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1 : suxen_drol 942 /******************************************************************************
2 :     *
3 : edgomez 1054 * XviD Bit Rate Controller Library
4 :     * - VBR 2 pass bitrate controller implementation -
5 : suxen_drol 942 *
6 : edgomez 1054 * Copyright (C) 2002 Foxer <email?>
7 :     * 2002 Dirk Knop <dknop@gwdg.de>
8 :     * 2002-2003 Edouard Gomez <ed.gomez@free.fr>
9 :     * 2003 Pete Ross <pross@xvid.org>
10 : suxen_drol 942 *
11 : edgomez 1054 * This curve treatment algorithm is the one originally implemented by Foxer
12 :     * and tuned by Dirk Knop for the XviD vfw frontend.
13 : suxen_drol 942 *
14 : edgomez 1054 * This program is free software; you can redistribute it and/or modify
15 :     * it under the terms of the GNU General Public License as published by
16 :     * the Free Software Foundation; either version 2 of the License, or
17 :     * (at your option) any later version.
18 : suxen_drol 942 *
19 : edgomez 1054 * This program is distributed in the hope that it will be useful,
20 :     * but WITHOUT ANY WARRANTY; without even the implied warranty of
21 :     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 :     * GNU General Public License for more details.
23 : suxen_drol 942 *
24 : edgomez 1054 * You should have received a copy of the GNU General Public License
25 :     * along with this program; if not, write to the Free Software
26 :     * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
27 : suxen_drol 942 *
28 : syskin 1293 * $Id: plugin_2pass2.c,v 1.1.2.32 2003-12-21 12:41:48 syskin Exp $
29 : suxen_drol 942 *
30 :     *****************************************************************************/
31 :    
32 : edgomez 1267 #define BQUANT_PRESCALE
33 : edgomez 1202 #undef COMPENSATE_FORMULA
34 :    
35 : syskin 1293 /* forces second pass not to be bigger than first */
36 :     #undef PASS_SMALLER
37 :    
38 : suxen_drol 942 #include <stdio.h>
39 :     #include <math.h>
40 : edgomez 1040 #include <limits.h>
41 : suxen_drol 942
42 : edgomez 1042 #include "../xvid.h"
43 :     #include "../image/image.h"
44 :    
45 :     /*****************************************************************************
46 : edgomez 1267 * Some default settings
47 : edgomez 1042 ****************************************************************************/
48 :    
49 :     #define DEFAULT_KEYFRAME_BOOST 0
50 : edgomez 1202 #define DEFAULT_OVERFLOW_CONTROL_STRENGTH 10
51 : edgomez 1042 #define DEFAULT_CURVE_COMPRESSION_HIGH 0
52 :     #define DEFAULT_CURVE_COMPRESSION_LOW 0
53 : edgomez 1267 #define DEFAULT_MAX_OVERFLOW_IMPROVEMENT 10
54 :     #define DEFAULT_MAX_OVERFLOW_DEGRADATION 10
55 : suxen_drol 942
56 : edgomez 1042 /* Keyframe settings */
57 :     #define DEFAULT_KFREDUCTION 20
58 : edgomez 1242 #define DEFAULT_KFTHRESHOLD 1
59 : edgomez 1042
60 :     /*****************************************************************************
61 : edgomez 1267 * Some default constants (can be tuned)
62 :     ****************************************************************************/
63 :    
64 :     /* Specify the invariant part of the headers bits (header+MV)
65 :     * as hlength/cst */
66 :     #define INVARIANT_HEADER_PART_IVOP 1 /* factor 1.0f */
67 :     #define INVARIANT_HEADER_PART_PVOP 2 /* factor 0.5f */
68 :     #define INVARIANT_HEADER_PART_BVOP 8 /* factor 0.125f */
69 :    
70 :     /*****************************************************************************
71 : edgomez 1042 * Structures
72 :     ****************************************************************************/
73 :    
74 :     /* Statistics */
75 : suxen_drol 942 typedef struct {
76 : edgomez 1064 int type; /* first pass type */
77 :     int quant; /* first pass quant */
78 : edgomez 1267 int blks[3]; /* k,m,y blks */
79 : edgomez 1064 int length; /* first pass length */
80 : edgomez 1267 int invariant; /* what we assume as being invariant between the two passes, it's a sub part of header + MV bits */
81 : edgomez 1064 int scaled_length; /* scaled length */
82 : edgomez 1202 int desired_length; /* desired length; calculated during encoding */
83 :     int error;
84 : suxen_drol 1030
85 : edgomez 1064 int zone_mode; /* XVID_ZONE_xxx */
86 :     double weight;
87 : edgomez 1202 } twopass_stat_t;
88 : suxen_drol 942
89 : edgomez 1042 /* Context struct */
90 : suxen_drol 942 typedef struct
91 :     {
92 : edgomez 1064 xvid_plugin_2pass2_t param;
93 : suxen_drol 942
94 : edgomez 1202 /*----------------------------------
95 :     * constant statistical data
96 :     *--------------------------------*/
97 :    
98 :     /* Number of frames of the sequence */
99 : suxen_drol 977 int num_frames;
100 : edgomez 1202
101 :     /* Number of Intra frames of the sequence */
102 : edgomez 1048 int num_keyframes;
103 : suxen_drol 1030
104 : edgomez 1202 /* Target filesize to reach */
105 :     uint64_t target;
106 : suxen_drol 1030
107 : edgomez 1202 /* Count of each frame types */
108 :     int count[3];
109 : suxen_drol 1030
110 : edgomez 1202 /* Total length of each frame types (1st pass) */
111 :     uint64_t tot_length[3];
112 : edgomez 1267 uint64_t tot_invariant[3];
113 : suxen_drol 942
114 : edgomez 1202 /* Average length of each frame types (used first for 1st pass data and
115 :     * then for scaled averages */
116 :     double avg_length[3];
117 : suxen_drol 942
118 : edgomez 1202 /* Minimum frame length allowed for each frame type */
119 :     int min_length[3];
120 : suxen_drol 1030
121 : edgomez 1202 /* Total bytes per frame type once the curve has been scaled
122 :     * NB: advanced parameters do not change this value. This field
123 :     * represents the total scaled w/o any advanced settings */
124 :     uint64_t tot_scaled_length[3];
125 :    
126 :     /* Maximum observed frame size observed during the first pass, the RC
127 :     * will try tp force all frame sizes in the second pass to be under that
128 :     * limit */
129 :     int max_length;
130 :    
131 :     /*----------------------------------
132 :     * Zones statistical data
133 :     *
134 :     * ToDo: Fix zones, current
135 :     * implementation is buggy
136 :     *--------------------------------*/
137 :    
138 :     /* Average weight of the zones */
139 :     double avg_weight;
140 :    
141 :     /* Total length used by XVID_ZONE_QUANT zones */
142 : edgomez 1267 uint64_t tot_quant;
143 :     uint64_t tot_quant_invariant;
144 : edgomez 1202
145 :     /*----------------------------------
146 :     * Advanced settings helper ratios
147 :     *--------------------------------*/
148 :    
149 :     /* This the ratio that has to be applied to all p/b frames in order
150 :     * to reserve/retrieve bits for/from keyframe boosting and consecutive
151 :     * keyframe penalty */
152 :     double pb_iboost_tax_ratio;
153 :    
154 :     /* This the ratio to apply to all b/p frames in order to respect the
155 :     * assymetric curve compression while respecting a target filesize
156 :     * NB: The assymetric delta gain has to be computed before this ratio
157 :     * is applied, and then the delta is added to the scaled size */
158 :     double assymetric_tax_ratio;
159 :    
160 :     /*----------------------------------
161 :     * Data from the stats file kept
162 :     * into RAM for easy access
163 :     *--------------------------------*/
164 :    
165 :     /* Array of keyframe locations
166 :     * eg: rc->keyframe_locations[100] returns the frame number of the 100th
167 :     * keyframe */
168 :     int *keyframe_locations;
169 :    
170 :     /* Index of the last keyframe used in the keyframe_location */
171 :     int KF_idx;
172 :    
173 :     /* Array of all 1st pass data file -- see the twopass_stat_t structure
174 :     * definition for more details */
175 :     twopass_stat_t * stats;
176 :    
177 :     /*----------------------------------
178 :     * Histerysis helpers
179 :     *--------------------------------*/
180 :    
181 :     /* This field holds the int2float conversion errors of each quant per
182 :     * frame type, this allow the RC to keep track of rouding error and thus
183 :     * increase or decrease the chosen quant according to this residue */
184 : edgomez 1048 double quant_error[3][32];
185 : edgomez 1202
186 :     /* This fields stores the count of each quant usage per frame type
187 :     * No real role but for debugging */
188 :     int quant_count[3][32];
189 :    
190 :     /* Last valid quantizer used per frame type, it allows quantizer
191 :     * increament/decreament limitation in order to avoid big image quality
192 :     * "jumps" */
193 : edgomez 1048 int last_quant[3];
194 :    
195 : edgomez 1202 /*----------------------------------
196 :     * Overflow control
197 :     *--------------------------------*/
198 : edgomez 1048
199 : edgomez 1202 /* Current overflow that has to be distributed to p/b frames */
200 :     double overflow;
201 :    
202 :     /* Total overflow for keyframes -- not distributed directly */
203 :     double KFoverflow;
204 :    
205 :     /* Amount of keyframe overflow to introduce to the global p/b frame
206 :     * overflow counter at each encoded frame */
207 :     double KFoverflow_partial;
208 :    
209 :     /* Unknown ???
