1 // Copyright 2011 Google Inc. All Rights Reserved.
3 // Use of this source code is governed by a BSD-style license
4 // that can be found in the COPYING file in the root of the source
5 // tree. An additional intellectual property rights grant can be found
6 // in the file PATENTS. All contributing project authors may
7 // be found in the AUTHORS file in the root of the source tree.
8 // -----------------------------------------------------------------------------
10 // frame coding and analysis
12 // Author: Skal (pascal.massimino@gmail.com)
17 #include "./vp8enci.h"
19 #include "../webp/format_constants.h" // RIFF constants
21 #define SEGMENT_VISU 0
22 #define DEBUG_SEARCH 0 // useful to track search convergence
24 //------------------------------------------------------------------------------
25 // multi-pass convergence
27 #define HEADER_SIZE_ESTIMATE (RIFF_HEADER_SIZE + CHUNK_HEADER_SIZE + \
28 VP8_FRAME_HEADER_SIZE)
29 #define DQ_LIMIT 0.4 // convergence is considered reached if dq < DQ_LIMIT
30 // we allow 2k of extra head-room in PARTITION0 limit.
31 #define PARTITION0_SIZE_LIMIT ((VP8_MAX_PARTITION0_SIZE - 2048ULL) << 11)
33 typedef struct { // struct for organizing convergence in either size or PSNR
37 double value
, last_value
; // PSNR or size
42 static int InitPassStats(const VP8Encoder
* const enc
, PassStats
* const s
) {
43 const uint64_t target_size
= (uint64_t)enc
->config_
->target_size
;
44 const int do_size_search
= (target_size
!= 0);
45 const float target_PSNR
= enc
->config_
->target_PSNR
;
49 s
->q
= s
->last_q
= enc
->config_
->quality
;
50 s
->target
= do_size_search
? (double)target_size
51 : (target_PSNR
> 0.) ? target_PSNR
52 : 40.; // default, just in case
53 s
->value
= s
->last_value
= 0.;
54 s
->do_size_search
= do_size_search
;
55 return do_size_search
;
58 static float Clamp(float v
, float min
, float max
) {
59 return (v
< min
) ? min
: (v
> max
) ? max
: v
;
62 static float ComputeNextQ(PassStats
* const s
) {
65 dq
= (s
->value
> s
->target
) ? -s
->dq
: s
->dq
;
67 } else if (s
->value
!= s
->last_value
) {
68 const double slope
= (s
->target
- s
->value
) / (s
->last_value
- s
->value
);
69 dq
= (float)(slope
* (s
->last_q
- s
->q
));
71 dq
= 0.; // we're done?!
73 // Limit variable to avoid large swings.
74 s
->dq
= Clamp(dq
, -30.f
, 30.f
);
76 s
->last_value
= s
->value
;
77 s
->q
= Clamp(s
->q
+ s
->dq
, 0.f
, 100.f
);
81 //------------------------------------------------------------------------------
82 // Tables for level coding
84 const uint8_t VP8EncBands
[16 + 1] = {
85 0, 1, 2, 3, 6, 4, 5, 6, 6, 6, 6, 6, 6, 6, 6, 7,
89 const uint8_t VP8Cat3
[] = { 173, 148, 140 };
90 const uint8_t VP8Cat4
[] = { 176, 155, 140, 135 };
91 const uint8_t VP8Cat5
[] = { 180, 157, 141, 134, 130 };
92 const uint8_t VP8Cat6
[] =
93 { 254, 254, 243, 230, 196, 177, 153, 140, 133, 130, 129 };
95 //------------------------------------------------------------------------------
96 // Reset the statistics about: number of skips, token proba, level cost,...
98 static void ResetStats(VP8Encoder
* const enc
) {
99 VP8Proba
* const proba
= &enc
->proba_
;
100 VP8CalculateLevelCosts(proba
);
104 //------------------------------------------------------------------------------
105 // Skip decision probability
107 #define SKIP_PROBA_THRESHOLD 250 // value below which using skip_proba is OK.
109 static int CalcSkipProba(uint64_t nb
, uint64_t total
) {
110 return (int)(total
? (total
- nb
) * 255 / total
: 255);
113 // Returns the bit-cost for coding the skip probability.
