1cabdff1aSopenharmony_ci/*
2cabdff1aSopenharmony_ci * Copyright (c) 2012 Andrew D'Addesio
3cabdff1aSopenharmony_ci * Copyright (c) 2013-2014 Mozilla Corporation
4cabdff1aSopenharmony_ci * Copyright (c) 2017 Rostislav Pehlivanov <atomnuker@gmail.com>
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 "opus_rc.h"
24cabdff1aSopenharmony_ci
25cabdff1aSopenharmony_ci#define OPUS_RC_BITS 32
26cabdff1aSopenharmony_ci#define OPUS_RC_SYM  8
27cabdff1aSopenharmony_ci#define OPUS_RC_CEIL ((1 << OPUS_RC_SYM) - 1)
28cabdff1aSopenharmony_ci#define OPUS_RC_TOP (1u << 31)
29cabdff1aSopenharmony_ci#define OPUS_RC_BOT (OPUS_RC_TOP >> OPUS_RC_SYM)
30cabdff1aSopenharmony_ci#define OPUS_RC_SHIFT (OPUS_RC_BITS - OPUS_RC_SYM - 1)
31cabdff1aSopenharmony_ci
32cabdff1aSopenharmony_cistatic av_always_inline void opus_rc_enc_carryout(OpusRangeCoder *rc, int cbuf)
33cabdff1aSopenharmony_ci{
34cabdff1aSopenharmony_ci    const int cb = cbuf >> OPUS_RC_SYM, mb = (OPUS_RC_CEIL + cb) & OPUS_RC_CEIL;
35cabdff1aSopenharmony_ci    if (cbuf == OPUS_RC_CEIL) {
36cabdff1aSopenharmony_ci        rc->ext++;
37cabdff1aSopenharmony_ci        return;
38cabdff1aSopenharmony_ci    }
39cabdff1aSopenharmony_ci    rc->rng_cur[0] = rc->rem + cb;
40cabdff1aSopenharmony_ci    rc->rng_cur += (rc->rem >= 0);
41cabdff1aSopenharmony_ci    for (; rc->ext > 0; rc->ext--)
42cabdff1aSopenharmony_ci        *rc->rng_cur++ = mb;
43cabdff1aSopenharmony_ci    av_assert0(rc->rng_cur < rc->rb.position);
44cabdff1aSopenharmony_ci    rc->rem = cbuf & OPUS_RC_CEIL; /* Propagate */
45cabdff1aSopenharmony_ci}
46cabdff1aSopenharmony_ci
47cabdff1aSopenharmony_cistatic av_always_inline void opus_rc_dec_normalize(OpusRangeCoder *rc)
48cabdff1aSopenharmony_ci{
49cabdff1aSopenharmony_ci    while (rc->range <= OPUS_RC_BOT) {
50cabdff1aSopenharmony_ci        rc->value = ((rc->value << OPUS_RC_SYM) | (get_bits(&rc->gb, OPUS_RC_SYM) ^ OPUS_RC_CEIL)) & (OPUS_RC_TOP - 1);
51cabdff1aSopenharmony_ci        rc->range     <<= OPUS_RC_SYM;
52cabdff1aSopenharmony_ci        rc->total_bits += OPUS_RC_SYM;
53cabdff1aSopenharmony_ci    }
54cabdff1aSopenharmony_ci}
55cabdff1aSopenharmony_ci
56cabdff1aSopenharmony_cistatic av_always_inline void opus_rc_enc_normalize(OpusRangeCoder *rc)
57cabdff1aSopenharmony_ci{
58cabdff1aSopenharmony_ci    while (rc->range <= OPUS_RC_BOT) {
59cabdff1aSopenharmony_ci        opus_rc_enc_carryout(rc, rc->value >> OPUS_RC_SHIFT);
60cabdff1aSopenharmony_ci        rc->value = (rc->value << OPUS_RC_SYM) & (OPUS_RC_TOP - 1);
61cabdff1aSopenharmony_ci        rc->range     <<= OPUS_RC_SYM;
62cabdff1aSopenharmony_ci        rc->total_bits += OPUS_RC_SYM;
63cabdff1aSopenharmony_ci    }
64cabdff1aSopenharmony_ci}
65cabdff1aSopenharmony_ci