210 :     * ToDo: description */
211 : edgomez 1048 double fq_error;
212 : edgomez 1202
213 :     /*----------------------------------
214 :     * Debug
215 :     *--------------------------------*/
216 :     double desired_total;
217 :     double real_total;
218 : suxen_drol 942 } rc_2pass2_t;
219 :    
220 :    
221 : edgomez 1042 /*****************************************************************************
222 :     * Sub plugin functions prototypes
223 :     ****************************************************************************/
224 : suxen_drol 942
225 : edgomez 1042 static int rc_2pass2_create(xvid_plg_create_t * create, rc_2pass2_t ** handle);
226 :     static int rc_2pass2_before(rc_2pass2_t * rc, xvid_plg_data_t * data);
227 :     static int rc_2pass2_after(rc_2pass2_t * rc, xvid_plg_data_t * data);
228 :     static int rc_2pass2_destroy(rc_2pass2_t * rc, xvid_plg_destroy_t * destroy);
229 : suxen_drol 942
230 : edgomez 1042 /*****************************************************************************
231 :     * Plugin definition
232 :     ****************************************************************************/
233 : suxen_drol 942
234 : edgomez 1042 int
235 :     xvid_plugin_2pass2(void * handle, int opt, void * param1, void * param2)
236 : suxen_drol 942 {
237 : edgomez 1064 switch(opt) {
238 :     case XVID_PLG_INFO :
239 : edgomez 1219 case XVID_PLG_FRAME :
240 : edgomez 1064 return 0;
241 : suxen_drol 942
242 : edgomez 1064 case XVID_PLG_CREATE :
243 :     return rc_2pass2_create((xvid_plg_create_t*)param1, param2);
244 : suxen_drol 942
245 : edgomez 1064 case XVID_PLG_DESTROY :
246 :     return rc_2pass2_destroy((rc_2pass2_t*)handle, (xvid_plg_destroy_t*)param1);
247 : suxen_drol 942
248 : edgomez 1064 case XVID_PLG_BEFORE :
249 :     return rc_2pass2_before((rc_2pass2_t*)handle, (xvid_plg_data_t*)param1);
250 : suxen_drol 942
251 : edgomez 1064 case XVID_PLG_AFTER :
252 :     return rc_2pass2_after((rc_2pass2_t*)handle, (xvid_plg_data_t*)param1);
253 :     }
254 : edgomez 1037
255 : edgomez 1064 return XVID_ERR_FAIL;
256 : suxen_drol 977 }
257 :    
258 : edgomez 1042 /*****************************************************************************
259 :     * Sub plugin functions definitions
260 :     ****************************************************************************/
261 : suxen_drol 977
262 : edgomez 1042 /* First a few local helping function prototypes */
263 : edgomez 1202 static int statsfile_count_frames(rc_2pass2_t * rc, char * filename);
264 :     static int statsfile_load(rc_2pass2_t *rc, char * filename);
265 : edgomez 1042 static void zone_process(rc_2pass2_t *rc, const xvid_plg_create_t * create);
266 : edgomez 1202 static void first_pass_stats_prepare_data(rc_2pass2_t * rc);
267 :     static void first_pass_scale_curve_internal(rc_2pass2_t *rc);
268 :     static void scaled_curve_apply_advanced_parameters(rc_2pass2_t * rc);
269 :     #if 0
270 :     static void stats_print(rc_2pass2_t * rc);
271 :     #endif
272 : suxen_drol 977
273 : edgomez 1042 /*----------------------------------------------------------------------------
274 :     *--------------------------------------------------------------------------*/
275 : suxen_drol 942
276 : edgomez 1042 static int
277 :     rc_2pass2_create(xvid_plg_create_t * create, rc_2pass2_t **handle)
278 : suxen_drol 942 {
279 : edgomez 1064 xvid_plugin_2pass2_t * param = (xvid_plugin_2pass2_t *)create->param;
280 :     rc_2pass2_t * rc;
281 :     int i;
282 : suxen_drol 942
283 : edgomez 1064 rc = malloc(sizeof(rc_2pass2_t));
284 : edgomez 1161 if (rc == NULL)
285 : edgomez 1064 return XVID_ERR_MEMORY;
286 : suxen_drol 942
287 : edgomez 1064 rc->param = *param;
288 : suxen_drol 942
289 : edgomez 1202 /* Initialize all defaults */
290 : edgomez 1042 #define _INIT(a, b) if((a) <= 0) (a) = (b)
291 : edgomez 1064 /* Let's set our defaults if needed */
292 : edgomez 1042 _INIT(rc->param.keyframe_boost, DEFAULT_KEYFRAME_BOOST);
293 : edgomez 1202 _INIT(rc->param.overflow_control_strength, DEFAULT_OVERFLOW_CONTROL_STRENGTH);
294 : edgomez 1064 _INIT(rc->param.curve_compression_high, DEFAULT_CURVE_COMPRESSION_HIGH);
295 :     _INIT(rc->param.curve_compression_low, DEFAULT_CURVE_COMPRESSION_LOW);
296 :     _INIT(rc->param.max_overflow_improvement, DEFAULT_MAX_OVERFLOW_IMPROVEMENT);
297 :     _INIT(rc->param.max_overflow_degradation, DEFAULT_MAX_OVERFLOW_DEGRADATION);
298 : suxen_drol 942
299 : edgomez 1064 /* Keyframe settings */
300 :     _INIT(rc->param.kfreduction, DEFAULT_KFREDUCTION);
301 : edgomez 1242 _INIT(rc->param.kfthreshold, DEFAULT_KFTHRESHOLD);
302 : edgomez 1042 #undef _INIT
303 : suxen_drol 942
304 : edgomez 1048 /* Initialize some stuff to zero */
305 :     for(i=0; i<3; i++) {
306 :     int j;
307 : edgomez 1202 for (j=0; j<32; j++) {
308 : edgomez 1048 rc->quant_error[i][j] = 0;
309 : edgomez 1202 rc->quant_count[i][j] = 0;
310 :     }
311 : edgomez 1048 }
312 :    
313 : edgomez 1202 for (i=0; i<3; i++) rc->last_quant[i] = 0;
314 : edgomez 1048
315 :     rc->fq_error = 0;
316 :    
317 : edgomez 1202 /* Count frames (and intra frames) in the stats file, store the result into
318 :     * the rc structure */
319 :     if (statsfile_count_frames(rc, param->filename) == -1) {
320 :     DPRINTF(XVID_DEBUG_RC,"[xvid rc] -- ERROR: fopen %s failed\n", param->filename);
321 : edgomez 1048 free(rc);
322 : edgomez 1202 return(XVID_ERR_FAIL);
323 : edgomez 1048 }
324 : suxen_drol 942
325 : edgomez 1064 /* Allocate the stats' memory */
326 : edgomez 1202 if ((rc->stats = malloc(rc->num_frames * sizeof(twopass_stat_t))) == NULL) {
327 : edgomez 1064 free(rc);
328 : edgomez 1202 return(XVID_ERR_MEMORY);
329 : edgomez 1064 }
330 : suxen_drol 942
331 : edgomez 1202 /* Allocate keyframes location's memory
332 :     * PS: see comment in pre_process0 for the +1 location requirement */
333 : edgomez 1048 rc->keyframe_locations = malloc((rc->num_keyframes + 1) * sizeof(int));
334 :     if (rc->keyframe_locations == NULL) {
335 :     free(rc->stats);
336 :     free(rc);
337 : edgomez 1202 return(XVID_ERR_MEMORY);
338 : edgomez 1048 }
339 : suxen_drol 942
340 : edgomez 1202 /* Load the first pass stats */
341 :     if (statsfile_load(rc, param->filename) == -1) {
342 :     DPRINTF(XVID_DEBUG_RC,"[xvid rc] -- ERROR: fopen %s failed\n", param->filename);
343 : edgomez 1048 free(rc->keyframe_locations);
344 :     free(rc->stats);
345 :     free(rc);
346 :     return XVID_ERR_FAIL;
347 :     }
348 : suxen_drol 942
349 : edgomez 1048 /* Compute the target filesize */
350 : edgomez 1064 if (rc->param.bitrate<0) {
351 :     /* if negative, bitrate equals the target (in kbytes) */
352 : edgomez 1246 rc->target = ((uint64_t)(-rc->param.bitrate)) * 1024;
353 : edgomez 1064 } else if (rc->num_frames < create->fbase/create->fincr) {
354 : edgomez 1048 /* Source sequence is less than 1s long, we do as if it was 1s long */
355 :     rc->target = rc->param.bitrate / 8;
356 : edgomez 1042 } else {
357 : edgomez 1048 /* Target filesize = bitrate/8 * numframes / framerate */
358 : edgomez 1161 rc->target =
359 : edgomez 1048 ((uint64_t)rc->param.bitrate * (uint64_t)rc->num_frames * \
360 :     (uint64_t)create->fincr) / \
361 : edgomez 1040 ((uint64_t)create->fbase * 8);
362 : suxen_drol 977 }
363 : suxen_drol 1030
364 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Frame rate: %d/%d (%ffps)\n",
365 : edgomez 1048 create->fbase, create->fincr,
366 :     (double)create->fbase/(double)create->fincr);
367 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Number of frames: %d\n", rc->num_frames);
368 :     if(rc->param.bitrate>=0)
369 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Target bitrate: %ld\n", rc->param.bitrate);
370 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Target filesize: %lld\n", rc->target);
371 : suxen_drol 1032
372 : edgomez 1048 /* Compensate the average frame overhead caused by the container */
373 : edgomez 1041 rc->target -= rc->num_frames*rc->param.container_frame_overhead;
374 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Container Frame overhead: %d\n", rc->param.container_frame_overhead);
375 :     if(rc->param.container_frame_overhead)
376 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- New target filesize after container compensation: %lld\n", rc->target);
377 : suxen_drol 977
378 : edgomez 1202 /* Gathers some information about first pass stats:
379 : edgomez 1048 * - finds the minimum frame length for each frame type during 1st pass.
