FastLED 3.9.15
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subband.hpp
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1/* ***** BEGIN LICENSE BLOCK *****
2 * Version: RCSL 1.0/RPSL 1.0
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6 * The contents of this file, and the files included with this file, are
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34 * ***** END LICENSE BLOCK ***** */
35
36/**************************************************************************************
37 * Fixed-point MP3 decoder
38 * Jon Recker (jrecker@real.com), Ken Cooke (kenc@real.com)
39 * June 2003
40 *
41 * subband.c - subband transform (synthesis filterbank implemented via 32-point DCT
42 * followed by polyphase filter)
43 **************************************************************************************/
44
45#include "coder.h"
46#include "fl/stl/stdint.h"
47#include "fl/stl/noexcept.h"
48#include "assembly.h"
49
50namespace fl {
51namespace third_party {
52
53/**************************************************************************************
54 * Function: Subband
55 *
56 * Description: do subband transform on all the blocks in one granule, all channels
57 *
58 * Inputs: filled MP3DecInfo structure, after calling IMDCT for all channels
59 * vbuf[ch] and vindex[ch] must be preserved between calls
60 *
61 * Outputs: decoded PCM data, interleaved LRLRLR... if stereo
62 *
63 * Return: 0 on success, -1 if null input pointers
64 **************************************************************************************/
65int Subband(MP3DecInfo *mp3DecInfo, short *pcmBuf) FL_NOEXCEPT
66{
67 int b;
68 IMDCTInfo *mi;
69 SubbandInfo *sbi;
70
71 /* validate pointers */
72 if (!mp3DecInfo || !mp3DecInfo->HuffmanInfoPS || !mp3DecInfo->IMDCTInfoPS || !mp3DecInfo->SubbandInfoPS)
73 return -1;
74
75 mi = (IMDCTInfo *)(mp3DecInfo->IMDCTInfoPS);
76 sbi = (SubbandInfo*)(mp3DecInfo->SubbandInfoPS);
77
78 if (mp3DecInfo->nChans == 2) {
79 /* stereo */
80 for (b = 0; b < BLOCK_SIZE; b++) {
81 FDCT32(mi->outBuf[0][b], sbi->vbuf + 0*32, sbi->vindex, (b & 0x01), mi->gb[0]);
82 FDCT32(mi->outBuf[1][b], sbi->vbuf + 1*32, sbi->vindex, (b & 0x01), mi->gb[1]);
83 PolyphaseStereo(pcmBuf, sbi->vbuf + sbi->vindex + VBUF_LENGTH * (b & 0x01), polyCoef);
84 sbi->vindex = (sbi->vindex - (b & 0x01)) & 7;
85 pcmBuf += (2 * NBANDS);
86 }
87 } else {
88 /* mono */
89 for (b = 0; b < BLOCK_SIZE; b++) {
90 FDCT32(mi->outBuf[0][b], sbi->vbuf + 0*32, sbi->vindex, (b & 0x01), mi->gb[0]);
91 PolyphaseMono(pcmBuf, sbi->vbuf + sbi->vindex + VBUF_LENGTH * (b & 0x01), polyCoef);
92 sbi->vindex = (sbi->vindex - (b & 0x01)) & 7;
93 pcmBuf += NBANDS;
94 }
95 }
96
97 return 0;
98}
99
100} // namespace third_party
101} // namespace fl
#define VBUF_LENGTH
Definition coder.h:109
#define NBANDS
Definition coder.h:107
#define BLOCK_SIZE
Definition coder.h:106
struct _MP3DecInfo MP3DecInfo
struct fl::third_party::_IMDCTInfo IMDCTInfo
void FDCT32(int32_t *x, int32_t *d, int32_t offset, int32_t oddBlock, int32_t gb) FL_NOEXCEPT
Definition dct32.hpp:151
struct fl::third_party::_SubbandInfo SubbandInfo
const int32_t polyCoef[264]
Definition trigtabs.hpp:282
void PolyphaseMono(short *pcm, int32_t *vbuf, const int32_t *coefBase)
int Subband(MP3DecInfo *mp3DecInfo, short *pcmBuf) FL_NOEXCEPT
Definition subband.hpp:65
void PolyphaseStereo(short *pcm, int32_t *vbuf, const int32_t *coefBase)
int32_t outBuf[MAX_NCHAN][BLOCK_SIZE][NBANDS]
Definition coder.h:237
int32_t gb[MAX_NCHAN]
Definition coder.h:242
int32_t vbuf[MAX_NCHAN *VBUF_LENGTH]
Definition coder.h:279
Base definition for an LED controller.
Definition crgb.hpp:179
#define FL_NOEXCEPT