Coverage Report

Created: 2025-11-24 06:49

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/src/libavc/decoder/ih264d_cabac.c
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Count
Source
1
/******************************************************************************
2
 *
3
 * Copyright (C) 2015 The Android Open Source Project
4
 *
5
 * Licensed under the Apache License, Version 2.0 (the "License");
6
 * you may not use this file except in compliance with the License.
7
 * You may obtain a copy of the License at:
8
 *
9
 * http://www.apache.org/licenses/LICENSE-2.0
10
 *
11
 * Unless required by applicable law or agreed to in writing, software
12
 * distributed under the License is distributed on an "AS IS" BASIS,
13
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14
 * See the License for the specific language governing permissions and
15
 * limitations under the License.
16
 *
17
 *****************************************************************************
18
 * Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore
19
*/
20
/*!
21
 ***************************************************************************
22
 * \file ih264d_cabac.c
23
 *
24
 * \brief
25
 *    This file contains Binary decoding routines.
26
 *
27
 * \date
28
 *    04/02/2003
29
 *
30
 * \author  NS
31
 ***************************************************************************
32
 */
33
#include <string.h>
34
#include "ih264_typedefs.h"
35
#include "ih264_macros.h"
36
#include "ih264_platform_macros.h"
37
#include "ih264d_structs.h"
38
#include "ih264d_cabac.h"
39
#include "ih264d_bitstrm.h"
40
#include "ih264d_error_handler.h"
41
#include "ih264d_defs.h"
42
#include "ih264d_debug.h"
43
#include "ih264d_tables.h"
44
#include "ih264d_parse_cabac.h"
45
#include "ih264d_tables.h"
46
47
48
49
/*!
50
 **************************************************************************
51
 * \if Function name : ih264d_init_cabac_dec_envirnoment \endif
52
 *
53
 * \brief
54
 *    This function initializes CABAC decoding envirnoment. This function
55
 *    implements 9.3.3.2.3.1 of ISO/IEC14496-10.
56
 *
57
 * \return
58
 *    None
59
 *
60
 **************************************************************************
61
 */
62
WORD32 ih264d_init_cabac_dec_envirnoment(decoding_envirnoment_t * ps_cab_env,
63
                                       dec_bit_stream_t *ps_bitstrm)
64
17.7k
{
65
17.7k
    UWORD32 u4_code_int_val_ofst;
66
67
17.7k
    ps_cab_env->u4_code_int_range = (HALF - 2) << 23;
68
17.7k
    NEXTBITS(u4_code_int_val_ofst, ps_bitstrm->u4_ofst, ps_bitstrm->pu4_buffer,
69
17.7k
             32);
70
17.7k
    FLUSHBITS(ps_bitstrm->u4_ofst, 9)
71
72
17.7k
    if(EXCEED_OFFSET(ps_bitstrm))
73
80
        return ERROR_EOB_FLUSHBITS_T;
74
75
17.6k
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
76
77
    /*brief description of the design adopted for CABAC*/
78
    /*according to the standard the u4_code_int_range needs to be initialized 0x 1FE(10 bits) and
79
     9 bits from the bit stream need to be read and into the u4_code_int_val_ofst.As and when the
80
     u4_code_int_range becomes less than 10 bits we need to renormalize and read from the bitstream*
81
82
     In the implemented design
83
     initially
84
85
     range_new = range <<23
86
     valOffset_new = valOffset << 23 + 23 bits(read from the bit stream)
87
88
     Thus we have read 23 more bits ahead of time.
89
90
     It can be mathematical proved that even with the modified range and u4_ofst the operations
91
     like comparison and subtraction needed for a bin decode are still valid(both in the regular case and the bypass case)
92
93
     As bins are decoded..we consume the bits that we have already read into the valOffset.The clz of Range
94
     gives us the number of bits we consumed of the 23 bits that we have read ahead of time.