380 :     * rc->min_size[]
381 :     * - determines the maximum frame length observed (no frame type distinction).
382 :     * rc->max_size
383 :     * - count how many times each frame type has been used.
384 :     * rc->count[]
385 :     * - total bytes used per frame type
386 : edgomez 1267 * rc->tot_length[]
387 :     * - total bytes considered invariant between the 2 passes
388 : edgomez 1048 * - store keyframe location
389 :     * rc->keyframe_locations[]
390 :     */
391 : edgomez 1202 first_pass_stats_prepare_data(rc);
392 : edgomez 1036
393 : edgomez 1202 /* When bitrate is not given it means it has been scaled by an external
394 :     * application */
395 : suxen_drol 977 if (rc->param.bitrate) {
396 : edgomez 1267 /* Apply zone settings
397 :     * - set rc->tot_quant which represents the total num of bytes spent in
398 :     * fixed quant zones
399 :     * - set rc->tot_quant_invariant which represents the total num of bytes spent
400 :     * in fixed quant zones for headers */
401 : edgomez 1048 zone_process(rc, create);
402 : edgomez 1202 /* Perform internal curve scaling */
403 :     first_pass_scale_curve_internal(rc);
404 : edgomez 1048 } else {
405 :     /* External scaling -- zones are ignored */
406 :     for (i=0;i<rc->num_frames;i++) {
407 :     rc->stats[i].zone_mode = XVID_ZONE_WEIGHT;
408 :     rc->stats[i].weight = 1.0;
409 :     }
410 :     rc->avg_weight = 1.0;
411 :     rc->tot_quant = 0;
412 :     }
413 :    
414 : edgomez 1202 /* Apply advanced curve options, and compute some parameters in order to
415 :     * shape the curve in the BEFORE/AFTER pair of functions */
416 :     scaled_curve_apply_advanced_parameters(rc);
417 : suxen_drol 1030
418 : edgomez 1048 *handle = rc;
419 : suxen_drol 942 return(0);
420 :     }
421 :    
422 : edgomez 1042 /*----------------------------------------------------------------------------
423 :     *--------------------------------------------------------------------------*/
424 : suxen_drol 942
425 : edgomez 1042 static int
426 :     rc_2pass2_destroy(rc_2pass2_t * rc, xvid_plg_destroy_t * destroy)
427 : suxen_drol 942 {
428 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- target_total:%lld desired_total:%.2f (%.2f%%) actual_total:%.2f (%.2f%%)\n",
429 :     rc->target,
430 :     rc->desired_total,
431 :     100*rc->desired_total/(double)rc->target,
432 :     rc->real_total,
433 :     100*rc->real_total/(double)rc->target);
434 :    
435 : edgomez 1064 free(rc->keyframe_locations);
436 :     free(rc->stats);
437 : suxen_drol 942 free(rc);
438 :     return(0);
439 :     }
440 :    
441 : edgomez 1042 /*----------------------------------------------------------------------------
442 :     *--------------------------------------------------------------------------*/
443 : suxen_drol 942
444 : edgomez 1042 static int
445 :     rc_2pass2_before(rc_2pass2_t * rc, xvid_plg_data_t * data)
446 : suxen_drol 942 {
447 : edgomez 1202 twopass_stat_t * s = &rc->stats[data->frame_num];
448 : edgomez 1048 double dbytes;
449 :     double scaled_quant;
450 : edgomez 1202 double overflow;
451 : edgomez 1048 int capped_to_max_framesize = 0;
452 : suxen_drol 942
453 : edgomez 1202 /* This function is quite long but easy to understand. In order to simplify
454 :     * the code path (a bit), we treat 3 cases that can return immediatly. */
455 : suxen_drol 942
456 : edgomez 1037 /* First case: Another plugin has already set a quantizer */
457 : edgomez 1064 if (data->quant > 0)
458 : edgomez 1037 return(0);
459 : suxen_drol 942
460 : syskin 1247 /* Second case: insufficent stats data */
461 :     if (data->frame_num >= rc->num_frames) {
462 :     DPRINTF(XVID_DEBUG_RC,"[xvid rc] -- stats file too short (now processing frame %d)",
463 :     data->frame_num);
464 :     return(0);
465 :     }
466 :    
467 :     /* Third case: We are in a Quant zone */
468 : edgomez 1037 if (s->zone_mode == XVID_ZONE_QUANT) {
469 :     rc->fq_error += s->weight;
470 :     data->quant = (int)rc->fq_error;
471 :     rc->fq_error -= data->quant;
472 : edgomez 1064
473 : edgomez 1037 s->desired_length = s->length;
474 : suxen_drol 1032
475 : edgomez 1037 return(0);
476 :     }
477 : suxen_drol 977
478 : suxen_drol 942
479 : edgomez 1202 /*************************************************************************/
480 :     /*************************************************************************/
481 :     /*************************************************************************/
482 : suxen_drol 942
483 : edgomez 1202 /*-------------------------------------------------------------------------
484 :     * Frame bit allocation first part
485 :     *
486 :     * First steps apply user settings, just like it is done in the theoritical
487 :     * scaled_curve_apply_advanced_parameters
488 :     *-----------------------------------------------------------------------*/
489 : suxen_drol 942
490 : edgomez 1202 /* Set desired to what we are wanting to obtain for this frame */
491 :     dbytes = (double)s->scaled_length;
492 : suxen_drol 942
493 : edgomez 1202 /* IFrame user settings*/
494 :     if (s->type == XVID_TYPE_IVOP) {
495 :     /* Keyframe boosting -- All keyframes benefit from it */
496 :     dbytes += dbytes*rc->param.keyframe_boost / 100;
497 : suxen_drol 942
498 : edgomez 1242 #if 0 /* ToDo: decide how to apply kfthresholding */
499 :     #endif
500 : edgomez 1202 } else {
501 : suxen_drol 942
502 : edgomez 1202 /* P/S/B frames must reserve some bits for iframe boosting */
503 :     dbytes *= rc->pb_iboost_tax_ratio;
504 : suxen_drol 942
505 : edgomez 1202 /* Apply assymetric curve compression */
506 :     if (rc->param.curve_compression_high || rc->param.curve_compression_low) {
507 :     double assymetric_delta;
508 : suxen_drol 942
509 : edgomez 1202 /* Compute the assymetric delta, this is computed before applying
510 :     * the tax, as done in the pre_process function */
511 :     if (dbytes > rc->avg_length[s->type-1])
512 :     assymetric_delta = (rc->avg_length[s->type-1] - dbytes) * rc->param.curve_compression_high / 100.0;
513 :     else
514 :     assymetric_delta = (rc->avg_length[s->type-1] - dbytes) * rc->param.curve_compression_low / 100.0;
515 : suxen_drol 942
516 : edgomez 1202 /* Now we must apply the assymetric tax, else our curve compression
517 :     * would not give a theoritical target size equal to what it is
518 :     * expected */
519 :     dbytes *= rc->assymetric_tax_ratio;
520 :    
521 :     /* Now we can add the assymetric delta */
522 :     dbytes += assymetric_delta;
523 : edgomez 1037 }
524 :     }
525 : suxen_drol 942
526 : edgomez 1202 /* That is what we would like to have -- Don't put that chunk after
527 :     * overflow control, otherwise, overflow is counted twice and you obtain
528 :     * half sized bitrate sequences */
529 :     s->desired_length = (int)dbytes;
530 :     rc->desired_total += dbytes;
531 : suxen_drol 942
532 : edgomez 1202 /*------------------------------------------------------------------------
533 :     * Frame bit allocation: overflow control part.
534 :     *
535 :     * Unlike the theoritical scaled_curve_apply_advanced_parameters, here
536 :     * it's real encoding and we need to make sure we don't go so far from
537 :     * what is our ideal scaled curve.