114 static int FinalizeSkipProba(VP8Encoder
* const enc
) {
115 VP8Proba
* const proba
= &enc
->proba_
;
116 const int nb_mbs
= enc
->mb_w_
* enc
->mb_h_
;
117 const int nb_events
= proba
->nb_skip_
;
119 proba
->skip_proba_
= CalcSkipProba(nb_events
, nb_mbs
);
120 proba
->use_skip_proba_
= (proba
->skip_proba_
< SKIP_PROBA_THRESHOLD
);
121 size
= 256; // 'use_skip_proba' bit
122 if (proba
->use_skip_proba_
) {
123 size
+= nb_events
* VP8BitCost(1, proba
->skip_proba_
)
124 + (nb_mbs
- nb_events
) * VP8BitCost(0, proba
->skip_proba_
);
125 size
+= 8 * 256; // cost of signaling the skip_proba_ itself.
130 // Collect statistics and deduce probabilities for next coding pass.
131 // Return the total bit-cost for coding the probability updates.
132 static int CalcTokenProba(int nb
, int total
) {
134 return nb
? (255 - nb
* 255 / total
) : 255;
137 // Cost of coding 'nb' 1's and 'total-nb' 0's using 'proba' probability.
138 static int BranchCost(int nb
, int total
, int proba
) {
139 return nb
* VP8BitCost(1, proba
) + (total
- nb
) * VP8BitCost(0, proba
);
142 static void ResetTokenStats(VP8Encoder
* const enc
) {
143 VP8Proba
* const proba
= &enc
->proba_
;
144 memset(proba
->stats_
, 0, sizeof(proba
->stats_
));
147 static int FinalizeTokenProbas(VP8Proba
* const proba
) {
151 for (t
= 0; t
< NUM_TYPES
; ++t
) {
152 for (b
= 0; b
< NUM_BANDS
; ++b
) {
153 for (c
= 0; c
< NUM_CTX
; ++c
) {
154 for (p
= 0; p
< NUM_PROBAS
; ++p
) {
155 const proba_t stats
= proba
->stats_
[t
][b
][c
][p
];
156 const int nb
= (stats
>> 0) & 0xffff;
157 const int total
= (stats
>> 16) & 0xffff;
158 const int update_proba
= VP8CoeffsUpdateProba
[t
][b
][c
][p
];
159 const int old_p
= VP8CoeffsProba0
[t
][b
][c
][p
];
160 const int new_p
= CalcTokenProba(nb
, total
);
161 const int old_cost
= BranchCost(nb
, total
, old_p
)
162 + VP8BitCost(0, update_proba
);
163 const int new_cost
= BranchCost(nb
, total
, new_p
)
164 + VP8BitCost(1, update_proba
)
166 const int use_new_p
= (old_cost
> new_cost
);
167 size
+= VP8BitCost(use_new_p
, update_proba
);
168 if (use_new_p
) { // only use proba that seem meaningful enough.
169 proba
->coeffs_
[t
][b
][c
][p
] = new_p
;
170 has_changed
|= (new_p
!= old_p
);
173 proba
->coeffs_
[t
][b
][c
][p
] = old_p
;
179 proba
->dirty_
= has_changed
;
183 //------------------------------------------------------------------------------
184 // Finalize Segment probability based on the coding tree
186 static int GetProba(int a
, int b
) {
187 const int total
= a
+ b
;
188 return (total
== 0) ? 255 // that's the default probability.
