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arm_cfft_radix4_init_q31.c
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1 /* ----------------------------------------------------------------------
2 * Copyright (C) 2010-2014 ARM Limited. All rights reserved.
3 *
4 * $Date: 19. March 2015
5 * $Revision: V.1.4.5
6 *
7 * Project: CMSIS DSP Library
8 * Title: arm_cfft_radix4_init_q31.c
9 *
10 * Description: Radix-4 Decimation in Frequency Q31 FFT & IFFT initialization function
11 *
12 * Target Processor: Cortex-M4/Cortex-M3/Cortex-M0
13 *
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22 * distribution.
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24 * may be used to endorse or promote products derived from this
25 * software without specific prior written permission.
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40 
41 #include "arm_math.h"
42 #include "arm_common_tables.h"
43 
78  uint16_t fftLen,
79  uint8_t ifftFlag,
80  uint8_t bitReverseFlag)
81 {
82  /* Initialise the default arm status */
84  /* Initialise the FFT length */
85  S->fftLen = fftLen;
86  /* Initialise the Twiddle coefficient pointer */
88  /* Initialise the Flag for selection of CFFT or CIFFT */
89  S->ifftFlag = ifftFlag;
90  /* Initialise the Flag for calculation Bit reversal or not */
91  S->bitReverseFlag = bitReverseFlag;
92 
93  /* Initializations of Instance structure depending on the FFT length */
94  switch (S->fftLen)
95  {
96  /* Initializations of structure parameters for 4096 point FFT */
97  case 4096u:
98  /* Initialise the twiddle coef modifier value */
99  S->twidCoefModifier = 1u;
100  /* Initialise the bit reversal table modifier */
101  S->bitRevFactor = 1u;
102  /* Initialise the bit reversal table pointer */
103  S->pBitRevTable = (uint16_t *) armBitRevTable;
104  break;
105 
106  /* Initializations of structure parameters for 1024 point FFT */
107  case 1024u:
108  /* Initialise the twiddle coef modifier value */
109  S->twidCoefModifier = 4u;
110  /* Initialise the bit reversal table modifier */
111  S->bitRevFactor = 4u;
112  /* Initialise the bit reversal table pointer */
113  S->pBitRevTable = (uint16_t *) & armBitRevTable[3];
114  break;
115 
116  case 256u:
117  /* Initializations of structure parameters for 256 point FFT */
118  S->twidCoefModifier = 16u;
119  S->bitRevFactor = 16u;
120  S->pBitRevTable = (uint16_t *) & armBitRevTable[15];
121  break;
122 
123  case 64u:
124  /* Initializations of structure parameters for 64 point FFT */
125  S->twidCoefModifier = 64u;
126  S->bitRevFactor = 64u;
127  S->pBitRevTable = (uint16_t *) & armBitRevTable[63];
128  break;
129 
130  case 16u:
131  /* Initializations of structure parameters for 16 point FFT */
132  S->twidCoefModifier = 256u;
133  S->bitRevFactor = 256u;
134  S->pBitRevTable = (uint16_t *) & armBitRevTable[255];
135  break;
136 
137  default:
138  /* Reporting argument error if fftSize is not valid value */
139  status = ARM_MATH_ARGUMENT_ERROR;
140  break;
141  }
142 
143  return (status);
144 }
145 
Instance structure for the Q31 CFFT/CIFFT function.
Definition: arm_math.h:2027
arm_status arm_cfft_radix4_init_q31(arm_cfft_radix4_instance_q31 *S, uint16_t fftLen, uint8_t ifftFlag, uint8_t bitReverseFlag)
Initialization function for the Q31 CFFT/CIFFT.
const uint16_t armBitRevTable[1024]
int32_t q31_t
32-bit fractional data type in 1.31 format.
Definition: arm_math.h:397
const q31_t twiddleCoef_4096_q31[6144]
arm_status
Error status returned by some functions in the library.
Definition: arm_math.h:373
uint32_t ifftFlag
Definition: FFT.c:112