95
96
     when the number bits we have consumed exceeds 23 ,we renormalize..and  we read from the bitstream again*/
97
98
17.6k
RESET_BIN_COUNTS(ps_cab_env)
99
100
17.6k
    return OK;
101
17.7k
}
102
103
/*****************************************************************************/
104
/*                                                                           */
105
/*  Function Name : ih264d_init_cabac_contexts                                      */
106
/*                                                                           */
107
/*  Description   : This function initializes the cabac contexts             */
108
/*                  depending upon slice type and Init_Idc value.            */
109
/*  Inputs        : ps_dec, slice type                                       */
110
/*  Globals       : <Does it use any global variables?>                      */
111
/*  Outputs       :                                                          */
112
/*  Returns       : void                                                     */
113
/*                                                                           */
114
/*  Issues        : none                                                     */
115
/*                                                                           */
116
/*  Revision History:                                                        */
117
/*                                                                           */
118
/*         DD MM YYYY   Author(s)       Changes (Describe the changes made)  */
119
/*         03 05 2005   100153)         Draft                                */
120
/*                                                                           */
121
/*****************************************************************************/
122
123
void ih264d_init_cabac_contexts(UWORD8 u1_slice_type, dec_struct_t * ps_dec)
124
17.0k
{
125
126
17.0k
    bin_ctxt_model_t *p_cabac_ctxt_table_t = ps_dec->p_cabac_ctxt_table_t;
127
17.0k
    UWORD8 u1_qp_y = ps_dec->ps_cur_slice->u1_slice_qp;
128
17.0k
    UWORD8 u1_cabac_init_Idc = 0;
129
130
17.0k
    if(I_SLICE != u1_slice_type)
131
8.42k
    {
132
8.42k
        u1_cabac_init_Idc = ps_dec->ps_cur_slice->u1_cabac_init_idc;
133
8.42k
    }
134
135
17.0k
    {
136
        /* MAKING ps_dec->p_ctxt_inc_mb_map a scratch buffer */
137
        /* 0th entry of CtxtIncMbMap will be always be containing default values
138
         for CABAC context representing MB not available */
139
17.0k
        ctxt_inc_mb_info_t *p_DefCtxt = ps_dec->p_ctxt_inc_mb_map - 1;
140
17.0k
        UWORD8 *pu1_temp;
141
17.0k
        WORD8 i;
142
17.0k
        p_DefCtxt->u1_mb_type = CAB_SKIP;
143
144
17.0k
        p_DefCtxt->u1_cbp = 0x0f;
145
17.0k
        p_DefCtxt->u1_intra_chroma_pred_mode = 0;
146
147
17.0k
        p_DefCtxt->u1_yuv_dc_csbp = 0x7;
148
149
17.0k
        p_DefCtxt->u1_transform8x8_ctxt = 0;
150
151
17.0k
        pu1_temp = (UWORD8*)p_DefCtxt->i1_ref_idx;
152
85.3k
        for(i = 0; i < 4; i++, pu1_temp++)
153
68.2k
            (*pu1_temp) = 0;
154
17.0k
        pu1_temp = (UWORD8*)p_DefCtxt->u1_mv;
155
290k
        for(i = 0; i < 16; i++, pu1_temp++)
156
273k
            (*pu1_temp) = 0;
157
17.0k
        ps_dec->ps_def_ctxt_mb_info = p_DefCtxt;
158
17.0k
    }
159
160
17.0k
    if(u1_slice_type == I_SLICE)
161
8.65k
    {
162
8.65k
        u1_cabac_init_Idc = 3;
163
8.65k
        ps_dec->p_mb_type_t = p_cabac_ctxt_table_t + MB_TYPE_I_SLICE;
164
8.65k
    }
165
8.42k
    else if(u1_slice_type == P_SLICE)
166
3.98k
    {
167
3.98k
        ps_dec->p_mb_type_t = p_cabac_ctxt_table_t + MB_TYPE_P_SLICE;
168
3.98k
        ps_dec->p_mb_skip_flag_t = p_cabac_ctxt_table_t + MB_SKIP_FLAG_P_SLICE;
169
3.98k
        ps_dec->p_sub_mb_type_t = p_cabac_ctxt_table_t + SUB_MB_TYPE_P_SLICE;
170
3.98k
    }
171
4.43k
    else if(u1_slice_type == B_SLICE)
172
4.43k
    {
173
4.43k
        ps_dec->p_mb_type_t = p_cabac_ctxt_table_t + MB_TYPE_B_SLICE;
174
4.43k
        ps_dec->p_mb_skip_flag_t = p_cabac_ctxt_table_t + MB_SKIP_FLAG_B_SLICE;
175
4.43k
        ps_dec->p_sub_mb_type_t = p_cabac_ctxt_table_t + SUB_MB_TYPE_B_SLICE;
176
4.43k
    }
177
17.0k
    {
178
17.0k
        bin_ctxt_model_t *p_cabac_ctxt_table_t_tmp = p_cabac_ctxt_table_t;
179
17.0k
        if(ps_dec->ps_cur_slice->u1_field_pic_flag)
180
0
        {
181
0
            p_cabac_ctxt_table_t_tmp += SIGNIFICANT_COEFF_FLAG_FLD;
182
183
0
        }
184
17.0k
        else
185
17.0k
        {
186
17.0k
