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Merge commit 'e95018b694c0774477abec5bbf86ecc7946a9a28'
* commit 'e95018b694c0774477abec5bbf86ecc7946a9a28': dnxhd: Support DNx444 Conflicts: Changelog libavcodec/dnxhddata.c libavcodec/dnxhddec.c Merged-by: Michael Niedermayer <michaelni@gmx.at>
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commit
51290068fa
@ -25,6 +25,7 @@ version <next>
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- Use metadata_header_padding to control padding in ID3 tags (currently used in
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MP3, AIFF, and OMA files), FLAC header, and the AVI "junk" block.
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- Mirillis FIC video decoder
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- Support DNx444
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version 2.1:
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@ -222,6 +222,17 @@ static const uint8_t dnxhd_1252_chroma_weight[] = {
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114, 128, 125, 129, 134, 125, 116, 116,
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};
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static const uint8_t dnxhd_1256_chroma_weight[] = {
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0, 32, 32, 32, 32, 32, 32, 33,
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32, 32, 32, 32, 32, 32, 32, 34,
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32, 32, 32, 32, 32, 32, 33, 37,
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32, 32, 32, 32, 32, 32, 36, 39,
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32, 32, 32, 32, 32, 34, 39, 44,
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32, 37, 32, 32, 35, 40, 43, 49,
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32, 33, 36, 36, 40, 43, 50, 60,
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34, 37, 39, 44, 51, 56, 61, 70,
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};
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static const uint8_t dnxhd_1237_dc_codes[12] = {
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0, 12, 13, 1, 2, 3, 4, 5, 14, 30, 62, 63,
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};
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@ -1026,6 +1037,14 @@ const CIDEntry ff_dnxhd_cid_table[] = {
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dnxhd_1237_run_codes, dnxhd_1237_run_bits, dnxhd_1237_run,
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{ 36, 36, 45, 75, 90 },
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{ { 24000, 1001 }, { 25, 1 }, { 30000, 1001 }, { 50, 1 }, { 60000, 1001 } } },
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{ 1256, 1920, 1080, 0, 1835008, 1835008, 6, 10, 4,
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dnxhd_1235_luma_weight, dnxhd_1256_chroma_weight,
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dnxhd_1235_1241_dc_codes, dnxhd_1235_1241_dc_bits,
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dnxhd_1235_1241_ac_codes, dnxhd_1235_1241_ac_bits, dnxhd_1235_1241_ac_level,
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dnxhd_1235_1241_ac_flags,
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dnxhd_1235_1238_1241_run_codes, dnxhd_1235_1238_1241_run_bits, dnxhd_1235_1241_run,
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{ 350, 390, 440, 730, 880 },
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{ { 24000, 1001 }, { 25, 1 }, { 30000, 1001 }, { 50, 1 }, { 60000, 1001 } } },
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};
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int ff_dnxhd_get_cid_table(int cid)
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@ -42,10 +42,11 @@ typedef struct DNXHDContext {
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VLC ac_vlc, dc_vlc, run_vlc;
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int last_dc[3];
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DSPContext dsp;
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DECLARE_ALIGNED(16, int16_t, blocks)[8][64];
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DECLARE_ALIGNED(16, int16_t, blocks)[12][64];
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ScanTable scantable;
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const CIDEntry *cid_table;
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int bit_depth; // 8, 10 or 0 if not initialized at all.