189 : (255 * a
+ total
/ 2) / total
; // rounded proba
192 static void SetSegmentProbas(VP8Encoder
* const enc
) {
193 int p
[NUM_MB_SEGMENTS
] = { 0 };
196 for (n
= 0; n
< enc
->mb_w_
* enc
->mb_h_
; ++n
) {
197 const VP8MBInfo
* const mb
= &enc
->mb_info_
[n
];
200 if (enc
->pic_
->stats
!= NULL
) {
201 for (n
= 0; n
< NUM_MB_SEGMENTS
; ++n
) {
202 enc
->pic_
->stats
->segment_size
[n
] = p
[n
];
205 if (enc
->segment_hdr_
.num_segments_
> 1) {
206 uint8_t* const probas
= enc
->proba_
.segments_
;
207 probas
[0] = GetProba(p
[0] + p
[1], p
[2] + p
[3]);
208 probas
[1] = GetProba(p
[0], p
[1]);
209 probas
[2] = GetProba(p
[2], p
[3]);
211 enc
->segment_hdr_
.update_map_
=
212 (probas
[0] != 255) || (probas
[1] != 255) || (probas
[2] != 255);
213 enc
->segment_hdr_
.size_
=
214 p
[0] * (VP8BitCost(0, probas
[0]) + VP8BitCost(0, probas
[1])) +
215 p
[1] * (VP8BitCost(0, probas
[0]) + VP8BitCost(1, probas
[1])) +
216 p
[2] * (VP8BitCost(1, probas
[0]) + VP8BitCost(0, probas
[2])) +
217 p
[3] * (VP8BitCost(1, probas
[0]) + VP8BitCost(1, probas
[2]));
219 enc
->segment_hdr_
.update_map_
= 0;
220 enc
->segment_hdr_
.size_
= 0;
224 //------------------------------------------------------------------------------
225 // Coefficient coding
227 static int PutCoeffs(VP8BitWriter
* const bw
, int ctx
, const VP8Residual
* res
) {
229 // should be prob[VP8EncBands[n]], but it's equivalent for n=0 or 1
230 const uint8_t* p
= res
->prob
[n
][ctx
];
231 if (!VP8PutBit(bw
, res
->last
>= 0, p
[0])) {
236 const int c
= res
->coeffs
[n
++];
237 const int sign
= c
< 0;
238 int v
= sign
? -c
: c
;
239 if (!VP8PutBit(bw
, v
!= 0, p
[1])) {
240 p
= res
->prob
[VP8EncBands
[n
]][0];
243 if (!VP8PutBit(bw
, v
> 1, p
[2])) {
244 p
= res
->prob
[VP8EncBands
[n
]][1];
246 if (!VP8PutBit(bw
, v
> 4, p
[3])) {
247 if (VP8PutBit(bw
, v
!= 2, p
[4]))
248 VP8PutBit(bw
, v
== 4, p
[5]);
249 } else if (!VP8PutBit(bw
, v
> 10, p
[6])) {
250 if (!VP8PutBit(bw
, v
> 6, p
[7])) {
251 VP8PutBit(bw
, v
== 6, 159);
253 VP8PutBit(bw
, v
>= 9, 165);
254 VP8PutBit(bw
, !(v
& 1), 145);
259 if (v
< 3 + (8 << 1)) { // VP8Cat3 (3b)
260 VP8PutBit(bw
, 0, p
[8]);
261 VP8PutBit(bw
, 0, p
[9]);
265 } else if (v
< 3 + (8 << 2)) { // VP8Cat4 (4b)
266 VP8PutBit(bw
, 0, p
[8]);
267 VP8PutBit(bw
, 1, p
[9]);
271 } else if (v
< 3 + (8 << 3)) { // VP8Cat5 (5b)
272 VP8PutBit(bw
, 1, p
[8]);
273 VP8PutBit(bw
, 0, p
[10]);
277 } else { // VP8Cat6 (11b)
278 VP8PutBit(bw
, 1, p
[8]);
279 VP8PutBit(bw
, 1, p
[10]);
285 VP8PutBit(bw
, !!(v
& mask
), *tab
++);
289 p
= res
->prob
[VP8EncBands
[n
]][2];
291 VP8PutBitUniform(bw
, sign
);
292 if (n
== 16 || !VP8PutBit(bw
, n
<= res
->last
, p
[0])) {
299 static void CodeResiduals(VP8BitWriter
* const bw
, VP8EncIterator
* const it
,
300 const VP8ModeScore
* const rd
) {
303 uint64_t pos1
, pos2
, pos3
;
304 const int i16
= (it
->mb_
->type_
== 1);
305 const int segment
= it
->mb_
->segment_
;
306 VP8Encoder
* const enc
= it
->enc_
;
308 VP8IteratorNzToBytes(it
);
310 pos1
= VP8BitWriterPos(bw
);
312 VP8InitResidual(0, 1, enc
, &res
);
313 VP8SetResidualCoeffs(rd
->y_dc_levels
, &res
);
314 it
->top_nz_
[8] = it
->left_nz_
[8] =
315 PutCoeffs(bw
, it
->top_nz_
