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00028 #include "libavutil/imgutils.h"
00029 #include "avcodec.h"
00030 #include "get_bits.h"
00031 #include "dnxhddata.h"
00032 #include "dsputil.h"
00033 #include "internal.h"
00034 #include "thread.h"
00035
00036 typedef struct DNXHDContext {
00037 AVCodecContext *avctx;
00038 AVFrame picture;
00039 GetBitContext gb;
00040 int64_t cid;
00041 unsigned int width, height;
00042 unsigned int mb_width, mb_height;
00043 uint32_t mb_scan_index[68];
00044 int cur_field;
00045 VLC ac_vlc, dc_vlc, run_vlc;
00046 int last_dc[3];
00047 DSPContext dsp;
00048 DECLARE_ALIGNED(16, DCTELEM, blocks)[8][64];
00049 ScanTable scantable;
00050 const CIDEntry *cid_table;
00051 int bit_depth;
00052 void (*decode_dct_block)(struct DNXHDContext *ctx, DCTELEM *block,
00053 int n, int qscale);
00054 int last_qscale;
00055 int luma_scale[64];
00056 int chroma_scale[64];
00057 } DNXHDContext;
00058
00059 #define DNXHD_VLC_BITS 9
00060 #define DNXHD_DC_VLC_BITS 7
00061
00062 static void dnxhd_decode_dct_block_8(DNXHDContext *ctx, DCTELEM *block, int n, int qscale);
00063 static void dnxhd_decode_dct_block_10(DNXHDContext *ctx, DCTELEM *block, int n, int qscale);
00064
00065 static av_cold int dnxhd_decode_init(AVCodecContext *avctx)
00066 {
00067 DNXHDContext *ctx = avctx->priv_data;
00068
00069 ctx->avctx = avctx;
00070 avctx->coded_frame = &ctx->picture;
00071 avcodec_get_frame_defaults(&ctx->picture);
00072 ctx->picture.type = AV_PICTURE_TYPE_I;
00073 ctx->picture.key_frame = 1;
00074 ctx->cid = -1;
00075 return 0;
00076 }
00077
00078 static int dnxhd_init_vlc(DNXHDContext *ctx, uint32_t cid)
00079 {
00080 if (cid != ctx->cid) {
00081 int index;
00082
00083 if ((index = ff_dnxhd_get_cid_table(cid)) < 0) {
00084 av_log(ctx->avctx, AV_LOG_ERROR, "unsupported cid %d\n", cid);
00085 return -1;
00086 }
00087 if (ff_dnxhd_cid_table[index].bit_depth != ctx->bit_depth) {
00088 av_log(ctx->avctx, AV_LOG_ERROR, "bit depth mismatches %d %d\n", ff_dnxhd_cid_table[index].bit_depth, ctx->bit_depth);
00089 return AVERROR_INVALIDDATA;
00090 }
00091 ctx->cid_table = &ff_dnxhd_cid_table[index];
00092
00093 ff_free_vlc(&ctx->ac_vlc);
00094 ff_free_vlc(&ctx->dc_vlc);
00095 ff_free_vlc(&ctx->run_vlc);
00096
00097 init_vlc(&ctx->ac_vlc, DNXHD_VLC_BITS, 257,
00098 ctx->cid_table->ac_bits, 1, 1,
00099 ctx->cid_table->ac_codes, 2, 2, 0);
00100 init_vlc(&ctx->dc_vlc, DNXHD_DC_VLC_BITS, ctx->bit_depth + 4,
00101 ctx->cid_table->dc_bits, 1, 1,
00102 ctx->cid_table->dc_codes, 1, 1, 0);
00103 init_vlc(&ctx->run_vlc, DNXHD_VLC_BITS, 62,
00104 ctx->cid_table->run_bits, 1, 1,
00105 ctx->cid_table->run_codes, 2, 2, 0);
00106
00107 ff_init_scantable(ctx->dsp.idct_permutation, &ctx->scantable, ff_zigzag_direct);
00108 ctx->cid = cid;
00109 }
00110 return 0;
00111 }
00112
00113 static int dnxhd_decode_header(DNXHDContext *ctx, const uint8_t *buf, int buf_size, int first_field)
00114 {
00115 static const uint8_t header_prefix[] = { 0x00, 0x00, 0x02, 0x80, 0x01 };
00116 int i, cid;
00117
00118 if (buf_size < 0x280)
00119 return -1;
00120
00121 if (memcmp(buf, header_prefix, 5)) {
00122 av_log(ctx->avctx, AV_LOG_ERROR, "error in header\n");
00123 return -1;
00124 }
00125 if (buf[5] & 2) {
00126 ctx->cur_field = buf[5] & 1;
00127 ctx->picture.interlaced_frame = 1;
