00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013
00014
00015
00016
00017
00018
00019
00030 #include <stdio.h>
00031 #include <stdlib.h>
00032 #include <string.h>
00033 #include <unistd.h>
00034
00035 #include "common.h"
00036 #include "avcodec.h"
00037 #include "dsputil.h"
00038
00039 #include "truemotion1data.h"
00040
00041 typedef struct TrueMotion1Context {
00042 AVCodecContext *avctx;
00043 AVFrame frame;
00044 AVFrame prev_frame;
00045
00046 uint8_t *buf;
00047 int size;
00048
00049 uint8_t *mb_change_bits;
00050 int mb_change_bits_row_size;
00051 uint8_t *index_stream;
00052 int index_stream_size;
00053
00054 int flags;
00055 int x, y, w, h;
00056
00057 uint32_t y_predictor_table[1024];
00058 uint32_t c_predictor_table[1024];
00059 uint32_t fat_y_predictor_table[1024];
00060 uint32_t fat_c_predictor_table[1024];
00061
00062 int compression;
00063 int block_type;
00064 int block_width;
00065 int block_height;
00066
00067 int16_t ydt[8];
00068 int16_t cdt[8];
00069 int16_t fat_ydt[8];
00070 int16_t fat_cdt[8];
00071
00072 int last_deltaset, last_vectable;
00073
00074 unsigned int *vert_pred;
00075
00076 } TrueMotion1Context;
00077
00078 #define FLAG_SPRITE 32
00079 #define FLAG_KEYFRAME 16
00080 #define FLAG_INTERFRAME 8
00081 #define FLAG_INTERPOLATED 4
00082
00083 struct frame_header {
00084 uint8_t header_size;
00085 uint8_t compression;
00086 uint8_t deltaset;
00087 uint8_t vectable;
00088 uint16_t ysize;
00089 uint16_t xsize;
00090 uint16_t checksum;
00091 uint8_t version;
00092 uint8_t header_type;
00093 uint8_t flags;
00094 uint8_t control;
00095 uint16_t xoffset;
00096 uint16_t yoffset;
00097 uint16_t width;
00098 uint16_t height;
00099 };
00100
00101 #define ALGO_NOP 0
00102 #define ALGO_RGB16V 1
00103 #define ALGO_RGB16H 2
00104 #define ALGO_RGB24H 3
00105
00106
00107 #define BLOCK_2x2 0
00108 #define BLOCK_2x4 1
00109 #define BLOCK_4x2 2
00110 #define BLOCK_4x4 3
00111
00112 typedef struct comp_types {
00113 int algorithm;
00114 int block_width;
00115 int block_height;
00116 int block_type;
00117 } comp_types;
00118
00119
00120 static comp_types compression_types[17] = {
00121 { ALGO_NOP, 0, 0, 0 },
00122
00123 { ALGO_RGB16V, 4, 4, BLOCK_4x4 },
00124 { ALGO_RGB16H, 4, 4, BLOCK_4x4 },
00125 { ALGO_RGB16V, 4, 2, BLOCK_4x2 },
00126 { ALGO_RGB16H, 4, 2, BLOCK_4x2 },
00127
00128 { ALGO_RGB16V, 2, 4, BLOCK_2x4 },
00129 { ALGO_RGB16H, 2, 4, BLOCK_2x4 },
00130 { ALGO_RGB16V, 2, 2, BLOCK_2x2 },
00131 { ALGO_RGB16H, 2, 2, BLOCK_2x2 },
00132
00133 { ALGO_NOP, 4, 4, BLOCK_4x4 },
00134 { ALGO_RGB24H, 4, 4, BLOCK_4x4 },
00135 { ALGO_NOP, 4, 2, BLOCK_4x2 },
00136 { ALGO_RGB24H, 4, 2, BLOCK_4x2 },
00137
00138 { ALGO_NOP, 2, 4, BLOCK_2x4 },
00139 { ALGO_RGB24H, 2, 4, BLOCK_2x4 },
00140 { ALGO_NOP, 2, 2, BLOCK_2x2 },
00141 { ALGO_RGB24H, 2, 2, BLOCK_2x2 }
00142 };
00143
00144 static void select_delta_tables(TrueMotion1Context *s, int delta_table_index)
00145 {
00146 int i;
00147