            p_cabac_ctxt_table_t_tmp += SIGNIFICANT_COEFF_FLAG_FRAME;
187
17.0k
        }
188
17.0k
        {
189
17.0k
            bin_ctxt_model_t * * p_significant_coeff_flag_t =
190
17.0k
                            ps_dec->p_significant_coeff_flag_t;
191
17.0k
            p_significant_coeff_flag_t[0] = p_cabac_ctxt_table_t_tmp
192
17.0k
                            + SIG_COEFF_CTXT_CAT_0_OFFSET;
193
17.0k
            p_significant_coeff_flag_t[1] = p_cabac_ctxt_table_t_tmp
194
17.0k
                            + SIG_COEFF_CTXT_CAT_1_OFFSET;
195
17.0k
            p_significant_coeff_flag_t[2] = p_cabac_ctxt_table_t_tmp
196
17.0k
                            + SIG_COEFF_CTXT_CAT_2_OFFSET;
197
17.0k
            p_significant_coeff_flag_t[3] = p_cabac_ctxt_table_t_tmp
198
17.0k
                            + SIG_COEFF_CTXT_CAT_3_OFFSET;
199
17.0k
            p_significant_coeff_flag_t[4] = p_cabac_ctxt_table_t_tmp
200
17.0k
                            + SIG_COEFF_CTXT_CAT_4_OFFSET;
201
202
17.0k
            p_significant_coeff_flag_t[5] = p_cabac_ctxt_table_t_tmp
203
17.0k
                            + SIG_COEFF_CTXT_CAT_5_OFFSET;
204
205
17.0k
        }
206
17.0k
    }
207
208
17.0k
    memcpy(p_cabac_ctxt_table_t,
209
17.0k
           gau1_ih264d_cabac_ctxt_init_table[u1_cabac_init_Idc][u1_qp_y],
210
17.0k
           NUM_CABAC_CTXTS * sizeof(bin_ctxt_model_t));
211
17.0k
}
212
/*!
213
 **************************************************************************
214
 * \if Function name : ih264d_decode_bin \endif
215
 *
216
 * \brief
217
 *    This function implements decoding process of a decision as defined
218
 *    in 9.3.3.2.2.
219
 *
220
 * \return
221
 *    Returns symbol decoded.
222
 *
223
 * \note
224
 *    It is specified in 9.3.3.2.3.2 that, one of the input to this function
225
 *    is CtxIdx. CtxIdx is used to identify state and MPS of that context
226
 *    (Refer Fig 9.11 - Flowchart for encoding a decision). To suffice that
227
 *    here we pass a pointer bin_ctxt_model_t which contains these values.
228
 *
229
 **************************************************************************
230
 */
231
232
UWORD32 ih264d_decode_bin(UWORD32 u4_ctx_inc,
233
                          bin_ctxt_model_t *ps_src_bin_ctxt,
234
                          dec_bit_stream_t *ps_bitstrm,
235
                          decoding_envirnoment_t *ps_cab_env)
236
237
1.47M
{
238
239
1.47M
    UWORD32 u4_qnt_int_range, u4_code_int_range, u4_code_int_val_ofst,
240
1.47M
                    u4_int_range_lps;
241
242
1.47M
    UWORD32 u4_symbol, u4_mps_state;
243
244
1.47M
    bin_ctxt_model_t *ps_bin_ctxt;
245
246
1.47M
    UWORD32 table_lookup;
247
1.47M
    const UWORD32 *pu4_table = (const UWORD32 *)ps_cab_env->cabac_table;
248
1.47M
    UWORD32 u4_clz;
249
250
1.47M
    ps_bin_ctxt = ps_src_bin_ctxt + u4_ctx_inc;
251
252
1.47M
    u4_code_int_range = ps_cab_env->u4_code_int_range;
253
1.47M
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
254
255
1.47M
    u4_mps_state = (ps_bin_ctxt->u1_mps_state);
256
1.47M
    u4_clz = CLZ(u4_code_int_range);
257
258
1.47M
    u4_qnt_int_range = u4_code_int_range << u4_clz;
259
1.47M
    u4_qnt_int_range = (u4_qnt_int_range >> 29) & 0x3;
260
261
1.47M
    table_lookup = pu4_table[(u4_mps_state << 2) + u4_qnt_int_range];
262
1.47M
    u4_int_range_lps = table_lookup & 0xff;
263
264
1.47M
    u4_int_range_lps = u4_int_range_lps << (23 - u4_clz);
265
1.47M
    u4_code_int_range = u4_code_int_range - u4_int_range_lps;
266
267
1.47M
    u4_symbol = ((u4_mps_state >> 6) & 0x1);
268
269
1.47M
    u4_mps_state = (table_lookup >> 8) & 0x7F;
270
271
1.47M
    CHECK_IF_LPS(u4_code_int_range, u4_code_int_val_ofst, u4_symbol,
272
1.47M
                 u4_int_range_lps, u4_mps_state, table_lookup)
273
274
1.47M
    if(u4_code_int_range < ONE_RIGHT_SHIFTED_BY_8)
275
8.10k
    {
276
8.10k
        UWORD32 *pu4_buffer, u4_offset;
277
278
8.10k
        pu4_buffer = ps_bitstrm->pu4_buffer;
279
8.10k
        u4_offset = ps_bitstrm->u4_ofst;
280
281
8.10k
        RENORM_RANGE_OFFSET(u4_code_int_range, u4_code_int_val_ofst, u4_offset,
282
8.10k
                            pu4_buffer)
283
284
8.10k
        ps_bitstrm->u4_ofst = u4_offset;
285
8.10k
    }
286
287
1.47M
    INC_BIN_COUNT(ps_cab_env)
288
289
1.47M
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
290
1.47M
    ps_cab_env->u4_code_int_range = u4_code_int_range;
291
1.47M
    ps_bin_ctxt->u1_mps_state = u4_mps_state;
292
293
1.47M
    return (u4_symbol);
294
1.47M
}
295
296
/*!