00128 ctx->picture.top_field_first = first_field ^ ctx->cur_field;
00129 av_log(ctx->avctx, AV_LOG_DEBUG, "interlaced %d, cur field %d\n", buf[5] & 3, ctx->cur_field);
00130 }
00131
00132 ctx->height = AV_RB16(buf + 0x18);
00133 ctx->width = AV_RB16(buf + 0x1a);
00134
00135 av_dlog(ctx->avctx, "width %d, height %d\n", ctx->width, ctx->height);
00136
00137 if (buf[0x21] & 0x40) {
00138 ctx->avctx->pix_fmt = AV_PIX_FMT_YUV422P10;
00139 ctx->avctx->bits_per_raw_sample = 10;
00140 if (ctx->bit_depth != 10) {
00141 ff_dsputil_init(&ctx->dsp, ctx->avctx);
00142 ctx->bit_depth = 10;
00143 ctx->decode_dct_block = dnxhd_decode_dct_block_10;
00144 }
00145 } else {
00146 ctx->avctx->pix_fmt = AV_PIX_FMT_YUV422P;
00147 ctx->avctx->bits_per_raw_sample = 8;
00148 if (ctx->bit_depth != 8) {
00149 ff_dsputil_init(&ctx->dsp, ctx->avctx);
00150 ctx->bit_depth = 8;
00151 ctx->decode_dct_block = dnxhd_decode_dct_block_8;
00152 }
00153 }
00154
00155 cid = AV_RB32(buf + 0x28);
00156 av_dlog(ctx->avctx, "compression id %d\n", cid);
00157
00158 if (dnxhd_init_vlc(ctx, cid) < 0)
00159 return -1;
00160
00161 if (buf_size < ctx->cid_table->coding_unit_size) {
00162 av_log(ctx->avctx, AV_LOG_ERROR, "incorrect frame size\n");
00163 return -1;
00164 }
00165
00166 ctx->mb_width = ctx->width>>4;
00167 ctx->mb_height = buf[0x16d];
00168
00169 av_dlog(ctx->avctx, "mb width %d, mb height %d\n", ctx->mb_width, ctx->mb_height);
00170
00171 if ((ctx->height+15)>>4 == ctx->mb_height && ctx->picture.interlaced_frame)
00172 ctx->height <<= 1;
00173
00174 if (ctx->mb_height > 68 ||
00175 (ctx->mb_height<<ctx->picture.interlaced_frame) > (ctx->height+15)>>4) {
00176 av_log(ctx->avctx, AV_LOG_ERROR, "mb height too big: %d\n", ctx->mb_height);
00177 return -1;
00178 }
00179
00180 for (i = 0; i < ctx->mb_height; i++) {
00181 ctx->mb_scan_index[i] = AV_RB32(buf + 0x170 + (i<<2));
00182 av_dlog(ctx->avctx, "mb scan index %d\n", ctx->mb_scan_index[i]);
00183 if (buf_size < ctx->mb_scan_index[i] + 0x280) {
00184 av_log(ctx->avctx, AV_LOG_ERROR, "invalid mb scan index\n");
00185 return -1;
00186 }
00187 }
00188
00189 return 0;
00190 }
00191
00192 static av_always_inline void dnxhd_decode_dct_block(DNXHDContext *ctx,
00193 DCTELEM *block, int n,
00194 int qscale,
00195 int index_bits,
00196 int level_bias,
00197 int level_shift)
00198 {
00199 int i, j, index1, index2, len, flags;
00200 int level, component, sign;
00201 const int *scale;
00202 const uint8_t *weight_matrix;
00203 const uint8_t *ac_level = ctx->cid_table->ac_level;
00204 const uint8_t *ac_flags = ctx->cid_table->ac_flags;
00205 const int eob_index = ctx->cid_table->eob_index;
00206 OPEN_READER(bs, &ctx->gb);
00207
00208 if (n&2) {
00209 component = 1 + (n&1);
00210 scale = ctx->chroma_scale;
00211 weight_matrix = ctx->cid_table->chroma_weight;
00212 } else {
00213 component = 0;
00214 scale = ctx->luma_scale;
00215 weight_matrix = ctx->cid_table->luma_weight;
00216 }
00217
00218 UPDATE_CACHE(bs, &ctx->gb);
00219 GET_VLC(len, bs, &ctx->gb, ctx->dc_vlc.table, DNXHD_DC_VLC_BITS, 1);
00220 if (len) {
00221 level = GET_CACHE(bs, &ctx->gb);
00222 LAST_SKIP_BITS(bs, &ctx->gb, len);
00223 sign = ~level >> 31;
00224 level = (NEG_USR32(sign ^ level, len) ^ sign) - sign;
00225 ctx->last_dc[component] += level;
00226 }
00227 block[0] = ctx->last_dc[component];
00228
00229 i = 0;
00230