00148 if (delta_table_index > 3)
00149 return;
00150
00151 memcpy(s->ydt, ydts[delta_table_index], 8 * sizeof(int16_t));
00152 memcpy(s->cdt, cdts[delta_table_index], 8 * sizeof(int16_t));
00153 memcpy(s->fat_ydt, fat_ydts[delta_table_index], 8 * sizeof(int16_t));
00154 memcpy(s->fat_cdt, fat_cdts[delta_table_index], 8 * sizeof(int16_t));
00155
00156
00157
00158 for (i = 0; i < 8; i++)
00159 {
00160
00161
00162 s->ydt[i] &= 0xFFFE;
00163 s->ydt[i] /= 2;
00164 }
00165 }
00166
00167 #ifdef WORDS_BIGENDIAN
00168 static int make_ydt15_entry(int p2, int p1, int16_t *ydt)
00169 #else
00170 static int make_ydt15_entry(int p1, int p2, int16_t *ydt)
00171 #endif
00172 {
00173 int lo, hi;
00174
00175 lo = ydt[p1];
00176 lo += (lo << 5) + (lo << 10);
00177 hi = ydt[p2];
00178 hi += (hi << 5) + (hi << 10);
00179 return ((lo + (hi << 16)) << 1);
00180 }
00181
00182 #ifdef WORDS_BIGENDIAN
00183 static int make_cdt15_entry(int p2, int p1, int16_t *cdt)
00184 #else
00185 static int make_cdt15_entry(int p1, int p2, int16_t *cdt)
00186 #endif
00187 {
00188 int r, b, lo;
00189
00190 b = cdt[p2];
00191 r = cdt[p1] << 10;
00192 lo = b + r;
00193 return ((lo + (lo << 16)) << 1);
00194 }
00195
00196 #ifdef WORDS_BIGENDIAN
00197 static int make_ydt16_entry(int p2, int p1, int16_t *ydt)
00198 #else
00199 static int make_ydt16_entry(int p1, int p2, int16_t *ydt)
00200 #endif
00201 {
00202 int lo, hi;
00203
00204 lo = ydt[p1];
00205 lo += (lo << 6) + (lo << 11);
00206 hi = ydt[p2];
00207 hi += (hi << 6) + (hi << 11);
00208 return ((lo + (hi << 16)) << 1);
00209 }
00210
00211 #ifdef WORDS_BIGENDIAN
00212 static int make_cdt16_entry(int p2, int p1, int16_t *cdt)
00213 #else
00214 static int make_cdt16_entry(int p1, int p2, int16_t *cdt)
00215 #endif
00216 {
00217 int r, b, lo;
00218
00219 b = cdt[p2];
00220 r = cdt[p1] << 11;
00221 lo = b + r;
00222 return ((lo + (lo << 16)) << 1);
00223 }
00224
00225 #ifdef WORDS_BIGENDIAN
00226 static int make_ydt24_entry(int p2, int p1, int16_t *ydt)
00227 #else
00228 static int make_ydt24_entry(int p1, int p2, int16_t *ydt)
00229 #endif
00230 {
00231 int lo, hi;
00232
00233 lo = ydt[p1];
00234 hi = ydt[p2];
00235 return ((lo + (hi << 8)) << 1);
00236 }
00237
00238 #ifdef WORDS_BIGENDIAN
00239 static int make_cdt24_entry(int p2, int p1, int16_t *cdt)
00240 #else
00241 static int make_cdt24_entry(int p1, int p2, int16_t *cdt)
00242 #endif
00243 {
00244 int r, b;
00245
00246 b = cdt[p2];
00247 r = cdt[p1]<<16;
00248 return ((b+r) << 1);
00249 }
00250
00251 static void gen_vector_table15(TrueMotion1Context *s, const uint8_t *sel_vector_table)
00252 {
00253 int len, i, j;
00254 unsigned char delta_pair;
00255
00256 for (i = 0; i < 1024; i += 4)
00257 {
00258 len = *sel_vector_table++ / 2;
00259 for (j = 0; j < len; j++)
00260 {
00261 delta_pair = *sel_vector_table++;
00262 s->y_predictor_table[i+j] = 0xfffffffe &
00263 make_ydt15_entry(delta_pair >> 4, delta_pair & 0xf, s->ydt);
00264 s->c_predictor_table[i+j] = 0xfffffffe &