538 :     *-----------------------------------------------------------------------*/
539 : edgomez 1048
540 : edgomez 1202 /* Compute the overflow we should compensate */
541 : syskin 1293 if (s->type != XVID_TYPE_IVOP || rc->overflow > 0) {
542 : edgomez 1202 double frametype_factor;
543 :     double framesize_factor;
544 : suxen_drol 942
545 : edgomez 1202 /* Take only the desired part of overflow */
546 :     overflow = rc->overflow;
547 : edgomez 1064
548 : edgomez 1202 /* Factor that will take care to decrease the overflow applied
549 :     * according to the importance of this frame type in term of
550 :     * overall size */
551 :     frametype_factor = rc->count[XVID_TYPE_IVOP-1]*rc->avg_length[XVID_TYPE_IVOP-1];
552 :     frametype_factor += rc->count[XVID_TYPE_PVOP-1]*rc->avg_length[XVID_TYPE_PVOP-1];
553 :     frametype_factor += rc->count[XVID_TYPE_BVOP-1]*rc->avg_length[XVID_TYPE_BVOP-1];
554 :     frametype_factor /= rc->count[s->type-1]*rc->avg_length[s->type-1];
555 :     frametype_factor = 1/frametype_factor;
556 : suxen_drol 942
557 : edgomez 1202 /* Factor that will take care not to compensate too much for this frame
558 :     * size */
559 :     framesize_factor = dbytes;
560 :     framesize_factor /= rc->avg_length[s->type-1];
561 : suxen_drol 942
562 : edgomez 1202 /* Treat only the overflow part concerned by this frame type and size */
563 :     overflow *= frametype_factor;
564 :     #if 0
565 :     /* Leave this one alone, as it impacts badly on quality */
566 :     overflow *= framesize_factor;
567 :     #endif
568 : suxen_drol 942
569 : edgomez 1202 /* Apply the overflow strength imposed by the user */
570 :     overflow *= (rc->param.overflow_control_strength/100.0f);
571 :     } else {
572 : syskin 1293 /* no negative overflow applied in IFrames because:
573 : edgomez 1202 * - their role is important as they're references for P/BFrames.
574 :     * - there aren't much in typical sequences, so if an IFrame overflows too
575 :     * much, this overflow may impact the next IFrame too much and generate
576 :     * a sequence of poor quality frames */
577 :     overflow = 0;
578 : edgomez 1037 }
579 : suxen_drol 942
580 : edgomez 1202 /* Make sure we are not trying to compensate more overflow than we even have */
581 :     if (fabs(overflow) > fabs(rc->overflow))
582 : edgomez 1037 overflow = rc->overflow;
583 : suxen_drol 942
584 : edgomez 1202 /* Make sure the overflow doesn't make the frame size to get out of the range
585 :     * [-max_degradation..+max_improvment] */
586 :     if (overflow > dbytes*rc->param.max_overflow_improvement / 100) {
587 :     if(overflow <= dbytes)
588 :     dbytes += dbytes * rc->param.max_overflow_improvement / 100;
589 :     else
590 :     dbytes += overflow * rc->param.max_overflow_improvement / 100;
591 :     } else if (overflow < - dbytes * rc->param.max_overflow_degradation / 100) {
592 :     dbytes -= dbytes * rc->param.max_overflow_degradation / 100;
593 : edgomez 1037 } else {
594 : edgomez 1202 dbytes += overflow;
595 : edgomez 1037 }
596 : suxen_drol 942
597 : edgomez 1202 /*-------------------------------------------------------------------------
598 :     * Frame bit allocation last part:
599 :     *
600 :     * Cap frame length so we don't reach neither bigger frame sizes than first
601 :     * pass nor smaller than the allowed minimum.
602 :     *-----------------------------------------------------------------------*/
603 :    
604 : syskin 1293 #ifdef PASS_SMALLER
605 : edgomez 1202 if (dbytes > s->length) {
606 :     dbytes = s->length;
607 : syskin 1293 } else
608 :     #endif
609 :     if (dbytes < rc->min_length[s->type-1]) {
610 : edgomez 1202 dbytes = rc->min_length[s->type-1];
611 :     } else if (dbytes > rc->max_length) {
612 :     /* ToDo: this condition is always wrong as max_length == maximum frame
613 :     * length of first pass, so the first condition already caps the frame
614 :     * size... */
615 : edgomez 1037 capped_to_max_framesize = 1;
616 : edgomez 1202 dbytes = rc->max_length;
617 :     DPRINTF(XVID_DEBUG_RC,"[xvid rc] -- frame:%d Capped to maximum frame size\n",
618 : edgomez 1040 data->frame_num);
619 : edgomez 1037 }
620 : suxen_drol 942
621 : edgomez 1202 /*------------------------------------------------------------------------
622 :     * Desired frame length <-> quantizer mapping
623 :     *-----------------------------------------------------------------------*/
624 :    
625 : edgomez 1267 #ifdef BQUANT_PRESCALE
626 :     /* For bframes we prescale the quantizer to avoid too high quant scaling */
627 : edgomez 1202 if(s->type == XVID_TYPE_BVOP) {
628 :    
629 :     twopass_stat_t *b_ref = s;
630 :    
631 :     /* Find the reference frame */
632 :     while(b_ref != &rc->stats[0] && b_ref->type == XVID_TYPE_BVOP)
633 :     b_ref--;
634 :    
635 :     /* Compute the original quant */
636 : edgomez 1217 s->quant = 2*(100*s->quant - data->bquant_offset);
637 : edgomez 1267 s->quant += data->bquant_ratio - 1; /* to avoid rounding issues */
638 : edgomez 1202 s->quant = s->quant/data->bquant_ratio - b_ref->quant;
639 : edgomez 1040 }
640 : edgomez 1267 #endif
641 : suxen_drol 942
642 : edgomez 1267 /* Don't laugh at this very 'simple' quant<->size relationship, it
643 : edgomez 1202 * proves to be acurate enough for our algorithm */
644 :     scaled_quant = (double)s->quant*(double)s->length/(double)dbytes;
645 : suxen_drol 942
646 : edgomez 1202 #ifdef COMPENSATE_FORMULA
647 :     /* We know xvidcore will apply the bframe formula again, so we compensate
648 :     * it right now to make sure we would not apply it twice */
649 :     if(s->type == XVID_TYPE_BVOP) {
650 :    
651 :     twopass_stat_t *b_ref = s;
652 :    
653 :     /* Find the reference frame */
654 :     while(b_ref != &rc->stats[0] && b_ref->type == XVID_TYPE_BVOP)
655 :     b_ref--;
656 :    
657 :     /* Compute the quant it would be if the core did not apply the bframe
658 :     * formula */
659 :     scaled_quant = 100*scaled_quant - data->bquant_offset;
660 :     scaled_quant += data->bquant_ratio - 1; /* to avoid rouding issues */
661 :     scaled_quant /= data->bquant_ratio;
662 :     }
663 :     #endif
664 :    
665 :     /* Quantizer has been scaled using floating point operations/results, we
666 :     * must cast it to integer */
667 : edgomez 1048 data->quant = (int)scaled_quant;
668 :    
669 : edgomez 1037 /* Let's clip the computed quantizer, if needed */
670 :     if (data->quant < 1) {
671 :     data->quant = 1;
672 :     } else if (data->quant > 31) {
673 :     data->quant = 31;
674 : edgomez 1202 } else {
675 : suxen_drol 942
676 : edgomez 1202 /* The frame quantizer has not been clipped, this appears to be a good
677 : edgomez 1048 * computed quantizer, do not loose quantizer decimal part that we
678 : edgomez 1202 * accumulate for later reuse when its sum represents a complete
679 :     * unit. */
680 : edgomez 1048 rc->quant_error[s->type-1][data->quant] += scaled_quant - (double)data->quant;
681 : suxen_drol 942
682 : edgomez 1048 if (rc->quant_error[s->type-1][data->quant] >= 1.0) {
683 :     rc->quant_error[s->type-1][data->quant] -= 1.0;
684 :     data->quant++;
685 :     } else if (rc->quant_error[s->type-1][data->quant] <= -1.0) {
686 :     rc->quant_error[s->type-1][data->quant] += 1.0;
687 :     data->quant--;
688 :     }
689 : edgomez 1037 }
690 : suxen_drol 942
691 : edgomez 1202 /* Now we have a computed quant that is in the right quante range, with a
692 : edgomez 1037 * possible +1 correction due to cumulated error. We can now safely clip
693 :     * the quantizer again with user's quant ranges. "Safely" means the Rate
694 :     * Control could learn more about this quantizer, this knowledge is useful
695 :     * for future frames even if it this quantizer won't be really used atm,
696 : edgomez 1202 * that's why we don't perform this clipping earlier. */
697 : edgomez 1037 if (data->quant < data->min_quant[s->type-1]) {
698 :     data->quant = data->min_quant[s->type-1];
699 :     } else if (data->quant > data->max_quant[s->type-1]) {
700 :     data->quant = data->max_quant[s->type-1];
701 :     }
702 : suxen_drol 942
703 : edgomez 1202 /* To avoid big quality jumps from frame to frame, we apply a "security"
704 : edgomez 1037 * rule that makes |last_quant - new_quant| <= 2. This rule only applies
705 : edgomez 1202 * to predicted frames (P and B) */
706 : edgomez 1037 if (s->type != XVID_TYPE_IVOP && rc->last_quant[s->type-1] && capped_to_max_framesize == 0) {
707 : suxen_drol 942
