Commit f6a8ce98 authored by Michael Niedermayer's avatar Michael Niedermayer

Merge remote-tracking branch 'qatar/master'

* qatar/master:
  vf_drawtext: Replace FFmpeg by Libav in license boilerplate.
  mpegaudiodec: remove unusued code and variables
  improved 'edts' atom writing support
  mpegaudio: clean up compute_antialias() definition
  vp8: fix segmentation race during frame-threading.
Merged-by: 's avatarMichael Niedermayer <michaelni@gmx.at>
parents 0abbd3ad 5ac4952a
...@@ -112,8 +112,6 @@ typedef struct MPADecodeContext { ...@@ -112,8 +112,6 @@ typedef struct MPADecodeContext {
#include "mpegaudiodata.h" #include "mpegaudiodata.h"
#include "mpegaudiodectab.h" #include "mpegaudiodectab.h"
static void RENAME(compute_antialias)(MPADecodeContext *s, GranuleDef *g);
/* vlc structure for decoding layer 3 huffman tables */ /* vlc structure for decoding layer 3 huffman tables */
static VLC huff_vlc[16]; static VLC huff_vlc[16];
static VLC_TYPE huff_vlc_tables[ static VLC_TYPE huff_vlc_tables[
...@@ -135,8 +133,7 @@ static uint16_t band_index_long[9][23]; ...@@ -135,8 +133,7 @@ static uint16_t band_index_long[9][23];
/* intensity stereo coef table */ /* intensity stereo coef table */
static INTFLOAT is_table[2][16]; static INTFLOAT is_table[2][16];
static INTFLOAT is_table_lsf[2][2][16]; static INTFLOAT is_table_lsf[2][2][16];
static int32_t csa_table[8][4]; static INTFLOAT csa_table[8][4];
static float csa_table_float[8][4];
static INTFLOAT mdct_win[8][36]; static INTFLOAT mdct_win[8][36];
static int16_t division_tab3[1<<6 ]; static int16_t division_tab3[1<<6 ];
...@@ -272,27 +269,6 @@ static inline int l3_unscale(int value, int exponent) ...@@ -272,27 +269,6 @@ static inline int l3_unscale(int value, int exponent)
return m; return m;
} }
/* all integer n^(4/3) computation code */
#define DEV_ORDER 13
#define POW_FRAC_BITS 24
#define POW_FRAC_ONE (1 << POW_FRAC_BITS)
#define POW_FIX(a) ((int)((a) * POW_FRAC_ONE))
#define POW_MULL(a,b) (((int64_t)(a) * (int64_t)(b)) >> POW_FRAC_BITS)
static int dev_4_3_coefs[DEV_ORDER];
static av_cold void int_pow_init(void)
{
int i, a;
a = POW_FIX(1.0);
for(i=0;i<DEV_ORDER;i++) {
a = POW_MULL(a, POW_FIX(4.0 / 3.0) - i * POW_FIX(1.0)) / (i + 1);
dev_4_3_coefs[i] = a;
}
}
static av_cold int decode_init(AVCodecContext * avctx) static av_cold int decode_init(AVCodecContext * avctx)
{ {
MPADecodeContext *s = avctx->priv_data; MPADecodeContext *s = avctx->priv_data;
...@@ -388,7 +364,6 @@ static av_cold int decode_init(AVCodecContext * avctx) ...@@ -388,7 +364,6 @@ static av_cold int decode_init(AVCodecContext * avctx)
/* compute n ^ (4/3) and store it in mantissa/exp format */ /* compute n ^ (4/3) and store it in mantissa/exp format */
int_pow_init();
mpegaudio_tableinit(); mpegaudio_tableinit();
for (i = 0; i < 4; i++) for (i = 0; i < 4; i++)
...@@ -441,14 +416,17 @@ static av_cold int decode_init(AVCodecContext * avctx) ...@@ -441,14 +416,17 @@ static av_cold int decode_init(AVCodecContext * avctx)
ci = ci_table[i]; ci = ci_table[i];