66cabdff1aSopenharmony_cistatic av_always_inline void opus_rc_dec_update(OpusRangeCoder *rc, uint32_t scale,
67cabdff1aSopenharmony_ci                                                uint32_t low, uint32_t high,
68cabdff1aSopenharmony_ci                                                uint32_t total)
69cabdff1aSopenharmony_ci{
70cabdff1aSopenharmony_ci    rc->value -= scale * (total - high);
71cabdff1aSopenharmony_ci    rc->range  = low ? scale * (high - low)
72cabdff1aSopenharmony_ci                      : rc->range - scale * (total - high);
73cabdff1aSopenharmony_ci    opus_rc_dec_normalize(rc);
74cabdff1aSopenharmony_ci}
75cabdff1aSopenharmony_ci
76cabdff1aSopenharmony_ci/* Main encoding function, this needs to go fast */
77cabdff1aSopenharmony_cistatic av_always_inline void opus_rc_enc_update(OpusRangeCoder *rc, uint32_t b, uint32_t p,
78cabdff1aSopenharmony_ci                                                uint32_t p_tot, const int ptwo)
79cabdff1aSopenharmony_ci{
80cabdff1aSopenharmony_ci    uint32_t rscaled, cnd = !!b;
81cabdff1aSopenharmony_ci    if (ptwo) /* Whole function is inlined so hopefully branch is optimized out */
82cabdff1aSopenharmony_ci        rscaled = rc->range >> ff_log2(p_tot);
83cabdff1aSopenharmony_ci    else
84cabdff1aSopenharmony_ci        rscaled = rc->range/p_tot;
85cabdff1aSopenharmony_ci    rc->value +=    cnd*(rc->range - rscaled*(p_tot - b));
86cabdff1aSopenharmony_ci    rc->range  = (!cnd)*(rc->range - rscaled*(p_tot - p)) + cnd*rscaled*(p - b);
87cabdff1aSopenharmony_ci    opus_rc_enc_normalize(rc);
88cabdff1aSopenharmony_ci}
89cabdff1aSopenharmony_ci
90cabdff1aSopenharmony_ciuint32_t ff_opus_rc_dec_cdf(OpusRangeCoder *rc, const uint16_t *cdf)
91cabdff1aSopenharmony_ci{
92cabdff1aSopenharmony_ci    unsigned int k, scale, total, symbol, low, high;
93cabdff1aSopenharmony_ci
94cabdff1aSopenharmony_ci    total = *cdf++;
95cabdff1aSopenharmony_ci
96cabdff1aSopenharmony_ci    scale   = rc->range / total;
97cabdff1aSopenharmony_ci    symbol = rc->value / scale + 1;
98cabdff1aSopenharmony_ci    symbol = total - FFMIN(symbol, total);
99cabdff1aSopenharmony_ci
100cabdff1aSopenharmony_ci    for (k = 0; cdf[k] <= symbol; k++);
101cabdff1aSopenharmony_ci    high = cdf[k];
102cabdff1aSopenharmony_ci    low  = k ? cdf[k-1] : 0;
103cabdff1aSopenharmony_ci
104cabdff1aSopenharmony_ci    opus_rc_dec_update(rc, scale, low, high, total);
105cabdff1aSopenharmony_ci
106cabdff1aSopenharmony_ci    return k;
107cabdff1aSopenharmony_ci}
108cabdff1aSopenharmony_ci
109cabdff1aSopenharmony_civoid ff_opus_rc_enc_cdf(OpusRangeCoder *rc, int val, const uint16_t *cdf)
110cabdff1aSopenharmony_ci{
111cabdff1aSopenharmony_ci    opus_rc_enc_update(rc, (!!val)*cdf[val], cdf[val + 1], cdf[0], 1);