708 : edgomez 1037 if (data->quant > rc->last_quant[s->type-1] + 2) {
709 :     data->quant = rc->last_quant[s->type-1] + 2;
710 : edgomez 1040 DPRINTF(XVID_DEBUG_RC,
711 : edgomez 1202 "[xvid rc] -- frame %d p/b-frame quantizer prevented from rising too steeply\n",
712 : edgomez 1040 data->frame_num);
713 : edgomez 1037 }
714 :     if (data->quant < rc->last_quant[s->type-1] - 2) {
715 :     data->quant = rc->last_quant[s->type-1] - 2;
716 : edgomez 1040 DPRINTF(XVID_DEBUG_RC,
717 : edgomez 1202 "[xvid rc] -- frame:%d p/b-frame quantizer prevented from falling too steeply\n",
718 : edgomez 1040 data->frame_num);
719 : edgomez 1037 }
720 :     }
721 : suxen_drol 1030
722 : edgomez 1202 /* We don't want to pollute the RC histerisis when our computed quant has
723 :     * been computed from a capped frame size */
724 : edgomez 1046 if (capped_to_max_framesize == 0)
725 : edgomez 1037 rc->last_quant[s->type-1] = data->quant;
726 : suxen_drol 1030
727 : edgomez 1202 /* Don't forget to force 1st pass frame type ;-) */
728 : edgomez 1050 data->type = s->type;
729 :    
730 : edgomez 1037 return 0;
731 : suxen_drol 942 }
732 :    
733 : edgomez 1042 /*----------------------------------------------------------------------------
734 :     *--------------------------------------------------------------------------*/
735 : suxen_drol 942
736 : edgomez 1042 static int
737 :     rc_2pass2_after(rc_2pass2_t * rc, xvid_plg_data_t * data)
738 : suxen_drol 942 {
739 : edgomez 1043 const char frame_type[4] = { 'i', 'p', 'b', 's'};
740 : edgomez 1202 twopass_stat_t * s = &rc->stats[data->frame_num];
741 : suxen_drol 942
742 : edgomez 1037 /* Insufficent stats data */
743 : edgomez 1064 if (data->frame_num >= rc->num_frames)
744 :     return 0;
745 : suxen_drol 942
746 : edgomez 1202 /* Update the quantizer counter */
747 :     rc->quant_count[s->type-1][data->quant]++;
748 : suxen_drol 942
749 : edgomez 1202 /* Update the frame type overflow */
750 : edgomez 1064 if (data->type == XVID_TYPE_IVOP) {
751 : edgomez 1202 int kfdiff = 0;
752 : suxen_drol 942
753 : edgomez 1202 if(rc->KF_idx != rc->num_frames -1) {
754 :     kfdiff = rc->keyframe_locations[rc->KF_idx+1];
755 :     kfdiff -= rc->keyframe_locations[rc->KF_idx];
756 :     }
757 :    
758 :     /* Flush Keyframe overflow accumulator */
759 : edgomez 1064 rc->overflow += rc->KFoverflow;
760 : edgomez 1202
761 :     /* Store the frame overflow to the keyframe accumulator */
762 : edgomez 1064 rc->KFoverflow = s->desired_length - data->length;
763 :    
764 : edgomez 1202 if (kfdiff > 1) {
765 :     /* Non-consecutive keyframes case:
766 :     * We can then divide this total keyframe overflow into equal parts
767 :     * that we will distribute into regular overflow at each frame
768 :     * between the sequence bounded by two IFrames */
769 : edgomez 1064 rc->KFoverflow_partial = rc->KFoverflow / (kfdiff - 1);
770 : edgomez 1202 } else {
771 :     /* Consecutive keyframes case:
772 :     * Flush immediatly the keyframe overflow and reset keyframe
773 :     * overflow */
774 : suxen_drol 942 rc->overflow += rc->KFoverflow;
775 :     rc->KFoverflow = 0;
776 :     rc->KFoverflow_partial = 0;
777 : edgomez 1064 }
778 :     rc->KF_idx++;
779 :     } else {
780 : edgomez 1202 /* Accumulate the frame overflow */
781 :     rc->overflow += s->desired_length - data->length;
782 :    
783 :     /* Distribute part of the keyframe overflow */
784 :     rc->overflow += rc->KFoverflow_partial;
785 :    
786 :     /* Don't forget to substract that same amount from the total keyframe
787 :     * overflow */
788 : edgomez 1064 rc->KFoverflow -= rc->KFoverflow_partial;
789 :     }
790 : suxen_drol 942
791 : edgomez 1267 rc->overflow += (s->error = s->desired_length - data->length);
792 : edgomez 1202 rc->real_total += data->length;
793 :    
794 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- frame:%d type:%c quant:%d stats:%d scaled:%d desired:%d actual:%d error:%d overflow:%.2f\n",
795 : edgomez 1042 data->frame_num,
796 : edgomez 1043 frame_type[data->type-1],
797 : edgomez 1042 data->quant,
798 :     s->length,
799 :     s->scaled_length,
800 : edgomez 1048 s->desired_length,
801 : edgomez 1202 s->desired_length - s->error,
802 :     -s->error,
803 : edgomez 1042 rc->overflow);
804 : suxen_drol 942
805 : edgomez 1064 return(0);
806 : suxen_drol 942 }
807 :    
808 : edgomez 1042 /*****************************************************************************
809 :     * Helper functions definition
810 :     ****************************************************************************/
811 : suxen_drol 942
812 : edgomez 1202 /* Default buffer size for reading lines */
813 : edgomez 1042 #define BUF_SZ 1024
814 : suxen_drol 942
815 : edgomez 1202 /* Helper functions for reading/parsing the stats file */
816 :     static char *skipspaces(char *string);
817 :     static int iscomment(char *string);
818 :     static char *readline(FILE *f);
819 :    
820 :     /* This function counts the number of frame entries in the stats file
821 :     * It also counts the number of I Frames */
822 : edgomez 1042 static int
823 : edgomez 1202 statsfile_count_frames(rc_2pass2_t * rc, char * filename)
824 : suxen_drol 942 {
825 : edgomez 1064 FILE * f;
826 : edgomez 1202 char *line;
827 :     int lines;
828 : edgomez 1042
829 : edgomez 1064 rc->num_frames = 0;
830 :     rc->num_keyframes = 0;
831 : edgomez 1042
832 : edgomez 1202 if ((f = fopen(filename, "rb")) == NULL)
833 :     return(-1);
834 : suxen_drol 942
835 : edgomez 1202 lines = 0;
836 :     while ((line = readline(f)) != NULL) {
837 :    
838 :     char *ptr;
839 :     char type;
840 : edgomez 1204 int fields;
841 : edgomez 1202
842 :     lines++;
843 :    
844 :     /* We skip spaces */
845 :     ptr = skipspaces(line);
846 :    
847 : edgomez 1204 /* Skip coment lines or empty lines */
848 :     if(iscomment(ptr) || *ptr == '\0') {
849 : edgomez 1202 free(line);
850 :     continue;
851 : edgomez 1064 }
852 : edgomez 1202
853 :     /* Read the stat line from buffer */
854 : edgomez 1204 fields = sscanf(ptr, "%c", &type);
855 : edgomez 1202
856 : edgomez 1267 /* Valid stats files have at least 7 fields */
857 : edgomez 1204 if (fields == 1) {
858 : edgomez 1202 switch(type) {
859 :     case 'i':
860 :     case 'I':
861 :     rc->num_keyframes++;
862 :     case 'p':
863 :     case 'P':
864 :     case 'b':
865 :     case 'B':
866 :     case 's':
867 :     case 'S':
868 :     rc->num_frames++;
869 :     break;
870 :     default:
871 :     DPRINTF(XVID_DEBUG_RC,
872 :     "[xvid rc] -- WARNING: L%d unknown frame type used (%c).\n",
873 :     lines, type);
874 :     }
875 :     } else {
876 :     DPRINTF(XVID_DEBUG_RC,
877 :     "[xvid rc] -- WARNING: L%d misses some stat fields (%d).\n",
878 : edgomez 1267 lines, 7-fields);
879 : edgomez 1202 }
880 :    
881 :     /* Free the line buffer */
882 :     free(line);
883 : edgomez 1064 }
884 : suxen_drol 942
885 : edgomez 1202 /* We are done with the file */
886 : edgomez 1064 fclose(f);
887 : suxen_drol 942
888 : edgomez 1202 return(0);
889 : edgomez 1042 }
890 : suxen_drol 942
891 : edgomez 1042 /* open stats file(s) and read into rc->stats array */
892 :     static int
893 : edgomez 1202 statsfile_load(rc_2pass2_t *rc, char * filename)
894 : edgomez 1042 {
895 : edgomez 1064 FILE * f;
896 : edgomez 1202 int processed_entries;
897 : edgomez 1042
898 : edgomez 1202 /* Opens the file */
899 :     if ((f = fopen(filename, "rb"))==NULL)
900 :     return(-1);
901 : edgomez 1064
902 : edgomez 1202 processed_entries = 0;
903 :     while(processed_entries < rc->num_frames) {
904 : edgomez 1064 char type;
905 : edgomez 1202 int fields;
906 :     twopass_stat_t * s = &rc->stats[processed_entries];
907 :     char *line, *ptr;
908 : edgomez 1042
909 : edgomez 1202 /* Read the line from the file */
910 :     if((line = readline(f)) == NULL)
911 :     break;
912 :    
913 :     /* We skip spaces */
914 :     ptr = skipspaces(line);
915 :    
916 : edgomez 1204 /* Skip comment lines or empty lines */
917 :     if(iscomment(ptr) || *ptr == '\0') {
918 : edgomez 1202 free(line);
919 :     continue;
920 : edgomez 1042 }
921 :    
922 : edgomez 1202 /* Reset this field that is optional */
923 :     s->scaled_length = 0;
924 :    
925 :     /* Convert the fields */
926 :     fields = sscanf(ptr,
927 : edgomez 1267 "%c %d %d %d %d %d %d %d\n",
928 : edgomez 1202 &type,
929 :     &s->quant,
930 :     &s->blks[0], &s->blks[1], &s->blks[2],
931 : edgomez 1267 &s->length, &s->invariant /* not really yet */,
932 : edgomez 1202 &s->scaled_length);