00265 make_cdt15_entry(delta_pair >> 4, delta_pair & 0xf, s->cdt);
00266 }
00267 s->y_predictor_table[i+(j-1)] |= 1;
00268 s->c_predictor_table[i+(j-1)] |= 1;
00269 }
00270 }
00271
00272 static void gen_vector_table16(TrueMotion1Context *s, const uint8_t *sel_vector_table)
00273 {
00274 int len, i, j;
00275 unsigned char delta_pair;
00276
00277 for (i = 0; i < 1024; i += 4)
00278 {
00279 len = *sel_vector_table++ / 2;
00280 for (j = 0; j < len; j++)
00281 {
00282 delta_pair = *sel_vector_table++;
00283 s->y_predictor_table[i+j] = 0xfffffffe &
00284 make_ydt16_entry(delta_pair >> 4, delta_pair & 0xf, s->ydt);
00285 s->c_predictor_table[i+j] = 0xfffffffe &
00286 make_cdt16_entry(delta_pair >> 4, delta_pair & 0xf, s->cdt);
00287 }
00288 s->y_predictor_table[i+(j-1)] |= 1;
00289 s->c_predictor_table[i+(j-1)] |= 1;
00290 }
00291 }
00292
00293 static void gen_vector_table24(TrueMotion1Context *s, const uint8_t *sel_vector_table)
00294 {
00295 int len, i, j;
00296 unsigned char delta_pair;
00297
00298 for (i = 0; i < 1024; i += 4)
00299 {
00300 len = *sel_vector_table++ / 2;
00301 for (j = 0; j < len; j++)
00302 {
00303 delta_pair = *sel_vector_table++;
00304 s->y_predictor_table[i+j] = 0xfffffffe &
00305 make_ydt24_entry(delta_pair >> 4, delta_pair & 0xf, s->ydt);
00306 s->c_predictor_table[i+j] = 0xfffffffe &
00307 make_cdt24_entry(delta_pair >> 4, delta_pair & 0xf, s->cdt);
00308 s->fat_y_predictor_table[i+j] = 0xfffffffe &
00309 make_ydt24_entry(delta_pair >> 4, delta_pair & 0xf, s->fat_ydt);
00310 s->fat_c_predictor_table[i+j] = 0xfffffffe &
00311 make_cdt24_entry(delta_pair >> 4, delta_pair & 0xf, s->fat_cdt);
00312 }
00313 s->y_predictor_table[i+(j-1)] |= 1;
00314 s->c_predictor_table[i+(j-1)] |= 1;
00315 s->fat_y_predictor_table[i+(j-1)] |= 1;
00316 s->fat_c_predictor_table[i+(j-1)] |= 1;
00317 }
00318 }
00319
00320
00321
00322 static int truemotion1_decode_header(TrueMotion1Context *s)
00323 {
00324 int i;
00325 struct frame_header header;
00326 uint8_t header_buffer[128];
00327 const uint8_t *sel_vector_table;
00328
00329
00330
00331
00332 s->mb_change_bits_row_size = ((s->avctx->width >> 2) + 7) >> 3;
00333
00334 header.header_size = ((s->buf[0] >> 5) | (s->buf[0] << 3)) & 0x7f;
00335 if (s->buf[0] < 0x10)
00336 {
00337 av_log(s->avctx, AV_LOG_ERROR, "invalid header size (%d)\n", s->buf[0]);
00338 return -1;
00339 }
00340
00341
00342 memset(header_buffer, 0, 128);
00343 for (i = 1; i < header.header_size; i++)
00344 header_buffer[i - 1] = s->buf[i] ^ s->buf[i + 1];
00345
00346 header.compression = header_buffer[0];
00347 header.deltaset = header_buffer[1];
00348 header.vectable = header_buffer[2];
00349 header.ysize = LE_16(&header_buffer[3]);
00350 header.xsize = LE_16(&header_buffer[5]);
00351 header.checksum = LE_16(&header_buffer[7]);
00352 header.version = header_buffer[9];
00353 header.header_type = header_buffer[10];
00354 header.flags = header_buffer[11];
