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00019 #include "avcodec.h"
00020
00021
00022
00023 typedef struct DVDSubContext {
00024 } DVDSubContext;
00025
00026 static int dvdsub_init_decoder(AVCodecContext *avctx)
00027 {
00028 return 0;
00029 }
00030
00031 uint16_t getbe16(const uint8_t *p)
00032 {
00033 return (p[0] << 8) | p[1];
00034 }
00035
00036 int get_nibble(const uint8_t *buf, int nibble_offset)
00037 {
00038 return (buf[nibble_offset >> 1] >> ((1 - (nibble_offset & 1)) << 2)) & 0xf;
00039 }
00040
00041 static int decode_rle(uint8_t *bitmap, int linesize, int w, int h,
00042 const uint8_t *buf, int nibble_offset, int buf_size)
00043 {
00044 unsigned int v;
00045 int x, y, len, color, nibble_end;
00046 uint8_t *d;
00047
00048 nibble_end = buf_size * 2;
00049 x = 0;
00050 y = 0;
00051 d = bitmap;
00052 for(;;) {
00053 if (nibble_offset >= nibble_end)
00054 return -1;
00055 v = get_nibble(buf, nibble_offset++);
00056 if (v < 0x4) {
00057 v = (v << 4) | get_nibble(buf, nibble_offset++);
00058 if (v < 0x10) {
00059 v = (v << 4) | get_nibble(buf, nibble_offset++);
00060 if (v < 0x040) {
00061 v = (v << 4) | get_nibble(buf, nibble_offset++);
00062 if (v < 4) {
00063 v |= (w - x) << 2;
00064 }
00065 }
00066 }
00067 }
00068 len = v >> 2;
00069 if (len > (w - x))
00070 len = (w - x);
00071 color = v & 0x03;
00072 memset(d + x, color, len);
00073 x += len;
00074 if (x >= w) {
00075 y++;
00076 if (y >= h)
00077 break;
00078 d += linesize;
00079 x = 0;
00080
00081 nibble_offset += (nibble_offset & 1);
00082 }
00083 }
00084 return 0;
00085 }
00086
00087 static void guess_palette(uint32_t *rgba_palette,
00088 uint8_t *palette,
00089 uint8_t *alpha,
00090 uint32_t subtitle_color)
00091 {
00092 uint8_t color_used[16];
00093 int nb_opaque_colors, i, level, j, r, g, b;
00094
00095 for(i = 0; i < 4; i++)
00096 rgba_palette[i] = 0;
00097
00098 memset(color_used, 0, 16);
00099 nb_opaque_colors = 0;
00100 for(i = 0; i < 4; i++) {
00101 if (alpha[i] != 0 && !color_used[palette[i]]) {
00102 color_used[palette[i]] = 1;
00103 nb_opaque_colors++;
00104 }
00105 }
00106
00107 if (nb_opaque_colors == 0)
00108 return;
00109
00110 j = 0;
00111 memset(color_used, 0, 16);
00112 for(i = 0; i < 4; i++) {
00113 if (alpha[i] != 0) {
00114 if (!color_used[palette[i]]) {
00115 level = (0xff * (j + 1)) / nb_opaque_colors;
00116 r = (((subtitle_color >> 16) & 0xff) * level) >> 8;
00117 g = (((subtitle_color >> 8) & 0xff) * level) >> 8;
00118 b = (((subtitle_color >> 0) & 0xff) * level) >> 8;
00119 rgba_palette[i] = b | (g << 8) | (r << 16) | (0xff << 24);
00120 color_used[palette[i]] = (i + 1);
00121 j++;
00122 } else {
00123 rgba_palette[i] = rgba_palette[color_used[palette[i]] - 1];
00124 }
00125 }
00126 }
00127 }
00128
00129 static int decode_dvd_subtitles(AVSubtitle *sub_header,
00130 const uint8_t *buf, int buf_size)
00131 {
00132 int cmd_pos, pos, cmd, x1, y1, x2, y2, offset1, offset2, next_cmd_pos;
00133 uint8_t palette[4], alpha[4];