[8] + it
->left_nz_
[8], &res
);
316 VP8InitResidual(1, 0, enc
, &res
);
318 VP8InitResidual(0, 3, enc
, &res
);
322 for (y
= 0; y
< 4; ++y
) {
323 for (x
= 0; x
< 4; ++x
) {
324 const int ctx
= it
->top_nz_
[x
] + it
->left_nz_
[y
];
325 VP8SetResidualCoeffs(rd
->y_ac_levels
[x
+ y
* 4], &res
);
326 it
->top_nz_
[x
] = it
->left_nz_
[y
] = PutCoeffs(bw
, ctx
, &res
);
329 pos2
= VP8BitWriterPos(bw
);
332 VP8InitResidual(0, 2, enc
, &res
);
333 for (ch
= 0; ch
<= 2; ch
+= 2) {
334 for (y
= 0; y
< 2; ++y
) {
335 for (x
= 0; x
< 2; ++x
) {
336 const int ctx
= it
->top_nz_
[4 + ch
+ x
] + it
->left_nz_
[4 + ch
+ y
];
337 VP8SetResidualCoeffs(rd
->uv_levels
[ch
* 2 + x
+ y
* 2], &res
);
338 it
->top_nz_
[4 + ch
+ x
] = it
->left_nz_
[4 + ch
+ y
] =
339 PutCoeffs(bw
, ctx
, &res
);
343 pos3
= VP8BitWriterPos(bw
);
344 it
->luma_bits_
= pos2
- pos1
;
345 it
->uv_bits_
= pos3
- pos2
;
346 it
->bit_count_
[segment
][i16
] += it
->luma_bits_
;
347 it
->bit_count_
[segment
][2] += it
->uv_bits_
;
348 VP8IteratorBytesToNz(it
);
351 // Same as CodeResiduals, but doesn't actually write anything.
352 // Instead, it just records the event distribution.
353 static void RecordResiduals(VP8EncIterator
* const it
,
354 const VP8ModeScore
* const rd
) {
357 VP8Encoder
* const enc
= it
->enc_
;
359 VP8IteratorNzToBytes(it
);
361 if (it
->mb_
->type_
== 1) { // i16x16
362 VP8InitResidual(0, 1, enc
, &res
);
363 VP8SetResidualCoeffs(rd
->y_dc_levels
, &res
);
364 it
->top_nz_
[8] = it
->left_nz_
[8] =
365 VP8RecordCoeffs(it
->top_nz_
[8] + it
->left_nz_
[8], &res
);
366 VP8InitResidual(1, 0, enc
, &res
);
368 VP8InitResidual(0, 3, enc
, &res
);
372 for (y
= 0; y
< 4; ++y
) {
373 for (x
= 0; x
< 4; ++x
) {
374 const int ctx
= it
->top_nz_
[x
] + it
->left_nz_
[y
];
375 VP8SetResidualCoeffs(rd
->y_ac_levels
[x
+ y
* 4], &res
);
376 it
->top_nz_
[x
] = it
->left_nz_
[y
] = VP8RecordCoeffs(ctx
, &res
);
381 VP8InitResidual(0, 2, enc
, &res
);
382 for (ch
= 0; ch
<= 2; ch
+= 2) {
383 for (y
= 0; y
< 2; ++y
) {
384 for (x
= 0; x
< 2; ++x
) {
385 const int ctx
= it
->top_nz_
[4 + ch
+ x
] + it
->left_nz_
[4 + ch
+ y
];
386 VP8SetResidualCoeffs(rd
->uv_levels
[ch
* 2 + x
+ y
* 2], &res
);
387 it
->top_nz_
[4 + ch
+ x
] = it
->left_nz_
[4 + ch
+ y
] =
388 VP8RecordCoeffs(ctx
, &res
);
393 VP8IteratorBytesToNz(it
);
396 //------------------------------------------------------------------------------
399 #if !defined(DISABLE_TOKEN_BUFFER)
401 static int RecordTokens(VP8EncIterator
* const it
, const VP8ModeScore
* const rd
,
402 VP8TBuffer
* const tokens
) {
405 VP8Encoder
* const enc
= it
->enc_
;
407 VP8IteratorNzToBytes(it
);
408 if (it
->mb_
->type_
== 1) { // i16x16
409 const int ctx
= it
->top_nz_
[8] + it
->left_nz_
[8];
410 VP8InitResidual(0, 1, enc
, &res
);
411 VP8SetResidualCoeffs(rd
->y_dc_levels
, &res
);
412 it
->top_nz_
[8] = it
->left_nz_
[8] =
413 VP8RecordCoeffTokens(ctx
, 1,
414 res
.first
, res
.last
, res
.coeffs
, tokens
);
415 VP8RecordCoeffs(ctx
, &res
);
416 VP8InitResidual(1, 0, enc
, &res
);
418 VP8InitResidual(0, 3, enc
, &res
);
422 for (y
= 0; y
< 4; ++y
) {
423 for (x
= 0; x
< 4; ++x
) {
424 const int ctx
= it
->top_nz_
[x
] + it