297
 **************************************************************************
298
 * \if Function name : ih264d_decode_terminate \endif
299
 *
300
 * \brief
301
 *    This function implements decoding process of a termination as defined
302
 *    9.3.3.2.2.3 of ISO/IEC14496-10.
303
 *
304
 * \return
305
 *    Returns symbol decoded.
306
 *
307
 * \note
308
 *    This routine is called while decoding "end_of_skice_flag" and of the
309
 *    bin indicating PCM mode in MBType.
310
 *
311
 **************************************************************************
312
 */
313
UWORD8 ih264d_decode_terminate(decoding_envirnoment_t * ps_cab_env,
314
                               dec_bit_stream_t * ps_stream)
315
1.05M
{
316
1.05M
    UWORD32 u4_symbol;
317
1.05M
    UWORD32 u4_code_int_val_ofst, u4_code_int_range;
318
1.05M
    UWORD32 u4_clz;
319
320
1.05M
    u4_code_int_range = ps_cab_env->u4_code_int_range;
321
1.05M
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
322
323
1.05M
    u4_clz = CLZ(u4_code_int_range);
324
1.05M
    u4_code_int_range -= (2 << (23 - u4_clz));
325
326
1.05M
    if(u4_code_int_val_ofst >= u4_code_int_range)
327
1.82k
    {
328
        /* S=1 */
329
1.82k
        u4_symbol = 1;
330
331
1.82k
        {
332
333
            /*the u4_ofst needs to be updated before termination*/
334
1.82k
            ps_stream->u4_ofst += u4_clz;
335
336
1.82k
        }
337
338
1.82k
    }
339
1.04M
    else
340
1.04M
    {
341
        /* S=0 */
342
1.04M
        u4_symbol = 0;
343
344
1.04M
        if(u4_code_int_range < ONE_RIGHT_SHIFTED_BY_8)
345
715
        {
346
715
            UWORD32 *pu4_buffer, u4_offset;
347
348
715
            pu4_buffer = ps_stream->pu4_buffer;
349
715
            u4_offset = ps_stream->u4_ofst;
350
351
715
            RENORM_RANGE_OFFSET(u4_code_int_range, u4_code_int_val_ofst, u4_offset,
352
715
                                pu4_buffer)
353
715
            ps_stream->u4_ofst = u4_offset;
354
715
        }
355
1.04M
    }
356
357
1.05M
    ps_cab_env->u4_code_int_range = u4_code_int_range;
358
1.05M
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
359
360
1.05M
    INC_BIN_COUNT(ps_cab_env)
361
362
1.05M
    return (u4_symbol);
363
1.05M
}
364
365
/*****************************************************************************/
366
/*                                                                           */
367
/*  Function Name : ih264d_decode_bins_tunary                                */
368
/*                                                                           */
369
/*  Description   : This function decodes bins in the case of TUNARY         */
370
/*                  binarization technique.valid_length is assumed  equal to 3 */
371
/*                  and u1_max_bins <= 4 in this functon.                                              */
372
/*  Inputs        : <What inputs does the function take?>                    */
373
/*  Globals       : <Does it use any global variables?>                      */
374
/*  Processing    : <Describe how the function operates - include algorithm  */
375
/*                  description>                                             */
376
/*  Outputs       : <What does the function produce?>                        */
377
/*  Returns       : <What does the function return?>                         */
378
/*                                                                           */
379
/*  Issues        :                                                          */
380
/*                                                                           */
381
/*  Revision History:                                                        */
382
/*                                                                           */
383
/*         DD MM YYYY   Author(s)       Changes (Describe the changes made)  */
384
/*         20 11 2008   SH          Draft                                   */
385
/*                                                                           */
386
/*****************************************************************************/
387
388
UWORD32 ih264d_decode_bins_tunary(UWORD8 u1_max_bins,
389
                                  UWORD32 u4_ctx_inc,
390
                                  bin_ctxt_model_t *ps_src_bin_ctxt,
391
                                  dec_bit_stream_t *ps_bitstrm,
392
                                  decoding_envirnoment_t *ps_cab_env)