00355 header.control = header_buffer[12];
00356
00357
00358 if (header.version >= 2)
00359 {
00360 if (header.header_type > 3)
00361 {
00362 av_log(s->avctx, AV_LOG_ERROR, "invalid header type (%d)\n", header.header_type);
00363 return -1;
00364 } else if ((header.header_type == 2) || (header.header_type == 3)) {
00365 s->flags = header.flags;
00366 if (!(s->flags & FLAG_INTERFRAME))
00367 s->flags |= FLAG_KEYFRAME;
00368 } else
00369 s->flags = FLAG_KEYFRAME;
00370 } else
00371 s->flags = FLAG_KEYFRAME;
00372
00373 if (s->flags & FLAG_SPRITE) {
00374 av_log(s->avctx, AV_LOG_INFO, "SPRITE frame found, please report the sample to the developers\n");
00375 s->w = header.width;
00376 s->h = header.height;
00377 s->x = header.xoffset;
00378 s->y = header.yoffset;
00379 } else {
00380 s->w = header.xsize;
00381 s->h = header.ysize;
00382 if (header.header_type < 2) {
00383 if ((s->w < 213) && (s->h >= 176))
00384 {
00385 s->flags |= FLAG_INTERPOLATED;
00386 av_log(s->avctx, AV_LOG_INFO, "INTERPOLATION selected, please report the sample to the developers\n");
00387 }
00388 }
00389 }
00390
00391 if (header.compression > 17) {
00392 av_log(s->avctx, AV_LOG_ERROR, "invalid compression type (%d)\n", header.compression);
00393 return -1;
00394 }
00395
00396 if ((header.deltaset != s->last_deltaset) ||
00397 (header.vectable != s->last_vectable))
00398 select_delta_tables(s, header.deltaset);
00399
00400 if ((header.compression & 1) && header.header_type)
00401 sel_vector_table = pc_tbl2;
00402 else {
00403 if (header.vectable < 4)
00404 sel_vector_table = tables[header.vectable - 1];
00405 else {
00406 av_log(s->avctx, AV_LOG_ERROR, "invalid vector table id (%d)\n", header.vectable);
00407 return -1;
00408 }
00409 }
00410
00411
00412 if (compression_types[header.compression].algorithm == ALGO_RGB24H)
00413 s->avctx->pix_fmt = PIX_FMT_BGR24;
00414 else
00415 s->avctx->pix_fmt = PIX_FMT_RGB555;
00416
00417 if ((header.deltaset != s->last_deltaset) || (header.vectable != s->last_vectable))
00418 {
00419 if (compression_types[header.compression].algorithm == ALGO_RGB24H)
00420 gen_vector_table24(s, sel_vector_table);
00421 else
00422 if (s->avctx->pix_fmt == PIX_FMT_RGB555)
00423 gen_vector_table15(s, sel_vector_table);
00424 else
00425 gen_vector_table16(s, sel_vector_table);
00426 }
00427
00428
00429 s->mb_change_bits = s->buf + header.header_size;
00430 if (s->flags & FLAG_KEYFRAME) {
00431
00432 s->index_stream = s->mb_change_bits;
00433 } else {
00434
00435 s->index_stream = s->mb_change_bits +
00436 (s->mb_change_bits_row_size * (s->avctx->height >> 2));
00437 }
00438 s->index_stream_size = s->size - (s->index_stream - s->buf);
00439
00440 s->last_deltaset = header.deltaset;
00441 s->last_vectable = header.vectable;
00442 s->compression = header.compression;
00443 s->block_width = compression_types[header.compression].block_width;
00444 s->block_height = compression_types[header.compression].block_height;