->left_nz_
[y
];
425 VP8SetResidualCoeffs(rd
->y_ac_levels
[x
+ y
* 4], &res
);
426 it
->top_nz_
[x
] = it
->left_nz_
[y
] =
427 VP8RecordCoeffTokens(ctx
, res
.coeff_type
,
428 res
.first
, res
.last
, res
.coeffs
, tokens
);
429 VP8RecordCoeffs(ctx
, &res
);
434 VP8InitResidual(0, 2, enc
, &res
);
435 for (ch
= 0; ch
<= 2; ch
+= 2) {
436 for (y
= 0; y
< 2; ++y
) {
437 for (x
= 0; x
< 2; ++x
) {
438 const int ctx
= it
->top_nz_
[4 + ch
+ x
] + it
->left_nz_
[4 + ch
+ y
];
439 VP8SetResidualCoeffs(rd
->uv_levels
[ch
* 2 + x
+ y
* 2], &res
);
440 it
->top_nz_
[4 + ch
+ x
] = it
->left_nz_
[4 + ch
+ y
] =
441 VP8RecordCoeffTokens(ctx
, 2,
442 res
.first
, res
.last
, res
.coeffs
, tokens
);
443 VP8RecordCoeffs(ctx
, &res
);
447 VP8IteratorBytesToNz(it
);
448 return !tokens
->error_
;
451 #endif // !DISABLE_TOKEN_BUFFER
453 //------------------------------------------------------------------------------
454 // ExtraInfo map / Debug function
457 static void SetBlock(uint8_t* p
, int value
, int size
) {
459 for (y
= 0; y
< size
; ++y
) {
460 memset(p
, value
, size
);
466 static void ResetSSE(VP8Encoder
* const enc
) {
470 // Note: enc->sse_[3] is managed by alpha.c
474 static void StoreSSE(const VP8EncIterator
* const it
) {
475 VP8Encoder
* const enc
= it
->enc_
;
476 const uint8_t* const in
= it
->yuv_in_
;
477 const uint8_t* const out
= it
->yuv_out_
;
478 // Note: not totally accurate at boundary. And doesn't include in-loop filter.
479 enc
->sse_
[0] += VP8SSE16x16(in
+ Y_OFF
, out
+ Y_OFF
);
480 enc
->sse_
[1] += VP8SSE8x8(in
+ U_OFF
, out
+ U_OFF
);
481 enc
->sse_
[2] += VP8SSE8x8(in
+ V_OFF
, out
+ V_OFF
);
482 enc
->sse_count_
+= 16 * 16;
485 static void StoreSideInfo(const VP8EncIterator
* const it
) {
486 VP8Encoder
* const enc
= it
->enc_
;
487 const VP8MBInfo
* const mb
= it
->mb_
;
488 WebPPicture
* const pic
= enc
->pic_
;
490 if (pic
->stats
!= NULL
) {
492 enc
->block_count_
[0] += (mb
->type_
== 0);
493 enc
->block_count_
[1] += (mb
->type_
== 1);
494 enc
->block_count_
[2] += (mb
->skip_
!= 0);
497 if (pic
->extra_info
!= NULL
) {
498 uint8_t* const info
= &pic
->extra_info
[it
->x_
+ it
->y_
* enc
->mb_w_
];
499 switch (pic
->extra_info_type
) {
500 case 1: *info
= mb
->type_
; break;
501 case 2: *info
= mb
->segment_
; break;
502 case 3: *info
= enc
->dqm_
[mb
->segment_
].quant_
; break;
503 case 4: *info
= (mb
->type_
== 1) ? it
->preds_
[0] : 0xff; break;
504 case 5: *info
= mb
->uv_mode_
; break;
506 const int b
= (int)((it
->luma_bits_
+ it
->uv_bits_
+ 7) >> 3);
507 *info
= (b
> 255) ? 255 : b
; break;
509 case 7: *info
= mb
->alpha_
; break;
510 default: *info
= 0; break;
513 #if SEGMENT_VISU // visualize segments and prediction modes
514 SetBlock(it
->yuv_out_
+ Y_OFF
, mb
->segment_
* 64, 16);
515 SetBlock(it
->yuv_out_
+ U_OFF
, it
->preds_
[0] * 64, 8);
516 SetBlock(it
->yuv_out_
+ V_OFF
, mb
->uv_mode_
* 64, 8);
520 static double GetPSNR(uint64_t mse
, uint64_t size
) {
521 return (mse
> 0 && size
> 0) ? 10. * log10(255. * 255. * size
/ mse
) : 99;
524 //------------------------------------------------------------------------------
525 // StatLoop(): only collect statistics (number of skips, token usage, ...).