00231 UPDATE_CACHE(bs, &ctx->gb);
00232 GET_VLC(index1, bs, &ctx->gb, ctx->ac_vlc.table,
00233 DNXHD_VLC_BITS, 2);
00234
00235 while (index1 != eob_index) {
00236 level = ac_level[index1];
00237 flags = ac_flags[index1];
00238
00239 sign = SHOW_SBITS(bs, &ctx->gb, 1);
00240 SKIP_BITS(bs, &ctx->gb, 1);
00241
00242 if (flags & 1) {
00243 level += SHOW_UBITS(bs, &ctx->gb, index_bits) << 7;
00244 SKIP_BITS(bs, &ctx->gb, index_bits);
00245 }
00246
00247 if (flags & 2) {
00248 UPDATE_CACHE(bs, &ctx->gb);
00249 GET_VLC(index2, bs, &ctx->gb, ctx->run_vlc.table,
00250 DNXHD_VLC_BITS, 2);
00251 i += ctx->cid_table->run[index2];
00252 }
00253
00254 if (++i > 63) {
00255 av_log(ctx->avctx, AV_LOG_ERROR, "ac tex damaged %d, %d\n", n, i);
00256 break;
00257 }
00258
00259 j = ctx->scantable.permutated[i];
00260 level *= scale[i];
00261 if (level_bias < 32 || weight_matrix[i] != level_bias)
00262 level += level_bias;
00263 level >>= level_shift;
00264
00265 block[j] = (level^sign) - sign;
00266
00267 UPDATE_CACHE(bs, &ctx->gb);
00268 GET_VLC(index1, bs, &ctx->gb, ctx->ac_vlc.table,
00269 DNXHD_VLC_BITS, 2);
00270 }
00271
00272 CLOSE_READER(bs, &ctx->gb);
00273 }
00274
00275 static void dnxhd_decode_dct_block_8(DNXHDContext *ctx, DCTELEM *block,
00276 int n, int qscale)
00277 {
00278 dnxhd_decode_dct_block(ctx, block, n, qscale, 4, 32, 6);
00279 }
00280
00281 static void dnxhd_decode_dct_block_10(DNXHDContext *ctx, DCTELEM *block,
00282 int n, int qscale)
00283 {
00284 dnxhd_decode_dct_block(ctx, block, n, qscale, 6, 8, 4);
00285 }
00286
00287 static int dnxhd_decode_macroblock(DNXHDContext *ctx, int x, int y)
00288 {
00289 int shift1 = ctx->bit_depth == 10;
00290 int dct_linesize_luma = ctx->picture.linesize[0];
00291 int dct_linesize_chroma = ctx->picture.linesize[1];
00292 uint8_t *dest_y, *dest_u, *dest_v;
00293 int dct_y_offset, dct_x_offset;
00294 int qscale, i;
00295
00296 qscale = get_bits(&ctx->gb, 11);
00297 skip_bits1(&ctx->gb);
00298
00299 if (qscale != ctx->last_qscale) {
00300 for (i = 0; i < 64; i++) {
00301 ctx->luma_scale[i] = qscale * ctx->cid_table->luma_weight[i];
00302 ctx->chroma_scale[i] = qscale * ctx->cid_table->chroma_weight[i];
00303 }
00304 ctx->last_qscale = qscale;
00305 }
00306
00307 for (i = 0; i < 8; i++) {
00308 ctx->dsp.clear_block(ctx->blocks[i]);
00309 ctx->decode_dct_block(ctx, ctx->blocks[i], i, qscale);
00310 }
00311
00312 if (ctx->picture.interlaced_frame) {
00313 dct_linesize_luma <<= 1;
00314 dct_linesize_chroma <<= 1;
00315 }
00316
00317 dest_y = ctx->picture.data[0] + ((y * dct_linesize_luma) << 4) + (x << (4 + shift1));
00318 dest_u = ctx->picture.data[1] + ((y * dct_linesize_chroma) << 4) + (x << (3 + shift1));
00319 dest_v = ctx->picture.data[2] + ((y * dct_linesize_chroma) << 4) + (x << (3 + shift1));
00320
00321 if (ctx->cur_field) {
00322 dest_y += ctx->picture.linesize[0];
00323 dest_u += ctx->picture.linesize[1];
00324 dest_v += ctx->picture.linesize[2];
00325 }
00326
00327 dct_y_offset = dct_linesize_luma << 3;
00328 dct_x_offset = 8 << shift1;
00329 ctx->dsp.idct_put(dest_y, dct_linesize_luma, ctx->blocks[0]);
00330 ctx->dsp.idct_put(dest_y + dct_x_offset, dct_linesize_luma, ctx->blocks[1]);
00331 ctx->dsp.idct_put(dest_y + dct_y_offset, dct_linesize_luma, ctx->blocks[4]);
00332 ctx->dsp.idct_put(dest_y + dct_y_offset + dct_x_offset, dct_linesize_luma, ctx->blocks[5]);