00134 int date;
00135 int i;
00136
00137 if (buf_size < 4)
00138 return -1;
00139 sub_header->rects = NULL;
00140 sub_header->num_rects = 0;
00141 sub_header->start_display_time = 0;
00142 sub_header->end_display_time = 0;
00143
00144 cmd_pos = getbe16(buf + 2);
00145 while ((cmd_pos + 4) < buf_size) {
00146 date = getbe16(buf + cmd_pos);
00147 next_cmd_pos = getbe16(buf + cmd_pos + 2);
00148 #ifdef DEBUG
00149 av_log(NULL, AV_LOG_INFO, "cmd_pos=0x%04x next=0x%04x date=%d\n",
00150 cmd_pos, next_cmd_pos, date);
00151 #endif
00152 pos = cmd_pos + 4;
00153 offset1 = -1;
00154 offset2 = -1;
00155 x1 = y1 = x2 = y2 = 0;
00156 while (pos < buf_size) {
00157 cmd = buf[pos++];
00158 #ifdef DEBUG
00159 av_log(NULL, AV_LOG_INFO, "cmd=%02x\n", cmd);
00160 #endif
00161 switch(cmd) {
00162 case 0x00:
00163
00164 break;
00165 case 0x01:
00166
00167 sub_header->start_display_time = date * 10;
00168 break;
00169 case 0x02:
00170
00171 sub_header->end_display_time = date * 10;
00172 break;
00173 case 0x03:
00174
00175 if ((buf_size - pos) < 2)
00176 goto fail;
00177 palette[0] = buf[pos] >> 4;
00178 palette[1] = buf[pos] & 0x0f;
00179 palette[2] = buf[pos + 1] >> 4;
00180 palette[3] = buf[pos + 1] & 0x0f;
00181 pos += 2;
00182 break;
00183 case 0x04:
00184
00185 if ((buf_size - pos) < 2)
00186 goto fail;
00187 alpha[0] = buf[pos] >> 4;
00188 alpha[1] = buf[pos] & 0x0f;
00189 alpha[2] = buf[pos + 1] >> 4;
00190 alpha[3] = buf[pos + 1] & 0x0f;
00191 pos += 2;
00192 break;
00193 case 0x05:
00194 if ((buf_size - pos) < 6)
00195 goto fail;
00196 x1 = (buf[pos] << 4) | (buf[pos + 1] >> 4);
00197 x2 = ((buf[pos + 1] & 0x0f) << 8) | buf[pos + 2];
00198 y1 = (buf[pos + 3] << 4) | (buf[pos + 4] >> 4);
00199 y2 = ((buf[pos + 4] & 0x0f) << 8) | buf[pos + 5];
00200 #ifdef DEBUG
00201 av_log(NULL, AV_LOG_INFO, "x1=%d x2=%d y1=%d y2=%d\n",
00202 x1, x2, y1, y2);
00203 #endif
00204 pos += 6;
00205 break;
00206 case 0x06:
00207 if ((buf_size - pos) < 4)
00208 goto fail;
00209 offset1 = getbe16(buf + pos);
00210 offset2 = getbe16(buf + pos + 2);
00211 #ifdef DEBUG
00212 av_log(NULL, AV_LOG_INFO, "offset1=0x%04x offset2=0x%04x\n", offset1, offset2);
00213 #endif
00214 pos += 4;
00215 break;
00216 case 0xff:
00217 default:
00218 goto the_end;
00219 }
00220 }
00221 the_end:
00222 if (offset1 >= 0) {
00223 int w, h;
00224 uint8_t *bitmap;
00225
00226
00227 w = x2 - x1 + 1;
00228 if (w < 0)
00229 w = 0;
00230 h = y2 - y1;
00231 if (h < 0)
00232 h = 0;
00233 if (w > 0 && h > 0) {
00234 if (sub_header->rects != NULL) {
00235 for (i = 0; i < sub_header->num_rects; i++) {
00236 av_free(sub_header->rects[i].bitmap);
00237 av_free(sub_header->rects[i].rgba_palette);
00238 }
00239 av_freep(&sub_header->rects);
00240 sub_header->num_rects = 0;
00241 }
00242
00243 bitmap = av_malloc(w * h);
00244 sub_header->rects = av_mallocz(sizeof(AVSubtitleRect));
00245 sub_header->num_rects = 1;
00246 sub_header->rects[0].rgba_palette = av_malloc(4 * 4);