393
394
558k
{
395
558k
    UWORD32 u4_value;
396
558k
    UWORD32 u4_symbol;
397
558k
    UWORD8 u4_ctx_Inc;
398
558k
    bin_ctxt_model_t *ps_bin_ctxt;
399
558k
    UWORD32 u4_code_int_range, u4_code_int_val_ofst;
400
558k
    const UWORD32 *pu4_table = (const UWORD32 *)ps_cab_env->cabac_table;
401
402
558k
    u4_value = 0;
403
404
    /*u1_max_bins has to be less than or equal to 4, u1_max_bins <= 4 for  this function*/
405
406
    /*here the valid length is assumed to be equal to 3 ,so the calling function is expected
407
     to duplicate CtxInc if valid lenth is 2 and cmaxbin is greater than2*/
408
558k
    u4_code_int_range = ps_cab_env->u4_code_int_range;
409
558k
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
410
411
558k
    do
412
946k
    {
413
946k
        u4_ctx_Inc = u4_ctx_inc & 0xF;
414
946k
        u4_ctx_inc = u4_ctx_inc >> 4;
415
416
946k
        ps_bin_ctxt = ps_src_bin_ctxt + u4_ctx_Inc;
417
418
946k
        DECODE_ONE_BIN_MACRO(ps_bin_ctxt, u4_code_int_range, u4_code_int_val_ofst,
419
946k
                             pu4_table, ps_bitstrm, u4_symbol)
420
421
946k
        INC_BIN_COUNT(ps_cab_env);INC_DECISION_BINS(ps_cab_env);
422
423
946k
        u4_value++;
424
946k
    }
425
946k
    while((u4_value < u1_max_bins) & (u4_symbol));
426
427
558k
    u4_value = u4_value - 1 + u4_symbol;
428
429
558k
    ps_cab_env->u4_code_int_range = u4_code_int_range;
430
558k
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
431
432
558k
    return (u4_value);
433
434
558k
}
435
436
/*****************************************************************************/
437
/*                                                                           */
438
/*  Function Name : ih264d_decode_bins                                */
439
/*                                                                           */
440
/*  Description   : This function decodes bins in the case of MSB_FIRST_FLC  */
441
/*                  binarization technique.valid_length is always equal max_bins */
442
/*                  for MSB_FIRST_FLC. assumes  u1_max_bins <= 4               */
443
/*  Inputs        : <What inputs does the function take?>                    */
444
/*  Globals       : <Does it use any global variables?>                      */
445
/*  Processing    : <Describe how the function operates - include algorithm  */
446
/*                  description>                                             */
447
/*  Outputs       : <What does the function produce?>                        */
448
/*  Returns       : <What does the function return?>                         */
449
/*                                                                           */
450
/*  Issues        : <List any issues or problems with this function>         */
451
/*                                                                           */
452
/*  Revision History:                                                        */
453
/*                                                                           */
454
/*         DD MM YYYY   Author(s)       Changes (Describe the changes made)  */
455
/*         20 11 2008   SH          Draft                                   */
456
/*                                                                           */
457
/*****************************************************************************/
458
459
UWORD32 ih264d_decode_bins(UWORD8 u1_max_bins,
460
                           UWORD32 u4_ctx_inc,
461
                           bin_ctxt_model_t *ps_src_bin_ctxt,
462
                           dec_bit_stream_t *ps_bitstrm,
463
                           decoding_envirnoment_t *ps_cab_env)
464
465
492k
{
466
492k
    UWORD32 u4_value;
467
492k
    UWORD32 u4_symbol, i;
468
492k
    UWORD32 u4_ctxt_inc;
469
492k
    bin_ctxt_model_t *ps_bin_ctxt;
470
492k
    UWORD32 u4_code_int_range, u4_code_int_val_ofst;
471
492k
    const UWORD32 *pu4_table = (const UWORD32 *)ps_cab_env->cabac_table;
472
473
492k
    i = 0;
474
475
492k
    u4_value = 0;
476
477
    /*u1_max_bins has to be less than or equal to 4, u1_max_bins <= 4 for  this fucntion*/
478
492k
    u4_code_int_range = ps_cab_env->u4_code_int_range;
479
492k
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
480
481
492k
    do
482
1.01M
    {
483
1.01M
        u4_ctxt_inc = u4_ctx_inc & 0xf;
484
1.01M
        u4_ctx_inc = u4_ctx_inc >> 4;
485
486
1.01M
        ps_bin_ctxt = ps_src_bin_ctxt + u4_ctxt_inc;
