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📄 codeexample.mptags

📁 MICROCHIP的DSPIC系列的30F6014单片机的32点FFT计算
💻 MPTAGS
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!_TAG_FILE_FORMAT	2	/extended format; --format=1 will not append ;" to lines/
!_TAG_FILE_SORTED	1	/0=unsorted, 1=sorted, 2=foldcase/
!_TAG_PROGRAM_AUTHOR	Darren Hiebert	/dhiebert@users.sourceforge.net/
!_TAG_PROGRAM_NAME	Exuberant Ctags	//
!_TAG_PROGRAM_URL	http://ctags.sourceforge.net	/official site/
!_TAG_PROGRAM_VERSION	5.5.4	//
!_TAG_REVISION_NAME	MCHPTags	//
!_TAG_REVISION_VERSION	6.0.1	//
BART_0::2.0	H:\standardFFT32\h\dsp.h	66;"	d	line:66
BLCK_0::0.42	H:\standardFFT32\h\dsp.h	74;"	d	line:74
BLCK_1::-0.50	H:\standardFFT32\h\dsp.h	75;"	d	line:75
BLCK_2::0.08	H:\standardFFT32\h\dsp.h	76;"	d	line:76
BartlettInit	H:\standardFFT32\h\dsp.h	437;"	p	line:437	signature:( int numElems, fractional* window )
BitReverseComplex	H:\standardFFT32\h\dsp.h	1239;"	p	line:1239	signature:( int log2N, fractcomplex* srcCV )
BlackmanInit	H:\standardFFT32\h\dsp.h	448;"	p	line:448	signature:( int numElems, fractional* window )
BuffHspec	H:\standardFFT32\src\main_FFTExample.c	19;"	v	line:19
CODE_PROT_OFF	H:\standardFFT32\src\main_FFTExample.c	8;"	v	line:8
COEFFS_IN_DATA::0xFF00	H:\standardFFT32\h\dsp.h	78;"	d	line:78
CosFactorInit	H:\standardFFT32\h\dsp.h	1367;"	p	line:1367	signature:( int log2N, fractcomplex* cosFactors )
DATA_TYPE::FRACTIONAL	H:\standardFFT32\h\dsp.h	50;"	d	line:50
DCT	H:\standardFFT32\h\dsp.h	1384;"	p	line:1384	signature:( int log2N, fractional* dstV, fractional* srcV, fractcomplex* cosFactors, fractcomplex* twidFactors, int factPage )
DCTIP	H:\standardFFT32\h\dsp.h	1433;"	p	line:1433	signature:( int log2N, fractional* srcV, fractcomplex* cosFactors, fractcomplex* twidFactors, int factPage )
FFT32	H:\standardFFT32\src\main_FFTExample.c	29;"	f	line:29	signature:(void)
FFTComplex	H:\standardFFT32\h\dsp.h	1250;"	p	line:1250	signature:( int log2N, fractcomplex* dstCV, fractcomplex* srcCV, fractcomplex* twidFactors, int factPage )
FFTComplexIP	H:\standardFFT32\h\dsp.h	1282;"	p	line:1282	signature:( int log2N, fractcomplex* srcCV, fractcomplex* twidFactors, int factPage )
FFTTWIDCOEFFS_IN_PROGMEM::	H:\standardFFT32\src\fft.h	8;"	d	line:8
FFT_BLOCK_LENGTH::32	H:\standardFFT32\src\fft.h	2;"	d	line:2
FFT_BLOCK_LENGTH::32	H:\standardFFT32\twiddle Factors32.c	2;"	d	line:2	file:
FIR	H:\standardFFT32\h\dsp.h	843;"	p	line:843	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, FIRStruct* filter )
FIRDecimate	H:\standardFFT32\h\dsp.h	861;"	p	line:861	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, FIRStruct* filter, int rate )
FIRDelayInit	H:\standardFFT32\h\dsp.h	829;"	p	line:829	signature:( FIRStruct* filter )
FIRInterpDelayInit	H:\standardFFT32\h\dsp.h	836;"	p	line:836	signature:( FIRStruct* filter, int rate )
FIRInterpolate	H:\standardFFT32\h\dsp.h	880;"	p	line:880	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, FIRStruct* filter, int rate )
