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32 #include "config_components.h"
54 #define IMC_BLOCK_SIZE 64
55 #define IMC_FRAME_ID 0x21
111 #define IMC_VLC_BITS 9
112 #define VLC_TABLES_SIZE 9512
118 return 3.5 * atan((freq / 7500.0) * (freq / 7500.0)) + 13.0 * atan(freq * 0.00076);
123 double freqmin[32], freqmid[32], freqmax[32];
124 double scale = sampling_rate / (256.0 * 2.0 * 2.0);
125 double nyquist_freq = sampling_rate * 0.5;
126 double freq, bark, prev_bark = 0,
tf,
tb;
129 for (
i = 0;
i < 32;
i++) {
134 tb = bark - prev_bark;
143 while (
tf < nyquist_freq) {
155 if (
tb <= bark - 0.5)
161 for (
i = 0;
i < 32;
i++) {
163 for (j = 31; j > 0 && freq <= freqmid[j]; j--);
167 for (j = 0; j < 32 && freq >= freqmid[j]; j++);
175 for (
int i = 0,
offset = 0;
i < 4 ;
i++) {
176 for (
int j = 0; j < 4; j++) {
193 float scale = 1.0f / (16384);
197 "Strange sample rate of %i, file likely corrupt or "
198 "needing a new table derivation method.\n",
226 for (
i = 0;
i < 30;
i++)
256 float *flcoeffs2,
int *bandWidthT,
257 float *flcoeffs3,
float *flcoeffs5)
262 float snr_limit = 1.e-30;
267 flcoeffs5[
i] = workT2[
i] = 0.0;
269 workT1[
i] = flcoeffs1[
i] * flcoeffs1[
i];
270 flcoeffs3[
i] = 2.0 * flcoeffs2[
i];
273 flcoeffs3[
i] = -30000.0;
275 workT3[
i] = bandWidthT[
i] * workT1[
i] * 0.01;
276 if (workT3[
i] <= snr_limit)
281 for (cnt2 =
i; cnt2 < q->
cyclTab[
i]; cnt2++)
282 flcoeffs5[cnt2] = flcoeffs5[cnt2] + workT3[
i];
283 workT2[cnt2 - 1] = workT2[cnt2 - 1] + workT3[
i];
287 accum = (workT2[
i - 1] + accum) * q->
weights1[
i - 1];
288 flcoeffs5[
i] += accum;
295 for (cnt2 =
i - 1; cnt2 > q->
cyclTab2[
i]; cnt2--)
296 flcoeffs5[cnt2] += workT3[
i];
297 workT2[cnt2+1] += workT3[
i];
303 accum = (workT2[
i+1] + accum) * q->
weights2[
i];
304 flcoeffs5[
i] += accum;
316 const uint8_t *cb_sel;
319 s = stream_format_code >> 1;
326 if (stream_format_code & 4)
333 if (levlCoeffs[
i] == 17)
350 float *flcoeffs1,
float *flcoeffs2)
356 flcoeffs1[0] = 20000.0 /
exp2 (levlCoeffBuf[0] * 0.18945);
357 flcoeffs2[0] =
log2f(flcoeffs1[0]);
369 else if (
level <= 24)
375 tmp2 += 0.83048 *
level;
384 float *old_floor,
float *flcoeffs1,
394 if (levlCoeffBuf[
i] < 16) {
396 flcoeffs2[
i] = (levlCoeffBuf[
i] - 7) * 0.83048 + flcoeffs2[
i];
398 flcoeffs1[
i] = old_floor[
i];
404 float *flcoeffs1,
float *flcoeffs2)
410 flcoeffs1[
pos] = 20000.0 / pow (2, levlCoeffBuf[0] * 0.18945);
413 tmp2 = flcoeffs2[
pos];
419 level = *levlCoeffBuf++;
421 flcoeffs2[
i] = tmp2 - 1.4533435415 *
level;
429 int stream_format_code,
int freebits,
int flag)
432 const float limit = -1.e20;
441 float lowest = 1.e10;
459 highest = highest * 0.25;
478 if (stream_format_code & 0x2) {
485 for (
i = (stream_format_code & 0x2) ? 4 : 0;
i <
BANDS - 1;
i++) {