933 :    
934 :     /* Free line buffer, we don't need it anymore */
935 :     free(line);
936 :    
937 :     /* Fail silently, this has probably been warned in
938 :     * statsfile_count_frames */
939 : edgomez 1267 if(fields != 7 && fields != 8)
940 : edgomez 1202 continue;
941 :    
942 : edgomez 1267 /* Convert frame type and compute the invariant length part */
943 : edgomez 1202 switch(type) {
944 :     case 'i':
945 :     case 'I':
946 : edgomez 1064 s->type = XVID_TYPE_IVOP;
947 : edgomez 1267 s->invariant /= INVARIANT_HEADER_PART_IVOP;
948 : edgomez 1202 break;
949 :     case 'p':
950 :     case 'P':
951 :     case 's':
952 :     case 'S':
953 : edgomez 1064 s->type = XVID_TYPE_PVOP;
954 : edgomez 1267 s->invariant /= INVARIANT_HEADER_PART_PVOP;
955 : edgomez 1202 break;
956 :     case 'b':
957 :     case 'B':
958 : edgomez 1064 s->type = XVID_TYPE_BVOP;
959 : edgomez 1267 s->invariant /= INVARIANT_HEADER_PART_BVOP;
960 : edgomez 1202 break;
961 :     default:
962 :     /* Same as before, fail silently */
963 :     continue;
964 : edgomez 1064 }
965 : edgomez 1042
966 : edgomez 1202 /* Ok it seems it's been processed correctly */
967 :     processed_entries++;
968 : edgomez 1064 }
969 : suxen_drol 942
970 : edgomez 1202 /* Close the file */
971 : edgomez 1042 fclose(f);
972 :    
973 : edgomez 1202 return(0);
974 : suxen_drol 942 }
975 : edgomez 1042
976 : edgomez 1161 /* pre-process the statistics data
977 : edgomez 1202 * - for each type, count, tot_length, min_length, max_length
978 :     * - set keyframes_locations */
979 : edgomez 1042 static void
980 : edgomez 1202 first_pass_stats_prepare_data(rc_2pass2_t * rc)
981 : edgomez 1042 {
982 : edgomez 1064 int i,j;
983 : edgomez 1042
984 : edgomez 1202 /* *rc fields initialization
985 : edgomez 1048 * NB: INT_MAX and INT_MIN are used in order to be immediately replaced
986 : edgomez 1202 * with real values of the 1pass */
987 : edgomez 1064 for (i=0; i<3; i++) {
988 : edgomez 1048 rc->count[i]=0;
989 :     rc->tot_length[i] = 0;
990 : edgomez 1267 rc->tot_invariant[i] = 0;
991 : edgomez 1042 rc->min_length[i] = INT_MAX;
992 : edgomez 1064 }
993 : edgomez 1042
994 :     rc->max_length = INT_MIN;
995 :    
996 : edgomez 1202 /* Loop through all frames and find/compute all the stuff this function
997 :     * is supposed to do */
998 : edgomez 1048 for (i=j=0; i<rc->num_frames; i++) {
999 : edgomez 1202 twopass_stat_t * s = &rc->stats[i];
1000 : edgomez 1042
1001 : edgomez 1048 rc->count[s->type-1]++;
1002 :     rc->tot_length[s->type-1] += s->length;
1003 : edgomez 1267 rc->tot_invariant[s->type-1] += s->invariant;
1004 : edgomez 1042
1005 : edgomez 1048 if (s->length < rc->min_length[s->type-1]) {
1006 :     rc->min_length[s->type-1] = s->length;
1007 :     }
1008 : edgomez 1042
1009 : edgomez 1048 if (s->length > rc->max_length) {
1010 :     rc->max_length = s->length;
1011 :     }
1012 : edgomez 1042
1013 : edgomez 1048 if (s->type == XVID_TYPE_IVOP) {
1014 :     rc->keyframe_locations[j] = i;
1015 :     j++;
1016 :     }
1017 :     }
1018 :    
1019 : edgomez 1202 /* NB:
1020 : edgomez 1042 * The "per sequence" overflow system considers a natural sequence to be
1021 :     * formed by all frames between two iframes, so if we want to make sure
1022 :     * the system does not go nuts during last sequence, we force the last
1023 : edgomez 1202 * frame to appear in the keyframe locations array. */
1024 : edgomez 1064 rc->keyframe_locations[j] = i;
1025 : edgomez 1042
1026 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Min 1st pass IFrame length: %d\n", rc->min_length[0]);
1027 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Min 1st pass PFrame length: %d\n", rc->min_length[1]);
1028 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Min 1st pass BFrame length: %d\n", rc->min_length[2]);
1029 : edgomez 1042 }
1030 : edgomez 1064
1031 : edgomez 1042 /* calculate zone weight "center" */
1032 :     static void
1033 :     zone_process(rc_2pass2_t *rc, const xvid_plg_create_t * create)
1034 :     {
1035 : edgomez 1064 int i,j;
1036 :     int n = 0;
1037 : edgomez 1042
1038 : edgomez 1064 rc->avg_weight = 0.0;
1039 :     rc->tot_quant = 0;
1040 : edgomez 1267 rc->tot_quant_invariant = 0;
1041 : edgomez 1042
1042 : edgomez 1064 if (create->num_zones == 0) {
1043 :     for (j = 0; j < rc->num_frames; j++) {
1044 :     rc->stats[j].zone_mode = XVID_ZONE_WEIGHT;
1045 :     rc->stats[j].weight = 1.0;
1046 :     }
1047 :     rc->avg_weight += rc->num_frames * 1.0;
1048 :     n += rc->num_frames;
1049 :     }
1050 : edgomez 1042
1051 :    
1052 : edgomez 1064 for(i=0; i < create->num_zones; i++) {
1053 : edgomez 1042
1054 : edgomez 1064 int next = (i+1<create->num_zones) ? create->zones[i+1].frame : rc->num_frames;
1055 : edgomez 1042
1056 : edgomez 1064 if (i==0 && create->zones[i].frame > 0) {
1057 :     for (j = 0; j < create->zones[i].frame && j < rc->num_frames; j++) {
1058 :     rc->stats[j].zone_mode = XVID_ZONE_WEIGHT;
1059 :     rc->stats[j].weight = 1.0;
1060 :     }
1061 :     rc->avg_weight += create->zones[i].frame * 1.0;
1062 :     n += create->zones[i].frame;
1063 :     }
1064 : edgomez 1042
1065 : edgomez 1064 if (create->zones[i].mode == XVID_ZONE_WEIGHT) {
1066 :     for (j = create->zones[i].frame; j < next && j < rc->num_frames; j++ ) {
1067 :     rc->stats[j].zone_mode = XVID_ZONE_WEIGHT;
1068 :     rc->stats[j].weight = (double)create->zones[i].increment / (double)create->zones[i].base;
1069 :     }
1070 :     next -= create->zones[i].frame;
1071 :     rc->avg_weight += (double)(next * create->zones[i].increment) / (double)create->zones[i].base;
1072 :     n += next;
1073 : edgomez 1267 } else{ /* XVID_ZONE_QUANT */
1074 : edgomez 1064 for (j = create->zones[i].frame; j < next && j < rc->num_frames; j++ ) {
1075 :     rc->stats[j].zone_mode = XVID_ZONE_QUANT;
1076 :     rc->stats[j].weight = (double)create->zones[i].increment / (double)create->zones[i].base;
1077 :     rc->tot_quant += rc->stats[j].length;
1078 : edgomez 1267 rc->tot_quant_invariant += rc->stats[j].invariant;
1079 : edgomez 1064 }
1080 :     }
1081 :     }
1082 :     rc->avg_weight = n>0 ? rc->avg_weight/n : 1.0;
1083 :    
1084 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- center_weight:%f (for %d frames) fixed_bytes:%d\n", rc->avg_weight, n, rc->tot_quant);
1085 : edgomez 1042 }
1086 :    
1087 :    
1088 :     /* scale the curve */
1089 :     static void
1090 : edgomez 1202 first_pass_scale_curve_internal(rc_2pass2_t *rc)
1091 : edgomez 1042 {
1092 : edgomez 1202 int64_t target;
1093 :     int64_t pass1_length;
1094 : edgomez 1267 int64_t total_invariant;
1095 : edgomez 1042 double scaler;
1096 : edgomez 1047 int i, num_MBs;
1097 : edgomez 1042
1098 : edgomez 1267 /* We only scale texture data ! */
1099 :     total_invariant = rc->tot_invariant[XVID_TYPE_IVOP-1];
1100 :     total_invariant += rc->tot_invariant[XVID_TYPE_PVOP-1];
1101 :     total_invariant += rc->tot_invariant[XVID_TYPE_BVOP-1];
1102 :     /* don't forget to substract header bytes used in quant zones, otherwise we
1103 :     * counting them twice */
1104 :     total_invariant -= rc->tot_quant_invariant;
1105 : edgomez 1202
1106 : edgomez 1267 /* We remove the bytes used by the fixed quantizer zones during first pass
1107 :     * with the same quants, so we know very precisely how much that
1108 :     * represents */
1109 :     target = rc->target;
1110 :     target -= rc->tot_quant;
1111 :    
1112 : edgomez 1202 /* Do the same for the first pass data */
1113 :     pass1_length = rc->tot_length[XVID_TYPE_IVOP-1];
1114 :     pass1_length += rc->tot_length[XVID_TYPE_PVOP-1];
1115 :     pass1_length += rc->tot_length[XVID_TYPE_BVOP-1];
1116 :     pass1_length -= rc->tot_quant;
1117 :    
1118 : edgomez 1042 /* Let's compute a linear scaler in order to perform curve scaling */
1119 : edgomez 1267 scaler = (double)(target - total_invariant) / (double)(pass1_length - total_invariant);
1120 : edgomez 1042
1121 : syskin 1293 #ifdef PASS_SMALLER
1122 : edgomez 1267 if ((target - total_invariant) <= 0 ||
1123 :     (pass1_length - total_invariant) <= 0 ||
1124 :     target >= pass1_length) {
1125 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- WARNING: Undersize detected before correction\n");
1126 : edgomez 1064 scaler = 1.0;
1127 : edgomez 1042 }
1128 : syskin 1293 #endif
1129 : edgomez 1202 /* Compute min frame lengths (for each frame type) according to the number
1130 :     * of MBs. We sum all block type counters of frame 0, this gives us the
1131 :     * number of MBs.