FIRLMS	H:\standardFFT32\h\dsp.h	915;"	p	line:915	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, FIRStruct* filter, fractional* refSamps, fractional muVal )
FIRLMSNorm	H:\standardFFT32\h\dsp.h	944;"	p	line:944	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, FIRStruct* filter, fractional* refSamps, fractional muVal, fractional* energyEstimate )
FIRLattice	H:\standardFFT32\h\dsp.h	898;"	p	line:898	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, FIRStruct* filter )
FIRStruct	H:\standardFFT32\h\dsp.h	791;"	t	line:791
FIRStructInit	H:\standardFFT32\h\dsp.h	794;"	p	line:794	signature:( FIRStruct* FIRFilter, int numCoeffs, fractional* coeffsBase, int coeffsPage, fractional* delayBase )
FLOATING::-1	H:\standardFFT32\h\dsp.h	47;"	d	line:47
FRACTIONAL::1	H:\standardFFT32\h\dsp.h	48;"	d	line:48
Float2Fract	H:\standardFFT32\h\dsp.h	129;"	p	line:129	signature:( float aVal )
Float2Fract::(aVal)(aVal)	H:\standardFFT32\h\dsp.h	126;"	d	line:126
Fract2Float	H:\standardFFT32\h\dsp.h	132;"	p	line:132	signature:( fractional aVal )
Fract2Float::(aVal)(aVal)	H:\standardFFT32\h\dsp.h	127;"	d	line:127
GetSpectra	H:\standardFFT32\src\main_FFTExample.c	51;"	f	line:51
HAMM_0::0.53836	H:\standardFFT32\h\dsp.h	71;"	d	line:71
HAMM_1::-0.46164	H:\standardFFT32\h\dsp.h	72;"	d	line:72
HANN_0::0.50	H:\standardFFT32\h\dsp.h	68;"	d	line:68
HANN_1::-0.50	H:\standardFFT32\h\dsp.h	69;"	d	line:69
HammingInit	H:\standardFFT32\h\dsp.h	459;"	p	line:459	signature:( int numElems, fractional* window )
HanningInit	H:\standardFFT32\h\dsp.h	470;"	p	line:470	signature:( int numElems, fractional* window )
IFFTComplex	H:\standardFFT32\h\dsp.h	1310;"	p	line:1310	signature:( int log2N, fractcomplex* dstCV, fractcomplex* srcCV, fractcomplex* twidFactors, int factPage )
IFFTComplexIP	H:\standardFFT32\h\dsp.h	1339;"	p	line:1339	signature:( int log2N, fractcomplex* srcCV, fractcomplex* twidFactors, int factPage )
IIRCanonic	H:\standardFFT32\h\dsp.h	1070;"	p	line:1070	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, IIRCanonicStruct* filter )
IIRCanonicInit	H:\standardFFT32\h\dsp.h	1082;"	p	line:1082	signature:( IIRCanonicStruct* filter )
IIRCanonicStruct	H:\standardFFT32\h\dsp.h	1068;"	t	line:1068
IIRLattice	H:\standardFFT32\h\dsp.h	1149;"	p	line:1149	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, IIRLatticeStruct* filter )
IIRLatticeInit	H:\standardFFT32\h\dsp.h	1160;"	p	line:1160	signature:( IIRLatticeStruct* filter )
IIRLatticeStruct	H:\standardFFT32\h\dsp.h	1147;"	t	line:1147
IIRTransposed	H:\standardFFT32\h\dsp.h	1113;"	p	line:1113	signature:( int numSamps, fractional* dstSamps, fractional* srcSamps, IIRTransposedStruct* filter )
IIRTransposedInit	H:\standardFFT32\h\dsp.h	1125;"	p	line:1125	signature:( IIRTransposedStruct* filter )
IIRTransposedStruct	H:\standardFFT32\h\dsp.h	1111;"	t	line:1111
INV_SQRT2::SIN_PI_Q	H:\standardFFT32\h\dsp.h	62;"	d	line:62
KaiserInit	H:\standardFFT32\h\dsp.h	481;"	p	line:481	signature:( int numElems, fractional* window, float betaVal )
L0	H:\standardFFT32\src\cplxsqrmag.s	105;"	l	line:105
LOG2_BLOCK_LENGTH::5	H:\standardFFT32\src\fft.h	3;"	d	line:3