00333
00334 if (!(ctx->avctx->flags & CODEC_FLAG_GRAY)) {
00335 dct_y_offset = dct_linesize_chroma << 3;
00336 ctx->dsp.idct_put(dest_u, dct_linesize_chroma, ctx->blocks[2]);
00337 ctx->dsp.idct_put(dest_v, dct_linesize_chroma, ctx->blocks[3]);
00338 ctx->dsp.idct_put(dest_u + dct_y_offset, dct_linesize_chroma, ctx->blocks[6]);
00339 ctx->dsp.idct_put(dest_v + dct_y_offset, dct_linesize_chroma, ctx->blocks[7]);
00340 }
00341
00342 return 0;
00343 }
00344
00345 static int dnxhd_decode_macroblocks(DNXHDContext *ctx, const uint8_t *buf, int buf_size)
00346 {
00347 int x, y;
00348 for (y = 0; y < ctx->mb_height; y++) {
00349 ctx->last_dc[0] =
00350 ctx->last_dc[1] =
00351 ctx->last_dc[2] = 1 << (ctx->bit_depth + 2);
00352 init_get_bits(&ctx->gb, buf + ctx->mb_scan_index[y], (buf_size - ctx->mb_scan_index[y]) << 3);
00353 for (x = 0; x < ctx->mb_width; x++) {
00354
00355 dnxhd_decode_macroblock(ctx, x, y);
00356
00357 }
00358 }
00359 return 0;
00360 }
00361
00362 static int dnxhd_decode_frame(AVCodecContext *avctx, void *data, int *got_frame,
00363 AVPacket *avpkt)
00364 {
00365 const uint8_t *buf = avpkt->data;
00366 int buf_size = avpkt->size;
00367 DNXHDContext *ctx = avctx->priv_data;
00368 AVFrame *picture = data;
00369 int first_field = 1;
00370 int ret;
00371
00372 av_dlog(avctx, "frame size %d\n", buf_size);
00373
00374 decode_coding_unit:
00375 if (dnxhd_decode_header(ctx, buf, buf_size, first_field) < 0)
00376 return -1;
00377
00378 if ((avctx->width || avctx->height) &&
00379 (ctx->width != avctx->width || ctx->height != avctx->height)) {
00380 av_log(avctx, AV_LOG_WARNING, "frame size changed: %dx%d -> %dx%d\n",
00381 avctx->width, avctx->height, ctx->width, ctx->height);
00382 first_field = 1;
00383 }
00384
00385 if (av_image_check_size(ctx->width, ctx->height, 0, avctx))
00386 return -1;
00387 avcodec_set_dimensions(avctx, ctx->width, ctx->height);
00388
00389 if (first_field) {
00390 if (ctx->picture.data[0])
00391 ff_thread_release_buffer(avctx, &ctx->picture);
00392 if ((ret = ff_thread_get_buffer(avctx, &ctx->picture)) < 0) {
00393 av_log(avctx, AV_LOG_ERROR, "get_buffer() failed\n");
00394 return ret;
00395 }
00396 }
00397
00398 dnxhd_decode_macroblocks(ctx, buf + 0x280, buf_size - 0x280);
00399
00400 if (first_field && ctx->picture.interlaced_frame) {
00401 buf += ctx->cid_table->coding_unit_size;
00402 buf_size -= ctx->cid_table->coding_unit_size;
00403 first_field = 0;
00404 goto decode_coding_unit;
00405 }
00406
00407 *picture = ctx->picture;
00408 *got_frame = 1;
00409 return buf_size;
00410 }
00411
00412 static av_cold int dnxhd_decode_close(AVCodecContext *avctx)
00413 {
00414 DNXHDContext *ctx = avctx->priv_data;
00415
00416 if (ctx->picture.data[0])
00417 ff_thread_release_buffer(avctx, &ctx->picture);
00418 ff_free_vlc(&ctx->ac_vlc);
00419 ff_free_vlc(&ctx->dc_vlc);
00420 ff_free_vlc(&ctx->run_vlc);
00421 return 0;
00422 }
00423
00424 AVCodec ff_dnxhd_decoder = {
00425 .name = "dnxhd",
00426 .type = AVMEDIA_TYPE_VIDEO,
00427 .id = AV_CODEC_ID_DNXHD,
00428 .priv_data_size = sizeof(DNXHDContext),
00429 .init = dnxhd_decode_init,
00430 .close = dnxhd_decode_close,
00431 .decode = dnxhd_decode_frame,
00432 .capabilities = CODEC_CAP_DR1 | CODEC_CAP_FRAME_THREADS,
00433 .long_name = NULL_IF_CONFIG_SMALL("VC3/DNxHD"),
00434 };