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int is_444;
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void (*decode_dct_block)(struct DNXHDContext *ctx, int16_t *block,
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int n, int qscale);
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int last_qscale;
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@ -58,6 +59,7 @@ typedef struct DNXHDContext {
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static void dnxhd_decode_dct_block_8(DNXHDContext *ctx, int16_t *block, int n, int qscale);
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static void dnxhd_decode_dct_block_10(DNXHDContext *ctx, int16_t *block, int n, int qscale);
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static void dnxhd_decode_dct_block_10_444(DNXHDContext *ctx, int16_t *block, int n, int qscale);
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static av_cold int dnxhd_decode_init(AVCodecContext *avctx)
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{
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@ -107,12 +109,13 @@ static int dnxhd_decode_header(DNXHDContext *ctx, AVFrame *frame,
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const uint8_t *buf, int buf_size, int first_field)
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{
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static const uint8_t header_prefix[] = { 0x00, 0x00, 0x02, 0x80, 0x01 };
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static const uint8_t header_prefix444[] = { 0x00, 0x00, 0x02, 0x80, 0x02 };
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int i, cid, ret;
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if (buf_size < 0x280)
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return AVERROR_INVALIDDATA;
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if (memcmp(buf, header_prefix, 5)) {
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if (memcmp(buf, header_prefix, 5) && memcmp(buf, header_prefix444, 5)) {
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av_log(ctx->avctx, AV_LOG_ERROR, "error in header\n");
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return AVERROR_INVALIDDATA;
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}
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@ -128,7 +131,17 @@ static int dnxhd_decode_header(DNXHDContext *ctx, AVFrame *frame,
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av_dlog(ctx->avctx, "width %d, height %d\n", ctx->width, ctx->height);
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if (buf[0x21] & 0x40) {
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ctx->is_444 = 0;
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if (buf[0x4] == 0x2) {
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ctx->avctx->pix_fmt = AV_PIX_FMT_YUV444P10;
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ctx->avctx->bits_per_raw_sample = 10;
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if (ctx->bit_depth != 10) {
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ff_dsputil_init(&ctx->dsp, ctx->avctx);
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ctx->bit_depth = 10;
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ctx->decode_dct_block = dnxhd_decode_dct_block_10_444;
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}
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ctx->is_444 = 1;
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} else if (buf[0x21] & 0x40) {
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ctx->avctx->pix_fmt = AV_PIX_FMT_YUV422P10;
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ctx->avctx->bits_per_raw_sample = 10;
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if (ctx->bit_depth != 10) {
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@ -199,6 +212,7 @@ static av_always_inline void dnxhd_decode_dct_block(DNXHDContext *ctx,
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const int eob_index = ctx->cid_table->eob_index;
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OPEN_READER(bs, &ctx->gb);
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if (!ctx->is_444) {
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if (n&2) {
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component = 1 + (n&1);
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scale = ctx->chroma_scale;
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@ -208,6 +222,16 @@ static av_always_inline void dnxhd_decode_dct_block(DNXHDContext *ctx,
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scale = ctx->luma_scale;
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weight_matrix = ctx->cid_table->luma_weight;
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}
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} else {
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component = (n >> 1) % 3;
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if (component) {
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scale = ctx->chroma_scale;
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weight_matrix = ctx->cid_table->chroma_weight;
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} else {
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scale = ctx->luma_scale;
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weight_matrix = ctx->cid_table->luma_weight;
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}
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}
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UPDATE_CACHE(bs, &ctx->gb);
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GET_VLC(len, bs, &ctx->gb, ctx->dc_vlc.table, DNXHD_DC_VLC_BITS, 1);
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@ -278,6 +302,12 @@ static void dnxhd_decode_dct_block_10(DNXHDContext *ctx, int16_t *block,
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dnxhd_decode_dct_block(ctx, block, n, qscale, 6, 8, 4);
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}