487
488
1.01M
        DECODE_ONE_BIN_MACRO(ps_bin_ctxt, u4_code_int_range, u4_code_int_val_ofst,
489
1.01M
                             pu4_table, ps_bitstrm, u4_symbol)
490
491
1.01M
        INC_BIN_COUNT(ps_cab_env);INC_DECISION_BINS(ps_cab_env);
492
493
1.01M
        u4_value = (u4_value << 1) | (u4_symbol);
494
495
1.01M
        i++;
496
1.01M
    }
497
1.01M
    while(i < u1_max_bins);
498
499
492k
    ps_cab_env->u4_code_int_range = u4_code_int_range;
500
492k
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
501
502
492k
    return (u4_value);
503
504
492k
}
505
506
/*****************************************************************************/
507
/*                                                                           */
508
/*  Function Name : ih264d_decode_bins_unary                                */
509
/*                                                                           */
510
/*  Description   : This function decodes bins in the case of UNARY         */
511
/*                  binarization technique.here the valid length is taken to 5*/
512
/*                  and cmax is always greater than 9                       */
513
/*  Inputs        : <What inputs does the function take?>                    */
514
/*  Globals       : <Does it use any global variables?>                      */
515
/*  Processing    : <Describe how the function operates - include algorithm  */
516
/*                  description>                                             */
517
/*  Outputs       : <What does the function produce?>                        */
518
/*  Returns       : <What does the function return?>                         */
519
/*                                                                           */
520
/*  Issues        : <List any issues or problems with this function>         */
521
/*                                                                           */
522
/*  Revision History:                                                        */
523
/*                                                                           */
524
/*         DD MM YYYY   Author(s)       Changes (Describe the changes made)  */
525
/*         20 11 2008   SH          Draft                                   */
526
/*                                                                           */
527
/*****************************************************************************/
528
UWORD32 ih264d_decode_bins_unary(UWORD8 u1_max_bins,
529
                                 UWORD32 u4_ctx_inc,
530
                                 bin_ctxt_model_t *ps_src_bin_ctxt,
531
                                 dec_bit_stream_t *ps_bitstrm,
532
                                 decoding_envirnoment_t *ps_cab_env)
533
530k
{
534
530k
    UWORD32 u4_value;
535
530k
    UWORD32 u4_symbol;
536
530k
    bin_ctxt_model_t *ps_bin_ctxt;
537
530k
    UWORD32 u4_ctx_Inc;
538
530k
    UWORD32 u4_code_int_range, u4_code_int_val_ofst;
539
530k
    const UWORD32 *pu4_table = (const UWORD32 *)ps_cab_env->cabac_table;
540
541
    /* in this function the valid length for u4_ctx_inc is always taken to be,so if the
542
     the valid length is lessthan 5 the caller need to duplicate accordingly*/
543
544
    /*u1_max_bins is always greater or equal to 9 we have the check for u1_max_bins only after the 2 loop*/
545
530k
    u4_value = 0;
546
530k
    u4_code_int_range = ps_cab_env->u4_code_int_range;
547
530k
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
548
549
530k
    do
550
810k
    {
551
810k
        u4_ctx_Inc = u4_ctx_inc & 0xf;
552
810k
        u4_ctx_inc = u4_ctx_inc >> 4;
553
554
810k
        ps_bin_ctxt = ps_src_bin_ctxt + u4_ctx_Inc;
555
556
810k
        DECODE_ONE_BIN_MACRO(ps_bin_ctxt, u4_code_int_range, u4_code_int_val_ofst,
557
810k
                             pu4_table, ps_bitstrm, u4_symbol)
558
559
810k
        INC_BIN_COUNT(ps_cab_env);INC_DECISION_BINS(ps_cab_env);
560
561
810k
        u4_value++;
562
563
810k
    }
564
810k
    while(u4_symbol && u4_value < 4);
565
566
530k
    if(u4_symbol && (u4_value < u1_max_bins))
567
4.19k
    {
568
569
4.19k
        u4_ctx_Inc = u4_ctx_inc & 0xf;
570
571
4.19k
        ps_bin_ctxt = ps_src_bin_ctxt + u4_ctx_Inc;
572
573
4.19k
        do
574
26.5k
        {
575
576
26.5k
            DECODE_ONE_BIN_MACRO(ps_bin_ctxt, u4_code_int_range, u4_code_int_val_ofst,
577
26.5k