112cabdff1aSopenharmony_ci}
113cabdff1aSopenharmony_ci
114cabdff1aSopenharmony_ciuint32_t ff_opus_rc_dec_log(OpusRangeCoder *rc, uint32_t bits)
115cabdff1aSopenharmony_ci{
116cabdff1aSopenharmony_ci    uint32_t k, scale;
117cabdff1aSopenharmony_ci    scale = rc->range >> bits; // in this case, scale = symbol
118cabdff1aSopenharmony_ci
119cabdff1aSopenharmony_ci    if (rc->value >= scale) {
120cabdff1aSopenharmony_ci        rc->value -= scale;
121cabdff1aSopenharmony_ci        rc->range -= scale;
122cabdff1aSopenharmony_ci        k = 0;
123cabdff1aSopenharmony_ci    } else {
124cabdff1aSopenharmony_ci        rc->range = scale;
125cabdff1aSopenharmony_ci        k = 1;
126cabdff1aSopenharmony_ci    }
127cabdff1aSopenharmony_ci    opus_rc_dec_normalize(rc);
128cabdff1aSopenharmony_ci    return k;
129cabdff1aSopenharmony_ci}
130cabdff1aSopenharmony_ci
131cabdff1aSopenharmony_civoid ff_opus_rc_enc_log(OpusRangeCoder *rc, int val, uint32_t bits)
132cabdff1aSopenharmony_ci{
133cabdff1aSopenharmony_ci    bits = (1 << bits) - 1;
134cabdff1aSopenharmony_ci    opus_rc_enc_update(rc, (!!val)*bits, bits + !!val, bits + 1, 1);
135cabdff1aSopenharmony_ci}
136cabdff1aSopenharmony_ci
137cabdff1aSopenharmony_ci/**
138cabdff1aSopenharmony_ci * CELT: read 1-25 raw bits at the end of the frame, backwards byte-wise
139cabdff1aSopenharmony_ci */
140cabdff1aSopenharmony_ciuint32_t ff_opus_rc_get_raw(OpusRangeCoder *rc, uint32_t count)
141cabdff1aSopenharmony_ci{
142cabdff1aSopenharmony_ci    uint32_t value = 0;
143cabdff1aSopenharmony_ci
144cabdff1aSopenharmony_ci    while (rc->rb.bytes && rc->rb.cachelen < count) {
145cabdff1aSopenharmony_ci        rc->rb.cacheval |= *--rc->rb.position << rc->rb.cachelen;
146cabdff1aSopenharmony_ci        rc->rb.cachelen += 8;
147cabdff1aSopenharmony_ci        rc->rb.bytes--;
148cabdff1aSopenharmony_ci    }
149cabdff1aSopenharmony_ci
150cabdff1aSopenharmony_ci    value = av_mod_uintp2(rc->rb.cacheval, count);
151cabdff1aSopenharmony_ci    rc->rb.cacheval    >>= count;
152cabdff1aSopenharmony_ci    rc->rb.cachelen     -= count;
153cabdff1aSopenharmony_ci    rc->total_bits      += count;
154cabdff1aSopenharmony_ci
155cabdff1aSopenharmony_ci    return value;
156cabdff1aSopenharmony_ci}
157cabdff1aSopenharmony_ci
158cabdff1aSopenharmony_ci/**
159cabdff1aSopenharmony_ci * CELT: write 0 - 31 bits to the rawbits buffer
160cabdff1aSopenharmony_ci */
161cabdff1aSopenharmony_civoid ff_opus_rc_put_raw(OpusRangeCoder *rc, uint32_t val, uint32_t count)
162cabdff1aSopenharmony_ci{
163cabdff1aSopenharmony_ci    const int to_write = FFMIN(32 - rc->rb.cachelen, count);
164cabdff1aSopenharmony_ci
