400135 VARDECL(celt_word16_t, signx);
Jean-Marc Valin6ea8bae2008-04-15 08:01:33 +1000136 int j, is;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100137 celt_word16_t s;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100138 int pulsesLeft;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100139 celt_word32_t sum;
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400140 celt_word32_t xy, yy;
Jean-Marc Valinf9584772008-03-27 12:22:44 +1100141 int N_1; /* Inverse of N, in Q14 format (even for float) */
Jean-Marc Valinf675adc2008-02-28 12:15:17 +1100142#ifdef FIXED_POINT
Jean-Marc Valind748cd52008-03-01 07:27:03 +1100143 int yshift;
144#endif
145 SAVE_STACK;
146
Jean-Marc Valin164a2292009-07-22 07:48:35 -0400147 K = get_pulses(K);
Jean-Marc Valind748cd52008-03-01 07:27:03 +1100148#ifdef FIXED_POINT
Jean-Marc Valin98c86c72008-03-27 08:40:45 +1100149 yshift = 13-celt_ilog2(K);
Jean-Marc Valinf675adc2008-02-28 12:15:17 +1100150#endif
Jean-Marc Valin9d8d9b32008-02-27 16:17:39 +1100151
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100152 ALLOC(y, N, celt_norm_t);
153 ALLOC(iy, N, int);
Jean-Marc Valin1dab60c2008-09-16 13:29:37 -0400154 ALLOC(signx, N, celt_word16_t);
Jean-Marc Valin124d1cd2008-03-28 00:33:04 +1100155 N_1 = 512/N;
Jean-Marc Valina7750b92009-08-29 22:52:03 +0100156
157 if (spread)
158 exp_rotation(X, N, 1, spread, K);
Jean-Marc Valin3d152a52008-04-15 07:46:48 +1000159
160 sum = 0;
Jean-Marc Valindff9b7e2008-04-21 11:43:51 +1000161 j=0; do {
Jean-Marc Valin49134382008-03-25 16:07:05 +1100162 if (X[j]>0)
163 signx[j]=1;
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500164 else {
Jean-Marc Valin49134382008-03-25 16:07:05 +1100165 signx[j]=-1;
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500166 X[j]=-X[j];
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500167 }
Jean-Marc Valin3d152a52008-04-15 07:46:48 +1000168 iy[j] = 0;
169 y[j] = 0;
Jean-Marc Valindff9b7e2008-04-21 11:43:51 +1000170 } while (++j<N);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100171
Jean-Marc Valin4ff068e2008-03-15 23:34:39 +1100172 celt_assert2(Rpp<=NORM_SCALING, "Rpp should never have a norm greater than unity");
Jean-Marc Valinb60340f2008-02-26 15:41:51 +1100173
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400174 xy = yy = 0;
Jean-Marc Valin0d587d82008-02-14 21:29:50 +1100175
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100176 pulsesLeft = K;
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500177
178 /* Do a pre-search by projecting on the pyramid */
Jean-Marc Valina733f082008-12-04 22:52:26 -0500179 if (K > (N>>1))
180 {
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500181 celt_word16_t rcp;
Gregory Maxwell61832f12008-12-22 18:15:42 -0500182 sum=0;
Jean-Marc Valina733f082008-12-04 22:52:26 -0500183 j=0; do {
184 sum += X[j];
185 } while (++j<N);
Jean-Marc Valin6d454d82009-06-30 10:31:00 -0400186
187#ifdef FIXED_POINT
188 if (sum <= K)
189#else
190 if (sum <= EPSILON)
191#endif
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500192 {
Jean-Marc Valinda1156a2009-07-01 01:27:48 -0400193 X[0] = QCONST16(1.f,14);
Jean-Marc Valin6d454d82009-06-30 10:31:00 -0400194 j=1; do
195 X[j]=0;
196 while (++j<N);
Jean-Marc Valinda1156a2009-07-01 01:27:48 -0400197 sum = QCONST16(1.f,14);
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500198 }
199 /* Do we have sufficient accuracy here? */