526 // This is used for deciding optimal probabilities. It also modifies the
527 // quantizer value if some target (size, PSNR) was specified.
529 static void SetLoopParams(VP8Encoder
* const enc
, float q
) {
530 // Make sure the quality parameter is inside valid bounds
531 q
= Clamp(q
, 0.f
, 100.f
);
533 VP8SetSegmentParams(enc
, q
); // setup segment quantizations and filters
534 SetSegmentProbas(enc
); // compute segment probabilities
540 static uint64_t OneStatPass(VP8Encoder
* const enc
, VP8RDLevel rd_opt
,
541 int nb_mbs
, int percent_delta
,
542 PassStats
* const s
) {
545 uint64_t size_p0
= 0;
546 uint64_t distortion
= 0;
547 const uint64_t pixel_count
= nb_mbs
* 384;
549 VP8IteratorInit(enc
, &it
);
550 SetLoopParams(enc
, s
->q
);
553 VP8IteratorImport(&it
, NULL
);
554 if (VP8Decimate(&it
, &info
, rd_opt
)) {
555 // Just record the number of skips and act like skip_proba is not used.
556 enc
->proba_
.nb_skip_
++;
558 RecordResiduals(&it
, &info
);
559 size
+= info
.R
+ info
.H
;
561 distortion
+= info
.D
;
562 if (percent_delta
&& !VP8IteratorProgress(&it
, percent_delta
))
564 VP8IteratorSaveBoundary(&it
);
565 } while (VP8IteratorNext(&it
) && --nb_mbs
> 0);
567 size_p0
+= enc
->segment_hdr_
.size_
;
568 if (s
->do_size_search
) {
569 size
+= FinalizeSkipProba(enc
);
570 size
+= FinalizeTokenProbas(&enc
->proba_
);
571 size
= ((size
+ size_p0
+ 1024) >> 11) + HEADER_SIZE_ESTIMATE
;
572 s
->value
= (double)size
;
574 s
->value
= GetPSNR(distortion
, pixel_count
);
579 static int StatLoop(VP8Encoder
* const enc
) {
580 const int method
= enc
->method_
;
581 const int do_search
= enc
->do_search_
;
582 const int fast_probe
= ((method
== 0 || method
== 3) && !do_search
);
583 int num_pass_left
= enc
->config_
->pass
;
584 const int task_percent
= 20;
585 const int percent_per_pass
=
586 (task_percent
+ num_pass_left
/ 2) / num_pass_left
;
587 const int final_percent
= enc
->percent_
+ task_percent
;
588 const VP8RDLevel rd_opt
=
589 (method
>= 3 || do_search
) ? RD_OPT_BASIC
: RD_OPT_NONE
;
590 int nb_mbs
= enc
->mb_w_
* enc
->mb_h_
;
593 InitPassStats(enc
, &stats
);
594 ResetTokenStats(enc
);
596 // Fast mode: quick analysis pass over few mbs. Better than nothing.
598 if (method
== 3) { // we need more stats for method 3 to be reliable.
599 nb_mbs
= (nb_mbs
> 200) ? nb_mbs
>> 1 : 100;
601 nb_mbs
= (nb_mbs
> 200) ? nb_mbs
>> 2 : 50;
605 while (num_pass_left
-- > 0) {
606 const int is_last_pass
= (fabs(stats
.dq
) <= DQ_LIMIT
) ||
607 (num_pass_left
== 0) ||
608 (enc
->max_i4_header_bits_
== 0);
609 const uint64_t size_p0
=
610 OneStatPass(enc
, rd_opt
, nb_mbs
, percent_per_pass
, &stats
);
611 if (size_p0
== 0) return 0;
612 #if (DEBUG_SEARCH > 0)
613 printf("#%d value:%.1lf -> %.1lf q:%.2f -> %.2f\n",
614 num_pass_left
, stats
.last_value
, stats
.value
, stats
.last_q
, stats
.q
);
616 if (enc
->max_i4_header_bits_
> 0 && size_p0
> PARTITION0_SIZE_LIMIT
) {
618 enc
->max_i4_header_bits_
>>= 1; // strengthen header bit limitation...