165cabdff1aSopenharmony_ci    rc->total_bits += count;
166cabdff1aSopenharmony_ci    rc->rb.cacheval |= av_mod_uintp2(val, to_write) << rc->rb.cachelen;
167cabdff1aSopenharmony_ci    rc->rb.cachelen = (rc->rb.cachelen + to_write) % 32;
168cabdff1aSopenharmony_ci
169cabdff1aSopenharmony_ci    if (!rc->rb.cachelen && count) {
170cabdff1aSopenharmony_ci        AV_WB32((uint8_t *)rc->rb.position, rc->rb.cacheval);
171cabdff1aSopenharmony_ci        rc->rb.bytes    += 4;
172cabdff1aSopenharmony_ci        rc->rb.position -= 4;
173cabdff1aSopenharmony_ci        rc->rb.cachelen = count - to_write;
174cabdff1aSopenharmony_ci        rc->rb.cacheval = av_mod_uintp2(val >> to_write, rc->rb.cachelen);
175cabdff1aSopenharmony_ci        av_assert0(rc->rng_cur < rc->rb.position);
176cabdff1aSopenharmony_ci    }
177cabdff1aSopenharmony_ci}
178cabdff1aSopenharmony_ci
179cabdff1aSopenharmony_ci/**
180cabdff1aSopenharmony_ci * CELT: read a uniform distribution
181cabdff1aSopenharmony_ci */
182cabdff1aSopenharmony_ciuint32_t ff_opus_rc_dec_uint(OpusRangeCoder *rc, uint32_t size)
183cabdff1aSopenharmony_ci{
184cabdff1aSopenharmony_ci    uint32_t bits, k, scale, total;
185cabdff1aSopenharmony_ci
186cabdff1aSopenharmony_ci    bits  = opus_ilog(size - 1);
187cabdff1aSopenharmony_ci    total = (bits > 8) ? ((size - 1) >> (bits - 8)) + 1 : size;
188cabdff1aSopenharmony_ci
189cabdff1aSopenharmony_ci    scale  = rc->range / total;
190cabdff1aSopenharmony_ci    k      = rc->value / scale + 1;
191cabdff1aSopenharmony_ci    k      = total - FFMIN(k, total);
192cabdff1aSopenharmony_ci    opus_rc_dec_update(rc, scale, k, k + 1, total);
193cabdff1aSopenharmony_ci
194cabdff1aSopenharmony_ci    if (bits > 8) {
195cabdff1aSopenharmony_ci        k = k << (bits - 8) | ff_opus_rc_get_raw(rc, bits - 8);
196cabdff1aSopenharmony_ci        return FFMIN(k, size - 1);
197cabdff1aSopenharmony_ci    } else
198cabdff1aSopenharmony_ci        return k;
199cabdff1aSopenharmony_ci}
200cabdff1aSopenharmony_ci
201cabdff1aSopenharmony_ci/**
202cabdff1aSopenharmony_ci * CELT: write a uniformly distributed integer
203cabdff1aSopenharmony_ci */
204cabdff1aSopenharmony_civoid ff_opus_rc_enc_uint(OpusRangeCoder *rc, uint32_t val, uint32_t size)
205cabdff1aSopenharmony_ci{
206cabdff1aSopenharmony_ci    const int ps = FFMAX(opus_ilog(size - 1) - 8, 0);
207cabdff1aSopenharmony_ci    opus_rc_enc_update(rc, val >> ps, (val >> ps) + 1, ((size - 1) >> ps) + 1, 0);
208cabdff1aSopenharmony_ci    ff_opus_rc_put_raw(rc, val, ps);
209cabdff1aSopenharmony_ci}
210cabdff1aSopenharmony_ci
211cabdff1aSopenharmony_ciuint32_t ff_opus_rc_dec_uint_step(OpusRangeCoder *rc, int k0)
212cabdff1aSopenharmony_ci{
213cabdff1aSopenharmony_ci    /* Use a probability of 3 up to itheta=8192 and then use 1 after */