200 rcp = EXTRACT16(MULT16_32_Q16(K-1, celt_rcp(sum)));
Jean-Marc Valina733f082008-12-04 22:52:26 -0500201 j=0; do {
Jean-Marc Valin09dc5a12008-12-05 00:28:28 -0500202#ifdef FIXED_POINT
Jean-Marc Valin137241d2008-12-06 23:44:55 -0500203 /* It's really important to round *towards zero* here */
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500204 iy[j] = MULT16_16_Q15(X[j],rcp);
Jean-Marc Valin09dc5a12008-12-05 00:28:28 -0500205#else
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500206 iy[j] = floor(rcp*X[j]);
Jean-Marc Valin09dc5a12008-12-05 00:28:28 -0500207#endif
Jean-Marc Valinc7635b42008-12-04 23:26:32 -0500208 y[j] = SHL16(iy[j],yshift);
209 yy = MAC16_16(yy, y[j],y[j]);
210 xy = MAC16_16(xy, X[j],y[j]);
Jean-Marc Valin09dc5a12008-12-05 00:28:28 -0500211 y[j] *= 2;
Jean-Marc Valina733f082008-12-04 22:52:26 -0500212 pulsesLeft -= iy[j];
213 } while (++j<N);
214 }
Jean-Marc Valin137241d2008-12-06 23:44:55 -0500215 celt_assert2(pulsesLeft>=1, "Allocated too many pulses in the quick pass");
Jean-Marc Valin8256ed42008-12-12 20:50:56 -0500216
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400217 while (pulsesLeft > 0)
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100218 {
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100219 int pulsesAtOnce=1;
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100220 int best_id;
Jean-Marc Valined317c92008-04-15 17:31:23 +1000221 celt_word16_t magnitude;
Jean-Marc Valin7bb339d2008-09-21 21:11:39 -0400222 celt_word32_t best_num = -VERY_LARGE16;
223 celt_word16_t best_den = 0;
Jean-Marc Valin0bc5f7f2008-04-20 17:16:18 +1000224#ifdef FIXED_POINT
225 int rshift;
226#endif
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100227 /* Decide on how many pulses to find at once */
Jean-Marc Valin124d1cd2008-03-28 00:33:04 +1100228 pulsesAtOnce = (pulsesLeft*N_1)>>9; /* pulsesLeft/N */
Jean-Marc Valincab576e2008-02-12 17:21:14 +1100229 if (pulsesAtOnce<1)
230 pulsesAtOnce = 1;
Jean-Marc Valin0bc5f7f2008-04-20 17:16:18 +1000231#ifdef FIXED_POINT
232 rshift = yshift+1+celt_ilog2(K-pulsesLeft+pulsesAtOnce);
233#endif
Jean-Marc Valined317c92008-04-15 17:31:23 +1000234 magnitude = SHL16(pulsesAtOnce, yshift);
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100235
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100236 best_id = 0;
Jean-Marc Valined317c92008-04-15 17:31:23 +1000237 /* The squared magnitude term gets added anyway, so we might as well
238 add it outside the loop */
Jean-Marc Valin1dab60c2008-09-16 13:29:37 -0400239 yy = MAC16_16(yy, magnitude,magnitude);
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100240 /* Choose between fast and accurate strategy depending on where we are in the search */
Jean-Marc Valined317c92008-04-15 17:31:23 +1000241 /* This should ensure that anything we can process will have a better score */
Jean-Marc Valin7bb339d2008-09-21 21:11:39 -0400242 j=0;
243 do {
244 celt_word16_t Rxy, Ryy;
245 /* Select sign based on X[j] alone */
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500246 s = magnitude;
Jean-Marc Valin7bb339d2008-09-21 21:11:39 -0400247 /* Temporary sums of the new pulse(s) */
248 Rxy = EXTRACT16(SHR32(MAC16_16(xy, s,X[j]),rshift));
249 /* We're multiplying y[j] by two so we don't have to do it here */
250 Ryy = EXTRACT16(SHR32(MAC16_16(yy, s,y[j]),rshift));
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100251
