The function will be used by utvideo as well. Signed-off-by: Luca Barbato <lu_zero@gentoo.org>tags/n1.0
| @@ -1376,6 +1376,7 @@ eatgq_decoder_select="aandcttables" | |||||
| eatqi_decoder_select="aandcttables error_resilience mpegvideo" | eatqi_decoder_select="aandcttables error_resilience mpegvideo" | ||||
| ffv1_decoder_select="golomb rangecoder" | ffv1_decoder_select="golomb rangecoder" | ||||
| ffv1_encoder_select="rangecoder" | ffv1_encoder_select="rangecoder" | ||||
| ffvhuff_encoder_select="huffman" | |||||
| flac_decoder_select="golomb" | flac_decoder_select="golomb" | ||||
| flac_encoder_select="golomb lpc" | flac_encoder_select="golomb lpc" | ||||
| flashsv_decoder_select="zlib" | flashsv_decoder_select="zlib" | ||||
| @@ -1397,6 +1398,7 @@ h264_dxva2_hwaccel_select="dxva2 h264_decoder" | |||||
| h264_vaapi_hwaccel_select="vaapi h264_decoder" | h264_vaapi_hwaccel_select="vaapi h264_decoder" | ||||
| h264_vda_hwaccel_select="vda h264_decoder" | h264_vda_hwaccel_select="vda h264_decoder" | ||||
| h264_vdpau_decoder_select="vdpau h264_decoder" | h264_vdpau_decoder_select="vdpau h264_decoder" | ||||
| huffyuv_encoder_select="huffman" | |||||
| iac_decoder_select="fft mdct sinewin" | iac_decoder_select="fft mdct sinewin" | ||||
| imc_decoder_select="fft mdct sinewin" | imc_decoder_select="fft mdct sinewin" | ||||
| jpegls_decoder_select="golomb" | jpegls_decoder_select="golomb" | ||||
| @@ -1,5 +1,6 @@ | |||||
| /* | /* | ||||
| * Copyright (c) 2006 Konstantin Shishkov | * Copyright (c) 2006 Konstantin Shishkov | ||||
| * Copyright (c) 2007 Loren Merritt | |||||
| * | * | ||||
| * This file is part of Libav. | * This file is part of Libav. | ||||
| * | * | ||||
| @@ -30,6 +31,63 @@ | |||||
| /* symbol for Huffman tree node */ | /* symbol for Huffman tree node */ | ||||
| #define HNODE -1 | #define HNODE -1 | ||||
| typedef struct { | |||||
| uint64_t val; | |||||
| int name; | |||||
| } HeapElem; | |||||
| static void heap_sift(HeapElem *h, int root, int size) | |||||
| { | |||||
| while (root * 2 + 1 < size) { | |||||
| int child = root * 2 + 1; | |||||
| if (child < size - 1 && h[child].val > h[child+1].val) | |||||
| child++; | |||||
| if (h[root].val > h[child].val) { | |||||
| FFSWAP(HeapElem, h[root], h[child]); | |||||
| root = child; | |||||
| } else | |||||
| break; | |||||
| } | |||||
| } | |||||
| void ff_huff_gen_len_table(uint8_t *dst, const uint64_t *stats) | |||||
| { | |||||
| HeapElem h[256]; | |||||
| int up[2*256]; | |||||
| int len[2*256]; | |||||
| int offset, i, next; | |||||
| int size = 256; | |||||
| for (offset = 1; ; offset <<= 1) { | |||||
| for (i=0; i < size; i++) { | |||||
| h[i].name = i; | |||||
| h[i].val = (stats[i] << 8) + offset; | |||||
| } | |||||
| for (i = size / 2 - 1; i >= 0; i--) | |||||
| heap_sift(h, i, size); | |||||
| for (next = size; next < size * 2 - 1; next++) { | |||||
| // merge the two smallest entries, and put it back in the heap | |||||
| uint64_t min1v = h[0].val; | |||||
| up[h[0].name] = next; | |||||
| h[0].val = INT64_MAX; | |||||
| heap_sift(h, 0, size); | |||||
| up[h[0].name] = next; | |||||
| h[0].name = next; | |||||
| h[0].val += min1v; | |||||
| heap_sift(h, 0, size); | |||||
| } | |||||
| len[2 * size - 2] = 0; | |||||
| for (i = 2 * size - 3; i >= size; i--) | |||||
| len[i] = len[up[i]] + 1; | |||||
| for (i = 0; i < size; i++) { | |||||
| dst[i] = len[up[i]] + 1; | |||||
| if (dst[i] >= 32) break; | |||||
| } | |||||
| if (i==size) break; | |||||
| } | |||||
| } | |||||
| static void get_tree_codes(uint32_t *bits, int16_t *lens, uint8_t *xlat, | static void get_tree_codes(uint32_t *bits, int16_t *lens, uint8_t *xlat, | ||||
| Node *nodes, int node, | Node *nodes, int node, | ||||
| @@ -42,4 +42,6 @@ typedef int (*HuffCmp)(const void *va, const void *vb); | |||||