494 summa = (summa * 0.5 - freebits) / iacc;
498 rres = summer - freebits;
499 if ((rres >= -8) && (rres <= 8))
505 for (j = (stream_format_code & 0x2) ? 4 : 0; j <
BANDS; j++) {
517 if (freebits < summer)
524 summa = (
float)(summer - freebits) / ((
t1 + 1) * iacc) + summa;
527 for (
i = (stream_format_code & 0x2) ? 4 : 0;
i <
BANDS;
i++) {
532 if (freebits > summer) {
541 if (highest <= -1.e20)
548 if (workT[
i] > highest) {
554 if (highest > -1.e20) {
555 workT[found_indx] -= 2.0;
557 workT[found_indx] = -1.e20;
559 for (j =
band_tab[found_indx]; j <
band_tab[found_indx + 1] && (freebits > summer); j++) {
564 }
while (freebits > summer);
566 if (freebits < summer) {
571 if (stream_format_code & 0x2) {
577 while (freebits < summer) {
581 if (workT[
i] < lowest) {
588 workT[low_indx] = lowest + 2.0;
591 workT[low_indx] = 1.e20;
593 for (j =
band_tab[low_indx]; j <
band_tab[low_indx+1] && (freebits < summer); j++) {
674 while (corrected < summer) {
675 if (highest <= -1.e20)
681 if (workT[
i] > highest) {
687 if (highest > -1.e20) {
688 workT[found_indx] -= 2.0;
689 if (++(chctx->
bitsBandT[found_indx]) == 6)
690 workT[found_indx] = -1.e20;
692 for (j =
band_tab[found_indx]; j <
band_tab[found_indx+1] && (corrected < summer); j++) {
703 int stream_format_code)
706 int middle_value, cw_len, max_size;
707 const float *quantizer;
714 if (cw_len <= 0 || chctx->skipFlags[j])
717 max_size = 1 << cw_len;
718 middle_value = max_size >> 1;
745 int i, j, cw_len, cw;
758 "Potential problem on band %i, coefficient %i"
759 ": cw_len=%i\n",
i, j, cw_len);
815 int stream_format_code;
816 int imc_hdr,
i, j,
ret;
825 if (imc_hdr & 0x18) {
832 if (stream_format_code & 0x04)
844 if (stream_format_code & 0x1)
849 if (stream_format_code & 0x1)
852 else if (stream_format_code & 0x4)
868 if (stream_format_code & 0x1) {
895 if (stream_format_code & 0x2) {
902 for (
i = 1;
i < 4;
i++) {
903 if (stream_format_code & 0x1)
916 if (!(stream_format_code & 0x2))
928 if (stream_format_code & 0x1) {
958 memcpy(chctx->
prev_win, q->
temp + 128,
sizeof(
float)*128);
964 int *got_frame_ptr,
AVPacket *avpkt)
966 const uint8_t *buf = avpkt->
data;
967 int buf_size = avpkt->
size;
976 if (buf_size < IMC_BLOCK_SIZE * avctx->ch_layout.nb_channels) {
1027 #if CONFIG_IMC_DECODER
1044 #if CONFIG_IAC_DECODER
const FFCodec ff_iac_decoder
@ AV_SAMPLE_FMT_FLTP
float, planar
#define AV_LOG_WARNING
Something somehow does not look correct.
int ff_vlc_init_from_lengths(VLC *vlc, int nb_bits, int nb_codes, const int8_t *lens, int lens_wrap, const void *symbols, int symbols_wrap, int symbols_size, int offset, int flags, void *logctx)
Build VLC decoding tables suitable for use with get_vlc2()
static av_always_inline double ff_exp10(double x)
Compute 10^x for floating point values.