214cabdff1aSopenharmony_ci    uint32_t k, scale, symbol, total = (k0+1)*3 + k0;
215cabdff1aSopenharmony_ci    scale  = rc->range / total;
216cabdff1aSopenharmony_ci    symbol = rc->value / scale + 1;
217cabdff1aSopenharmony_ci    symbol = total - FFMIN(symbol, total);
218cabdff1aSopenharmony_ci
219cabdff1aSopenharmony_ci    k = (symbol < (k0+1)*3) ? symbol/3 : symbol - (k0+1)*2;
220cabdff1aSopenharmony_ci
221cabdff1aSopenharmony_ci    opus_rc_dec_update(rc, scale, (k <= k0) ? 3*(k+0) : (k-1-k0) + 3*(k0+1),
222cabdff1aSopenharmony_ci                       (k <= k0) ? 3*(k+1) : (k-0-k0) + 3*(k0+1), total);
223cabdff1aSopenharmony_ci    return k;
224cabdff1aSopenharmony_ci}
225cabdff1aSopenharmony_ci
226cabdff1aSopenharmony_civoid ff_opus_rc_enc_uint_step(OpusRangeCoder *rc, uint32_t val, int k0)
227cabdff1aSopenharmony_ci{
228cabdff1aSopenharmony_ci    const uint32_t a = val <= k0, b = 2*a + 1;
229cabdff1aSopenharmony_ci    k0 = (k0 + 1) << 1;
230cabdff1aSopenharmony_ci    val = b*(val + k0) - 3*a*k0;
231cabdff1aSopenharmony_ci    opus_rc_enc_update(rc, val, val + b, (k0 << 1) - 1, 0);
232cabdff1aSopenharmony_ci}
233cabdff1aSopenharmony_ci
234cabdff1aSopenharmony_ciuint32_t ff_opus_rc_dec_uint_tri(OpusRangeCoder *rc, int qn)
235cabdff1aSopenharmony_ci{
236cabdff1aSopenharmony_ci    uint32_t k, scale, symbol, total, low, center;
237cabdff1aSopenharmony_ci
238cabdff1aSopenharmony_ci    total = ((qn>>1) + 1) * ((qn>>1) + 1);
239cabdff1aSopenharmony_ci    scale   = rc->range / total;
240cabdff1aSopenharmony_ci    center = rc->value / scale + 1;
241cabdff1aSopenharmony_ci    center = total - FFMIN(center, total);
242cabdff1aSopenharmony_ci
243cabdff1aSopenharmony_ci    if (center < total >> 1) {
244cabdff1aSopenharmony_ci        k      = (ff_sqrt(8 * center + 1) - 1) >> 1;
245cabdff1aSopenharmony_ci        low    = k * (k + 1) >> 1;
246cabdff1aSopenharmony_ci        symbol = k + 1;
247cabdff1aSopenharmony_ci    } else {
248cabdff1aSopenharmony_ci        k      = (2*(qn + 1) - ff_sqrt(8*(total - center - 1) + 1)) >> 1;
249cabdff1aSopenharmony_ci        low    = total - ((qn + 1 - k) * (qn + 2 - k) >> 1);
250cabdff1aSopenharmony_ci        symbol = qn + 1 - k;
251cabdff1aSopenharmony_ci    }
252cabdff1aSopenharmony_ci
253cabdff1aSopenharmony_ci    opus_rc_dec_update(rc, scale, low, low + symbol, total);
254cabdff1aSopenharmony_ci
255cabdff1aSopenharmony_ci    return k;
256cabdff1aSopenharmony_ci}
257cabdff1aSopenharmony_ci
258cabdff1aSopenharmony_civoid ff_opus_rc_enc_uint_tri(OpusRangeCoder *rc, uint32_t k, int qn)
259cabdff1aSopenharmony_ci{
260cabdff1aSopenharmony_ci    uint32_t symbol, low, total;
261cabdff1aSopenharmony_ci