LOG2_BLOCK_LENGTH::5	H:\standardFFT32\twiddle Factors32.c	3;"	d	line:3	file:
MCLR_EN	H:\standardFFT32\src\main_FFTExample.c	7;"	v	line:7
MatrixAdd	H:\standardFFT32\h\dsp.h	646;"	p	line:646	signature:( int numRows, int numCols, fractional* dstM, fractional* srcM1, fractional* srcM2 )
MatrixInvert	H:\standardFFT32\h\dsp.h	626;"	p	line:626	signature:( int numRowsCols, float* dstM, float* srcM, float* pivotFlag, int* swappedRows, int* swappedCols )
MatrixMultiply	H:\standardFFT32\h\dsp.h	678;"	p	line:678	signature:( int numRows1, int numCols1Rows2, int numCols2, fractional* dstM, fractional* srcM1, fractional* srcM2 )
MatrixScale	H:\standardFFT32\h\dsp.h	599;"	p	line:599	signature:( int numRows, int numCols, fractional* dstM, fractional* srcM, fractional sclVal )
MatrixSubtract	H:\standardFFT32\h\dsp.h	662;"	p	line:662	signature:( int numRows, int numCols, fractional* dstM, fractional* srcM1, fractional* srcM2 )
MatrixTranspose	H:\standardFFT32\h\dsp.h	613;"	p	line:613	signature:( int numRows, int numCols, fractional* dstM, fractional* srcM )
PI::3.1415926535897931159979634685	H:\standardFFT32\h\dsp.h	55;"	d	line:55
SAMPLING_RATE::1600	H:\standardFFT32\src\fft.h	4;"	d	line:4
SAMPLING_RATE::1600	H:\standardFFT32\twiddle Factors32.c	4;"	d	line:4	file:
SIN_PI_Q::0.7071067811865474617150084668	H:\standardFFT32\h\dsp.h	58;"	d	line:58
Spec	H:\standardFFT32\src\main_FFTExample.c	18;"	v	line:18
SpecPower	H:\standardFFT32\src\main_FFTExample.c	15;"	v	line:15
SquareMagnitudeCplx	H:\standardFFT32\src\main_FFTExample.c	9;"	p	line:9	file:	signature:(int, fractcomplex*, fractional*)
Temp	H:\standardFFT32\src\main_FFTExample.c	16;"	v	line:16
TwidFactorInit	H:\standardFFT32\h\dsp.h	1217;"	p	line:1217	signature:( int log2N, fractcomplex* twidFactors, int conjFlag )
VectorAdd	H:\standardFFT32\h\dsp.h	300;"	p	line:300	signature:( int numElems, fractional* dstV, fractional* srcV1, fractional* srcV2 )
VectorConvolve	H:\standardFFT32\h\dsp.h	369;"	p	line:369	signature:( int numElems1, int numElems2, fractional* dstV, fractional* srcV1, fractional* srcV2 )
VectorCopy	H:\standardFFT32\h\dsp.h	244;"	p	line:244	signature:( int numElems, fractional* dstV, fractional* srcV )
VectorCorrelate	H:\standardFFT32\h\dsp.h	384;"	p	line:384	signature:( int numElems1, int numElems2, fractional* dstV, fractional* srcV1, fractional* srcV2 )
VectorDotProduct	H:\standardFFT32\h\dsp.h	345;"	p	line:345	signature:( int numElems, fractional* srcV1, fractional* srcV2 )
VectorMax	H:\standardFFT32\h\dsp.h	218;"	p	line:218	signature:( int numElems, fractional* srcV, int* maxIndex )
VectorMin	H:\standardFFT32\h\dsp.h	231;"	p	line:231	signature:( int numElems, fractional* srcV, int* minIndex )
VectorMultiply	H:\standardFFT32\h\dsp.h	330;"	p	line:330	signature:( int numElems, fractional* dstV, fractional* srcV1, fractional* srcV2 )
VectorNegate	H:\standardFFT32\h\dsp.h	275;"	p	line:275	signature:( int numElems, fractional* dstV, fractional* srcV )
VectorPower	H:\standardFFT32\h\dsp.h	358;"	p	line:358	signature:( int numElems, fractional* srcV )