1132 : edgomez 1049 *
1133 :     * We compare these hardcoded values with observed values in first pass
1134 : edgomez 1202 * (determined in pre_process0).Then we keep the real minimum. */
1135 : edgomez 1047
1136 : edgomez 1202 /* Number of MBs */
1137 :     num_MBs = rc->stats[0].blks[0];
1138 :     num_MBs += rc->stats[0].blks[1];
1139 :     num_MBs += rc->stats[0].blks[2];
1140 : edgomez 1049
1141 : edgomez 1202 /* Minimum for I frames */
1142 :     if(rc->min_length[XVID_TYPE_IVOP-1] > ((num_MBs*22) + 240) / 8)
1143 :     rc->min_length[XVID_TYPE_IVOP-1] = ((num_MBs*22) + 240) / 8;
1144 : edgomez 1049
1145 : edgomez 1202 /* Minimum for P/S frames */
1146 :     if(rc->min_length[XVID_TYPE_PVOP-1] > ((num_MBs) + 88) / 8)
1147 :     rc->min_length[XVID_TYPE_PVOP-1] = ((num_MBs) + 88) / 8;
1148 : edgomez 1049
1149 : edgomez 1202 /* Minimum for B frames */
1150 :     if(rc->min_length[XVID_TYPE_BVOP-1] > 8)
1151 :     rc->min_length[XVID_TYPE_BVOP-1] = 8;
1152 :    
1153 :     /* Perform an initial scale pass.
1154 :     *
1155 : edgomez 1042 * If a frame size is scaled underneath our hardcoded minimums, then we
1156 :     * force the frame size to the minimum, and deduct the original & scaled
1157 : edgomez 1202 * frame length from the original and target total lengths */
1158 : edgomez 1042 for (i=0; i<rc->num_frames; i++) {
1159 : edgomez 1202 twopass_stat_t * s = &rc->stats[i];
1160 : edgomez 1042 int len;
1161 :    
1162 : edgomez 1202 /* No need to scale frame length for which a specific quantizer is
1163 :     * specified thanks to zones */
1164 : edgomez 1064 if (s->zone_mode == XVID_ZONE_QUANT) {
1165 :     s->scaled_length = s->length;
1166 : edgomez 1042 continue;
1167 :     }
1168 :    
1169 : edgomez 1267 /* Compute the scaled length -- only non invariant data length is scaled */
1170 :     len = s->invariant + (int)((double)(s->length-s->invariant) * scaler * s->weight / rc->avg_weight);
1171 : edgomez 1042
1172 :     /* Compare with the computed minimum */
1173 : edgomez 1049 if (len < rc->min_length[s->type-1]) {
1174 : edgomez 1202 /* This is a 'forced size' frame, set its frame size to the
1175 :     * computed minimum */
1176 : edgomez 1049 s->scaled_length = rc->min_length[s->type-1];
1177 : edgomez 1202
1178 :     /* Remove both scaled and original size from their respective
1179 :     * total counters, as we prepare a second pass for 'regular'
1180 :     * frames */
1181 : edgomez 1042 target -= s->scaled_length;
1182 :     pass1_length -= s->length;
1183 :     } else {
1184 :     /* Do nothing for now, we'll scale this later */
1185 :     s->scaled_length = 0;
1186 :     }
1187 :     }
1188 :    
1189 : edgomez 1202 /* The first pass on data substracted all 'forced size' frames from the
1190 :     * total counters. Now, it's possible to scale the 'regular' frames. */
1191 :    
1192 :     /* Scaling factor for 'regular' frames */
1193 : edgomez 1267 scaler = (double)(target - total_invariant) / (double)(pass1_length - total_invariant);
1194 : edgomez 1042
1195 : syskin 1293 #ifdef PASS_SMALLER
1196 : edgomez 1042 /* Detect undersizing */
1197 : edgomez 1064 if (target <= 0 || pass1_length <= 0 || target >= pass1_length) {
1198 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- WARNING: Undersize detected after correction\n");
1199 : edgomez 1042 scaler = 1.0;
1200 :     }
1201 : syskin 1293 #endif
1202 : edgomez 1042
1203 :     /* Do another pass with the new scaler */
1204 :     for (i=0; i<rc->num_frames; i++) {
1205 : edgomez 1202 twopass_stat_t * s = &rc->stats[i];
1206 : edgomez 1042
1207 :     /* Ignore frame with forced frame sizes */
1208 :     if (s->scaled_length == 0)
1209 : edgomez 1267 s->scaled_length = s->invariant + (int)((double)(s->length-s->invariant) * scaler * s->weight / rc->avg_weight);
1210 : edgomez 1042 }
1211 : edgomez 1202
1212 :     /* Job done */
1213 :     return;
1214 : edgomez 1042 }
1215 :    
1216 : edgomez 1202 /* Apply all user settings to the scaled curve
1217 :     * This implies:
1218 :     * keyframe boosting
1219 :     * high/low compression */
1220 : edgomez 1042 static void
1221 : edgomez 1202 scaled_curve_apply_advanced_parameters(rc_2pass2_t * rc)
1222 : edgomez 1042 {
1223 : edgomez 1064 int i;
1224 : edgomez 1242 int64_t ivop_boost_total;
1225 : edgomez 1042
1226 : edgomez 1202 /* Reset the rate controller (per frame type) total byte counters */
1227 :     for (i=0; i<3; i++) rc->tot_scaled_length[i] = 0;
1228 : edgomez 1042
1229 : edgomez 1202 /* Compute total bytes for each frame type */
1230 :     for (i=0; i<rc->num_frames;i++) {
1231 :     twopass_stat_t *s = &rc->stats[i];
1232 :     rc->tot_scaled_length[s->type-1] += s->scaled_length;
1233 : edgomez 1064 }
1234 : edgomez 1042
1235 : edgomez 1202 /* First we compute the total amount of bits needed, as being described by
1236 :     * the scaled distribution. During this pass over the complete stats data,
1237 :     * we see how much bits two user settings will get/give from/to p&b frames:
1238 :     * - keyframe boosting
1239 :     * - keyframe distance penalty */
1240 :     rc->KF_idx = 0;
1241 :     ivop_boost_total = 0;
1242 : edgomez 1064 for (i=0; i<rc->num_frames; i++) {
1243 : edgomez 1202 twopass_stat_t * s = &rc->stats[i];
1244 : edgomez 1042
1245 : edgomez 1202 /* Some more work is needed for I frames */
1246 :     if (s->type == XVID_TYPE_IVOP) {
1247 :     int ivop_boost;
1248 : edgomez 1042
1249 : edgomez 1202 /* Accumulate bytes needed for keyframe boosting */
1250 :     ivop_boost = s->scaled_length*rc->param.keyframe_boost/100;
1251 :    
1252 : edgomez 1242 #if 0 /* ToDo: decide how to apply kfthresholding */
1253 :     #endif
1254 : edgomez 1202 /* If the frame size drops under the minimum length, then cap ivop_boost */
1255 :     if (ivop_boost + s->scaled_length < rc->min_length[XVID_TYPE_IVOP-1])
1256 :     ivop_boost = rc->min_length[XVID_TYPE_IVOP-1] - s->scaled_length;
1257 :    
1258 :     /* Accumulate the ivop boost */
1259 :     ivop_boost_total += ivop_boost;
1260 :    
1261 :     /* Don't forget to update the keyframe index */
1262 :     rc->KF_idx++;
1263 : edgomez 1064 }
1264 :     }
1265 : edgomez 1042
1266 : edgomez 1202 /* Initialize the IBoost tax ratio for P/S/B frames
1267 :     *
1268 :     * This ratio has to be applied to p/b/s frames in order to reserve
1269 :     * additional bits for keyframes (keyframe boosting) or if too much
1270 :     * keyframe distance is applied, bits retrieved from the keyframes.