619 continue; // ...and start over
624 // If no target size: just do several pass without changing 'q'
626 ComputeNextQ(&stats
);
627 if (fabs(stats
.dq
) <= DQ_LIMIT
) break;
630 if (!do_search
|| !stats
.do_size_search
) {
631 // Need to finalize probas now, since it wasn't done during the search.
632 FinalizeSkipProba(enc
);
633 FinalizeTokenProbas(&enc
->proba_
);
635 VP8CalculateLevelCosts(&enc
->proba_
); // finalize costs
636 return WebPReportProgress(enc
->pic_
, final_percent
, &enc
->percent_
);
639 //------------------------------------------------------------------------------
643 static const int kAverageBytesPerMB
[8] = { 50, 24, 16, 9, 7, 5, 3, 2 };
645 static int PreLoopInitialize(VP8Encoder
* const enc
) {
648 const int average_bytes_per_MB
= kAverageBytesPerMB
[enc
->base_quant_
>> 4];
649 const int bytes_per_parts
=
650 enc
->mb_w_
* enc
->mb_h_
* average_bytes_per_MB
/ enc
->num_parts_
;
651 // Initialize the bit-writers
652 for (p
= 0; ok
&& p
< enc
->num_parts_
; ++p
) {
653 ok
= VP8BitWriterInit(enc
->parts_
+ p
, bytes_per_parts
);
656 VP8EncFreeBitWriters(enc
); // malloc error occurred
657 WebPEncodingSetError(enc
->pic_
, VP8_ENC_ERROR_OUT_OF_MEMORY
);
662 static int PostLoopFinalize(VP8EncIterator
* const it
, int ok
) {
663 VP8Encoder
* const enc
= it
->enc_
;
664 if (ok
) { // Finalize the partitions, check for extra errors.
666 for (p
= 0; p
< enc
->num_parts_
; ++p
) {
667 VP8BitWriterFinish(enc
->parts_
+ p
);
668 ok
&= !enc
->parts_
[p
].error_
;
672 if (ok
) { // All good. Finish up.
673 if (enc
->pic_
->stats
!= NULL
) { // finalize byte counters...
675 for (i
= 0; i
<= 2; ++i
) {
676 for (s
= 0; s
< NUM_MB_SEGMENTS
; ++s
) {
677 enc
->residual_bytes_
[i
][s
] = (int)((it
->bit_count_
[s
][i
] + 7) >> 3);
681 VP8AdjustFilterStrength(it
); // ...and store filter stats.
683 // Something bad happened -> need to do some memory cleanup.
684 VP8EncFreeBitWriters(enc
);
689 //------------------------------------------------------------------------------
690 // VP8EncLoop(): does the final bitstream coding.
692 static void ResetAfterSkip(VP8EncIterator
* const it
) {
693 if (it
->mb_
->type_
== 1) {
694 *it
->nz_
= 0; // reset all predictors
697 *it
->nz_
&= (1 << 24); // preserve the dc_nz bit
701 int VP8EncLoop(VP8Encoder
* const enc
) {
703 int ok
= PreLoopInitialize(enc
);
706 StatLoop(enc
); // stats-collection loop
708 VP8IteratorInit(enc
, &it
);
712 const int dont_use_skip
= !enc
->proba_
.use_skip_proba_
;
713 const VP8RDLevel rd_opt
= enc
->rd_opt_level_
;
715 VP8IteratorImport(&it
, NULL
);
716 // Warning! order is important: first call VP8Decimate() and
717 // *then* decide how to code the skip decision if there's one.
718 if (!VP8Decimate(&it
, &info
, rd_opt
) || dont_use_skip
) {
719 CodeResiduals(it
.bw_
, &it
, &info
);
720 } else { // reset predictors after a skip
724 VP8StoreFilterStats(&it
);
725 VP8IteratorExport(&it
);
726 ok
= VP8IteratorProgress(&it
, 20);
727 VP8IteratorSaveBoundary(&it
);
728 } while (ok
&& VP8IteratorNext(&it
));
730 return PostLoopFinalize(&it
, ok
);
733 //------------------------------------------------------------------------------
734 // Single pass using Token Buffer.