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static void dnxhd_decode_dct_block_10_444(DNXHDContext *ctx, int16_t *block,
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int n, int qscale)
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{
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dnxhd_decode_dct_block(ctx, block, n, qscale, 6, 32, 6);
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}
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static int dnxhd_decode_macroblock(DNXHDContext *ctx, AVFrame *frame, int x, int y)
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{
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int shift1 = ctx->bit_depth == 10;
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@ -302,6 +332,12 @@ static int dnxhd_decode_macroblock(DNXHDContext *ctx, AVFrame *frame, int x, int
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ctx->dsp.clear_block(ctx->blocks[i]);
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ctx->decode_dct_block(ctx, ctx->blocks[i], i, qscale);
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}
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if (ctx->is_444) {
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for (; i < 12; i++) {
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ctx->dsp.clear_block(ctx->blocks[i]);
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ctx->decode_dct_block(ctx, ctx->blocks[i], i, qscale);
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}
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}
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if (frame->interlaced_frame) {
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dct_linesize_luma <<= 1;
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@ -309,8 +345,8 @@ static int dnxhd_decode_macroblock(DNXHDContext *ctx, AVFrame *frame, int x, int
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}
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dest_y = frame->data[0] + ((y * dct_linesize_luma) << 4) + (x << (4 + shift1));
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dest_u = frame->data[1] + ((y * dct_linesize_chroma) << 4) + (x << (3 + shift1));
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dest_v = frame->data[2] + ((y * dct_linesize_chroma) << 4) + (x << (3 + shift1));
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dest_u = frame->data[1] + ((y * dct_linesize_chroma) << 4) + (x << (3 + shift1 + ctx->is_444));
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dest_v = frame->data[2] + ((y * dct_linesize_chroma) << 4) + (x << (3 + shift1 + ctx->is_444));
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if (ctx->cur_field) {
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dest_y += frame->linesize[0];
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@ -320,6 +356,7 @@ static int dnxhd_decode_macroblock(DNXHDContext *ctx, AVFrame *frame, int x, int
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dct_y_offset = dct_linesize_luma << 3;
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dct_x_offset = 8 << shift1;
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if (!ctx->is_444) {
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ctx->dsp.idct_put(dest_y, dct_linesize_luma, ctx->blocks[0]);
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ctx->dsp.idct_put(dest_y + dct_x_offset, dct_linesize_luma, ctx->blocks[1]);
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ctx->dsp.idct_put(dest_y + dct_y_offset, dct_linesize_luma, ctx->blocks[4]);
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@ -332,6 +369,24 @@ static int dnxhd_decode_macroblock(DNXHDContext *ctx, AVFrame *frame, int x, int
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ctx->dsp.idct_put(dest_u + dct_y_offset, dct_linesize_chroma, ctx->blocks[6]);
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ctx->dsp.idct_put(dest_v + dct_y_offset, dct_linesize_chroma, ctx->blocks[7]);
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}
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} else {
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ctx->dsp.idct_put(dest_y, dct_linesize_luma, ctx->blocks[0]);
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ctx->dsp.idct_put(dest_y + dct_x_offset, dct_linesize_luma, ctx->blocks[1]);
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ctx->dsp.idct_put(dest_y + dct_y_offset, dct_linesize_luma, ctx->blocks[6]);
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ctx->dsp.idct_put(dest_y + dct_y_offset + dct_x_offset, dct_linesize_luma, ctx->blocks[7]);
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if (!(ctx->avctx->flags & CODEC_FLAG_GRAY)) {
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dct_y_offset = dct_linesize_chroma << 3;
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ctx->dsp.idct_put(dest_u, dct_linesize_chroma, ctx->blocks[2]);
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ctx->dsp.idct_put(dest_u + dct_x_offset, dct_linesize_chroma, ctx->blocks[3]);
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ctx->dsp.idct_put(dest_u + dct_y_offset, dct_linesize_chroma, ctx->blocks[8]);
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ctx->dsp.idct_put(dest_u + dct_y_offset + dct_x_offset, dct_linesize_chroma, ctx->blocks[9]);
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ctx->dsp.idct_put(dest_v, dct_linesize_chroma, ctx->blocks[4]);
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ctx->dsp.idct_put(dest_v + dct_x_offset, dct_linesize_chroma, ctx->blocks[5]);
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ctx->dsp.idct_put(dest_v + dct_y_offset, dct_linesize_chroma, ctx->blocks[10]);
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ctx->dsp.idct_put(dest_v + dct_y_offset + dct_x_offset, dct_linesize_chroma, ctx->blocks[11]);
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}
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}
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return 0;
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}
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