                                 pu4_table, ps_bitstrm, u4_symbol)
578
579
26.5k
            INC_BIN_COUNT(ps_cab_env);INC_DECISION_BINS(ps_cab_env);
580
581
26.5k
            u4_value++;
582
583
26.5k
        }
584
26.5k
        while(u4_symbol && (u4_value < u1_max_bins));
585
586
4.19k
    }
587
588
530k
    ps_cab_env->u4_code_int_range = u4_code_int_range;
589
530k
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
590
591
530k
    u4_value = u4_value - 1 + u4_symbol;
592
593
530k
    return (u4_value);
594
595
530k
}
596
597
/*****************************************************************************/
598
/*                                                                           */
599
/*  Function Name : ih264d_decode_bypass_bins_unary                                     */
600
/*                                                                           */
601
/*  Description   : This function is used in the case of UNARY coding       */
602
/*                                                                           */
603
/*                                                                           */
604
/*  Inputs        : <What inputs does the function take?>                    */
605
/*  Globals       : <Does it use any global variables?>                      */
606
/*  Processing    : <Describe how the function operates - include algorithm  */
607
/*                  description>                                             */
608
/*  Outputs       : <What does the function produce?>                        */
609
/*  Returns       : <What does the function return?>                         */
610
/*                                                                           */
611
/*  Issues        : <List any issues or problems with this function>         */
612
/*                                                                           */
613
/*  Revision History:                                                        */
614
/*                                                                           */
615
/*         DD MM YYYY   Author(s)       Changes (Describe the changes made)  */
616
/*         13 10 2005   Ittiam          Draft                                */
617
/*                                                                           */
618
/*****************************************************************************/
619
620
UWORD32 ih264d_decode_bypass_bins_unary(decoding_envirnoment_t *ps_cab_env,
621
                                        dec_bit_stream_t *ps_bitstrm)
622
53.2k
{
623
53.2k
    UWORD32 u4_value;
624
53.2k
    UWORD32 u4_bin;
625
53.2k
    UWORD32 u4_code_int_val_ofst, u4_code_int_range;
626
627
53.2k
    UWORD32 u1_max_bins;
628
629
53.2k
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
630
53.2k
    u4_code_int_range = ps_cab_env->u4_code_int_range;
631
632
53.2k
    if(u4_code_int_range < ONE_RIGHT_SHIFTED_BY_9)
633
1.61k
    {
634
1.61k
        UWORD32 *pu4_buffer, u4_offset;
635
636
1.61k
        pu4_buffer = ps_bitstrm->pu4_buffer;
637
1.61k
        u4_offset = ps_bitstrm->u4_ofst;
638
639
1.61k
        RENORM_RANGE_OFFSET(u4_code_int_range, u4_code_int_val_ofst, u4_offset,
640
1.61k
                            pu4_buffer)
641
1.61k
        ps_bitstrm->u4_ofst = u4_offset;
642
1.61k
    }
643
644
    /*as it is called only form mvd*/
645
53.2k
    u1_max_bins = 32;
646
53.2k
    u4_value = 0;
647
648
53.2k
    do
649
109k
    {
650
109k
        u4_value++;
651
652
109k
        u4_code_int_range = u4_code_int_range >> 1;
653
109k
        if(u4_code_int_val_ofst >= u4_code_int_range)
654
56.2k
        {
655
            /* S=1 */
656
56.2k
            u4_bin = 1;
657
56.2k
            u4_code_int_val_ofst -= u4_code_int_range;
658
56.2k
        }
659
53.2k
        else
660
53.2k
        {
661
            /* S=0 */
662
53.2k
            u4_bin = 0;
663
53.2k
        }
664
665
109k
        INC_BIN_COUNT(ps_cab_env);INC_BYPASS_BINS(ps_cab_env);
666
667
109k
        if(u4_code_int_range < ONE_RIGHT_SHIFTED_BY_9)
668
4.90k
        {
669
4.90k
            UWORD32 *pu4_buffer, u4_offset;
670
671
4.90k
            pu4_buffer = ps_bitstrm->pu4_buffer;
672
4.90k
            u4_offset = ps_bitstrm->u4_ofst;
673
674
4.90k
            RENORM_RANGE_OFFSET(u4_code_int_range, u4_code_int_val_ofst, u4_offset,
675
4.90k
                                pu4_buffer)
676
677
4.90k
            ps_bitstrm->u4_ofst = u4_offset;
678
4.90k
        }