00445 s->block_type = compression_types[header.compression].block_type;
00446
00447 if (s->avctx->debug & FF_DEBUG_PICT_INFO)
00448 av_log(s->avctx, AV_LOG_INFO, "tables: %d / %d c:%d %dx%d t:%d %s%s%s%s\n",
00449 s->last_deltaset, s->last_vectable, s->compression, s->block_width,
00450 s->block_height, s->block_type,
00451 s->flags & FLAG_KEYFRAME ? " KEY" : "",
00452 s->flags & FLAG_INTERFRAME ? " INTER" : "",
00453 s->flags & FLAG_SPRITE ? " SPRITE" : "",
00454 s->flags & FLAG_INTERPOLATED ? " INTERPOL" : "");
00455
00456 return header.header_size;
00457 }
00458
00459 static int truemotion1_decode_init(AVCodecContext *avctx)
00460 {
00461 TrueMotion1Context *s = (TrueMotion1Context *)avctx->priv_data;
00462
00463 s->avctx = avctx;
00464
00465
00466
00467
00468
00469
00470
00471 avctx->has_b_frames = 0;
00472 s->frame.data[0] = s->prev_frame.data[0] = NULL;
00473
00474
00475
00476 s->vert_pred =
00477 (unsigned int *)av_malloc(s->avctx->width * sizeof(unsigned short));
00478
00479 return 0;
00480 }
00481
00482
00483
00484
00485
00486
00487
00488
00489
00490
00491
00492
00493
00494
00495
00496
00497
00498
00499
00500
00501
00502
00503
00504
00505
00506
00507
00508 #define GET_NEXT_INDEX() \
00509 {\
00510 if (index_stream_index >= s->index_stream_size) { \
00511 av_log(s->avctx, AV_LOG_INFO, " help! truemotion1 decoder went out of bounds\n"); \
00512 return; \
00513 } \
00514 index = s->index_stream[index_stream_index++] * 4; \
00515 }
00516
00517 #define APPLY_C_PREDICTOR() \
00518 predictor_pair = s->c_predictor_table[index]; \
00519 horiz_pred += (predictor_pair >> 1); \
00520 if (predictor_pair & 1) { \
00521 GET_NEXT_INDEX() \
00522 if (!index) { \
00523 GET_NEXT_INDEX() \
00524 predictor_pair = s->c_predictor_table[index]; \
00525 horiz_pred += ((predictor_pair >> 1) * 5); \
00526 if (predictor_pair & 1) \
00527 GET_NEXT_INDEX() \
00528 else \
00529 index++; \
00530 } \
00531 } else \
00532 index++;
00533
00534 #define APPLY_C_PREDICTOR_24() \
00535 predictor_pair = s->c_predictor_table[index]; \
00536 c_horiz_pred += (predictor_pair >> 1); \
00537 if (predictor_pair & 1) { \
00538 GET_NEXT_INDEX() \
00539 if (!index) { \
00540 GET_NEXT_INDEX() \
00541 predictor_pair = s->fat_c_predictor_table[index]; \
00542 c_horiz_pred += (predictor_pair >> 1); \
00543 if (predictor_pair & 1) \
00544 GET_NEXT_INDEX() \
00545 else \
00546 index++; \
00547 } \
00548 } else \
00549 index++;
00550
00551
00552
00553 #define APPLY_Y_PREDICTOR() \
00554 predictor_pair = s->y_predictor_table[index]; \
00555 horiz_pred += (predictor_pair >> 1); \
00556 if (predictor_pair & 1) { \
00557 GET_NEXT_INDEX() \
00558 if (!index) { \
00559 GET_NEXT_INDEX() \
00560 predictor_pair = s->y_predictor_table[index]; \
00561 horiz_pred += ((predictor_pair >> 1) * 5); \
00562 if (predictor_pair & 1) \
00563 GET_NEXT_INDEX() \
00564 else \
00565 index++; \
00566 } \
00567 } else \
00568 index++;
00569
00570 #define APPLY_Y_PREDICTOR_24() \