VectorScale	H:\standardFFT32\h\dsp.h	287;"	p	line:287	signature:( int numElems, fractional* dstV, fractional* srcV, fractional sclVal )
VectorSubtract	H:\standardFFT32\h\dsp.h	315;"	p	line:315	signature:( int numElems, fractional* dstV, fractional* srcV1, fractional* srcV2 )
VectorWindow	H:\standardFFT32\h\dsp.h	493;"	p	line:493	signature:( int numElems, fractional* dstV, fractional* srcV, fractional* window )
VectorZeroPad	H:\standardFFT32\h\dsp.h	259;"	p	line:259	signature:( int numElems, int numZeros, fractional* dstV, fractional* srcV )
WDT_OFF	H:\standardFFT32\src\main_FFTExample.c	6;"	v	line:6
XT_PLL8	H:\standardFFT32\src\main_FFTExample.c	5;"	v	line:5
_SquareMagnitudeCplx	H:\standardFFT32\src\cplxsqrmag.s	81;"	l	line:81
__DSP_LIB__	H:\standardFFT32\h\dsp.h	34;"	d	line:34
coeffsBase	H:\standardFFT32\h\dsp.h	1049;"	m	line:1049
coeffsBase	H:\standardFFT32\h\dsp.h	1091;"	m	line:1091
coeffsBase	H:\standardFFT32\h\dsp.h	757;"	m	line:757
coeffsEnd	H:\standardFFT32\h\dsp.h	769;"	m	line:769
coeffsPage	H:\standardFFT32\h\dsp.h	1054;"	m	line:1054
coeffsPage	H:\standardFFT32\h\dsp.h	1096;"	m	line:1096
coeffsPage	H:\standardFFT32\h\dsp.h	1141;"	m	line:1141
coeffsPage	H:\standardFFT32\h\dsp.h	776;"	m	line:776
delay	H:\standardFFT32\h\dsp.h	1144;"	m	line:1144
delay	H:\standardFFT32\h\dsp.h	790;"	m	line:790
delayBase	H:\standardFFT32\h\dsp.h	1057;"	m	line:1057
delayBase	H:\standardFFT32\h\dsp.h	781;"	m	line:781
delayBase1	H:\standardFFT32\h\dsp.h	1099;"	m	line:1099
delayBase2	H:\standardFFT32\h\dsp.h	1102;"	m	line:1102
delayEnd	H:\standardFFT32\h\dsp.h	788;"	m	line:788
finalShift	H:\standardFFT32\h\dsp.h	1061;"	m	line:1061
finalShift	H:\standardFFT32\h\dsp.h	1105;"	m	line:1105
fractcomplex	H:\standardFFT32\h\dsp.h	99;"	t	line:99
fractional	H:\standardFFT32\h\dsp.h	90;"	t	line:90
fractional	H:\standardFFT32\h\dsp.h	92;"	t	line:92
gammaVals	H:\standardFFT32\h\dsp.h	1137;"	m	line:1137
i	H:\standardFFT32\src\main_FFTExample.c	31;"	l	line:31
imag	H:\standardFFT32\h\dsp.h	98;"	m	line:98
initialGain	H:\standardFFT32\h\dsp.h	1060;"	m	line:1060
j	H:\standardFFT32\src\main_FFTExample.c	53;"	l	line:53
kappaVals	H:\standardFFT32\h\dsp.h	1134;"	m	line:1134
main	H:\standardFFT32\src\main_FFTExample.c	22;"	f	line:22	signature:(void)
numCoeffs	H:\standardFFT32\h\dsp.h	753;"	m	line:753
numSectionsLess1	H:\standardFFT32\h\dsp.h	1047;"	m	line:1047
numSectionsLess1	H:\standardFFT32\h\dsp.h	1089;"	m	line:1089
order	H:\standardFFT32\h\dsp.h	1132;"	m	line:1132
p_cmpx	H:\standardFFT32\src\main_FFTExample.c	33;"	l	line:33
p_real	H:\standardFFT32\src\main_FFTExample.c	32;"	l	line:32
peakFrequency	H:\standardFFT32\src\main_FFTExample.c	14;"	v	line:14
peakFrequencyBin	H:\standardFFT32\src\main_FFTExample.c	13;"	v	line:13
preal	H:\standardFFT32\src\main_FFTExample.c	17;"	v	line:17
real	H:\standardFFT32\h\dsp.h	97;"	m	line:97
sigCmpx	H:\standardFFT32\src\inputsignal_square1khz.c	3;"	v	line:3
temp	H:\standardFFT32\src\main_FFTExample.c	20;"	v	line:20
twiddleFactors	H:\standardFFT32\twiddle Factors32.c	7;"	v	line:7

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