cs = 1.0 / sqrt(1.0 + ci * ci); cs = 1.0 / sqrt(1.0 + ci * ci);
ca = cs * ci; ca = cs * ci;
#if !CONFIG_FLOAT
csa_table[i][0] = FIXHR(cs/4); csa_table[i][0] = FIXHR(cs/4);
csa_table[i][1] = FIXHR(ca/4); csa_table[i][1] = FIXHR(ca/4);
csa_table[i][2] = FIXHR(ca/4) + FIXHR(cs/4); csa_table[i][2] = FIXHR(ca/4) + FIXHR(cs/4);
csa_table[i][3] = FIXHR(ca/4) - FIXHR(cs/4); csa_table[i][3] = FIXHR(ca/4) - FIXHR(cs/4);
csa_table_float[i][0] = cs; #else
csa_table_float[i][1] = ca; csa_table[i][0] = cs;
csa_table_float[i][2] = ca + cs; csa_table[i][1] = ca;
csa_table_float[i][3] = ca - cs; csa_table[i][2] = ca + cs;
csa_table[i][3] = ca - cs;
#endif
} }
/* compute mdct windows */ /* compute mdct windows */
...@@ -1335,10 +1313,26 @@ static void compute_stereo(MPADecodeContext *s, ...@@ -1335,10 +1313,26 @@ static void compute_stereo(MPADecodeContext *s,
} }
} }
#if !CONFIG_FLOAT #if CONFIG_FLOAT
static void compute_antialias_fixed(MPADecodeContext *s, GranuleDef *g) #define AA(j) do { \
float tmp0 = ptr[-1-j]; \
float tmp1 = ptr[ j]; \
ptr[-1-j] = tmp0 * csa_table[j][0] - tmp1 * csa_table[j][1]; \
ptr[ j] = tmp0 * csa_table[j][1] + tmp1 * csa_table[j][0]; \
} while (0)
#else
#define AA(j) do { \
int tmp0 = ptr[-1-j]; \
int tmp1 = ptr[ j]; \
int tmp2 = MULH(tmp0 + tmp1, csa_table[j][0]); \
ptr[-1-j] = 4*(tmp2 - MULH(tmp1, csa_table[j][2])); \
ptr[ j] = 4*(tmp2 + MULH(tmp0, csa_table[j][3])); \
} while (0)
#endif
static void compute_antialias(MPADecodeContext *s, GranuleDef *g)
{ {
int32_t *ptr, *csa; INTFLOAT *ptr;
int n, i; int n, i;
/* we antialias only "long" bands */ /* we antialias only "long" bands */
...@@ -1353,28 +1347,18 @@ static void compute_antialias_fixed(MPADecodeContext *s, GranuleDef *g) ...@@ -1353,28 +1347,18 @@ static void compute_antialias_fixed(MPADecodeContext *s, GranuleDef *g)
ptr = g->sb_hybrid + 18; ptr = g->sb_hybrid + 18;
for(i = n;i > 0;i--) { for(i = n;i > 0;i--) {
int tmp0, tmp1, tmp2; AA(0);
csa = &csa_table[0][0]; AA(1);
#define INT_AA(j) \ AA(2);
tmp0 = ptr[-1-j];\ AA(3);
tmp1 = ptr[ j];\ AA(4);
tmp2= MULH(tmp0 + tmp1, csa[0+4*j]);\ AA(5);
ptr[-1-j] = 4*(tmp2 - MULH(tmp1, csa[2+4*j]));\ AA(6);
ptr[ j] = 4*(tmp2 + MULH(tmp0, csa[3+4*j])); AA(7);
INT_AA(0)
INT_AA(1)
INT_AA(2)
INT_AA(3)
INT_AA(4)
INT_AA(5)
INT_AA(6)
INT_AA(7)
ptr += 18; ptr += 18;
} }
} }
#endif
static void compute_imdct(MPADecodeContext *s, static void compute_imdct(MPADecodeContext *s,
GranuleDef *g, GranuleDef *g,
...@@ -1470,7 +1454,7 @@ static void compute_imdct(MPADecodeContext *s, ...@@ -1470,7 +1454,7 @@ static void compute_imdct(MPADecodeContext *s,
/* main layer3 decoding function */ /* main layer3 decoding function */
static int mp_decode_layer3(MPADecodeContext *s) static int mp_decode_layer3(MPADecodeContext *s)
{ {
int nb_granules, main_data_begin, private_bits; int nb_granules, main_data_begin;
int gr, ch, blocksplit_flag, i, j, k, n, bits_pos; int gr, ch, blocksplit_flag, i, j, k, n, bits_pos;
GranuleDef *g; GranuleDef *g;
int16_t exponents[576]; //FIXME try INTFLOAT int16_t exponents[576]; //FIXME try INTFLOAT