Jean-Marc Valined317c92008-04-15 17:31:23 +1000252 /* Approximate score: we maximise Rxy/sqrt(Ryy) (we're guaranteed that
Jean-Marc Valin7bb339d2008-09-21 21:11:39 -0400253 Rxy is positive because the sign is pre-computed) */
254 Rxy = MULT16_16_Q15(Rxy,Rxy);
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100255 /* The idea is to check for num/den >= best_num/best_den, but that way
Jean-Marc Valin7bb339d2008-09-21 21:11:39 -0400256 we can do it without any division */
257 /* OPT: Make sure to use conditional moves here */
258 if (MULT16_16(best_den, Rxy) > MULT16_16(Ryy, best_num))
259 {
260 best_den = Ryy;
261 best_num = Rxy;
262 best_id = j;
263 }
264 } while (++j<N);
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100265
Jean-Marc Valin35a1f882008-03-26 10:34:23 +1100266 j = best_id;
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500267 is = pulsesAtOnce;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100268 s = SHL16(is, yshift);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100269
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100270 /* Updating the sums of the new pulse(s) */
271 xy = xy + MULT16_16(s,X[j]);
Jean-Marc Valined317c92008-04-15 17:31:23 +1000272 /* We're multiplying y[j] by two so we don't have to do it here */
273 yy = yy + MULT16_16(s,y[j]);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100274
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100275 /* Only now that we've made the final choice, update y/iy */
Jean-Marc Valined317c92008-04-15 17:31:23 +1000276 /* Multiplying y[j] by 2 so we don't have to do it everywhere else */
277 y[j] += 2*s;
Jean-Marc Valin44c63352008-03-25 21:28:40 +1100278 iy[j] += is;
Jean-Marc Valin846d4e22008-02-12 13:48:48 +1100279 pulsesLeft -= pulsesAtOnce;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100280 }
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500281 j=0;
282 do {
Jean-Marc Valin6cde5dd2008-12-04 21:21:41 -0500283 X[j] = MULT16_16(signx[j],X[j]);
284 if (signx[j] < 0)
285 iy[j] = -iy[j];
286 } while (++j<N);
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100287 encode_pulses(iy, N, K, enc);
Jean-Marc Valin5fa59952008-02-14 13:50:44 +1100288
Jean-Marc Valina4833ff2008-01-10 15:34:00 +1100289 /* Recompute the gain in one pass to reduce the encoder-decoder mismatch
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100290 due to the recursive computation used in quantisation. */
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400291 mix_pitch_and_residual(iy, X, N, K);
Jean-Marc Valina7750b92009-08-29 22:52:03 +0100292 if (spread)
293 exp_rotation(X, N, -1, spread, K);
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100294 RESTORE_STACK;
Jean-Marc Valin41af4212007-11-30 18:35:37 +1100295}
296
Jean-Marc Valinbd718ba2008-03-25 14:15:41 +1100297
Jean-Marc Valin879fbfd2008-02-20 17:17:13 +1100298/** Decode pulse vector and combine the result with the pitch vector to produce
299 the final normalised signal in the current band. */
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400300void alg_unquant(celt_norm_t *X, int N, int K, int spread, ec_dec *dec)
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100301{
Jean-Marc Valin31b79d12008-03-12 17:17:23 +1100302 VARDECL(int, iy);
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100303 SAVE_STACK;
Jean-Marc Valin164a2292009-07-22 07:48:35 -0400304 K = get_pulses(K);