#define FF_CODEC_CAP_INIT_CLEANUP
The codec allows calling the close function for deallocation even if the init function returned a fai...
static av_cold void flush(AVCodecContext *avctx)
Filter the word “frame” indicates either a video frame or a group of audio as stored in an AVFrame structure Format for each input and each output the list of supported formats For video that means pixel format For audio that means channel sample they are references to shared objects When the negotiation mechanism computes the intersection of the formats supported at each end of a all references to both lists are replaced with a reference to the intersection And when a single format is eventually chosen for a link amongst the remaining all references to the list are updated That means that if a filter requires that its input and output have the same format amongst a supported all it has to do is use a reference to the same list of formats query_formats can leave some formats unset and return AVERROR(EAGAIN) to cause the negotiation mechanism toagain later. That can be used by filters with complex requirements to use the format negotiated on one link to set the formats supported on another. Frame references ownership and permissions
int CWlengthT[COEFFS]
how many bits in each codeword
static const float imc_exp_tab[32]
int sample_rate
samples per second
static const uint8_t imc_huffman_lens[4][4][18]
int skipFlagCount[BANDS]
skipped coefficients per band
static int get_bits_count(const GetBitContext *s)
static const float imc_quantizer2[2][56]
This structure describes decoded (raw) audio or video data.
static av_cold void iac_generate_tabs(IMCContext *q, int sampling_rate)
int nb_channels
Number of channels in this layout.
static int init_get_bits(GetBitContext *s, const uint8_t *buffer, int bit_size)
Initialize GetBitContext.
static void imc_calculate_coeffs(IMCContext *q, float *flcoeffs1, float *flcoeffs2, int *bandWidthT, float *flcoeffs3, float *flcoeffs5)
av_cold int av_tx_init(AVTXContext **ctx, av_tx_fn *tx, enum AVTXType type, int inv, int len, const void *scale, uint64_t flags)
Initialize a transform context with the given configuration (i)MDCTs with an odd length are currently...
static void imc_read_level_coeffs_raw(IMCContext *q, int stream_format_code, int *levlCoeffs)
static VLCElem vlc_tables[VLC_TABLES_SIZE]
static const float *const imc_exp_tab2
void(* butterflies_float)(float *av_restrict v1, float *av_restrict v2, int len)
Calculate the sum and difference of two vectors of floats.
static void imc_read_level_coeffs(IMCContext *q, int stream_format_code, int *levlCoeffs)
static unsigned int get_bits(GetBitContext *s, int n)
Read 1-25 bits.
AVCodec p
The public AVCodec.
int skipFlagRaw[BANDS]
skip flags are stored in raw form or not
static const int8_t cyclTab[32]
AVChannelLayout ch_layout
Audio channel layout.
static av_cold void imc_init_static(void)
static const float imc_weights2[31]
int flags
AV_CODEC_FLAG_*.
static av_always_inline float scale(float x, float s)
static int ff_thread_once(char *control, void(*routine)(void))
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered.
void(* av_tx_fn)(AVTXContext *s, void *out, void *in, ptrdiff_t stride)
Function pointer to a function to perform the transform.
@ AV_TX_FLOAT_MDCT
Standard MDCT with a sample data type of float, double or int32_t, respecively.
static av_cold int imc_decode_close(AVCodecContext *avctx)
#define FF_CODEC_DECODE_CB(func)
int(* init)(AVBSFContext *ctx)
#define LOCAL_ALIGNED_16(t, v,...)
static const float imc_weights1[31]
static void imc_get_skip_coeff(IMCContext *q, IMCChannel *chctx)
void(* bswap16_buf)(uint16_t *dst, const uint16_t *src, int len)
#define CODEC_LONG_NAME(str)
int bandFlagsBuf[BANDS]
flags for each band
static void imc_decode_level_coefficients2(IMCContext *q, int *levlCoeffBuf, float *old_floor, float *flcoeffs1, float *flcoeffs2)
av_cold void ff_bswapdsp_init(BswapDSPContext *c)
#define AVERROR_PATCHWELCOME
Not yet implemented in FFmpeg, patches welcome.
static unsigned int get_bits1(GetBitContext *s)
static const uint16_t band_tab[33]
static VLC huffman_vlc[4][4]
static av_always_inline int get_vlc2(GetBitContext *s, const VLCElem *table, int bits, int max_depth)
Parse a vlc code.