...@@ -1478,14 +1462,14 @@ static int mp_decode_layer3(MPADecodeContext *s) ...@@ -1478,14 +1462,14 @@ static int mp_decode_layer3(MPADecodeContext *s)
/* read side info */ /* read side info */
if (s->lsf) { if (s->lsf) {
main_data_begin = get_bits(&s->gb, 8); main_data_begin = get_bits(&s->gb, 8);
private_bits = get_bits(&s->gb, s->nb_channels); skip_bits(&s->gb, s->nb_channels);
nb_granules = 1; nb_granules = 1;
} else { } else {
main_data_begin = get_bits(&s->gb, 9); main_data_begin = get_bits(&s->gb, 9);
if (s->nb_channels == 2) if (s->nb_channels == 2)
private_bits = get_bits(&s->gb, 3); skip_bits(&s->gb, 3);
else else
private_bits = get_bits(&s->gb, 5); skip_bits(&s->gb, 5);
nb_granules = 2; nb_granules = 2;
for(ch=0;ch<s->nb_channels;ch++) { for(ch=0;ch<s->nb_channels;ch++) {
s->granules[ch][0].scfsi = 0;/* all scale factors are transmitted */ s->granules[ch][0].scfsi = 0;/* all scale factors are transmitted */
...@@ -1703,7 +1687,7 @@ static int mp_decode_layer3(MPADecodeContext *s) ...@@ -1703,7 +1687,7 @@ static int mp_decode_layer3(MPADecodeContext *s)
g = &s->granules[ch][gr]; g = &s->granules[ch][gr];
reorder_block(s, g); reorder_block(s, g);
RENAME(compute_antialias)(s, g); compute_antialias(s, g);
compute_imdct(s, g, &s->sb_samples[ch][18 * gr][0], s->mdct_buf[ch]); compute_imdct(s, g, &s->sb_samples[ch][18 * gr][0], s->mdct_buf[ch]);
} }
} /* gr */ } /* gr */
......
...@@ -22,45 +22,6 @@ ...@@ -22,45 +22,6 @@
#define CONFIG_FLOAT 1 #define CONFIG_FLOAT 1
#include "mpegaudiodec.c" #include "mpegaudiodec.c"
static void compute_antialias_float(MPADecodeContext *s,
GranuleDef *g)
{
float *ptr;
int n, i;
/* we antialias only "long" bands */
if (g->block_type == 2) {
if (!g->switch_point)
return;
/* XXX: check this for 8000Hz case */
n = 1;
} else {
n = SBLIMIT - 1;
}
ptr = g->sb_hybrid + 18;
for(i = n;i > 0;i--) {
float tmp0, tmp1;
float *csa = &csa_table_float[0][0];
#define FLOAT_AA(j)\
tmp0= ptr[-1-j];\
tmp1= ptr[ j];\
ptr[-1-j] = tmp0 * csa[0+4*j] - tmp1 * csa[1+4*j];\
ptr[ j] = tmp0 * csa[1+4*j] + tmp1 * csa[0+4*j];
FLOAT_AA(0)
FLOAT_AA(1)
FLOAT_AA(2)
FLOAT_AA(3)
FLOAT_AA(4)
FLOAT_AA(5)
FLOAT_AA(6)
FLOAT_AA(7)
ptr += 18;
}
}
#if CONFIG_MP1FLOAT_DECODER #if CONFIG_MP1FLOAT_DECODER
AVCodec ff_mp1float_decoder = AVCodec ff_mp1float_decoder =
{ {
......
...@@ -1612,7 +1612,7 @@ static int vp8_decode_frame(AVCodecContext *avctx, void *data, int *data_size, ...@@ -1612,7 +1612,7 @@ static int vp8_decode_frame(AVCodecContext *avctx, void *data, int *data_size,
s->mv_min.x = -MARGIN; s->mv_min.x = -MARGIN;
s->mv_max.x = ((s->mb_width - 1) << 6) + MARGIN; s->mv_max.x = ((s->mb_width - 1) << 6) + MARGIN;
if (prev_frame && s->segmentation.enabled && s->segmentation.update_map) if (prev_frame && s->segmentation.enabled && !s->segmentation.update_map)
ff_thread_await_progress(prev_frame, mb_y, 0); ff_thread_await_progress(prev_frame, mb_y, 0);
for (mb_x = 0; mb_x < s->mb_width; mb_x++, mb_xy++, mb++) { for (mb_x = 0; mb_x < s->mb_width; mb_x++, mb_xy++, mb++) {
......