262cabdff1aSopenharmony_ci    total = ((qn>>1) + 1) * ((qn>>1) + 1);
263cabdff1aSopenharmony_ci
264cabdff1aSopenharmony_ci    if (k <= qn >> 1) {
265cabdff1aSopenharmony_ci        low    = k * (k + 1) >> 1;
266cabdff1aSopenharmony_ci        symbol = k + 1;
267cabdff1aSopenharmony_ci    } else {
268cabdff1aSopenharmony_ci        low    = total - ((qn + 1 - k) * (qn + 2 - k) >> 1);
269cabdff1aSopenharmony_ci        symbol = qn + 1 - k;
270cabdff1aSopenharmony_ci    }
271cabdff1aSopenharmony_ci
272cabdff1aSopenharmony_ci    opus_rc_enc_update(rc, low, low + symbol, total, 0);
273cabdff1aSopenharmony_ci}
274cabdff1aSopenharmony_ci
275cabdff1aSopenharmony_ciint ff_opus_rc_dec_laplace(OpusRangeCoder *rc, uint32_t symbol, int decay)
276cabdff1aSopenharmony_ci{
277cabdff1aSopenharmony_ci    /* extends the range coder to model a Laplace distribution */
278cabdff1aSopenharmony_ci    int value = 0;
279cabdff1aSopenharmony_ci    uint32_t scale, low = 0, center;
280cabdff1aSopenharmony_ci
281cabdff1aSopenharmony_ci    scale  = rc->range >> 15;
282cabdff1aSopenharmony_ci    center = rc->value / scale + 1;
283cabdff1aSopenharmony_ci    center = (1 << 15) - FFMIN(center, 1 << 15);
284cabdff1aSopenharmony_ci
285cabdff1aSopenharmony_ci    if (center >= symbol) {
286cabdff1aSopenharmony_ci        value++;
287cabdff1aSopenharmony_ci        low = symbol;
288cabdff1aSopenharmony_ci        symbol = 1 + ((32768 - 32 - symbol) * (16384-decay) >> 15);
289cabdff1aSopenharmony_ci
290cabdff1aSopenharmony_ci        while (symbol > 1 && center >= low + 2 * symbol) {
291cabdff1aSopenharmony_ci            value++;
292cabdff1aSopenharmony_ci            symbol *= 2;
293cabdff1aSopenharmony_ci            low    += symbol;
294cabdff1aSopenharmony_ci            symbol  = (((symbol - 2) * decay) >> 15) + 1;
295cabdff1aSopenharmony_ci        }
296cabdff1aSopenharmony_ci
297cabdff1aSopenharmony_ci        if (symbol <= 1) {
298cabdff1aSopenharmony_ci            int distance = (center - low) >> 1;
299cabdff1aSopenharmony_ci            value += distance;
300cabdff1aSopenharmony_ci            low   += 2 * distance;
301cabdff1aSopenharmony_ci        }
302cabdff1aSopenharmony_ci
303cabdff1aSopenharmony_ci        if (center < low + symbol)
304cabdff1aSopenharmony_ci            value *= -1;
305cabdff1aSopenharmony_ci        else
306cabdff1aSopenharmony_ci            low += symbol;
307cabdff1aSopenharmony_ci    }
308cabdff1aSopenharmony_ci
309cabdff1aSopenharmony_ci    opus_rc_dec_update(rc, scale, low, FFMIN(low + symbol, 32768), 32768);
310cabdff1aSopenharmony_ci
311cabdff1aSopenharmony_ci    return value;
312cabdff1aSopenharmony_ci}
313cabdff1aSopenharmony_ci