00571 predictor_pair = s->y_predictor_table[index]; \
00572 horiz_pred += (predictor_pair >> 1); \
00573 if (predictor_pair & 1) { \
00574 GET_NEXT_INDEX() \
00575 if (!index) { \
00576 GET_NEXT_INDEX() \
00577 predictor_pair = s->fat_y_predictor_table[index]; \
00578 horiz_pred += (predictor_pair >> 1); \
00579 if (predictor_pair & 1) \
00580 GET_NEXT_INDEX() \
00581 else \
00582 index++; \
00583 } \
00584 } else \
00585 index++;
00586
00587 #define OUTPUT_PIXEL_PAIR() \
00588 *current_pixel_pair = *vert_pred + horiz_pred; \
00589 *vert_pred++ = *current_pixel_pair++; \
00590 prev_pixel_pair++;
00591
00592 static void truemotion1_decode_16bit(TrueMotion1Context *s)
00593 {
00594 int y;
00595 int pixels_left;
00596 unsigned int predictor_pair;
00597 unsigned int horiz_pred;
00598 unsigned int *vert_pred;
00599 unsigned int *current_pixel_pair;
00600 unsigned int *prev_pixel_pair;
00601 unsigned char *current_line = s->frame.data[0];
00602 unsigned char *prev_line = s->prev_frame.data[0];
00603 int keyframe = s->flags & FLAG_KEYFRAME;
00604
00605
00606 unsigned char *mb_change_bits = s->mb_change_bits;
00607 unsigned char mb_change_byte;
00608 unsigned char mb_change_byte_mask;
00609 int mb_change_index;
00610
00611
00612 int index_stream_index = 0;
00613 int index;
00614
00615
00616 memset(s->vert_pred, 0, s->avctx->width * sizeof(unsigned short));
00617
00618 GET_NEXT_INDEX();
00619
00620 for (y = 0; y < s->avctx->height; y++) {
00621
00622
00623 horiz_pred = 0;
00624 current_pixel_pair = (unsigned int *)current_line;
00625 prev_pixel_pair = (unsigned int *)prev_line;
00626 vert_pred = s->vert_pred;
00627 mb_change_index = 0;
00628 mb_change_byte = mb_change_bits[mb_change_index++];
00629 mb_change_byte_mask = 0x01;
00630 pixels_left = s->avctx->width;
00631
00632 while (pixels_left > 0) {
00633
00634 if (keyframe || ((mb_change_byte & mb_change_byte_mask) == 0)) {
00635
00636 switch (y & 3) {
00637 case 0:
00638
00639
00640 if (s->block_width == 2) {
00641 APPLY_C_PREDICTOR();
00642 APPLY_Y_PREDICTOR();
00643 OUTPUT_PIXEL_PAIR();
00644 APPLY_C_PREDICTOR();
00645 APPLY_Y_PREDICTOR();
00646 OUTPUT_PIXEL_PAIR();
00647 } else {
00648 APPLY_C_PREDICTOR();
00649 APPLY_Y_PREDICTOR();
00650 OUTPUT_PIXEL_PAIR();
00651 APPLY_Y_PREDICTOR();
00652 OUTPUT_PIXEL_PAIR();
00653 }
00654 break;
00655
00656 case 1:
00657 case 3:
00658
00659 APPLY_Y_PREDICTOR();
00660 OUTPUT_PIXEL_PAIR();
00661 APPLY_Y_PREDICTOR();
00662 OUTPUT_PIXEL_PAIR();
00663 break;
00664
00665 case 2:
00666
00667
00668 if (s->block_type == BLOCK_2x2) {
00669 APPLY_C_PREDICTOR();
00670 APPLY_Y_PREDICTOR();
00671 OUTPUT_PIXEL_PAIR();
00672 APPLY_C_PREDICTOR();
00673 APPLY_Y_PREDICTOR();
00674 OUTPUT_PIXEL_PAIR();
00675 } else if (s->block_type == BLOCK_4x2) {
00676 APPLY_C_PREDICTOR();
00677 APPLY_Y_PREDICTOR();
00678 OUTPUT_PIXEL_PAIR();
00679 APPLY_Y_PREDICTOR();
00680 OUTPUT_PIXEL_PAIR();
00681 } else {
00682 APPLY_Y_PREDICTOR();
00683 OUTPUT_PIXEL_PAIR();