00247 decode_rle(bitmap, w * 2, w, h / 2,
00248 buf, offset1 * 2, buf_size);
00249 decode_rle(bitmap + w, w * 2, w, h / 2,
00250 buf, offset2 * 2, buf_size);
00251 guess_palette(sub_header->rects[0].rgba_palette,
00252 palette, alpha, 0xffff00);
00253 sub_header->rects[0].x = x1;
00254 sub_header->rects[0].y = y1;
00255 sub_header->rects[0].w = w;
00256 sub_header->rects[0].h = h;
00257 sub_header->rects[0].nb_colors = 4;
00258 sub_header->rects[0].linesize = w;
00259 sub_header->rects[0].bitmap = bitmap;
00260 }
00261 }
00262 if (next_cmd_pos == cmd_pos)
00263 break;
00264 cmd_pos = next_cmd_pos;
00265 }
00266 if (sub_header->num_rects > 0)
00267 return 0;
00268 fail:
00269 return -1;
00270 }
00271
00272 static int is_transp(const uint8_t *buf, int pitch, int n,
00273 const uint8_t *transp_color)
00274 {
00275 int i;
00276 for(i = 0; i < n; i++) {
00277 if (!transp_color[*buf])
00278 return 0;
00279 buf += pitch;
00280 }
00281 return 1;
00282 }
00283
00284
00285 static int find_smallest_bouding_rectangle(AVSubtitle *s)
00286 {
00287 uint8_t transp_color[256];
00288 int y1, y2, x1, x2, y, w, h, i;
00289 uint8_t *bitmap;
00290
00291 if (s->num_rects == 0 || s->rects == NULL || s->rects[0].w <= 0 || s->rects[0].h <= 0)
00292 return 0;
00293
00294 memset(transp_color, 0, 256);
00295 for(i = 0; i < s->rects[0].nb_colors; i++) {
00296 if ((s->rects[0].rgba_palette[i] >> 24) == 0)
00297 transp_color[i] = 1;
00298 }
00299 y1 = 0;
00300 while (y1 < s->rects[0].h && is_transp(s->rects[0].bitmap + y1 * s->rects[0].linesize,
00301 1, s->rects[0].w, transp_color))
00302 y1++;
00303 if (y1 == s->rects[0].h) {
00304 av_freep(&s->rects[0].bitmap);
00305 s->rects[0].w = s->rects[0].h = 0;
00306 return 0;
00307 }
00308
00309 y2 = s->rects[0].h - 1;
00310 while (y2 > 0 && is_transp(s->rects[0].bitmap + y2 * s->rects[0].linesize, 1,
00311 s->rects[0].w, transp_color))
00312 y2--;
00313 x1 = 0;
00314 while (x1 < (s->rects[0].w - 1) && is_transp(s->rects[0].bitmap + x1, s->rects[0].linesize,
00315 s->rects[0].h, transp_color))
00316 x1++;
00317 x2 = s->rects[0].w - 1;
00318 while (x2 > 0 && is_transp(s->rects[0].bitmap + x2, s->rects[0].linesize, s->rects[0].h,
00319 transp_color))
00320 x2--;
00321 w = x2 - x1 + 1;
00322 h = y2 - y1 + 1;
00323 bitmap = av_malloc(w * h);
00324 if (!bitmap)
00325 return 1;
00326 for(y = 0; y < h; y++) {
00327 memcpy(bitmap + w * y, s->rects[0].bitmap + x1 + (y1 + y) * s->rects[0].linesize, w);
00328 }
00329 av_freep(&s->rects[0].bitmap);
00330 s->rects[0].bitmap = bitmap;
00331 s->rects[0].linesize = w;
00332 s->rects[0].w = w;
00333 s->rects[0].h = h;
00334 s->rects[0].x += x1;
00335 s->rects[0].y += y1;
00336 return 1;
00337 }
00338
00339 static int dvdsub_close_decoder(AVCodecContext *avctx)
00340 {
00341 return 0;
00342 }
00343
00344 #ifdef DEBUG
00345 #undef fprintf
00346 static void ppm_save(const char *filename, uint8_t *bitmap, int w, int h,
00347 uint32_t *rgba_palette)
00348 {