314cabdff1aSopenharmony_civoid ff_opus_rc_enc_laplace(OpusRangeCoder *rc, int *value, uint32_t symbol, int decay)
315cabdff1aSopenharmony_ci{
316cabdff1aSopenharmony_ci    uint32_t low = symbol;
317cabdff1aSopenharmony_ci    int i = 1, val = FFABS(*value), pos = *value > 0;
318cabdff1aSopenharmony_ci    if (!val) {
319cabdff1aSopenharmony_ci        opus_rc_enc_update(rc, 0, symbol, 1 << 15, 1);
320cabdff1aSopenharmony_ci        return;
321cabdff1aSopenharmony_ci    }
322cabdff1aSopenharmony_ci    symbol = ((32768 - 32 - symbol)*(16384 - decay)) >> 15;
323cabdff1aSopenharmony_ci    for (; i < val && symbol; i++) {
324cabdff1aSopenharmony_ci        low   += (symbol << 1) + 2;
325cabdff1aSopenharmony_ci        symbol = (symbol*decay) >> 14;
326cabdff1aSopenharmony_ci    }
327cabdff1aSopenharmony_ci    if (symbol) {
328cabdff1aSopenharmony_ci        low += (++symbol)*pos;
329cabdff1aSopenharmony_ci    } else {
330cabdff1aSopenharmony_ci        const int distance = FFMIN(val - i, (((32768 - low) - !pos) >> 1) - 1);
331cabdff1aSopenharmony_ci        low   += pos + (distance << 1);
332cabdff1aSopenharmony_ci        symbol = FFMIN(1, 32768 - low);
333cabdff1aSopenharmony_ci        *value = FFSIGN(*value)*(distance + i);
334cabdff1aSopenharmony_ci    }
335cabdff1aSopenharmony_ci    opus_rc_enc_update(rc, low, low + symbol, 1 << 15, 1);
336cabdff1aSopenharmony_ci}
337cabdff1aSopenharmony_ci
338cabdff1aSopenharmony_ciint ff_opus_rc_dec_init(OpusRangeCoder *rc, const uint8_t *data, int size)
339cabdff1aSopenharmony_ci{
340cabdff1aSopenharmony_ci    int ret = init_get_bits8(&rc->gb, data, size);
341cabdff1aSopenharmony_ci    if (ret < 0)
342cabdff1aSopenharmony_ci        return ret;
343cabdff1aSopenharmony_ci
344cabdff1aSopenharmony_ci    rc->range = 128;
345cabdff1aSopenharmony_ci    rc->value = 127 - get_bits(&rc->gb, 7);
346cabdff1aSopenharmony_ci    rc->total_bits = 9;
347cabdff1aSopenharmony_ci    opus_rc_dec_normalize(rc);
348cabdff1aSopenharmony_ci
349cabdff1aSopenharmony_ci    return 0;
350cabdff1aSopenharmony_ci}
351cabdff1aSopenharmony_ci
352cabdff1aSopenharmony_civoid ff_opus_rc_dec_raw_init(OpusRangeCoder *rc, const uint8_t *rightend, uint32_t bytes)
353cabdff1aSopenharmony_ci{
354cabdff1aSopenharmony_ci    rc->rb.position = rightend;
355cabdff1aSopenharmony_ci    rc->rb.bytes    = bytes;
356cabdff1aSopenharmony_ci    rc->rb.cachelen = 0;
357cabdff1aSopenharmony_ci    rc->rb.cacheval = 0;
358cabdff1aSopenharmony_ci}
359cabdff1aSopenharmony_ci
360cabdff1aSopenharmony_civoid ff_opus_rc_enc_end(OpusRangeCoder *rc, uint8_t *dst, int size)
361cabdff1aSopenharmony_ci{
362cabdff1aSopenharmony_ci    int rng_bytes, bits = OPUS_RC_BITS - opus_ilog(rc->range);
363cabdff1aSopenharmony_ci    uint32_t mask = (OPUS_RC_TOP - 1) >> bits;