1271 :     *
1272 :     * ie pb_length *= rc->pb_iboost_tax_ratio;
1273 :     *
1274 :     * gives the ideal length of a p/b frame */
1275 : edgomez 1042
1276 : edgomez 1202 /* Compute the total length of p/b/s frames (temporary storage into
1277 :     * movie_curve) */
1278 :     rc->pb_iboost_tax_ratio = (double)rc->tot_scaled_length[XVID_TYPE_PVOP-1];
1279 :     rc->pb_iboost_tax_ratio += (double)rc->tot_scaled_length[XVID_TYPE_BVOP-1];
1280 :    
1281 :     /* Compute the ratio described above
1282 :     * taxed_total = sum(0, n, tax*scaled_length)
1283 : edgomez 1242 * <=> taxed_total = tax.sum(0, n, scaled_length)
1284 : edgomez 1202 * <=> tax = taxed_total / original_total */
1285 :     rc->pb_iboost_tax_ratio =
1286 :     (rc->pb_iboost_tax_ratio - ivop_boost_total) /
1287 :     rc->pb_iboost_tax_ratio;
1288 :    
1289 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- IFrame boost tax ratio:%.2f\n",
1290 :     rc->pb_iboost_tax_ratio);
1291 :    
1292 :     /* Compute the average size of frames per frame type */
1293 : edgomez 1064 for(i=0; i<3; i++) {
1294 : edgomez 1202 /* Special case for missing type or weird case */
1295 :     if (rc->count[i] == 0 || rc->pb_iboost_tax_ratio == 0) {
1296 : edgomez 1064 rc->avg_length[i] = 1;
1297 : edgomez 1202 } else {
1298 :     rc->avg_length[i] = rc->tot_scaled_length[i];
1299 :    
1300 : edgomez 1204 if (i == (XVID_TYPE_IVOP-1)) {
1301 : edgomez 1202 /* I Frames total has to be added the boost total */
1302 :     rc->avg_length[i] += ivop_boost_total;
1303 :     } else {
1304 :     /* P/B frames has to taxed */
1305 :     rc->avg_length[i] *= rc->pb_iboost_tax_ratio;
1306 :     }
1307 :    
1308 :     /* Finally compute the average frame size */
1309 :     rc->avg_length[i] /= (double)rc->count[i];
1310 : edgomez 1064 }
1311 :     }
1312 : edgomez 1042
1313 : edgomez 1202 /* Assymetric curve compression */
1314 :     if (rc->param.curve_compression_high || rc->param.curve_compression_low) {
1315 :     double symetric_total;
1316 :     double assymetric_delta_total;
1317 : edgomez 1042
1318 : edgomez 1202 /* Like I frame boosting, assymetric curve compression modifies the total
1319 :     * amount of needed bits, we must compute the ratio so we can prescale
1320 :     lengths */
1321 :     symetric_total = 0;
1322 :     assymetric_delta_total = 0;
1323 :     for (i=0; i<rc->num_frames; i++) {
1324 :     double assymetric_delta;
1325 :     double dbytes;
1326 :     twopass_stat_t * s = &rc->stats[i];
1327 : edgomez 1042
1328 : edgomez 1202 /* I Frames are not concerned by assymetric scaling */
1329 :     if (s->type == XVID_TYPE_IVOP)
1330 :     continue;
1331 : edgomez 1042
1332 : edgomez 1202 /* During the real run, we would have to apply the iboost tax */
1333 :     dbytes = s->scaled_length * rc->pb_iboost_tax_ratio;
1334 : edgomez 1042
1335 : edgomez 1202 /* Update the symmetric curve compression total */
1336 :     symetric_total += dbytes;
1337 : edgomez 1064
1338 : edgomez 1202 /* Apply assymetric curve compression */
1339 :     if (dbytes > rc->avg_length[s->type-1])
1340 :     assymetric_delta = (rc->avg_length[s->type-1] - dbytes) * (double)rc->param.curve_compression_high / 100.0f;
1341 :     else
1342 :     assymetric_delta = (rc->avg_length[s->type-1] - dbytes) * (double)rc->param.curve_compression_low / 100.0f;
1343 : edgomez 1042
1344 : edgomez 1202 /* Cap to the minimum frame size if needed */
1345 :     if (dbytes + assymetric_delta < rc->min_length[s->type-1])
1346 :     assymetric_delta = rc->min_length[s->type-1] - dbytes;
1347 : edgomez 1051
1348 : edgomez 1202 /* Accumulate after assymetric curve compression */
1349 :     assymetric_delta_total += assymetric_delta;
1350 : edgomez 1064 }
1351 : edgomez 1202
1352 :     /* Compute the tax that all p/b frames have to pay in order to respect the
1353 :     * bit distribution changes that the assymetric compression curve imposes
1354 :     * We want assymetric_total = sum(0, n-1, tax.scaled_length)
1355 :     * ie assymetric_total = ratio.sum(0, n-1, scaled_length)
1356 :     * ratio = assymetric_total / symmetric_total */
1357 :     rc->assymetric_tax_ratio = ((double)symetric_total - (double)assymetric_delta_total) / (double)symetric_total;
1358 :     } else {
1359 :     rc->assymetric_tax_ratio = 1.0f;
1360 : edgomez 1064 }
1361 : edgomez 1042
1362 : edgomez 1202 DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- Assymetric tax ratio:%.2f\n", rc->assymetric_tax_ratio);
1363 : edgomez 1042
1364 : edgomez 1202 /* Last bits that need to be reset */
1365 : edgomez 1064 rc->overflow = 0;
1366 :     rc->KFoverflow = 0;
1367 :     rc->KFoverflow_partial = 0;
1368 : edgomez 1202 rc->KF_idx = 0;
1369 :     rc->desired_total = 0;
1370 :     rc->real_total = 0;
1371 :    
1372 :     /* Job done */
1373 :     return;
1374 : edgomez 1042 }
1375 : edgomez 1202
1376 :     /*****************************************************************************
1377 :     * Still more low level stuff (nothing to do with stats treatment)
1378 :     ****************************************************************************/
1379 :    
1380 :     /* This function returns an allocated string containing a complete line read
1381 :     * from the file starting at the current position */
1382 :     static char *
1383 :     readline(FILE *f)
1384 :     {
1385 :     char *buffer = NULL;
1386 :     int buffer_size = 0;
1387 :     int pos = 0;
1388 :    
1389 :     do {
1390 :     int c;
1391 :    
1392 :     /* Read a character from the stream */
1393 :     c = fgetc(f);
1394 :    
1395 :     /* Is that EOF or new line ? */
1396 :     if(c == EOF || c == '\n')
1397 :     break;
1398 :    
1399 :     /* Do we have to update buffer ? */
1400 :     if(pos >= buffer_size - 1) {
1401 :     buffer_size += BUF_SZ;
1402 :     buffer = (char*)realloc(buffer, buffer_size);
1403 :     if (buffer == NULL)
1404 :     return(NULL);
1405 :     }
1406 :    
1407 :     buffer[pos] = c;
1408 :     pos++;
1409 :     } while(1);
1410 :    
1411 :     /* Read \n or EOF */
1412 :     if (buffer == NULL) {
1413 :     /* EOF, so we reached the end of the file, return NULL */
1414 :     if(feof(f))
1415 :     return(NULL);
1416 :    
1417 :     /* Just an empty line with just a newline, allocate a 1 byte buffer to
1418 :     * store a zero length string */
1419 :     buffer = (char*)malloc(1);
1420 :     if(buffer == NULL)
1421 :     return(NULL);
1422 :     }
1423 :    
1424 :     /* Zero terminated string */
1425 :     buffer[pos] = '\0';
1426 :    
1427 :     return(buffer);
1428 :     }
1429 :    
1430 :     /* This function returns a pointer to the first non space char in the given
1431 :     * string */
1432 :     static char *
1433 :     skipspaces(char *string)
1434 :     {
1435 :     const char spaces[] =
1436 :     {
1437 :     ' ','\t','\0'
1438 :     };
1439 :     const char *spacechar = spaces;
1440 :    
1441 :     if (string == NULL) return(NULL);
1442 :    
1443 :     while (*string != '\0') {
1444 :     /* Test against space chars */
1445 :     while (*spacechar != '\0') {
1446 :     if (*string == *spacechar) {
1447 :     string++;
1448 :     spacechar = spaces;
1449 :     break;
1450 :     }
1451 :     spacechar++;
1452 :     }
1453 :    
1454 :     /* No space char */
1455 :     if (*spacechar == '\0') return(string);
1456 :     }
1457 :    
1458 :     return(string);
1459 :     }
1460 :    
1461 :     /* This function returns a boolean that tells if the string is only a
1462 :     * comment */
1463 :     static int
1464 :     iscomment(char *string)
1465 :     {
1466 :     const char comments[] =
1467 :     {
1468 :     '#',';', '%', '\0'
1469 :     };
1470 :     const char *cmtchar = comments;
1471 :     int iscomment = 0;
1472 :    
1473 :     if (string == NULL) return(1);
1474 :    
1475 :     string = skipspaces(string);
1476 :    
1477 :     while(*cmtchar != '\0') {
1478 :     if(*string == *cmtchar) {
1479 :     iscomment = 1;
1480 :     break;
1481 :     }
1482 :     cmtchar++;
1483 :     }
1484 :    
1485 :     return(iscomment);
1486 :     }
1487 :    
1488 :     #if 0
1489 :     static void
1490 :     stats_print(rc_2pass2_t * rc)
1491 :     {
1492 :     int i;
1493 :     const char frame_type[4] = { 'i', 'p', 'b', 's'};
1494 :    
1495 :     for (i=0; i<rc->num_frames; i++) {
1496 :     twopass_stat_t *s = &rc->stats[i];
1497 :     DPRINTF(XVID_DEBUG_RC, "[xvid rc] -- frame:%d type:%c quant:%d stats:%d scaled:%d desired:%d actual:%d overflow(%c):%.2f\n",
1498 :     i, frame_type[s->type-1], -1, s->length, s->scaled_length,
1499 :     s->desired_length, -1, frame_type[s->type-1], -1.0f);
1500 :     }
1501 :     }
1502 :     #endif

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