00684 APPLY_Y_PREDICTOR();
00685 OUTPUT_PIXEL_PAIR();
00686 }
00687 break;
00688 }
00689
00690 } else {
00691
00692
00693
00694 *current_pixel_pair = *prev_pixel_pair++;
00695 *vert_pred++ = *current_pixel_pair++;
00696 *current_pixel_pair = *prev_pixel_pair++;
00697 horiz_pred = *current_pixel_pair - *vert_pred;
00698 *vert_pred++ = *current_pixel_pair++;
00699
00700 }
00701
00702 if (!keyframe) {
00703 mb_change_byte_mask <<= 1;
00704
00705
00706 if (!mb_change_byte_mask) {
00707 mb_change_byte = mb_change_bits[mb_change_index++];
00708 mb_change_byte_mask = 0x01;
00709 }
00710 }
00711
00712 pixels_left -= 4;
00713 }
00714
00715
00716 if (((y + 1) & 3) == 0)
00717 mb_change_bits += s->mb_change_bits_row_size;
00718
00719 current_line += s->frame.linesize[0];
00720 prev_line += s->prev_frame.linesize[0];
00721 }
00722 }
00723
00724 static void truemotion1_decode_24bit(TrueMotion1Context *s)
00725 {
00726 int y;
00727 int pixels_left;
00728 unsigned int predictor_pair;
00729 unsigned int horiz_pred;
00730 unsigned int c_horiz_pred;
00731 unsigned int *vert_pred;
00732 unsigned int *current_pixel_pair;
00733 unsigned int *prev_pixel_pair;
00734 unsigned char *current_line = s->frame.data[0];
00735 unsigned char *prev_line = s->prev_frame.data[0];
00736 int keyframe = s->flags & FLAG_KEYFRAME;
00737
00738
00739 unsigned char *mb_change_bits = s->mb_change_bits;
00740 unsigned char mb_change_byte;
00741 unsigned char mb_change_byte_mask;
00742 int mb_change_index;
00743
00744
00745 int index_stream_index = 0;
00746 int index;
00747
00748
00749 memset(s->vert_pred, 0, s->avctx->width * sizeof(unsigned short));
00750
00751 GET_NEXT_INDEX();
00752
00753 for (y = 0; y < s->avctx->height; y++) {
00754
00755
00756 horiz_pred = c_horiz_pred = 0;
00757 current_pixel_pair = (unsigned int *)current_line;
00758 prev_pixel_pair = (unsigned int *)prev_line;
00759 vert_pred = s->vert_pred;
00760 mb_change_index = 0;
00761 mb_change_byte = mb_change_bits[mb_change_index++];
00762 mb_change_byte_mask = 0x01;
00763 pixels_left = s->avctx->width;
00764
00765 while (pixels_left > 0) {
00766
00767 if (keyframe || ((mb_change_byte & mb_change_byte_mask) == 0)) {
00768
00769 switch (y & 3) {
00770 case 0:
00771
00772
00773 if (s->block_width == 2) {
00774 APPLY_C_PREDICTOR_24();
00775 APPLY_Y_PREDICTOR_24();
00776 OUTPUT_PIXEL_PAIR();
00777
00778 APPLY_C_PREDICTOR_24();
00779 APPLY_Y_PREDICTOR_24();
00780 OUTPUT_PIXEL_PAIR();
00781
00782 } else {
00783 APPLY_C_PREDICTOR_24();
00784 APPLY_Y_PREDICTOR_24();
00785 OUTPUT_PIXEL_PAIR();
00786
00787 APPLY_Y_PREDICTOR_24();
00788 OUTPUT_PIXEL_PAIR();
00789
00790 }
00791 break;
00792
00793 case 1:
00794 case 3:
00795
00796 APPLY_Y_PREDICTOR_24();
00797 OUTPUT_PIXEL_PAIR();
00798 APPLY_Y_PREDICTOR_24();
00799 OUTPUT_PIXEL_PAIR();
00800 break;
00801
00802 case 2:
00803
00804
00805 if (s->block_type == BLOCK_2x2) {
00806 APPLY_C_PREDICTOR_24();
00807 APPLY_Y_PREDICTOR_24();
00808 OUTPUT_PIXEL_PAIR();