00349 int x, y, v;
00350 FILE *f;
00351
00352 f = fopen(filename, "w");
00353 if (!f) {
00354 perror(filename);
00355 exit(1);
00356 }
00357 fprintf(f, "P6\n"
00358 "%d %d\n"
00359 "%d\n",
00360 w, h, 255);
00361 for(y = 0; y < h; y++) {
00362 for(x = 0; x < w; x++) {
00363 v = rgba_palette[bitmap[y * w + x]];
00364 putc((v >> 16) & 0xff, f);
00365 putc((v >> 8) & 0xff, f);
00366 putc((v >> 0) & 0xff, f);
00367 }
00368 }
00369 fclose(f);
00370 }
00371 #endif
00372
00373 static int dvdsub_decode(AVCodecContext *avctx,
00374 void *data, int *data_size,
00375 uint8_t *buf, int buf_size)
00376 {
00377 AVSubtitle *sub = (void *)data;
00378
00379 if (decode_dvd_subtitles(sub, buf, buf_size) < 0) {
00380 no_subtitle:
00381 *data_size = 0;
00382
00383 return buf_size;
00384 }
00385 if (find_smallest_bouding_rectangle(sub) == 0)
00386 goto no_subtitle;
00387
00388 #if defined(DEBUG)
00389 av_log(NULL, AV_LOG_INFO, "start=%d ms end =%d ms\n",
00390 sub->start_display_time,
00391 sub->end_display_time);
00392 ppm_save("/tmp/a.ppm", sub->rects[0].bitmap,
00393 sub->rects[0].w, sub->rects[0].h, sub->rects[0].rgba_palette);
00394 #endif
00395
00396 *data_size = 1;
00397 return buf_size;
00398 }
00399
00400 AVCodec dvdsub_decoder = {
00401 "dvdsub",
00402 CODEC_TYPE_SUBTITLE,
00403 CODEC_ID_DVD_SUBTITLE,
00404 sizeof(DVDSubContext),
00405 dvdsub_init_decoder,
00406 NULL,
00407 dvdsub_close_decoder,
00408 dvdsub_decode,
00409 };
00410
00411
00412 typedef struct DVDSubParseContext {
00413 uint8_t *packet;
00414 int packet_len;
00415 int packet_index;
00416 } DVDSubParseContext;
00417
00418 static int dvdsub_parse_init(AVCodecParserContext *s)
00419 {
00420 return 0;
00421 }
00422
00423 static int dvdsub_parse(AVCodecParserContext *s,
00424 AVCodecContext *avctx,
00425 uint8_t **poutbuf, int *poutbuf_size,
00426 const uint8_t *buf, int buf_size)
00427 {
00428 DVDSubParseContext *pc = s->priv_data;
00429
00430 if (pc->packet_index == 0) {
00431 if (buf_size < 2)
00432 return 0;
00433 pc->packet_len = (buf[0] << 8) | buf[1];
00434 av_freep(&pc->packet);
00435 pc->packet = av_malloc(pc->packet_len);
00436 }
00437 if (pc->packet) {
00438 if (pc->packet_index + buf_size <= pc->packet_len) {
00439 memcpy(pc->packet + pc->packet_index, buf, buf_size);
00440 pc->packet_index += buf_size;
00441 if (pc->packet_index >= pc->packet_len) {
00442 *poutbuf = pc->packet;
00443 *poutbuf_size = pc->packet_len;
00444 pc->packet_index = 0;
00445 return buf_size;
00446 }
00447 } else {
00448
00449 pc->packet_index = 0;
00450 }
00451 }
00452 *poutbuf = NULL;
00453 *poutbuf_size = 0;
00454 return buf_size;
00455 }
00456
00457 static void dvdsub_parse_close(AVCodecParserContext *s)
00458 {
00459 DVDSubParseContext *pc = s->priv_data;
00460 av_freep(&pc->packet);
00461 }
00462
00463 AVCodecParser dvdsub_parser = {
00464 { CODEC_ID_DVD_SUBTITLE },
00465 sizeof(DVDSubParseContext),
00466 dvdsub_parse_init,
00467 dvdsub_parse,
00468 dvdsub_parse_close,
00469 };