364cabdff1aSopenharmony_ci    uint32_t end = (rc->value + mask) & ~mask;
365cabdff1aSopenharmony_ci
366cabdff1aSopenharmony_ci    if ((end | mask) >= rc->value + rc->range) {
367cabdff1aSopenharmony_ci        bits++;
368cabdff1aSopenharmony_ci        mask >>= 1;
369cabdff1aSopenharmony_ci        end = (rc->value + mask) & ~mask;
370cabdff1aSopenharmony_ci    }
371cabdff1aSopenharmony_ci
372cabdff1aSopenharmony_ci    /* Finish what's left */
373cabdff1aSopenharmony_ci    while (bits > 0) {
374cabdff1aSopenharmony_ci        opus_rc_enc_carryout(rc, end >> OPUS_RC_SHIFT);
375cabdff1aSopenharmony_ci        end = (end << OPUS_RC_SYM) & (OPUS_RC_TOP - 1);
376cabdff1aSopenharmony_ci        bits -= OPUS_RC_SYM;
377cabdff1aSopenharmony_ci    }
378cabdff1aSopenharmony_ci
379cabdff1aSopenharmony_ci    /* Flush out anything left or marked */
380cabdff1aSopenharmony_ci    if (rc->rem >= 0 || rc->ext > 0)
381cabdff1aSopenharmony_ci        opus_rc_enc_carryout(rc, 0);
382cabdff1aSopenharmony_ci
383cabdff1aSopenharmony_ci    rng_bytes = rc->rng_cur - rc->buf;
384cabdff1aSopenharmony_ci    memcpy(dst, rc->buf, rng_bytes);
385cabdff1aSopenharmony_ci
386cabdff1aSopenharmony_ci    rc->waste = size*8 - (rc->rb.bytes*8 + rc->rb.cachelen) - rng_bytes*8;
387cabdff1aSopenharmony_ci
388cabdff1aSopenharmony_ci    /* Put the rawbits part, if any */
389cabdff1aSopenharmony_ci    if (rc->rb.bytes || rc->rb.cachelen) {
390cabdff1aSopenharmony_ci        int i, lap;
391cabdff1aSopenharmony_ci        uint8_t *rb_src, *rb_dst;
392cabdff1aSopenharmony_ci        ff_opus_rc_put_raw(rc, 0, 32 - rc->rb.cachelen);
393cabdff1aSopenharmony_ci        rb_src = rc->buf + OPUS_MAX_PACKET_SIZE + 12 - rc->rb.bytes;
394cabdff1aSopenharmony_ci        rb_dst = dst + FFMAX(size - rc->rb.bytes, 0);
395cabdff1aSopenharmony_ci        lap = &dst[rng_bytes] - rb_dst;
396cabdff1aSopenharmony_ci        for (i = 0; i < lap; i++)
397cabdff1aSopenharmony_ci            rb_dst[i] |= rb_src[i];
398cabdff1aSopenharmony_ci        memcpy(&rb_dst[lap], &rb_src[lap], FFMAX(rc->rb.bytes - lap, 0));
399cabdff1aSopenharmony_ci    }
400cabdff1aSopenharmony_ci}
401cabdff1aSopenharmony_ci
402cabdff1aSopenharmony_civoid ff_opus_rc_enc_init(OpusRangeCoder *rc)
403cabdff1aSopenharmony_ci{
404cabdff1aSopenharmony_ci    rc->value = 0;
405cabdff1aSopenharmony_ci    rc->range = OPUS_RC_TOP;
406cabdff1aSopenharmony_ci    rc->total_bits = OPUS_RC_BITS + 1;
407cabdff1aSopenharmony_ci    rc->rem = -1;
408cabdff1aSopenharmony_ci    rc->ext =  0;
409cabdff1aSopenharmony_ci    rc->rng_cur = rc->buf;
410cabdff1aSopenharmony_ci    ff_opus_rc_dec_raw_init(rc, rc->buf + OPUS_MAX_PACKET_SIZE + 8, 0);
411cabdff1aSopenharmony_ci}
412