736 #if !defined(DISABLE_TOKEN_BUFFER)
738 #define MIN_COUNT 96 // minimum number of macroblocks before updating stats
740 int VP8EncTokenLoop(VP8Encoder
* const enc
) {
741 // Roughly refresh the proba eight times per pass
742 int max_count
= (enc
->mb_w_
* enc
->mb_h_
) >> 3;
743 int num_pass_left
= enc
->config_
->pass
;
744 const int do_search
= enc
->do_search_
;
746 VP8Proba
* const proba
= &enc
->proba_
;
747 const VP8RDLevel rd_opt
= enc
->rd_opt_level_
;
748 const uint64_t pixel_count
= enc
->mb_w_
* enc
->mb_h_
* 384;
752 InitPassStats(enc
, &stats
);
753 ok
= PreLoopInitialize(enc
);
756 if (max_count
< MIN_COUNT
) max_count
= MIN_COUNT
;
758 assert(enc
->num_parts_
== 1);
759 assert(enc
->use_tokens_
);
760 assert(proba
->use_skip_proba_
== 0);
761 assert(rd_opt
>= RD_OPT_BASIC
); // otherwise, token-buffer won't be useful
762 assert(num_pass_left
> 0);
764 while (ok
&& num_pass_left
-- > 0) {
765 const int is_last_pass
= (fabs(stats
.dq
) <= DQ_LIMIT
) ||
766 (num_pass_left
== 0) ||
767 (enc
->max_i4_header_bits_
== 0);
768 uint64_t size_p0
= 0;
769 uint64_t distortion
= 0;
771 VP8IteratorInit(enc
, &it
);
772 SetLoopParams(enc
, stats
.q
);
774 ResetTokenStats(enc
);
775 VP8InitFilter(&it
); // don't collect stats until last pass (too costly)
777 VP8TBufferClear(&enc
->tokens_
);
780 VP8IteratorImport(&it
, NULL
);
782 FinalizeTokenProbas(proba
);
783 VP8CalculateLevelCosts(proba
); // refresh cost tables for rd-opt
786 VP8Decimate(&it
, &info
, rd_opt
);
787 ok
= RecordTokens(&it
, &info
, &enc
->tokens_
);
789 WebPEncodingSetError(enc
->pic_
, VP8_ENC_ERROR_OUT_OF_MEMORY
);
793 distortion
+= info
.D
;
796 VP8StoreFilterStats(&it
);
797 VP8IteratorExport(&it
);
798 ok
= VP8IteratorProgress(&it
, 20);
800 VP8IteratorSaveBoundary(&it
);
801 } while (ok
&& VP8IteratorNext(&it
));
804 size_p0
+= enc
->segment_hdr_
.size_
;
805 if (stats
.do_size_search
) {
806 uint64_t size
= FinalizeTokenProbas(&enc
->proba_
);
807 size
+= VP8EstimateTokenSize(&enc
->tokens_
,
808 (const uint8_t*)proba
->coeffs_
);
809 size
= (size
+ size_p0
+ 1024) >> 11; // -> size in bytes
810 size
+= HEADER_SIZE_ESTIMATE
;
811 stats
.value
= (double)size
;
812 } else { // compute and store PSNR
813 stats
.value
= GetPSNR(distortion
, pixel_count
);
816 #if (DEBUG_SEARCH > 0)
817 printf("#%2d metric:%.1lf -> %.1lf last_q=%.2lf q=%.2lf dq=%.2lf\n",
818 num_pass_left
, stats
.last_value
, stats
.value
,
819 stats
.last_q
, stats
.q
, stats
.dq
);
821 if (size_p0
> PARTITION0_SIZE_LIMIT
) {
823 enc
->max_i4_header_bits_
>>= 1; // strengthen header bit limitation...
824 continue; // ...and start over
830 ComputeNextQ(&stats
); // Adjust q
834 if (!stats
.do_size_search
) {
835 FinalizeTokenProbas(&enc
->proba_
);
837 ok
= VP8EmitTokens(&enc
->tokens_
, enc
->parts_
+ 0,
838 (const uint8_t*)proba
->coeffs_
, 1);
840 ok
= ok
&& WebPReportProgress(enc
->pic_
, enc
->percent_
+ 20, &enc
->percent_
);
841 return PostLoopFinalize(&it
, ok
);
846 int VP8EncTokenLoop(VP8Encoder
* const enc
) {
848 return 0; // we shouldn't be here.
851 #endif // DISABLE_TOKEN_BUFFER
853 //------------------------------------------------------------------------------