00809
00810 APPLY_C_PREDICTOR_24();
00811 APPLY_Y_PREDICTOR_24();
00812 OUTPUT_PIXEL_PAIR();
00813
00814 } else if (s->block_type == BLOCK_4x2) {
00815 APPLY_C_PREDICTOR_24();
00816 APPLY_Y_PREDICTOR_24();
00817 OUTPUT_PIXEL_PAIR();
00818
00819 APPLY_Y_PREDICTOR_24();
00820 OUTPUT_PIXEL_PAIR();
00821
00822 } else {
00823 APPLY_Y_PREDICTOR_24();
00824 OUTPUT_PIXEL_PAIR();
00825 APPLY_Y_PREDICTOR_24();
00826 OUTPUT_PIXEL_PAIR();
00827 }
00828 break;
00829 }
00830
00831 } else {
00832
00833
00834
00835 *current_pixel_pair = *prev_pixel_pair++;
00836 *vert_pred++ = *current_pixel_pair++;
00837 *current_pixel_pair = *prev_pixel_pair++;
00838 horiz_pred = *current_pixel_pair - *vert_pred;
00839
00840 *vert_pred++ = *current_pixel_pair++;
00841
00842 }
00843
00844 if (!keyframe) {
00845 mb_change_byte_mask <<= 1;
00846
00847
00848 if (!mb_change_byte_mask) {
00849 mb_change_byte = mb_change_bits[mb_change_index++];
00850 mb_change_byte_mask = 0x01;
00851 }
00852 }
00853
00854 pixels_left -= 4;
00855 }
00856
00857
00858 if (((y + 1) & 3) == 0)
00859 mb_change_bits += s->mb_change_bits_row_size;
00860
00861 current_line += s->frame.linesize[0];
00862 prev_line += s->prev_frame.linesize[0];
00863 }
00864 }
00865
00866
00867 static int truemotion1_decode_frame(AVCodecContext *avctx,
00868 void *data, int *data_size,
00869 uint8_t *buf, int buf_size)
00870 {
00871 TrueMotion1Context *s = (TrueMotion1Context *)avctx->priv_data;
00872
00873 s->buf = buf;
00874 s->size = buf_size;
00875
00876 if (truemotion1_decode_header(s) == -1)
00877 return -1;
00878
00879 s->frame.reference = 1;
00880 if (avctx->get_buffer(avctx, &s->frame) < 0) {
00881 av_log(s->avctx, AV_LOG_ERROR, "get_buffer() failed\n");
00882 return -1;
00883 }
00884
00885
00886 if (compression_types[s->compression].algorithm == ALGO_NOP)
00887 {
00888 memcpy(s->frame.data[0], s->prev_frame.data[0],
00889 s->frame.linesize[0] * s->avctx->height);
00890 } else if (compression_types[s->compression].algorithm == ALGO_RGB24H) {
00891 truemotion1_decode_24bit(s);
00892 } else {
00893 truemotion1_decode_16bit(s);
00894 }
00895
00896 if (s->prev_frame.data[0])
00897 avctx->release_buffer(avctx, &s->prev_frame);
00898
00899
00900 s->prev_frame = s->frame;
00901
00902 *data_size = sizeof(AVFrame);
00903 *(AVFrame*)data = s->frame;
00904
00905
00906 return buf_size;
00907 }
00908
00909 static int truemotion1_decode_end(AVCodecContext *avctx)
00910 {
00911 TrueMotion1Context *s = (TrueMotion1Context *)avctx->priv_data;
00912
00913
00914 if (s->prev_frame.data[0])
00915 avctx->release_buffer(avctx, &s->prev_frame);
00916
00917 av_free(s->vert_pred);
00918
00919 return 0;
00920 }
00921
00922 AVCodec truemotion1_decoder = {
00923 "truemotion1",
00924 CODEC_TYPE_VIDEO,
00925 CODEC_ID_TRUEMOTION1,
00926 sizeof(TrueMotion1Context),
00927 truemotion1_decode_init,
00928 NULL,
00929 truemotion1_decode_end,
00930 truemotion1_decode_frame,
00931 CODEC_CAP_DR1,
00932 };