| int ff_huff_build_tree(AVCodecContext *avctx, VLC *vlc, int nb_codes, | int ff_huff_build_tree(AVCodecContext *avctx, VLC *vlc, int nb_codes, | ||||
| Node *nodes, HuffCmp cmp, int flags); | Node *nodes, HuffCmp cmp, int flags); | ||||
| void ff_huff_gen_len_table(uint8_t *dst, const uint64_t *stats); | |||||
| #endif /* AVCODEC_HUFFMAN_H */ | #endif /* AVCODEC_HUFFMAN_H */ | ||||
| @@ -33,6 +33,7 @@ | |||||
| #include "put_bits.h" | #include "put_bits.h" | ||||
| #include "dsputil.h" | #include "dsputil.h" | ||||
| #include "thread.h" | #include "thread.h" | ||||
| #include "huffman.h" | |||||
| #define VLC_BITS 11 | #define VLC_BITS 11 | ||||
| @@ -223,66 +224,6 @@ static int generate_bits_table(uint32_t *dst, const uint8_t *len_table) | |||||
| return 0; | return 0; | ||||
| } | } | ||||
| #if CONFIG_HUFFYUV_ENCODER || CONFIG_FFVHUFF_ENCODER | |||||
| typedef struct { | |||||
| uint64_t val; | |||||
| int name; | |||||
| } HeapElem; | |||||
| static void heap_sift(HeapElem *h, int root, int size) | |||||
| { | |||||
| while (root * 2 + 1 < size) { | |||||
| int child = root * 2 + 1; | |||||
| if (child < size - 1 && h[child].val > h[child + 1].val) | |||||
| child++; | |||||
| if (h[root].val > h[child].val) { | |||||
| FFSWAP(HeapElem, h[root], h[child]); | |||||
| root = child; | |||||
| } else | |||||
| break; | |||||
| } | |||||
| } | |||||
| static void generate_len_table(uint8_t *dst, const uint64_t *stats) | |||||
| { | |||||
| HeapElem h[256]; | |||||
| int up[2*256]; | |||||
| int len[2*256]; | |||||
| int offset, i, next; | |||||
| int size = 256; | |||||
| for (offset = 1; ; offset <<= 1) { | |||||
| for (i = 0; i < size; i++) { | |||||
| h[i].name = i; | |||||
| h[i].val = (stats[i] << 8) + offset; | |||||
| } | |||||
| for (i = size / 2 - 1; i >= 0; i--) | |||||
| heap_sift(h, i, size); | |||||
| for (next = size; next < size * 2 - 1; next++) { | |||||
| // merge the two smallest entries, and put it back in the heap | |||||
| uint64_t min1v = h[0].val; | |||||
| up[h[0].name] = next; | |||||
| h[0].val = INT64_MAX; | |||||
| heap_sift(h, 0, size); | |||||
| up[h[0].name] = next; | |||||
| h[0].name = next; | |||||
| h[0].val += min1v; | |||||
| heap_sift(h, 0, size); | |||||
| } | |||||
| len[2 * size - 2] = 0; | |||||
| for (i = 2 * size - 3; i >= size; i--) | |||||
| len[i] = len[up[i]] + 1; | |||||
| for (i = 0; i < size; i++) { | |||||
| dst[i] = len[up[i]] + 1; | |||||
| if (dst[i] >= 32) break; | |||||
| } | |||||
| if (i==size) break; | |||||
| } | |||||
| } | |||||
| #endif /* CONFIG_HUFFYUV_ENCODER || CONFIG_FFVHUFF_ENCODER */ | |||||
| static void generate_joint_tables(HYuvContext *s) | static void generate_joint_tables(HYuvContext *s) | ||||
| { | { | ||||
| uint16_t symbols[1 << VLC_BITS]; | uint16_t symbols[1 << VLC_BITS]; | ||||
| @@ -697,7 +638,7 @@ static av_cold int encode_init(AVCodecContext *avctx) | |||||
| } | } | ||||
| for (i = 0; i < 3; i++) { | for (i = 0; i < 3; i++) { | ||||
| generate_len_table(s->len[i], s->stats[i]); | |||||
| ff_huff_gen_len_table(s->len[i], s->stats[i]); | |||||
| if (generate_bits_table(s->bits[i], s->len[i]) < 0) { | if (generate_bits_table(s->bits[i], s->len[i]) < 0) { | ||||
| return -1; | return -1; | ||||
| @@ -1307,7 +1248,7 @@ static int encode_frame(AVCodecContext *avctx, AVPacket *pkt, | |||||
| if (s->context) { | if (s->context) { | ||||
| for (i = 0; i < 3; i++) { | for (i = 0; i < 3; i++) { | ||||
| generate_len_table(s->len[i], s->stats[i]); | |||||
| ff_huff_gen_len_table(s->len[i], s->stats[i]); | |||||
| if (generate_bits_table(s->bits[i], s->len[i]) < 0) | if (generate_bits_table(s->bits[i], s->len[i]) < 0) | ||||
| return -1; | return -1; | ||||
| size += store_table(s, s->len[i], &pkt->data[size]); | size += store_table(s, s->len[i], &pkt->data[size]); | ||||