static const int8_t cyclTab2[32]
#define AV_CODEC_CAP_CHANNEL_CONF
Codec should fill in channel configuration and samplerate instead of container.
int bandWidthT[BANDS]
codewords per band
static void imc_decode_level_coefficients_raw(IMCContext *q, int *levlCoeffBuf, float *flcoeffs1, float *flcoeffs2)
static const uint8_t imc_huffman_syms[4][4][18]
int ff_get_buffer(AVCodecContext *avctx, AVFrame *frame, int flags)
Get a buffer for a frame.
#define AV_CODEC_CAP_DR1
Codec uses get_buffer() or get_encode_buffer() for allocating buffers and supports custom allocators.
An AVChannelLayout holds information about the channel layout of audio data.
#define DECLARE_ALIGNED(n, t, v)
enum AVSampleFormat sample_fmt
audio sample format
static const float imc_quantizer1[4][8]
it s the only field you need to keep assuming you have a context There is some magic you don t need to care about around this just let it vf offset
static int imc_decode_frame(AVCodecContext *avctx, AVFrame *frame, int *got_frame_ptr, AVPacket *avpkt)
av_cold void av_tx_uninit(AVTXContext **ctx)
Frees a context and sets *ctx to NULL, does nothing when *ctx == NULL.
void ff_sine_window_init(float *window, int n)
Generate a sine window.
int nb_samples
number of audio samples (per channel) described by this frame
static void imc_refine_bit_allocation(IMCContext *q, IMCChannel *chctx)
#define i(width, name, range_min, range_max)
static int bit_allocation(IMCContext *q, IMCChannel *chctx, int stream_format_code, int freebits, int flag)
Perform bit allocation depending on bits available.
static int inverse_quant_coeff(IMCContext *q, IMCChannel *chctx, int stream_format_code)
uint8_t ** extended_data
pointers to the data planes/channels.
int bitsBandT[BANDS]
how many bits per codeword in band
static const float xTab[14]
AVSampleFormat
Audio sample formats.
const char * name
Name of the codec implementation.
static av_cold int imc_decode_init(AVCodecContext *avctx)
static double limit(double x)
static const uint8_t imc_huffman_sizes[4]
#define AV_INPUT_BUFFER_PADDING_SIZE
main external API structure.
#define VLC_INIT_STATIC_OVERLONG
int skipFlagBits[BANDS]
bits used to code skip flags
void av_channel_layout_uninit(AVChannelLayout *channel_layout)
Free any allocated data in the channel layout and reset the channel count to 0.
int skipFlags[COEFFS]
skip coefficient decoding or not
const FFCodec ff_imc_decoder
static int imc_decode_block(AVCodecContext *avctx, IMCContext *q, int ch)
#define AV_CODEC_FLAG_BITEXACT
Use only bitexact stuff (except (I)DCT).
#define avpriv_request_sample(...)
void(* vector_fmul_window)(float *dst, const float *src0, const float *src1, const float *win, int len)
Overlap/add with window function.
#define AV_CHANNEL_LAYOUT_MONO
This structure stores compressed data.
av_cold AVFloatDSPContext * avpriv_float_dsp_alloc(int bit_exact)
Allocate a float DSP context.
static const uint8_t imc_cb_select[4][32]
static void imc_decode_level_coefficients(IMCContext *q, int *levlCoeffBuf, float *flcoeffs1, float *flcoeffs2)
static double freq2bark(double freq)
float mdct_sine_window[COEFFS]
MDCT tables.
#define AVERROR_INVALIDDATA
Invalid data found when processing input.
static void imc_get_coeffs(AVCodecContext *avctx, IMCContext *q, IMCChannel *chctx)
static void imc_adjust_bit_allocation(IMCContext *q, IMCChannel *chctx, int summer)
Increase highest' band coefficient sizes as some bits won't be used.
int codewords[COEFFS]
raw codewords read from bitstream
int sumLenArr[BANDS]
bits for all coeffs in band