679
680
109k
    }
681
109k
    while(u4_bin && (u4_value < u1_max_bins));
682
683
53.2k
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
684
53.2k
    ps_cab_env->u4_code_int_range = u4_code_int_range;
685
53.2k
    u4_value = (u4_value - 1 + u4_bin);
686
687
53.2k
return (u4_value);
688
53.2k
}
689
690
/*****************************************************************************/
691
/*                                                                           */
692
/*  Function Name : ih264d_decode_bypass_bins                                     */
693
/*                                                                           */
694
/*  Description   : This function is used in the case of FLC coding       */
695
/*                                                                           */
696
/*                                                                           */
697
/*  Inputs        : <What inputs does the function take?>                    */
698
/*  Globals       : <Does it use any global variables?>                      */
699
/*  Processing    : <Describe how the function operates - include algorithm  */
700
/*                  description>                                             */
701
/*  Outputs       : <What does the function produce?>                        */
702
/*  Returns       : <What does the function return?>                         */
703
/*                                                                           */
704
/*  Issues        : <List any issues or problems with this function>         */
705
/*                                                                           */
706
/*  Revision History:                                                        */
707
/*                                                                           */
708
/*         DD MM YYYY   Author(s)       Changes (Describe the changes made)  */
709
/*         13 10 2005   Ittiam          Draft                                */
710
/*                                                                           */
711
/*****************************************************************************/
712
713
UWORD32 ih264d_decode_bypass_bins(decoding_envirnoment_t *ps_cab_env,
714
                                  UWORD8 u1_max_bins,
715
                                  dec_bit_stream_t *ps_bitstrm)
716
53.2k
{
717
53.2k
    UWORD32 u4_bins;
718
53.2k
    UWORD32 u4_bin;
719
53.2k
    UWORD32 u4_code_int_val_ofst, u4_code_int_range;
720
721
53.2k
    u4_bins = 0;
722
53.2k
    u4_code_int_val_ofst = ps_cab_env->u4_code_int_val_ofst;
723
53.2k
    u4_code_int_range = ps_cab_env->u4_code_int_range;
724
725
53.2k
    if(u4_code_int_range < ONE_RIGHT_SHIFTED_BY_9)
726
0
    {
727
0
        UWORD32 *pu4_buffer, u4_offset;
728
729
0
        pu4_buffer = ps_bitstrm->pu4_buffer;
730
0
        u4_offset = ps_bitstrm->u4_ofst;
731
732
0
        RENORM_RANGE_OFFSET(u4_code_int_range, u4_code_int_val_ofst, u4_offset,
733
0
                            pu4_buffer)
734
0
        ps_bitstrm->u4_ofst = u4_offset;
735
0
    }
736
737
53.2k
    do
738
216k
    {
739
740
216k
        u4_code_int_range = u4_code_int_range >> 1;
741
742
216k
        if(u4_code_int_val_ofst >= u4_code_int_range)
743
84.9k
        {
744
            /* S=1 */
745
84.9k
            u4_bin = 1;
746
84.9k
            u4_code_int_val_ofst -= u4_code_int_range;
747
84.9k
        }
748
131k
        else
749
131k
        {
750
            /* S=0 */
751
131k
            u4_bin = 0;
752
131k
        }
753
754
216k
        INC_BIN_COUNT(ps_cab_env);INC_BYPASS_BINS(ps_cab_env);
755
756
216k
        u4_bins = ((u4_bins << 1) | u4_bin);
757
216k
        u1_max_bins--;
758
759
216k
        if(u4_code_int_range < ONE_RIGHT_SHIFTED_BY_9)
760
7.76k
        {
761
7.76k
            UWORD32 *pu4_buffer, u4_offset;
762
763
7.76k
            pu4_buffer = ps_bitstrm->pu4_buffer;
764
7.76k
            u4_offset = ps_bitstrm->u4_ofst;
765
766
7.76k
            RENORM_RANGE_OFFSET(u4_code_int_range, u4_code_int_val_ofst, u4_offset,
767
7.76k
                                pu4_buffer)
768
7.76k
            ps_bitstrm->u4_ofst = u4_offset;
769
7.76k
        }
770
771
216k
    }
772
216k
    while(u1_max_bins);
773
774
53.2k
    ps_cab_env->u4_code_int_val_ofst = u4_code_int_val_ofst;
775
53.2k
    ps_cab_env->u4_code_int_range = u4_code_int_range;
776
777
53.2k
    return (u4_bins);
778
53.2k
}
779