Jean-Marc Valin9a0bba12008-02-20 14:08:50 +1100305 ALLOC(iy, N, int);
Jean-Marc Valin5fa59952008-02-14 13:50:44 +1100306 decode_pulses(iy, N, K, dec);
Jean-Marc Valin095c1782009-09-17 22:38:34 -0400307 mix_pitch_and_residual(iy, X, N, K);
Jean-Marc Valina7750b92009-08-29 22:52:03 +0100308 if (spread)
309 exp_rotation(X, N, -1, spread, K);
Jean-Marc Valin8600f692008-02-29 15:14:12 +1100310 RESTORE_STACK;
Jean-Marc Valin0d227d82007-12-31 16:12:12 +1100311}
312
Jean-Marc Valinca53b7c2009-03-26 20:23:14 -0400313celt_word16_t renormalise_vector(celt_norm_t *X, celt_word16_t value, int N, int stride)
Jean-Marc Valin6361ad82008-07-20 23:14:31 -0400314{
315 int i;
316 celt_word32_t E = EPSILON;
Jean-Marc Valinca53b7c2009-03-26 20:23:14 -0400317 celt_word16_t rE;
Jean-Marc Valin6361ad82008-07-20 23:14:31 -0400318 celt_word16_t g;
319 celt_norm_t *xptr = X;
320 for (i=0;i<N;i++)
321 {
322 E = MAC16_16(E, *xptr, *xptr);
323 xptr += stride;
324 }
325
Jean-Marc Valinca53b7c2009-03-26 20:23:14 -0400326 rE = celt_sqrt(E);
Jean-Marc Valincd29b022009-07-01 09:59:21 -0400327#ifdef FIXED_POINT
328 if (rE <= 128)
329 g = Q15ONE;
330 else
331#endif
332 g = MULT16_16_Q15(value,celt_rcp(SHL32(rE,9)));
Jean-Marc Valin6361ad82008-07-20 23:14:31 -0400333 xptr = X;
334 for (i=0;i<N;i++)
335 {
336 *xptr = PSHR32(MULT16_16(g, *xptr),8);
337 xptr += stride;
338 }
Jean-Marc Valinca53b7c2009-03-26 20:23:14 -0400339 return rE;
Jean-Marc Valin6361ad82008-07-20 23:14:31 -0400340}
341
342static void fold(const CELTMode *m, int N, celt_norm_t *Y, celt_norm_t * restrict P, int N0, int B)
Jean-Marc Valin4841a0a2007-12-03 13:54:30 +1100343{
Jean-Marc Valindf38f2b2008-07-20 20:36:54 -0400344 int j;
Jean-Marc Valinba11d782008-04-21 21:59:37 +1000345 const int C = CHANNELS(m);
Jean-Marc Valin9edb7b42009-06-15 11:22:01 -0400346 int id = (N0*C) % (C*B);
Jean-Marc Valindf38f2b2008-07-20 20:36:54 -0400347 /* Here, we assume that id will never be greater than N0, i.e. that
Jean-Marc Valin5eef2642008-08-06 23:06:31 -0400348 no band is wider than N0. In the unlikely case it happens, we set
349 everything to zero */
Jean-Marc Valin4e5b7bc2009-07-03 15:09:07 -0400350 /*{
351 int offset = (N0*C - (id+C*N))/2;
352 if (offset > C*N0/16)
353 offset = C*N0/16;
354 offset -= offset % (C*B);
355 if (offset < 0)
356 offset = 0;
357 //printf ("%d\n", offset);
358 id += offset;
359 }*/
Jean-Marc Valin9edb7b42009-06-15 11:22:01 -0400360 if (id+C*N>N0*C)
Jean-Marc Valin5eef2642008-08-06 23:06:31 -0400361 for (j=0;j<C*N;j++)
362 P[j] = 0;
363 else
364 for (j=0;j<C*N;j++)
365 P[j] = Y[id++];
Jean-Marc Valin2c733062008-07-17 16:22:23 -0400366}
367
Jean-Marc Valin3aa3afe2009-09-11 20:28:29 -0400368void intra_fold(const CELTMode *m, celt_norm_t * restrict x, int N, celt_norm_t *Y, celt_norm_t * restrict P, int N0, int B)
Jean-Marc Valin2c733062008-07-17 16:22:23 -0400369{
Jean-Marc Valin798ab382009-07-12 20:41:29 -0400370 int c;
Jean-Marc Valinba11d782008-04-21 21:59:37 +1000371 const int C = CHANNELS(m);
Jean-Marc Valin896471d2008-11-06 21:55:41 -0500372
Jean-Marc Valin6361ad82008-07-20 23:14:31 -0400373 fold(m, N, Y, P, N0, B);
Jean-Marc Valin798ab382009-07-12 20:41:29 -0400374 c=0;
375 do {
Jean-Marc Valin3aa3afe2009-09-11 20:28:29 -0400376 renormalise_vector(P+c, Q15ONE, N, C);
Jean-Marc Valin798ab382009-07-12 20:41:29 -0400377 } while (++c < C);
Jean-Marc Valin0e20ca02008-02-11 15:33:53 +1100378}
379