...@@ -1288,20 +1288,49 @@ static int mov_write_tapt_tag(AVIOContext *pb, MOVTrack *track) ...@@ -1288,20 +1288,49 @@ static int mov_write_tapt_tag(AVIOContext *pb, MOVTrack *track)
// This box seems important for the psp playback ... without it the movie seems to hang // This box seems important for the psp playback ... without it the movie seems to hang
static int mov_write_edts_tag(AVIOContext *pb, MOVTrack *track) static int mov_write_edts_tag(AVIOContext *pb, MOVTrack *track)
{ {
avio_wb32(pb, 0x24); /* size */ int64_t duration = av_rescale_rnd(track->trackDuration, MOV_TIMESCALE,
track->timescale, AV_ROUND_UP);
int version = duration < INT32_MAX ? 0 : 1;
int entry_size, entry_count, size;
int64_t delay, start_ct = track->cluster[0].cts;
delay = av_rescale_rnd(track->cluster[0].dts + start_ct, MOV_TIMESCALE,
track->timescale, AV_ROUND_DOWN);
version |= delay < INT32_MAX ? 0 : 1;
entry_size = (version == 1) ? 20 : 12;
entry_count = 1 + (delay > 0);
size = 24 + entry_count * entry_size;
/* write the atom data */
avio_wb32(pb, size);
ffio_wfourcc(pb, "edts"); ffio_wfourcc(pb, "edts");
avio_wb32(pb, 0x1c); /* size */ avio_wb32(pb, size - 8);
ffio_wfourcc(pb, "elst"); ffio_wfourcc(pb, "elst");
avio_wb32(pb, 0x0); avio_w8(pb, version);
avio_wb32(pb, 0x1); avio_wb24(pb, 0); /* flags */
/* duration ... doesn't seem to effect psp */ avio_wb32(pb, entry_count);
avio_wb32(pb, av_rescale_rnd(track->trackDuration, MOV_TIMESCALE, if (delay > 0) { /* add an empty edit to delay presentation */
track->timescale, AV_ROUND_UP)); if (version == 1) {
avio_wb64(pb, delay);
avio_wb64(pb, -1);
} else {
avio_wb32(pb, delay);
avio_wb32(pb, -1);
}
avio_wb32(pb, 0x00010000);
}
avio_wb32(pb, track->cluster[0].cts); /* first pts is cts since dts is 0 */ /* duration */
if (version == 1) {
avio_wb64(pb, duration);
avio_wb64(pb, start_ct);
} else {
avio_wb32(pb, duration);
avio_wb32(pb, start_ct);
}
avio_wb32(pb, 0x00010000); avio_wb32(pb, 0x00010000);
return 0x24; return size;
} }
static int mov_write_tref_tag(AVIOContext *pb, MOVTrack *track) static int mov_write_tref_tag(AVIOContext *pb, MOVTrack *track)
...@@ -1358,7 +1387,7 @@ static int mov_write_trak_tag(AVIOContext *pb, MOVTrack *track, AVStream *st) ...@@ -1358,7 +1387,7 @@ static int mov_write_trak_tag(AVIOContext *pb, MOVTrack *track, AVStream *st)
avio_wb32(pb, 0); /* size */ avio_wb32(pb, 0); /* size */
ffio_wfourcc(pb, "trak"); ffio_wfourcc(pb, "trak");
mov_write_tkhd_tag(pb, track, st); mov_write_tkhd_tag(pb, track, st);
if (track->mode == MODE_PSP || track->flags & MOV_TRACK_CTTS) if (track->mode == MODE_PSP || track->flags & MOV_TRACK_CTTS || track->cluster[0].dts)
mov_write_edts_tag(pb, track); // PSP Movies require edts box mov_write_edts_tag(pb, track); // PSP Movies require edts box
if (track->tref_tag) if (track->tref_tag)
mov_write_tref_tag(pb, track); mov_write_tref_tag(pb, track);
......
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